Mixed Domain Oscilloscopes
Mixed Domain Oscilloscopes
MDO3000 Series Datasheet
Logic Analyzer (Optional)
16 digital channels
10 M record length on all channels
121.2 ps timing resolution
Protocol Analyzer (Optional)
Serial bus support for I2C, SPI, RS-232/422/485/UART, USB 2.0,
CAN, LIN, FlexRay, MIL-STD-1553, and Audio standards
Digital Voltmeter (Free with product registration)
4-digit AC RMS, DC, and AC+DC RMS voltage measurements
5-digit frequency measurements
Key features
Today's integrated designs need an oscilloscope that is just as integrated such as the MDO3000 Mixed Domain Oscilloscope (MDO) Series. It is the
ultimate 6-in-1 integrated oscilloscope that includes an integrated spectrum
analyzer, arbitrary function generator, logic analyzer, protocol analyzer, and
digital voltmeter/counter. The MDO3000 is completely customizable and
fully upgradeable. Add the instruments and performance you need now - or
later.
Key performance specifications
Oscilloscope
2 and 4 analog channel models
1 GHz, 500 MHz, 350 MHz, 200 MHz, 100 MHz bandwidth models
Bandwidth is upgradable (up to 1 GHz)
Up to 5 GS/s sample rate
10 M record length on all channels
FastAcq™ high-speed waveform capture rate finds elusive signal
anomalies quickly
Wave Inspector® Controls provide easy navigation and automated
search of waveform data
33 automated measurements and waveform histograms for simplified
waveform analysis
TekVPI® probe interface directly supports active, differential, and
current probes for automatic scaling and units
9 in. (229 mm) WVGA widescreen color display
Small footprint and lightweight – Only 5.8 in. (147 mm) deep and 9.2 lb.
(4.2 kg)
Spectral Analysis
Dedicated front-panel controls for commonly performed tasks
>280,000 wfm/s maximum waveform capture rate
Automated peak markers identify frequency and amplitude of
spectrum peaks
Standard passive voltage probes with 3.9 pF capacitive loading
and 1 GHz, 500 MHz, or 250 MHz analog bandwidth
Manual markers enable non-peak measurements
Spectrum Analyzer
Frequency range
Standard: 9 kHz - oscilloscope bandwidth
Optional: 9 kHz - 3 GHz
Ultra-wide capture bandwidth up to 3 GHz
Arbitrary Function Generator (Optional)
13 predefined waveform types
50 MHz waveform generation
128 k arbitrary generator record length
250 MS/s arbitrary generator sample rate
Trace types include: Normal, Average, Max Hold, and Min Hold
Spectrogram display enables easy observation and insight into
slowly changing RF phenomena
Automated measurements include: Channel Power, Adjacent
Channel Power Ratio (ACPR), and Occupied Bandwidth (OBW)
Arbitrary Function Generation
Generate predefined signals to quickly simulate missing devices in
designs
Capture signals on analog or digital inputs, transfer to the arbitrary
edit memory, and replicate out from the AFG
Add noise to any signal to easily perform margin testing
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Datasheet
Mixed signal design and analysis
Automated triggering, decode, and search on parallel buses
Multichannel setup and hold triggering
MagniVu™ high-speed acquisition provides 121.2 ps fine timing
resolution on digital channels
Oscilloscope
At the core of the MDO3000 Series is a world-class oscilloscope, offering
comprehensive tools that speed each stage of debug – from quickly
discovering anomalies and capturing them, to searching your waveform
record for events of interest and analyzing their characteristics and your
device’s behavior.
Protocol Analysis
Trigger, decode and automatically search on packet-level content
on most common embedded design serial bus standards.
Digital phosphor technology with FastAcq™ highspeed waveform capture
Export protocol decode tables for use in documenting results
To debug a design problem, first you must know it exists. Every design
engineer spends time looking for problems in their design, a timeconsuming and frustrating task without the right debug tools.
Digital Voltmeter and Frequency Counter
Quickly validate voltage or frequency measurements at a glance
Graphical readout provides information on stability of the
measurement
Fully upgradeable
Add functionality, increase bandwidth or spectrum analyzer
frequency range over time as your needs change or budget allows
Optional application support
Power analysis
Limit and mask testing
Need more performance?
Need more input frequency range on the spectrum analyzer?
Need to analyze analog, digital, and RF simultaneously?
Need more record length or a larger display?
Consider the MDO4000B Series oscilloscopes www.tektronix.com/MDO4000
Digital phosphor technology provides you with fast insight into the real
operation of your device. Its fast waveform capture rate – greater than
280,000 wfm/s with FastAcq – gives you a high probability of quickly seeing
the infrequent problems common in digital systems: runt pulses, glitches,
timing issues, and more.
To further enhance the visibility of rarely occurring events, intensity grading
is used to indicate how often rare transients are occurring relative to normal
signal characteristics. There are four waveform palettes available in
FastAcq acquisition mode.
The Temperature palette uses color-grading to indicate frequency of
occurrence with hot colors like red/yellow indicating frequently
occurring events and colder colors like blue/green indicating rarely
occurring events.
The Spectral palette uses color-grading to indicate frequency of
occurrence with colder colors like blue indicating frequently occurring
events and hot colors like red indicating rarely occurring events.
The Normal palette uses the default channel color (like yellow for
channel one) along with gray-scale to indicate frequency of occurrence
where frequently occurring events are bright.
The Inverted palette uses the default channel color along with grayscale to indicate frequency of occurrence where rarely occurring events
are bright.
These color palettes quickly highlight the events that over time occur more
often or, in the case of infrequent anomalies, occur less often.
Infinite or variable persistence choices determine how long waveforms stay
on the display, helping you to determine how often an anomaly is occurring.
► 3 GHz and 6 GHz integrated spectrum analyzers
► Simultaneous acquisition of analog, digital and RF
► 20 M record length
► 10.4 inch XGA display
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Mixed Domain Osciloscopes -- MDO3000 Series
Digital phosphor technology with FastAcq enables greater than 280,000 wfms/s
waveform capture rate and real-time color-intensity grading.
Triggering
Discovering a device fault is only the first step. Next, you must capture the
event of interest to identify root cause. To enable this, the MDO3000
contains over 125 trigger combinations providing a complete set of triggers
- including runt, logic, pulse width/glitch, setup and hold violation, serial
packet, and parallel data - to help quickly locate your event of interest. And
with up to a 10 M record length, you can capture many events of interest,
even thousands of serial packets, in a single acquisition for further analysis
while maintaining high resolution to zoom in on fine signal details.
Wave Inspector controls provide unprecedented efficiency in viewing, navigating, and
analyzing waveform data. Zip through your long record by turning the outer pan control
(1). Get details from the beginning to end in seconds. See something of interest and want
to see more details? Just turn the inner zoom control (2).
Zoom and pan
A dedicated, two-tier front-panel control provides intuitive control of both
zooming and panning. The inner control adjusts the zoom factor (or zoom
scale); turning it clockwise activates zoom and goes to progressively higher
zoom factors, while turning it counterclockwise results in lower zoom
factors and eventually turning zoom off. No longer do you need to navigate
through multiple menus to adjust your zoom view. The outer control pans
the zoom box across the waveform to quickly get to the portion of waveform
you are interested in. The outer control also utilizes force-feedback to
determine how fast to pan on the waveform. The farther you turn the outer
control, the faster the zoom box moves. Pan direction is changed by simply
turning the control the other way.
User marks
Over 125 trigger combinations make capturing your event of interest easy.
Wave Inspector® waveform navigation and automated
search
With long record lengths, a single acquisition can include thousands of
screens of waveform data. Wave Inspector®, the industry’s best tool for
waveform navigation and automated search, enables you to find events of
interest in seconds.
Press the Set Mark front-panel button to place one or more marks on the
waveform. Navigating between marks is as simple as pressing the
Previous (←) and Next (→) buttons on the front panel.
Search marks
The Search button allows you to automatically search through your long
acquisition looking for user-defined events. All occurrences of the event are
highlighted with search marks and are easily navigated to, using the frontpanel Previous (←) and Next (→) buttons. Search types include edge,
pulse width/glitch, timeout, runt, logic, setup and hold, rise/fall time, parallel
bus, and I2C, SPI, RS-232/422/485/UART, USB 2.0, CAN, LIN, FlexRay,
MIL-STD-1553, and Audio packet content. A search mark table provides a
tabular view of the events found during the automated search. Each event
is shown with a time stamp, making timing measurements between events
easy.
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Datasheet
Waveform analysis
Verifying that your prototype’s performance matches simulations and meets
the project’s design goals requires analyzing its behavior. Tasks can range
from simple checks of rise times and pulse widths to sophisticated power
loss analysis and investigation of noise sources.
The oscilloscope offers a comprehensive set of integrated analysis tools
including waveform- and screen-based cursors, automated measurements,
advanced waveform math including arbitrary equation editing, FFT
analysis, waveform histograms, and trend plots for visually determining how
a measurement is changing over time.
Search step 1: You define what you would like to find.
Automated measurement readouts provide repeatable, statistical views of waveform
characteristics.
Search step 2: Wave Inspector automatically searches through the record and marks
each event with a hollow white triangle. You can then use the Previous and Next buttons
to jump from one event to the next.
Each measurement has help text and graphics associated with it that help explain how
the measurement is made.
Search step 3: The Search Mark table provides a tabular view of each of the events
found by the automated search. Each event is shown with a time stamp making timing
measurements between events easy.
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Waveform histograms show visually how waveforms vary over time.
Horizontal waveform histograms are especially useful for gaining insight
into how much jitter is on a clock signal, and what the distribution of that
jitter is. Vertical histograms are especially useful for gaining insight into how
much noise is on a signal, and what the distribution of that noise is.
Measurements taken on a waveform histogram provide analytical
information about the distribution of a waveform histogram, providing
insight into just how broad a distribution is, the amount of standard
deviation, the mean value, etc.
Mixed Domain Osciloscopes -- MDO3000 Series
Waveform histogram of a rising edge showing the distribution of edge position (jitter) over
time. Included are numeric measurements made on the waveform histogram data.
Viewing an NTSC full color bar signal image. Video picture mode contains automatic
contrast and brightness settings as well as manual controls.
Video design and development
Power analysis (optional)
Many video engineers have remained loyal to analog oscilloscopes,
believing the intensity gradations on an analog display are the only way to
see certain video waveform details. The fast waveform capture rate of the
MDO3000, coupled with its intensity-graded view of the signal, provides the
same information-rich display as an analog oscilloscope, but with much
more detail and all the benefits of digital scopes.
Ever increasing consumer demands for longer battery-life devices and for
green solutions that consume less power require power-supply designers to
characterize and minimize switching losses to improve efficiency. In
addition, the supply’s power levels, output purity, and harmonic feedback
into the power line must be characterized to comply with national and
regional power quality standards. Historically, making these and many
other power measurements on an oscilloscope has been a long, manual,
and tedious process. The MDO3000’s optional power analysis tools greatly
simplify these tasks, enabling quick, repeatable and accurate analysis of
power quality, switching loss, harmonics, safe operating area (SOA),
modulation, ripple, and slew rate (di/dt, dv/dt). Completely integrated into
the oscilloscope, the power analysis tools provide automated, repeatable
power measurements with a touch of a button.
Standard features such as IRE and mV graticules, holdoff by fields, video
polarity, HDTV and custom (nonstandard) video triggers, and an Autoset
smart enough to detect video signals, make these the easiest to use
oscilloscopes on the market for video applications. And with high
bandwidth, four analog inputs, and a built-in 75 Ω input termination (not
available on 1 GHz models), the oscilloscope provides ample performance
for analog and digital video use. There is even a video picture mode
enabling you to see the picture of the video signal you are viewing – for
NTSC and PAL signals.
Power Quality measurement table. Automated power measurements enable quick and
accurate analysis of common power parameters.
Viewing an NTSC video signal. Notice the intensity-graded view provided by the
MDO3000's ability to represent time, amplitude, and distribution over time.
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Datasheet
Limit/Mask testing (optional)
TekVPI® probe interface
A common task during the development process is characterizing the
behavior of certain signals in a system. One method, called limit testing, is
to compare a tested signal to a known good or "golden" version of the
same signal with user-defined vertical and horizontal tolerances. Another
common method, called mask testing, is to compare a tested signal to a
mask, looking for where a signal under test violates the mask. The
MDO3000 Series offers both limit and mask testing capability useful for
long-term signal monitoring, characterizing signals during design, or testing
on a production line. Tailor a test to your specific requirements by defining
test duration in number of waveforms or time, a violation threshold that
must be met before considering a test a failure, counting hits along with
statistical information, and actions upon violations, test failure, and test
complete. Whether specifying a mask from a known good signal or from a
custom mask, conducting pass/fail tests in search of waveform anomalies
such as glitches has never been easier.
The TekVPI probe interface sets the standard for ease of use in probing. In
addition to the secure, reliable connection that the interface provides,
TekVPI probes feature status indicators and controls, as well as a probe
menu button right on the comp box itself. This button brings up a probe
menu on the oscilloscope display with all relevant settings and controls for
the probe. The TekVPI interface enables direct attachment of current
probes without requiring a separate power supply. TekVPI probes can be
controlled remotely through USB, GPIB, or LAN, enabling more versatile
solutions in ATE environments. The TekVPI inputs provide up to 25 W of
power to the front panel connectors from the internal power supply.
TekVPI probe interface simplifies connecting your probes to the oscilloscope.
Limit Test showing a mask created from a golden waveform and compared against a live
signal. Results showing statistical information about the test are displayed.
Standard passive voltage probes
The MDO3000 Series include passive voltage probes with industry best
capacitive loading of only 3.9 pF. The included TPP probes minimize the
impact on devices under test and accurately deliver signals to the
oscilloscope for acquisition and analysis. The following table shows which
TPP probes come standard with each MDO3000 model.
MDO3000 model
Included probe
MDO3012, MDO3014,
MDO3022, MDO3024
TPP0250: 250 MHz, 10x passive voltage
probe. One per analog channel
MDO3032, MDO3034,
MDO3052, MDO3054
TPP0500B: 500 MHz, 10x passive
voltage probe. One per analog channel
MDO3102, MDO3104
TPP1000: 1 GHz, 10x passive voltage
probe. One per analog channel
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Remote connectivity and instrument control
Exporting data and measurements is as simple as connecting a USB cable
from the oscilloscope to your PC. Key software applications –
OpenChoice® Desktop, and Microsoft Excel and Word toolbars – are
included standard with each oscilloscope to enable fast and easy direct
communication with your Windows PC.
The included OpenChoice Desktop enables fast and easy communication
between the oscilloscope and your PC through USB or LAN for transferring
settings, waveforms, and screen images.
The embedded e*Scope® capability enables fast control of the oscilloscope
over a network connection through a standard web browser. Simply enter
the IP address or network name of the oscilloscope and a web page will be
served to the browser. Transfer and save settings, waveforms,
measurements, and screen images or make live control changes to settings
on the oscilloscope directly from the web browser.
Mixed Domain Osciloscopes -- MDO3000 Series
e*Scope in a web browser showing the display of an MDO3000. Use e*Scope to quickly
document your work by saving screen images, waveforms, or setups for later use.
Spectrum Analyzer
The MDO3000 is the first oscilloscope in its class to include an integrated
spectrum analyzer. Each oscilloscope includes a spectrum analyzer with a
frequency range of 9 kHz up to the analog bandwidth of the instrument. The
spectrum analyzer frequency range of each instrument can be upgraded
from 9 kHz to 3 GHz (option MDO3SA), enabling spectral analysis on most
consumer wireless standards.
Fast and accurate spectral analysis
Key spectral parameters are adjusted quickly with the dedicated front-panel menus and
keypad.
When using the spectrum analyzer input, the MDO3000 Series display
becomes a full-screen Frequency Domain view.
Intelligent, efficient markers
Key spectral parameters such as Center Frequency, Span, Reference
Level, and Resolution Bandwidth are all adjusted quickly and easily using
the dedicated front-panel menus and keypad.
In a traditional spectrum analyzer, it can be a very tedious task to turn on
and place enough markers to identify all your peaks of interest. The
MDO3000 Series makes this process far more efficient by automatically
placing markers on peaks that indicate both the frequency and the
amplitude of each peak. You can adjust the criteria that the oscilloscope
uses to automatically find the peaks.
The highest amplitude peak is referred to as the reference marker and is
shown in red. Marker readouts can be switched between Absolute and
Delta readouts. When Delta is selected, marker readouts show each peak's
delta frequency and delta amplitude from the reference marker.
MDO3000 frequency domain display.
Two manual markers are also available for measuring non-peak portions of
the spectrum. When enabled, the reference marker is attached to one of
the manual markers, enabling delta measurements from anywhere in the
spectrum. In addition to frequency and amplitude, manual marker readouts
also include noise density and phase noise readouts depending on whether
Absolute or Delta readouts are selected. A "Reference Marker to Center"
function instantly moves the frequency indicated by the reference marker to
center frequency.
