User Manual - TESTEC Elektronik GmbH

User Manual - TESTEC Elektronik GmbH
User Manual
FST-200 4 S Analyzer
Generalvertretung Deutschland:
TESTEC Elektronik GmbH
Westerbachstr. 58
60489 Frankfurt am Main
Telefon: +49 (0)69 943335 0
Telefax: +49 (0)69 943335 55
e-mail: [email protected]
Internet: www.testec.de
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TABLE OF CONTENTS
1 TECHNICAL INFORMATION ................................................................................................. 5
2 GENERAL .............................................................................................................................. 7
2.1 FST-200 ...................................................................................................................................................................................... 7
2.2 FST-200 control modes........................................................................................................................................................ 7
2.3 Calibration ................................................................................................................................................................................. 7
3 SAFETY PRECAUTIONS ........................................................................................................ 8
3.1 General........................................................................................................................................................................................ 8
3.2 High Voltage and High Current WARNING .................................................................................................................. 8
4 INSTALLATION ..................................................................................................................... 9
4.1 General........................................................................................................................................................................................ 9
4.2 Mounting into 19” Module –Rack or Case .................................................................................................................... 9
4.3 Connecting to the D.U.T. ................................................................................................................................................... 10
4.5 Mains supply and Switching On the FST-200 .......................................................................................................... 10
5 MANUAL OPERATION ........................................................................................................ 12
5.1 General..................................................................................................................................................................................... 12
5.2 Buttons and indicators ...................................................................................................................................................... 12
5.3 Start-Up ................................................................................................................................................................................... 13
5.4 Setting Parameters ............................................................................................................................................................. 13
5.5 Preparation for Service Call ............................................................................................................................................ 14
5.6 Control menu and commands ........................................................................................................................................ 15
5.6.1 Selection of Current and Voltage Values in PE Measurement .........................................................................17
5.6.2 Use of timer ..............................................................................................................................................................................17
5.6.3 Integration time (NPLC) in Insulation resistance test .........................................................................................17
5.6.4 Voltage Increase Time (Ramp) in Insulation Resistance Test ..........................................................................17
5.6.5 Spark detector (SPdet) in High Voltage Test............................................................................................................18
5.6.6 Voltage increase method (Ramp) in High Voltage test .......................................................................................18
5.6.7 AC/DC Output in High Voltage Test (Option – Factory installed) ..................................................................18
5.7 Testing ..................................................................................................................................................................................... 18
5.7.1 Measuring in PE Continuity Test (PE) .........................................................................................................................19
5.7.2 Measuring in Insulation Resistance Test (ISO)........................................................................................................20
5.7.3 Measuring in High Voltage Test (HV) ..........................................................................................................................21
5.7.4 Resistance measuring (RES) ............................................................................................................................................21
5.7.5 Test sequence ..........................................................................................................................................................................22
6 ERROR MESSAGES ................................................................................................................. 23
7 OPERATION WITH COMPUTER .............................................................................................. 24
7.1 General..................................................................................................................................................................................... 24
7.2 Address Setting .................................................................................................................................................................... 24
7.3 Connections ........................................................................................................................................................................... 25
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Haltonintie 5, FIN-47400 KAUSALA, FINLAND
www.qacontrol.com
Tel. +358-5-7522 200
Fax +358-5-3638 326
[email protected]
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-----------------------------------------------------------------8 REMOTE CONTROL AND LOGIC OPERATION ................................................................... 26
8.1 General..................................................................................................................................................................................... 26
8.2 Start-up.................................................................................................................................................................................... 26
8.3 Logic Connections ............................................................................................................................................................... 26
9. BACK PANEL OF AN FST- LINE EQUIPMENT ................................................................... 27
10. MAIN CIRCUIT DIAGRAM................................................................................................ 28
11 FAULT FINDING ............................................................................................................... 29
12 LIMITED WARRANTY ...................................................................................................... 30
ANNEX A - FST-200 4 S ANALYZER - COMMAND LIST
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Dear Customer,
Thank you for purchasing Finero test and measurement equipment. Finero is obliged to
provide you with the best on the market available test and measurement equipment. The 30
years of Finero experience in most demanding production applications are made available to
you in this piece of equipment.
We are confident that this equipment will support your endeavors to keep up the good quality
of your production.
If you have any comments about Finero products, software or services I would like to hear of
them.
Yours truly,
Risto Vuolle
Chief Executive Officer
Finero Inc.
Kausala, Finland
Finero Oy – The Quality Control Company
Haltonintie 5, FIN-47400 KAUSALA, FINLAND
www.qacontrol.com
Tel. +358-5-7522 200
Fax +358-5-3638 326
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-----------------------------------------------------------------All information is subject to changes without prior notice.
DELIVERY SCOPE LIST
Although Finero packages the equipment with utmost care you should check the package
regarding any delivery damages. If the equipment is damaged you should contact your insurance company directly and inform Finero as well about the matter. Please include photos if
possible.
The package should include in minimum following documents and materials:
FST-200
Mains cable
User Manual
Calibration Certificate
HV test lead, red
1pc
1pc
1pc
1pc
4pcs
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www.qacontrol.com
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1 TECHNICAL INFORMATION
Type:
Serial number:
FST-200 4 S Analyzer
See back of device
Size:
483x148x410 (width, height, depth)
Designed to 19”-eurorack, height 3U 133mm, without legs
Weight:
23 kg
Operation voltage:
Operation power:
Connection:
Main fuses:
230VAC ( 10% ) 50Hz/60Hz single phase
360VA
Cable plug, equipment earth
2,5A slow 5x20mm glass
Environment temperature:
Environment conditions:
+5°C...+35°C
Dry and clean
PE Protective Continuity Test
Output:
Output current:
Accuracy
Measuring range:
Timer function:
Max 12Vac, 50Hz/60Hz
2 ranges, 10A and 25A, setting accuracy -0+20%
Resistance +-0,5% from the range +5 digits
Current +-0,5% from the range +5 digits
0…500mOhm
OFF or 0,3…60s with 0,1s steps
ISO Insulation Resistance Test
Output:
Maximum test current:
Accuracy
Measuring ranges:
0,5…10GΩ
Timer function:
Ramp function:
100…500Vdc, freely programmable
3,0mA, current limited, short circuit proof
Better than +-1% from the range, (if resistance <10% of
the range)
Autorange,
0,5…10MΩ;
5…100MΩ;
50…1000MΩ;
OFF or 0,3…60s with 0,1s steps
Time controlled 0…10s, in front of the test cycle
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-----------------------------------------------------------------HV High Voltage Test
Output:
Maximum test current:
Maximum test apparent power:
Measurements:
Accuracy:
Measurement ranges:
Timer function:
Ramp function:
Partial discharge detector:
0V...5000V ac voltage 50Hz
DC option available
10mA
50VA
True RMS for I and U
+-0,5% from the range +5 digits
2mA/10mA
OFF or 0,3…60s with 0,1s steps
Ramp up and/or down 5…30s
OFF or relative sensitivity adjustable 1...100
RES Resistance measuring
Output voltage:
Test current:
Measuring ranges:
Accuracy:
Timer function:
Max 50V ac voltage 50Hz
Max 200mA
Autorange, 0…2Ω; 0…10Ω; 0…100Ω; 0…500Ω
+-0,5% from the range +5 digits
OFF or 0,3…60s with 0,1s steps
Connections:
Ground and PE-measuring:
Back panel 4mm laboratory sockets (2pc safety and 2pc
normal). PE-measurement is done with 4-wire.
ISO, HV and RES-measuring:
Back panel 4mm high voltage sockets. RES-measuring is
done with 4-wire.
Remote control :
Start, stop, test, fail and safety circuit 24VDC
D25-female -connector in back panel
Computer connection (option):
LAN, USB(B), GPIB or RS-232 connector in the back panel
RS485 Interface
To be used for device to device communication between
FST-line equipment
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www.qacontrol.com
Tel. +358-5-7522 200
Fax +358-5-3638 326
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2 GENERAL
2.1 FST-200
The FST-200 4 S Analyzer comprises of HiPot, Isolation Resistance, Protective Earth (PE)
resistance and the Device Under Test (D.U.T.) functional resistance measurement up to
500mOhms.
