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TermocoppiaOtticaMod.IRt-c.01.jfif

IR thermocouple mod. IRt/c.01

The EXERGEN (U.S.A.) leader in the technology of infrared sensors and in industrial measures of temperature, proposes a line of thermocouples without contact named IRt/c.
These devices, unique in the world, are self-powered.
They use to supplying thermic energy irradiated from the object on which effect the measure. Infrared thermocouple IRt/c is used diffusely in many industrial process because it permits to realize the continuos thermic monitoring with solutions technically and economically optimal.
These sensors can visualize and measure temperatures of very little marks with fields of measure included between -45 °C and over +2.000 °C.

IR thermocouple mod. IRt/c.01

TermocoppiaOtticaMod.IRt-c.01.jfif
The EXERGEN (U.S.A.) leader in the technology of infrared sensors and in industrial measures of temperature, proposes a line of thermocouples without contact named IRt/c.
These devices, unique in the world, are self-powered.
They use to supplying thermic energy irradiated from the object on which effect the measure. Infrared thermocouple IRt/c is used diffusely in many industrial process because it permits to realize the continuos thermic monitoring with solutions technically and economically optimal.
These sensors can visualize and measure temperatures of very little marks with fields of measure included between -45 °C and over +2.000 °C.
TermocoppiaOtticaMod.MicroIRt-c.4SV.jfif

IR thermocouple mod. microIRt/c.4SV

The EXERGEN (U.S.A.) leader in the technology of infrared sensors and in industrial measures of temperature, proposes a line of thermocouples without contact named IRt/c.
These devices, unique in the world, are self-powered.
They use to supplying thermic energy irradiated from the object on which effect the measure.
Infrared thermocouple IRt/c is used diffusely in many industrial process because it permits to realize the continuos thermic monitoring with solutions technically and economically optimal.
These sensors can visualize and measure temperatures of very little marks with fields of measure included between -45 °C and over +2.000 °C.

IR thermocouple mod. microIRt/c.4SV

TermocoppiaOtticaMod.MicroIRt-c.4SV.jfif
The EXERGEN (U.S.A.) leader in the technology of infrared sensors and in industrial measures of temperature, proposes a line of thermocouples without contact named IRt/c.
These devices, unique in the world, are self-powered.
They use to supplying thermic energy irradiated from the object on which effect the measure.
Infrared thermocouple IRt/c is used diffusely in many industrial process because it permits to realize the continuos thermic monitoring with solutions technically and economically optimal.
These sensors can visualize and measure temperatures of very little marks with fields of measure included between -45 °C and over +2.000 °C.
TermocoppiaOtticaMod.IRt-c.03.jpg

IR thermocouple mod, IRt/c.03

The EXERGEN (U.S.A.) leader in the technology of infrared sensors and in industrial measures of temperature, proposes a line of thermocouples without contact named IRt/c.
These devices, unique in the world, are self-powered.
They use to supplying thermic energy irradiated from the object on which effect the measure.
Infrared thermocouple IRt/c is used diffusely in many industrial process because it permits to realize the continuos thermic monitoring with solutions technically and economically optimal.
These sensors can visualize and measure temperatures of very little marks with fields of measure included between -45 °C and over +2.000 °C.

IR thermocouple mod, IRt/c.03

TermocoppiaOtticaMod.IRt-c.03.jpg
The EXERGEN (U.S.A.) leader in the technology of infrared sensors and in industrial measures of temperature, proposes a line of thermocouples without contact named IRt/c.
These devices, unique in the world, are self-powered.
They use to supplying thermic energy irradiated from the object on which effect the measure.
Infrared thermocouple IRt/c is used diffusely in many industrial process because it permits to realize the continuos thermic monitoring with solutions technically and economically optimal.
These sensors can visualize and measure temperatures of very little marks with fields of measure included between -45 °C and over +2.000 °C.
TermocoppiaOtticaMod.IRt-c.1X.jpg

IR thermocouple mod. IRt/c.1X

The EXERGEN (U.S.A.) leader in the technology of infrared sensors and in industrial measures of temperature, proposes a line of thermocouples without contact named IRt/c.
These devices, unique in the world, are self-powered.
They use to supplying thermic energy irradiated from the object on which effect the measure. Infrared thermocouple IRt/c is used diffusely in many industrial process because it permits to realize the continuos thermic monitoring with solutions technically and economically optimal.
These sensors can visualize and measure temperatures of very little marks with fields of measure included between -45 °C and over +2.000 °C.