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Datasheet
Ultra-wide capture bandwidth
Today's wireless communications vary significantly with time, using
sophisticated digital modulation schemes and, often, transmission
techniques that involve bursting the output. These modulation schemes can
have very wide bandwidth as well. Traditional swept or stepped spectrum
analyzers are ill equipped to view these types of signals as they are only
able to look at a small portion of the spectrum at any one time.
Automated peak markers identify critical information at a glance. As shown here, the five
highest amplitude peaks that meet the threshold and excursion criteria are automatically
marked along with the peak's frequency and amplitude.
Spectrogram
The MDO3000 Series includes a spectrogram display which is ideal for
monitoring slowly changing RF phenomena. The x-axis represents
frequency, just like a typical spectrum display. However, the y-axis
represents time, and color is used to indicate amplitude.
The amount of spectrum acquired in one acquisition is called the capture
bandwidth. Traditional spectrum analyzers sweep or step the capture
bandwidth through the desired span to build the requested image. As a
result, while the spectrum analyzer is acquiring one portion of the spectrum,
the event you care about may be happening in another portion of the
spectrum. Most spectrum analyzers on the market today have 10 MHz
capture bandwidths, sometimes with expensive options to extend that to
20, 40, or even 160 MHz in some cases.
In order to address the bandwidth requirements of modern RF, the
MDO3000 Series provides up to 3 GHz of capture bandwidth. The
spectrum is generated from a single acquisition, thus guaranteeing you'll
see the events you're looking for in the frequency domain.
Spectrogram slices are generated by taking each spectrum and "flipping it
up on its edge" so that it's one pixel row tall, and then assigning colors to
each pixel based on the amplitude at that frequency. Cold colors (blue,
green) are low amplitude and hotter colors (yellow, red) are higher
amplitude. Each new acquisition adds another slice at the bottom of the
spectrogram and the history moves up one row. When acquisitions are
stopped, you can scroll back through the spectrogram to look at any
individual spectrum slice.
Spectral display of a bursted communication both into a device through Zigbee at
900 MHz and out of the device through Bluetooth at 2.4 GHz, captured with a single
acquisition.
Spectrum traces
The MDO3000 Series spectrum analyzer offers four different traces or
views including Normal, Average, Max Hold, and Min Hold.
Spectrogram display illustrates slowly moving RF phenomena. As shown here, a signal
that has multiple peaks is being monitored. As the peaks change in both frequency and
amplitude over time, the changes are easily seen in the Spectrogram display.
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Mixed Domain Osciloscopes -- MDO3000 Series
RF probing
Signal input methods on spectrum analyzers are typically limited to cabled
connections or antennas. But with the optional TPA-N-VPI adapter, any
active, 50 Ω TekVPI probe can be used with the spectrum analyzer on the
MDO3000 Series. This enables additional flexibility when hunting for noise
sources and enables easier spectral analysis by using true signal browsing
on a spectrum analyzer input.
In addition, an optional preamplifier accessory assists in the investigation of
lower-amplitude signals. The TPA-N-PRE preamplifier provides 10 dB
nominal gain across the 9 kHz – 3 GHz frequency range.
Normal, Average, Max Hold, and Min Hold spectrum traces
RF measurements
The MDO3000 Series includes three automated RF measurements Channel Power, Adjacent Channel Power Ratio, and Occupied Bandwidth.
When one of these RF measurements is activated, the oscilloscope
automatically turns on the Average spectrum trace and sets the detection
method to Average for optimal measurement results.
The optional TPA-N-VPI adapter enables any active, 50 Ω TekVPI probe to be
connected to the RF input.
Arbitrary Function Generator (optional)
The MDO3000 contains an optional integrated arbitrary function generator
(option MDO3AFG), perfect for simulating sensor signals within a design or
adding noise to signals to perform margin testing.
Automated Channel Power measurement
Advanced RF analysis
The MDO3000 can save the baseband I and Q data from spectrum
analyzer acquisitions to a .TIQ file. These files can then be imported into
Tektronix SignalVu-PC software for general purpose modulation and pulse
analysis or RSAVu for analysis of commercial wireless standards.
The integrated function generator provides output of predefined waveforms
up to 50 MHz for sine, square, pulse, ramp/triangle, DC, noise, sin(x)/x
(Sinc), Gaussian, Lorentz, exponential rise/fall, Haversine and cardiac.
The arbitrary waveform generator provides 128 k points of record for
storing waveforms from the analog input, a saved internal file location, a
USB mass storage device, or from an external PC. Once a waveform is in
the edit memory of the arbitrary waveform generator, it can be modified via
an on-screen editor and then replicated out of the generator. The
MDO3000 is compatible with Tektronix’ ArbExpress PC-based waveform
creation and editing software, making creation of complex waveforms fast
and easy. Transfer waveform files to your MDO3000 edit memory via USB
or LAN or using a USB mass storage device to be output from the AFG in
the oscilloscope.
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Datasheet
Color-coded digital waveform display
Color-coded digital traces display ones in green and zeros in blue. This
coloring is also used in the digital channel monitor. The monitor shows if
signals are high, low, or are transitioning so you can see channel activity at
a glance without having to clutter your display with unneeded digital
waveforms.
Waveform type selection in the integrated AFG.
The multiple transition detection hardware shows you a white edge on the
display when the system detects multiple transitions. White edges indicate
that more information is available by zooming in or acquiring at faster
sampling rates. In most cases zooming in will reveal the pulse that was not
viewable with the previous settings. If the white edge is still present after
zooming in as far as possible, this indicates that increasing the sample rate
on the next acquisition will reveal higher frequency information than the
previous settings could acquire.
You can group digital waveforms and enter waveform labels by using a
USB keyboard. By simply placing digital waveforms next to each other, they
form a group.
Arbitrary waveform editor showing the point-by-point editor.
Logic Analyzer (optional)
The logic analyzer (option MDO3MSO) provides 16 digital channels which
are tightly integrated into the oscilloscope's user interface. This simplifies
operation and makes it possible to solve mixed-signal issues easily.
With color-coded digital waveform display, groups are created by simply placing digital
channels together on the screen, allowing digital channels to be moved as a group.
Once a group is formed, you can position all the channels contained in that
group collectively. This greatly reduces the normal setup time associated
with positioning channels individually
MagniVu™ high-speed acquisition
The MDO3000 with MDO3MSO option provides 16 integrated digital channels enabling
you to view and analyze time-correlated analog and digital signals.
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The main digital acquisition mode on the MDO3000 Series will capture up
to 10 M at 500 MS/s (2 ns resolution). In addition to the main record, the
MDO3000 provides an ultra high-resolution record called MagniVu which
acquires 10,000 points at up to 8.25 GS/s (121.2 ps resolution). Both main
and MagniVu waveforms are acquired on every trigger and can be switched
between in the display at any time, running or stopped. MagniVu provides
significantly finer timing resolution than comparable oscilloscopes on the
market, instilling confidence when making critical timing measurements on
digital waveforms.
Mixed Domain Osciloscopes -- MDO3000 Series
Serial Protocol Triggering and Analysis
(optional)
On a serial bus, a single signal often includes address, control, data, and
clock information. This can make isolating events of interest difficult.
Automatic trigger, decode, and search on bus events and conditions gives
you a robust set of tools for debugging serial buses.
The MagniVu high-resolution record provides 121.2 ps timing resolution, enabling you to
take critical timing measurements on your digital waveforms.
P6316 MSO probe
This unique probe design offers two eight-channel pods, simplifying the
process of connecting to the device-under-test. When connecting to square
pins, the P6316 can connect directly to 8×2 square pin headers spaced on
tenth-inch centers. When more attachment flexibility is required, you can
use the included flying lead sets and grabbers to clip onto surface mount
devices or test points. The P6316 offers outstanding electrical
characteristics applying only 8 pF of capacitive loading with 101 kΩ input
impedance.
Triggering on a specific address and data packet going across an I2C bus. The yellow
waveform is clock and the blue waveform is the data. A bus waveform provides decoded
packet content including Start, Address, Read/Write, Data, and Stop.
Serial triggering
Trigger on packet content such as start of packet, specific addresses,
specific data content, unique identifiers, etc. on popular serial interfaces
such as I2C, SPI, RS-232/422/485/UART, USB2.0, CAN, LIN, FlexRay,
MIL-STD-1553, and I2S/LJ/RJ/TDM.
Bus display
Provides a higher-level, combined view of the individual signals (clock,
data, chip enable, etc.) that make up your bus, making it easy to identify
where packets begin and end and identifying sub-packet components such
as address, data, identifier, CRC, etc.
Bus decoding
The P6316 MSO probe offers two eight-channel pods to simplify connecting to your
device.
Tired of having to visually inspect the waveform to count clocks, determine
if each bit is a 1 or a 0, combine bits into bytes, and determine the hex
value? Let the oscilloscope do it for you! Once you’ve set up a bus, the
MDO3000 Series will decode each packet on the bus, and display the value
in hex, binary, decimal (USB, LIN, FlexRay, and MIL-STD-1553 only),
signed decimal (I2S/LJ/RJ/TDM only), or ASCII (USB, MIL-STD-1553 and
RS-232/422/485/UART only) in the bus waveform.
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Datasheet
Serial bus technologies supported by the MDO3000
Technology
Trigger, Decode,
Search
Order product
I2C
Yes
MDO3EMBD
SPI
Yes
MDO3EMBD
Computer
RS232/422/485,
UART
Yes
MDO3COMP
USB
USB LS, FS, HS
Yes (trigger on LS
and FS only; HS
decode only on
1 GHz models)
MDO3USB
CAN
Yes
MDO3AUTO
LIN
Yes
MDO3AUTO
Embedded
Automotive
FlexRay
Yes
MDO3FLEX
Military and
aerospace
MIL-STD-1553
Yes
MDO3AERO
Audio
I2S
Yes
MDO3AUDIO
LJ, RJ
Yes
MDO3AUDIO
TDM
Yes
MDO3AUDIO
Search (serial triggering)
Serial triggering is very useful for isolating the event of interest, but once
you’ve captured it and need to analyze the surrounding data, what do you
do? In the past, users had to manually scroll through the waveform
counting and converting bits and looking for what caused the event. You
can have the oscilloscope automatically search through the acquired data
for user-defined criteria including serial packet content. Each occurrence is
highlighted by a search mark. Rapid navigation between marks is as simple
as pressing the Previous (←) and Next (→) buttons on the front panel.
Digital Voltmeter (DVM) and Frequency
Counter
The MDO3000 contains an integrated 4-digit digital voltmeter (DVM) and 5digit frequency counter. Any of the analog inputs can be a source for the
voltmeter, using the same probes that are already attached for general
oscilloscope usage. The easy-to-read display offers you both numeric and
graphical representations of the changing measurement values. The
display also shows minimum, maximum, and average values of the
measurement as well as the range of values measured over the previous
five second interval. The DVM and frequency counter is available on any
MDO3000 and is activated when you register your product.
Event table
In addition to seeing decoded packet data on the bus waveform itself, you
can view all captured packets in a tabular view much like you would see in
a software listing. Packets are time stamped and listed consecutively with
columns for each component (Address, Data, etc.). You can save the event
table data in .CSV format.
A DC measurement value is shown with a five second variation along with minimum,
maximum, and average voltage values. The frequency of the waveform is also shown.
Event table showing decoded identifier, DLC, DATA, and CRC for every CAN packet in a
long acquisition.
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Mixed Domain Osciloscopes -- MDO3000 Series
Designed to fit into your work environment
Compact form factor
With the compact, portable form factor, you can easily move the
oscilloscope between labs. And with a depth of just 5.8 inches (147 mm), it
saves you valuable space on your test bench. The MDO3000 has all the
tools you'll need for everyday debug tasks, all in a single instrument.
The MDO3000 is designed to fit into your work environment. With six instruments in one
small, portable package, the MDO3000 offers a unique combination of debug tools
without taking up valuable space on your bench.
Large high-resolution display
The MDO3000 Series compact form factor frees up valuable space on your bench or
desktop while making sure you will always have the debug tools you need.
The MDO3000 Series features a 9 inch (229 mm) wide-screen, highresolution (800 × 480 WVGA) display for seeing intricate signal details.
Connectivity
The MDO3000 contains a number of ports which can be used to connect
the instrument to a network, directly to a PC, or other test equipment.
Front and rear USB host ports enable easy transfer of screen shots,
instrument settings, and waveform data to a USB mass storage device.
A USB keyboard can also be attached to a USB host port for data
entry.
Rear USB device port is useful for controlling the oscilloscope remotely
from a PC or for printing directly to a PictBridge®-compatible printer.
The standard 10/100 Ethernet port on the rear of the instrument
enables easy connection to networks, provides network and e-mail
printing, and provides LXI Core 2011 compatibility.
A video out port on the rear of the instrument allows the display to be
exported to an external monitor or projector.
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Datasheet
Specifications
All specifications apply to all models unless noted otherwise.
MDO3012
MDO3014
MDO3022
MDO3024
MDO3032
MDO3034
MDO3052
MDO3054
MDO3102
MDO3104
2
4
2
4
2
4
2
4
2
4
Analog channel bandwidth 100 MHz
100 MHz
200 MHz
200 MHz
350 MHz
350 MHz
500 MHz
500 MHz
1 GHz
1 GHz
Rise time
(10 mV/div setting with
50Ω input termination)
4 ns
4 ns
2 ns
2 ns
1.14 ns
1.14 ns
800 ps
800 ps
400 ps
400 ps
Sample rate (1 ch)
2.5 GS/s
2.5 GS/s
2.5 GS/s
2.5 GS/s
2.5 GS/s
2.5 GS/s
2.5 GS/s
2.5 GS/s
5 GS/s
5 GS/s
Sample rate (2 ch)
2.5 GS/s
2.5 GS/s
2.5 GS/s
2.5 GS/s
2.5 GS/s
2.5 GS/s
2.5 GS/s
2.5 GS/s
5 GS/s
5 GS/s
Sample rate (4 ch)
-
2.5 GS/s
-
2.5 GS/s
-
2.5 GS/s
-
2.5 GS/s
-
2.5 GS/s
Record length (1 ch)
10 M
10 M
10 M
10 M
10 M
10 M
10 M
10 M
10 M
10 M
Record length (2 ch)
10 M
10 M
10 M
10 M
10 M
10 M
10 M
10 M
10 M
10 M
Record length (4 ch)
-
10 M
-
10 M
-
10 M
-
10 M
-
10 M
Digital channels with
MDO3MSO option
16
16
16
16
16
16
16
16
16
16
Arbitrary Function
Generator outputs with
MDO3AFG option
1
1
1
1
1
1
1
1
1
1
Spectrum analyzer
channels
1
1
1
1
1
1
1
1
1
1
Standard spectrum
9 kHz analyzer frequency range 100 MHz
9 kHz 100 MHz
9 kHz 200 MHz
9 kHz 200 MHz
9 kHz 350 MHz
9 kHz 350 MHz
9 kHz 500 MHz
9 kHz 500 MHz
9 kHz 1 GHz
9 kHz 1 GHz
Optional spectrum
9 kHz analyzer frequency range 3 GHz
with MDO3SA option
9 kHz 3 GHz
9 kHz 3 GHz
9 kHz 3 GHz
9 kHz 3 GHz
9 kHz 3 GHz
9 kHz 3 GHz
9 kHz 3 GHz
9 kHz 3 GHz
9 kHz 3 GHz
Analog channels
Vertical system analog channels
Hardware bandwidth limits
≥350 MHz models
20 MHz or 250 MHz
100 MHz and 200 MHz models
20 MHz
Input coupling
AC, DC
Input impedance
1 MΩ ±1%, 50 Ω ±1%, 75 Ω ±1%; 75 Ω not available on 1 GHz models
Input sensitivity range
1 MΩ
1 mV/div to 10 V/div
50 Ω, 75 Ω
1 mV/div to 1 V/div
Vertical resolution
8 bits (11 bits with Hi Res)
Maximum input voltage
1 MΩ
300 VRMS CAT II with peaks ≤ ±425 V
50 Ω, 75 Ω
5 VRMS with peaks ≤ ±20 V
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Mixed Domain Osciloscopes -- MDO3000 Series
Vertical system analog channels
DC gain accuracy
±1.5% for 5 mV/div and above, derated at 0.10%/°C above 30 °C
±2.0% for 2 mV/div, derated at 0.10%/°C above 30 °C
±2.5% for 1 mV/div, derated at 0.10%/°C above 30 °C
±3.0% for variable gain, derated 0.10%/°C above 30 °C
Channel-to-channel isolation
Offset range
Any two channels at equal vertical scale ≥100:1 at ≤100 MHz and ≥30:1 at >100 MHz up to the rated bandwidth
Volts/div setting
Offset range
1 M Ω input
50 Ω, 75 Ω input
1 mV/div to 50 mV/div
±1 V
±1 V
50.5 mV/div to 99.5 mV/div
±0.5 V
±0.5 V
100 mV/div to 500 mV/div
±10 V
±10 V
505 mV/div to 995 mV/div
±5 V
±5 V
1 V/div to 5 V/div
±100 V
±5 V
Vertical system digital channels
(Requires MDO3MSO option)
Input channels
16 digital (D15 to D0)
Thresholds
Threshold per set of 8 channels
Threshold selections
TTL, CMOS, ECL, PECL, User-defined
User-defined threshold range
-15 V to +25 V
Maximum input voltage
-20 V to +30 V
Threshold accuracy
±[100 mV + 3% of threshold setting]
Input dynamic range
50 Vp-p (threshold setting dependent)
Minimum voltage swing
500 mV
Input resistance
101 kΩ
Probe loading
8 pF
Vertical resolution
1 bit
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Datasheet
Horizontal system analog channels
Time base range
1 GHz models
400 ps/div to 1000 s/div
≤ 500 MHz models
1 ns/div to 1000 s/div
Maximum duration at highest
sample rate (all/half channels)
1 GHz models
4/2 ms
≤ 500 MHz models
4/4 ms
Time-base delay time range
-10 divisions to 5000 s
Channel-to-channel deskew range
±125 ns
Time base accuracy
±10 ppm over any ≥1 ms interval
Horizontal system digital channels
(Requires MDO3MSO option)
Maximum sample rate (Main)
500 MS/s (2 ns resolution)
Maximum record length (Main)
10 M
Maximum sample rate (MagniVu)
8.25 GS/s (121.2 ps resolution)
Maximum record length (MagniVu
10k centered on the trigger
Minimum detectable pulse width
(typical)
2 ns
Channel-to-channel skew (typical)
500 ps
Maximum input toggle rate
250 MHz (Maximum frequency sine wave that can accurately be reproduced as a logic square wave. Requires the use of a short
ground extender on each channel. This is the maximum frequency at the minimum swing amplitude. Higher toggle rates can be
achieved with higher amplitudes.)
