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Hailing District Industrial Park, Taizhou City, Jiangsu Province
Taizhou Shuanghua Instrument Co., Ltd
Hailing District Industrial Park, Taizhou City, Jiangsu Province
E division mark precision grade extended typecompensating lead wireExplanation:
Full name:Polyvinyl chloride insulation twisted polyvinyl chloride sheathGenerally, precision grade E-division multi strand thermocouples are used with intrinsically safe compensating cables
Conductor Material: Positive Electrode Red: Nickel Chromium 10Ni-Cr 10 Negative Electrode Brown: Copper Nickel 45Cu Ni
Equipped with thermocouple index number: E (nickel chromium copper nickel) E (NiCr NiSi)
Insulation material: Polyvinyl chloride
Shielding material: None
Sheath Material: Blue PVC Sheath
Polyethylene can be provided as needed(Y)Insulation cross-linked polyethylene(YJ)Insulation compensation cable.
insulation resistance: 100MΩ.km
Voltage test:1000 V/1min
Flame retardant performance: compliant withGB/T18380-2001In the flame retardant standardATheBTheCClass regulations
Thermoelectric potential and tolerance: precision level 8137 ±60(±1.5℃)
E-grade precision grade extended compensating wireIt refers to one or more pairs of insulated wires or cables with the same thermoelectric potential value as the matched thermocouple within a certain temperature range (including room temperature), which are used to connect the thermocouple and the measuring device to compensate for the error caused by temperature changes at the connection point. Compensation wires and cables are divided into two types: extension type and compensation type.
| Normal level: Compensation type | Conductor material: Iron Fe+Copper Nickel 22 Insulation color: Red+Blue Sheath coloring: Black |
| KCA-G-VV | Polyvinyl chloride insulated twisted pair polyvinyl chloride sheath is generally used as a compensating cable for ordinary grade K-index thermocouples |
| KCA-G-VPV | Polyvinyl chloride insulated twisted copper wire braided shielded polyvinyl chloride sheath is generally used for compensating cables for ordinary grade K-index thermocouples |
| KCA-G-VPVP | Polyvinyl chloride insulated twisted copper wire braided partial shielding and total shielding. Polyvinyl chloride sheath is generally used for compensating cables for ordinary grade K-index thermocouples |
| KCA-G-VVP | Polyvinyl chloride insulated twisted copper wire braided total shielding polyvinyl chloride sheath is generally used for compensating cables for ordinary grade K-index thermocouples |
| KCA-H-FF | Fluoroplastic insulated twisted pair fluoroplastic sheathed ordinary grade K-index thermocouple high temperature compensation cable |
| KCA-H-FP1F | Fluoroplastic insulated twisted pair tinned copper wire braided shielded fluoroplastic sheathed ordinary grade K index thermocouple high temperature compensation cable |
| KCA-H-FP1FP1 | Fluoroplastic insulated twisted pair tinned copper wire braided shielding and total shielding fluoroplastic sheathed ordinary grade K index thermocouple high temperature compensation cable |
| KCA-H-FFP1 | Fluoroplastic insulated twisted pair tinned copper wire braided total shielding fluoroplastic sheathed ordinary grade K index thermocouple high temperature compensation cable |
| KCA-H-FV105 | Fluoroplastic insulated twisted pair heat-resistant 105 ℃ polyvinyl chloride sheathed ordinary grade K index thermocouple high temperature compensation cable |
| KCA-H-FP1V105 | Fluoroplastic insulated twisted pair tinned copper wire braided shielded heat-resistant 105 ℃ polyvinyl chloride sheathed ordinary grade K index thermocouple high temperature compensation cable |
| KCA-H-FP1V105P1 | Fluoroplastic insulated twisted pair tinned copper wire braided split screen total shielding heat-resistant 105 ℃ polyvinyl chloride sheathed ordinary grade K index thermocouple high temperature compensation cable |
| KCA-H-FV105P1 | Fluoroplastic insulated twisted pair tinned copper wire braided total shielding heat-resistant 105 ℃ polyvinyl chloride sheathed ordinary grade K index thermocouple high temperature compensation cable |
E-grade precision grade extended compensating wireSpecification inquiry:
| specification | |||
| 1×2×0.5 | 7×2×2.5 | 2×2×1.0 | 5×2×1.0 |
| 1×2×1.0 | 8×2×0.5 | 2×2×1.5 | 5×2×1.5 |
| 1×2×1.5 | 8×2×1.0 | 2×2×2.5 | 10×2×1.5 |
| 1×2×2.5 | 8×2×1.5 | 3×2×0.5 | 10×2×2.5 |
| 5×2×2.5 | 8×2×2.5 | 3×2×1.0 | 12×2×0.5 |
| 6×2×0.5 | 9×2×0.5 | 3×2×1.5 | 12×2×1.0 |
| 6×2×1.0 | 9×2×1.0 | 3×2×2.5 | 12×2×1.5 |
| 6×2×1.5 | 9×2×1.5 | 4×2×0.5 | 12×2×2.5 |
| 6×2×2.5 | 9×2×2.5 | 4×2×1.0 | 14×2×0.5 |
| 7×2×0.5 | 10×2×0.5 | 4×2×1.5 | 14×2×1.0 |
| 7×2×1.0 | 10×2×1.0 | 4×2×2.5 | 14×2×1.5 |
| 7×2×1.5 | 2×2×0.5 | 5×2×0.5 | 14×2×2.5 |
| 16×2×1.5 | 19×2×0.5 | 19×2×1.5 | 16×2×0.5 |
| 16×2×2.5 | 19×2×1.0 | 19×2×2.5 | 16×2×1.0 |
When the conductor is a multi strand soft core, an "R" flame-retardant compensating cable should be added after the prototype number, and an "ZR -" should be added before the prototype number. In the old standard GB4989-85, ordinary grade was represented by B, and precision grade was represented by A. Armored compensation cables should be marked with "-22" after the prototype number to indicate steel tape armor and "-32" to indicate steel wire armor. For intrinsically safe compensation cables, "ia -" should be marked before the prototype number. Selection instructions: specifications, models, conductor types, insulation materials and colors, shielding materials, and sheath colors.