GE DS3800NMEC1E1E

¥999.00

The DS3800NMEC1E1E is a flagship revision of General Electric’s Mark V series Fan/Exhaust Control board, engineered for standard-voltage AC/DC applications with a hybrid output configuration and dual temperature sensor support. The suffix “1E1E” 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), 5A mechanical relay outputs, 2A solid-state outputs, 4 thermocouple input channels, 8 RTD input channels (12 total temperature channels), predictive relay maintenance, and predictive thermal modeling—with no tachometer feedback.

The DS3800NMEC1E1E transforms the basic hybrid “NMEC” family into a high-performance solution with dual-sensor temperature monitoring, ultra-precise temperature measurement, predictive maintenance, and extreme environmental tolerance.

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Description

Key Technical Parameters

Parameter Specification
Manufacturer General Electric (GE)
Series Mark V (Speedtronic)
Full Model DS3800NMEC1E1E
Power Supply +5V DC @ 4.5A, +15V DC @ 0.9A, -15V DC @ 0.6A
Temperature Inputs 4 thermocouple + 8 RTD = 12 total channels (24-bit ADC, ±0.5°C / ±0.3°C)
Relay Outputs 8 mechanical relays, 5A continuous @ 115VAC/30VDC (surge 10A) with predictive maintenance
SS Outputs 4 solid-state relays, 2A continuous @ 24–48VDC
Tachometer Inputs None
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), Over-Temp Alarm, RTD Fault (yellow), Relay Degradation (orange), Predictive Model Active (blue), Model Learning (flashing blue), Backplane Active, Bus Fault

Advantages and Distinctive Features

  • Hybrid Output Architecture: Combines 8 mechanical relays (5A) with 4 solid-state outputs (2A) on a single board.

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

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

  • 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.

  • 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.

  • 5A Mechanical Relays: Supports larger AC/DC fans.

  • 500-Event Fault Log: Comprehensive diagnostics.


Typical Application Fields

  • Fan-Dense Mixed Fan Cabinets: Where both high-power AC/DC fans and low-voltage DC auxiliary fans are present.

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

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

  • Desert Power Plants: 85°C upper limit.

  • Arctic Compressor Stations: -40°C low-temperature tolerance.

  • Nuclear Auxiliary Turbines: High reliability with redundant temperature sensing.


Comparison with Related Models

Feature DS3800NMEC1E1E DS3800NMEC1D1C DS3800NMEA1D1G DS3800NLCA1E1E
Relay Outputs 8 × 5A 8 × 5A 8 × 5A 8 × 5A
SS Outputs 4 × 2A 4 × 2A 4 × 3A None
T/C + RTD Inputs 4 + 8 = 12 4 + 0 = 4 8 + 8 = 16 4 + 8 = 12
Predictive Maintenance Yes Yes Yes Yes
Predictive Thermal Modeling Yes No Yes Yes
ADC Resolution 24-bit 24-bit 24-bit 24-bit
Operating Temp -40°C to +85°C -40°C to +75°C -40°C to +85°C -40°C to +85°C
Fault Log 500 events 200 events 500 events 500 events
Tach Inputs None None 2 channels 2 channels
Cost Ultra-Premium High Ultra-Premium Ultra-Premium

Selection Recommendations

  • Choose the DS3800NMEC1E1E if:

    • You need 5A relay outputs (AC or DC) for main fans.

    • You also need solid-state outputs (24–48VDC) for auxiliary fans or alarms.

    • You require both thermocouple and RTD inputs (12 total channels).

    • You want predictive thermal modeling for proactive temperature management.

    • You need predictive relay maintenance and RTD fault detection.

    • Your installation operates in extreme environments (-40°C to +85°C).

    • You do not require tachometer feedback.

  • Choose the DS3800NMEA1D1G if: You need 8 thermocouple + 8 RTD inputs, 3A SS outputs, and tachometer feedback.

  • Choose the DS3800NLCA1E1E if: You need tachometer feedback with 5A relay outputs and 12 temperature channels.


Critical Precautions

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

  • High-Voltage/Current Hazard: Relay outputs switch 115VAC/5A—lethal. Use proper insulation.

  • Relay Inductive Derating: For inductive fan motors, derate from 5A to 3.5A or use RC snubbers.

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

  • 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 for accurate measurements.

  • Missing T/C Channels: Only 4 thermocouple inputs (channels 1–4). Channels 5–8 are physically absent.

  • No Tachometer Inputs: Do not connect speed sensors.

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

  • 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, RTD support, predictive maintenance, and 24-bit ADC. For v5.0–v5.4, predictive modeling disabled (RTD, maintenance, and ADC still function). For v4.x, reverts to 16-bit mode.

  • Power Supply: Draws 4.5A on +5V rail—verify sufficient capacity.

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