Description
Key Specifications
| Parameter | Specification |
|---|---|
| Output Channels | 16 discrete outputs (high-side or low-side configurable) |
| Output Type | Solid-state (MOSFET) with improved switching characteristics |
| Voltage Rating | 24 VDC nominal (18–32 VDC) |
| Current/Channel | 2.5 A continuous, 6 A inrush (150 ms) |
| Total Current | 16 A max (module total) |
| Protection | Short-circuit, overcurrent, over-temperature, inductive load clamp (built-in flyback), reverse polarity protection |
| Diagnostics | Per-channel load current monitoring with ±5% accuracy, output state feedback, wire-break detection |
| Fault Logging | 1000-event log with timestamps and waveform snapshots |
| Isolation | 1500 VDC (output-to-backplane) |
| Operating Temp | –30 °C to +75 °C (widest range in VSVOH1 family) |
| Humidity | 5–100% condensing (silicone coating standard) |
| Coating | Thicker silicone conformal coating + enhanced edge encapsulation (UV-traceable) |
| Manufacturing | 120-hour burn-in, 100% X-Ray/AOI, military-grade components, enhanced thermal cycling (–40 to +85 °C, 100 cycles) |
| Power | 10 W (+5 V / +3.3 VDC) + external 24 VDC field power |
| Connectors | Front-panel 32-pin terminal block with captive washer screws and gold-plated contacts |
| Status Indicators | Individual channel LEDs, module health, communication status, diagnostic blink codes |
Advantages & Distinctive Features
-
16 High-Capacity Outputs: Controls up to 16 solenoids/actuators per module—reduces rack space and cost.
-
High Inrush Capability: 6 A for 150 ms handles demanding solenoid loads and long-cable capacitive inrush.
-
Improved Current Monitoring: ±5% accuracy enables precise detection of solenoid degradation (increased coil resistance) and predictive maintenance.
-
Wire-Break Detection: Identifies open circuits in field wiring—prevents unexpected valve failures.
-
Reverse Polarity Protection: Protects module from field power wiring errors—reduces installation risk.
-
Silicone Conformal Coating + Edge Encapsulation: Superior protection against humidity, salt spray, chemicals, and condensing environments—suitable for offshore, Arctic, and chemical plants.
-
Widest Temperature Range: –30 °C to +75 °C operation—suitable for unheated cabinets, Arctic installations, and desert power plants.
-
1000-Event Fault Log with waveform snapshots—enables comprehensive post-event analysis.
-
Premium Manufacturing Quality: 120-hour burn-in, 100% X-ray/AOI, military-grade components ensure maximum field reliability.
-
Gold-Plated Terminal Contacts: Corrosion-resistant connections in high-humidity environments.
-
Captive Washer Terminals: Prevents screw loosening due to vibration—essential for turbine control cabinets.
-
Hot-Swappable: Supports removal and replacement without powering down the rack.
-
Direct Retrofit: Replaces all VSVOH1A, H1B, and H1BDC series boards.
Application Fields
-
Gas Turbines: Trip solenoids, fuel shut-off valves, purge/drain valves, start-up bleed valves, liquid fuel dump valves
-
Steam Turbines: Emergency stop valves (ESV), control valve trip solenoids, extraction valves, drain valves
-
Compressors: Anti-surge blow-off valves, suction/discharge isolation valves, vent valves
-
Generators: H2 supply shut-off valves, seal oil system valves, CO2 fire suppression valves
-
Combined Cycle: HRSG drain valves, feedwater isolation valves, blowdown valves
-
Offshore Platforms: Salt-spray and condensing environments
-
Arctic Installations: Extreme cold (–30 °C) environments
-
Desert Power Plants: Extreme heat (+75 °C) environments
-
Chemical Processing: Corrosive environments benefiting from silicone coating
-
Marine: Fuel isolation valves, ballast valve controls
-
Nuclear Power Plants: Safety-critical valve control requiring maximum reliability
Comparison with Competitors
| Feature | GE IS200VSVOH1BED | Siemens 6ES7-322 | Rockwell 1794-OB16 |
|---|---|---|---|
| Output Channels | 16 | 16 | 16 |
| Continuous Current | 2.5 A | 0.5 A | 2 A |
| Inrush Current | 6 A (150 ms) | No inrush support | No inrush support |
| Current Monitoring | ±5% accuracy | No | No |
| Wire-Break Detection | Yes | No | No |
| Coating | Silicone (std) + edge encaps. | Optional | Optional |
| Temp Range | –30 to +75 °C | 0 to +55 °C | 0 to +55 °C |
| Humidity | 5–100% condensing | 5–90% | 5–90% |
| Burn-in | 120 hours | 24 hours | 24 hours |
| Fault Logging | 1000 events + waveforms | No | No |
The GE IS200VSVOH1BED offers superior current handling, diagnostics, environmental protection, and manufacturing quality compared to competitors—making it the definitive choice for critical solenoid valve control in the world’s harshest environments.