IR thermocouple mod. IRt/c.1X

TermocoppiaOtticaMod.IRt-c.1X.jpg
The EXERGEN (U.S.A.) leader in the technology of infrared sensors and in industrial measures of temperature, proposes a line of thermocouples without contact named IRt/c.
These devices, unique in the world, are self-powered.
They use to supplying thermic energy irradiated from the object on which effect the measure. Infrared thermocouple IRt/c is used diffusely in many industrial process because it permits to realize the continuos thermic monitoring with solutions technically and economically optimal.
These sensors can visualize and measure temperatures of very little marks with fields of measure included between -45 °C and over +2.000 °C.
TermocoppiaOtticaMod.IRt-c.3X.jpg

IR thermocouple mod. IRt/c.3X

The EXERGEN (U.S.A.) leader in the technology of infrared sensors and in industrial measures of temperature, proposes a line of thermocouples without contact named IRt/c.
These devices, unique in the world, are self-powered.
They use to supplying thermic energy irradiated from the object on which effect the measure.
Infrared thermocouple IRt/c is used diffusely in many industrial process because it permits to realize the continuos thermic monitoring with solutions technically and economically optimal.
These sensors can visualize and measure temperatures of very little marks with fields of measure included between -45 °C and over +2.000 °C.

IR thermocouple mod. IRt/c.3X

TermocoppiaOtticaMod.IRt-c.3X.jpg
The EXERGEN (U.S.A.) leader in the technology of infrared sensors and in industrial measures of temperature, proposes a line of thermocouples without contact named IRt/c.
These devices, unique in the world, are self-powered.
They use to supplying thermic energy irradiated from the object on which effect the measure.
Infrared thermocouple IRt/c is used diffusely in many industrial process because it permits to realize the continuos thermic monitoring with solutions technically and economically optimal.
These sensors can visualize and measure temperatures of very little marks with fields of measure included between -45 °C and over +2.000 °C.
TermocoppiaOtticaMod.IRt-c.3SV.jpg

IR thermocouple mod. IRt/c.3SV

The EXERGEN (U.S.A.) leader in the technology of infrared sensors and in industrial measures of temperature, proposes a line of thermocouples without contact named IRt/c.
These devices, unique in the world, are self-powered.
They use to supplying thermic energy irradiated from the object on which effect the measure. Infrared thermocouple IRt/c is used diffusely in many industrial process because it permits to realize the continuos thermic monitoring with solutions technically and economically optimal.
These sensors can visualize and measure temperatures of very little marks with fields of measure included between -45 °C and over +2.000 °C.

IR thermocouple mod. IRt/c.3SV

TermocoppiaOtticaMod.IRt-c.3SV.jpg
The EXERGEN (U.S.A.) leader in the technology of infrared sensors and in industrial measures of temperature, proposes a line of thermocouples without contact named IRt/c.
These devices, unique in the world, are self-powered.
They use to supplying thermic energy irradiated from the object on which effect the measure. Infrared thermocouple IRt/c is used diffusely in many industrial process because it permits to realize the continuos thermic monitoring with solutions technically and economically optimal.
These sensors can visualize and measure temperatures of very little marks with fields of measure included between -45 °C and over +2.000 °C.
TermocoppiaOtticaMod.IRt-c.5.jpg

IR thermocouple mod. IRt/c.5

The EXERGEN (U.S.A.) leader in the technology of infrared sensors and in industrial measures of temperature, proposes a line of thermocouples without contact named IRt/c.
These devices, unique in the world, are self-powered.
They use to supplying thermic energy irradiated from the object on which effect the measure. Infrared thermocouple IRt/c is used diffusely in many industrial process because it permits to realize the continuos thermic monitoring with solutions technically and economically optimal.
These sensors can visualize and measure temperatures of very little marks with fields of measure included between -45 °C and over +2.000 °C.

