In industrial process control, inaccurate analog signal acquisition often leads to flawed production parameter monitoring and unqualified products. Are you troubled by finding an analog input module that is fully compatible with the Rockwell 1769 series and ensures stable signal transmission?

✅ Perfect Compatibility with Rockwell 1769 Series Controllers
The 1769-IF4I analog input module is exclusively developed for the 1769 series. It realizes plug-and-play integration without additional configuration, avoiding signal loss or system conflicts caused by incompatible modules. It is the optimal matching choice for 1769 series control systems.

✅ High-Precision Signal Acquisition Ensures Control Accuracy
With a conversion accuracy of ±0.1% of full scale, the module accurately acquires 4-20mA/0-10V analog signals. The sampling rate reaches 100 samples/s per channel, realizing real-time and accurate capture of process parameters. It effectively avoids production deviations caused by signal distortion.

✅ Strong Anti-Interference Ability Adapts to Harsh Scenarios
Equipped with advanced electromagnetic shielding technology, the 1769-IF4I reaches EN 55011 Class A anti-interference level, enabling stable operation near high-noise equipment like frequency converters. Its wide operating temperature range further adapts to diverse harsh industrial environments.

✅ Core Technical Parameters of 1769-IF4I (with Application Notes)
- Input Signal Type: 4-20mA / 0-10V Analog Signal (suitable for most industrial sensors like temperature, pressure, flow sensors)
- Conversion Accuracy: ±0.1% of Full Scale (ensures high-precision monitoring of key production parameters)
- Sampling Rate: 100 Samples/s per Channel (real-time capture of dynamic process changes, no signal delay)
- Operating Temperature Range: -40°C to 70°C (adapts to low-temperature workshops and high-heat industrial environments)
- Anti-Interference Level: EN 55011 Class A (stable operation near frequency converters, motors and other high-noise equipment)
- Certifications: CE, UL, RoHS (meets European and American industrial quality and environmental protection standards)
- Installation Time: ≤10 Minutes (plug-and-play design, no professional programming required)
- Model: 1769-IF4I (exclusive matching for Rockwell 1769 series controllers)
✅ Practical Case: Stable Application in Chemical Process Monitoring
A European fine chemical plant specializing in pharmaceutical intermediate production once suffered from 12% product unqualified rate due to inaccurate temperature (±2℃ deviation) and pressure (±5% deviation) signal acquisition of the 1769 series system. After replacing with 1769-IF4I, the signal acquisition deviation was reduced to ±0.2℃ (temperature) and ±0.5% (pressure), the product qualification rate soared from 88% to 97.6%, and the production raw material waste was reduced by 22%, saving about 80,000 Euros in annual costs.

✅ Strict Quality Control & International Certification
Each 1769-IF4I undergoes 72-hour continuous operation testing and 12 environmental reliability tests before shipment, fully meeting the quality and environmental protection requirements of the European and American industrial markets.
✅ User-Friendly Design Lowers Maintenance Costs
The module is equipped with channel-specific status indicators for quick fault location, and its detachable terminal block simplifies wiring and maintenance. No professional programming skills are required for daily use.
✅ 3 Simple Steps to Start Cooperation
Start cooperation in 3 simple steps: Share your industrial monitoring needs and 1769 series configuration; get customized matching and technical solutions; confirm the order for door-to-door delivery. The transparent process saves your procurement cycle.

✅ Contact Us for Exclusive Quotation
For detailed 1769-IF4I product parameters, technical manuals and exclusive quotation offers, please contact us via email: allen@can-electric.com. Mention this article to enjoy a 30-day limited-time preferential quotation! Our professional technical team will reply within 24 hours.