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Haryt kody:1794-IR8
Allen-Bradley 1794-IR8 Flex I/O 8-Channel RTD Input Module
Manufacturer: Allen-Bradley
Product No.: 1794-IR8
Product Type: Input Module
Product Origin: USA
Payment:T/T, Western Union
Weight: 90g
Shipping port: Xiamen
Warranty: 12 months
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Product Overview
The 1794-IR8 is an authentic, high-precision Resistance Temperature Detector (RTD) Input Module from Allen-Bradley’s trusted Flex I/O distributed hardware line. Actively converting low-amplitude resistance variations into digitized data arrays, this module features 8 independent input channels designed to interface with various Platinum, Nickel, and Copper RTD sensors. Engineered with a compact, ultra-lightweight industrial chassis weighing approximately 0.2 lbs (approx. 90 grams), this modular DIN-rail component allows industrial teams to mount localized I/O nodes close to processing machinery, lowering wiring runs while maintaining excellent noise rejection without adding substantial structural load to the control panel.
Core Technical Advantages
- High-Resolution Digital Conversion: Utilizes a 16-bit analog-to-digital converter spanning a nominal resistance scale of 1 to 433 Ohms, ensuring exceptional precision for tracking minute temperature shifts.
- Dual Performance Optimization Layouts: Supports standard "Normal Mode" execution offering a full-scale accuracy of ±0.05%, or a software-selectable "Enhanced Mode" that tightens operational tolerances to a typical variance of ±0.01%.
- Broad Sensor Interfacing Capability: Programmatically matches multiple industrial sensor profiles including standard 100, 200, and 500 Ohm Platinum curves (Euro/U.S. coefficients), high-sensitivity Nickel variants, and 10 Ohm Copper sensors.
Technical Specifications
| Parameter Attribute | Factory Specification Data |
|---|---|
| Brand / Manufacturer | Allen-Bradley / Rockwell Automation |
| Product Model / SKU | 1794-IR8 |
| Product Series | Flex I/O Platform |
| Total Active Inputs | 8 Independent RTD Channels |
| Nominal Resistance Bounds | 1 to 433 Ohms (Max resolution capability at 435 Ohms) |
| Constant Excitation Current | 718.36 µA |
| Noise Filtering Capacity | -60 dB attenuation baseline at 60 Hz (Normal Mode) |
| Max Power / Thermal Burden | 31.2V DC Max Input | 3W Power Dissipation | 10.2 BTU/hr Heat |
| Flexbus Current Draw | 20 mA maximum consumption |
| Galvanic Isolation Barrier | 850 Volts DC sustained isolation rating |
| Net Module Weight | Approx. 0.2 lbs (0.09 kg) (Excluding terminal base assembly) |
| Mechanical Installation | 35mm DIN Rail Mount | Vibration rating: 5g @ 10 to 500 Hz |
| Operating Ambient Range | 0 to 55°C (32 to 131°F) | Storage: -40 to 85°C |
Installation & Field Wiring Guide
- Terminal Base Compatibility & Mounting: The 1794-IR8 module snaps directly into designated Flex I/O terminal base assemblies (such as the 1794-TB3 or 1794-TB3S). Because the module itself features a light, compact body weight of only 0.2 lbs, multiple units can be safely stacked on standard 35mm DIN rails without risking mechanical sag or strain on the enclosure backplate.
- System Throughput Expectations: In Normal Mode, scanning a single active channel takes 325 ms, while running all 8 channels requires 2.6 seconds. If your code selects Enhanced Mode, the default scan interval scales up to 2.925 seconds for all 8 paths. Ensure your control logic loop timers account for these conversion windows.
- Shield Termination Best Practices: To protect low-level signal paths against high-frequency electromagnetic interference, use twisted-pair shielded field cables. Connect the cable shield layers to the designated ground terminals on the Flex I/O base assembly, ensuring they are grounded at one end only.
Engineering Reliability Matrix
- Galvanic Loop Protection: Features a robust 850V DC isolation barrier that separates field-side sensor loops from internal Flexbus logic components, preventing catastrophic electrical back-feeding.
- Vibration-Proof Hardware Latching: Despite its sub-fractional 0.2 lbs net weight, the rugged integrated retention mechanism is officially rated to withstand sustained mechanical vibration profiles up to 5g at frequencies between 10 and 500 Hz, making it suitable for mounting on heavy industrial engine frames or manufacturing skids.
Technical FAQs
Q1: What does the 718.36 µA excitation current specification mean for my sensor choice?
A1: This value represents the internal constant current the module injects across the RTD element to calculate resistance. This current level is optimized to minimize self-heating errors in the sensor tip while maintaining an excellent signal-to-noise ratio.
Q2: Can I wire 2-wire, 3-wire, or 4-wire RTDs to the 1794-IR8 module?
A2: The module provides excellent lead-wire resistance compensation when paired with standard 3-wire or 4-wire configurations. While 2-wire sensors can be connected by adding physical jumper wires at the terminal base block, they lack line resistance compensation and may introduce ambient offset drift.
Q3: What causes a channel fault or broken-wire state to report in the PLC controller tags?
A3: The 1794-IR8 features integrated diagnostic logic that monitors field loop continuity. If an field cable breaks, a sensor element fails, or the measured resistance exceeds the 435-Ohm threshold, the channel sets its high-range fault bit to protect downstream automated logic.
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