Spectrum analyzer input
Capture bandwidth
MDO3012, MDO3014 models: 100 MHz
MDO3022, MDO3024 models: 200 MHz
MDO3032, MDO3034 models: 350 MHz
MDO3052, MDO3054 models: 500 MHz
MDO3102, MDO3104 models: 1 GHz
All models: 3 GHz with option MDO3SA
Span
MDO3012, MDO3014 models: 9 kHz – 100 MHz
MDO3022, MDO3024 models: 9 kHz – 200 MHz
MDO3032, MDO3034 models: 9 kHz – 350 MHz
MDO3052, MDO3054 models: 9 kHz – 500 MHz
MDO3102, MDO3104 models: 9 kHz – 1 GHz
All models: 9 kHz – 3 GHz with option MDO3SA, in a 1-2-5 sequence
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Mixed Domain Osciloscopes -- MDO3000 Series
Spectrum analyzer input
Resolution bandwidth
20 Hz - 150 MHz in a 1-2-3-5 sequence
Reference level
-130 dBm to +20 dBm in steps of 5 dBm
Vertical scale
1 dB/div to 20 dB/div in a 1-2-5 sequence
Vertical position
-100 divs to +100 divs (displayed in dB)
Vertical units
dBm, dBmV, dBµV, dBµW, dBmA, dBµA
Displayed average noise level
(DANL)
9 kHz - 50 kHz
< -109 dBm/Hz (< -113 dBm/Hz typical)
50 kHz – 5 MHz
< -126 dBm/Hz (< -130 dBm/Hz typical)
5 MHz - 2 GHz
< -138 dBm/Hz (< -142 dBm/Hz typical)
2 GHz – 3 GHz
< -128 dBm/Hz (< -132 dBm/Hz typical)
DANL with TPA-N-PRE preamp
attached
Preamp set to "Auto", and Reference Level set to -40 dB
9 kHz - 50 kHz
< -117 dBm/Hz (< -121 dBm/Hz typical)
50 kHz – 5 MHz
< -136 dBm/Hz (< -140 dBm/Hz typical)
5 MHz - 2 GHz
< -148 dBm/Hz (< -152 dBm/Hz typical)
2 GHz – 3 GHz
< -138 dBm/Hz (< -142 dBm/Hz typical)
Spurious response
2nd harmonic distortion
(>100 MHz)
< -55 dBc (< -60 dBc typical)
3rd harmonic distortion
(>100MHz)
< -53 dBc (< -58 dBc typical)
2nd order intermodulation
distortion (>15 MHz)
< -55 dBc (< -60 dBc typical)
3rd order intermodulation
distortion (>15 MHz)
< -55 dBc (< -60 dBc typical)
Residual response
< -78 dBm (≤ -15 dBm reference level and RF input terminated with 50Ω)
At 2.5 GHz
<-67 dBm
At 1.25 GHz
<-76 dBm
Crosstalk to spectrum analyzer
from oscilloscope channels
≤800 MHz input frequencies
< -60 dB from ref level (typical)
>800 MHz - 2 GHz input
frequencies
< -40 dB from ref level (typical)
Phase noise at 1 GHz CW
10 kHz
< -81 dBc/Hz, < -85 dBc/Hz (typical)
100 kHz
< -97 dBc/Hz, < -101 dBc/Hz (typical)
1 MHz
< -118 dBc/Hz, < -122 dBc/Hz (typical)
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Datasheet
Spectrum analyzer input
Level measurement uncertainty
Reference level 10 dBm to -15 dBm. Input level ranging from reference level to 40 dB below reference level. Specifications
exclude mismatch error.
18 °C - 28 °C
< ±1.2 dBm (< ±0.6 dBm typical)
Over operating range
< ±2.0 dBm
Level measurement uncertainty
with TPA-N-PRE preamp attached
Preamp mode set to “Auto”. Reference level 10 dBm set to -40dBm. Input level ranging from reference level to 30 dB below
reference level. Specifications exclude mismatch error.
18 °C - 28 °C
< ±1.5 dBm (typical) either preamp state
Over operating range
< ±2.3 dBm either preamp state
Frequency measurement accuracy ±(([Reference Frequency Error] x [Marker Frequency]) + (span/750 + 2)) Hz; Reference Frequency Error = 10ppm (10 Hz / MHz)
Maximum operating input level
Average continuous power
+20 dBm (0.1 W)
DC maximum before damage
±40 V DC
Maximum power before
damage (CW)
+33 dBm (2 W)
Maximum power before
damage (pulse)
+45 dBm (32 W) (<10 µs pulse width, <1% duty cycle, and reference level of ≥ +10 dBm)
Maximum operating input level
with TPA-N-PRE preamp attached
Average continuous power
+20 dBm (0.1 W)
DC maximum before damage
±20 V DC
Maximum power before
damage (CW)
+30 dBm (1 W)
Maximum power before
damage (pulse)
+45 dBm (32 W) (<10 μs pulse width, <1% duty cycle, and reference level of ≥ +10 dBm)
Frequency domain trace types
Normal, Average, Max Hold, Min Hold
Detection methods
+Peak, -Peak, Average, Sample
Automatic markers
One to eleven peaks identified based on user-adjustable threshold and excursion values
Manual markers
Two manual markers indicating frequency, amplitude, noise density, and phase noise
Marker readouts
Absolute or Delta
FFT windows
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FFT window
Factor
Kaiser
2.23
Rectangular
0.89
Hamming
1.30
Hanning
1.44
Blackman-Harris
1.90
Flat-Top
3.77
Mixed Domain Osciloscopes -- MDO3000 Series
Trigger system
Trigger modes
Auto, Normal, and Single
Trigger coupling
DC, AC, HF reject (attenuates >50 kHz), LF reject (attenuates <50 kHz), noise reject (reduces sensitivity)
Trigger holdoff range
20 ns to 8 s
Trigger sensitivity (typical)
Edge type, DC coupled
Trigger source
Sensitivity
Any analog channel input
For 1 mV/div to 4.98 mV/div; 0.75 div from DC to 50 MHz,
increasing to 1.3 div at instrument bandwidth
≥ 5mV/div: 0.40 div from DC to 50 MHz
Aux In (External); available on two-channel instruments only
200 mV from DC to 50 MHz, increasing to 500 mV at 200 M
Line
Fixed
Trigger level ranges
Any input channel
±8 divisions from center of screen, ±8 divisions from 0 V when vertical LF reject trigger coupling is selected
Aux In (External)
±8 V
Line
The line trigger level is fixed at about 50% of the line voltage.
Trigger frequency readout
Provides 6-digit frequency readout of triggerable events.
Trigger types
Edge
Positive, negative, or either slope on any channel. Coupling includes DC, AC, HF reject, LF reject, and noise reject.
Sequence (B-trigger)
Trigger Delay by Time: 8 ns to 8 s. Or Trigger Delay by Events: 1 to 4,000,000 events. Not available when “Either” edge is
selected.
Pulse Width
Trigger on width of positive or negative pulses that are >, <, =, ≠, or inside/outside a specified period of time.
Timeout
Trigger on an event which remains high, low, or either, for a specified time period (4 ns to 8 s).
Runt
Trigger on a pulse that crosses one threshold but fails to cross a second threshold before crossing the first again.
Logic
Trigger when any logical pattern of channels goes false or stays true for specified period of time. Any input can be used as a clock
to look for the pattern on a clock edge. Pattern (AND, OR, NAND, NOR) specified for all input channels defined as High, Low, or
Don’t Care.
Setup and Hold
Trigger on violations of both setup time and hold time between clock and data present on any of the analog and digital input
channels.
Setup and hold trigger type
Description
Setup Time Range
-0.5 ns to 1.024 ms
Hold Time Range
1.0 ns to 1.024 ms
Setup + Hold Time Range
0.5 ns to 2.048 ms
Rise/Fall Time
Trigger on pulse edge rates that are faster or slower than specified. Slope may be positive, negative, or either and time range is
4.0 ns to 8 s.
Video
Trigger on all lines, odd, even, or all fields on NTSC, PAL, and SECAM video signals.
480p/60, 576p/50, 720p/30, 720p/50, 720p/60, 875i/60, 1080i/50, 1080i/60, 1080p/24, 1080p/24sF, 1080p/25, 1080p/30,
1080p/50, 1080p/60
Custom bi-level and tri-level sync video standards.
I2C
(optional)
Trigger on Start, Repeated Start, Stop, Missing ACK, Address (7 or 10 bit), Data, or Address and Data on I2C buses up to 10 Mb/s.
SPI (optional)
Trigger on SS active, Start of Frame, MOSI, MISO, or MOSI and MISO on SPI buses up to 50.0 Mb/s.
RS-232/422/485/UART
(optional)
Trigger on Tx Start Bit, Rx Start Bit, Tx End of Packet, Rx End of Packet, Tx Data, Rx Data, Tx Parity Error, and Rx Parity Error up
to 10 Mb/s.
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Datasheet
Trigger system
USB: Low speed (optional)
Trigger on Sync Active, Start of Frame, Reset, Suspend, Resume, End of Packet, Token (Address) Packet, Data Packet,
Handshake Packet, Special Packet, Error.
Token packet trigger - Any token type, SOF, OUT, IN, SETUP; Address can be specified for Any Token, OUT, IN, and SETUP
token types. Address can be further specified to trigger on ≤, <, =, >, ≥, ≠ a particular value, or inside or outside of a range. Frame
number can be specified for SOF token using binary, hex, unsigned decimal and don't care digits.
Data packet trigger - Any data type, DATA0, DATA1; Data can be further specified to trigger on ≤, <, =, >, ≥, ≠ a particular data
value, or inside or outside of a range.
Handshake packet trigger - Any handshake type, ACK, NAK, STALL.
Special packet trigger - Any special type, Reserved
Error trigger - PID Check, CRC5 or CRC16, Bit Stuffing.
USB: Full speed (optional)
Trigger on Sync, Reset, Suspend, Resume, End of Packet, Token (Address) Packet, Data Packet, Handshake Packet, Special
Packet, Error.
Token packet trigger - Any token type, SOF, OUT, IN, SETUP; Address can be specified for Any Token, OUT, IN, and SETUP
token types. Address can be further specified to trigger on ≤, <, =, >, ≥, ≠ a particular value, or inside or outside of a range. Frame
number can be specified for SOF token using binary, hex, unsigned decimal and don't care digits.
Data packet trigger - Any data type, DATA0, DATA1; Data can be further specified to trigger on ≤, <, =, >, ≥, ≠ a particular data
value, or inside or outside of a range.
Handshake packet trigger - Any handshake type, ACK, NAK, STALL.
Special packet trigger - Any special type, PRE, Reserved.
Error trigger - PID Check, CRC5 or CRC16, Bit Stuffing.
CAN (optional)
Trigger on Start of Frame, Frame Type (data, remote, error, overload), Identifier (standard or extended), Data, Identifier and Data,
End of Frame, Missing ACK, or Bit Stuffing Error on CAN signals up to 1 Mb/s.
Data can be further specified to trigger on ≤, <, =, >, ≥, or ≠ a specific data value. User-adjustable sample point is set to 50% by
default.
LIN (optional)
Trigger on Sync, Identifier, Data, Identifier and Data, Wakeup Frame, Sleep Frame, Errors such as Sync, Parity, or Checksum
Errors up to 100 kb/s (by LIN definition, 20 kb/s).
FlexRay (optional)
Trigger on Start of Frame, Type of Frame (Normal, Payload, Null, Sync, Startup), Identifier, Cycle Count, Complete Header Field,
Data, Identifier and Data, End of Frame or Errors such as Header CRC, Trailer CRC, Null Frame, Sync Frame, or Startup Frame
Errors up to 100 Mb/s.
MIL-STD-1553 (optional)
Trigger on Sync, Word Type 1 (Command, Status, Data), Command Word (set RT Address, T/R, Sub-address/Mode, Data Word
Count/Mode Code, and Parity individually), Status Word (set RT Address, Message Error, Instrumentation, Service Request Bit,
Broadcast Command Received, Busy, Subsystem Flag, Dynamic Bus Control Acceptance (DBCA), Terminal Flag, and Parity
individually), Data Word (user-specified 16-bit data value), Error (Sync, Parity, Manchester, Non-contiguous data), Idle Time
(minimum time selectable from 2 µs to 100 µs; maximum time selectable from 2 µs to 100 µs; trigger on < minimum, > maximum,
inside range, outside range).
RT Address can be further specified to trigger on =, ≠, <, >, ≤, ≥ a particular value, or inside or outside of a range.
I2S/LJ/RJ/TDM (optional)
Trigger on Word Select, Frame Sync, or Data. Data can be further specified to trigger on ≤, <, =, >, ≥, ≠ a specific data value, or
inside or outside of a range. Maximum data rate for I2S/LJ/RJ is 12.5 Mb/s. Maximum data rate for TDM is 25 Mb/s.
Parallel (available when
Trigger on a parallel bus data value. Parallel bus can be from 1 to 20 bits (from the digital and analog channels) in size. Binary and
option MDO3MSO is installed) Hex radices are supported.
1
Trigger selection of Command Word will trigger on Command and ambiguous Command/Status words. Trigger selection of Status Word will trigger on Status and ambiguous Command/Status words.
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Mixed Domain Osciloscopes -- MDO3000 Series
Acquisition system
Acquisition modes
Sample
Acquire sampled values.
Peak Detect
Captures glitches as narrow as 1.5 ns (1 GHz models), 2.0 ns (500 MHz models), 3.0 ns (350 MHz models), 5.0 ns (200 MHz
models), 7.0 ns (100 MHz models) at all sweep speeds
Averaging
From 2 to 512 waveforms included in average.
Envelope
Min-max envelope reflecting Peak Detect data over multiple acquisitions. Number of waveforms in the envelope selectable
between 1 and 2000 and infinity
Hi Res
Real-time boxcar averaging reduces random noise and increases vertical resolution.
Roll
Scrolls waveforms right to left across the screen at sweep speeds slower than or equal to 40 ms/div.
FastAcq™
FastAcq optimizes the instrument for analysis of dynamic signals and capture of infrequent events, capturing >280,000 wfms/s on
1 GHz models and >235,000 wfms/s on 100 MHz – 500 MHz models.
Waveform measurements
Cursors
Waveform and Screen
Automatic measurements
(time domain)
30, of which up to four can be displayed on-screen at any one time. Measurements include: Period, Frequency, Delay, Rise Time,
Fall Time, Positive Duty Cycle, Negative Duty Cycle, Positive Pulse Width, Negative Pulse Width, Burst Width, Phase, Positive
Overshoot, Negative Overshoot, Total Overshoot, Peak to Peak, Amplitude, High, Low, Max, Min, Mean, Cycle Mean, RMS, Cycle
RMS, Positive Pulse Count, Negative Pulse Count, Rising Edge Count, Falling Edge Count, Area and Cycle Area.
Automatic Measurements
(frequency domain)
3, of which one can be displayed on-screen at any one time. Measurements include Channel Power, Adjacent Channel Power
Ratio (ACPR), and Occupied Bandwidth (OBW)
Measurement statistics
Mean, Min, Max, Standard Deviation.
