CN204373809U - A kind of watchband type passive and wireless temperature measurement on-line device - Google Patents

A kind of watchband type passive and wireless temperature measurement on-line device Download PDF

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CN204373809U
CN204373809U CN201520030574.3U CN201520030574U CN204373809U CN 204373809 U CN204373809 U CN 204373809U CN 201520030574 U CN201520030574 U CN 201520030574U CN 204373809 U CN204373809 U CN 204373809U
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module
chip microcomputer
power supply
temperature measurement
watchband
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郑为民
郑俊铭
林毛寅
郑尊荣
陈箭剑
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HANGZHOU SUNUO ELECTRICAL CO Ltd
State Grid Fujian Electric Power Co Ltd
Changle Power Supply Co of State Grid Fujian Electric Power Co Ltd
State Grid Corp of China SGCC
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HANGZHOU SUNUO ELECTRICAL CO Ltd
State Grid Fujian Electric Power Co Ltd
Changle Power Supply Co of State Grid Fujian Electric Power Co Ltd
State Grid Corp of China SGCC
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Abstract

本实用新型涉及一种表带式无源无线在线测温装置,包括一电磁场感应取能模块与一温度传感器;电磁场感应取能模块与一电源整理模块相连,电源整理模块分别连接至一储能模块与一单片机,温度传感器经一信号调制模块连接至单片机,单片机还连接有一无线发射模块;磁场感应取能模块包括一空心骨架、环绕在所述空心骨架上的漆包线以及一穿过空心骨架的表带;电磁场感应取能模块、电源整理模块与储能模块构成供电单元用以维持单片机、温度传感器、信号调制模块以及无线发射模块工作。本实用新型设计新颖独特、体积小、结构简单易用、能耗低、取电效能高且不需要外加电源,可以长期稳定工作。

The utility model relates to a watchband-type passive wireless online temperature measuring device, which comprises an electromagnetic field induction energy acquisition module and a temperature sensor; The module and a single-chip microcomputer, the temperature sensor is connected to the single-chip microcomputer through a signal modulation module, and the single-chip microcomputer is also connected to a wireless transmitting module; the magnetic field induction energy acquisition module includes a hollow frame, enameled wires surrounding the hollow frame and a wire passing through the hollow frame The wristband; the electromagnetic field induction energy harvesting module, the power arrangement module and the energy storage module form a power supply unit to maintain the work of the single chip microcomputer, temperature sensor, signal modulation module and wireless transmission module. The utility model has the advantages of novel and unique design, small size, simple and easy-to-use structure, low energy consumption, high power extraction efficiency and no need for external power supply, and can work stably for a long time.

Description

一种表带式无源无线在线测温装置A wristband type passive wireless online temperature measuring device

技术领域 technical field

本实用新型涉及一种适用于输配电系统的无线测温装置,尤其是一种表带式无源无线在线测温装置。 The utility model relates to a wireless temperature measuring device suitable for power transmission and distribution systems, in particular to a watchband type passive wireless online temperature measuring device.

背景技术 Background technique

在电厂,输变电站和线路,大型电力用户端等场所,温度已成为高压开关柜、变压器、母线接头、电缆接头、刀闸开关等重要设备正常运行的重要指标。当电力设备中有接点发生短路或者绝缘老化时,表现出来的就是该处局部发热,温度异常升高,继而使触点膨胀氧化使接点电阻增大,发热量进一步上升,温度继续升高,形成一个恶性循环。 In power plants, transmission and transformation substations and lines, large-scale power user terminals and other places, temperature has become an important indicator for the normal operation of important equipment such as high-voltage switchgear, transformers, bus joints, cable joints, and knife switches. When there is a short circuit or insulation aging at the contacts in the power equipment, it is manifested that there is local heating, and the temperature rises abnormally, and then the contacts expand and oxidize, which increases the contact resistance, the calorific value further rises, and the temperature continues to rise, forming A vicious cycle.

多年的火灾调查研究发现,大多数火灾事故都是由于电力设备在长期的高压工作条件下发热老化而引起的。 Years of fire investigation and research have found that most fire accidents are caused by the heating and aging of electrical equipment under long-term high-voltage working conditions.