FST-200 is delivered standard either with GPIB (5770) or with RSR232 (5772) interface.
Other interfaces are available as options.
ANY UNAUTHORIZED OPEING OF THE EQUIPMENT WILL VOID THE WARRANTY.
2.2 FST-200 control modes
The FST-200 can be controlled either locally by means of the front panel buttons, indicators
and analogue meter or in automatic test systems by a computer. Other remote control possibilities exist by using the D25 connector in the back panel.
2.3 Calibration
The FST-200 is factory tested and calibrated to meet the accuracy requirements. We recommend to calibrate FST-200 regularly once a year. The equipment may be calibrated in our
factory or by other means agreed separately. In the back of the equipment is a replaceable
measurement module, which can be sent to calibration.
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Fax +358-5-3638 326
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3 SAFETY
PRECAUTIONS
3.1 General
The operator should study carefully the instruction manuals and operation of the FST-200 as
well as testing instructions for the product to be tested before starting any tests. As a further
safety precaution the operator should be aware of emergency first aid actions. The FST-200
shall only be used strictly according to this user manual. All modifications are not allowed.
3.2 High Voltage and High Current WARNING
The high voltage connectors in rear panel have a dangerous high voltage during the test.
The current supplied by the FST-200 is high enough to cause convulsion and potentially to get
trapped to the parts under high voltage. The FST-200 measures the current in the circuit and
shall switch the voltage off if the current exceeds the set current limit, THIS FEATURE
CANNOT BE USED AS A SAFETY MEASURE!
NEVER TOUCH THE HIGH VOLTAGE CONNECTORS OR TEST LEADS IF THE FST-200 IS
SWITCHED ON!
The rear panel test connectors have low voltage during the test but due to high current there
may occur some sparking in the test connectors. Also care must be taken of heating of the test
leads caused by high currents. Therefore use sufficient cable cross section size for test leads.
They can be ordered also as an option from Finero.
The FST-200 measures the current in the circuit and shall switch the voltage off if the current
exceeds the set current limit, THIS FEATURE CANNOT BE USED AS A SAFETY MEASURE!
NEVER TOUCH THE CONNECTORS OR TEST LEADS IF THE FST-200 IS SWITCHED ON!
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Fax +358-5-3638 326
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4 INSTALLATION
4.1 General
FST-200’s depth is about 370mm and connectors need about 150mm space from rear. The
handles mounted on the front panel are elevated about 40mm from the panel. The FST-200 is
not allowed to be carried from the front panel handles. For carrying FST-200 the handles on
the side of the equipment should be used.
The FST-200 can be used in its own case only in dry and clean environment. The ventilation,
however, should not be prevented.
4.2 Mounting into 19” Module –Rack or Case
When installed into a rack or a similar case it is mandatory to use mounting rails due to the
weight of the device. The holes in the front panel are intended for locking the device in its
place not for backing the whole device. If there are legs below of FST-200, they must take off
before installation to 19” rack. Care must be taken of the air circulation in the rack in order to
avoid temperature rise above +35 °C.
Here are some examples of how build the support for rack installation.
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4.3 Connecting to the D.U.T.
The connections to the D.U.T. are made according to the below figure.
It is possible to use only 2 wires in PE continuity measurement by compromising on measurement accuracy. So Finero recommends to use only 4-wire measurement method.
4.5 Mains supply and Switching On the FST-200
Connect the FST-200 to the mains supply in following order:
- Check that the position of the front panel POWER switch is 0.
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------------------------------------------------------------------ Connect the control and high voltage cables to the FST-200.
- Plug the mains cord to the FST-200.
- Plug the mains cord to a mains outlet
- Switch ON the FST-200
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5 MANUAL OPERATION
5.1 General
The manual operation means the use of the FST-200 by the front panel buttons, indicators
and display panel. At the end of the manual there is a list of malfunctions with possible causes.
Caution, there are high voltage in connectors behind FST-200 while test is ON.
5.2 Buttons and indicators
The picture below shows the FTS-line switches and indicator lights and the table below
explains their functions.
Button
SELECT fly wheel knob
ENTER button
TEST indication
START button
STOP button
FAIL indication
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Used for…
Turn to browse between parameters or select
parameter value
Used to confirm
Indicates the TEST is running
Start the test sequence
Stop the test
Indicates failed test (not passed) and loud
buzzer noise will go off simultaneously
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5.3 Start-Up
Power is switched on by the “Power” –switch (see 4.5). After switching the unit on calibration
information is shown for a few seconds in the panel display.
 FST-200 set values -- Ready-display
5.4 Setting Parameters
The unit has a set value memory, last time saved values are stored in flash memory (no power
needed).
Setting paremeter with FST-line equipment is very easy.
After the READY display, like above please follow the instructions as below.
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-----------------------------------------------------------------Setting Parameters with FST
Action
Result
press ENTER for a few sec- Parameter setting display
onds in READY display mode
Display
Turn Flywheel knob to the Ready to set parameter
desired parameter position
and press ENTER
Turn flywheel knob in order Parameter value selected
to set the desired parameter
value
Press ENTER
Set parameter value confirmed
Move cursor with flywheel Exiting
from
knob to the EXIT and press setting mode
ENTER
parameter
5.5 Preparation for Service Call
To check program version (for service only):
press “Enter” –button when calibration information is shown.
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All software version and printed circuit board versions can be seen on the display. This is
important information before you contact Finero Service.
5.6 Control menu and commands
During the measurement the measured values as well as after test the last measured values
are shown on front panel display.
Menu commands – General Settings
Parameter
PE
Function and setting range
PE-Continuity Test parameters
ISO
HV
Insulation Resistance Test parameters
High Voltage Test parameters
RES
Resistance Measurement parameters
System
Self test and Calibration date adjustment
Timer
Test time clock (OFF or 0,1s…60s)
Menu commands – PE Protective Earth Continuity measurement
Parameter
I-set
R-min
R-max
Function and setting range
Test current (10A or 25A)
Resistance low limit value (0m… high limit value)
Resistance high limit value (low limit
value…500m)
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-----------------------------------------------------------------Timer
Save
EXIT
Test time clock (OFF or 0,3s…60s)
Setting value stored to memory (Yes or No)
Back to “Ready display”
Menu Commands - ISO Insulation Resistance measurement
U set
R min
R max
R rang
NPLC
Ramp
Timer
Save
EXIT
Test voltage set (100V…500V)
Resistance low limit value (0,5M… high limit
value)
Resistance high limit value ( low limit
value…9900M or NU)
Resistance range (10M, 100M, 1000M,
10000M or AUTO)
Integration time (2…250 (mains cycles))
Voltage up ramp time (OFF or 0,1…9,9 seconds)
Test time clock (OFF or 0,3s…60s)
Setting value stored to memory (Yes or No)
Back to “Ready display”
Menu Commands - HV High Voltage measurement
U set
I rang
I min
I max
Spdet
Ramp
Voltage setting (0…5000V)
Current range (2mA or 10mA)
Leakage current low limit value (0…high limit) or
(0…high limit)
Leakage current high limit value (low
limit…1.99 or 9.9mA)
Spark detector (OFF or 1…99), 1 equals highest
sensitivity.
Voltage will rise according to this setting.
“0” means NO RAMP, absolute fastest ramp up and
down time. Ramp time setting by user is omitted
“1” means RAMP UP with a selected time, RAMP
DOWN not selected the voltage is cut off immediately
after test time has elapsed
“2” means RAMP UP and RAMP DOWN times can be
selected
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-----------------------------------------------------------------AC/DC
Timer
Save
EXIT
Output voltage type (AC or DC) , DC option
Test time clock (OFF or 0,1s…60s)
Setting values stored to memory (Yes or No)
Back to “Ready display”
5.6.1 Selection of Current and Voltage Values in PE Measurement
The below table shows the recommended settings for various Ohmic ranges. If the test leads
resistance is over 50mOhm it can limit the maximum measurable protective earth conductor
resistance. In this case the user should switch to a lower measurement current and higher
measurement voltage or replace the test leads with larger cross section leads.
