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Yokogawa ANR10D-420 S1 Node Interface Unit

Yokogawa ANR10D-420 S1 Node Interface Unit

Configured for high-speed data transmission in CENTUM VP DCS platforms, the Yokogawa ANR10D-420 S1 (ANR10D-420 S1 Node Interface Unit) provides direct electrical execution of ER Bus communication protocols between field instrumentation...

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SKU: ANR10D-420 S-1
Vendor: Yokogawa
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Configured for high-speed data transmission in CENTUM VP DCS platforms, the Yokogawa ANR10D-420 S1 (ANR10D-420 S1 Node Interface Unit) provides direct electrical execution of ER Bus communication protocols between field instrumentation and control processors.

Hardware Specifications

Parameter Specification
Model ANR10D-420 S1
Brand Yokogawa
Origin Japan
Weight 10 lbs
Dimensions 438 mm x 133 mm x 133 mm (W x H x D)
Operating Temp Standard industrial range
Power Consumption 260 VA
Supply Voltage 220–240 V AC, 50/60 Hz
Protocol ER Bus
Humidity 5% to 95% RH (non-condensing)

DCS Process Control Integration

The ANR10D-420 S1 utilizes localized channel-to-channel isolation logic to maintain signal integrity within the CENTUM VP environment. By facilitating ER Bus communication, the unit ensures deterministic data throughput, minimizing latency in complex feedback control loops. The architecture supports standard 4-20 mA HART loop protocol compatibility when interfaced with relevant field I/O, ensuring consistent data acquisition and cold junction compensation (CJC) handling at the node level.

Frequently Asked Questions

Q: Can the ANR10D-420 S1 be hot-swapped while the ER Bus is active?

A: No. The unit requires a controlled power-down sequence to prevent potential transient interference on the ER Bus communication backbone.

Q: What are the primary diagnostic indicators for power supply fluctuations?

A: The front panel status LEDs monitor input voltage stability. If the 220–240 V AC supply deviates beyond nominal tolerances, the unit will trigger an internal diagnostic flag communicated to the DCS controller.

Field Installation Guidelines

  1. Ensure the unit is mounted in a standard 19-inch rack enclosure with adequate clearance to allow for passive thermal dissipation.
  2. Verify that the AC power source is properly grounded to the plant common earth bus to mitigate electromagnetic interference.
  3. Use shielded twisted-pair cabling for all ER Bus connections to maintain signal parity and suppress cross-talk.
  4. Perform a resistance check on the chassis grounding terminal prior to energizing the unit to ensure a path to earth below 10 Ohms.