Configured for high-density temperature acquisition in CENTUM VP FIO subsystems, the YOKOGAWA AMM32T S2 (AMM32T S2 Analog Input Module) provides direct physical and electrical execution of 32-channel thermocouple signal monitoring.
| Parameter | Specification |
|---|---|
| Model | AMM32T S2 |
| Brand | YOKOGAWA |
| Origin | Japan |
| Weight | 2.2 kg |
| Dimensions | 482.6 mm x 132.5 mm x 3U |
| Operating Temp | 0 deg C to 50 deg C |
| Power Consumption | 0.65 A |
| Channel Density | 32 Channels |
| Resolution | 16-bit |
The AMM32T S2 integrates advanced signal conditioning to facilitate 4-20 mA HART loop protocol connectivity when interfaced with compatible field transmitters, though it primarily serves as a high-density thermocouple interface. The architecture features robust channel-to-channel isolation to prevent common-mode noise propagation between distinct process signal loops. To maintain precise temperature readings across the 32 channels, the module incorporates active cold junction compensation (CJC) logic, which dynamically adjusts for thermal gradients at the terminal connection points. This ensures high-accuracy data acquisition for mission-critical process loops within the CENTUM VP environment.
Q: Does this module support hot-swapping under power?
A: Hot-swapping is supported provided that the FIO subsystem is configured for redundant operation and the specific I/O node firmware supports dynamic module insertion. Consult system documentation to verify if the I/O bus remains stable during the transition.
Q: How should the CJC be verified during field commissioning?
A: Calibration should be performed by applying a known millivolt reference signal to the terminal block while monitoring the internal CJC temperature registers to ensure the deviation remains within the specified ±0.1% FS accuracy limit.
Q: Can channels be individually disabled if not in use?
A: Yes, unused channels can be configured as "disabled" within the system software to prevent diagnostic alarms and to optimize the overall scan cycle processing time.
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