Selection Guidelines
-
When to choose:
-
Critical solenoid/isolation valve control requiring maximum reliability
-
Extreme environments (–30 to +75 °C, condensing, chemical exposure, salt spray)
-
Solenoids with high inrush current (>5 A)
-
Applications requiring predictive maintenance (current trending)
-
Vibration-prone installations (captive washer terminals)
-
Maximum reliability projects (nuclear, critical infrastructure)
-
-
When to choose “BDC” instead: For less extreme environments (0–60 °C, non-condensing) where acrylic coating suffices—the “ED” variant is typically more expensive; select only when environmental conditions warrant it.
-
Load Verification: Verify solenoid inrush ≤6 A, holding ≤2.5 A per channel. Total module current ≤16 A.
-
Field Power: Provide dedicated 24 VDC power supply with capacity for all solenoids simultaneously (16 A max). Use a regulated supply with 18–32 VDC range.
-
Wiring: Use 16–18 AWG for 2.5 A loads; use shielded cables for long runs; ground shield at terminal board only.
-
Coating Verification: Inspect under UV (365 nm)—silicone coating shows distinct fluorescence; verify enhanced edge encapsulation bead is continuous along all PCB edges.
-
Compatibility: Fits all Mark VIe VME64x racks. Requires processor board (VPRO series) with I/O Net connectivity and ControlST v6.5 or higher for full features. Direct replacement for all VSVOH1 series boards.
Operational Precautions
-
Wiring: Follow GE wiring diagrams (GEH-6816)—correct polarity for external field power. Use shielded cables; ground shield at terminal board only.
-
Field Power: Properly size and fuse external 24 VDC supply (20 A fast-acting fuse recommended). Do not power solenoids from backplane.
-
Load Monitoring: Use Toolbox ST to view per-channel current readings. Establish baseline during commissioning—trend increasing current (10%+ over baseline) indicates solenoid wear or impending failure.
-
Wire-Break Detection: Test by disconnecting a field wire to verify alarm generation—ensures monitoring system is correctly configured.
-
Short-Circuit Test: Simulate short to verify auto-shutdown and auto-retry (3 attempts) functionality.
-
LED Diagnostics: Green = output on; Amber = output off with fault (overcurrent, wire-break, over-temp); Red = module fault. Refer to GEH-6816 for blink code table (expanded for “ED” variant).
-
Fault Log: Access 1000-event log via Toolbox ST for post-event analysis—review timestamps and waveforms to identify intermittent issues.
-
Coating Care: Silicone coating is highly chemical-resistant; use GE-approved silicone-safe cleaner (IS200CLN2). Inspect annually under UV—rework voids with approved silicone coating (Dow 1-2577) per GE FSB-MKVIe-112. Do not use solvents (acetone, MEK) that can damage the coating.
-
Hot-Swap: Remove/insert slowly under power—processor auto-recognizes new module and restores output states (if configured for state retention).
-
Spare Stock: Maintain 1 spare per 3–4 racks; “ED” backward-compatible with all VSVOH1 sockets, making it the preferred universal spare for maximum capability.
-
Annual Verification: Cycle all solenoids during scheduled outages; monitor current draw and switching response times (<10 ms typical). Compare to baseline data.
-
Thermal Derating: Above 65 °C, reduce total output current to 12 A max. Monitor module temperature via I/O Net telemetry if available.
-
ESD: Handle by edges only with grounded wrist strap—silicone coating does not protect exposed connectors.
-
Storage: Anti-static bag with desiccant at –40 to +85 °C; rotate every 3 years for coating inspection and functionality verification.

A-B 1746-NO4V
SCHNEIDER 140ACI03000
A-B 1756-HSC


Reviews
There are no reviews yet.