Recommended current and voltage settings:
Measurement range
0…350m
180…500m
0…100m
0…350m
Test current I-set
10A
10A
25A
25A
Test voltage U-set
6V
12V
6V
12V
5.6.2 Use of timer
Timer stops testing automatically when the preset time has elapsed. It is possible to stop the
test by pressing “stop”-button. In Timer off –mode test is ON when “Stop”-button is pressed
(however max 120s).
5.6.3 Integration time (NPLC) in Insulation resistance test
Tester takes measurements and calculates resistance values. The integration time is basically
the time during the FST takes samples. Units are NPLC, it means “number of power line
cycles”, and in example 100 means 2 seconds.
A higher value results in a higher measurement accuracy, but consequently the test time
becomes longer.
5.6.4 Voltage Increase Time (Ramp) in Insulation Resistance Test
Different ramp times can set and if the Ramp is set then the voltage increase to the set value
according to the set ramp time.
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5.6.5 Spark detector (SPdet) in High Voltage Test
It is possible that during the dielectric withstand test some partial discharge caused sparks
may occur. The FST-200 has special detector for this situation. Detector sensitivity must be
checked and adjusted every time when test parameters or type of device under test and
ambient conditions are changed. The sensitivity is higher with value 1 and lower at value 99.
The detector may cause a test fail if for instance a large capacitance is connected to the test
circuit. This may occur especially with fast ramp up times in connection with capacitance.
5.6.6 Voltage increase method (Ramp) in High Voltage test
There are two different methods to impose the high voltage on the D.U.T.
Press the TEST On and start increasing output test voltage gradually by changing the set value
of the voltage (Parameter setting mode).
In automatic ramp up and ramp down mode the voltage ramp up time and ramp down time is
set in the parameter RAMP. Test time starts when voltage has reached the set value.
5.6.7 AC/DC Output in High Voltage Test (Option – Factory installed)
Standard FST-200 has an AC output voltage and optionally available DC output. The DC option
has a full wave rectifier and 5nF filter capacitance. The equipment also has an automatic
discharge resistor (4,5M / 1,5W ) if the DC option is used.
The user should be aware that if the D.U.T. capacitance and test voltage are very high
voltage might still be on a dangerous level even the FST unit has been
switched off.
5.7 Testing
The test voltage is switched on by pressing the “Start” -button. The recommended minimum
measurement time is at least 1 second.
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-----------------------------------------------------------------Test voltage is switched off by pressing “Stop” –button (if timer used, then according to timer
setting)
After that the measurement can start again with the “Start”-button or return to “Ready” –
display by pressing “Stop” –button.
5.7.1 Measuring in PE Continuity Test (PE)
Before the measurement the “Ready”-display and a few main parameters are shown.
PE: READY
Timer OFF
0-499mΩ/25A
LOCAL
Tester in local operation,
timer is off
low limit 0mΩ, high limit 499mΩ,test current 25A
The measuring probes will be connected to the device under test (D.U.T.). The test voltage is
switched on by pressing the “Start” –button or with PE Probe start button. The recommended
measurement time is at least 1 second. The resistance and other information can be seen on
display:
PE: TESTING
t=2.5s
I=26,8A
R=102m
LOCAL
(OFF)
(25A)
(0-499)
Display updates itself constantly. Test voltage is switched off by pressing “Stop” –button (if
there is no timer in use). Following results are shown on display:
PE TEST OK LOCAL
t=4.5s
(OFF)
I=26,9A
(25A)
R=103m
(0-499)
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-----------------------------------------------------------------After that measurement can start again with “Start”-button or return to “Ready” –display by
pressing “Stop” –button.
5.7.2 Measuring in Insulation Resistance Test (ISO)
Before the measurement the “Ready”-display and a few main parameters are shown.
ISO: READY LOCAL
Timer OFF
Ramp OFF
0,5-NU/10MΩ
500V/50NPLC
Tester in local operation
Timer is off
Ramp function off, low limit 0,5MΩ,
High limit not used, Range 10MΩ, test
Voltage 500V, integration time 50NPLC
The high voltage measuring probes will be connected to the D.U.T.. The test voltage is
switched on by pressing the “Start” -button. The recommended measurement time is at least
1 second. The resistance value and other information can be seen on display:
TESTING
t=2.5s
U=501V
R=2.0M
LOCAL
(OFF)
(500V)
(0.5M)
Measurement stops by pressing “Stop”-button (if timer is off). Analog meter shows resistance
value also after testing (if FST-200 not computer controlled). Display shows last measurements.
Example:
TEST OK
t=4.5s
U=501V
R=2.0M
LOCAL
(OFF)
(500V)
(0.5M)
After that measurement can start again with “Start” –button or return to “ready”-display by
pressing “Stop”-button.
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-----------------------------------------------------------------5.7.3 Measuring in High Voltage Test (HV)
Before the measurement the “Ready”-display and a few main parameters are shown.
HV: READY LOCAL
Timer OFF
0,00-1,99/2mA
1000VAC
Peak OFF
Tester in local operation,
Timer is off,
low limit 0,00mA,high limit 1,99mA,
range 2mA,
test voltage 1000Vac, no ramp
function, SPdet not used
  
The high voltage measuring probes will be connected to the device under test. The test voltage is switched on by pressing the “Start” -button. The recommended measurement time is at
least 1 second. The resistance value and other information can be seen on display:
TESTING
T=2,5s
U=2308
I=18,5
LOCAL
(OFF)
(2300V)
(31,5mA)
Test voltage switched off by pressing “Stop” –button (if TIMER is OFF)
TEST OK
LOCAL
T=3,8s
(OFF)
U=2305
(2300V)
I=16,9
(31,5mA)
After that measurement can start again with “Start”-button or return to “Ready” –display by
pressing “Stop” –button.
5.7.4 Resistance measuring (RES)
Before the measurement the “Ready”-display and a few main parameters are shown.
RES: READY LOCAL
Timer OFF
Min 0.00Ω Max 499Ω
R-range 500Ω
Tester in local operation,
Timer is off,
Low limit 0.00Ω, high limit 499Ω,
Measuring range 500 Ω
The measuring probes will be connected to the D.U.T. The test voltage is switched on by
pressing the “Start” -button. The recommended measurement time is at least 1 second. The
resistance value and other information can be seen on display:
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-----------------------------------------------------------------RES:TESTING
T=2,5s
R=17.5
R-range 500Ω
LOCAL
(OFF)
(0.00-499)
Test voltage switched off by pressing “Stop” –button (if TIMER is OFF)
RES:TEST OK
T=3,8s
R=17.4
R-range 500Ω
LOCAL
(OFF)
(0.00-499)
After that measurement can start again with “Start”-button or return to “Ready” –display by
pressing “Stop” –button.
5.7.5 Test sequence
Test sequence is controlled with “Start”-button. Every push on “START” commences a new
test step. Measurement can be interrupted by pressing “STOP” if TIMER is off. If TIMER is on,
measurement is stopped automatically. If PE Probe is used, it controls the PE test, however
other measurements are commenced by pressing “Start”-button. All measurement parameters are set in the same manner as in chapter 5.4 Setting Parameters. Measurement
can be interrupted any time with “Stop”-button, then FST-200 shows an “interrupt” message.
If several measurements are conducted the FST-200 will show the last ones on the display,
example:
TEST OK
PE 81mΩ
HV 8,1mA
Result: Accepted
LOCAL
ISO 79,9M
RES 50,0Ω
New measurement is possible with PE Probe or “Start”-button.
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------------------------------------------------------------------
6 ERROR MESSAGES
FST-200 gives an alarm if measurement values are not inside set limits.
Errors:
PE measuring
LOW CURRENT
Measuring current not set. Measuring circuit broken or
high resistance
PE, ISO and RES measuring:
LOW RES
Resistance value lower than limit (R-min)
HIGH RES
ISO measuring
LOW VOLTAGE
HV measuring
HIGH CURRENT
Resistance value higher than limit (R-max)
Voltage does not go to set value. Maybe too short test
time or high load in connections and at the same time
low test voltage setting.
