Description
Key Parameters
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Input Channels: 4 independent frequency input channels
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Input Types: Magnetic pickup, proximity, TTL (5V), or 24V DC (jumper-selectable per channel)
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Measurement Method: Frequency (period averaging) – not pulse counting
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Frequency Range: 0.1 Hz to 500 kHz (wide range)
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Measurement Accuracy: ±0.001% of reading (high precision)
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Measurement Update Rate: 10 Hz to 100 Hz (adjustable)
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Input Isolation: 1500V RMS channel-to-backplane
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Diagnostics: Per-channel LED status, loss-of-signal detection, frequency out-of-range alarms
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Temp Range: –30°C to +70°C
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Power Supply: +5V (logic), +24V (field inputs) from backplane
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Physical: 6U VME single-slot board
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Key Features: 4 frequency input channels, high precision (0.001%), period-averaging measurement, wide frequency range
Advantages
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Superior frequency precision – the DS3800XCJB uses period-averaging measurement, providing ±0.001% accuracy, which is significantly better than standard counter-based methods used by the DS3800XCIA.
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Wide frequency range – measures from very low frequencies (0.1 Hz) up to 500 kHz, making it suitable for both slow-speed and high-speed turbine applications.
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Frequency measurement, not counting – ideal for applications requiring precise frequency data rather than total pulse counts, such as speed control and flow rate measurement.
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Flexible input types – each channel can be independently configured for magnetic, proximity, TTL, or 24V DC inputs.
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Signal loss detection – immediately detects sensor failure or wiring issues, critical for overspeed protection.
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Adjustable update rate – can be tuned to balance measurement accuracy with system bandwidth requirements.
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Drop-in compatible – works with all Mark IV backplanes and processor configurations.
Applications
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Precision speed control (governing) – provides highly accurate turbine speed feedback for speed setpoint control during startup, synchronization, and load operation.
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Overspeed protection systems – measures frequency with high precision to detect speed excursions for trip logic.
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Flow rate measurement – measures frequency from turbine flowmeters (fuel gas, liquid fuel, steam) for accurate flow rate calculation.
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Slow-speed monitoring – the 0.1 Hz lower limit is useful for turning gear speed monitoring or low-speed shaft monitoring.
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Vibration analysis – provides precise frequency data from proximity probes for bearing condition monitoring.
vs Competitors & Previous Variants
| Feature | DS3800XCJB | DS3800XCIA1A1A | Standard DS3800XCIA | Generic VME Frequency Board |
|---|---|---|---|---|
| Measurement method | Frequency (period avg) | Counting / quadrature | Counting | Counting |
| Frequency accuracy | ±0.001% | <0.01% | <0.01% | ±0.05–0.1% |
| Frequency range | 0.1 Hz – 500 kHz | 0–250 kHz | 0–100 kHz | 10 Hz–50 kHz |
| Channels | 4 | 4 | 4 | 2–4 |
| Encoder support | No | Yes | Yes | Rarely |
| Update rate | 10–100 Hz (adjustable) | 100 Hz (fixed) | 100 Hz | Variable |
| Input isolation | 1500V | 2500V | 1500V | 500–1000V |
| Loss-of-signal detect | Yes | Yes | Yes | Rarely |
| Temp range | –30°C to +70°C | –40°C to +85°C | –30°C to +70°C | 0°C to +60°C |
| Primary use | Precision speed/flow | Multi-purpose counting | Multi-purpose counting | General counting |
Selection Tips
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Precision frequency measurement needed – choose the DS3800XCJB when you require high-accuracy frequency data for speed control or flow measurement (e.g., turbine governing, fuel flow totalization).
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Slow-speed monitoring – if your application includes low-speed shafts (turning gear, slow roll), the 0.1 Hz lower limit of the General Electric DS3800XCJB is ideal.
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Not for encoders – the DS3800XCJB does not support quadrature encoders. If you need position feedback, use the DS3800XCIA or DS3800XCIB series instead.
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Firmware compatibility – confirm your Mark IV main processor firmware supports the frequency measurement data format of the DS3800XCJB; older versions may require configuration changes.
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Spare strategy – keep one DS3800XCJB per 5 installed units, especially in applications where precision speed control or flow measurement is critical.
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Calibration – although factory-calibrated, verify frequency accuracy using a precision signal generator during commissioning.
Critical Precautions
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Input voltage limits – never apply voltage above 30V to the DS3800XCJB inputs; magnetic pickups can generate high voltages at high speeds – use appropriate attenuation.
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Cable shielding – use shielded twisted-pair cables for all inputs to the DS3800XCJB. Ground the shield only at the board end to prevent ground loops.
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Sensor compatibility – verify that the General Electric DS3800XCJB input impedance and trigger thresholds match your specific sensors; some magnetic pickups may require external conditioning.
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Update rate selection – do not set the update rate too high if the input frequency is low; this can cause measurement instability. As a rule, update rate should be ≥ 10× the input frequency.
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Period averaging – understand that the DS3800XCJB measures frequency by averaging the period over multiple cycles. Rapid frequency changes may be smoothed; adjust update rate accordingly.
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Grounding – ensure a single-point ground for all field devices connected to the DS3800XCJB to avoid ground-loop noise.
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Hot-swap – never insert or remove the DS3800XCJB while the rack is powered; this can cause measurement errors or damage.
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ESD handling – always use a grounded wrist strap when handling the DS3800XCJB; sensitive input stages can be damaged by static discharge.
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Storage – store spare DS3800XCJB boards in anti-static bags in a dry, temperature-controlled environment to prevent connector corrosion.

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