Thermocouple Extension Wire is widely used in multiple industries and applications. In industrial control systems, it can be used to monitor and control the temperature of kilns, furnaces, boilers and heating equipment. In chemical process engineering, it can be used to monitor the temperature of equipment such as reactors, distillation columns, and storage tanks. In a laboratory environment, it can be used in applications such as scientific research, testing and calibration.
Thermocouple Extension Wire has a wide operating temperature range to accommodate different temperature requirements. At the same time, it also has corrosion resistance, wear resistance and mechanical strength to meet various harsh working environments.
In summary, the Thermocouple Extension Wire is a reliable, stable and accurate cable that provides an important solution for temperature measurement and control. Whether in industrial production sites, laboratories or scientific research fields, it can provide accurate and reliable temperature transmission, helping users achieve precise temperature monitoring and control.
Thermocouple Wire
Code | Wires component of the thermocouple | |
+Positive leg | -Negative leg | |
N | Ni-cr-si (NP) | Ni-si-magnesium (NN) |
K | Ni-Cr (KP) | Ni-Al(Si) (KN) |
E | Ni-Cr (EP) | Cu-Ni<constantan> (EN) |
J | Iron (JP) | Cu-Ni<constantan> (JN) |
T | Copper (TP) | Cu-Ni<constantan> (TN) |
Standards
ASTM | ANSI | IEC | DIN | BS | NF | JIS | GOST |
(American Society for Testing and Materials) E 230 | (American National Standard Institute) MC 96.1 | (European Standard by the International Electrotechnical Commission 584)-1/2/3 | (Deutsche Industrie Normen) EN 60584 -1/2 | (British Standards) 4937.1041, EN 60584 - 1/2 | (Norme Française) EN 60584 -1/2 - NFC 42323 - NFC 42324 | (Japanese Industrial Standards) C 1602 - C 1610 | (Unification of the Russian Specifications) 3044 |
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