Leakage current higher than higher limit (I-max)
Same text in lower row meaning out of measuring
range
LOW CURRENT
Leakage current are lower than lower limit (I-min)
LOW VOLTAGE
Voltage does not reach the set value. Maybe too short
test time or high load in connections and at the same
time low test voltage setting.
OVERLOAD Current peak value alarm
PEAK CURRENT
Partial discharge detector alarm
General
+0.L
Over range (display in measuring value)
INTERRUPTED
Test is stopped by user.
SAFETY CIRCUIT OPEN Tester safety circuit is open.
All alarms can reset with “stop” button or start new measuring with “Start”-button.
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------------------------------------------------------------------
7 OPERATION WITH COMPUTER
7.1 General
The FST-200 can be incorporated in an automatic test system providing automatic control
and recording of the test results and other applications. Almost all operations are controlled
by the computer or easier by using a Finero’s specific proprietary application program
Safetest. The command list for computer operation mode is appendix of this manual. The
control interface, like USB, GPIB, RS232 or Ethernet, is optional and it must be ordered separately factory installed. All FST-line equipments are delivered standard with RS485 interface.
By using this interface all FST-line equipments can communicate with each other.
7.2 Address Setting
The user must set the address for the FST-200 unit before starting the operation computer
controlled. Address can be set in the range of 1…9.
Address is set as follows:
In the calibration information window please keep the “ENTER”-button pressed.
While the “ENTER” is pressed turn the flywheel knob as long as you have the desired address
(AddX) and then release the “ENTER”-button . See picture on the lower right hand corner.
Now the address has been selected and saved.
UNDER NO CIRCUMSTANCES THE USER IS NOT ALLOWED TO OPEN THE FST-200
ENCLOSURE. WARRANTY IS VOID IF OPENED!
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------------------------------------------------------------------
7.3 Connections
The RS485 connection to other FST-200 must be done by a shielded Cat5 cable (STP) RJ45 (8
pin connector).
Other computer interfaces like USB, GPIB, RS232 and Ethernet, are connected with commercially available and compatible cables. The cables are not part of the delivery scope.
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------------------------------------------------------------------
8 REMOTE CONTROL AND LOGIC OPERATION
8.1 General
This means a possibility to incorporate the FST-200 in less sophisticated automatic test
systems. The FST-200 operates as in the manual mode but has a provision for extra output
contacts for indicators and logic inputs for the control buttons.
8.2 Start-up
Basically the FST-200 will be put into operation as in manual mode. In addition the wiring of
the operator connector at the back panel is to be done. The connector is a 25-pin D-type
female connector. In the main circuit diagram connections of the D25 connector are explained. Maximum output from +25V is 300mA (7,5W).
8.3 Logic Connections
Contacts are available to show state of test and test result. Also there are two additional user
programmable outputs.
“Test On” output is on, when voltage is on.
“Fail” output is on, when test current is higher than limit value. At the same time the test is
interrupted.
The connector has logic inputs like the start and stop buttons. There are also two extra programmable inputs.
“Start” signal switches the test voltage on.
“Stop” signal disconnects the test voltage.
The connector has inputs for the safety circuit, if circuit is open high voltage is not connected.
Please see the main circuit diagram for these connections.
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------------------------------------------------------------------
9. BACK PANEL OF AN FST- LINE EQUIPMENT
The below picture shows a typical back panel of an FST-line product.
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------------------------------------------------------------------
10. MAIN CIRCUIT DIAGRAM
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------------------------------------------------------------------
11 FAULT FINDING

No indicator is lit


Check the power cord connectors are
properly plugged at both ends
Check the voltage in the mains socket.
Check the main fuses (F1 and F2) of
the FST-200. The fuses are located in
the fuse box below the power cord
connector. Check the fuse by a multimeter for conductivity and replace
with the similar one if necessary.
Indicators are lit but buttons don't func- 
tion

Check the safety circuit
Check set values in “Setting” menu.
FST-200 functions but high voltage is 
missing or voltage output is wrong
Possibly the temperature switch
inside the unit transformer has caused the
equipment to stop
Wait for a moment and try again
If the occurs several times please
contact Finero Service


If the above remedies do not remove the problem, please contact the Finero Service or Finero
authorized service point.
Finero Service
For Service and Support please contact one of our representatives or
Tel. +358 5 752 2200
e-mail: [email protected]
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------------------------------------------------------------------
12 LIMITED WARRANTY
All of our products and test systems are covered by a standard 12-month warranty period.
The warranty period starts on the original shipment date of the product or test system. Our
product and test system warranties guarantee that our products will be free from defects in
material and workmanship and we will repair or replace any such Finero product or test
system we find to be defective.
All new Finero products and test systems are calibrated prior to shipment. Finero products
and test systems require annual calibration, if Finero has not given any other written instruction, and Finero accepts only calibrations made by an approved Finero partner or by Finero
factory.
If your product during the 12-month warranty period fails to perform as Finero has specified
please return the product to the below address or to one of our approved partners.
Warranty work includes parts and labour at Finero’s cost, but excludes shipping costs. Finero
products returned for warranty repair and found to be in proper working order may be
subject to a shipping and handling fee.
Any non-authorized modification, repair, tampering or physical damage or if the product has
been subject to gross misuse will void this warranty. Elimination of any connections in the
earth grounding system or bypassing any safety systems will void this warranty. Parts subject
to wear, such as test probes and leads, are not covered by this product warranty, except
where they are deemed to have a manufacturing defect within 60 days of the original shipment of the Finero product.
Except as provided herein, Finero makes no warranties to the purchaser of Finero products
and test systems and all other warranties, expressed or implied (including, without limitation,
merchantability or fitness for a particular purpose) are hereby excluded, disclaimed and
waived.
FINERO SHALL NOT BE LIABLE FOR ANY SPECIAL, INDIRECT CONSEQUENTIAL,
INCIDENTAL OR OTHER SIMILAR DAMAGES SUFFERED BY THE PURCHASER OR ANY THIRD
PARTY, INCLUDING WITHOUT LIMITATION, DAMAGES FOR LOSS OF PROFITS OR BUSINESS
OR DAMAGES RESULTING FROM USE OR PERFORMANCE OF THE PRODUCT OR TEST
SYSTEM, WHETHER IN CONTRACT OR IN TORT, EVEN IF FINERO OR ITS AUTHORIZED
REPRESENTATIVE HAS BEEN ADVISED OF THE POSSIBILITY OF SUCH DAMAGES, AND
FINERO SHALL NOT BE LIABLE FOR ANY EXPENSES, CLAIMS, OR SUITS ARISING OUT OF OR
RELATING TO ANY OF THE FOREGOING.
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-----------------------------------------------------------------Due to continuous development of the products warranty does not include updating of
features
When the warranty repair is booked the customer is requested to inform type and serial
number of the equipment and description of the malfunction as detailed as possible. The
repair shall be carried out in reasonable time during normal working hours. If immediate
repair is demanded or done outside of normal working hours the extra costs may be born to
the customer account. The warranty repair is done primarily at the manufactures premises.
Return address: Finero Oy, Service and Calibration, Haltonintie 5, FIN-47400 Kausala,
FINLAND
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------------------------------------------------------------------
ANNEX A
FST-200 4 S ANALYZER
COMMAND LIST
TABLE OF CONTENTS
Summary of Tester Commands HV section: .............................................................................. 34
Commands for the insulation resistance section, summary: ..................................................... 41
Commands for the earthing resistance section, summary: ........................................................ 47
Commands for the resistance measurement section, summary: ............................................... 53
Shared commands for the entire tester, summary: ................................................................... 58
NOTICE!
