Description
Key Parameters
Temperature Section:
-
Input Channels: 8 differential thermocouple/RTD inputs
-
Input Types: Thermocouple (J, K, T, E, R, S, B, N), RTD (Pt100, Ni100), millivolt
-
Resolution: 16-bit ADC with ±0.05% accuracy
-
Cold-Junction Compensation: Enhanced built-in per channel with improved accuracy
-
Diagnostics: Burnout detection, open-circuit detection, over-range/under-range detection, enhanced fault logging (firmware 1B1B) , self-test on power-up
Frequency Transmitter Section:
-
Input Channels: 2 independent frequency input channels
-
Input Types: Magnetic pickup, proximity, TTL (5V), or 24V DC (jumper-selectable)
-
Maximum Input Frequency: 250 kHz
-
Output Types: Analog (4–20mA or 0–10V) or digital (frequency/pulse) output (software-selectable)
-
Output Accuracy: ±0.05% of full scale (analog) or ±0.005% (digital)
-
Output Scaling: Expanded programmable scaling options with improved resolution (1B1B)
-
Transmitter Function: Converts frequency input to scaled analog signal or retransmits frequency for external systems
-
Diagnostics: LED status per channel, input signal loss detection, output fault detection, signal quality monitoring, refined diagnostic detail over 1B1A
Common Section:
-
Isolation: 2500V RMS channel-to-backplane
-
Temp Range: –40°C to +85°C (extended)
-
Power Supply: +5V, ±15V from VME backplane
-
Physical: 6U VME single-slot board
-
Key Features: Combined temperature and frequency transmitter, enhanced CJC, 250 kHz input, expanded scaling with improved resolution, 2500V isolation, self-test, firmware rev 1B1B
Advantages
-
Multi-function capability – the DS3800XTFT1B1B combines temperature measurement and frequency-to-analog/digital conversion in a single slot, reducing board count and rack space requirements.
-
Enhanced cold-junction compensation – improved CJC accuracy with advanced compensation algorithms ensures precise temperature readings across a wider ambient range.
-
Higher frequency capability – supports up to 250 kHz frequency inputs, suitable for high-speed turbine pickups and high-resolution encoders.
-
Improved digital output accuracy – ±0.005% accuracy provides precise frequency retransmission for external systems.
-
Refined output scaling – the 1B1B firmware provides improved scaling resolution and more precise configuration options over the 1B1A variant.
-
Enhanced diagnostics – the General Electric DS3800XTFT1B1B provides refined diagnostic reporting, improved fault logging, self-test on power-up, and signal quality monitoring for predictive maintenance.
-
Burnout detection – automatically detects broken thermocouple wires and flags the channel.
-
Improved isolation – 2500V RMS isolation protects the backplane from field-side noise and transients.
-
Extended temperature range – operates from –40°C to +85°C for harsh environments.
-
Drop-in compatible – works with all Mark IV backplanes and processor configurations.
Applications
-
Turbine EGT and speed transmitter – measures exhaust gas temperature (EGT) and converts turbine speed frequency to a 4–20mA signal for external monitoring systems.
-
Temperature plus flow transmitter – monitors thermocouple or RTD temperatures while converting flowmeter frequency pulses to analog signals for plant DCS.
-
Bearing temperature and speed transmitter – combines bearing RTD inputs with speed pickup frequency-to-analog conversion.
-
High-speed applications – the 250 kHz frequency input capability of the DS3800XTFT1B1B is suitable for high-speed turbines and encoders.
-
Signal conditioning for external systems – provides isolated analog outputs for vibration monitors, speed controllers, or plant historians.
