(Tapez J / Iron-Constantan)
Numéro d'article. 1280001068.
One-Line Positioning
A high-temperature-resistant, glass-fiber-insulated Type J thermocouple extension wire that carries thermocouple temperature signals over long distances with low error to instruments/APIs — suited to high-temperature industrial environments.
Spécifications de base
| Article | Spécification |
| Marque / Modèle | IMARI · WIC-H (Numéro d'article. 1280001068) |
| Type de thermocouple | Tapez J (IC) |
| Matériau conducteur | Positif: Fe (Iron) / Négatif: Ni-Alloy (Constantan) |
| Conductor Structure | 4/0.6 mm × 2 core or 7/0.6 mm × 2 cœur |
| Matériau isolant | Fiberglass |
| Température ambiante de fonctionnement | 0 ~ +150 ℃ |
| Insulation Color | Rouge / Jaune |
| Outer Jacket Color | Jaune |
Series comparison: WIC-G (PVC vinyl insulation, -20~+90 ℃, suited to humid locations); WIC-H (fiberglass jacket, higher temperature rating, suited to high-temperature applications); WIC-H (LEUR) (stainless-steel shield, EMI protection, abrasionand scratch-resistant, suited to heavy-duty/frequent-movement use).

IMARI WIC-H Thermocouple Extension Wire (Tapez J / Iron-Constantan)
Caractéristiques techniques
High-temperature resistance: The fiberglass jacket allows continuous use from 0 à 150 ℃, well beyond standard PVC wire (-20~+90 ℃), making it suitable for high-temperature furnaces, boilers, moulage par injection, and similar applications.
Signal accuracy: The iron-constantan material matches the thermoelectric EMF characteristics of Type J thermocouples, acting as a compensating lead to offset errors from cold-junction temperature differences and maintaining measurement-loop accuracy.
Abrasion resistance & EMI immunity (facultatif): Where interference protection or frequent bending and abrasion are concerns, the SUS stainless-steel-shielded version can be selected.
Selectable conductors: Two strand configurations, 4-strand or 7-strand, for selection based on routing strength and signal-stability needs.
Scénarios d'application
High-temperature industrial measurement loops, heat-treatment furnaces, boiler and flue-gas monitoring, moulage par injection / die-casting equipment, laboratory high-temperature apparatus, and any automated control system that requires long-distance transmission of Type J thermocouple signals.
Guide de sélection
Environnement à haute température (dans 150 ℃) → choose WIC-H (ce modèle).
Environnement humide, temperature below 90 ℃ → choose WIC-G.
Strong interference / frequent movement → choose the WIC-H (LEUR) stainless-steel-shielded version.
Conductor density: for low-resistance, long-distance transmission, prefer the 7-strand version.
IMARI WIC-H Thermocouple Extension Wire (Tapez J / Iron-Constantan) — Main Uses
The primary purpose of the IMARI WIC-H is to transmit the thermocouple’s temperature signal over long distances with low error to indicating instruments, Automates, or other control systems. The core concept: the thermocouple element measures temperature, while the extension wire carries that signal from the sensor to the instrument end and compensates for cold-junction temperature error.
Applications typiques
Industrial furnaces & heat treatment: signal transmission for high-temperature measurement in melting furnaces, annealing furnaces, hardening/tempering furnaces, etc.;
Boiler & flue-gas / piping monitoring: boiler combustion temperature and flue-gas duct temperature monitoring;
Plastics processing: temperature-control loops for the barrel and mold of injection molding and extrusion machines;
Metals & die casting: measurement loops for die-casting molds and molten-metal temperature;
Laboratoire & R.&D: temperature acquisition for high-temperature ovens, tube furnaces, and other experimental equipment;
Pouvoir & énergie: online temperature monitoring of transformers, motor windings, and similar equipment;
Automated control systems: collecting Type J thermocouple signals from field locations into PLC / DCS / contrôleurs de température.
In one sentence: anywhere you measure temperature with a Type J thermocouple and the distance between the sensor and the instrument is significant, use a compensating wire such as the WIC-H for the connection. The fiberglass jacket (ce modèle) is chosen because it withstands 150 ℃, making it suitable for routing near heat sources.
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