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You are here: Home » News » Product News » IQS450 204-450-000-001: 24V Power Wiring & Signal Terminal Config Guide

IQS450 204-450-000-001: 24V Power Wiring & Signal Terminal Config Guide

Views: 0     Author: Site Editor     Publish Time: 2026-07-28      Origin: Site

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IQS450 204-450-000-001: 24V Power Wiring & Signal Terminal Config Guide

IQS450 204-450-000-001 Terminal Layout

As a signal conditioner card in the Vibro-Meter VM600 rack, the IQS450 204-450-000-001 converts raw signals from eddy current proximity probes into standard voltage or current outputs for downstream monitoring cards like the IOC4T and CPUM. Correct 24V DC power wiring and signal terminal assignment is essential for reliable vibration data.

The front panel has one 24V power terminal block and two BNC connectors for signal input/output.

Power Terminal Pinout

  • Pin 1 (+): +24V DC input, protected against reverse polarity

  • Pin 2 (–): 0V / Ground reference

  • Pin 3 (PE): Protective earth, internally bonded to the card’s metal front panel

The card draws less than 3W; a 24V supply with 0.5A capacity is more than enough for standalone use. When multiple IQS450 cards are installed in a single rack, use a dedicated power distribution terminal block and ensure the 24V supply can handle the total load. Never daisy-chain power wires – run separate twisted pair cables back to the power source to avoid ground loops.

Signal Connectors

  • J1 (Sensor Input): BNC female, connects to the extension cable from a TQ402 or TQ412 proximity probe. Input impedance 10kΩ, input voltage range typically –2 to –18V DC (gap voltage).

  • J2 (Buffered Output): BNC female, provides the conditioned signal to the IOC4T or directly to a monitoring input. Output is configurable via DIP switches on the card for 0-10V, ±5V, or 4-20mA.

Step-by-Step Wiring

1. Prepare the Power Cable

Use 0.5 mm² (20 AWG) screened twisted pair cable. Dress the screen to the PE terminal on the rack backplane, not the card front panel, to avoid ground loops.

2. Connect +24V and 0V

Terminal block screws accept 0.5–1.5 mm² wire. Tighten to 0.5 N·m. Apply power after all wiring is completed. The green “Power” LED on the front panel lights up when voltage is present.

3. Connect Sensor Input (J1)

Plug the BNC connector from a TQ402 probe or its extension cable EA402 into J1. Do not pull on the cable; secure the BNC so it cannot vibrate loose. Verify gap voltage with a digital voltmeter – at nominal probe setup, the voltage should be between –8V and –12V DC, depending on the target material and gap setting.

4. Connect Output (J2)

Use a high-quality screened coaxial cable (RG-58/U or similar) from J2 to the Vi input of the IOC4T card. Keep this cable below 3 meters inside the cabinet. For longer distances, use the 4-20mA option and run a screened twisted pair.

Common Wiring Pitfalls

  • Reversed Polarity on 24V: The card is protected but will not start. Check voltage at the terminal block with a meter.

  • Floating Signal Ground: If the probe’s shield is not grounded at the rack side, 50/60 Hz interference will appear as spurious vibration.

  • Missing Earth Bond: The PE terminal must be connected to the rack’s protective earth bus. Omitting it can cause common-mode noise and measurement drift.

  • Signal Cable Too Long in Voltage Mode: Voltage output (0-10V/±5V) is most susceptible to noise. Keep cable runs under 5 meters, or switch to 4-20mA mode and use screened twisted pair.

Field Setup Verification

After wiring, power the system and check:

  1. Power LED: Steady green.

  2. Gap Voltage at J1: Should correspond to the probe installation data sheet. A healthy TQ402 probe typically shows –8 to –10V at nominal gap.

  3. Output at J2: With the sensor static, the output should be a stable DC voltage or current, proportional to the gap. Any oscillation indicates a wiring fault or probe issues.

When IQS450 Needs Replacement

Over time, internal surge protection components or the power supply section may fail, indicated by:

  • Power LED off despite correct input voltage.

  • No output signal or output locked at a fixed value.

  • Burn marks or corrosion on the BNC connectors.

If the card fails, a direct replacement with the same model (IQS450 204-450-000-001) is required. Suffix codes like 002 differ in filtering algorithms and may not be drop-in compatible without reconfiguration. As a supplier of original VM600 spare parts, we keep ready stock of IQS450 cards and their companion modules. For emergency delivery, contact us directly.

FAQ

Q: Can I use a 24V power supply from the same source that feeds the VM600 rack?
Yes, but install a dedicated overcurrent protection circuit (1A fuse or circuit breaker) for each group of four IQS450 cards to avoid total rack power loss on a short circuit.

Q: What cable do you recommend between the IQS450 and the IOC4T?
Belden 8761 or equivalent screened twisted pair for 4-20mA output; RG-58/U coaxial for voltage output. Always ground the screen at the IOC4T input terminal only.

Q: My output drifts after the cabinet warms up. What’s wrong?
Check the 24V supply stability and the PE connection. A loose earth or an overloaded power supply can cause voltage drift that maps directly to the output signal.

For genuine IQS450 204-450-000-001 cards, related VM600 modules like IOC4T, or proximity probes, contact our support team. We ship from inventory worldwide with a full 12-month warranty and technical pre-shipment inspection. Same-day dispatch available for urgent industrial needs.

Li Hao
Industrial Automation Parts Engineer
Joyoung International Trading Co., Limited
chen@htechplc.com | +86-181-5013-7565

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