12-bit and 14-bit Multifunction Devices with 8 Analog Inputs, 2

12-bit and 14-bit Multifunction Devices with 8 Analog Inputs, 2
USB-1408FS
14-Bit, 48 kS/s, Multifunction USB Data Acquisition Device
Features
• Low-cost USB DAQ devices
with 4 differential or 8 singleended analog inputs
• Maximum sample rate of
48 kS/s
• 2 analog outputs
• 16 digital I/O
• One 32-bit counter input
channel
• No external power required
• Available with enclosure and
screw terminals
Supported Operating Systems
The USB-1408FS offers eight singled-ended or four differential analog inputs, two analog
outputs, 16 digital I/O, and one counter input.
Overview
The USB-1408FS is a low-cost analog and digital I/O device that offers four differential (DIFF) or eight single-ended (SE) analog inputs, two analog outputs,
16 digital I/O and one event counter.
The device supports sample rates up to 48 kS/s and multiple software-selectable voltage input ranges, making it ideally suited for a wide assortment of measurements.
Analog Input
The USB-1408FS provides eight, 13-bit SE
analog inputs or four, 14-bit DIFF analog
inputs.
The device supports software‑selectable
ranges that provide inputs from ±1 V to
±20 V in a DIFF configuration, and ±10 V
in a SE configuration.
Analog Output
The maximum analog output update rate
depends on several factors, including USB
port speed.
The USB-1408FS offers two 12-bit analog
outputs with a range of 0 V to 4.096 V.
Sample Rate
When scanning in hardware-paced mode,
the USB-1408FS can sample at a maximum
of 48 kS/s.
Channel-Gain Queue
The channel-gain queue feature lets you
configure a list of channels and gains for
each scan. Each channel can have a different gain setting. The gain settings are
stored in a channel-gain queue list that
is written to local memory on the device.
Measurement Computing
The USB-1408FS channel-gain queue
can contain up to 16 channels listed in
any order.
When updating continuously from computer memory (hardware-paced mode),
one analog output updates at a maximum
rate of 10 kS/s; two analog outputs update
simultaneously at a maximum rate of
5 kS/s each.
Digital I/O
• Windows® 10/8/7/Vista®/XP
32/64-bit
Event Counter Input
Each device supports one 32-bit TTL-level
counter that accepts inputs up to 1 MHz.
External Clock I/O
Each USB-1408FS device has a bidirectional external clock terminal. When
configured for input, A/D conversions can
be paced by an external source.
The USB-1408FS supports TTL-level input
signals up to 48 kHz.
When configured for output, the device
can pace A/D conversions on a second
device.
Trigger Input
The USB-1408FS provides an external digital trigger input that is software-selectable
for rising or falling edge.
Calibration
All USB-1408FS devices are factorycalibrated. Specifications are guaranteed
for one year. For calibration beyond one
year, return the device to the factory for
recalibration.
The USB-1408FS provides 16 TTL-level
digital I/O lines. Digital I/O can be programmed on each 8-bit port (Port A and
Port B) for either input (default) or output.
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USB-1408FS
Software
Software Support
The USB-1408FS is supported by the software in the table below.
Ready-to-Run Applications
DAQami™
InstaCal™
TracerDAQ™ and
TracerDAQ Pro
Data acquisition companion software with drag-and-drop interface that is used to acquire,
view, and log data, and generate signals. DAQami can be configured to log analog, digital, and
counter channels, and to view that data in real-time or post-acquisition on user-configurable
displays. Logged data can be exported for use in Excel® or MATLAB®. Windows OS
DAQami is included with the free MCC DAQ Software bundle (CD/download). Install DAQami
and try the fully-functional software for 30 days. After 30 days, all features except for data logging and data export will continue to be available – data logging and data export features can
be unlocked by purchasing the software.
An interactive installation, configuration, and test utility for MCC hardware. Windows OS
InstaCal is included with the free MCC DAQ Software bundle (CD/download).
Virtual strip chart, oscilloscope, function generator, and rate generator applications used to
generate, acquire, analyze, display, and export data. Supported features may vary by hardware.