Reference levels
User-definable reference levels for automatic measurements can be specified in either percent or units.
Gating
Isolate the specific occurrence within an acquisition to take measurements on, using either the screen or waveform cursors.
Waveform histogram
A waveform histogram provides an array of data values representing the total number of hits inside of a user-defined region of the
display. A waveform histogram is both a visual graph of the hit distribution as well as a numeric array of values that can be
measured.
Sources
Channel 1, Channel 2, Channel 3, Channel 4, Ref 1, Ref 2, Ref 3, Ref 4, Math
Types
Vertical, Horizontal
Waveform histogram
measurements
12, of which up to four can be displayed on-screen at any one time. Waveform Count, Hits in Box, Peak Hits, Median, Max, Min,
Peak-to-Peak, Mean, Standard Deviation, Sigma 1, Sigma 2, Sigma 3
Waveform math
Arithmetic
Add, subtract, multiply, and divide waveforms.
Math functions
Integrate, differentiate, FFT
FFT
Spectral magnitude. Set FFT Vertical Scale to Linear RMS or dBV RMS, and FFT Window to Rectangular, Hamming, Hanning, or
Blackman-Harris.
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Datasheet
Waveform math
Spectrum math
Add or subtract frequency-domain traces.
Advanced Math
Define extensive algebraic expressions including waveforms, reference waveforms, math functions (FFT, Intg, Diff, Log, Exp, Sqrt,
Abs, Sine, Cosine, Tangent, Rad, Deg), scalars, up to two user-adjustable variables and results of parametric measurements
(Period, Freq, Delay, Rise, Fall, PosWidth, NegWidth, BurstWidth, Phase, PosDutyCycle, NegDutyCycle, PosOverShoot,
NegOverShoot, TotalOverShoot, PeakPeak, Amplitude, RMS, CycleRMS, High, Low, Max, Min, Mean, CycleMean, Area,
CycleArea, and trend plots). for example, (Intg(Ch1 - Mean(Ch1)) × 1.414 × VAR1)
Act on Event
Events
None, when a trigger occurs, or when a defined number of acquisitions complete (1 to 1,000,000)
Actions
Stop acquisition, save waveform to file, save screen image, print, AUX OUT Pulse, remote interface SRQ, e-mail notification, and
visual notification
Repeat
Repeat the act on event process (1 to 1,000,000 and infinity)
Video Picture mode
Sources
Channel 1, Channel 2, Channel 3, Channel 4
Video standards
NTSC, PAL
Contrast and brightness
Manual and automatic
Field selection
Odd, Even, Interlaced
Picture location on screen
Selectable X and Y location, width and height adjustment, start line and pixel and line-to-line offset control.
Power measurements (optional)
Power quality measurements
VRMS, VCrest Factor, Frequency, IRMS, ICrest Factor, True Power, Apparent Power, Reactive Power, Power Factor, Phase Angle.
Switching loss measurements
Power loss
Ton, Toff, Conduction, Total.
Energy loss
Ton, Toff, Conduction, Total.
Harmonics
THD-F, THD-R, RMS measurements. Graphical and table displays of harmonics. Test to IEC61000-3-2 Class A and MILSTD-1399, Section 300A.
Ripple measurements
VRipple and IRipple.
Modulation analysis
Graphical display of +Pulse Width, -Pulse Width, Period, Frequency, +Duty Cycle, and -Duty Cycle modulation types.
Safe operating area
Graphical display and mask testing of switching device safe operating area measurements.
dV/dt and dI/dt measurements
Cursor measurements of slew rate
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Mixed Domain Osciloscopes -- MDO3000 Series
Limit/Mask testing (optional)
Test source
Limit test: Any Ch1 - Ch4 or any R1 - R4
Mask test: Any Ch1 - Ch4
Mask creation
Limit test vertical tolerance from 0 to 1 division in 1 m division increments; Limit test horizontal tolerance from 0 to 500 m division in
1 m division increments.
Load custom mask from text file with up to 8 segments.
Mask scaling
Lock to Source ON (mask automatically re-scales with source-channel settings changes)
Lock to Source OFF (mask does not re-scale with source-channel settings changes)
Test criteria run until
Minimum number of waveforms (from 1 to 1,000,000 and Infinity)
Minimum elapsed time (from 1 second to 48 hours and Infinity)
Violation threshold
From 1 to 1,000,000 and Infinity
Actions on test failure
Stop acquisition, save screen image to file, save waveform to file, print screen image, AUX OUT pulse, set remote interface SRQ
Actions on test complete
AUX OUT pulse, set remote interface SRQ
Results display
Test status, total waveforms, number of violations, total tests, failed tests, elapsed time, total hits for each mask segment
Arbitrary Function Generator
(Requires MDO3AFG option)
Waveforms
Sine, Square, Pulse, Ramp/Triangle, DC, Noise, Sin(x)/x (Sinc), Gaussian, Lorentz, Exponential Rise, Exponential Decay,
Haversine, Cardiac, and Arbitrary.
Sine
Frequency range
0.1 Hz to 50 MHz
Amplitude range
20 mVp-p to 5 Vp-p into Hi-Z; 10 mVp-p to 2.5 Vp-p into 50 Ω
Amplitude flatness
±0.5 dB typical at 1 kHz (±1.5 dB for <20 mVp-p amplitudes)
Total harmonic distortion
(typical)
1% into 50Ω
2% for amplitude < 50 mV and frequencies > 10 MHz
3% for amplitude < 20 mV and frequencies > 10 MHz
Spurious free dynamic range
(SFDR)
-40 dBc (Vp-p ≥ 0.1 V); -30dBc (Vp-p ≤ 0.1 V), 50 Ω load
Square / Pulse
Frequency range
0.1 Hz to 25 MHz
Amplitude range
20 mVp-p to 5 Vp-p into Hi-Z; 10 mVp-p to 2.5 Vp-p into 50 Ω
Duty cycle
10% to 90% or 10 ns minimum pulse, whichever is larger cycle
Duty cycle resolution
0.1%
Pulse width minimum
10 ns typical
Rise/fall time
5 ns typical (10% - 90%)
Pulse width resolution
100 ps
Overshoot
< 2% typical for signal steps greater than 100 mV
Asymmetry
±1% ±5 ns, at 50% duty cycle
Jitter (TIE RMS)
< 500 ps typical
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Datasheet
Arbitrary Function Generator
Ramp / Triangle
Frequency range
0.1 Hz to 500 kHz
Amplitude range
20 mVp-p to 5 Vp-p into Hi-Z; 10 mVp-p to 2.5 Vp-p into 50 Ω
Variable symmetry
0% to 100%
Symmetry resolution
0.1%
Level range
±2.5 V into Hi-Z; ±1.25 V into 50 Ω
DC
Noise
Amplitude range
20 mVp-p to 5 Vp-p in to Hi-Z; 10 mVp-p to 2.5 Vp-p into 50 Ω
Amplitude resolution
0% to 100% in 1% increments
Sin(x)/x (Sinc)
Frequency range
0.1 Hz to 2 MHz
Amplitude range
20 mVp-p to 3.0 Vp-p into Hi-Z; 10 mVp-p to 1.5 Vp-p into 50 Ω
Gaussian
Frequency range
0.1 Hz to 5 MHz
Amplitude range
20 mVp-p to 2.5 Vp-p into Hi-Z; 10 mVp-p to 1.25 Vp-p into 50 Ω
Lorentz
Frequency range
0.1 Hz to 5 MHz
Amplitude range
20 mVp-p to 2.4 Vp-p into Hi-Z; 10 mVp-p to 1.2 Vp-p into 50 Ω
Exponential Rise / Decay
Frequency range
0.1 Hz to 5 MHz
Amplitude range
20 mVp-p to 2.5 Vp-p into Hi-Z; 10 mVp-p to 1.25 Vp-p into 50 Ω
Haversine
Frequency range
0.1 Hz to 5 MHz
Amplitude range
20 mVp-p to 2.5 Vp-p into Hi-Z; 10 mVp-p to 1.25 Vp-p into 50 Ω
Cardiac
Frequency range
0.1 Hz to 500 kHz
Amplitude range
20 mVp-p to 5 Vp-p into Hi-Z; 10 mVp-p to 2.5 Vp-p into 50 Ω
Arbitrary
Memory depth
1 to 128 k
Amplitude range
20 mVp-p to 5 Vp-p into Hi-Z; 10 mVp-p to 2.5 Vp-p into 50 Ω
Repetition rate
0.1 Hz to 25 MHz
Sample rate
250 MS/s
Frequency accuracy
Sine wave and ramp
130 ppm (frequency < 10 kHz)
50 ppm (frequency ≥ 10 kHz)
Square wave and pulse
130 ppm (frequency < 10 kHz)
50 ppm (frequency ≥ 10 kHz)
Resolution
24 www.tektronix.com
0.1 Hz or 4 digits; whichever is larger
Mixed Domain Osciloscopes -- MDO3000 Series
Arbitrary Function Generator
Amplitude accuracy
±[ (1.5% of peak-to-peak amplitude setting) + (1.5% of DC offset setting) + 1 mV ] (frequency = 1 kHz)
DC offset
DC offset range
±[2.5 V – (signal amplitude) / 2 ] into Hi-Z; ±[1.25 – (signal amplitude) / 2 ] into 50 Ω
DC offset resolution
1 mV into Hi-Z; 500 uV into 50 Ω
Offset accuracy
±[(1.5% of absolute offset voltage setting) + 1 mV]; derated 3 mV for every 10 °C away from 25 °C
ArbExpress®
The MDO3000 is compatible with ArbExpress® PC-based signal generator waveform creation and editing software. Capture
waveforms on the MDO3000 oscilloscope and transfer them to ArbExpress for editing. Create complex waveforms in ArbExpress
and transfer them to the arbitrary function generator in the MDO3000 for output. To download ArbExpress software, go to
www.tektronix.com/downloads.
Digital voltmeter (DVM) and frequency counter
Source
Channel 1, Channel 2, Channel 3, Channel 4
Measurement types
AC RMS, DC, AC+DC RMS (reads out in volts or amps); Frequency
Resolution
ACV, DCV: 4 digits
Frequency: 5 digits
Frequency accuracy
10 ppm
Measuring rate
100 times/second; measurements updated on the display 4 times/second
Vertical settings autorange
Automatic adjustment of vertical settings to maximize measurement dynamic range; available for any non-trigger source
Graphical measurement
Graphical indication of minimum, maximum, current value, and five second rolling range
Software
OpenChoice® Desktop
Enables fast and easy communication between a Windows PC and your oscilloscope using USB or LAN. Transfer and save
settings, waveforms, measurements, and screen images. Word and Excel toolbars automate the transfer of acquisition data and
screen images from the oscilloscope into Word and Excel for quick reporting or further analysis.
IVI driver
Provides a standard instrument programming interface for common applications such as LabVIEW, LabWindows/CVI,
MicrosoftNET, and MATLAB.
e*Scope® Web-based interface
Enables control of the oscilloscope over a network connection through a standard web browser. Simply enter the IP address or
network name of the oscilloscope and a web page will be served to the browser. Transfer and save settings, waveforms,
measurements, and screen images or make live control changes to settings on the oscilloscope directly from the web browser.
LXI Core 2011 Web interface
Connect to the oscilloscope through a standard Web browser by simply entering the oscilloscope IP address or network name in
the address bar of the browser. The Web interface enables viewing of instrument status and configuration, status and modification
of network settings, and instrument control through e*Scope Web-based remote control. All Web interaction conforms to LXI Core
2011 specification, version 1.4.
www.tektronix.com 25
Datasheet
Display system
Display type
9 in. (229 mm) color display
Display resolution
800 horizontal × 480 vertical pixels (WVGA)
Interpolation
Sin(x)/x
Waveform styles
Vectors, Dots, Variable Persistence, Infinite Persistence
FastAcq. palettes
Temperature, Spectral, Normal, Inverted
Graticules
Full, Grid, Solid, Cross Hair, Frame, IRE and mV
Format
YT, XY, and simultaneous XY/YT
Maximum waveform capture rate
>280,000 wfms/s in FastAcq acquisition mode for 1 GHz models
>235,000 wfms/s in FastAcq acquisition mode for 100 MHz – 500 MHz models
>50,000 wfms/s in DPO acquisition mode on all models
Input/output ports
USB 2.0 high-speed host port
Supports USB mass storage devices, printers and keyboard. One port on front and one port on rear of instrument.
USB 2.0 device port
Rear-panel connector allows for communication/control of oscilloscope through USBTMC or GPIB (with a TEK-USB-488), and
direct printing to PictBridge-compatible printers.
Printing
Print to network printer, PictBridge printer, or to a printer that supports e-mail printing. Note: This product includes software
developed by the OpenSSL Project for use in the OpenSSL Toolkit. (http://www.openssl.org/)
LAN port
RJ-45 connector, supports 10/100 Mb/s
Video out port
DB-15 female connector, connect to show the oscilloscope display on an external monitor or projector. XGA resolution.
Auxilliary input
(Available on two-channel models only)
Front-panel BNC connector
Input impedance, 1 MΩ
Maximum input
300 VRMS CAT II with peaks ≤ ±425 V
Probe compenstor output voltage
and frequency
Front-panel pins
Amplitude
0 to 2.5 V
Frequency
1 kHz
Auxiliary out
Rear-panel BNC connector
VOUT (Hi): ≥2.25 V open circuit, ≥0.9 V 50 Ω to ground
VOUT (Lo): ≤0.7 V into a load of ≤4 mA; ≤0.25 V 50 Ω to ground
Output can be configured to provide a pulse out signal when the oscilloscope triggers, a trigger signal from the internal arbitrary
function generator, or an event out for limit/mask testing.
Kensington-style lock
Rear-panel security slot connects to standard Kensington-style lock.
VESA mount
Standard (MIS-D 75) 75 mm VESA mounting points on rear of instrument.
26 www.tektronix.com
Mixed Domain Osciloscopes -- MDO3000 Series
LAN eXtensions for Instrumentation (LXI)
Class
LXI Core 2011
Version
V1.4
Power source
Power source voltage
100 to 240 V ±10%
Power source frequency
50 to 60 Hz at 100 to 240 V
400 Hz ±10% at 115 V
Power consumption
120 W maximum
Physical characteristics
Dimensions
Height
203.2 mm (8 in.)
Width
416.6 mm (16.4 in.)
Depth
147.4 mm (5.8 in.)
Weight
Net
4.2 kg (9.2 lb.)
Shipping
8.6 kg (19 lb.)
Rackmount configuration
5U
Cooling clearance
2 in. (51 mm) required on left side and rear of instrument
EMC, environment, and safety
Temperature
Operating
-10 ºC to +55 ºC (+14 ºF to 131 ºF)
Nonoperating
-40 ºC to +71 ºC (-40 ºF to 160 ºF)
Humidity
Operating
Up to +40 ºC, 5% to 90% relative humidity
+40 ºC to +55 ºC, 5% to 60% relative humidity
Nonoperating
Up to +40 ºC, 5% to 90% relative humidity
Above +40 ºC up to +55 ºC, 5% to 60% relative humidity
Above +55 ºC up to +71 ºC, 5% to 40% relative humidity, non-condensing
Altitude
Operating
3,000 meters (9,843 feet)
Nonoperating
12,000 meters (39,370 feet)
Regulatory
Electromagnetic compatibility
EC Council Directive 2004/108/EC
Safety
UL61010-1:2004, CAN/CSA-C22.2 No. 61010.1: 2004, Low Voltage Directive 2006/95/EC and EN61010-1:2001, IEC
61010-1:2001, ANSI 61010-1-2004, ISA 82.02.01
www.tektronix.com 27
Datasheet
Ordering information
Step 1: Choose the MDO3000 base model
MDO3000 family
MDO3012
Mixed Domain Oscilloscope with (2) 100 MHz analog channels, and (1) 100 MHz spectrum analyzer input
MDO3014
Mixed Domain Oscilloscope with (4) 100 MHz analog channels, and (1) 100 MHz spectrum analyzer input
MDO3022
Mixed Domain Oscilloscope with (2) 200 MHz analog channels, and (1) 200 MHz spectrum analyzer input
MDO3024
Mixed Domain Oscilloscope with (4) 200 MHz analog channels, and (1) 200 MHz spectrum analyzer input
MDO3032
Mixed Domain Oscilloscope with (2) 350 MHz analog channels, and (1) 350 MHz spectrum analyzer input
MDO3034
Mixed Domain Oscilloscope with (4) 350 MHz analog channels, and (1) 350 MHz spectrum analyzer input
MDO3052
Mixed Domain Oscilloscope with (2) 500 MHz analog channels, and (1) 500 MHz spectrum analyzer input
MDO3054
Mixed Domain Oscilloscope with (4) 500 MHz analog channels, and (1) 500 MHz spectrum analyzer input
MDO3102
Mixed Domain Oscilloscope with (2) 1 GHz analog channels, and (1) 1 GHz spectrum analyzer input
MDO3104
Mixed Domain Oscilloscope with (4) 1 GHz analog channels, and (1) 1 GHz spectrum analyzer input
Standard accessories
Probes
100 MHz, 200 MHz models
TPP0250, 250 MHz bandwidth, 10X, 3.9 pF. One passive voltage probe per analog channel
350 MHz, 500 MHz models
TPP0500B, 500 MHz bandwidth, 10X, 3.9 pF. One passive voltage probe per analog channel
1 GHz models
TPP1000, 1 GHz bandwidth, 10X, 3.9 pF. One passive voltage probe per analog channel
Any model with MDO3MSO option
One P6316 16-channel logic probe and accessories
Accessories
103-0473-00
N-to-BNC adapter
063-4526-xx
Documentation CD
071-3249-00
Installation and Safety Instructions, printed manual (translated in English, Japanese, and Simplified Chinese)
016-2008-xx
Accessory bag
-
Power cord
-
OpenChoice® Desktop Software (available on the Documentation CD and for download from www.tektronix.com/downloads.)
