Description
Key Parameters
Temperature Section:
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Input Channels: 8 differential thermocouple/RTD inputs
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Input Types: Thermocouple (J, K, T, E, R, S, B, N), RTD (Pt100, Ni100), millivolt
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Resolution: 16-bit ADC with ±0.05% accuracy
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Cold-Junction Compensation: Built-in per channel
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Diagnostics: Burnout detection, open-circuit detection, over-range/under-range detection
Analog Output Section:
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Output Channels: 4 independent analog output channels
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Output Types: 4–20mA or 0–10V (software-selectable per channel)
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Resolution: 12-bit DAC
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Accuracy: ±0.1% of full scale
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Output Drive: 600Ω max for current; 2kΩ min for voltage
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Diagnostics: Output short-circuit detection, over-range detection, LED status per channel
Common Section:
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Isolation: 1500V RMS channel-to-backplane
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Temp Range: –30°C to +70°C
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Power Supply: +5V, ±15V from VME backplane
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Physical: 6U VME single-slot board
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Key Features: Combined temperature and analog output, 16-bit ADC, built-in CJC, burnout detection, 4 analog outputs, 1500V isolation
Advantages
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Multi-function capability – the DS3800XTIA combines temperature measurement and analog output in a single slot, reducing board count and rack space requirements.
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Built-in cold-junction compensation – on-board CJC for thermocouple inputs eliminates the need for external reference junctions.
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Burnout detection – automatically detects broken thermocouple wires and flags the channel.
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Multiple analog outputs – 4 independent analog outputs for control of actuators, valves, or retransmission to external systems.
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Flexible output types – each output can be independently configured for 4–20mA or 0–10V, accommodating different field devices.
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Diagnostic visibility – per-channel LED status and fault detection simplify troubleshooting.
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Isolation – 1500V RMS isolation protects the backplane from field-side noise and transients.
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Drop-in compatible – works with all Mark IV backplanes and processor configurations.
Applications
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Temperature-based control – measures thermocouple or RTD temperatures and generates analog control signals for fuel valves, cooling valves, or bypass actuators.
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EGT and valve positioning – the General Electric DS3800XTIA measures exhaust gas temperature and provides analog outputs for trim control valves.
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Temperature retransmission – sends 4–20mA or 0–10V signals to plant DCS or recorders for temperature monitoring.
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Bearing temperature control – combines bearing RTD inputs with analog outputs for lubrication or cooling control.
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Compact turbine systems – ideal for installations with limited rack slots where both measurement and control are required.
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Retrofits – replaces separate temperature input boards and analog output boards with a single, integrated solution.
vs Competitors & Separate Boards
| Feature | DS3800XTIA | DS3800XTBA (Temp) + DS3800NVOC (AO) | Generic VME Combo Board |
|---|---|---|---|
| Temperature channels | 8 | 16 (XTBA) + 0 | 8 |
| Analog output channels | 4 | 0 + 4 (NVOC) | 2–4 |
| Board count | 1 | 2 | 1 |
| CJC | Built-in | Built-in | External |
| Burnout detection | Yes | Yes | Sometimes |
| Output type config | Per-channel | Per-channel | Fixed |
| Isolation | 1500V | 1500V + 1500V | 500–1500V |
| Temp range | –30°C to +70°C | –30°C to +70°C | 0°C to +60°C |
Selection Tips
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Measurement + control needed – choose the DS3800XTIA when you need both temperature measurement and analog output for control or retransmission in a single slot.
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Slot-limited installations – ideal for compact systems with limited rack slots where both functions are required.
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Application matching – ensure that the 8 temperature channels and 4 analog output channels meet your system’s requirements. For larger systems, consider separate boards.
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Output type selection – the General Electric DS3800XTIA supports 4–20mA or 0–10V outputs; verify the input requirements of your field devices or external systems.
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Sensor compatibility – verify that your thermocouple/RTD types are supported by the DS3800XTIA configuration options.
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Spare strategy – keep one DS3800XTIA per 5–8 installed units, especially in systems where it serves multiple critical functions.
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Calibration – periodically verify temperature accuracy using a precision calibrator and analog output accuracy using a precision multimeter.
Critical Precautions
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Thermocouple wiring – use the correct extension-grade thermocouple wire (not copper) for temperature inputs to the DS3800XTIA; incorrect wire types introduce cold-junction errors.
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Thermocouple polarity – observe correct polarity when connecting thermocouples; reversed polarity produces inverted readings.
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RTD wiring – use 3-wire or 4-wire RTD connections to cancel lead resistance; 2-wire connections introduce measurement errors.
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CJC location – the DS3800XTIA cold-junction compensation measures the temperature at the terminal block. Ensure the terminal block is not exposed to drafts or radiant heat.
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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 DS3800XTIA.
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Output short circuit – while short-circuit protection is present, repeated shorts can degrade output accuracy; clear faults promptly.
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Cable shielding – use shielded twisted-pair cables for all thermocouple, RTD, and analog output connections. Ground the shield only at the DS3800XTIA end to prevent ground loops.
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Ground loops – use single-point grounding for all sensors and outputs connected to the DS3800XTIA to avoid ground-loop noise.
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Hot-swap – never insert or remove the DS3800XTIA while the rack is powered; this can cause bus errors or component damage.
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ESD handling – always use a grounded wrist strap when handling the DS3800XTIA; CMOS and precision analog components are ESD-sensitive.
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Storage – store spare DS3800XTIA boards in anti-static bags in a dry, temperature-controlled environment.

AB 889D-R4ACDE-2
A-B 1756-BA2
AB 889P-F3ABD4E-1


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