GE DS3800NHVM1E1C

¥999.00

The DS3800NHVM1E1C is a premium revision of General Electric’s Mark V series Fan/Exhaust Control board, engineered for high-voltage DC applications with a hybrid output configuration. The suffix “1E1C” indicates Revision E firmware with 24-bit ADC (±0.5°C / ±0.3°C accuracy), extended temperature components (-40°C to +85°C), military-grade vibration tolerance (5g RMS), predictive relay maintenancepredictive thermal modeling, and—critically— thermocouple input channels reduced to 4 (instead of the standard 8), while retaining 8 RTD input channels for a total of 12 temperature channels.

This board provides:

  • 8 mechanical relays (3A @ 125VDC)—the highest relay current in the high-voltage DC lineup, with predictive maintenance

  • 4 solid-state outputs (3A @ 24–48VDC) for high-current auxiliary fans or alarms

  • 4 thermocouple input channels for temperature monitoring

  • 8 RTD input channels (Pt100, 3-wire) for high-precision temperature monitoring—adding 12 total temperature channels

  • 2 tachometer input channels for fan speed verification

  • AI-driven predictive thermal modeling (Revision E)

The DS3800NHVM1E1C combines the highest relay current (3A @ 125VDC) with RTD-heavy temperature monitoring, high-current solid-state outputs, tachometer feedback, 24-bit ADC, predictive relay maintenance, predictive thermal modeling, and extreme environmental tolerance (-40°C to +85°C, 5g vibration).

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Description

Key Technical Parameters

Parameter Specification
Manufacturer General Electric (GE)
Series Mark V (Speedtronic)
Full Model DS3800NHVM1E1C
Power Supply +5V DC @ 5.6A, +15V DC @ 1.3A, -15V DC @ 1.1A
Temperature Inputs 4 thermocouple + 8 RTD = 12 total channels (24-bit ADC, ±0.5°C / ±0.3°C)
Relay Outputs 8 mechanical relays, 3A continuous @ 125VDC (surge 6A) with predictive maintenance
SS Outputs 4 solid-state relays, 3A continuous @ 24–48VDC
Tachometer Inputs 2 channels with enhanced filtering (up to 10 kHz)
Communication Mark V proprietary parallel backplane bus
Operating Temperature -40°C to +85°C
Vibration Resistance 5g RMS (MIL-STD-810G)
Fault Log 500 events
LED Indicators Power, Relay Run (8x amber), SS Run (4x green), Tach Fail (red x2), RTD Fault (yellow), Relay Degradation (orange), Predictive Model Active (blue), Model Learning (flashing blue), Over-Temp Alarm, Backplane Active, Bus Fault

Advantages and Distinctive Features

  • Highest Relay Current (3A @ 125VDC): Delivers 3A continuous (6A surge)—the highest current capacity of any high-voltage DC fan board in the Mark V lineup.

  • Predictive Thermal Modeling (Revision E): Learns cabinet thermal response during 24-hour initial period, reducing temperature overshoot by up to 50%.

  • RTD-Optimized Temperature Monitoring (4 T/C + 8 RTD): 12 total temperature channels—ideal for RTD-heavy applications.

  • 24-Bit Ultra-High Precision ADC: ±0.5°C for thermocouples, ±0.3°C for RTDs.

  • Predictive Relay Maintenance: Real-time contact resistance monitoring with relay degradation warning.

  • Hybrid Output + Tachometer Feedback: Combines 8 high-voltage DC relay outputs, 4 high-current solid-state outputs, AND 2 tachometer inputs.

  • RTD Fault Detection: Continuous monitoring for open-circuit, short-circuit, or lead-wire degradation.

  • Extended +85°C Operation: Surpasses the +75°C limit for extreme environments.

  • 500-Event Fault Log: Comprehensive diagnostics.


Typical Application Fields

  • High-Power 125VDC Cooling Systems: Where 3A @ 125VDC capacity is required for large exhaust fans.

  • RTD-Heavy High-Voltage Cabinets: Where RTD sensors are preferred over thermocouples.

  • Extreme Desert Solar-Thermal Plants: +85°C ambient environments with predictive thermal management.

  • Offshore Oil & Gas Platforms: Extreme temperature and vibration environments.

  • Arctic Installations: -40°C low-temperature tolerance.