-
Calibration certificate documenting traceability to National Metrology Institute(s) and ISO9001 quality system registration
28 www.tektronix.com
Mixed Domain Osciloscopes -- MDO3000 Series
Warranty
Three-year warranty covering all parts and labor, excluding probes.
Step 2: Configure your MDO3000 by adding instrument options
Instrument options
All MDO3000 Series instruments can be preconfigured from the factory with the following options:
MDO3AFG
Arbitrary function generator with 13 predefined waveforms and arbitrary waveform generation
MDO3MSO
16 digital channels; includes P6316 digital probe and accessories
MDO3SA
Increase spectrum analyzer input frequency range to 9 kHz – 3 GHz and capture bandwidth to 3 GHz.
MDO3SEC
Enhanced instrument security to enable password protected control of turning on/off all instrument ports and instrument firmware
update functionality.
Power cord and plug options
Opt. A0
North America power plug (115 V, 60 Hz)
Opt. A1
Universal Euro power plug (220 V, 50 Hz)
Opt. A2
United Kingdom power plug (240 V, 50 Hz)
Opt. A3
Australia power plug (240 V, 50 Hz)
Opt. A5
Switzerland power plug (220 V, 50 Hz)
Opt. A6
Japan power plug (100 V, 110/120 V, 60 Hz)
Opt. A10
China power plug (50 Hz)
Opt. A11
India power plug (50 Hz)
Opt. A12
Brazil power plug (60 Hz)
Opt. A99
No power cord
Language options
All products are shipped with an Installation and Safety manual that is in English, Japanese, and Simplified Chinese. Full user manuals translated in each language listed
below are included with each product in pdf format on the Documentation CD.
Opt. L0
English front panel label
Opt. L1
French front panel overlay
Opt. L2
Italian front panel overlay
Opt. L3
German front panel overlay
Opt. L4
Spanish front panel overlay
Opt. L5
Japanese front panel overlay
Opt. L6
Portuguese front panel overlay
Opt. L7
Simplified Chinese front panel overlay
Opt. L8
Traditional Chinese front panel overlay
Opt. L9
Korean front panel overlay
www.tektronix.com 29
Datasheet
Opt. L10
Russian front panel overlay
Opt. L99
No manual, English front panel label
Service options
Opt. C3
Calibration Service 3 Years
Opt. C5
Calibration Service 5 Years
Opt. D1
Calibration Data Report
Opt. D3
Calibration Data Report 3 Years (with Opt. C3)
Opt. D5
Calibration Data Report 5 Years (with Opt. C5)
Opt. G3
Complete Care 3 Years (includes loaner, scheduled calibration, and more)
Opt. G5
Complete Care 5 Years (includes loaner, scheduled calibration, and more)
Opt. R5
Repair Service 5 Years (including warranty)
Probes and accessories are not covered by the oscilloscope warranty and service offerings. Refer to the datasheet of each probe and accessory model for its unique warranty
and calibration terms.
Step 3: Select application models and accessories
Application modules
Application modules are purchased as stand-alone products and can be purchased at the time of initial MDO3000 purchase or at
any future time.
Application modules have licenses which can be transferred between an application module and an oscilloscope. The license may
be contained in the module; allowing the module to be moved from one instrument to another. Or, the license can be contained in
the oscilloscope; allowing the module to be removed and stored for safekeeping. The license can be transferred back to the
module for use in another MDO3000 oscilloscope. Transferring the license to an oscilloscope and removing the module permits
the use of more than two applications simultaneously.
MDO3AERO
Aerospace Serial Triggering and Analysis Module. Enables triggering on packet-level information on MIL-STD-1553 buses as well
as analytical tools such as digital views of the signal, bus views, packet decoding, search tools, and packet decode tables with
time- stamp information.
Signal Inputs - Any Ch1 - Ch4, Math, Ref1 - Ref4
Recommended Probing - Differential or single ended (only one single-ended signal required)
MDO3AUDIO
Audio Serial Triggering and Analysis Module. Enables triggering on packet-level information on I2S, LJ, RJ, and TDM audio buses
as well as analytical tools such as digital views of the signal, bus views, packet decoding, search tools, and packet decode tables
with time-stamp information.
Signal Inputs - Any Ch1 - Ch4, any D0 - D15
Recommended Probing - Single ended
MDO3AUTO
Automotive Serial Triggering and Analysis Module. Enables triggering on packet-level information on CAN and LIN buses as well
as analytical tools such as digital views of the signal, bus views, packet decoding, search tools, and packet decode tables with
time- stamp information.
Signal Inputs – CAN or LIN: Any Ch1 - Ch4, any D0 - D15
Recommended Probing - CAN: Single ended or differential; LIN: Single ended
MDO3COMP
Computer Serial Triggering and Analysis Module. Enables triggering on packet-level information on RS-232/422/485/UART buses
as well as analytical tools such as digital views of the signal, bus views, packet decoding, search tools, and packet decode tables
with time-stamp information.
Signal Inputs - Any Ch1 - Ch4, any D0 - D15
Recommended Probing - RS-232/UART: Single ended; RS-422/485: Differential
30 www.tektronix.com
Mixed Domain Osciloscopes -- MDO3000 Series
MDO3EMBD
Embedded Serial Triggering and Analysis Module. Enables triggering on packet-level information on I2C and SPI buses as well as
analytical tools such as digital views of the signal, bus views, packet decoding, search tools, and packet decode tables with timestamp information.
Signal Inputs - I2C or SPI: Any Ch1 - Ch4, any D0 - D15
Recommended Probing - Single ended
MDO3FLEX
FlexRay Serial Triggering and Analysis Module. Enables triggering on packet-level information on FlexRay buses as well as
analytical tools such as digital views of the signal, bus views, packet decoding, search tools, packet decode tables with time-stamp
information.
Signal Inputs - Any Ch1 - Ch4 (and any D0 - D15 when MDO3MSO option is installed; single-ended probing only)
Recommended Probing - Single ended or differential
MDO3USB
USB Serial Triggering and Analysis Module. Enables triggering on packet-level content for low-speed, and full-speed USB serial
buses. Also enables analytical tools such as digital views of the signal, bus views, packet decoding, search tools, and packet
decode tables with time-stamp information for low-speed, full-speed, and high-speed USB serial buses.
Signal Inputs - Low-speed and Full-speed: Any Ch1 - Ch4, any D0 - D15; Low-speed, Full-speed, and High-speed: Any Ch1 - Ch4,
Math, Ref1 - Ref4
Note: High-speed decode support only available on 1 GHz models.
Recommended Probing - Low-speed and Full-speed: Single ended or differential; High-speed: Differential
MDO3PWR
Power Analysis Application Module. Enables quick and accurate analysis of power quality, switching loss, harmonics, safe
operating area (SOA), modulation, ripple, and slew rate (dI/dt, dV/dt).
MDO3LMT
Limit and Mask Testing Application Module. Enables testing against limit templates generated from "golden" waveforms and mask
testing using custom masks.
Recommended accessories
Probes
Tektronix offers over 100 different probes to meet your application needs. For a comprehensive listing of available probes, please visit www.tektronix.com/probes.
TPP0250
250 MHz, 10X TekVPI® passive voltage probe with 3.9 pF input capacitance
TPP0500B
500 MHz, 10X TekVPI® passive voltage probe with 3.9 pF input capacitance
TPP0502
500 MHz, 2X TekVPI® passive voltage probe with 12.7 pF input capacitance
TPP0850
2.5 kV, 800 MHz, 50X TekVPI® passive high-voltage probe
TPP1000
1 GHz, 10X TekVPI® passive voltage probe with 3.9 pF input capacitance
TAP1500
1.5 GHz TekVPI® active single-ended voltage probe
TAP2500
2.5 GHz TekVPI® active single-ended voltage probe
TAP3500
3.5 GHz TekVPI® active single-ended voltage probe
TCP0020
50 MHz TekVPI® 20 Ampere AC/DC current probe
TCP0030A
120 MHz TekVPI® 30 Ampere AC/DC current probe
TCP0150
20 MHz TekVPI® 150 Ampere AC/DC current probe
TDP0500
500 MHz TekVPI® differential voltage probe with ±42 V differential input voltage
TDP1000
1 GHz TekVPI® differential voltage probe with ±42 V differential input voltage
TDP1500
1.5 GHz TekVPI® differential voltage probe with ±8.5 V differential input voltage
TDP3500
3.5 GHz TekVPI® differential voltage probe with ±2 V differential input voltage
THDP0200
±1.5 kV, 200 MHz TekVPI® high-voltage differential probe
www.tektronix.com 31
Datasheet
THDP0100
±6 kV, 100 MHz TekVPI® high-voltage differential probe
TMDP0200
±750 V, 200 MHz TekVPI® high-voltage differential probe
Accessories
TPA-N-PRE
Preamplifier, 12 dB nominal Gain, 9 kHz - 6 GHz
TPA-N-VPI
N-to-TekVPI adapter
119-4146-00
Near field probe set, 100 kHz - 1 GHz
119-6609-00
Flexible monopole antenna
077-0981-xx
Service manual (English only)
TPA-BNC
TekVPI® to TekProbe™ BNC adapter
TEK-DPG
TekVPI Deskew pulse generator signal source
067-1686-xx
Power measurement deskew and calibration fixture
SignalVu-PC-SVE
Vector Signal Analysis Software
TEK-USB-488
GPIB-to-USB adapter
ACD3000
Soft transit case (includes front protective cover)
HCTEK54
Hard transit case (requires ACD3000)
RMD3000
Rackmount kit
200-5052-00
Front protective cover
Other RF probes
Contact Beehive Electronics to order: http://beehive-electronics.com/probes.html
101A
EMC probe set
150A
EMC probe amplifier
110A
Probe cable
0309-0001
SMA probe adapter
0309-0006
BNC probe adapter
32 www.tektronix.com
Mixed Domain Osciloscopes -- MDO3000 Series
Step 4: Add instrument upgrades in the future
Instrument upgrades
The MDO3000 Series products offer a number of ways to add functionality after the initial purchase. Listed below are the various product upgrades available and the method of
upgrade used for each product.
Post-purchase instrument options
MDO3AFG
The following products are sold as stand-alone products and can be purchased at any time to add functionality to any MDO3000
product.
Add arbitrary function generator to any MDO3000 Series product.
One-time, permanent upgrade to any model enabled through single-use application module hardware key. The hardware key is
used to enable the feature and then is not required for future use.
MDO3MSO
Add 16 digital channels; includes P6316 digital probe and accessories .
One-time, permanent upgrade to any model enabled through single-use application module hardware key. The hardware key is
used to enable the feature and then is not required for future use.
MDO3SA
Increase spectrum analyzer input frequency range to 9 kHz – 3 GHz and capture bandwidth to 3 GHz.
One-time, permanent upgrade to any model enabled through single-use application module hardware key. The hardware key is
used to enable the feature and then is not required for future use.
MDO3SEC
Add enhanced instrument security to enable password protected control of turning on/off all instrument ports and instrument
firmware update functionality.
One-time, permanent upgrade to any model enabled through software option key. Software option key products require that the
instrument model and serial number be provided at the time of purchase. The software option key is specific to the model and
serial number combination.
www.tektronix.com 33
Datasheet
Bandwidth upgrade options
Instrument bandwidth can be upgraded on any MDO3000 Series product after initial purchase. Each upgrade product will increase
the analog bandwidth and the spectrum analyzer frequency range to the new bandwidth level. Bandwidth upgrades are purchased
based on the combination of the current bandwidth and the desired bandwidth. Software option key products require that the
instrument model and serial number be provided at the time of purchase. The software option key is specific to the model and
serial number combination. Bandwidth upgrades up to 500 MHz can be performed in the field. Bandwidth upgrades to 1 GHz
require installation at a Tektronix service center. The table below shows the various bandwidth upgrade products to purchase
based on current and desired bandwidth levels.
Model to be upgraded
Bandwidth before upgrade
Bandwidth after upgrade
Order protduct
MDO3012
100 MHz
200 MHz
MDO3BW1T22
100 MHz
350 MHz
MDO3BW1T32
100 MHz
500 MHz
MDO3BW1T52
100 MHz
1 GHz
MDO3BW1T102
200 MHz
350 MHz
MDO3BW2T32
200 MHz
500 MHz
MDO3BW2T52
200 MHz
1 GHz
MDO3BW2T102
350 MHz
500 MHz
MDO3BW3T52
350 MHz
1 GHz
MDO3BW3T102
500 MHz
1 GHz
MDO3BW5T102
100 MHz
200 MHz
MDO3BW1T24
100 MHz
350 MHz
MDO3BW1T34
100 MHz
500 MHz
MDO3BW1T54
100 MHz
1 GHz
MDO3BW1T104
200 MHz
350 MHz
MDO3BW2T34
200 MHz
500 MHz
MDO3BW2T54
200 MHz
1 GHz
MDO3BW2T104
350 MHz
500 MHz
MDO3BW3T54
350 MHz
1 GHz
MDO3BW3T104
500 MHz
1 GHz
MDO3BW5T104
200 MHz
350 MHz
MDO3BW2T32
200 MHz
500 MHz
MDO3BW2T52
200 MHz
1 GHz
MDO3BW2T102
350 MHz
500 MHz
MDO3BW3T52
350 MHz
1 GHz
MDO3BW3T102
500 MHz
1 GHz
MDO3BW5T102
200 MHz
350 MHz
MDO3BW2T34
200 MHz
500 MHz
MDO3BW2T54
200 MHz
1 GHz
MDO3BW2T104
350 MHz
500 MHz
MDO3BW3T54
350 MHz
1 GHz
MDO3BW3T104
500 MHz
1 GHz
MDO3BW5T104
350 MHz
500 MHz
MDO3BW3T52
350 MHz
1 GHz
MDO3BW3T102
500 MHz
1 GHz
MDO3BW5T102
350 MHz
500 MHz
MDO3BW3T54
350 MHz
1 GHz
MDO3BW3T104
500 MHz
1 GHz
MDO3BW5T104
MDO3014
MDO3022
MDO3024
MDO3032
MDO3034
34 www.tektronix.com
Mixed Domain Osciloscopes -- MDO3000 Series
Model to be upgraded
Bandwidth before upgrade
Bandwidth after upgrade
Order protduct
MDO3052
500 MHz
1 GHz
MDO3BW5T102
MDO3054
500 MHz
1 GHz
MDO3BW5T104
Tektronix is registered to ISO 9001 and ISO 14001 by SRI Quality System Registrar.
Product(s) complies with IEEE Standard 488.1-1987, RS-232-C, and with Tektronix Standard Codes and Formats.
www.tektronix.com 35
Datasheet
ASEAN / Australasia (65) 6356 3900
Belgium 00800 2255 4835*
Central East Europe and the Baltics +41 52 675 3777
Finland +41 52 675 3777
Hong Kong 400 820 5835
Japan 81 (3) 6714 3010
Middle East, Asia, and North Africa +41 52 675 3777
People's Republic of China 400 820 5835
Republic of Korea 001 800 8255 2835
Spain 00800 2255 4835*
Taiwan 886 (2) 2722 9622
* European toll-free number. If not accessible, call: +41 52 675 3777
Austria 00800 2255 4835*
Brazil +55 (11) 3759 7627
Central Europe & Greece +41 52 675 3777
France 00800 2255 4835*
India 000 800 650 1835
Luxembourg +41 52 675 3777
The Netherlands 00800 2255 4835*
Poland +41 52 675 3777
Russia & CIS +7 (495) 6647564
Sweden 00800 2255 4835*
United Kingdom & Ireland 00800 2255 4835*
Balkans, Israel, South Africa and other ISE Countries +41 52 675 3777
Canada 1 800 833 9200
Denmark +45 80 88 1401
Germany 00800 2255 4835*
Italy 00800 2255 4835*
Mexico, Central/South America & Caribbean 52 (55) 56 04 50 90
Norway 800 16098
Portugal 80 08 12370
South Africa +41 52 675 3777
Switzerland 00800 2255 4835*
USA 1 800 833 9200
Updated 10 April 2013
For Further Information. Tektronix maintains a comprehensive, constantly expanding collection of application notes, technical briefs and other resources to help engineers working on the cutting edge of technology. Please visit www.tektronix.com.
