GE IS200SRLYH2A

¥999.00

IS200SRLYH2A is a Relay Output Board within the GE Mark VIe Speedtronic control system, designed to provide high-current discrete output switching for turbine control applications. This board interfaces with field devices such as solenoids, contactors, motor starters, alarms, and trip actuators, delivering reliable control signals from the Mark VIe main processor. The IS200SRLYH2A features 16 individually isolated relay outputs, each with dedicated status feedback and comprehensive fault detection. It communicates with the GE controller via the VME backplane, allowing the processor to command outputs and monitor relay health in real time. The board includes built-in suppression diodes for inductive loads, diagnostics for coil open/short detection, and status LEDs per channel for rapid troubleshooting.

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Description

Product Parameters

Parameter Specification
Brand / Series GE Mark VIe Speedtronic
Model IS200SRLYH2A
Output Channels 16 isolated Form C relays (SPDT, normally open/normally closed)
Contact Rating 5A @ 250 VAC / 5A @ 30 VDC (resistive load)
Switching Voltage 250 VAC / 30 VDC maximum
Switching Current 5A maximum per channel
Coil Voltage 24 VDC (internally supplied from Mark VIe rack)
Coil Current 30 mA per relay (480 mA total maximum)
Response Time < 10 ms (energize), < 5 ms (de-energize)
Electrical Life 100,000 operations at rated load
Mechanical Life 1,000,000 operations (no load)
Suppression Built-in flyback diodes (DC loads) and RC snubbers (AC loads)
Diagnostics Coil open-circuit detection, coil short-circuit detection, welded contact detection (optional)
Status Indication 16 green LEDs (energized), 16 red LEDs (fault per channel)
Isolation 1500 VAC (channel-to-channel and coil-to-contacts)
Operating Temperature –30°C to +65°C
Mounting VME 6U rack-mount with front-panel terminal connectors
Backplane Interface VME64 (A24/A32, D16/D32)
Alarm Outputs 1 dedicated fault summary relay (Form C)

Advantages & Key Features

  • High-Density Relay OutputsIS200SRLYH2A provides 16 independently isolated Form C relay outputs in a single VME slot, significantly reducing rack space compared to discrete relay modules. This high density makes it ideal for turbines with numerous valve, alarm, and starter outputs.

  • Comprehensive Diagnostics: Each relay channel includes coil open-circuit and short-circuit detection, with faults reported via the VME backplane to the GE ToolboxST alarm system. Optional welded contact detection (via readback monitoring) prevents undetected stuck relays—critical for turbine safety circuits.

  • Built-In Load Suppression: Integrated flyback diodes for DC loads and RC snubbers for AC loads protect the relay contacts and extend electrical life, reducing field maintenance and replacement costs.

  • Fast Response Times: < 10 ms energize and < 5 ms de-energize times ensure precise control of high-speed turbine actuators and trip solenoids, meeting the demanding response requirements of overspeed and emergency shutdown systems.

  • Visual Status Indication: Each channel has dual LED indicators—green when energized, red when a fault (open coil, short, or welded contact) is detected—enabling rapid on-site troubleshooting without external tools.

  • Dedicated Fault Summary Relay: A separate Form C relay provides a hardware-based alarm output that can trigger external annunciators or emergency shutdown logic, independent of the main processor—essential for safety-certified installations.

  • Drop-In Replacement: Direct replacement for earlier GE relay boards such as IS200SRLYH1A and IS200SRLYH1, with identical mounting holes, connectors, and backplane addressing.

Application Fields

  • Gas & Steam Turbines (GE Frame 6B/7EA/9E/HA): Controls fuel gas shut-off valves, emergency stop solenoids, alarm annunciators, lube oil pump starters, and generator breaker trip coils.

  • Combined Cycle Plants: Manages steam turbine extraction valves, bypass actuators, and HRSG damper controls.

  • Compressor Stations: Controls anti-surge valve solenoids, discharge blow-down valves, and station shutdown relays.

  • Oil & Gas Pipelines: Used for valve positioning, pump motor starters, and emergency shutdown (ESD) systems.

  • Hydropower Plants: Controls wicket gate actuators, brake solenoids, and alarm indicators.