The Pro version provides enhanced features. Windows OS
TracerDAQ is included with the free MCC DAQ Software bundle (CD/download).
TracerDAQ Pro is available as a purchased software download.
General-Purpose Programming Support
Universal Library™
(UL)
Linux® driver
Library for developing applications in C, C++, VB, C# .Net, VB .Net, and Python.
Windows OS
The UL is included with the free MCC DAQ Software bundle (CD/download).
Open-source Linux drivers are available for most MCC devices. Example programs are also
provided.
Application-Specific Programming Support
ULx for
NI LabVIEW™
DASYLab®
MATLAB driver
®
A comprehensive library of VIs and example programs for NI LabVIEW that is used to develop
custom applications that interact with most MCC devices. Windows OS
ULx for NI LabVIEW is included with the free MCC DAQ Software bundle (CD/download).
Icon-based data acquisition, graphics, control, and analysis software that allows users to create
complex applications in minimal time without text-based programming. Windows OS
DASYLab is available as a purchased software download. An evaluation version is available for
28 days.
High-level language and interactive environment for numerical computation,
visualization, and programming. The Mathworks Data Acquisition Toolbox™ allows users to
acquire data from most MCC PCI and USB devices.
Visit www.MathWorks.com for more information about the Data Acquisition Toolbox.
Measurement Computing
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USB-1408FS
Specifications
Specifications
Noise Performance
All specifications are subject to change without notice.
Typical for 25°C unless otherwise specified.
Range
Typical Counts
Least Significant
BitRoot Mean Square
(LSBRMS)
±20 V
8
1.21
±10 V
8
1.21
±5 V
9
1.36
±4 V
10
1.51
±2.5 V
12
1.81
±2 V
14
2.12
±1.25 V
18
2.72
±1 V
22
3.33
8.0
1.21
Analog Input
A/D converter type: Successive approximation
Channels: 8 SE or 4 DIFF, programmable as SE or DIFF
Input common-mode voltage range for linear operation
SE Mode: CHx to GND, ±10 V max
DIFF Mode: CHx to GND, –10 V min, 20 V max
Absolute maximum input voltage: CHx to GND, ±28 V max
Input impedance: 122 kΩ
Input current
Vin = 10 V, 70 µA typ
Vin = 0 V, –12 µA typ
Vin = –10 V, –94 µA typ
Input current is a function of applied voltage on the analog input channels.
For a given input voltage, Vin, the input leakage is approximately equal to
(8.181 * Vin–12) µA
Ranges: Software or selectable on a per-channel basis
SE mode: ±10 V
DIFF mode: ±20 V, ±10 V, ±5 V, ±4 V, ±2.5 V, ±2.0 V, ±1.25 V, ±1.0 V
Throughput
Maximum throughput scanning to computer memory depends on the
computer being used.
Software paced: 250 S/s typ, system‑dependent
Hardware paced: 50 kS/s
Channel gain queue: Up to 16 elements, software-selectable channel and range
Resolution
DIFF: 12 bits, no missing codes
SE: 11 bits (the AD7870 converter only returns 11-bits (0–2047 codes) in SE
mode)
Integral linearity errors: ±1 least significant bit (LSB) typ
Differential linearity error: ±0.5 LSB typ
Absolute accuracy long term drift
±20 V range: 3LSB typ (Δt = 1000 hr)
±4 V range: ±6LSB typ (Δt = 1000 hr)
±1 V range: ±8LSB typ (Δt = 1000 hr)
Extrapolating the long term drift accuracy specifications will provide the
approximate long term drift of the USB-1408FS intermediate input ranges.
2.5VREF accuracy (pin 16): ±36.25 mV max
2.5VREF output current (pin 16)
Source: 5 mA max.
Sink: 20 µA min, 100 µA typ
Trigger source (software-selectable)
External digital: TRIG_IN
Differential Mode
Single-Ended Mode
±10 V
Analog Output
Resolution: 12 bits, 1 in 4096
Output range: 0 V to 4.096 V, 1 mV per LSB.
