APEX WAVES SCXI-1313A National Instruments Terminal Block Owner’s Manual

June 10, 2024
APEX WAVES

APEX WAVES - logo SCXI-1313A National Instruments Terminal Block
User manual

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This document contains information and instructions needed to verify the SCXI- 1313A resistor divider networks and temperature sensor.

Conventions

The following conventions apply to this document:
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Software

You can find all the necessary information to verify the performance of the SCXI-1313A in this verification procedure. No other software or documentation is required.

Documentation

If you would like more information about the SCXI-1313A, refer to the SCXI- 1313A Terminal Block Installation Guide, which you can download from ni.com/manuals.

Calibration Interval

Calibrate the SCXI-1313A at a regular interval as defined by the measurement accuracy requirements of your application. NI recommends performing a complete verification at least once every year. Based on your measurement accuracy needs, you can shorten this interval to 90 days or six months.

Test Equipment

NI recommends using the equipment in Table 1 to verify the SCXI-1313A.
If these instruments are not available, use the requirements listed to select a suitable substitute.

Table 1. Test Equipment

Equipment Recommended Model Requirements
DMM NI 4070 6 1/2 digit. 15 ppm
5 V Power Supply NI 4110


Digital Thermometer| Brand and model with the required accuracy| Accurate to within 0.1 °C

Test Conditions

Follow these guidelines to optimize the connections and the environment during calibration:

  • Maintain the temperature between 18 and 28 °C.
  • Keep relative humidity below 80%.

Verification Procedure

The verification procedure determines how well the SCXI-1313A is meeting the performance requirements of the resistor divider networks and the temperature sensor.

Verifying Resistor Divider Networks
Figure 1 shows the pin designations on the resistor network. To verify the performance of each of the eight divider networks, RP1 through RP8, complete the following steps:APEX WAVES SCXI-1313A National Instruments Terminal
Block - Networks

  1. Set the DMM for resistance measurement. To access the pins of the resistor networks, you must remove the circuit board from the housing.
    Refer to Figure 2 and complete the following steps:
    a. Remove the two top cover screws.
    b. Remove the two strain-relief screws.
    c. Remove the two circuit board attachment screws.
    d. Remove the circuit board from the terminal block enclosure and turn it over to the back side. The pins of the resistor networks should be protruding slightly from the back of the circuit board.
    APEX WAVES SCXI-1313A National Instruments Terminal Block -
Diagram

  2. Measure the resistance of each of the eight resistor networks, shown in Figure 3, on the circuit board:
    Note Pin 1 is the square solder pad on each resistor network.
    a. Measure and record R1-5, which is the resistance value from pin 1 to pin 5 on the resistor network you are testing.
    b. Measure and record R3-5, which is the resistance value from pin 3 to pin 5 on the resistor network you are testing.
    APEX WAVES SCXI-1313A National Instruments Terminal Block -
Resistor

  3. Calculate the following: where n is the designation of the resistor divider network. Carry the calculation out the nearest 10 –7 decimal place.

  4. Compare the Ration value to the nominal value of 1/100 (0.01). If the Ration value is within the High Limit and Low Limit found in Table 2, the resistor network is verified within specification.
    Table 2. Resistor Network Specification Limits

  5. Repeat steps 2 through 4 for each resistor network.
    After you have verified all eight resistor networks, you have completed the verification procedure for the resistor networks on the SCXI-1313A. If this procedure determined that any of the components are out of specification, do not  attempt any adjustments. Return the terminal block to NI to ensure that the safety features of the terminal block are not compromised. For information about contacting NI to return the terminal block, refer to the Technical Support Information document.

Verifying Temperature Sensor Performance

Complete the following steps to verify the performance of the temperature sensor on the SCXI-1313A:

  1. Connect the 5 V power supply to the terminal block.
    a. Hold the terminal block vertically and view it from the rear as shown in Figure 4. The terminals on the 96-pin DIN connector are designated as follows:
    – Column A is on the right, Column B is in the middle, and Column C is on the left.
    – Row 1 is at the bottom and Row 32 is at the top.
    Refer to Figure 4 for the pin assignments on the SCXI-1313A. Individual pins are identified by their column and row. For example, A3 denotes the terminal located in Column A and Row 3. This conforms to the labeling of the pins on the front connector of a mating SCXI module. It does not necessarily correspond to the labeling of the pins on the rear of the terminal block connector itself, which you can only view by opening the terminal block enclosure.
    Note Not all pins are populated on this connector.APEX WAVES SCXI-1313A
National Instruments Terminal Block - Assignmentsb. Strip 12.7 mm (0.5 in.) of insulation from one end of a 22 AWG solid wire. Insert the stripped end of the wire into terminal A4 on the 96-pin female DIN connector on the rear of the terminal block.
    Attach the other end of this wire to the positive terminal of the +5 VDC power supply.
    c. Strip 12.7 mm (0.5 in.) of insulation from one end of a 22 AWG solid wire. Insert the stripped end of the wire into terminal A2 on the 96-pin female DIN connector on the rear of the terminal block. Attach the other end of this wire to the negative terminal of the +5 VDC power supply.

  2. Connect a calibrated DMM to the temperature-sensor output of the terminal block.
    a. Strip 12.7 mm (0.5 in.) of insulation from one end of a 22 AWG solid wire. Insert the stripped end of the wire into terminal C4 on the 96-pin female DIN connector on the rear of the terminal block.
    Attach the other end of this wire to the positive input terminal of the calibrated DMM.
    b. Connect the negative input terminal of the calibrated DMM to the negative terminal of the +5 VDC power supply.

  3. Place the terminal block in a temperature-controlled environment where the temperature is between 15 and 35 °C.

  4. When the terminal block temperature stabilizes at the ambient temperature, measure the temperature sensor output Vmeas using a calibrated DMM.

  5. Measure the actual temperature Tact in the temperature-controlled  environment using a calibrated thermometer.

  6. Convert Vmeas (in volts) to measured temperature Tmeas (in degrees Celsius) by performing the following calculations:

a. Calculate

b. Calculate

c. Calculate

T meas=

where Tmeas is in degrees Celsius
a = 1.295361 × 10–3
b = 2.343159 × 10–4
c = 1.018703 × 10–7

Compare Tact to Tmeas.

  • If (Tmeas − 0.5 °C) ≤ Tact ≤ (Tmeas + 0.5 °C), the performance of the terminal block temperature sensor has been verified.
  • If Tact is not within this range, the terminal block temperature sensor is nonfunctional.

If this procedure determined that the temperature sensor is nonfunctional, do not attempt to substitute parts or modify the equipment. Return the terminal block to NI to ensure that the safety features of the terminal block are not compromised. For information about contacting NI about returning the terminal block, refer to the Technical Support Information document.
You have completed verifying the performance of the temperature sensor of the SCXI-1313A terminal block.

National Instruments, NI, ni.com, and LabVIEW are trademarks of National Instruments Corporation.
Refer to the Terms of Use section on ni.com/legal for more information about National
Instruments trademarks. Other product and company names mentioned herein are trademarks or trade names of their respective companies. For patents covering National Instruments products, refer to the appropriate location: Help»Patents in your software, the patents.txt file on your CD, or ni.com/patents.

© 2007 National Instruments Corporation. All rights reserved.

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