Description
Key Parameters
Power Supply Section:
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Power Outputs: Multiple regulated DC outputs (+5V, ±15V, +24V, and configurable auxiliary outputs)
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Excitation Outputs: Adjustable excitation for transducers (e.g., 3V, 5V, 10V DC, or 4–20mA loop power)
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Output Accuracy: ±0.05% regulation
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Ripple/Noise: <5 mV peak-to-peak
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Diagnostics: LED status indicators for each output, over-voltage/over-current protection, thermal shutdown, output voltage monitoring
Frequency Counter Section:
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Frequency Input Channels: 4 independent counter/frequency channels
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Input Types: Magnetic pickup, proximity, TTL (5V), or 24V DC (jumper-selectable per channel)
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Maximum Input Frequency: 100 kHz per channel
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Counter Resolution: 32-bit (up/down counter)
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Encoder Support: Incremental (A/B/Z) with quadrature decoding (x1, x2, x4)
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Speed Measurement: Calculates RPM with <0.01% accuracy
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Measurement Method: Pulse counting or period-averaging (software-selectable)
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Diagnostics: Per-channel LED status, input signal loss detection, frequency threshold alarms
Pulse Output Section:
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Pulse Output Channels: 2 or 4 independent pulse/frequency output channels (depending on configuration)
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Output Types: TTL, open-collector, or differential (jumper-selectable)
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Frequency Range: 0.1 Hz to 500 kHz (programmable)
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Output Accuracy: ±0.01% of set frequency
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Waveform: Square wave (programmable duty cycle)
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Function: Pulse output for actuator control, frequency retransmission, or external device synchronization
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Diagnostics: LED status per channel, output fault detection
Common Section:
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Isolation: 2500V RMS channel-to-backplane
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Temp Range: –40°C to +85°C (extended)
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Power Supply: +5V (logic), +24V/48V (field power) from backplane or external supply
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Physical: 6U VME single-slot board
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Key Features: Integrated power supply + frequency counter + pulse output, 32-bit counter, quadrature decoding, programmable pulse outputs, extended temp range, high isolation
Advantages
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Integrated frequency measurement + generation + power – the DS3815PFPB combines sensor excitation, high-speed frequency counting, and programmable pulse output in a single module, reducing board count and simplifying system architecture.
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Space-saving – replaces up to four separate boards (power supply, frequency counter, pulse output, and excitation supply) with one module.
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Stable sensor excitation – provides clean, regulated power for speed pickups, proximity probes, and other transducers.
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Adjustable excitation – allows matching excitation levels to specific sensor requirements.
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High-speed counting – the General Electric DS3815PFPB accepts frequencies up to 100 kHz, suitable for high-speed turbine speed pickups and flowmeter pulse inputs.
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Encoder support – quadrature decoding (x1, x2, x4) provides precise position and direction information.
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Built-in speed calculation – calculates RPM directly from input frequency, reducing main processor load.
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Programmable pulse outputs – generates precise frequency/pulse signals for actuator control, speed reference, or external system synchronization.
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Multiple output types – supports TTL, open-collector, and differential outputs for compatibility with various field devices.
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Extended temperature range – operates from –40°C to +85°C for harsh environments.
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Comprehensive protection – over-voltage, over-current, and thermal protection safeguard the board and connected field devices.
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High isolation – 2500V RMS isolation protects the backplane from field-side faults.
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Drop-in compatible – works with all Mark IV backplanes and processor configurations.
Applications
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Turbine speed control and pulse generation – the DS3815PFPB measures turbine speed (via magnetic pickups) and generates pulse outputs for speed reference or actuator control.
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Flow measurement with pulse retransmission – counts pulses from turbine flowmeters and retransmits frequency signals to external systems.
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Overspeed protection systems – measures frequency from multiple speed pickups with loss-of-signal detection for overspeed trip logic.
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Valve positioning with encoder feedback – reads quadrature encoder signals and generates pulse outputs for valve positioner control.
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Synchronization applications – generates reference frequency signals for generator synchronization or external device timing.