-
Offshore and harsh environments – extended temperature range makes it suitable for demanding applications.
vs Competitors & Previous Variants
| Feature | DS3800XTFT1B1B | DS3800XTFT1B1A | Standard DS3800XTFT | Generic Combo Board |
|---|---|---|---|---|
| Temperature channels | 8 | 8 | 8 | 8 |
| Frequency input channels | 2 | 2 | 2 | 2 |
| Max freq input | 250 kHz | 250 kHz | 100 kHz | 50–100 kHz |
| Digital output accuracy | ±0.005% | ±0.005% | ±0.01% | ±0.05–0.1% |
| Scaling resolution | Improved (1B1B) | Standard | Standard | Limited |
| Diagnostic detail | Refined (1B1B) | Standard | Standard | Basic |
| Fault logging | Enhanced (1B1B) | Enhanced | Standard | No |
| Isolation | 2500V | 2500V | 1500V | 500–1500V |
| Extended temp range | –40°C to +85°C | –40°C to +85°C | –30°C to +70°C | 0°C to +60°C |
| Self-test on power-up | Yes (1B1B) | Yes (1B1A) | No | No |
| Firmware revision | 1B1B | 1B1A | Varies | N/A |
Selection Tips
-
Signal transmission with refined diagnostics – choose the DS3800XTFT1B1B when you need both temperature measurement and frequency-to-analog/digital conversion, combined with the latest firmware for refined diagnostic reporting and improved scaling resolution.
-
High-frequency applications – the 250 kHz capability of the General Electric DS3800XTFT1B1B is suitable for high-speed turbine pickups and high-resolution encoders.
-
Precise scaling – the 1B1B firmware provides improved scaling resolution, making it ideal for applications requiring fine-tuned frequency-to-analog conversion.
-
Slot-limited installations – ideal for compact systems with limited rack slots where both measurement and transmission are required.
-
Harsh environments – the extended temperature range makes it suitable for offshore, desert, or unheated cabinet installations.
-
Output type selection – supports 4–20mA, 0–10V, or digital pulse outputs; verify which output type is required by your external system.
-
Firmware compatibility – confirm your Mark IV main processor firmware supports the enhanced features of the DS3800XTFT1B1B.
-
Spare strategy – keep one DS3800XTFT1B1B per 5–8 installed units, especially in systems where it serves multiple critical functions.
-
Calibration – periodically verify temperature accuracy and frequency-to-output scaling using precision instruments.
Critical Precautions
-
Thermocouple wiring – use the correct extension-grade thermocouple wire (not copper) for temperature inputs to the DS3800XTFT1B1B; incorrect wire types introduce cold-junction errors.
-
Thermocouple polarity – observe correct polarity when connecting thermocouples; reversed polarity produces inverted readings.
-
RTD wiring – use 3-wire or 4-wire RTD connections to cancel lead resistance; 2-wire connections introduce measurement errors.
-
CJC location – the DS3800XTFT1B1B cold-junction compensation measures the temperature at the terminal block. Ensure the terminal block is not exposed to drafts or radiant heat.
-
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.
-
Output load limits – do not exceed the maximum load resistance for 4–20mA outputs (typically 600Ω) or the minimum load resistance for 0–10V outputs (typically 2kΩ) on the General Electric DS3800XTFT1B1B.
-
Cable shielding – use shielded twisted-pair cables for all thermocouple, RTD, frequency inputs, and analog outputs. Ground the shield only at the DS3800XTFT1B1B end to prevent ground loops.
-
Ground loops – use single-point grounding for all sensors and outputs connected to the DS3800XTFT1B1B to avoid ground-loop noise.
-
Output scaling – ensure the scaling parameters (frequency range to output range) are correctly configured in the DS3800XTFT1B1B before commissioning.
-
Self-test – allow the DS3800XTFT1B1B to complete its power-up self-test (~2 seconds) before relying on measurements or outputs.
-
Hot-swap – never insert or remove the DS3800XTFT1B1B while the rack is powered; this can cause bus errors or component damage.
-
ESD handling – always use a grounded wrist strap when handling the DS3800XTFT1B1B; CMOS and precision analog components are ESD-sensitive.
-
Storage – store spare DS3800XTFT1B1B boards in anti-static bags in a dry, temperature-controlled environment.

schneider BMXFTB2010
schneider BMXFTB2820
SIEMENS FDT181


Reviews
There are no reviews yet.