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NiCr-CuNi Type E Constantan Thermocouple Extension Wire for Precise Temperature Measurements
NiCr-CuNi Type E Constantan Thermocouple Extension Wire is known for its high sensitivity and accuracy, particularly in moderate temperature ranges.The positive leg (EP) is made of Ni: Cr ≈ 90:10, while the negative leg (EN) is composed of Cu: Ni ≈ 55%: 45% .Type E thermocouples have a working temperature range of -200°C to 900°C for short-term use and 0°C to 750°C for long-term use. Type E thermocouples have the largest EMF output and highest sensitivity among common types, making them ideal for measuring small temperature changes.They exhibit good stability up to 300°C and possess anti-corrosion properties in humid atmospheres .Atmospheric Conditions: Recommended for use in oxidizing or inert atmospheres, but not suitable for reducing atmospheres or those containing sulfur gases.The positive leg (EP) has a density of 8.5 g/cm³, a melting point of 1427°C, a tensile strength of ≥490 Mpa, and a resistivity of 0.71 μΩ·m. The negative leg (EN) has a density of 8.5 g/cm³, a melting point of 1220°C, a tensile strength of ≥390 Mpa, and a resistivity of 0.50 μΩ·m.Type E thermocouples are used in heating systems like gas burners for ovens, cooling systems such as freezers, engine protection for monitoring temperatures and surface temperatures, and high-temperature control in iron casting . They are also used in scientific laboratories and precision instrumentation due to their high sensitivity and accuracy.This summary encapsulates the essential characteristics and applications of NiCr-CuNi Type E Constantan Thermocouple Extension Wire, highlighting its suitability for a range of industrial and scientific temperature measurement needs.
Color codes of thermocouple ( E type )
Type E thermocouple has the largest EMF output and highest sensitivity, so it is ideal for measuring small temperature change. It also has good stability in the low temperature range up to 300 ℃ , and good property of anti-corrosion in humidity atmosphere. It is recommended for oxidizing or inert atmospheres, but cannot be used directly in reducing atmosphere and atmosphere with sulphur gases.
Thermocouple temperature range and tolerance
Themcouple No. indexing | Compensation wire type | Usag classification | Measuring junction temperature/ ℃ | Standardc EMF value/μV | Presion grade | General grade | ||
Tolerance/μV | Thermal EMF range/μV | Tolerance/μV | Thermal EMF range/μV | |||||
E | EX | G | -25 | -1432 | ±81 | -1351~-1513 | ±138 | -1294~-1570 |
100 | 6319 | 6238~6400 | 6181~6457 | |||||
H | -25 | -1432 | ±81 | -1351~-1513 | ±138 | -1294~-1570 | ||
100 | 6319 | 6238~6400 | 6181~6457 | |||||
200 | 13421 | 13340~13502 | 13283~13559 |
Compensating wire reciprocating resistance
Compensation wire type | Reciprocating Resistance (Ω/m20℃ less than) | ||||
0.2mm² | 0.5mm² | 1.0mm² | 1.5mm² | 2.5mm² | |
EX | 6.25 | 2.5 | 1.25 | 0.83 | 0.5 |
Key Features of NiCr-CuNi (Type E) Constantan Thermocouple Compensating&Extension Wire include:
Applications:
These applications highlight the versatility of Type E thermocouples in both high-temperature industrial processes and precise scientific measurements.