IF YOU HAVE ORDERED A COMPUTER INTERFACE WITH YOUR
FST-EQUIPMENT THIS ANNEX IS RELEVANT FOR THE
PROGRAMMING
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------------------------------------------------------------------
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------------------------------------------------------------------
Summary of Tester Commands HV section:
HVT
Command related to FST-200/HV tester
AC
Voltage selection AC
DC
Voltage selection DC
VOLTage 1000
Test voltage setting 10..5000V
CURRent:RANGe 1
Leakage current range 1 = 2mA; 2 = 10 mA
CURRent:MAXimum 90
Leakage current setting, maximum 10..9990 (= 0.010..9.990 mA)
CURRent:MINimum 50
Leakage current setting, minimum 10..9990 (= 0.010..9.990 mA, 0 = off)
PEAK 0
Power surge limit, 0..100 % (0 = off, 100 = most insensitive)
TIMer 10
Test period in 1/10 seconds, 3..600 (0 = timer disabled)
RAMPtype 0
Test voltage rise/fall type
RLENgth 5
Test voltage rise/fall duration 5..30 sec
ON
Switches on test voltage, starts the test and lights up TEST
indicator
OFF
Switches off test voltage, stops the test and turns off TEST
indicator
RES?
Test results: Current, voltage, status, elapsed test time
CURR?
Measured leakage current?
VOLT?
Measured test voltage?
STAT?
Tester status?
TIM?
Elapsed test time and total time in 1/10 seconds, 0..1200
ADJ?
Tester adjustment date?
CAL?
Tester calibration date?
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------------------------------------------------------------------
Tester commands and Examples how to use them
High Voltage, Hipot section:
HVT
Indicates that the command applies to FST-200/Hipot tester part.
Example: HVT;VOLT 1000;ON
AC
In case a rectifier unit is connected to the tester, selects AC voltage.
DC
In case a rectifier unit is connected to the tester, selects DC voltage.
VOLTage mmm
mmm= voltage 10..5000V
Sets test voltage 10..5000V.
Examples:
VOLT 1000
VOLT 3200
CURRent:RANGe mmm
mmm= current range (1/2)
Test voltage 1000V
Test voltage 3200V
Selects leakage current range (2/10mA).
Examples:
CURR:RANG 1
CURR:RANG 2
Leakage current range 2mA
Leakage current range 10mA
CURRent:MAXimum mmm
mmm= Leakage current setting, maximum 10..9990 (= 0.010..9.990mA)
Specifies the leakage current maximum. When the limit is exceeded, the
test stops, the tester gives out an alarm and status byte 1 bit 1 (test
ended FAIL) and status byte 2 bit 0 (maximum) will be set.
Examples:
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------------------------------------------------------------------
CURR:MAX 100
CURR:MAX 1000
Leakage current maximum 0.100mA
Leakage current maximum 1.000mA
CURRent:MINimum mmm
mmm= Leakage current setting, minimum 10..9990 (= 0.010..9.990mA)
0 = limit off.
Specifies the leakage current minimum. When the current is low, the test
stops, the tester gives out an alarm and status byte 1 bit 1 (test ended
FAIL) and status byte 2 bit 1 (minimum) will be set.
Examples:
CURR:MIN 0
CURR:MIN 100
CURR:MIN 1000
Leakage current minimum control off
Leakage current minimum 0.100 mA
Leakage current minimum 1.000 mA
PEAK mmm
mmm= Power surge limit, 0..100 % (0 = off, 100 = most insensitive)
Turns power surge indicator on or off.
TIMer mmm
mmm= Test period in 1/10 seconds, 3..600 (0 = timer disabled)
Enables or disables internal timer. When enabled, the test ends after
the test period has expired (TEST indicator will turn off only by issuing
OFF command) and status byte 1 bit 0 (test ended OK) will be set. Test
begins by issuing a new ON command.
Example:
TIM 20
Test period 2 seconds
RAMPtype mmm
mmm= Test voltage rise/fall type:
0 = |¯| Voltage increases and decreases rapidly (NO Ramp!)
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-----------------------------------------------------------------1 = /¯| Voltage increases slowly and decreases rapidly (Ramp UP, NO
Ramp)
2 = /¯\ Voltage increases and decreases slowly (Ramp UP and DOWN)
RLENgth mmm
mmm= Test voltage rise/fall duration 5..30 sec
Example:
RAMP 1
RLEN 15
ON
Voltage increases slowly and decreases rapidly
Voltage rise time is 15s
Switches on test voltage, starts the test and lights up TEST indicator
(equal to pressing START button in manual mode). Cancels the effect of
ALAR:ON command. Resets flags of status bytes (see STAT?).
Example:
HVT;VOLT 500
CURR:MAX 100
ON
OFF
Leakage current maximum 0.100mA
The test will start once the above settings
have been specified.
Switches off test voltage, ends the test and turns off TEST indicator
(equal to pressing STOP button in manual mode). If test was running
(TIM was set), the device gives out alarm "Interrupted". If test was running (TIM not set), the device enters into the intermediate mode in
which test results are shown on the display. Status byte 1 bit 0 (test
ended OK) is set. If the device is in the intermediate mode already, it
enters into the basic mode in which the settings are shown on the display. Resets flags of status bytes (see STAT?).
Example:
HVT;VOLT 500
CURR:MAX 100
ON
OFF
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Leakage current maximum 0.100 mA
Test starts... ...staying here for the specified
time...
Test ends
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------------------------------------------------------------------
RES?
Test results; current, voltage, status byte 1, elapsed test time
Test output query, provides 4 figures: aa bb cc dd
aa
bb
Measured leakage current 0..10 000 (=
0..10.000mA). Range exceeded = 10999, -1 =
no measuring data.
Test voltage measured during test in volts
cc
dd
Status byte 1 (see STAT?)
Elapsed test period in 1/10 seconds (0..600)
0..5000.
Example:
HVT; VOLT 500
CURR:RANG 1
CURR:MAX 1000
ON
RES?
CURR?
Test starts ...
Testing, for example, at 0.1s intervals until
the specified test time is out.
OFF
Test ends
Sampling leakage current, output will be the measured current 0..10
000 (= 0..10.000mA). Range exceeded = 10999, -1 = no measuring data.
Example:
HVT; VOLT 500
CURR:RANG 1
CURR:MAX 1000
ON
CURR?
VOLT?
(0..5000).
Test starts ...
Testing leakage current
Sampling test voltage, output will be the measured voltage in volts
Example:
HVT; VOLT 500
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-----------------------------------------------------------------CURR:RANG 1
CURR:MAX 1000
ON
VOLT?
STAT?
Test starts ...
Sampling test voltage
Returns output involving 2 status bytes, at the same time resets some
related bits: mmm nnn
bit
0
1
2
3
4
5
0
1
2
3
4
5
6
7
mmm
status byte 1:
value
1
2
4
8
16
32
meaning
Test ended OK
Test ended FAIL
Tester not in remote mode
Safety circuit open
Communication error
Tester failure
nnn
status byte 2:
1
2
4
8
16
32
64
128
Set control limit exceeded
Set control limit not reached
Test voltage not reached (low voltage)
Breakdown
Communication error MM - Controller
Communication error RS - Controller
Communication error DNN - Controller
Communication error PC-RS
Reset
ON/OFF
ON/OFF
STAT?
STAT?
ON/OFF
ON/OFF
ON/OFF
ON/OFF
STAT?
STAT?
STAT?
STAT?
If the mmm bit 5 is set, the tester output will be unreliable. Moreover, if the mmm bit 1 is set,
current measuring range 2 should be used.
Example:
HVT; VOLT 500
CURR:RANG 1
CURR:MAX 1000
ON
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Test starts ...
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-----------------------------------------------------------------STAT?
Testing, for example, at 0.1 sec intervals, until the specified test time is
out (status byte 1 bit 0 or 1 is set). If status byte 1 value is 1, the test was
performed without errors. If bit 1 is set, the tester gave and alarm the
cause of which is indicated by status byte 2.
RES?
Sampling test output
TIM?
Sampling test time, provides 2 figures: aa bb
aa
bb
Elapsed test period in 1/10 seconds (0.0.1200)
Specified test period in 1/10 seconds
(3..1200)
ADJ?
Tester adjustment date query, output will be the following string:
dd.mm.yyyy
For example: 27.08.2001
CAL?
