GE DS3815PRDB

¥999.00

The DS3815PRDB is a high-density, high-reliability multi-function module for the GE Mark IV turbine control system that integrates regulated DC power outputs and high-density dual-coil relay output channels in a single slot. This module provides sensor excitation and high-current relay switching with redundant coil drive for driving critical field devices such as solenoid valves, motor contactors, alarm annunciators, and trip relays in one compact package. The dual-coil relay design offers enhanced reliability for safety-critical applications. It works alongside boards such as the DS3800NVIA1G1CDS3800NVIA1G1DDS3800XPEN series, DS3800NVRC series, DS3810DDDB, and DS3810RAMC.

Category:

Description

Key Parameters

Power Supply Section:

  • Power Outputs: Multiple regulated DC outputs (+5V, ±15V, +24V, and configurable auxiliary outputs)

  • Excitation Outputs: Adjustable excitation for transducers (e.g., 3V, 5V, 10V DC, or 4–20mA loop power)

  • Output Accuracy: ±0.05% regulation

  • Ripple/Noise: <5 mV peak-to-peak

  • Diagnostics: LED status indicators for each output, over-voltage/over-current protection, thermal shutdown, output voltage monitoring

Relay Output Section:

  • Output Channels: 16 or 24 Form-C (SPDT) relay outputs (depending on configuration)

  • Relay Type: Dual-coil latching relays (redundant coil drive – enhanced reliability)

  • Contact Rating: 5A at 250V AC / 30V DC (resistive load)

  • Output Coil: 24V DC (from backplane or external supply) – dual coils for each relay

  • Diagnostics: Per-channel LED status, enhanced coil fault detection (both coils) , contact weld detectionfuse status indicationself-test on power-up

  • Response Time: 10–15ms (relay operate time)

Common Section:

  • Isolation: 2500V RMS channel-to-backplane

  • Field Wiring: Integrated terminal blocks for direct field wiring

  • Temp Range: –40°C to +85°C (extended)

  • Power Supply: +5V (logic), +24V (relay coils and field power) from backplane or external supply (higher current draw due to dual coils)

  • Physical: 6U VME single-slot board

  • Key Features: Integrated power supply + dual-coil relay outputs, Form-C contacts, 5A contact rating, redundant coil drive, contact weld detection, extended temp range, high isolation


Advantages

  • Integrated power + redundant relay outputs – the DS3815PRDB combines sensor excitation and high-current dual-coil relay outputs in a single module, reducing board count and simplifying system architecture.

  • Dual-coil reliability – uses dual-coil latching relays, providing redundant coil drive for critical circuits. If one coil fails, the other can still operate the relay.

  • Contact weld detection – the General Electric DS3815PRDB monitors contact status and detects welded contacts, providing early warning of relay failure.

  • Space-saving – replaces up to three separate boards (power supply, relay output, and excitation supply) with one module.

  • Stable sensor excitation – provides clean, regulated power for speed pickups, proximity probes, pressure transmitters, and other transducers.

  • Adjustable excitation – allows matching excitation levels to specific sensor requirements.

  • High-current relay outputs – 5A contact rating handles larger loads than solid-state outputs.

  • Form-C contacts – provides both NO and NC outputs for fail-safe wiring.

  • Enhanced diagnostics – coil fault detection (both coils), contact weld detection, and self-test on power-up for comprehensive health monitoring.

  • Extended temperature range – operates from –40°C to +85°C for harsh environments.

  • Comprehensive protection – over-voltage, over-current, and thermal protection safeguard the board and connected field devices.

  • High isolation – 2500V RMS isolation protects the backplane from field-side faults.

  • Drop-in compatible – works with all Mark IV backplanes and processor configurations.


Applications

  • Critical turbine trip and shutdown circuits – the DS3815PRDB drives critical trip solenoids with redundant coil drive for enhanced reliability.

  • Safety-critical alarm circuits – used for overspeed, high temperature, and low lube oil pressure alarms where relay failure is not acceptable.

  • Alarm annunciation – drives panel lamps, horns, and DCS alarm inputs with high-current relay outputs.