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Offshore and harsh environments – extended temperature range makes it suitable for demanding applications.
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Retrofits – replaces separate power, frequency counter, and pulse output boards with a single, integrated solution.
vs Competitors & Separate Boards
| Feature | DS3815PFPB | DS3815PFCA (Counter only) | DS3800XPEN + DS3800XCIA + DS3800XCJB | Generic VME Combo Board |
|---|---|---|---|---|
| Power outputs | Yes | Yes | Yes + No + No | Varies |
| Frequency inputs | 4 | 4 | 0 + 4 + 4 | 2–4 |
| Pulse outputs | 2–4 | 0 | 0 + 0 + 0 | 0–2 |
| Quadrature decoding | Yes | Yes | Yes (XCIA) | Rarely |
| Built-in speed calculation | Yes | Yes | Yes (XCIA/XCJB) | No |
| Programmable frequency output | Yes | No | No | Rarely |
| Board count | 1 | 1 | 3 | 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
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Frequency measurement + generation + power – choose the DS3815PFPB when you need sensor excitation, frequency measurement, and programmable pulse output in a single module.
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Slot-limited installations – the General Electric DS3815PFPB reduces board count compared to separate power, frequency counter, and pulse output boards.
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Actuator control applications – the programmable pulse outputs can drive stepper motors, frequency-controlled actuators, or external devices.
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Encoder feedback – the quadrature decoding support is useful for valve position or shaft timing applications.
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Sensor compatibility – verify that the excitation voltage and current requirements of your sensors match the DS3815PFPB outputs.
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Frequency input type – configure each of the 4 frequency inputs for magnetic, proximity, TTL, or 24V sensors as required.
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Pulse output type – select TTL, open-collector, or differential outputs to match your field device requirements.
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Harsh environments – the extended temperature range makes it suitable for offshore, desert, or unheated cabinet installations.
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Power loading – calculate the total current draw of all connected sensors and ensure it does not exceed the DS3815PFPB total power rating.
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Spare strategy – keep one DS3815PFPB per 5–8 installed units, especially in critical speed and actuator control applications.
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Calibration – periodically verify output voltages, frequency measurement accuracy, and pulse output accuracy using precision instruments.
Critical Precautions
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Power supply loading – do not exceed the DS3815PFPB current rating for any output. Overloading can cause voltage drop, overheating, or shutdown.
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Output voltage selection – verify that the DS3815PFPB output voltages are correctly configured before connecting sensors. Incorrect voltage can damage sensors.
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Frequency input voltage limits – never apply voltage above 30V to the frequency inputs; magnetic pickups can generate high voltages at high speeds – use appropriate attenuation.
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Pulse output load – ensure the connected input has the correct impedance and termination for the General Electric DS3815PFPB output type (TTL, open-collector, differential).
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Cable shielding – use shielded twisted-pair cables for frequency inputs and pulse outputs. Ground the shield only at the DS3815PFPB end to prevent ground loops.
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Wiring polarity – ensure correct polarity when connecting sensors and actuators to the DS3815PFPB; reversed polarity can damage sensitive devices.
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Ground loops – use single-point grounding for all sensors and outputs connected to the DS3815PFPB to avoid ground-loop noise.
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Sensor compatibility – verify that the DS3815PFPB input impedance and threshold levels match your specific frequency sensors.
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Thermal considerations – ensure adequate cabinet cooling (>200 CFM); the DS3815PFPB can generate significant heat under full load.
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Self-test – allow the DS3815PFPB to complete its power-up self-test (~2 seconds) before relying on measurements or outputs.
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Calibration intervals – schedule periodic calibration verification (every 6–12 months) to maintain accuracy.
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Hot-swap – never insert or remove the DS3815PFPB while the rack is powered; this can cause voltage spikes or component damage.
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ESD handling – always use a grounded wrist strap; power, precision analog, and frequency components are ESD-sensitive.
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Storage – store spare DS3815PFPB boards in anti-static bags in a dry, temperature-controlled environment.

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