Number of channels: 2
Throughput
Maximum throughput scanning to computer memory depends on the
computer being used.
Software paced: 250 S/s single channel typ, system‑dependent
Hardware paced
Single channel: 10 kS/s
Dual channel: 5 kS/s
Power on and reset voltage: 0 V, ±20 mV typ (initializes to 000h code)
Output drive (each D/A out): 15 mA
Slew Rate: 0.8 V/µs typ
Accuracy (All Values are ±)
0 V to 4.096 V: 4.0 LSB typ, 45.0 LSB max
Analog output accuracy components (all values are ±) Range: 0 V to 4.096 V
% of FSR: 0.1 typ, 0.9 max
Gain error at full scale: 4.0 mV typ, 36.0 mV max
Offset: 1.0 mV typ, 9.0 mV max
Zero-scale offsets may result in a fixed zero-scale error producing a dead-band
digital input code region. In this case, changes in digital input code at values
less than 0x040 may not produce a corresponding change in the output voltage. The USB-1408FS offset error is tested and specified at code 0x040.
Accuracy at FS: 4.0 mV typ, 45.0 mV max
Analog Input Accuracy
Range
Absolute Accuracy
25°C
Absolute Accuracy
0 °C to 50 °C
±20 V
±10.98 mV
±49.08 mV
±10 V
±7.32 mV
±33.42 mV
±5 V
±3.66 mV
±20.76 mV
Differential Mode
Digital I/O
±4 V
±2.92 mV
±19.02 mV
±2.5 V
±1.83 mV
±14.97 mV
±2 V
±1.70 mV
±14.29 mV
±1.25 V
±1.21 mV
±12.18 mV
±1 V
±1.09 mV
±11.63 mV
±10.98 mV
±49.08 mV
Digital type: CMOS
Number of I/O: 16 (Port A0 through A7, Port B0 through B7)
Configuration: 2 banks of 8
Pull-up/down configuration: All pins pulled up to 5 V through 47 kΩ resistors
(default). Change to pull-down using internal user-configurable jumpers.
Hardware with p/n 193331x (where x is the revision letter) may be changed to
pull-down using an internal jumper. Other hardware versions can be configured
for pull-down at the factory.
Input high voltage: 2.0 V min, 5.5 V absolute max
Input low voltage: 0.8 V max, –0.5 V absolute min, 0 V recommended min
Output high voltage (IOH = –6.0 mA): 3.84 V min
Output low voltage (IOL = 6.0 mA): 0.33 V max
Power on and reset state: Input
Single-Ended Mode
±10 V
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USB-1408FS
Specifications
USB-1408FS Block Diagram
8
Event Counter
1 Channel (32-bit)
Digital I/O
Port B
SYNC
TRIG_IN
16
8
1
USB
Microcontroller
Digital I/O
Port A
Analog Output
2 Channels (12-bit)
Analog Input
8 Single-Ended Channels (13-bit)
or
4 Differential Channels (14-bit)3
2
8
16
Full-speed
USB 2.0
Compliant
Interface
USB
External Trigger
Maximum input frequency: 1 MHz
High pulse width: 500 ns min
Low pulse width: 500 ns min
Schmidt trigger hysteresis: 1.01 V typ, 0.6 V min, 1.5 V max
Input high voltage threshold: 2.43 V typ, 1.9 V min, 3.1 V max
Input high voltage limit: 5.5 V absolute max
Input Low voltage threshold: 1.42 V typ, 1.0 V min, 2.0 V max
Input low voltage limit: –0.5 V absolute min, 0 V recommended min
Trigger source: External digital, TRIG_IN
Trigger Mode: Edge sensitive; software-selectable for CMOS compatible rising
or falling edge
Trigger latency: 10 µs max
Trigger pulse width: 1 µs min
Input type: Schmitt trigger, 47 kΩ pull-down to ground
Schmitt trigger hysteresis: 1.01 V typ, 0.6 V min, 1.5 V max
Input high voltage threshold: 2.43 V typ, 1.9 V min, 3.1 V max
Input high voltage limit: 5.5 V absolute max
Input low voltage threshold: 1.42 V typ, 1.0 V min, 2.0 V max
Input low voltage limit: –0.5 V absolute min, 0 V recommended min
Non-Volatile Memory
EEPROM: 1,024 bytes
EEPROM configuration
Address 0x000 to 0x1FF: Read/write access, 512 bytes user area
Address 0x200 to 0x3FF: Read/write with unlock, 512 bytes calibration data
External Clock Input/Output
Power
Pin name: SYNC
Pin type: Bidirectional
Direction (software-selectable)
Input (default): Receives A/D clock from external source. Active on rising edge.
