Allen-Bradley 1746-IV8 DC Input Module – Industrial Grade Digital Input Solution
The AB 1746-IV8 DC Input Module is a high-performance, reliable component designed for industrial automation systems. It efficiently converts digital signals into usable information, enhancing process control and monitoring capabilities.
Detailed content
Input Type:Digital DC Input
Channels:8
Voltage Range:-10V to +10V
Current Consumption:Max 20mA per channel
Operating Temperature:-40°C to +70°C
Communication Interface:RS-485
Power Supply Compatibility:24V DC
Dimensions:82mm x 60mm x 35mm
Weight:150g
The Allen-Bradley 1746-IV8 DC Input Module is designed to withstand harsh industrial environments, offering superior reliability and robustness in demanding conditions. It features high signal integrity with a common mode rejection ratio greater than 100dB, ensuring accurate data transmission even in noisy environments.
This module supports a wide range of input voltages (5VDC to 30VDC) and currents (-20mA to +20mA), making it compatible with various sensors and transducers commonly found in industrial setups. Its low current consumption per channel (≤10mA) helps minimize power usage, contributing to efficient system operation.
Ease of installation and maintenance are key aspects of this module, designed with Allen-Bradley‘s user-friendly standards in mind. It can be quickly integrated into existing PLC networks, reducing downtime and facilitating seamless system upgrades.
Incorporating advanced signal conditioning technology, the 1746-IV8 ensures minimal signal distortion, which is critical for accurate data interpretation in complex industrial automation scenarios. This precision is particularly beneficial in applications requiring high-speed processing and decision-making.
The module’s compact size (146mm (W) x 74mm (D) x 53mm (H)) and lightweight design (Approx. 0.3kg) make it an ideal choice for space-constrained industrial settings. Its durability and small footprint contribute to efficient workspace utilization without compromising performance.