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quality Mineral Insulated Metal Sheathed Cable with 2-6 Core Options and High Purity MgO Insulation for 200℃-1000℃ Temperature Range factory

Mineral Insulated Metal Sheathed Cable with 2-6 Core Options and High Purity MgO Insulation for 200℃-1000℃ Temperature Range

Quick Details: Type: K/N/E/J/T/S/R/B Place of Origin: Zhejiang, China (Mainland) Accuracy: I-0.4%t, II-0.75%t, III-1.5%t Core number: 2,3,4,6 Inorganic mineral insulating lead material: Ni, Cu Insulator: 99.6% high purity MgO Certificate:ISO9001, IATF16949, CE Application: connecting with thermocouple and instrument machine Sheath material: 0Cr18Ni10Ti, SS304S,SS316L,SS316, Cu Sheath Dia(mm): 3.0, 4.0, 6.0, 8.0 Type for Sheath Wire Type K: Product Name Code Type Shaeth

quality Fe-Konstantan / Cu-Konstantan Mineral Insulated Metal Sheathed Cable factory

Fe-Konstantan / Cu-Konstantan Mineral Insulated Metal Sheathed Cable

Quick Details: Type: K/N/E/J/T/S/R/B Place of Origin: Zhejiang, China (Mainland) Accuracy: I-0.4%t, II-0.75%t, III-1.5%t Core number: Single / Double Insulator: 99.6% high purity MgO Certificate:ISO9001, IATF16949, CE Application: connecting with thermocouple and instrument machine Conductor material: NiCr-NiSi, NiCrSi-NiSi, NiCr-Konstantan, Fe-Konstantan, Cu-Konstantan Sheath material: Inconel600, 0Cr18Ni10Ti, SS304S,SS316L, SS310,SS316,GH3030, GH3039, GH747 Sheath Dia(mm):

quality Corrosion-Resistant Mineral Insulated Metal Sheathed Cable for Harsh Environments factory

Corrosion-Resistant Mineral Insulated Metal Sheathed Cable for Harsh Environments

Quick Details: Type: K/N/E/J/T/S/R/B Place of Origin: Zhejiang, China (Mainland) Accuracy: I-0.4%t, II-0.75%t, III-1.5%t Core number: 2,3,4,6 Inorganic mineral insulating lead material: Ni, Cu Insulator: 99.6% high purity MgO Certificate: ISO9001, IATF16949, CE Application: connecting with thermocouple and instrument machine Sheath material: 0Cr18Ni10Ti, SS304S,SS316L,SS316, Cu Sheath Dia(mm): 3.0, 4.0, 6.0, 8.0 Type for Sheath Wire Type K: Product Name Code Type Shaeth

quality High-Temperature Mineral Insulated Metal Sheathed Cable for Extreme Heat Environments factory

High-Temperature Mineral Insulated Metal Sheathed Cable for Extreme Heat Environments

Quick Details: Type: K/N/E/J/T/S/R/B Place of Origin: Zhejiang, China (Mainland) Accuracy: I-0.4%t, II-0.75%t, III-1.5%t Core number: 2,3,4,6 Inorganic mineral insulating lead material: Ni, Cu Insulator: 99.6% high purity MgO Type for Sheath Wire Type K: Product Name Code Type Shaeth Material Outside Dia. Temperature NiCr-NiSi /NiCr-NiAl KK K SS304 SS316 0.5-1.0 400 1.5-3.2 600 4.0-8.0 800 SS310 Inconel600 0.5-1.0 500 1.5-3.2 800 4.0-6.4 900 8.0-12.7 1000 NiCrSi-NiSi NK N

quality Colorful Mineral Insulated Metal Sheathed Cable for Easy Identification and Versatile factory

Colorful Mineral Insulated Metal Sheathed Cable for Easy Identification and Versatile