Tester calibration date query, output will be the following string:
dd.mm.yyyy
For example: 27.08.2001
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------------------------------------------------------------------
Commands for the insulation resistance section, summary:
ISO
VOLTage 500
RESistance:RANGe 1
RESistance:MAXimum 900
RESistance:MINimum 0.5
NPLC 100
TIMer 10
RLENgth 10
ON
OFF
RES?
test time
VOLT?
STAT?
TIM?
ADJ?
CAL?
Command involves FST-200/ISO tester
Test voltage 100..500V
Insulation resistance range 1..5 (=10/100/1000/10
000/Auto MΩ)
Insulation resistance limit 0.5..10 000 MΩ (10 0000 = limit
disabled)
Insulation resistance limit 0.5..10 000 MΩ
Integration time in mains voltage periods 2..250.
Test period in 1/10 seconds, 3..600 (0 = timer disabled)
Test voltage rise time in 1/10 seconds, 0..100
Start the test
Stop the test
Test output; insulation resistance, voltage, status, elapsed
Measured test voltage?
Tester status?
Elapsed test time and total time in 1/10 seconds, 0..1200
Tester adjustment date?
Tester calibration date?
Commands for the insulation resistance test section, detailed:
ISO
Indicates that the command relates to the FST-200/ISO tester.
Example:
ISO;VOLT 500
VOLTage m
Sets the test voltage (100..1000V).
m =Voltage (100..1000V)
Examples:
VOLT 500
VOLT 1000
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Test voltage 500V
Test voltage 1000V
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------------------------------------------------------------------
RESistance:RANGe m
m =Resistance range 1..5 (=10/100/1000/10 000/Auto MΩ)
Selects the resistance range 1..5 (=10/100/1000/10000/Auto MΩ). In
range 5 (Auto) the tester automatically selects the most appropriate
measurement range.
Examples:
RES:RANG 1
RES:RANG 2
RES:RANG 5
Resistance range 0.5MΩ .. 10MΩ
Resistance range 5MΩ .. 100MΩ
Automatic range selection 0.5MΩ
..
10,000MΩ
RESistance:MAXimum mmm
mmm =Resistance limit 0.5..10,000 MΩ (10,000 = limit disabled)
Sets the insulation resistance maximum. Only 1 digit is allowed after
the decimal point (or comma). Once the resistance limit is exceeded,
the test stops, tester gives out an alarm and status byte 1 bit 1 (test
ended FAIL) and status byte 2 bit 1 (maximum) is set. Maximum limit is
disabled by specifying the value 10,000.
Examples:
RES:RANG 1;RES:MAX 1
RES:RANG 2;RES:MAX 1000
Insulation resistance limit 1 MΩ
Insulation resistance limit 1000
MΩ
RESistance:MINimum mmm
mmm =Resistance limit 0.5..10 000 MΩ
Sets the insulation resistance minimum. Only 1 digit is allowed after the
decimal point (or comma). When the resistance limit is not reached, the
test stops, the tester gives out an alarm and status byte 1 bit 1 (test
ended FAIL) and status byte 2 bit 0 (minimum) will be set.
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------------------------------------------------------------------
Examples:
RES:RANG 1;RES:MIN 0.5 Insulation resistance limit 0.5 MΩ
RES:RANG 2;RES:MIN 10 Insulation resistance limit 10 MΩ
NPLC mmm
mmm =Integration time in mains voltage periods 2..250.
Integration time is the period during which the tester's A/D converter
samples the test voltage to provide the test result. The value is increased when greater measurement accuracy is desired and decreased
for greater measurement speed.
Example:
NPLC 100
Integration time is 100 mains periods (100 x
20ms = 2000ms)
TIMer mmm
mmm =Test period in 1/10 seconds, 3..600 (0 = timer disabled)
Enables or disables internal timer. When enabled, the test ends after
the test time has expired (TEST indicator will turn off only by issuing
OFF command) and status byte 1 bit 0 (test ended OK) is set. Test begins by issuing a new ON command.
Example:
TIM 20
Test period 2 seconds
RLENgth mmm
mmm =Test voltage rise time in 1/10 seconds, 0..100
Example:
RLEN 15
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The voltage rise time is 1.5 sec
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------------------------------------------------------------------
ON
Switches on test voltage, starts the test and lights up the TEST indicator
(equal to pressing START button in manual mode). Cancels the effect of
ALAR:ON command. Resets flags of status bytes (see STAT?).
Example:
ISO;VOLT 500
RES:RANG 1;RES:MIN 0.6
ON
The test will start once the above settings
have been specified.
OFF
Switches off test voltage, ends the test and turns off TEST indicator
(equal to pressing STOP button in manual mode). If test was running
(TIM was set), the device gives out alarm "Interrupted". If test was running (TIM not set), the device enters intermediate mode in which test
results are shown on the display. Status byte 1 bit 0 (test ended OK) is
set. If the device is already in the intermediate mode, it enters into the
basic mode in which the settings are shown on the display. Resets flags
of status bytes (see STAT?).
Example:
ISO;VOLT 500
RES:RANG 1;RES:MIN 1
ON
OFF
RES?
Test starts... ...staying here for the specified
time...
Test ends
Test output; resistance, voltage, status byte 1, elapsed test time
Test output query, provides 4 figures: aa bb cc dd
aa
bb
cc
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Measured insulation resistance (0.5..10 200
MΩ, low range 0.4 exceeded 10201 -1 = no
measuring output).
Test voltage measured during the test
0..1009 V, -1 = no measuring output.
Status byte 1 (see STAT?)
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-----------------------------------------------------------------dd
Elapsed test period in 1/10 seconds (0..600)
Example:
ISO; VOLT 500
RES:RANG 2;RES:MIN 1
ON
RES?
OFF
VOLT?
Test starts ...
Sampling, for example, at 0.1s intervals until
the specified test time is out.
Test ends
Sampling test voltage, the provided output will be the measured voltage in volts (0..1009 V, 9999 = integration in progress).
Example:
ISO;VOLT 500
RES:RANG 2;RES:MIN 1
ON
VOLT?
STAT?
Test starts ...
Sampling the test voltage
Returns output involving 2 status bytes, at the same time resets some
related bits: mmm nnn
bit
0
1
2
3
4
5
0
1
2
mmm
status byte 1:
value
1
2
4
8
16
32
meaning
Test ended OK
Test ended FAIL
Tester not in remote mode
Safety circuit open
Communication error
Tester failure
nnn
status byte 2:
1
2
4
Set control limit not reached
ON/OFF
Set control limit exceeded
ON/OFF
Test voltage not reached (low voltage) ON/OFF
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Reset
ON/OFF
ON/OFF
STAT?
STAT?
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-----------------------------------------------------------------3
4
5
6
7
8
16
32
64
128
Communication error MM-Controller
Communication error RS-Controller
Communication error DNN- Controller
Communication error PC-RS
STAT?
STAT?
STAT?
STAT?
Example:
ISO;VOLT 500
RES:RANG 2;RES:MIN 1
TIM 10
ON
STAT?
RES?
TIM?
Test starts ...
Testing, for example, at 0.1 sec intervals, until the
specified test time is out (status byte 1 bit 0 or 1 is set). If
status byte 1 value is 1, the test was performed without
errors. If bit 1 is set, the tester gave the alarm the cause
of which is indicated by status byte 2.
Sampling the insulation resistance value
Sampling the test time, provides 2 figures: aa bb
aa
bb
ADJ?
Elapsed test time in 1/10 seconds (0.0.1200)
Specified test time in 1/10 seconds (3..1200)
Tester adjustment date query, the provided output will be the following
string: dd.mm.yyyy
For example: 27.08.2001
CAL?
Tester calibration date query, output will be the following string:
dd.mm.yyyy
For example: 27.08.2001
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www.qacontrol.com
Tel. +358-5-7522 200
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------------------------------------------------------------------
Commands for the earthing resistance section, summary:
PCT
CURRent 25
RESistance:MAXimum 90
RESistance:MINimum 50
TIMer 10
ON
OFF
SREL 8
Command related to FST-200/PE tester
Selection of test current 10/25A
Earthing circuit resistance, maximum 0..499mΩ
Earthing circuit resistance, minimum 0..498mΩ
Test period in 1/10 seconds, 3..600 (0 = timer disabled)
Switches on the test current and starts the test
Turns off the test current and stops the test
Current regulation relay setting, initial value is 8 (0..255)
RES?
