一种温湿度位移测量电子标签

By using a passive, flexible, and thin electronic tag structure, and utilizing the displacement of telescopic components to sense temperature and humidity, this technology solves the problems of high measurement cost, large size, and poor real-time performance in existing technologies. It achieves low-cost, real-time, and highly stable temperature and humidity measurement, applicable to fields such as crack measurement, industrial measurement, and human health measurement. It can be used for crack measurement, industrial measurement, human health measurement, sanitary napkins, diapers, cooling patches, etc.

CN114186658BActive Publication Date: 2026-07-17SHENZHEN XINGWEIXIAN TECHNOLOGY CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
SHENZHEN XINGWEIXIAN TECHNOLOGY CO LTD
Filing Date
2022-01-11
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing temperature and humidity measurement technologies are mostly active or bulky and costly, unable to measure in real time, and unusable in certain environments, lacking structural stability and economic efficiency.

Method used

It adopts a passive, flexible, and thin electronic tag structure, and senses physical quantities such as temperature and humidity through the displacement of the telescopic component. It utilizes the expansion or dissolution of the material to change the readability of the electronic tag, thereby achieving real-time measurement.

Benefits of technology

It has achieved low-cost, real-time, seamless, structurally stable, and highly practical electronic tags that can measure areas that are traditionally inaccessible. These tags can be used for crack measurement, industrial measurement, human health measurement, sanitary napkins, diapers, cooling patches, etc.

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Abstract

本发明涉及一种温湿度位移测量电子标签,所述电子标签包括电子标签结构和伸缩件,通过伸缩件的伸缩位移来改变电子标签结构的可读性,从而感知测量物理量。本发明具有无源、软性、薄、小、实时测量、成本低等特点,通过伸缩件位移来感知各种物理量的电子标签,电子标签在结构被破坏或者靠近人体、液体、金属和电磁屏蔽材料时会不可读取,根据这一特性通过不同材质的伸缩件和被测物接触产生的位移变化致电子标签从可读取和不可读取切换来感知不同的物理量,如膨胀、裂缝、温湿度等,能够完成传统测量无法测量的领域。
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