对于电网的安全运营,及电力系统资源的最优化用方案实施,最有效的方法是对电力设备进行在线监测,温度则是在线监测的最重要数据之一。 For the safe operation of the power grid and the implementation of the optimal use of power system resources, the most effective method is to monitor the power equipment online, and temperature is one of the most important data for online monitoring.

目前,测温方式主要有三类:光纤、红外和无线测温。无线测温按照传感器电源获取方式分为有源无线传感器(采用锂电池供电)和无源无线传感器(不依赖电池等外接电源工作),以及混合型传感器(电池与取电相结合),常见的有:电池供电、CT 取电、非闭合环路感应取电、电池与非闭合环路感应取电混合供电等。 At present, there are three main types of temperature measurement methods: optical fiber, infrared and wireless temperature measurement. Wireless temperature measurement is divided into active wireless sensors (powered by lithium batteries) and passive wireless sensors (do not rely on external power sources such as batteries) according to the way the sensor power is obtained, and hybrid sensors (combined with batteries and power), common There are: battery power supply, CT power supply, non-closed loop induction power supply, hybrid power supply of battery and non-closed loop induction power supply, etc.

其优缺点分别如下: Its advantages and disadvantages are as follows:

(1) 光纤测温采用光纤传输温度信号,具有优异的绝缘性能,精度较高的优点,其缺点是易折、易断,用于隔离高压的光纤表面容易受到污染,可能会导致光纤沿着表面放电,同时在设备上的布线安装对高压设备的维护产生不便,价格昂贵。 (1) Optical fiber temperature measurement uses optical fiber to transmit temperature signals, which has the advantages of excellent insulation performance and high precision. Its disadvantages are that it is easy to break and break. Surface discharge and wiring installation on the equipment cause inconvenience to the maintenance of high-voltage equipment and are expensive.

(2) 红外测温为非接触式测温,易受环境及周围的电磁场干扰,精度较低,另外对于开关柜来说由于空间狭小封闭,无法有效安装红外测温探头,因为探头必须与被测物体保持一定的距离,且需要直接正对被测物体的表面。因此,红外测温在开关柜中应用有明显的缺陷。 (2) Infrared temperature measurement is a non-contact temperature measurement, which is easily disturbed by the environment and the surrounding electromagnetic field, and has low accuracy. In addition, due to the small and closed space of the switch cabinet, it is impossible to effectively install the infrared temperature measurement probe, because the probe must be in contact with the The measured object should be kept at a certain distance, and it needs to be directly facing the surface of the measured object. Therefore, the application of infrared temperature measurement in switchgear has obvious defects.

 (3) 在高压环境下使用的在线测温装置,目前市场上常用的供电方式有电池供电、CT 取电、非闭合环路感应取电、电池与非闭合环路感应取电混合供电等,这些供电方式中都有各自的缺点。采用电池供电时,由于电力设备的高压环境危险而封闭隔绝,不能随便停电,电池电量耗尽时不便及时更换新的电池;又因电池电量耗尽后其内部的化学物质容易产生液体渗出,腐蚀装置内部的线路板导致装置损坏,同时对原有电气设备安全埋下隐患。采用CT 取电时,由于CT 的结构特点,其外形尺寸比较大,在高压环境下影响设备的安全距离,而且磁芯部分必须环绕于母线之上,运行起来非常不方便,并且要根据母线的大小制定出不同尺寸规格的磁芯,从而造成生产周期长、成本高,另外CT 取电还有一个不足之处是它的起始工作电流比较高,一般为50A 以上。非闭合环路感应取电方式,相对于CT取电方式,其具有体积小、安装方便、成本低廉等优点,但也存在不足,这种感应取电装置的起始工作电流也较大,一般也要在30A 以上。电池与非闭合环路感应取电混合供电,这种组合方式虽然综合了两者的优点,但也同时具有两者的缺点。 (3) For online temperature measuring devices used in high-voltage environments, the commonly used power supply methods on the market include battery power supply, CT power supply, non-closed loop induction power supply, hybrid power supply of battery and non-closed loop induction power supply, etc. Each of these power supply methods has its own disadvantages. When the battery is used for power supply, it is closed and isolated due to the dangerous high-voltage environment of the electric equipment, and the power cannot be cut off casually. Corrosion of the circuit board inside the device causes damage to the device, and at the same time poses a hidden danger to the safety of the original electrical equipment. When using CT to take power, due to the structural characteristics of CT, its external dimension is relatively large, which affects the safety distance of the equipment in a high-voltage environment, and the magnetic core must surround the busbar, which is very inconvenient to operate, and it must be based on the busbar. Different sizes and specifications of magnetic cores are made, resulting in long production cycle and high cost. In addition, CT power supply has a disadvantage that its initial working current is relatively high, generally above 50A. The non-closed loop induction power-taking method has the advantages of small size, convenient installation, and low cost compared with the CT power-taking method, but it also has disadvantages. The initial working current of this induction power-taking device is also relatively large, and generally It should also be above 30A. The combination of battery and non-closed loop inductive power supply combines the advantages of both, but also has the disadvantages of both.