Comparison with Competing Products

Feature GE IS200SRLYH2A Competitor A (Emerson Relay Module) Competitor B (Siemens Relay Output)
Output Channels 16 isolated Form C 8 Form C 8 Form A
Contact Rating 5A @ 250 VAC / 30 VDC 2A @ 250 VAC / 24 VDC 5A @ 250 VAC / 24 VDC
Diagnostics Coil open/short, welded contact (optional) Coil open only None
Response Time < 10 ms / < 5 ms < 15 ms / < 10 ms < 20 ms / < 10 ms
Suppression Yes (built-in, AC & DC) External required External required
Fault Summary Relay Yes No No
Isolation 1500 VAC 1000 VAC 500 VDC
Operating Temp –30°C to +65°C 0°C to 50°C 0°C to 60°C

Key AdvantageIS200SRLYH2A provides double the channel density, higher contact rating, and built-in suppression and diagnostics compared to competing relay modules. Its dedicated fault summary relay and welded contact detection make it uniquely suited for safety-critical turbine control applications.

Selection Guidelines & Recommendations

  • Contact Rating Verification: Confirm that the current and voltage requirements of your field devices do not exceed 5A @ 250 VAC or 5A @ 30 VDC per channel. For inductive loads (solenoids, motors), de-rate the contact rating to 3A to account for inrush current.

  • Load Type Consideration: For AC inductive loads, the built-in RC snubber provides basic suppression. For highly inductive DC loads (e.g., large solenoids), consider adding external varistors or additional suppression diodes to prolong contact life.

  • Diagnostic Configuration: Enable welded contact detection via GE ToolboxST if your application requires verification that relays de-energize properly (e.g., for fuel shut-off valves). This feature uses a readback circuit but requires additional wiring to the contact terminals.

  • Controller Firmware: Ensure your Mark VIe main processor (e.g., IS420UCSBH1AIS420UCSCH1AIS200SPROH2ADD) is running firmware v7.0 or later for full diagnostic support on IS200SRLYH2A.

  • ToolboxST Configuration: In GE ToolboxST, assign each output channel to the appropriate control logic (e.g., start commands, trip signals). Configure fail-safe behavior—define whether relays de-energize on processor loss of communication (normally preferred for safety circuits).

  • Wiring Guidelines: Use shielded twisted-pair cables for output wiring, especially if extending beyond 10 meters. Terminate shields only at the Mark VIe cabinet ground.

  • Spare Strategy: For critical plants, keep one spare IS200SRLYH2A per turbine. Lead times typically 6–10 weeks.

  • Retrofit: Direct replacement for IS200SRLYH1A and IS200SRLYH1—no chassis or cable changes required. Verify that the new board’s diagnostic registers are correctly mapped in ToolboxST.

Important Cautions

  1. No Hot-SwapIS200SRLYH2A is not hot-swappable. Always de-energize the Mark VIe rack before insertion/removal to prevent backplane damage.

  2. Load Protection: Although built-in suppression is provided, external loads exceeding 5A or highly inductive loads can weld relay contacts. Use external contactors for high-current loads (>5A) to protect IS200SRLYH2A.

  3. Wiring Polarity: For DC loads, observe correct polarity—the flyback diode is polarity-sensitive. Reverse polarity will short the supply through the diode and damage the relay coil driver.

  4. Contact Life: Electrical life at rated load is 100,000 operations. For frequent cycling applications (e.g., modulating valves), consider using solid-state output modules instead to avoid premature contact wear.

  5. Welded Contact Detection Wiring: To enable this diagnostic feature, the load circuit must include a voltage detection resistor and an analog input to the Mark VIe system. Refer to GE wiring diagram IS200SRLYH2A-DWG for correct implementation.

  6. Grounding: Connect the Mark VIe cabinet ground at a single star point to avoid ground loops that can induce false coil fault readings.

  7. ESD Handling: Use grounded wrist straps during handling; field repair is not possible due to conformal coating.

FOXBORO FBM203
WESTINGHOUSE 1C31223G01
MR-J2M-20DU
A-B 1761-NET-ENI

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