Copyright © Tektronix, Inc. All rights reserved. Tektronix products are covered by U.S. and foreign patents, issued and pending. Information in this publication supersedes that in all previously published material. Specification and
price change privileges reserved. TEKTRONIX and TEK are registered trademarks of Tektronix, Inc. All other trade names referenced are the service marks, trademarks, or registered trademarks of their respective companies.
04 Feb 2014
www.tektronix.com
48W-30020-1
Arbitrary/Function Generator
AFG2021 Data Sheet
Features & Benefits
20 MHz sine wave, 10 MHz square and pulse wave provides a
cost-effective solution for most applications
250 MS/s sampling rate and 14-bit vertical resolution provide
best-in-class signal fidelity
The intuitive and AFG3000-like UI shorten the learning curve and
customers’ time to market
4 × 128 kS built-in and USB memory expansion for user-defined arbitrary
waveforms
Standard USB host/device, optional GPIB and LAN interfaces keep the
best balance between cost and versatility
Multiple run modes and modulation modes cover most customer
requirements to finish the job
Menu and online help are in 8 languages
2U height and half-rack width fit both benchtop and rack-mounted
applications
Free ArbExpress makes user-defined waveform editing and downloading
extremely easy
Free SignalExpress combines Tektronix bench instruments into a
low-cost solution for automatic testing
Applications
Electronic test and design
Sensor simulation
Education and training
Functional test
System integration
Data Sheet
Superior Performance at an Affordable Price
Nearly all consumer products today have circuits or devices that require
the input of specific electronic signals in order for the product to perform
correctly. These signals can be as simple as an audio frequency or clock
signal or more complex such as a serial data stream or signal from an
airbag sensor during a crash. With 20 MHz bandwidth, 14-bit resolution,
and 250 MS/s sample rate, the AFG2021 Arbitrary Function Generator can
create both simple and complex signals at an entry-level price. With 12
standard waveforms, modulation capability, and a built-in noise generator
you can quickly create the signal you need to thoroughly exercise your
designs.
Intuitive User Interface Inherited from the
AFG3000
The innovative ease-of-use features first seen on the AFG3000 Series
arbitrary/function generators are the building blocks for the AF2021,
providing quick access to setup and operational features. Additionally,
AFG3000 customers can easily migrate to the new AFG2021 without having
to learn a new UI. To easily see waveform information, a 3.5 in. color TFT
screen shows relevant parameters in both graphic and text formats, which
gives users full confidence in their settings, and lets them focus on the task
at hand. The front-panel shortcut buttons and rotary knob allow access to
the most frequently used functions and settings with minimum effort and
time.
2
www.tektronix.com
Frequency range from 1 μHz to 20 MHz, fits for most amplifier and filter testing cases.
Efficient Shortcuts to High Frequency
Traditional function generators created their output signals using analog
oscillators and signal conditioning. The Tektronix AFG2021 relies on
Direct Digital Synthesis (DDS) techniques to determine the rate at which
samples are clocked out of their memory. DDS technology synthesizes
waveforms by using a single clock frequency to spawn any frequency within
the instrument’s range. DDS architecture provides exceptional frequency
agility, making it easy to program both frequency and phase changes on the
fly, which is useful to test any type of frequency-related DUT – radio and
satellite system components, amplifiers, or filters for example.
Arbitrary/Function Generator — AFG2021
Increase Productivity with SignalExpress
Every AFG2021 ships with a free copy of the Limited Tektronix Edition of
National Instrument’s LabVIEW SignalExpress for basic instrument control,
data logging, and analysis. SignalExpress supports the range of Tektronix
bench instruments enabling you to connect your entire test bench. You
can then access the feature-rich tools packed into each instrument from
one intuitive software interface. This allows you to automate complex
measurements requiring multiple instruments, log data for an extended
period of time, time-correlate data from multiple instruments, and easily
capture and analyze your results, all from your PC. Only Tektronix offers a
connected test bench of intelligent instruments to simplify and speed debug
of your complex design.
Connectivity
ArbExpress makes real-world signal replication almost with no effort.
ArbExpress® Makes Real-world Waveform
Replication with Minimum Efforts
With the ArbExpress software, you can quickly create waveforms that can
be transferred to the AFG2021 to meet custom stimulus requirements.
ArbExpress supports direct connection to Tektronix oscilloscopes and AFGs
through USB, GPIB, or LAN. With the software, users can import real-world
signals captured with an oscilloscope onto a PC, then edit and download
them onto an AFG to replicate the captured waveform. This is extremely
useful for automotive, medical, and industrial applications where recreating
sensor data is critical to analyzing the integrity of the design.
Using the USB host socket, users can save their customized waveforms
or instrument settings onto a USB memory stick. Reloading the data is
easily done by plugging the device back into the USB host socket. The USB
connector and optional GPIB/LAN functionality offers a way for users to
connect the instrument to a PC for waveform download and remote control.
Compact Form Factor
The 2U height and half-rack width form factor enables the AFG2021 to be
stacked on other bench instruments, such as digital multimeters, power
supplies, and frequency counters, saving valuable bench space. Together
with the standard RMU2U rackmount kit, GPIB interface, and full SCPI
support the AFG2021 is also a perfect option for rackmount applications,
such as ATE configuration in manufacturing environments.
www.tektronix.com
3
Data Sheet
Characteristics
General
Characteristic
Description
Channels
Waveforms
1
Sine, Square, Pulse, Ramp, Noise, DC, Sin(x)/x, Gaussian,
Lorentz, Exponential Rise, Exponential Decay, and
Haversine
1 μHz to 20 MHz
1 μHz to 10 MHz
Sine Wave
Sine Wave in
Burst Mode
20 MHz
Effective
Maximum
Frequency Out
Amplitude Flatness (1 Vp-p)
<5 MHz
±0.15 dB
5 MHz to 20 MHz ±0.3 dB
Harmonic Distortion (1 Vp-p)
10 Hz to 20 kHz <–70 dBc
20 kHz to 1 MHz <–60 dBc
1 MHz to 10 MHz <–50 dBc
10 MHz to
<–40 dBc
20 MHz
THD
<0.2% (10 Hz to 20 kHz, 1 Vp-p)
Spurious (1 Vp-p)
10 Hz to 1 MHz <–60 dBc
1 MHz to 20 MHz <–50 dBc
Phase Noise,
20 MHz: <–110 dBc/Hz at 10 kHz offset, 1 Vp-p
Typical
Residual Clock –63 dBm
Noise
1 μHz to 10 MHz
Square Wave
≤18 ns
Rise/Fall Time
<500 ps
Jitter (RMS),
Typical
Ramp Wave
1 μHz to 200 kHz
Linearity
≤0.1% of peak output at 10% to 90% of amplitude range
Symmetry
0.0% to 100.0%
Pulse Wave
1 mHz to 10 MHz
Pulse Width
30.00 ns to 999.99 s
Resolution
10 ps or 5 digits
Pulse Duty
0.001% to 99.999% (Limitations of pulse duty width apply)
Edge Transition 18 ns to 0.625 × Pulse Period
Time
Resolution
10 ps or 4 digits
Lead Delay
Range
Continuous Mode: 0 ps to Period
Trigger/Gate Burst Mode: 0 ps to Period – [Pulse Width + 0.8
× (Leading Edge Time + Trailing Edge Time)]
Resolution
10 ps or 8 digits
Overshoot,
<5%
Typical
<500 ps
Jitter (RMS),
Typical
4
www.tektronix.com
Characteristic
Description
Other Waveforms
Noise Bandwidth
(–3 dB)
Noise Type
DC (into 50 Ω)
Arbitrary Waveforms
Arbitrary
Waveforms in
Burst Mode
Effective Analog
Bandwidth
(–3 dB)
Nonvolatile
Memory
Memory: Sample
Rate
Vertical
Resolution
Rise/Fall Time
Jitter (RMS)
Amplitude, 50 Ω
Load
Amplitude, Open
Circuit
Accuracy
1 μHz to 200 kHz
20 MHz
Resolution
Units
Output
Impedance
Load Impedance
Setting
Isolation
Short-circuit
Protection
External Voltage
Protection
DC Offset Range,
50 Ω Load
DC Offset Range,
Open Circuit
Accuracy
Resolution
White Gaussian
–5 V to +5 V
1 mHz to 10 MHz
1 mHz to 5 MHz
34 MHz
4 waveforms
2 to 128k: 250 MS/s
14 bits
≤20 ns
4 ns
10 mVp-p to 10 Vp-p
20 mVp-p to 20 Vp-p
±(1% of setting + 1 mV), (1 kHz sine waveform, 0 V offset,
>10 mVp-p amplitude)
0.1 mVp-p, 0.1 mVRMS, 1 mV, 0.1 dBm, or 4 digits
Vp-p, VRMS, dBm (sine wave only)
50 Ω
Selectable: 50 Ω, 1 Ω to 10.0 kΩ, High Z (adjusts displayed
amplitude according to selected load impedance)
<42 VPeak maximum to earth
Signal outputs are robust against permanent shorts against
floating ground
To protect signal outputs against external voltages use fuse
adapter 013-0345-00
±(5 VPeak – amplitude Vp-p/2)
±(10 VPeak – amplitude Vp-p/2)
±(1% of |setting| + 5 mV + 0.5% of amplitude (Vp-p))
1 mV
Arbitrary/Function Generator — AFG2021
Modulation
Burst
AM, FM, PM
Characteristic
Description
Carrier Waveforms
Source
Internal Modulating
Waveform
Internal Modulating
Frequency
AM Modulation
Depth
Min FM Peak
Deviation
Max FM Peak
Deviation
All, including ARB, except Pulse, Noise, and DC
Internal/External
Sine, Square, Ramp, Noise, ARB (AM: Maximum waveform
length 4,096; FM/PM: Maximum waveform length 2,048)
2 mHz to 50.00 kHz
Characteristic
Description
Waveforms
Type
Internal Trigger Rate
Gate and Trigger
Sources
All, including ARB, except Noise and DC
Triggered, Gated (1 to 1,000,000 cycles or Infinite)
1 μs to 500.0 s
Internal, External, Manual Trigger, and Remote Interface
Auxiliary Input
0.0% to +120.0%
Modulation Input
DC
Characteristic
Description
Input Range
All except FSK: ±1 V full scale
FSK: 3.3 V logic level
10 kΩ
DC to 25 kHz (122 kS/s sample rate)
10 MHz
Frequency Shift Keying
Impedance
Frequency Range
Characteristic
Description
External Triggered/Gated Burst Input
Carrier Waveforms
Source
Internal Modulating
Frequency
Number of Keys
All, including ARB, except Pulse, Noise, and DC
Internal/External
2 mHz to 1.000 MHz
Characteristic
Description
Level
Pulse Width
Slope
Trigger Delay
Resolution
Jitter (RMS), Typical
TTL compatible
100 ns minimum
Positive/Negative selectable
0.0 ns to 85.000 s
100 ps or 5 digits
Burst: <500 ps (Trigger input to signal output)
2
Pulse Width Modulation
Characteristic
Description
Carrier Waveform
Source
Internal Modulating
Waveform
Internal Modulating
Frequency
Deviation
Pulse
Internal/External
Sine, Square, Ramp, Noise, ARB (Maximum waveform
length 2,048)
2 mHz to 50.00 kHz
0% to 50.0% of pulse period
10 MHz Reference Input
Characteristic
Description
Impedance
Required Input
Voltage Swing
Lock Range
1 kΩ, AC coupled
100 mVp-p to 5 Vp-p
10 MHz ±35 kHz
Auxiliary Output
Sweep
Characteristic
Description
Waveforms
Type
Sweep Time
Hold/Return Time
Max Total Sweep
Time (Sweep + Hold
+ Return)
Resolution
Total Sweep Time
Accuracy, Typical
Min Start/Stop
Frequency
Max Start/Stop
Frequency
All, including ARB, except Pulse, Noise, and DC
Linear, Logarithmic
1 ms to 300 s
0 ms to 300 s
300 s
Trigger Output
Characteristic
Description
Level
Impedance
Jitter (RMS), Typical
Max Frequency
Positive TTL level pulse into 1 kΩ
50 Ω
500 ps
4.9 MHz (4.9 MHz to 20 MHz: A fraction of the frequency is
output)
1 ms or 4 digits
0.4%
All except ARB: 1 μHz
ARB: 1 mHz
Sine: 20 MHz
Square: 10 MHz
ARB: 10 MHz
Others: 200 kHz
www.tektronix.com
5
Data Sheet
Common Characteristics
Environmental and Safety Characteristics
Remote Programming (GPIB, LAN 10BASE-T/100BASE-TX,
USB 1.1, compatible with SCPI-1999.0 and IEEE 488-2
standards)
Characteristic
USB
LAN*1
Function Change
Frequency Change
Amplitude Change
Select User ARB
Data Download
Time for 4k Point
ARB Waveform
Data (8 KB),
Typical
95 ms
2 ms
60 ms
88 ms
20 ms
103 ms
19 ms
67 ms
120 ms
84 ms
GPIB*1
84 ms
2 ms
52 ms
100 ms
42 ms
*1 GPIB and LAN interfaces are only available on the instrument with Option GL.
Characteristic
Temperature
Operating
Nonoperating
Humidity
Operating
Nonoperating
Altitude
Operating
Nonoperating
EMC Compliance
Safety
General
Characteristic
Description
Frequency Setting 1 μHz or 12 digits
Resolution
Phase (except DC, Noise, Pulse)
Range
–360° to +360°
Resolution
Sine: 0.01°
Other Waveforms: 0.1°
Internal Noise Add When activated, output signal amplitude is reduced to 50%
Level
0.0% to 50% of amplitude (Vp-p) setting
Resolution
1%
Main Output
50 Ω
Effective Frequency 2 ms through remote control
Switching Speed
Internal Frequency Reference
Stability
All except ARB: ±1 ppm, 0 °C to 50 °C
ARB: ±1 ppm, ±1 μHz, 0 °C to 50 °C
Aging
±1 ppm per year
100 V to 240 V, 50 Hz to 60 Hz or 115 V, 400 Hz
Power Source
Power Consumption 60 W
Warm-up Time,
20 minutes
Typical
<10 s
Power On Self
Diagnostics, Typical
Acoustic Noise,
<50 dBA
Typical
Display
3.5 in. Color TFT LCD
User Interface and English, French, German, Japanese, Korean, Simplified and
Help Language
Traditional Chinese, Russian (User selectable)
Physical Characteristics
Benchtop Configuration
Dimension
mm
in.
Height
Weight
Depth
104.2
241.8
419.1
4.10
9.52
16.50
Weight
kg
lb.
Net
Shipping
2.87
4.72
6.3
10.4
6
www.tektronix.com
Description
0 °C to +50 °C
–30 °C to +70 °C
≤80%, +0 °C to +40 °C, noncondensing
≤60%, +40 °C to +50 °C, noncondensing
5% to 90%, <+40 °C, noncondensing
5% to 80%, ≥+40 °C to ≤+60 °C, noncondensing
5% to 40%, >+60 °C to ≤+70 °C, noncondensing
Up to 3,000 m (9,842 ft.)
Up to 12,000 m (39,370 ft.)
EU Council Directive 2004/108/EC
UL61010-1; 2004
CAN/CSA C22.2 No. 61010-1; 2004
EN61010-1; 2001
IEC61010-1; 2001
Ordering Information
AFG2021
Arbitrary/Function Generator.
Includes: User Manual, Power Cord, USB Cable, CD-ROM with Programmer
Manual, Service Manual, Labview and IVI Drivers, CD-ROM with ArbExpress®
Software, NIST-traceable Calibration Certificate.
Please specify power cord and local language for user manual when ordering.
Configuration Options
Option
Description
Opt. GL
GPIB and LAN interfaces
Language Options
Option
Description
Opt.
Opt.
Opt.
Opt.
Opt.
Opt.
Opt.
Opt.
Opt.
Opt.
Opt.
Opt.
English manual
French manual
Italian manual
German manual
Spanish manual
Japanese manual
Portuguese manual
Simplified Chinese manual
Traditional Chinese manual
Korean manual
Russian manual
No manual
L0
L1
L2
L3
L4
L5
L6
L7
L8
L9
L10
L99
Arbitrary/Function Generator — AFG2021
Power Plug Options
Recommended Accessories
Option
Description
Accessory
Description
Opt.
Opt.
Opt.
Opt.
Opt.
Opt.
Opt.
Opt.
Opt.
Opt.
North America power
Universal Euro power
United Kingdom power
Australia power
Switzerland power
Japan power
China power
India power
Brazil power
No power cord or AC adapter
RMU2U
013-0345-00
159-0454-00
012-0482-00
012-1256-00
012-0991-00
011-0049-02
Rackmount kit
Fuse adapter, BNC-P to BNC-R
Fuse set, 3 pcs, 0.125 A
BNC cable shielded, 3 ft.
