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The GE IS200TRTDH1CCC, also cataloged as the IS200TRTDH1CCC Temperature Resistance Terminal Device, serves as the primary IS200TRTDH1 RTD Input Terminal Board utilized to execute thermal sensor data acquisition across Mark VI Speedtronic platforms. This printed circuit board functions as the direct physical interface that converts electrical resistance variations from field-mounted RTD sensors into synchronized analog voltage signals for backend processor validation.
| Parameter | Specification |
|---|---|
| Model | IS200TRTDH1CCC |
| Brand | General Electric (GE) |
| Origin | Salem, Virginia, USA |
| Assembly Version | Normal Assembly |
| Revision Quantity | Three-fold revision history (Two functional revisions, one artwork configuration revision) |
| Channel Count | 16 discrete RTD inputs total (8 channels per terminal section layout) |
| Voltage Span Range | 0.3532 to 4.054 V |
| Maximum Lead Resistance | 15 ohms maximum two-way cable loop resistance |
| Supported RTD Sensors | Platinum (10, 100, and 200 ohms); Copper (10 ohms); Nickel (120 ohms) |
| Physical Connection Interface | Two removable terminal blocks with 24 screw connections per block |
| Wiring Framework | 3-wire RTD input configuration |
| Backplane Connectors | Three female 37-pin D-shell cable connectors |
| Interconnect Interface | Dedicated cabling links from TRTD board to VRTD processor card |
| Hardware Style | Conformal PCB coating matrix for environmental isolation |
| Product Series | Mark VI Speedtronic System (Group 1 Product Classification) |
Q: How does the 3-wire configuration on the IS200TRTDH1CCC handle cable lead resistance inaccuracies?
A: The 3-wire RTD interface utilizes the third conductor to measure the active voltage drop across the connection lines. The board's conditioning circuitry subtracts this lead resistance from the total measured resistance value, canceling out thermal calculation offsets caused by long cable runs up to the 15-ohm maximum two-way resistance limit.
Q: What specific functional properties are indicated by the "CCC" suffix code in the part number?
A: The "CCC" suffix identifies the exact hardware modification state of the board. It specifies that this unit has integrated three distinct revision steps—consisting of two physical functional engineering modifications and one layout artwork configuration revision—all manufactured to C-grade industrial specifications by General Electric.

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