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The VM600 IOC4T card is a rack I/O interface for machinery protection and condition monitoring systems. When you order a replacement, the last three digits in the 200-560-000-XXX part number identify the hardware version, I/O configuration, and release generation.
A common field mistake is to assume the highest suffix number is always the newest drop-in replacement. In VM600 systems, version selection must match the existing rack slot, CPUM firmware, and field wiring. Choosing the wrong IOC4T version can cause I/O address conflicts, communication loss, or incorrect trip relay behavior.
The base part number 200-560-000 remains the same across versions. The final three digits define:
Hardware revision level
Input/output channel configuration
DIP switch address behavior
Firmware compatibility range
Compatibility with specific CPUM and MPC4 card generations
Do not use the version table as a simple linear upgrade list. Use it as a compatibility map.
Part Number | Typical Function / Configuration | Field Application | Replacement Note |
|---|---|---|---|
200-560-000-011 | Early IOC4T build, basic 4-channel I/O | Legacy VM600 racks, early CPUM versions | Verify backplane slot and CPUM firmware before replacing |
200-560-000-013 | Revised input filtering, mixed 24 V digital I/O | Pump protection, fan monitoring | Often interchangeable with 011 in same rack family |
200-560-000-014 | Isolated digital output stage, trip relay interface | Trip circuits, relay logic panels | Check output load rating before swapping with 013 |
200-560-000-016 | Common communication and address DIP switch version | Newer VM600 projects, mixed analog/digital I/O | Most frequently sourced version for replacement orders |
200-560-000-019 | Enhanced analog/digital mixed I/O with faster scan | Rotating equipment monitoring, compressor systems | Recommended retrofit version when CPUM firmware is current |
200-560-000-111 | Later hardware revision, updated components | Replacement for early 011/013 in many racks | Confirm DIP switch setting after installation |
200-560-000-113 | Later I/O build with revised termination layout | Mixed I/O racks, expansion applications | Check terminal block position before power-up |
200-560-000-114 | Latest physical build, compatibility-oriented release | Modern CPUM + MPC4 protection loops | Not always backward compatible with very old racks |
The table is a practical identification tool, not a guarantee. Always confirm the exact suffix from the existing module label or system configuration file before placing an order.
The 200-560-000-016 version is known for its DIP switch address selection. Later versions such as 111, 113, and 114 may retain the same DIP switch logic, but the power-on self-test and communication handshake can differ depending on CPUM firmware.
Versions with isolated output stages are safer for relay and trip applications. If your IOC4T drives an external trip relay, do not replace an isolated output version with a non-isolated version without checking the load circuit.
Newer suffix versions often include improved input filtering. This is important when the IOC4T receives signals from proximity probes, accelerometers, or relay contacts in electrically noisy environments.
Some version changes involve terminal block position, component height, or rear connector alignment. In dense VM600 racks, even a small mechanical difference can cause insertion problems.
Before replacing an IOC4T, check three things:
Rack type: Confirm whether the system uses the 204-040-100-011/012 rack or backplane.
CPUM version: CPUM 200-595-067-114 and CPUM 200-595-063-314 have different firmware capabilities. IOC4T versions 111/113/114 generally work better with the newer CPUM generation.
MPC4 pairing: If the IOC4T communicates with MPC4 protection cards, the version must support the required trip logic and data transfer rate.
If in doubt, send the existing module photo and rack slot number to your supplier for version verification.
Use this checklist before ordering an IOC4T replacement:
[ ] Read the full part number from the existing module label.
[ ] Record the rack slot position and adjacent module types.
[ ] Check the CPUM firmware version.
[ ] Confirm whether the card drives trip relays or only monitoring signals.
[ ] Inspect the DIP switch setting on the old card before removal.
[ ] Take a clear photo of the terminal wiring before disconnecting.
[ ] Ask the supplier whether the selected version is a direct drop-in or requires firmware update.
Can I replace 200-560-000-016 with 200-560-000-114?
