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AMM25T Yokogawa Current Input Multiplexer Module | New & Original Stock

AMM25T Yokogawa Current Input Multiplexer Module | New & Original Stock

Configured for high-density signal acquisition in Centum CS and Centum VP control platforms, the Yokogawa AMM25T (AMM25T Current Input Multiplexer Module) provides direct physical electrical execution for routing 16 analog...

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AvailabilityLow stock: 99 left

SKU: AMM25T
Vendor: Yokogawa

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Configured for high-density signal acquisition in Centum CS and Centum VP control platforms, the Yokogawa AMM25T (AMM25T Current Input Multiplexer Module) provides direct physical electrical execution for routing 16 analog current input signals into the system architecture.

Hardware Specifications

Parameter Specification
Model AMM25T
Brand Yokogawa
Origin Japan
Weight 0.3 kg
Dimensions Standard Yokogawa I/O form factor
Operating Temp 5 deg C to 40 deg C
Power Consumption 5 V DC
Number of Channels 16
Input Type Analog Current
Compatibility Centum CS, Centum VP

Multiplexing Logic and Signal Conditioning

The AMM25T utilizes internal switching matrix architecture to sequentially route multiple field-side current inputs to a common A/D conversion path. This multiplexing technique enables high I/O density while minimizing the component count required for large-scale signal monitoring. To ensure data accuracy, the module manages signal settling time during channel switching, which is critical for maintaining measurement precision in high-speed control loops.

Frequently Asked Questions (FAQ)

Q: What is the impact of the multiplexing speed on control loop response?

A: Because the AMM25T performs sequential sampling across 16 channels, there is a finite interval between samples for any single channel. For time-critical control loops, ensure that the scan cycle time of the controller is configured to account for this multiplexing delay to prevent phase lag in the control feedback.

Q: Can this module handle non-standard input ranges?

A: The module is optimized for standard industrial current signals. Refer to the specific system engineering parameters to determine if scaling can be adjusted via software to accommodate non-standard inputs, provided they remain within the absolute electrical limits of the input circuitry.

Field Installation Guidelines

  • Ensure that all 16 channels are wired using shielded twisted-pair cables to prevent crosstalk between adjacent analog inputs during the multiplexing sequence.
  • Terminate signal cable shields to the cabinet ground bus at a single point to minimize the risk of ground loops that could introduce offset errors in the current readings.
  • Confirm that the module is firmly locked into the backplane connector; intermittent contact will lead to fluctuating values across all multiplexed channels.
  • During initial commissioning, perform a loop check for each channel independently to verify that the channel address mapping in the DCS database matches the physical field wiring.