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Omron C200H C200H-TS002

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C200H-TS002

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The Omron C200H-TS002 functions as a temperature sensor unit within the C200H series. It accommodates special I/O unit applications, utilizing thermocouples of types K(CA) or L(Fe-CuNi).

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Technical specifications for C200H-TS002

ManufacturerOmron
Product LineC200H
Part NumberC200H-TS002
Weight0.94 lbs (0.43 kg)
DeviceTemperature Sensor Unit
ClassSpecial I/O Units
Main ComponentThermocouple (K(CA) or L(Fe-CuNi))
Operating MethodSwitchable
External Inputs4 inputs maximum
Output Code for PC4-digit BCD
Conversion Time1.2 seconds max. per point
Terminal ConnectionRemovable terminal block
Internal Power Supply Ratings450 mA maximum at 5V DC

The C200H-TS002 by Omron operates as a specialized temperature sensor unit designed for precise temperature measurement applications. This model integrates easily into systems that require additional I/O capabilities and utilizes thermocouples of either type K(CA) or type L(Fe-CuNi). A unique feature of this sensor is its switchable operating method, which allows the user to adapt its functionality according to specific requirements.

This temperature sensor unit is equipped to support a maximum of four input connections, ensuring that multiple temperature readings can be undertaken simultaneously. Output data from the unit is transmitted in a 4-digit Binary-Coded Decimal (BCD) format, enabling straightforward communication to connected PC systems for data logging or monitoring purposes.

With a conversion time capped at 1.2 seconds per measurement point, this sensor unit offers timely data processing suitable for various applications. The implementation of a removable terminal block facilitates easy installation and maintenance allowing for a simplified workflow when connecting sensor inputs. The internal power requirements are well managed, with a maximum draw of 450 mA at 5V DC.

This compact device boasts dimensions of 35 mm in width, 130 mm in height, and 128 mm in depth, presenting a light structure at only 400 grams. Its design is particularly beneficial in applications where space is limited while still needing reliable temperature measurement and control.