Test output; resistance, current, status byte 1, elapsed
test time
Measured test current?
Tester status?
Elapsed test time and total time in 1/10 seconds, 0..1200
Current regulation relay setting?
Tester adjustment date?
Tester calibration date?
CURR?
STAT?
TIM?
REL?
ADJ?
CAL?
Commands for the earthing resistance test section, detailed:
PCT
Indicates that the command relates to the FST-200/PE tester.
Example:
PCT;CURR 10;ON
CURRent m
m =current (10/25)
Selects the test current (10/25A).
Examples:
CURR 10
CURR 25
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Test current 10A
Test current 25A
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------------------------------------------------------------------
RESistance:MAXimum mmm
mmm =Resistance limit (0..499mΩ)
Specifies the earthing circuit resistance maximum. Once the resistance
limit is exceeded, the test stops, the tester gives out an alarm and
status byte 1 bit 1 (test ended FAIL) and status byte 2 bit 0 (maximum)
will be set.
Examples:
RES:MAX 150
RES:MAX 400
Resistance limit 150mΩ
Resistance limit 400mΩ
RESistance:MINimum mmm
mmm =Resistance limit (0..498mΩ)
Specifies the earthing circuit resistance minimum. When the resistance
limit is not reached, the test stops, the tester gives out an alarm and
status byte 1 bit 1 (test ended FAIL) and status byte 2 bit 1 (minimum)
will be set.
Examples:
RES:MIN 150
RES:MIN 400
Resistance limit 150mΩ
Resistance limit 400mΩ
TIMer mmm
Mmm =Test period in 1/10 seconds, 3..600 (0 = timer disabled)
Enables or disables internal timer. When enabled, the test ends after
the test period has expired (TEST indicator will turn off only by issuing
OFF command) and status byte 1 bit 0 (test ended OK) will be set. Test
begins by issuing a new ON command.
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-----------------------------------------------------------------ON
Switches on the test voltage, starts the test and lights up the TEST
indicator (equal to pressing START button in manual mode). Cancels the
effect of ALAR:ON command. Resets flags of status bytes (see STAT?).
Example:
PCT;CURR 10;RES:MAX 300
ON
The test will start once the above settings
have been specified.
OFF
Switches off test voltage, ends the test and turns off TEST indicator
(equal to pressing STOP button in manual mode). If test was running
(TIM was set), the device gives out alarm "Interrupted". If test was running (TIM not set), the device enters intermediate mode in which test
results are shown on the display. Status byte 1 bit 0 (test ended OK) is
set. If the device is already in the intermediate mode, it enters into the
basic mode in which the settings are shown on the display. Resets flags
of status bytes (see STAT?).
Example:
PCT;CURR 10;RES:MAX 300
ON
Test starts... ...staying here for the specified
time...
OFF
Test ends
SREL mmm
mmm =Current regulation relay setting, initial value (0..255)
Specifies the current regulation relay setting initial value (see command
REL?). In the beginning of the test the current regulation will start from
this position. The command will be effective for one test only. Using the
command is not mandatory. If the command is not used, the regulation
begins from position 8.
RES?
Test output; resistance, current, status byte 1, elapsed test time
Test result query, provides 4 figures: aa bb cc dd
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------------------------------------------------------------------
aa
Measured earthing circuit resistance (0..500
mohm, 501 = range exceeded, 16383 = sampling in progress).
The current measured during test in 1/10
amperes (0..295).
Status byte 1 (see STAT?)
Elapsed test time in 1/10 seconds (0..600)
bb
cc
dd
Example:
PCT;TIM 10;CURR 10;RES:MAX 450
ON
Test starts ...
RES?
Sampling, for example, at 0.1s intervals until
the specified test time is out.
CURR?
Test current query, the provided output will be the measured current in
1/10 amperes (0..295).
Example:
PCT;CURR 10;RES:MAX 450
ON
Test starts ...
CURR?
Sampling the test current
STAT?
Returns output involving 2 status bytes, at the same time resets some
related bits: mmm nnn
bit
0
1
2
3
4
5
mmm
status byte 1:
value
1
2
4
8
16
32
meaning
Test ended OK
Test ended FAIL
Tester not in remote mode
Communication error
Tester failure
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Reset
ON/OFF
ON/OFF
STAT?
STAT?
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------------------------------------------------------------------
0
1
2
3
4
5
6
7
nnn
status byte 2:
1
2
4
8
16
32
64
128
Set control limit exceeded
Set control limit not reached
Test current not reached (low current)
Communication error MM-Controller
Communication error RS-Controller
Communication error DNN-Controller
Communication error PC-RS
ON/OFF
ON/OFF
ON/OFF
STAT?
STAT?
STAT?
STAT?
Example:
PCT;CURR 10;RES:MAX 300;TIM 10
ON
Test starts ...
STAT?
Testing, for example, at 0.1 sec intervals,
until the specified test time is out (status
byte 1 bit 0 or 1 is set). If status byte 1 value
is 1, the test was performed without errors.
If bit 1 is set, the tester gave the alarm the
cause of which is indicated by status byte 2.
RES?
Sampling the earthing resistance
TIM?
Sampling the test time, provides 2 figures: aa bb
aa
bb
REL?
Elapsed test time in 1/10 seconds (0.0.1200)
Specified test time in 1/10 seconds (3..1200)
Sampling the current regulation relay setting, the output will be figure
(0..255). This command is used together with the SREL command so
that after the test the REL? command polls the relay position used in
the test. When a similar test will be performed, the probable relay position will be indicated to the tester by issuing the SREL command. As a
result, the current regulation will be faster and the relays last longer.
Example:
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-----------------------------------------------------------------...
OFF
REL?
...
SREL 11
ON
...
ADJ?
Test events
Test ends
The relay position is polled, the output will
be, for example, 11
Test events
Indicating the probable relay position to the
tester
Starting the test
Test events
Tester adjustment date query, the provided output will be the following
string: dd.mm.yyyy
For example: 27.08.2001
CAL?
Tester calibration date query, output will be the following string:
dd.mm.yyyy
For example: 27.08.2001
Finero Oy – The Quality Control Company
Haltonintie 5, FIN-47400 KAUSALA, FINLAND
www.qacontrol.com
Tel. +358-5-7522 200
Fax +358-5-3638 326
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------------------------------------------------------------------
Commands for the resistance measurement section, summary:
RESI
RESistance:RANGe 1
Ω)
RESistance:MAXimum 90
RESistance:MINimum 50
TIMer 10
ON
OFF
Command related to FST-200/RESI tester
Resistance measurement range 1..5 (=2/10/100/500/Auto
RES?
STAT?
TIM?
ADJ?
CAL?
Test output; resistance, status byte 1, elapsed test time
Tester status?
Elapsed test time and total time in 1/10 seconds, 0..1200
Tester adjustment date?
Tester calibration date?
Measured resistance, maximum 0..49900 (= 0..499.00 Ω)
Measured resistance, minimum 0.0.49800 (= 0..498.00Ω)
Test period in 1/10 seconds, 3..600 (0 = timer disabled)
Switches on the test current and starts the test
Turns off the test current and stops the test
Commands for the resistance measurement section, detailed:
RESI
Indicates that the command relates to the FST-200/RESI tester.
Example:
RESI;TIM 10;ON
RESistance:RANGe m
m =resistance range 1..5 (=2/10/100/500/Auto Ω)
Selects the resistance range (2/10/100/500/Auto Ω). In range 5 (Auto)
the tester will automatically select the most appropriate measurement
range.
