Honeywell CC-TAIM01 51305959-175 IOTA Series Analog Input Multiplexer Module
Configured for high-channel low-level signal acquisition in IOTA platforms, the Honeywell CC-TAIM01 51305959-175 (CC-TAIM01 Analog Input Multiplexer Module) provides direct physical/electrical execution for 64 isolated sensor channels.
Hardware Specifications
| Parameter | Specification |
|---|---|
| Model | CC-TAIM01 |
| Brand | Honeywell |
| Origin | USA |
| Weight | 0.56 kg |
| Dimensions | 313 mm x 278 mm x 30 mm |
| Operating Temp | 0 deg C to +60 deg C |
| Power Consumption | 5 W |
| Part Number | 51305959-175 |
| Product Series | IOTA Series / Series C Platform |
| Number of Channels | 64 Fully Isolated Analog Inputs |
| Scan Rate | Up to 64 channels per second |
| Input Signal Types | Low-Level Analog (mV/V, Thermocouple, RTD) |
| Isolation Type | Channel-to-channel and channel-to-system isolation |
Channel-to-Channel Isolation & DCS Flame Loop Signal Interfacing
The Honeywell CC-TAIM01 51305959-175 multiplexer incorporates channel-to-channel isolation barriers across all 64 input paths to suppress common-mode electrical noise and prevent stray ground loops. Designed for integration within Honeywell DCS platforms, the assembly digitizes low-level millivolt, RTD, and thermocouple signals prior to backplane transmission. Diagnostic telemetry interfaces directly with 4-20 mA HART loop protocol management networks and primary controller buses. Integrated cold junction compensation (CJC) processing within the IOTA interface stabilizes temperature measurement calculations during ambient panel thermal variations, maintaining conversion linearity across continuous process control loops.
Frequently Asked Questions
Q: Does the CC-TAIM01 support hot-swapping on an active IOTA board?
A: Yes. The module supports live insertion and removal from the Series C IOTA board under system power, provided proper static grounding precautions are taken during replacement.
Q: How does the CC-TAIM01 handle signal isolation across its 64 input channels?
A: The module features galvanic isolation across both channel-to-channel and channel-to-system paths, eliminating crosstalk and protecting internal control electronics from field-side voltage transients.
Q: What input signal ranges are compatible with the CC-TAIM01 multiplexer?
A: The module processes low-level analog signals including millivolt sources, VDC inputs, RTD sensors, and thermocouple transducers across its high-density backplane connector.
Field Installation Guidelines
Mount the CC-TAIM01 module into its dedicated slot on the Series C IOTA backplane assembly inside a protective panel enclosure. Ensure the card guide channels are aligned before applying firm pressure to seat the multi-pin high-density connector.
Connect low-level transducer wiring using individually shielded twisted-pair cables terminated at the corresponding IOTA field wiring blocks. Route sensor lead cables in separate metallic conduits, keeping them isolated from high-voltage AC lines, ignition leads, and motor power wiring. Earth the cable shield drain wires at the single point panel ground terminal, maintaining ground grid loop resistance below 1 ohm.
Honeywell CC-TAIM01 51305959-175 IOTA Series Analog Input Multiplexer Module
Honeywell CC-TAIM01 51305959-175 IOTA Series Analog Input Multiplexer Module
Configured for high-channel low-level signal acquisition in IOTA platforms, the Honeywell CC-TAIM01 51305959-175 (CC-TAIM01 Analog Input Multiplexer Module) provides direct physical/electrical execution for 64 isolated sensor channels.
Hardware Specifications
| Parameter | Specification |
|---|---|
| Model | CC-TAIM01 |
| Brand | Honeywell |
| Origin | USA |
| Weight | 0.56 kg |
| Dimensions | 313 mm x 278 mm x 30 mm |
| Operating Temp | 0 deg C to +60 deg C |
| Power Consumption | 5 W |
| Part Number | 51305959-175 |
| Product Series | IOTA Series / Series C Platform |
| Number of Channels | 64 Fully Isolated Analog Inputs |
| Scan Rate | Up to 64 channels per second |
| Input Signal Types | Low-Level Analog (mV/V, Thermocouple, RTD) |
| Isolation Type | Channel-to-channel and channel-to-system isolation |
Channel-to-Channel Isolation & DCS Flame Loop Signal Interfacing
The Honeywell CC-TAIM01 51305959-175 multiplexer incorporates channel-to-channel isolation barriers across all 64 input paths to suppress common-mode electrical noise and prevent stray ground loops. Designed for integration within Honeywell DCS platforms, the assembly digitizes low-level millivolt, RTD, and thermocouple signals prior to backplane transmission. Diagnostic telemetry interfaces directly with 4-20 mA HART loop protocol management networks and primary controller buses. Integrated cold junction compensation (CJC) processing within the IOTA interface stabilizes temperature measurement calculations during ambient panel thermal variations, maintaining conversion linearity across continuous process control loops.
Frequently Asked Questions
Q: Does the CC-TAIM01 support hot-swapping on an active IOTA board?
A: Yes. The module supports live insertion and removal from the Series C IOTA board under system power, provided proper static grounding precautions are taken during replacement.
Q: How does the CC-TAIM01 handle signal isolation across its 64 input channels?
A: The module features galvanic isolation across both channel-to-channel and channel-to-system paths, eliminating crosstalk and protecting internal control electronics from field-side voltage transients.
Q: What input signal ranges are compatible with the CC-TAIM01 multiplexer?
A: The module processes low-level analog signals including millivolt sources, VDC inputs, RTD sensors, and thermocouple transducers across its high-density backplane connector.
Field Installation Guidelines
Mount the CC-TAIM01 module into its dedicated slot on the Series C IOTA backplane assembly inside a protective panel enclosure. Ensure the card guide channels are aligned before applying firm pressure to seat the multi-pin high-density connector.
Connect low-level transducer wiring using individually shielded twisted-pair cables terminated at the corresponding IOTA field wiring blocks. Route sensor lead cables in separate metallic conduits, keeping them isolated from high-voltage AC lines, ignition leads, and motor power wiring. Earth the cable shield drain wires at the single point panel ground terminal, maintaining ground grid loop resistance below 1 ohm.
