Module Type:Thermocouple/mV Input
Model Number:3HNA026293-001
Manufacturer:ABB
Operating Temperature Range:-20°C to +85°C
Input Resistance Range:0 to 10 kΩ
Supply Voltage:DC 12V to 24V
Current Consumption:Max 20mA
Output Signal:Standard mV
Number of Channels:2
Dimensions (LxWxH):90mm x 50mm x 30mm
Weight:0.05kg
Connection Type:2-wire, 4-wire
Protocol Compatibility:Modbus RTU, DeviceNet
Introducing the ABB PDB-02 3HNA026293-001 Thermocouple/mV Input Module, a reliable solution for temperature data acquisition in industrial settings. Designed with precision and durability, this module ensures seamless integration with a wide range of temperature sensors, delivering accurate readings within a broad operating temperature range of -20°C to +85°C.
Featuring two independent input channels, each capable of handling different types of thermocouples or voltage signals, this module offers unmatched flexibility in industrial automation systems. The module supports both 2-wire and 4-wire connection types, ensuring compatibility with various sensor configurations.
With a supply voltage range of 12V to 24V DC and a maximum current consumption of 20mA, the PDB-02 3HNA026293-001 is engineered to operate efficiently under varying conditions. Its compact size, measuring 90mm x 50mm x 30mm, makes it suitable for space-constrained environments without compromising performance.
Built with high-quality materials, this module is designed to withstand harsh industrial environments, offering exceptional reliability and longevity. The standard mV output signal is compatible with most industrial control systems, making it an ideal choice for applications requiring precise temperature measurement and control.
Compliant with Modbus RTU and DeviceNet protocols, the ABB PDB-02 3HNA026293-001 ensures seamless communication with other devices in your network, streamlining integration and enhancing system efficiency. Whether you’re managing temperature in a chemical plant, manufacturing line, or HVAC systems, this module provides the precision and reliability needed for optimal operation.
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