In many cases yes, but only if the CPUM firmware and rack slot configuration support the newer hardware. Do not assume automatic compatibility.
Are 111, 113, and 114 always newer than 016?
They are later hardware releases, but a newer release does not always match older rack wiring or firmware. Version 016 remains widely used because of its stable address behavior.
What happens if I install the wrong IOC4T version?
You may see communication loss, wrong I/O mapping, trip relay chatter, or module not recognized by the CPUM. In the worst case, the card may not power up correctly in the rack.
Do I need to change the DIP switch after replacing the IOC4T?
If the replacement card uses DIP switch addressing, set it exactly the same as the old card before power-up. Record the original switch positions before removal.
Where can I get version confirmations and stock levels?
Submit the full part number and rack information to a VM600 spare parts supplier that maintains inventory across IOC4T versions.
Joyoung International Trading Co., Limited supplies VM600 rack modules, protection cards, and I/O cards for global industrial customers. We support system matching, version confirmation, and fast delivery for rotating machinery monitoring systems.
Submit the full part number, existing card label photo, and rack slot position to confirm the correct IOC4T version before ordering.
Contact: chen@htechplc.com
Phone: +86-181-5013-7565
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IQS900 204-900-000-011 A1-B21-C1-H05-I0 is an eddy-current signal conditioner for turbine TSI systems. It converts probe raw signals into standard analog outputs to monitor shaft vibration and thrust displacement, equipped with self-test functions for stable machinery condition monitoring in thermal power plants.
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IQS900 204-900-000-011 A1-B21-C1-H05-I0 Signal conditioner belongs to VM600 series machinery vibration monitoring platform, manufactured in Switzerland. This industrial signal conditioning unit is specially developed to cooperate with eddy current proximity probes, serving as the core intermediate signal processing component between displacement sensor probes and VM600 rack monitoring modules. It receives weak original eddy current signals transmitted by proximity probes, and completes signal excitation, multi-stage filtering, precision amplification, automatic temperature drift compensation and electrical isolation conversion inside the unit, converting tiny raw detection signals into standard stable analog signals recognizable by VM600 mainframe boards. The signal conditioner can filter high-frequency clutter, on-site electromagnetic interference and temperature-induced signal deviation, realize linear accurate conversion of shaft vibration, axial displacement and gap measurement data, and supply reliable standard signals for condition analysis, fault early warning and safety interlock protection of large rotating machinery including steam turbines, gas compressors and industrial heavy blowers. Adopting Swiss original high-precision electronic components and fully sealed metal shielding housing, the device supports 24-hour uninterrupted continuous long-term operation in industrial control cabinets filled with dust, oil mist and strong electromagnetic radiation. The full suffix code A1-B21-C1-H05-I0 of the model defines internal circuit gain parameters, standard signal output range, wiring interface definition and matched probe technical specifications of this conditioner, realizing fixed parameter matching with designated proximity measuring probes without extra adapter modules. The built-in multi-layer shielding isolation structure effectively suppresses signal interference generated by on-site frequency converters and high-voltage power distribution equipment, ensuring linear undistorted signal output under complex industrial working conditions. It adopts standard DIN rail mounting structure to simplify internal layout of control cabinets, and unified terminal wiring ports support fast matching connection with all VM600 series rack monitoring systems. This product is widely equipped in thermal power plants, petrochemical factories, metallurgical heavy industry bases and natural gas compression stations deploying VM600 series online rotating machinery monitoring systems.
Part Number | IQS900 204-900-000-011 A1-B21-C1-H05-I0 |
Series | VM600 Series Machine Condition Monitoring Platform |
Country of Origin | Switzerland |
Product Condition | 100% New & Original |
Operating Temperature Range | -20℃ ~ +70℃ |
Lead Time | 2-3 business days after payment confirmation |
Warranty | 1 year |
Shipping Carriers | DHL, FedEx, UPS, TNT, EMS |
Contact:Cheryl Qi |
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