BNC cable shielded, 9 ft.
GPIB cable, double shielded
50 Ω BNC terminator
A0
A1
A2
A3
A5
A6
A10
A11
A12
A99
Warranty
Three-year warranty on parts and labor.
Service Options
Option
Description
Opt.
Opt.
Opt.
Opt.
Opt.
Opt.
Opt.
Calibration Service 3 Years
Calibration Service 5 Years
Calibration Data Report
Calibration Data Report 3 Years (with Opt. C3)
Calibration Data Report 5 Years (with Opt. C5)
Repair Service 5 Years
Repair Service Coverage 5 Years (starts at time of customer
instrument purchase)
C3
C5
D1
D3
D5
R5
R5DW
www.tektronix.com
7
Data Sheet
Contact Tektronix:
ASEAN / Australasia (65) 6356 3900
Austria 00800 2255 4835*
Balkans, Israel, South Africa and other ISE Countries +41 52 675 3777
Belgium 00800 2255 4835*
Brazil +55 (11) 3759 7627
Canada 1 800 833 9200
Central East Europe and the Baltics +41 52 675 3777
Central Europe & Greece +41 52 675 3777
Denmark +45 80 88 1401
Finland +41 52 675 3777
France 00800 2255 4835*
Germany 00800 2255 4835*
Hong Kong 400 820 5835
India 000 800 650 1835
Italy 00800 2255 4835*
Japan 81 (3) 6714 3010
Luxembourg +41 52 675 3777
Mexico, Central/South America & Caribbean 52 (55) 56 04 50 90
Middle East, Asia, and North Africa +41 52 675 3777
The Netherlands 00800 2255 4835*
Norway 800 16098
People’s Republic of China 400 820 5835
Poland +41 52 675 3777
Portugal 80 08 12370
Republic of Korea 001 800 8255 2835
Russia & CIS +7 (495) 7484900
South Africa +41 52 675 3777
Spain 00800 2255 4835*
Sweden 00800 2255 4835*
Switzerland 00800 2255 4835*
Taiwan 886 (2) 2722 9622
United Kingdom & Ireland 00800 2255 4835*
USA 1 800 833 9200
* European toll-free number. If not accessible, call: +41 52 675 3777
Updated 10 February 2011
For Further Information. Tektronix maintains a comprehensive, constantly expanding
collection of application notes, technical briefs and other resources to help engineers working
on the cutting edge of technology. Please visit www.tektronix.com
Copyright © Tektronix, Inc. All rights reserved. Tektronix products are covered by U.S. and foreign patents,
issued and pending. Information in this publication supersedes that in all previously published material.
Specification and price change privileges reserved. TEKTRONIX and TEK are registered trademarks of
Tektronix, Inc. All other trade names referenced are the service marks, trademarks, or registered trademarks
of their respective companies.
31 May 2012
www.tektronix.com
75W-28089-0
5½-Digit Dual-Display Digital Multimeter
The Model 2110 5½-Digit Dual-Display Digital
Multimeter combines a compelling price with a
comprehensive set of capabilities, superior
measurement accuracy, and high speed for
a broad range of applications. It features 15
measurement functions and 7 math functions
and has dual-line display capability, which
allows it to display two different measurements
concurrently. The Model 2110 is an unbeatable
value for production, R&D, and test engineers,
scientists, and students making a wide variety of
measurements in portable, bench, and system
applications.
High Accuracy, Abundant
Capabilities, Low Cost
The Model 2110 provides precision and a rich
set of capabilities at a value price. It has 0.012%
one-year basic DC voltage accuracy and 0.020%
one-year basic resistance accuracy up to the
100kW range.
• High accuracy, high speed for
general purpose measurements
• 15 measurement functions,
including capacitance and
thermocouple measurements
• Dual-line display allows
concurrent measurements
• TMC-compliant USB 2.0
interface for use with SCPI test
commands
• GPIB option for use in system
applications
DIGITAL MULTIMETERS & SYSTEMS
• Includes PC software utilities
for graphing and data sharing
in both Microsoft® Word and
Excel
• Rugged construction for
durability in bench/portable
applications
• Includes all accessories, such
as start-up software, USB cable,
power cable, and safety test
leads
• CE compliant and
listed
APPLICATIONS
Built for Production Testing
The Model 2110 Digital Multimeter
is ideal for applications in manual,
semi-automatic, and automatic
testing of low-cost electronic
devices, circuits, modules, electrical
components, and semiconductor
components. Key features include:
• Speed: up to 50,000 readings
per second
• Control: GPIB (optional) and USB
interfaces, accepting SCPI (IEEE488.2) commands
• External BNC trigger lines
• NIST traceability (with included
calibration certificate)
Built for General Purpose Uses
The Model 2110 Digital Multimeter
is also ideal for bench uses such
as research, development, service,
calibration, and teaching. Benchoriented features include:
• Accuracy: 0.012% basic
DCV accuracy
• Easy-to-operate panel
• Easy waveform plotting and
data collection with KI-Tool and
KI-Link
• Store up to 2000 readings
The Model 2110 provides a wide number of
measurement ranges and functions:
• DC voltage: 0.1V, 1V, 10V, 100V, and 1000V
• AC voltage: 0.1V, 1V, 10V, 100V, and 750V
• DC current: 10mA, 100mA, 1A, 3A, and 10A
• AC current: 1A, 3A, and 10A
• Two- and four-wire resistance: 100W, 1kW,
10kW, 100kW, 1MW, 10MW, and 100MW
• Frequency: From 10Hz to 300kHz
• Capacitance measurement: 1nF, 10nF, 100nF,
1µF, 10µF, 100µF
• Thermocouple measurement: J-, R-, S-, T-, E-,
N-, B-, C-, and K-type thermocouples
• Temperature (RTD and NTC Thermistor)
measurements
• Diode measurement
• Continuity test
• Programmable A-D converter and filter
settings for signal to noise optimization.
Additionally, seven mathematical operations
can be performed on measurement readings:
percentage, average, min/max, NULL, limits,
mX+b, dB, and dBm testing.
Speed
At 5½ digits, the Model 2110 delivers up to
200 readings/s via the USB remote interface.
At the fast 4½-digit setting, it reads up to 50,000
readings/s and up to 30,000 readings/s into
the buffer, making it ideal for production
and monitoring applications in which speed
is ­critical.
1.888.KEITHLEY (U.S. only)
www.keithley.com
A Greater Measure of Confidence
Low-cost 5½-digit DMM for system, bench, or portable applications
Low-cost 5½-digit DMM for system, bench, or portable applications
2110
2110
5½-Digit Dual-Display Digital Multimeter
Accessories Supplied
Reference Manual on CD,
Specifications, LabVIEW® Driver,
Keithley I/O Layer, USB Cable,
Power Cable, Safety Test Leads,
KI-Tool, and KI-Link Add-in
(both Microsoft Word and Excel
versions), Calibration Certificate
All accessories, such as start-up software, USB cable, power cable, and safety test leads,
are included with the Model 2110.
Simplicity
The Model 2110 is operational and intuitive to use right out of the box. The functions on the front
panel are user friendly and easy to read. Its KI-Tool and KI-Link software allow users to quickly control the instrument over GPIB (if equipped) or USB, record measurements, and display time-series
plots of the data. Its LabView® and IVI drivers give more-advanced customers even more control
over the instrument. Both the TMC-compliant USB remote interface and the GPIB interface allow
easy re-use of existing SCPI programs.
Startup Software, PC Utilities Included
The KI-Tool application provides charting and graphing capabilities without programming to simplify
setup, checkout, and basic measurement applications requiring graphical data representation. Scale,
offset, and level can be adjusted to fine-tune images for visual evaluation of signal and noise elements
over time. It also includes tabular data and SCPI command prompt windows for maximum flexibility.
Data sets can also be saved to disk files.
Low-cost 5½-digit DMM for system, bench, or portable applications
2110-100: 5½-digit USB Digital
Multimeter (100V)
2110-120: 5½-digit USB Digital
Multimeter (120V)
2110-220: 5½-digit USB Digital
Multimeter (220V)
2110-240: 5½-digit USB Digital
Multimeter (240V)
2110-100-GPIB: 5½-digit
USB and GPIB Digital
Multimeter (100V)
2110-120-GPIB: 5½-digit
USB and GPIB Digital
Multimeter (120V)
2110-220-GPIB: 5½-digit
USB and GPIB Digital
Multimeter (220V)
2110-240-GPIB: 5½-digit
USB and GPIB Digital
Multimeter (240V)
The Microsoft Excel Add-In utility is also included and provides quick data import into a standard
Microsoft Excel spreadsheet, including selectable graphing, instrument settings, and number of data
points collected. Data can then be analyzed through standard or optional Microsoft Excel functions,
including graphical, statistical, and trend charting.
A version supporting Microsoft Word is also included
for direct data import into reports.
LabView, IVI-C, and IVI-COM drivers are also supplied
to allow for increased flexibility in integrating the
Model 2110 into new and existing systems and
test routines.
KI-Tool simplifies basic measurement
applications through every setup and
graphical data representation.
1.888.KEITHLEY (U.S. only)
www.keithley.com
A Greater Measure of Confidence
DIGITAL MULTIMETERS & SYSTEMS
Low-cost 5½-digit DMM for system, bench, or portable applications
Ordering Information
2110
5½-Digit Dual-Display Digital Multimeter
Specifications
DC CHARACTERISTICS
Model 2110 specifications
Range
100.000 mV
1.00000 V
10.0000 V
100.000 V
1000.00 V
Accuracy1
±(% of reading
+ % of range)
Input
Resolution Resistance 1 Year, 23° ±5°C
  1 µV
0.012 + 0.004
10 µV
0.012 + 0.001
0.1 mV
0.012 + 0.002
10 MW
  1 mV
0.012 + 0.002
10 mV
0.02  + 0.003
DCI (DC Current)
Range
10.0000 mA
100.000 mA
1.00000 A
3.0000  A
10.0000 A
Accuracy1
±(% of reading
+ % of range)
Shunt
Resolution Resistance 1 Year, 23° ±5°C
  0.1 µA
0.05  + 0.020
5.1 W
   1 µA
0.05  + 0.010
5.1 W
  10 µA
0.150 + 0.020
0.1 W
100 µA
0.200 + 0.030
0.1 W
100 µA
0.250 + 0.050
5 mW
Resistance 2
Range
100.000 W
1.00000kW
10.0000kW
100.000kW
1.00000MW
10.0000MW
100.000MW
Resolution
1mW
10mW
100mW
1 W
10W
100 W
1 kW
Range
1.0000V
Resolution
  10 µV
Test
Current
  1 mA
  1 mA
100 µA
10 µA
   1 µA
0.1 µA
0.1 µA
Test
Current
1 mA
Accuracy1
±(% of reading
+ % of range)
1 Year, 23° ±5°C
0.020 + 0.030
Temperature
Coefficient
0°–18°C & 28°–40°C
0.002 + 0.0005
Test
Current
1 mA
Accuracy1
±(% of reading
+ % of range)
1 Year, 23° ±5°C
0.020 + 0.020
Temperature
Coefficient
0°–18°C & 28°–40°C
0.002 + 0.0005
Continuity
Range
1000W
Resolution
10 mW
Temperature
Coefficient
0°–18°C & 28°–40°C
0.005 + 0.002
0.005 + 0.001
0.008 + 0.001
0.008 + 0.001
0.008 + 0.001
Accuracy1
±(% of reading
+ % of range)
1 Year, 23° ±5°C
0.020 + 0.020
0.020 + 0.003
0.020 + 0.002
0.020 + 0.002
0.030 + 0.004
0.200 + 0.004
2.000 + 0.005
Diode Test
DIGITAL MULTIMETERS & SYSTEMS
TEMPERATURE (Thermocouple) CHARACTERISTICS
Temperature
Coefficient
0°–18°C & 28°–40°C
0.001  + 0.0005
0.0009 + 0.0005
0.0012 + 0.0005
0.0012 + 0.0005
0.002  + 0.0015
Temperature
Coefficient
0°–18°C & 28°–40°C
0.003 + 0.0005
0.003 + 0.0005
0.003 + 0.0005
0.003 + 0.0005
0.005 + 0.0005
0.05  + 0.0005
0.5   + 0.0005
1. Specifications valid after two hour warm-up.
a. ADC set for continuous trigger operation.
b. Input bias current <30pA at 25°C.
c. Measurement rate set to 10 PLC.
2. Specifications for 4W ohms mode. For 2W ohms, use zero null or subtract lead resistance from displayed reading.
a. Maximum lead resistance 10% of range per lead for 100W and 1kW ranges; add 1kW per lead for all
other ranges.
Measurement noise rejection DC (60Hz/50Hz) at 5.5 Digits
CMRR: 120dB for 1kW unbalance in LO lead.
NMRR: 60dB for line frequency ±0.1%.
Thermocouple
Type
B
C
E
J
K
N
R
S
T
Range
600 to 1800°C
0 to 2300°C
–250 to 1000°C
–200 to 1200°C
–200 to 1350°C
–200 to 1300°C
0 to 1750°C
0 to 1750°C
–250 to   400°C
Accuracy1 ±°C
1 Year, exclusive of lead accuracy
1.5
1.5
1.5
1.0
1.0
1.0
1.5
1.5
1.5
1. Specifications valid after two hour warm-up;
a. ADC set for continuous trigger operation.
RTD and NTC Thermistor Measurements: Accuracy ±0.8˚C, 1 year, exclusive of lead
accuracy. PT100, D100, F100, PT385, PT3916, SPRTD (R-Zero, A4, B4, Ax, Bx, Cx, and Dx), NTCT
(A, B, and C), and user-definable RTD.
CAPACITANCE CHARACTERISTICS
Range
1.000 nF
10.00 nF
100.0 nF
  1.000 µF
  10.00 µF
  100.0 µF
Test
Current
10 µA
10 µA
100 µA
100 µA
100 µA
  1 mA
Accuracy1
±(% of reading + % of range)
1 Year, 23° ±5°C
2.0 + 0.80
1.0 + 0.50
1.0 + 0.50
1.0 + 0.50
1.0 + 0.50
1.0 + 0.50
1. Specifications valid after two hour warm-up.
a. ADC set for continuous trigger operation.
b. Null enabled.
ACCESSORIES AVAILABLE
4299-3
4299-4
4299-7
5805
5805-12
5808
5809
6517-TP
7007-1
7007-2
8605
8606
8680
8681
Single Rack Mount Kit
Dual Rack Mount Kit
Fixed Rack Mount Kit
Kelvin Probes, 0.9m (3ft)
Kelvin Probes, 3.6m (12ft)
Low Cost, Single Pin, Kelvin Probes
Low Cost, Kelvin Clip Lead Set
Thermocouple Bead Probe (K-Type)
Shielded GPIB Cable, 1m (3.3 ft)
Shielded GPIB Cable, 2m (6.6 ft)
High Performance Modular Test Leads
High Performance Modular Probe Kit
RTD Probe Adapter
Low Cost RTD
2110-3Y-EW
2110-5Y-EW
C/2110-3Y-DATA
C/2110-5Y-DATA
C/2110-3Y-ISO
C/2110-5Y-ISO
1 Year Factory Warranty extended to 3 years from date of shipment
1 Year Factory Warranty extended to 5 years from date of shipment
3 (Z-540-1 compliant) calibrations within 3 years of purchase for Model 2110
5 (Z-540-1 compliant) calibrations within 5 years of purchase for Model 2110
3 (ISO-17025 accredited) calibrations within 3 years of purchase for Model 2110
5 (ISO-17025 accredited) calibrations within 5 years of purchase for Model 2110
SERVICES AVAILABLE
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Model 2110 specifications
DC Voltage
2110
5½-Digit Dual-Display Digital Multimeter
GENERAL
AC CHARACTERISTICS
Frequency and Period
Temperature
Accuracy1
Coefficient
Frequency ±(% of reading + % of range)
1 Year, 23° ±5°C
(Hz)
0°–18°C & 28°–40°C
Range
10–40
0.03
0.002
100.000 mV to
750.000 V 2
40–300k
0.02
0.002
ACV (AC TRMS Voltage)
Accuracy1
Temperature
±(% of reading +
Coefficient
% of range)
1 Year, 23° ±5°C 0°–18°C & 28°–40°C
Range
Resolution
Frequency
10 Hz–20 kHz
0.12 + 0.05
0.01 + 0.01
100.000 mV
1 µV
0.25 + 0.05
0.02 + 0.02
20 kHz–50 kHz
to
to
50 kHz–100 kHz
0.65 + 0.08
0.04 + 0.02
750.000 V 2
10 mV
100 kHz–300 kHz
5.00 + 0.50
0.2  + 0.02
ACI (AC TRMS Current)
Range
1.0000 A to
3.00000 A
Resolution
10 µA to
100 µA
10.0000 A
100 µA
Frequency
10 Hz–900 Hz
900 Hz–5 kHz
10 Hz–900 Hz
900 Hz–5 kHz
Accuracy1
Temperature
±(% of reading +
Coefficient
% of range)
1 Year, 23° ±5°C 0°–18°C & 28°–40°C
0.30 + 0.06
0.02 + 0.01
1.50 + 0.15
0.02 + 0.01
0.50 + 0.12
0.02 + 0.01
2.50 + 0.20
0.02 + 0.01
Input bias current: <30pA at 25°C.