Quick Details: Type: K/N/E/J/T/S/R/B Place of Origin: Zhejiang, China (Mainland) Accuracy: I-0.4%t, II-0.75%t, III-1.5%t Core number: 2,3,4,6 Inorganic mineral insulating lead material: Ni, Cu Insulator: 99.6% high purity MgO Type for Sheath Wire Type K: Product Name Code Type Shaeth Material Outside Dia. Temperature NiCr-NiSi /NiCr-NiAl KK K SS304 SS316 0.5-1.0 400 1.5-3.2 600 4.0-8.0 800 SS310 Inconel600 0.5-1.0 500 1.5-3.2 800 4.0-6.4 900 8.0-12.7 1000 NiCrSi-NiSi NK N

quality Versatile Mineral Insulated Metal Sheathed Cable for K/N/E/J/T/S/R/B Transportation and Logistics factory

Versatile Mineral Insulated Metal Sheathed Cable for K/N/E/J/T/S/R/B Transportation and Logistics

Quick Details: Type: K/N/E/J/T/S/R/B Place of Origin: Zhejiang, China (Mainland) Accuracy: I-0.4%t, II-0.75%t, III-1.5%t Core number: 2,3,4,6 Inorganic mineral insulating lead material: Ni, Cu Insulator: 99.6% high purity MgO Type for Sheath Wire Type K: Product Name Code Type Shaeth Material Outside Dia. Temperature NiCr-NiSi /NiCr-NiAl KK K SS304 SS316 0.5-1.0 400 1.5-3.2 600 4.0-8.0 800 SS310 Inconel600 0.5-1.0 500 1.5-3.2 800 4.0-6.4 900 8.0-12.7 1000 NiCrSi-NiSi NK N

quality Mineral Insulated Copper Cable The Perfect Solution for High Temperature Environments factory

Mineral Insulated Copper Cable The Perfect Solution for High Temperature Environments

Quick Details: Name:LEADKIN Copper Sheath Compensation Cable Mi Cable Type: Cu-CuNi Conductor material: Cu-CuNi Insulator: 99.6% high purity MgO Core number: 2, 4 Sheath material: Copper Dia(mm): 6.0 mm Application: compensation cable for R B S type thermocouple Making sample time: 2 days Type for Copper Cable Product Name Code Type Shaeth Material Outside Dia. Temperature Mi Copper Cable 1*Cu+1*CuNi 6 Copper 6 1100 Information for Copper Cable Dia Type Nominal Conductor Dia

quality Industrial Mineral Insulated Heating Cable with SS304 SS316 Sheath for 200℃-1000℃ High Temperature Process Control and High Purity MgO Insulation factory

Industrial Mineral Insulated Heating Cable with SS304 SS316 Sheath for 200℃-1000℃ High Temperature Process Control and High Purity MgO Insulation

Quick Details: Type: K/N/E/J/T/S/R/B Place of Origin: Zhejiang, China (Mainland) Accuracy: I-0.4%t, II-0.75%t, III-1.5%t Core number: 2,3,4,6 Inorganic mineral insulating lead material: Ni, Cu Insulator: 99.6% high purity MgO Certificate:ISO9001, IATF16949, CE Application: connecting with thermocouple and instrument machine Sheath material: 0Cr18Ni10Ti, SS304S,SS316L,SS316, Cu Sheath Dia(mm): 3.0, 4.0, 6.0, 8.0 Type for Sheath Wire Type K: Product Name Code Type Shaeth

quality Flexible Mineral Insulated RTD Sensor Cable with 99.6% High Purity MgO and SS316 Sheath in 3 to 8 Cores factory

Flexible Mineral Insulated RTD Sensor Cable with 99.6% High Purity MgO and SS316 Sheath in 3 to 8 Cores

An RTD (Resistance Temperature Detector) is a sensor whose resistance changes as its temperature changes. The resistance increases as the temperature of the sensor increases. The resistance vs temperature relationship is well known and is repeatable over time. An RTD is a passive device. It does not produce an output on its own. External electronic devices are used to measure the resistance of the sensor by passing a small electrical current through the sensor to generate a