现有大部分在线监测产品所采用的测温模块技术水平低,无法满足电力行业的长期稳定安全的需求,而对于“无人值守”的目标来说,现有测温技术更不能达到远程、实时、在线监测的要求,其安全运行令人担忧。 The temperature measurement modules used in most of the existing online monitoring products have a low level of technology and cannot meet the long-term stability and security needs of the power industry. For the goal of "unattended", the existing temperature measurement technology cannot achieve remote, Real-time, online monitoring requirements, its safe operation is worrying.

因此,发明一种体积小巧、安装方便、低能耗、高效能的自供电测温装置是十分必要的。 Therefore, it is very necessary to invent a self-powered temperature measuring device with small size, convenient installation, low energy consumption and high efficiency.

发明内容 Contents of the invention

有鉴于此,本实用新型的目的是提供一种表带式无源无线在线测温装置,包括一电磁场感应取能模块与一温度传感器;所述的电磁场感应取能模块与一电源整理模块相连,所述的电源整理模块分别连接至一储能模块与一单片机,所述的温度传感器经一信号调制模块连接至所述单片机,所述的单片机还连接有一无线发射模块;所述的磁场感应取能模块包括一空心骨架、环绕在所述空心骨架上的漆包线以及一穿过所述空心骨架的表带;所述的电磁场感应取能模块、所述电源整理模块与所述储能模块构成供电单元用以维持所述单片机、所述温度传感器、所述信号调制模块以及所述无线发射模块工作。 In view of this, the purpose of this utility model is to provide a watchband-type passive wireless online temperature measurement device, including an electromagnetic field induction energy harvesting module and a temperature sensor; the electromagnetic field induction energy harvesting module is connected to a power supply arrangement module , the power supply finishing module is respectively connected to an energy storage module and a single-chip microcomputer, the temperature sensor is connected to the single-chip microcomputer through a signal modulation module, and the single-chip microcomputer is also connected to a wireless transmission module; the magnetic field induction The energy harvesting module includes a hollow skeleton, enameled wires surrounding the hollow skeleton, and a strap passing through the hollow skeleton; the electromagnetic field induction energy harvesting module, the power supply arrangement module and the energy storage module constitute The power supply unit is used to maintain the operation of the single chip microcomputer, the temperature sensor, the signal modulation module and the wireless transmission module.

进一步地,所述的空心骨架包括一空心横梁、一第一侧板以及一第二侧板;所述的第一侧板与第二侧板分别设置于所述空心横梁的两侧,用以固定所述漆包线。 Further, the hollow frame includes a hollow beam, a first side plate and a second side plate; the first side plate and the second side plate are respectively arranged on both sides of the hollow beam for Fix the enameled wire.

进一步地,所述的漆包线环绕在所述空心横梁表面。 Further, the enameled wire wraps around the surface of the hollow beam.

