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Omron CJ1 CJ1W-MD261

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CJ1W-MD261

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The CJ1W-MD261 is an I/O module designed for use within Omron's CJ1 series. This module features 16 outputs and 16 inputs, operating on a rated voltage of 24 V DC, suitable for various industrial applications.

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Technical specifications for CJ1W-MD261

ManufacturerOmron
Product TypeI/O module
Product LineCJ1
Part NumberCJ1W-MD261
Weight0.31 lbs (0.14 kg)
Output TypeTransistor outputs (sinking)
Rated Output Voltage24 V DC
Rated Output Current0.3 A per output, 3.2 A per unit
Maximum Output Leakage Current0.1 mA
Maximum Output ON Response Time0.5 ms
Input TypeDC inputs
Operating Temperature-10 to +55 °C
Storage Temperature-25 to +65 °C
Humidity35% to 85% (non-condensing)
Rated Input Voltage24 V DC
Typical Input Current4.1 mA at 24V DC
Total I/O16 outputs and 16 inputs

Omron's CJ1W-MD261 I/O module offers a robust interface for controlling devices and collecting input signals in automated systems. It supplies a rated output voltage of 24 V DC, with each output channel capable of delivering a current of 0.3 A, and the total current rating per unit reaching 3.2 A.

For effective performance, this module includes transistor outputs configured for sinking applications. Its maximum output leakage current is restricted to 0.1 mA, ensuring minimal wasted energy and proper signal integrity. The module boasts a maximum ON response time of just 0.5 milliseconds, allowing fast reactions to control signals, which can be critical in time-sensitive applications.

Designed to handle DC inputs, this I/O module features a rated input voltage of 24 V DC and typically uses 4.1 mA of input current at this voltage level. It contains a balanced total of 16 outputs alongside 16 inputs, making it well-suited for numerous interfacing tasks. Operating conditions are flexible, as the module withstands ambient temperatures ranging from -10 to +55 °C. Storage capabilities extend from -25 to +65 °C, allowing for a variety of working environments. It also supports humidity levels from 35% to 85% without condensation, enhancing its longevity and reliability in diverse settings.