GE IS220PDOAH1A

¥999.00

The IS220PDOAH1A is a high-density discrete output module manufactured by GE Energy (now part of Baker Hughes) as part of the Mark VIe series distributed control system. This module provides reliable digital output interface for turbine control applications, driving solenoids, contactors, indicating lights, and other field actuators. The IS220PDOAH1A is designed for the modern Mark VIe platform and offers 32 output channels with flexible voltage configuration, short-circuit protection, and advanced diagnostics. It is ideal for critical turbine applications requiring high-density output control, such as valve actuation, motor starters, and alarm annunciation.

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Description

Product Parameters

Parameter Specification
Model IS220PDOAH1A
Manufacturer GE Energy / Baker Hughes
Platform Mark VIe
Bus Interface PCI Express (PCIe) via backplane
Output Channels 32 discrete outputs (galvanically isolated)
Output Voltage 24 VDC, 48 VDC, 110 VDC, 125 VDC (software configurable)
Output Current 0.5 A per channel (resistive load)
Output Type Solid-state (MOSFET)
Output Response < 5 ms (typical)
Short-Circuit Protection Yes (per channel)
Overload Protection Yes (per channel)
Isolation 1500 V (channel-to-backplane, channel-to-channel)
Hot-Swap Support Yes
LED Indicators Power, Status (RUN/FAIL), Output Status (per channel)
Operating Temperature -30°C to +65°C
Storage Temperature -40°C to +85°C
Humidity 5% to 95% (non-condensing)
Power Consumption +5 VDC @ 2.0 A, +24 VDC @ 0.5 A (field power)
Dimensions Standard Mark VIe module form factor
MTBF > 180,000 hours

Advantages and Key Features

  • High Channel Density – The IS220PDOAH1A provides 32 discrete outputs in a single module, significantly reducing the number of modules required for large turbine applications and saving rack space.

  • Flexible Voltage Range – Each output group on the IS220PDOAH1A is independently configurable for 24 VDC, 48 VDC, 110 VDC, or 125 VDC, making it compatible with a wide range of field actuators and reducing inventory requirements.

  • Integrated Protection – Each output channel on the IS220PDOAH1A includes short-circuit protection and overload protection, preventing module damage from field wiring faults and providing reliable actuation.

  • Fast Response – Output response of < 5 ms ensures rapid actuation for time-critical turbine sequences and protective trips.

  • High Isolation – 1500 V channel-to-channel and channel-to-backplane isolation prevents cross-interference between channels and protects the control processor from field-side faults.

  • Visual Status Indicators – Per-channel LED indicators on the IS220PDOAH1A provide immediate visual confirmation of output states, simplifying field troubleshooting.

  • Hot-Swap Capability – The IS220PDOAH1A can be replaced in a running system without powering down, minimizing turbine downtime during maintenance.

  • Wide Temperature Range – Rated for -30°C to +65°C, suitable for outdoor and harsh industrial environments.


Application Fields and Use Cases

1. Valve Actuation

The IS220PDOAH1A controls solenoid-operated valves (fuel trip valves, steam admission valves, drain valves, and blowdown valves) in turbine control systems, providing reliable on/off actuation.

2. Motor Starters

Output channels on the IS220PDOAH1A control motor starters for pumps, fans, compressors, and other auxiliary equipment, enabling automated start/stop sequences.

3. Alarm Annunciation

The IS220PDOAH1A drives annunciator panels, indicating lights, horns, and sirens for operator notification of abnormal conditions and alarms.

4. Trip and Shutdown Actuation

Output channels activate trip solenoids, shutdown relays, and emergency valves for turbine protection systems, ensuring failsafe operation during critical events.

5. Auxiliary System Control

The IS220PDOAH1A controls ancillary equipment such as lube oil pumps, seal gas systems, cooling fans, and heaters, with high-density output capability.

6. Retrofit Projects

The IS220PDOAH1A is used in Mark VIe upgrades from legacy systems, providing modern digital output capability with improved diagnostics and protection.


Comparison with Competing Products

Feature IS220PDOAH1A (GE) IS220PDIOH1A (GE) ABB DO880 (AC 800M) Siemens 6ES7 322-1BL00 (S7-400)
Platform Mark VIe Mark VIe AC 800M S7-400
Output Channels 32 16 32 32
Voltage Range 24–125 VDC 24–125 VDC 24 VDC only 24 VDC only
Output Current 0.5 A/ch 0.5 A/ch 0.5 A/ch 0.5 A/ch
Output Response < 5 ms < 5 ms < 5 ms < 10 ms
Short-Circuit Protection Yes Yes Yes No
Isolation 1500 V 1500 V 1500 V 500 V
Hot-Swap Yes Yes Yes No
Diagnostics Limited Limited Limited None
Temp Range -30°C to +65°C -30°C to +65°C -25°C to +60°C 0°C to +60°C
MTBF > 180,000 hrs > 180,000 hrs > 120,000 hrs > 80,000 hrs

Key Differentiators: The IS220PDOAH1A offers the highest channel density (32 outputs) among GE modules combined with the widest voltage range (24–125 VDC) among compared products. It provides superior protection and wider temperature range than Siemens S7-400 modules. Compared to the IS220PDIOH1A, the IS220PDOAH1A offers double the output channels (32 vs. 16) for applications requiring high-density output control without input monitoring.


Selection Suggestions and Precautions

Selection Criteria

  • Choose the IS220PDOAH1A for applications requiring a large number of discrete outputs (32 channels) such as multiple valve actuators, motor starters, or alarm annunciation panels.

  • For applications requiring a balanced mix of inputs and outputs, consider the IS220PDIOH1A or IS220PDIOH1B.

  • Verify Mark VIe Toolbox version supports the IS220PDOAH1A (v7.0 or higher).

  • Ensure adequate +24 VDC field power is available (0.5 A per module).

Critical Precautions

  1. Voltage Configuration – Before installation, configure the output voltage range on the IS220PDOAH1A to match your field actuators. Incorrect voltage settings can damage the module or provide insufficient actuation force.

  2. Output Load Calculation – Each output channel on the IS220PDOAH1A is rated for 0.5 A resistive load. For inductive loads (solenoids, contactors), the inrush current can be significantly higher than steady-state. Use external surge suppression (flyback diodes, RC snubbers) or interposing relays for inductive loads.

  3. Wiring – Use shielded cables for all output connections to the IS220PDOAH1A. Keep output wiring separated from signal wiring to prevent coupling of transients. Terminate shields at the field device end (refer to terminal block documentation).

  4. Terminal Block – The IS220PDOAH1A requires specific terminal blocks (e.g., IS200STTCH1A). Verify compatibility before installation.

  5. Short-Circuit Protection – While the IS220PDOAH1A includes per-channel short-circuit protection, repeated short-circuit events may degrade the module. Investigate and correct field wiring faults immediately.

  6. ESD Handling – Use grounded wrist straps when handling the IS220PDOAH1A to prevent static damage to sensitive components.

  7. Hot-Swap – While the IS220PDOAH1A supports hot-swap, verify the system is properly configured for live insertion. Check LED status after insertion to confirm initialization.

  8. Grounding – Ensure all field devices and the VME chassis share a common reference ground to prevent incorrect output states and ground loop issues.

  9. Obsolescence – The IS220PDOAH1A is in active production with long-term support. For projects requiring enhanced diagnostics or future-proofing, evaluate the IS220PDOAH1B or other Mark VIe revision options.

A-B 1761-L16BWA
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WESTINGHOUSE 1C31219G01

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