Rugged Temperature Data Sensor for Textile Dyeing & Finishing Processes


Textile dyeing and finishing relies heavily on precise and stable temperature control. Each process, including vat dyeing, stenter heat setting, cylinder drying and steam ageing, has strict temperature standards. Slight temperature deviations across equipment temperature zones will cause colour unevenness, poor colour fastness, fabric brittleness and batch defects. Dye vats require stable 120~150°C for colour fixation, stenters need uniform cross-zonal temperature, while drying and steaming equipment demands steady 80~110°C constant temperature. Harsh workshop conditions including high heat, humidity and acid-base fumes easily damage ordinary loggers, requiring durable and high-precision monitoring tools.

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Tailor-made for textile thermal processing, the Freshliance Iron Tag 100 rugged temperature data sensor features a measuring range of -50°C ~150°C, fully matching the full temperature demands of all mainstream dyeing and finishing equipment.


Built with 316 stainless steel and IP68 waterproof and dustproof rating, this rugged stainless steel temperature logger resists dye vapor corrosion, condensed steam and weak acid and alkali erosion. It withstands the harsh conditions and operates stably with a high accuracy of ±0.3℃ (-40°C ~100°C) and ±0.5℃ (Others), capturing subtle temperature fluctuations throughout heating, holding and cooling stages to eliminate temperature-related colour differences. It stores up to 35,000 readings with adjustable logging intervals from 1 second to 24 hours for complete temperature recording. Type-C USB connection supports automatic generation of tamper-proof and timestamped PDF/CSV reports on PC for filing and compliance inspection.

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With a replaceable battery for extended use and CE, RoHS, EN128300 certifications, this rugged temperature data sensor is ideal for routine temperature monitoring and production tracing in textile industries. It helps textile mills standardize textile dyeing and printing temperature monitoring, reduce defective rates and achieve reliable temperature quality control.