Honeywell CC-TDIL11 Digital Input 24V IOTA Redundant
The Honeywell CC-TDIL11 , also cataloged as the CC-TDIL11 Digital Input 24V IOTA Redundant, operates as a dedicated hardware component for discrete signal termination and redundant input execution within Honeywell Experion PKS C300 systems.
Hardware Specifications
| Parameter | Specification |
|---|---|
| Model | CC-TDIL11 |
| Brand | Honeywell |
| Origin | USA |
| Weight | 2 kg (Shipping Weight) |
| Dimensions | Standard Series C / C300 Redundant Footprint |
| Operating Temp | -40 deg C to +70 deg C |
| Power Consumption | 0.190 A @ 24 VDC |
| Heat Dissipation | 4.220 W |
| Voltage Rating | 24 VDC nominal |
| Redundancy Type | Dual-slot redundant IOTA |
Channel Isolation & Field Loop Diagnostics
The CC-TDIL11 assembly integrates dedicated signal conditioning circuitry providing channel-to-channel isolation between individual discrete input loops and the internal backplane logic. Designed to operate alongside 4-20 mA HART loop protocol lines within multi-tier Experion cabinets, the redundant baseboard filters out high-frequency industrial transients and contact bounce. The dual-mounting architecture supports hitless hardware failover between primary and secondary C300 digital input modules without dropping discrete status scans.
Frequently Asked Questions
Q: Can digital input modules mounted on the CC-TDIL11 be replaced under live power?
A: Yes. The redundant circuitry on the CC-TDIL11 allows either mounted digital input card to be hot-swapped without interrupting field signal processing on the active secondary channel.
Q: What are the thermal and power draw specifications for cabinet heat dissipation calculations?
A: The board draws 0.190 A at 24 VDC nominal and generates a maximum thermal output of 4.220 W under full load.
Field Installation Guidelines
- De-energize all field contact wetting power supplies before securing the CC-TDIL11 baseboard to the cabinet carrier frame.
- Fasten the assembly using standard mounting screws, ensuring metallic contact with the cabinet carrier plate for chassis earth bonding.
- Wire discrete field sensor cables to designated screw terminals, terminating cable shield drain wires directly at the cabinet low-impedance ground bar.
- Maintain a minimum vertical clearance of 50 mm above and below the redundant IOTA to support natural convection and avoid wire duct strain.
Honeywell CC-TDIL11 Digital Input 24V IOTA Redundant
Honeywell CC-TDIL11 Digital Input 24V IOTA Redundant
The Honeywell CC-TDIL11 , also cataloged as the CC-TDIL11 Digital Input 24V IOTA Redundant, operates as a dedicated hardware component for discrete signal termination and redundant input execution within Honeywell Experion PKS C300 systems.
Hardware Specifications
| Parameter | Specification |
|---|---|
| Model | CC-TDIL11 |
| Brand | Honeywell |
| Origin | USA |
| Weight | 2 kg (Shipping Weight) |
| Dimensions | Standard Series C / C300 Redundant Footprint |
| Operating Temp | -40 deg C to +70 deg C |
| Power Consumption | 0.190 A @ 24 VDC |
| Heat Dissipation | 4.220 W |
| Voltage Rating | 24 VDC nominal |
| Redundancy Type | Dual-slot redundant IOTA |
Channel Isolation & Field Loop Diagnostics
The CC-TDIL11 assembly integrates dedicated signal conditioning circuitry providing channel-to-channel isolation between individual discrete input loops and the internal backplane logic. Designed to operate alongside 4-20 mA HART loop protocol lines within multi-tier Experion cabinets, the redundant baseboard filters out high-frequency industrial transients and contact bounce. The dual-mounting architecture supports hitless hardware failover between primary and secondary C300 digital input modules without dropping discrete status scans.
Frequently Asked Questions
Q: Can digital input modules mounted on the CC-TDIL11 be replaced under live power?
A: Yes. The redundant circuitry on the CC-TDIL11 allows either mounted digital input card to be hot-swapped without interrupting field signal processing on the active secondary channel.
Q: What are the thermal and power draw specifications for cabinet heat dissipation calculations?
A: The board draws 0.190 A at 24 VDC nominal and generates a maximum thermal output of 4.220 W under full load.
Field Installation Guidelines
- De-energize all field contact wetting power supplies before securing the CC-TDIL11 baseboard to the cabinet carrier frame.
- Fasten the assembly using standard mounting screws, ensuring metallic contact with the cabinet carrier plate for chassis earth bonding.
- Wire discrete field sensor cables to designated screw terminals, terminating cable shield drain wires directly at the cabinet low-impedance ground bar.
- Maintain a minimum vertical clearance of 50 mm above and below the redundant IOTA to support natural convection and avoid wire duct strain.
