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Allen-Bradley | 1756-IR12 | ControlLogix
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Product Description: Allen-Bradley 1756-IR12
The Allen-Bradley 1756-IR12 is a 12-channel RTD (Resistance Temperature Detector) analog input module designed for use with the ControlLogix system. It is engineered to measure resistance-based temperature signals, supporting a variety of RTD types. The module is ideal for industrial applications requiring accurate and reliable temperature monitoring. Each input channel is individually configurable and offers high- resolution readings, enabling precise control and diagnostics in automated systems.
Key Features
- 12 high-resolution RTD input channels
- Supports 2-wire and 3-wire RTDs
- Compatible with RTD types: Pt100, Pt1000, Ni100, and others
- Individually configurable channels
- Open-circuit detection and diagnostics
- Input filtering for noise reduction
- No external power supply required for sensors
- Requires 1756 chassis and power supply
- Supports integration with Studio 5000 Logix Designer software
Technical Specifications
- Number of Channels: 12
- Input Types: RTD (Pt100, Pt1000, Ni100, etc.)
- Input Resistance Range: Up to 430 ohms
- Resolution: 16-bit (nominal)
- Accuracy: ±0.1% of full scale (depending on sensor and wiring configuration)
- Wire Support: 2-wire and 3-wire
- Update Rate: Programmable
- Isolation: 250V RMS channel-to-backplane
- Operating Temperature: 0°C to 60°C
- Storage Temperature: -40°C to 85°C
- Mounting: 1756 ControlLogix chassis
- Certifications: UL, CE, CSA, ATEX, IECEx
Application Areas
- Precision temperature monitoring
- Batch and continuous process control
- HVAC and thermal management systems
- Food and beverage manufacturing
- Environmental monitoring
- Machine automation requiring multi-zone RTD inputs
Advantages
- High-density RTD input solution in a single module
- Flexible wiring configurations for different RTD types
- Reduces control panel space requirements
- Simplifies integration into large automation platforms
- Enhanced diagnostic and monitoring capabilities for reliable operation