IR thermocouple mod. IRt/c.5

TermocoppiaOtticaMod.IRt-c.5.jpg
The EXERGEN (U.S.A.) leader in the technology of infrared sensors and in industrial measures of temperature, proposes a line of thermocouples without contact named IRt/c.
These devices, unique in the world, are self-powered.
They use to supplying thermic energy irradiated from the object on which effect the measure. Infrared thermocouple IRt/c is used diffusely in many industrial process because it permits to realize the continuos thermic monitoring with solutions technically and economically optimal.
These sensors can visualize and measure temperatures of very little marks with fields of measure included between -45 °C and over +2.000 °C.
TermocoppiaOtticaMod.IRt-c.10.jpg

IR thermocouple mod. IRt/c.10

The EXERGEN (U.S.A.) leader in the technology of infrared sensors and in industrial measures of temperature, proposes a line of thermocouples without contact named IRt/c.
These devices, unique in the world, are self-powered.
They use to supplying thermic energy irradiated from the object on which effect the measure. Infrared thermocouple IRt/c.10 is used diffusely in many industrial process because it permits to realize the continuos thermic monitoring with solutions technically and economically optimal.
These sensors can visualize and measure temperatures of very little marks with fields of measure included between -45 °C and over +2.000 °C.

IR thermocouple mod. IRt/c.10

TermocoppiaOtticaMod.IRt-c.10.jpg
The EXERGEN (U.S.A.) leader in the technology of infrared sensors and in industrial measures of temperature, proposes a line of thermocouples without contact named IRt/c.
These devices, unique in the world, are self-powered.
They use to supplying thermic energy irradiated from the object on which effect the measure. Infrared thermocouple IRt/c.10 is used diffusely in many industrial process because it permits to realize the continuos thermic monitoring with solutions technically and economically optimal.
These sensors can visualize and measure temperatures of very little marks with fields of measure included between -45 °C and over +2.000 °C.
TermocoppiaOtticaMod.MicroIRt-c.10.jpg

IR thermocouple mod. micro IRt/c

The EXERGEN (U.S.A.) leader in the technology of infrared sensors and in industrial measures of temperature, proposes a line of thermocouples without contact named IRt/c.
These devices, unique in the world, are self-powered.
They use to supplying thermic energy irradiated from the object on which effect the measure. Infrared thermocouple micro IRt/c is used diffusely in many industrial process because it permits to realize the continuos thermic monitoring with solutions technically and economically optimal.
These sensors can visualize and measure temperatures of very little marks with fields of measure included between -45 °C and over +2.000 °C.

IR thermocouple mod. micro IRt/c

TermocoppiaOtticaMod.MicroIRt-c.10.jpg
The EXERGEN (U.S.A.) leader in the technology of infrared sensors and in industrial measures of temperature, proposes a line of thermocouples without contact named IRt/c.
These devices, unique in the world, are self-powered.
They use to supplying thermic energy irradiated from the object on which effect the measure. Infrared thermocouple micro IRt/c is used diffusely in many industrial process because it permits to realize the continuos thermic monitoring with solutions technically and economically optimal.
These sensors can visualize and measure temperatures of very little marks with fields of measure included between -45 °C and over +2.000 °C.
TermocoppiaOtticaMod.MicroIRt-c.4.jpg

IR thermocouple mod. microIRt/c.4

The EXERGEN (U.S.A.) leader in the technology of infrared sensors and in industrial measures of temperature, proposes a line of thermocouples without contact named IRt/c.
These devices, unique in the world, are self-powered.
They use to supplying thermic energy irradiated from the object on which effect the measure. Infrared thermocouple IRt/c is used diffusely in many industrial process because it permits to realize the continuos thermic monitoring with solutions technically and economically optimal.
These sensors can visualize and measure temperatures of very little marks with fields of measure included between -45 °C and over +2.000 °C.

IR thermocouple mod. microIRt/c.4

TermocoppiaOtticaMod.MicroIRt-c.4.jpg
The EXERGEN (U.S.A.) leader in the technology of infrared sensors and in industrial measures of temperature, proposes a line of thermocouples without contact named IRt/c.
These devices, unique in the world, are self-powered.
They use to supplying thermic energy irradiated from the object on which effect the measure. Infrared thermocouple IRt/c is used diffusely in many industrial process because it permits to realize the continuos thermic monitoring with solutions technically and economically optimal.
These sensors can visualize and measure temperatures of very little marks with fields of measure included between -45 °C and over +2.000 °C.