Input protection: 1000V all ranges (2W input).
AC CMRR: 70dB (for 1kW unbalance LO lead).
Power Supply: 100V/120V/220V/240V.
Power Line Frequency: 50/60Hz auto detected.
Power Consumption: 25VA max.
Digital I/O interface: USB-compatible Type B connection, GPIB (option).
Environment: For indoor use only.
Operating Temperature: 0° to 40°C.
Operating Humidity: Maximum relative humidity 80% for temperature up to 31°C.
Storage Temperature: –40° to 70°C.
Operating Altitude Up to 2000 m above sea level.
Bench Dimensions (with handles and bumpers): 107 mm high × 252.8 mm wide × 305 mm
deep (3.49 in. × 9.95 in. × 12.00 in.).
Weight: 2.23 kg ( 4.92 lbs.).
Safety: Conforms to European Union Low Voltage Directive, EN61010-1. Measurement Cat 1
1000V and CAT II 600V.
EMC: Conforms to European Union Directive 89/336/EEC, EN61326-1.
Warranty: One year.
1. Specifications valid after two hour warm-up.
a. Slow AC filter (3Hz bandwidth).
b. Pure sine wave input greater than 5% of range.
2. 750VAC range is limited to 100kHz.
DIGITAL MULTIMETERS & SYSTEMS
Model 2110 rear panel.
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• Dual and triple output
models with two 30V/1.5A
(45W) channels and a 6V/5A
(30W) channel on the triple
output supply
• All channels are independently
controlled and have isolated
outputs for maximum flexibility
• All channels have remote
sensing to ensure that
programmed voltage is
accurately applied to the load
• Two 30V channels can be
combined either in series to
double output voltage or in
parallel to double output current
• 0.03% basic voltage output
accuracy and 0.1% current
accuracy ensure quality test data
• Low noise, linear regulation with
<3mVpp ripple and noise
• Voltage and current outputs
for all channels are displayed
simultaneously for easy
observation of each output state
DC POWER SUPPLIES
• Keypad entry allows fast, precise
entry of output values
• Standard USB interface for
automated testing
Multi-Channel Programmable
DC Power Supplies
The Models 2220 and 2230 Multi-Channel Programmable DC Power Supplies combine two and three
channels of output power to cost-effectively characterize and test a wide range of devices, circuit
boards, modules, and products that require more than one power source. The Model 2220-30-1
­supply provides two channels, with each channel capable of outputting up to 30V and up to 1.5A.
The Model 2230-30-1 includes two 30V/1.5A channels and adds a 6V channel with up to 5A output for
powering digital circuits. The Models 2220 and 2230 Multi-Channel Power Supplies offer an excellent
combination of performance, versatility, and ease of use to maximize the information from characterization or test as quickly and as easily as possible. They perform as effectively in automated test
systems as they do in manual instrument configurations.
Independent and Isolated Outputs
Since each channel in the Models 2220 and 2230 Multi-Channel Power Supplies is completely independent and isolated from each other, these power supplies can be used to provide power to two
circuits that are optically isolated or transformer-isolated from each other and have different reference points. Their isolated channels eliminate the need for a second power supply to power one of
the isolated circuits.
Additionally, each channel can be independently
controlled, so channels can be individually
turned on and turned off at any time. Thus,
these power supplies can be used to power up a
circuit with multiple voltage levels (such as a digital circuit) that must be turned on in a specified
time sequence. Furthermore, the timer capability
allows you to set up unattended tests that turn
off the channels after a programmed time interval to protect a device-under-test (DUT) from
potential damage due to the continuous application of power beyond a recommended time
interval. Both isolated and independent channels provide excellent versatility and flexibility to
address a wide range of test ­applications.
2230-30-1 TRIPLE CHANNEL DC POWER SUPPLY
CH1 0-30V
+
–
CH2 0-30V
CH3 0-5.5V
–
+
Accurate Power Delivery to the Load
With basic voltage setting accuracy and voltage
Power two isolated circuits with isolated
output channels.
readback accuracy of 0.03% for each channel,
the exact voltage programmed for any channel
is applied at the output terminals. Plus, the rear panel connections for each channel include remote
sense terminals that compensate for voltage drops in the power supply leads. This helps to ensure
that the correct voltage is delivered accurately to the load terminals of the DUT. Many other multichannel power supplies do not provide remote sensing, which reduces overall system accuracy.
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Multi-channel programmable DC power supplies
Multi-channel programmable DC power supplies
2220
2230
2220-30-1
Programmable Dual
Channel DC Power Supply
2220J-30-1
Programmable Dual Channel
DC Power Supply for Japan
2230-30-1
Programmable Triple
Channel DC Power Supply
2230J-30-1
Programmable Triple
Channel DC Power
Supply for Japan
Accessories Supplied
CS-1655-15 Rear Panel
Mating Connector for Models
2220 and 2230 MultiChannel Power Supplies
Documentation and Driver CD
Great accuracy is not limited to voltage; the basic current setting and readback accuracy is 0.1%, providing high quality load current measurements. Also, with less than 3mV p-p noise, the power applied
to the DUT’s load terminals is both accurate and of high quality.
Excellent accuracy, remote sensing, and a wide power output range make the Series 2200 MultiChannel Power Supplies essential test instruments both on the bench and in test systems. Their
ability to generate a wide range of output power and measure a wide range of load currents is
supported with:
•
•
•
•
Maximum output power of 45W on the 30V channels
Maximum output power of 30W on the 6V channel
Voltage setting and reading resolution of 1mV
Current setting and reading resolution of 1mA
Configure the Channels to Double Output Voltage or
Current or Create Bipolar Power Supplies
The two 30V channels can be combined if more than 30V or more than 1.5A is required. The two 30V
outputs can be wired in series to enable an output of 60V with a maximum current output of 1.5A or
can be wired in parallel to get up to 3A at 30V. In series or parallel configurations, the power supplies offer special display modes that indicate the actual voltage and current for the combined pair.
It’s also easy to wire the outputs to make a ±30V bipolar supply, and to maintain a user-defined ratio
between the two outputs when using Tracking mode. These modes of operation extend the performance of the power supplies, while the display shows the actual outputs in these special modes to
avoid any confusion or incorrect interpretation of the displayed data.
Accessories Available
CS-1655-15 4299-7 Rear Panel Mating Connector for
Series 2200 Power Supplies
Fixed Rack Mount Kit
Channel 1
Services Available
2220-30-1-EW
C/2220-30-1-3Y-STD
C/2220-30-1-3Y-DATA
1 additional year of factory warranty
3 calibrations within 3 years of purchase
3 (ANSI-Z540-1 compliant) calibrations
within 3 years of purchase
C/2220-30-1-5Y-STD
5 calibrations within 5 years of purchase
C/2220-30-1-5Y-DATA 5 (ANSI-Z540-1 compliant) calibrations
within 5 years of purchase
2230-30-1-EW
1 additional year of factory warranty
C/2230-30-1-3Y-STD
3 calibrations within 3 years of purchase
C/2230-30-1-3Y-DATA 3 (ANSI-Z540-1 compliant) calibrations
within 3 years of purchase
C/2230-30-1-5Y-STD
5 calibrations within 5 years of purchase
C/2230-30-1-5Y-DATA 5 (ANSI-Z540-1 compliant) calibrations
within 5 years of purchase
Note: For Japan versions, include a “J” in the model number
(example: 2230J-30-1-EW)
Power
Supply
Channel 1
+
0-30V
0-30V
+
–
–
Device
Under
Test
Device
Under
Test
V2
V+
Load
(Device, Circuit,
Module)
V–
–
+
0-30V
0-30V
Power
Supply
Channel 2
Use the two 30V channels to test a bipolar
integrated circuit or a bipolar module over its
specified voltage operating range.
–
V1 + V2
0-6V
+
Channel 2
(relative to
circuit common)
+
V1
0-6V
Multi-channel programmable DC power supplies
Multi-channel programmable DC power supplies
Ordering Information
Multi-Channel Programmable
DC Power Supplies
–
Device
Under
Test
V1
V2
Device
Under
Test
I1 + I2
Combine two channels in series to output up
to 60V or combine two channels in parallel
to output up to 3A. The Model 2220/2230
display will show the combined value.
Convenience Features Help Get Results More Quickly
The Models 2220 and 2230 Multi-Channel Power Supplies offer a number of features that return
results quickly and easily:
• A rotary knob, with user-selectable step size, makes it easy to check circuit response to changing
voltage or current. Alternatively, a direct-entry numeric keypad can be used to simplify setting
precise voltage and current values.
• Each channel has its own readout on the display. The voltage and current being delivered to each
channel are visible at a glance. A bright vacuum fluorescent display provides excellent readability
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DC POWER SUPPLIES
2220
2230
W 3-Y
ar ea
ra r
nt
y
at a distance, at an angle, or under dim
lighting conditions.
Models 2220 and 2230 specifications
• To save time when repeating tests, instrument
settings can be saved in one of 30 internal
memory locations by simply pressing the Save
button. To recall that setting, just push the
Recall button, and choose the desired setup.
Protection for Your Device-Under-Test
The Models 2220 and 2230 Multi-Channel Power
Supplies include maximum voltage settings that
prevent voltage from being accidentally adjusted
above user-specified limits. Independent outputs
allow a different limit to be specified for each
output channel. With the numeric keypad, a current limit can be quickly and precisely specified
before a test is started. In addition, a userdefinable password allows the front panel
to be locked to prevent unwanted adjustment
during critical tests.
Easy Test Automation
Each of these power supplies includes a USB
TMC-compliant device port, enabling PC control
from a user-preferred programming environment. For basic instrument control, data logging, and analysis, the Models 2220 and 2230
Multi-Channel Power Supplies can be controlled
by Tektronix Edition LabVIEW SignalExpress™
from National Instruments. SignalExpress supports a wide range of Tektronix bench instruments* and can be used to automate the entire
test bench or test system. The features in each
instrument are accessible from one intuitive
software interface that can automate complex
measurements that require multiple instruments
and easily capture and analyze results—all from
the user’s PC.
*For a complete listing of Tektronix instruments supported by Tektronix LabVIEW Signal Express, visit
www.tektronix.com/signalexpress.
DC POWER SUPPLIES
APPLICATIONS
Series 2200 Multi-Channel Power
Supplies typical applications
include:
• Circuit design
• Electrial engineering student labs
• Materials research
• Automated test
Multi-Channel Programmable
DC Power Supplies
Specifications
2230-30-1, 2230J-30-1
DC Output Rating
Voltage
Current
0 to 30 V
0 to 1.5 A
Maximum Power
2220-30-1, 2230J-30-1
0 to 30 V
0 to 1.5 A
120 W
0 to 6 V
0 to 5 A
0 to 30 V
0 to 1.5 A
0 to 30 V
0 to 1.5 A
90 W
Load Regulation
Voltage
Current
< 0.01% + 3 mV
< 0.01% + 3 mA
< 0.01% + 3 mV
< 0.01% + 3 mA
< 0.01% + 3 mV
< 0.01% + 3 mA
< 0.01% + 3 mV
< 0.01% + 3 mA
< 0.01% + 3 mV
< 0.01% + 3 mA
Line Regulation
Voltage
Current
< 0.01% + 3 mV
< 0.1% + 3 mA
< 0.01% + 3 mV
< 0.1% + 3 mA
< 0.01% + 3 mV
< 0.1% + 3 mA
< 0.01% + 3 mV
< 0.1% + 3 mA
< 0.01% + 3 mV
< 0.1% + 3 mA
< 1 mV rms
< 3 mV p-p
< 5 mA rms
< 1 mV rms
< 3 mV p-p
< 5 mA rms
< 1 mV rms
< 3 mV p-p
< 6 mA rms
< 1 mV rms
< 3 mV p-p
< 5 mA rms
< 1 mV rms
< 3 mV p-p
< 5 mA rms
1 mV
1 mA
1 mV
1 mA
1 mV
1 mA
1 mV
1 mA
1 mV
1 mA
± 0.03% + 10 mV
± 0.1% + 5 mA
± 0.03% + 10 mV
± 0.1% + 5 mA
± 0.03% + 10 mV
± 0.1% + 5 mA
± 0.03% + 10 mV
± 0.1% + 5 mA
1 mV
1 mA
1 mV
1 mA
1 mV
1 mA
1 mV
1 mA
1 mV
1 mA
± 0.03% + 10 mV
± 0.1% + 5 mA
± 0.03% + 10 mV
± 0.1% + 5 mA
± 0.03% + 10 mV
± 0.1% + 5 mA
± 0.03% + 10 mV
± 0.1% + 5 mA
± 0.03% + 10 mV
± 0.1% + 5 mA
Ripple and Noise
Voltage (7MHz)
Current (20MHz)
Setting Resolution
Voltage
Current
Setting Accuracy
± 0.03% + 10 mV
Voltage
± 0.1% + 5 mA
Current
Meter Resolution
Voltage
Current
Meter Accuracy
Voltage
Current
Isolation Voltage, Output to Chassis: Any output
can be floated up to 240V (DC + peak AC with AC limited to
a maximum of 3Vpk-pk and a maximum frequency of 60Hz)
relative to earth ground terminal.
Isolation Voltage, Output to Output: Any output can
be floated up to 240V (DC + peak AC with AC limited to a
maximum of 3Vpk-pk and a maximum frequency of 60Hz)
relative to any other output terminal.
Voltage Transient Response Settling Time, Load
Change (typical): <150ms to within 75mV following
a change from 0.1A to 1A.
Voltage Transient Response Settling Time, Setting
Change, Rising (typical): <150ms to within 75mV
following a change from 1V to 11V into a 10W resistor (Ch. 1,
2); from 0.4V to 4V into a 4W resistor (ch. 3.)
Voltage Transient Response Settling Time, Setting
Change, Falling (typical): <150ms to within 75mV
following a change from 11V to 1V into a 10W resistor (Ch. 1,
2); from 0.4V to 4V into a 4W resistor (ch. 3.)
Display: Vacuum fluorescent display.
Memory: 30 setup memories.
Tracking and Combination Modes:
Tracking Mode: Maintains the ratio on the two 30V output
channels that is present when the control is activated.
Combination V1+V2 Series Mode: Deliver up to 60 V when
CH1 and CH2 are wired in series. Meter reads back combined voltage.
Combination I1+12 Parallel Mode: Deliver up to 3 A when
CH1 and CH2 are wired in parallel. Meter reads back
­combined ­current.
Rear panel Connections: USB Device Port, Type B connector, USBTMC compatible.
Power Source
110VAC Setting:
Standard Versions: 99 to 121V rms.
Japan (J) Versions: 90 to 110V rms.
220VAC Setting:
Standard Versions: 198 to 242V rms.
Japan (J) Versions: 180 to 220V rms.
Frequency:
47Hz to 63Hz.
Power Consumption:Standard Versions: 450VA.
Japan (J) Versions: 450VA.
Physical Characteristics
Protective boots and handle installed:
Height: 105.3mm (4.15 in.)
Width: 241.8mm (9.52 in.)
Depth: 384.0mm (15.12 in.)
Protective boots and handle removed:
Height: 90.7mm (3.57 in.)
Width: 217.2mm (8.55 in.)
Depth: 361.6mm (14.24 in.)
Net Weight:
2220-30-1: 8.2 kg (18 lb.)
2230-30-1: 8.5 kg (19 lb.)
Shipping Weight:
2220-30-1: 11 kg (24 lb.)
2230-30-1: 11 kg (24 lb.)
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Models 2220 and 2230 specifications
2220
2230
2220
2230
Multi-Channel Programmable
DC Power Supplies
Environmental and Safety
Operating: 0° to +40°C.
Storage: –20° to +70°C.
Relative Humidity (non-condensing):
Operating: 5% to 95% relative humidity at up to +40°C
Storage: 5% to 95% relative humidity at up to +40°C. 5% to 60% RH above +40°C up to +70°C, non
condensing.
Altitude:
Operating: Up to 2000m.
Storage: Up to 4000m.
Safety:
European Union: Complies with European Union EMC Directive.
USA: Nationally recognized testing laboratory listing UL61010-1-2004.
Canada: CAN/CSA C22.2 No. 61010-1 2004.
European Union: Complies with European Union Low Voltage Directive.
Australia: EMC Framework, demonstrated per Emission Standard AS/NZS 2064 (Industrial,
Scientific, and Medical Equipment).
Models 2220 and 2230 specifications
Model 2220-30-1 rear panel.
Electromagnetic Compatibility
Model 2230-30-1 rear panel.
DC POWER SUPPLIES
Models 2220 and 2230 specifications
Temperature:
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