CC-TDIL11 Honeywell Digital Input IOTA Redundant Board
Manufacturer:
Honeywell
Product No.:
CC-TDIL11
Condition:
In Stock
Product Type:
IOTA Redundant Board
Product Origin:
USA
Weight:
600g
Shipping port:
Xiamen
Warranty:
12 months
UBEST – Trusted Global Automation Parts Supplier
We offer a wide range of in-stock industrial automation spare parts. All products come with a 12-month warranty and a 30-day refund for quality issues.
Digital Input 24V IOTA Models CC-TDIL11
Overview
The Series C Digital Input 24V IOTA board provides reliable digital input capabilities, protected by robust internal circuits. It is designed for seamless integration and safe operation in demanding industrial environments.
Technical Specifications
- Input Voltage Range: 18-32 VDC
- Input Channels: 32 digital input channels per module
- Redundancy: Supports dual redundant configurations
- Input Signal Isolation: Optical isolation provided for each channel
- Response Time: Less than 1 millisecond
- Power Consumption: 5 Watts maximum
-
Environmental Conditions:
- Operating Temperature: -40°C to 70°C
- Storage Temperature: -40°C to 85°C
- Humidity: 5% to 95% non-condensing
Parts Information
For detailed parts information, refer to the Digital Input 24V section in the Recommended Spare Parts documentation. This includes information on:
- Module
- IOTA
- Terminal Plug-in Assembly
- Fuses
Field Wiring and Module Protection
The Digital Input 24V module CC-TDIL11 includes advanced protection features for field wiring:
- Internal Protection Circuit: Ensures safety and reliability for field wiring.
- DI Sense Power: Allows for internal or external DI sense power, field selectable using jumper block TB3.
- Short Circuit Protection: Permits protection of input for field short circuits, suitable for Division 2 non-incendive / Zone 2 non-arcing environments.
- Channel Isolation: Each signal can be shorted in the field without damaging the module or board, and other channels on the same IOM are not affected.
- Field Drive Current Limitation: Limits current to prevent damage from input short circuits.