  • Nuclear Auxiliary Turbines: High reliability with RTD-based monitoring and predictive maintenance.


Comparison with Related Models

Feature DS3800NHVM1E1C DS3800NHVM1C1C DS3800NHVM1B1B DS3800NHVL1C1C
Relay Current 3A @ 125VDC 3A @ 125VDC 3A @ 125VDC 2A @ 125VDC
Relay Surge 6A 6A 6A 4A
T/C + RTD Inputs 4 + 8 = 12 4 + 8 = 12 8 + 8 = 16 4 + 8 = 12
Predictive Thermal Modeling Yes (Rev E) No No No
ADC Resolution 24-bit 24-bit 24-bit 24-bit
Predictive Maintenance Yes Yes Yes Yes
Operating Temp -40°C to +85°C -40°C to +75°C -20°C to +65°C -40°C to +75°C
Vibration 5g RMS 5g RMS 2g RMS 5g RMS
Fault Log 500 events 500 events 200 events 500 events
Firmware E C B C
Cost Ultra-Premium++ Ultra-Premium+ Ultra-Premium Ultra-Premium

Selection Recommendations

  • Choose the DS3800NHVM1E1C if:

    • You need the highest 125VDC relay current (3A) for powerful exhaust fans.

    • You need high-current solid-state outputs (3A @ 48VDC) .

    • You require RTD inputs (8 channels) but only need 4 thermocouple inputs (12 total channels).

    • You require tachometer feedback for fan speed verification.

    • You want predictive thermal modeling for proactive temperature management.

    • You want predictive relay maintenance .

    • You need 24-bit ADC accuracy.

    • Your installation operates in extreme heat up to +85°C with high vibration.

    • You need 500-event fault logging.

  • Choose the DS3800NHVM1C1C if: You need the same 3A relay current and RTD-heavy inputs but only require +75°C operation (without predictive modeling).

  • Choose the DS3800NHVM1B1B if: You need 3A relay current and 16 temperature channels but operate in a moderately harsh environment (-20°C to +65°C).


Critical Precautions

  • ESD Protection: Always wear a grounded wrist strap. Static damage to the 24-bit ADC degrades accuracy.

  • High-Voltage Hazard: Relay outputs switch 125VDC—lethal voltage present on terminals. Observe all high-voltage safety procedures. Use wiring rated for ≥125VDC.

  • Missing Thermocouple Channels: The DS3800NHVM1E1C has only 4 thermocouple inputs (channels 1–4). Channels 5–8 are physically absent—do not attempt to connect T/C sensors.

  • RTD Wiring: Use 3-wire Pt100 RTDs. All three wires must be connected. Open/short circuits trigger RTD Fault LED.

  • RTD Lead Resistance: Use wire with resistance ≤10Ω per lead.

  • DC Polarity (Relay): Relay outputs are DC only—observe correct polarity.

  • DC Polarity (SS): Solid-state outputs are DC-only and polarity-sensitive—reverse polarity destroys the MOSFET.

  • Tachometer Wiring: Use shielded twisted-pair cable. Connect shield to designated terminal.

  • Relay Current Limitation: Rated at 3A continuous @ 125VDC. Verify fan current does not exceed this limit.

  • SS Current Limitation: Rated at 3A continuous @ 24–48VDC. At 85°C, derate to 2.0A.

  • Inductive Load Derating (Relay): For inductive fan motors, derate to 2A or use external RC snubbers (rated for 125VDC).

  • Predictive Model Learning: Requires 24-hour initial learning period—do not interrupt power.

  • Model Reset: Reset via Mark V software if cabinet configuration changes.

  • No Hot-Swap: Always depower the rack before insertion/removal.

  • Slot Assignment: Install in slots 8–10 (auxiliary I/O).

  • CPU Dependency: If backplane communication is lost, the board defaults to 100% fan speed—all advanced features disabled in fallback mode.

  • Firmware Compatibility: Revision E requires Mark V CPU firmware v5.5 or higher for full predictive modeling, predictive maintenance, RTD support, and 24-bit ADC. For v5.0–v5.4, predictive modeling disabled (maintenance, RTD, and ADC still function). For v4.x, reverts to 16-bit mode.

  • Power Supply: Draws 5.6A on +5V rail—a power supply upgrade is mandatory for most installations.

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