Tutto sui PLC: la CPU
A practical engineering guide to PLC CPU operation, from deterministic scan cycles and I/O image tables to memory, communications, diagnostics, redundancy, processor sizing, and reliable system...
Managing field-level discrete switching signals within the Experion PKS architecture is the primary function of the Honeywell CC-TDOR01. This Series C Digital Output Relay Input Output Termination Assembly (IOTA) interfaces controller-level logic with physical field relays, providing robust galvanic isolation and signal replication. Engineered for heavy industrial deployments, the module facilitates reliable command execution from the control processor to field-level actuators, indicator lamps, and solenoid valves while protecting internal system electronics from external electrical transients.
| Parameter | Specification Value |
|---|---|
| Manufacturer | Honeywell |
| Model Number | CC-TDOR01 |
| Series Name | Experion Series C |
| Module Type | Digital Output Relay IOTA |
| Number of Channels | 16 Channels |
| Channel Configuration | Non-Redundant |
| Nominal Output Voltage | 24 VDC |
| Connection Style | Compression Screw Terminals |
| Operating Temperature | 0 to 60 degC |
| Storage Temperature | -40 to 85 degC |
| Relative Humidity | 5% to 95% RH (non-condensing) |
| Shipping Weight (Calculated) | 5.0 kg |
The Honeywell CC-TDOR01 is a non-redundant, 16-channel Digital Output Relay IOTA. It is designed to work in conjunction with the CC-PDOB01 Digital Output 24V module. In applications requiring full system redundancy, engineering systems should specify the CC-TDOR11 IOTA, which supports redundant DO module pairings. Verify that matching backplanes and termination styles align with structural panel design before hot-swapping control cards.
When switching highly inductive field loads (such as heavy solenoid valves or interposing relays), voltage spikes can occur during contact opening, which degrades relay lifecycle. System engineers must install external suppression devices—such as flyback diodes for DC loads or RC snubbers for AC loads—directly across the field device. This step is critical to prevent contact welding and electromagnetic interference (EMI) within the Series C cabinet.
During initial system commission, ensure field wiring is stripped to 6mm to prevent exposure of bare copper. Ensure that high-voltage power routing does not pass parallel to the low-voltage communication and I/O link cables. Always use shielded, twisted-pair cabling for field signals that cross electrically noisy environments, grounding the shield strictly at the panel-entry grounding bar and not at both ends to avoid ground loops.
CRITICAL WARNING
Risk of electric shock and equipment damage. Ensure all control power and field power loops connected to the IOTA are fully de-energized, locked out, and tagged out before mounting, wiring, or servicing the assembly.
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Returns & Warranty

Managing field-level discrete switching signals within the Experion PKS architecture is the primary function of the Honeywell CC-TDOR01. This Series C Digital Output Relay Input Output Termination Assembly (IOTA) interfaces controller-level logic with physical field relays, providing robust galvanic isolation and signal replication. Engineered for heavy industrial deployments, the module facilitates reliable command execution from the control processor to field-level actuators, indicator lamps, and solenoid valves while protecting internal system electronics from external electrical transients.
| Parameter | Specification Value |
|---|---|
| Manufacturer | Honeywell |
| Model Number | CC-TDOR01 |
| Series Name | Experion Series C |
| Module Type | Digital Output Relay IOTA |
| Number of Channels | 16 Channels |
| Channel Configuration | Non-Redundant |
| Nominal Output Voltage | 24 VDC |
| Connection Style | Compression Screw Terminals |
| Operating Temperature | 0 to 60 degC |
| Storage Temperature | -40 to 85 degC |
| Relative Humidity | 5% to 95% RH (non-condensing) |
| Shipping Weight (Calculated) | 5.0 kg |
The Honeywell CC-TDOR01 is a non-redundant, 16-channel Digital Output Relay IOTA. It is designed to work in conjunction with the CC-PDOB01 Digital Output 24V module. In applications requiring full system redundancy, engineering systems should specify the CC-TDOR11 IOTA, which supports redundant DO module pairings. Verify that matching backplanes and termination styles align with structural panel design before hot-swapping control cards.
When switching highly inductive field loads (such as heavy solenoid valves or interposing relays), voltage spikes can occur during contact opening, which degrades relay lifecycle. System engineers must install external suppression devices—such as flyback diodes for DC loads or RC snubbers for AC loads—directly across the field device. This step is critical to prevent contact welding and electromagnetic interference (EMI) within the Series C cabinet.
During initial system commission, ensure field wiring is stripped to 6mm to prevent exposure of bare copper. Ensure that high-voltage power routing does not pass parallel to the low-voltage communication and I/O link cables. Always use shielded, twisted-pair cabling for field signals that cross electrically noisy environments, grounding the shield strictly at the panel-entry grounding bar and not at both ends to avoid ground loops.
CRITICAL WARNING
Risk of electric shock and equipment damage. Ensure all control power and field power loops connected to the IOTA are fully de-energized, locked out, and tagged out before mounting, wiring, or servicing the assembly.
Global Express Shipping
Returns & Warranty
Orders are processed and delivered Monday-Friday (excluding public holidays).
For full eligibility, restocking fees, and international return details, please view our official Refund & Return Policy .
| Country of origin |
United States
|