  • Motor and valve control – controls auxiliary motors, solenoid valves, and isolation valves.

  • Sensor excitation with relay control – powers field sensors while simultaneously providing relay outputs for discrete control.

  • Offshore and harsh environments – extended temperature range makes it suitable for demanding applications.

  • Retrofits – replaces separate power supply and relay output boards with a single, integrated, high-reliability solution.


vs Competitors & Separate Boards

Feature DS3815PRDB DS3815PRBA (Single-Coil) DS3800XPEN + DS3810RAMC Generic VME Combo Board
Power outputs Yes Yes Yes + No Varies
Relay outputs 16–24 (5A, dual-coil) 16–24 (5A, single-coil) 0 + 24–32 (dual-coil) 8–16
Dual-coil redundancy Yes No Yes Rarely
Contact weld detection Yes No Yes Rarely
Coil fault detection Yes (both coils) Yes (single) Yes (both) Rarely
Board count 1 1 2 1
Extended temp range –40°C to +85°C –40°C to +85°C –40°C to +85°C 0°C to +60°C

Selection Tips

  • Redundant relay outputs + power – choose the DS3815PRDB for safety-critical applications requiring redundant coil drive, contact weld detection, and sensor excitation in a single module.

  • Slot-limited installations – the General Electric DS3815PRDB reduces board count compared to separate power supply and dual-coil relay boards.

  • Fail-safe wiring – Form-C contacts provide both NO and NC outputs, essential for critical trip circuits.

  • Sensor compatibility – verify that the excitation voltage and current requirements of your sensors match the DS3815PRDB outputs.

  • Load verification – ensure the 5A contact rating is sufficient for your loads; use external contactors for higher currents.

  • Harsh environments – the extended temperature range makes it suitable for offshore, desert, or unheated cabinet installations.

  • Power loading – the DS3815PRDB draws more current due to dual coils. Calculate total draw and verify backplane power capacity.

  • Spare strategy – keep one DS3815PRDB per 5–8 installed units, especially in critical safety applications.

  • Wiring planning – plan field wiring terminations carefully to leverage the integrated terminal blocks efficiently.


Critical Precautions

  • Power supply loading – the DS3815PRDB has higher current draw due to dual coils. Do not exceed backplane power ratings.

  • Output voltage selection – verify that the DS3815PRDB output voltages are correctly configured before connecting sensors. Incorrect voltage can damage sensors.

  • Output over-current – do not exceed the relay contact rating (5A). Overloading can weld contacts or cause overheating.

  • Dual-coil operation – ensure the dual-coil drive logic is correctly configured. Incorrect coil drive can cause relay switching failures.

  • Inductive loads – for DC solenoid and relay coil loads, install a flyback diode across the load to prevent voltage spikes from damaging the General Electric DS3815PRDB relay contacts or control circuitry.

  • Contact weld detection – if contact weld detection is triggered, verify the relay contact status and replace the DS3815PRDB if a contact is welded.

  • Field wiring – use appropriate wire gauge for field connections. Loose connections can cause intermittent faults or overheating.

  • Fuse replacement – if a fuse status indicator shows a fault, verify the field wiring and load before replacing the fuse. Use only the specified fuse rating.

  • Relay contact wear – for high-cycle applications, consider derating the contacts or using an external interposing relay.

  • Cable shielding – use shielded cables for sensor and output wiring. Ground the shield only at the DS3815PRDB end.

  • Ground loops – use single-point grounding for all sensors and outputs connected to the DS3815PRDB.

  • Heat dissipation – ensure adequate cabinet cooling (>250 CFM); the DS3815PRDB generates significant heat under full load.

  • Self-test – allow the DS3815PRDB to complete its power-up self-test (~2 seconds) before relying on outputs.

  • Calibration intervals – schedule periodic calibration verification (every 6–12 months).

  • Hot-swap – never insert or remove the DS3815PRDB while the rack is powered.

  • ESD handling – always use a grounded wrist strap.

  • Storage – store spare DS3815PRDB boards in anti-static bags in a dry, temperature-controlled environment.

SCHNEIDER GV3A01
A-B 1786-XT
A-B 1746-NI8

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