Examples:
RESI:RANG 1
RESI:RANG 2
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Resistance range 0 .. 2Ω
Resistance range 0 .. 10Ω
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-----------------------------------------------------------------RESI:RANG 5
Automatic range selection 2Ω .. 500Ω
RESistance:MAXimum mmm
mmm =Resistance limit 0..49900 (= 0..499.00 Ω)
Specifies the measured resistance maximum. Once the specified resistance limit is exceeded, the test stops, the tester gives out an alarm and
status byte 1 bit 1 (test ended FAIL) and status byte 2 bit 0 (maximum)
will be set.
Examples:
RESI:MAX 150
RESI:MAX 400
Resistance limit 1.50Ω
Resistance limit 4.00Ω
RESistance:MINimum mmm
mmm =Resistance limit 0..49800 (= 0..498.00Ω)
Specifies the measured resistance minimum. When the resistance limit
is not reached, the test stops, the tester gives out an alarm and status
byte 1 bit 1 (test ended FAIL) and status byte 2 bit 1 (minimum) will be
set.
Examples:
RESI:MIN 150
RESI:MIN 400
Resistance limit 1.50.00Ω
Resistance limit 4.00Ω
TIMer mmm
mmm =Test period in 1/10 seconds, 3..600 (0 = timer disabled)
Enables or disables internal timer. When enabled, the test ends after
the test period has expired (TEST indicator will turn off only by issuing
OFF command) and status byte 1 bit 0 (test ended OK) will be set. Test
begins by issuing a new ON command. Example:
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-----------------------------------------------------------------ON
Switches on the test voltage, starts the test and lights up the TEST
indicator (equal to pressing START button in manual mode). Cancels the
effect of ALAR:ON command. Resets flags of status bytes (see STAT?).
Example:
RESI;RES:MAX 300
ON
OFF
The test will start once the above settings
have been specified.
Switches off test voltage, ends the test and turns off the TEST indicator
(equal to pressing STOP button in manual mode). If test was running
(TIM was set), the device gives out alarm "Interrupted". If test was running (TIM not set), the device enters intermediate mode in which test
results are shown on the display. Status byte 1 bit 0 (test ended OK) will
be set. If the device is already in the intermediate mode, it enters into
the basic mode in which the settings are shown on the display. Resets
flags of status bytes (see STAT?).
Example:
RESI; RES:MAX 300
ON
Test starts... ...staying here for the specified time ...
OFF
Test ends
RES?
Test output; resistance, status byte 1, elapsed test time
Test result query, provides 3 figures: aa bb cc
aa
bb
cc
Measured resistance 0..50100 (= 0..501.00Ω)
50101 = range exceeded, -1 = no measuring
output).
Status byte 1 (see STAT?)
Elapsed test time in 1/10 seconds (0..600)
Example:
RESI;TIM 10; RES:MAX 450
ON
Test starts ...
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-----------------------------------------------------------------RES?
STAT?
Sampling, for example, at 0.1s intervals until
the specified test time is out.
Returns output involving 2 status bytes, at the same time resets some
related bits: mmm nnn
bit
0
1
2
3
4
5
bit
0
1
2
3
4
5
6
7
mmm
status byte 1:
value
1
2
4
8
16
32
meaning
Test ended OK
Test ended FAIL
Tester not in remote mode
Communication error
Tester failure
nnn
status byte 2:
value
1
2
4
8
16
32
64
128
meaning
Set control limit exceeded
Set control limit not reached
Communication error RS-Controller
Communication error DNN-Controller
Communication error PC-RS
Reset
ON/OFF
ON/OFF
STAT?
STAT?
Reset
ON/OFF
ON/OFF
STAT?
STAT?
STAT?
STAT?
Example:
RESI;RES:MAX 300;TIM 10
ON
Test starts ...
STAT?
Testing, for example, at 0.1 sec intervals,
until the specified test time is out (status
byte 1 bit 0 or 1 is set). If status byte 1 value
is 1, the test was performed without errors.
If bit 1 is set, the tester gave the alarm the
cause of which is indicated by status byte 2.
RES?
Querying the measured resistance
Finero Oy – The Quality Control Company
Haltonintie 5, FIN-47400 KAUSALA, FINLAND
www.qacontrol.com
Tel. +358-5-7522 200
Fax +358-5-3638 326
[email protected]
USER
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USER MANUAL
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------------------------------------------------------------------
TIM?
Test time query, provides 2 figures: aa bb
aa
bb
ADJ?
Elapsed test time in 1/10 seconds (0.0.1200)
Specified test time in 1/10 seconds (3..1200)
Tester adjustment date query, the provided output will be the following
string: dd.mm.yyyy
For example: 27.08.2001
CAL?
Tester calibration date query, output will be the following string:
dd.mm.yyyy
For example: 27.08.2001
Finero Oy – The Quality Control Company
Haltonintie 5, FIN-47400 KAUSALA, FINLAND
www.qacontrol.com
Tel. +358-5-7522 200
Fax +358-5-3638 326
[email protected]
USER
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USER MANUAL
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------------------------------------------------------------------
Shared commands for the entire tester, summary:
HVT
PCT
ISO
RESI
ALARm:ON
ALARm:OFF
OUT1:ON
OUT2:OFF
IDN “”
ters
Command related to FST-200/HV tester or
Command related to FST-200/PE tester or
Command related to FST-200/ISO tester
Command related to FST-200/RESI tester
Alarm
Alarm off
Output 1 setting
Output 2 off
A tester-specific identifier will be set, maximum 20 charac-
OUT?
IN?
VER?
IDN?
acters
Status of outputs 1,2?
Status of inputs 1,2?
Tester version?
A tester-specific identifier will be read, maximum 20 char-
Shared commands for the entire tester, detailed:
ALARm:ON
The tester FAIL indicator lights up and the buzzer sounds for 1 second.
Stops the test like the OFF command.
Example: ALAR:ON
ALARm:OFF The tester FAIL indicator goes out.
Example: ALAR:OFF
OUT1:ON
Setting of output 1
Activates the tester EXTERNAL CONTROL terminal output 1.
Finero Oy – The Quality Control Company
Haltonintie 5, FIN-47400 KAUSALA, FINLAND
www.qacontrol.com
Tel. +358-5-7522 200
Fax +358-5-3638 326
[email protected]
USER
FST-200 4 S Analyzer
USER MANUAL
22/01/2010 11:41 AM
FST-200_EN.doc
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-----------------------------------------------------------------OUT2:ON
Setting of output 2
Activates the tester EXTERNAL CONTROL terminal output 2.
OUT1:OFF
Output 1 off
Resets the tester EXTERNAL CONTROL terminal output 1.
OUT2:OFF
Output 2 off
Resets the tester EXTERNAL CONTROL terminal output 2.
IDN ” ”
A tester-specific identifier will be set, maximum 20 characters
Specifies a free-form identifier, which may not include quotes.
Example: IDN ” FST-200 s:no 12345”
OUT?
Query of output statuses, the provided data will be 2 figures: aa bb
aa
bb
IN?
Query of input statuses, the provided data will be 2 figures: aa bb
aa
bb
VER?
Output OUT1 status (1 = active)
Output OUT2 status (1 = active)
Input IN1 status (1 = active)
Input IN2 status (1 = active)
Queries the tester build version data, provides a string listing the
tester's interface cards' version numbers/software version numbers.
Example:
HVT;VER?
Provided data:
Finero Oy – The Quality Control Company
Haltonintie 5, FIN-47400 KAUSALA, FINLAND
www.qacontrol.com
Tel. +358-5-7522 200
Fax +358-5-3638 326
[email protected]
USER
FST-200 4 S Analyzer
USER MANUAL
22/01/2010 11:41 AM
FST-200_EN.doc
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-----------------------------------------------------------------RS-4122v1/v1.1 MM-4184v1/v1.0 HV-4213v0/v1.0 DNN-4074v4/v2.0
IDN?
Querying the tester-specific identifier. The provided data will be the
specified free-form identifier stored in the tester, maximum 20 characters. Identifier specified by Finero includes the tester type and the serial
number.
Example: FST-200 sno: 556101
Finero Oy – The Quality Control Company
Haltonintie 5, FIN-47400 KAUSALA, FINLAND
www.qacontrol.com
Tel. +358-5-7522 200
Fax +358-5-3638 326
[email protected]
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