Output: Outputs internal A/D clock. Active on rising edge.
Input clock rate: 48 kHz, max
Clock pulse width
Input mode: 1 µs min
Output mode: 5 µs min
Input type: Schmitt trigger, 47 kΩ pull-down to ground
Schmitt trigger hysteresis: 1.01 V typ, 0.6 V min, 1.5 V max
Input high voltage threshold: 2.43 V typ, 1.9 V min, 3.1 V max
Input high voltage limit: 5.5 V absolute max
Input low voltage threshold: 1.42 V typ, 1.0 V min, 2.0 V max
Input low voltage limit: –0.5 V absolute min, 0 V recommended min
Output high voltage: 4.4 V min (IOH = –50 µA), 3.80 V min (IOH = –8 mA)
Output low voltage: 0.1 V max (IOL = 50 µA), 0.44 V max (IOL = 8 mA)
Supply current: 80 mA (total current requirement; includes up to 10 mA forthe
status LED)
5 V USB power available
Connected to self-powered hub: 4.5 V min, 5.25 V max
Connected to bus-powered hub: 4.1 V min, 5.25 V max
Output Current (total amount of current that can be sourced from the USB 5 V,
analog outputs and digital outputs)
Connected to self-powered hub or externally powered
Root port hub: 420 mA max
Connected to bus-powered hub: 20 mA max
Self-powered USB hubs and hosts have their own power supply. The USB
port(s) on your computer are root port hubs. All externally powered root
port hubs (desktop computers) provide up to 500 mA of current for a
USB device. Battery-powered root port hubs provide 100 mA or 500 mA,
depending upon the manufacturer. A laptop PC that is not connected to an
external power adapter is an example of a battery-powered root port hub.
Counter
Bus-powered USB hubs and hosts do not have their own power supply.
Pin name: CTR
Counter type: Event counter
Number of channels: 1
Input type: Schmitt trigger, 47 kΩ pull-down to ground
Input Source: CTR screw terminal
Resolution: 32 bits
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USB-1408FS
Ordering
General
Mechanical
Device type: USB 2.0 full-speed
Device compatibility: USB 1.1, 2.0
Dimensions (L × W × H): 79 × 82 × 27 mm (3.20 × 3.10 × 1.05 in.)
USB cable length: 3 m (9.84 ft) max
User connection length: 3 m (9.84 ft) max
Environmental
Operating temperature: 0 ˚C to 70 ˚C
Storage temperature: –40 ˚C to 70 °C
Relative humidity: 0% to 90% non-condensing
Screw Terminal Connector
Connector type: Screw terminal
Wire gauge range: 16 AWG to 30 AWG
Order Information
Software also Available from MCC
Hardware
Part No.
Description
USB-1408FS
USB-based data acquisition device with 8 analog
inputs, up to 14-bit resolution, 48 kS/s, two
analog outputs, and 16 digital I/O. Includes USB
cable and MCC DAQ software CD.
Measurement Computing
DS-USB-1408FS
(508) 946-5100
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Part No.
Description
DAQami
Data acquisition companion software for
acquiring data and generating signals
TracerDAQ Pro
Out-of-the-box virtual instrument suite with
strip chart, oscilloscope, function generator, and
rate generator – professional version
DASYLab
Icon-based data acquisition, graphics, control,
and analysis software
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May 2017. Rev 2
© Measurement Computing Corporation
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