Description
Key Technical Parameters
| Parameter | Specification |
|---|---|
| Manufacturer | General Electric (GE) |
| Series | Mark V (Speedtronic) |
| Full Model | DS3800NHVH |
| Power Supply | +5V DC @ 3.8A, +15V DC @ 0.6A, -15V DC @ 0.4A |
| Temperature Inputs | 8 differential thermocouple channels (12-bit ADC, ±2°C accuracy) |
| Relay Outputs | 8 mechanical relays, 2A continuous @ 125VDC (surge 4A) |
| SS Outputs | 4 solid-state relays, 2A continuous @ 24–48VDC |
| Tachometer Inputs | 2 channels (up to 10 kHz) |
| Communication | Mark V proprietary parallel backplane bus |
| Operating Temperature | 0°C to +60°C |
| LED Indicators | Power, Relay Run (8x amber), SS Run (4x green), Tach Fail (red x2), Over-Temp Alarm, Backplane Active |
Advantages and Distinctive Features
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Hybrid Output + Tachometer Feedback: Combines 8 high-voltage DC relay outputs (125VDC), 4 low-voltage solid-state outputs, AND 2 tachometer inputs on a single board.
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Higher Relay Current (2A @ 125VDC): Supports more powerful 110–125VDC fans compared to standard 1A @ 250VDC boards.
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Solid-State Auxiliary Outputs: Silent, maintenance-free switching for low-voltage circulating fans or alarms.
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Fan Speed Verification: Tachometer inputs allow the CPU to confirm fan operation.
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Full 8 Thermocouple Inputs: Comprehensive temperature monitoring.
Typical Application Fields
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Safety-Critical 125VDC Cooling Systems: Where fan failure must be detected immediately.
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High-Voltage Industrial Fan Systems: 110–125VDC exhaust fans with low-voltage auxiliary controls and speed monitoring.
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Military & Naval Applications: 125VDC systems common in shipboard environments.
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Legacy Turbine Installations: Older systems using 125VDC fan motors.
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Railway and Traction Applications: 110VDC cooling systems.
Comparison with Related Models
| Feature | DS3800NHVH | DS3800NHVF | DS3800NHVE | DS3800NHVB |
|---|---|---|---|---|
| Relay Outputs | 8 × 2A @ 125VDC | 8 × 1A @ 250VDC | 8 × 1A @ 250VDC | 8 × 2A @ 125VDC |
| SS Outputs | 4 × 2A @ 48VDC | 4 × 2A @ 48VDC | 4 × 2A @ 48VDC | None |
| Tach Inputs | 2 channels | 2 channels | None | None |
| T/C Inputs | 8 | 8 | 8 | 8 |
| ADC | 12-bit (±2°C) | 12-bit (±2°C) | 12-bit (±2°C) | 12-bit (±2°C) |
| Operating Temp | 0°C to +60°C | 0°C to +60°C | 0°C to +60°C | 0°C to +60°C |
| Cost | High | High | High | Medium |
Selection Recommendations
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Choose the DS3800NHVH if:
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You need 125VDC relay outputs with 2A current capacity for more powerful fans.
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You also need low-voltage solid-state outputs (24–48VDC) for auxiliary fans or alarms.
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You require tachometer feedback for fan speed verification.
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You have a climate-controlled environment (0°C to +60°C).
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Choose the DS3800NHVF if: You need 250VDC relay outputs (1A) with the same hybrid + tachometer features.
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Choose the DS3800NHVE if: You need hybrid outputs but do not require tachometer feedback.
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Choose the DS3800NHVB if: You need 125VDC relay outputs (2A) without solid-state auxiliary outputs or tachometer feedback.
Critical Precautions
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ESD Protection: Always wear a grounded wrist strap.
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High-Voltage Hazard: Relay outputs switch 125VDC—lethal voltage present on terminals. Observe all high-voltage safety procedures. Use wiring rated for ≥125VDC.
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DC Polarity (Relay): Relay outputs are DC only—observe correct polarity.
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DC Polarity (SS): Solid-state outputs are DC-only and polarity-sensitive—reverse polarity destroys the MOSFET.
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Tachometer Wiring: Use shielded twisted-pair cable. Connect shield to designated terminal—not at the fan end.
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Relay Current Limitation: Rated at 2A continuous @ 125VDC. Verify fan current does not exceed this limit.
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SS Current Limitation: Rated at 2A continuous @ 24–48VDC.
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Inductive Load Derating (Relay): Derate to 1.5A or use external RC snubbers (rated for 125VDC).
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No AC Connection: Do not connect AC loads to either output type.
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No Hot-Swap: Always depower the rack before insertion/removal.
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Slot Assignment: Install in slots 8–10 (auxiliary I/O).
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CPU Dependency: If backplane communication is lost, the board defaults to 100% fan speed—tachometer monitoring disabled in fallback mode.
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Firmware Compatibility: Compatible with all Mark V CPU firmware versions (v3.x and above).

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