进一步地,所述的表带由高磁通合金软磁材料制成,所述高磁通合金软磁材料所制表带穿过所述空心骨架并环绕在被测设备的导电触头上面,构成一个闭合的电磁场环路。 Further, the strap is made of high-flux alloy soft-magnetic material, and the strap made of high-flux alloy soft-magnetic material passes through the hollow frame and wraps around the conductive contact of the device under test, form a closed electromagnetic field loop.

进一步地,所述的表带式无源无线在线测温装置通过所述的表带紧紧环绕固定于被测设备的导电触头表面,所述的温度传感器设置于所述被测设备的导电触头表面,并紧密接触。 Further, the strap-type passive wireless online temperature measuring device is fixed on the surface of the conductive contact of the device under test by tightly surrounding the strap, and the temperature sensor is arranged on the conductive contact surface of the device under test. Contact surface, and close contact.

本实用新型具有以下优点。 The utility model has the following advantages.

1、本实用新型中的电磁场感应取能模块采用高磁通合金软磁材料所制表带环绕在设备(开关柜)导电触头上面,利用高磁通合金软磁材料优异的导磁性能,构成一个高效的闭合电磁场环路,大幅度降低了因电磁场环路开放产生的磁阻;提高了能量的利用效率。试验证明:当被测导电触头电流达到4A 以上的时候就能正常工作,远远低于CT 取电通常30A 的起始工作电流。 1. The electromagnetic field induction energy harvesting module in this utility model adopts a watch strap made of high-flux alloy soft magnetic material to surround the conductive contact of the equipment (switch cabinet), and utilizes the excellent magnetic permeability of high-flux alloy soft magnetic material. A high-efficiency closed electromagnetic field loop is formed, which greatly reduces the reluctance caused by the opening of the electromagnetic field loop; and improves energy utilization efficiency. The test proves that it can work normally when the measured conductive contact current reaches above 4A, which is far lower than the usual initial working current of 30A for CT.

2. 本实用新型中的电磁场感应取能模块采用低功耗设计,捕获电磁场灵敏度高,且总能量小,因此当被测电路电流很大,磁场很强时,不需要传感器内部消耗大量冗余能量而造成元器件老化损坏加速。它解决了CT环形取电传感器取能波动大,尤其是大电流时引入能量过高,需要额外电路把冗余能量消耗掉,而这些额外电路元器件经常消耗高能量,所以容易损坏。其从根本上解决了CT传感器的电磁干扰强,取能波动大,容易损坏寿命短、维护成本高的问题。 2. The electromagnetic field induction energy harvesting module in this utility model adopts a low power consumption design, which captures the electromagnetic field with high sensitivity and small total energy. Therefore, when the measured circuit current is large and the magnetic field is strong, there is no need to consume a lot of redundancy inside the sensor The energy causes accelerated aging and damage of components. It solves the problem of large fluctuations in the energy taken by the CT ring power sensor, especially when the energy is too high when the current is high, and additional circuits are required to consume redundant energy, and these additional circuit components often consume high energy, so they are easy to damage. It fundamentally solves the problems of strong electromagnetic interference of CT sensors, large energy fluctuations, easy damage, short life, and high maintenance costs.

3. 体积小:传感器主体部分体积小,适应性好,适合绝大部分电力设备节点温度在线监测。 3. Small size: The main part of the sensor is small in size and has good adaptability, which is suitable for online monitoring of the temperature of most power equipment nodes.

4. 同时高磁通合金软磁材料所制表带又为表带式无源无线测温装置提供了一种很灵活的固定方式。它解决了长期困扰输配电系统中开关的导电触头、连接端头和母线工作温度在线温升无线监测装置体积大,安装不方便、安全性能低的难题。 4. At the same time, the strap made of high-flux alloy soft magnetic material provides a very flexible fixing method for the strap-type passive wireless temperature measuring device. It solves the long-term problem of large size, inconvenient installation and low safety performance of the online temperature rise wireless monitoring device for the conductive contacts, connection terminals and busbar working temperature of the switch in the power transmission and distribution system.

5. 本实用新型可广泛用于发电厂、变电站及大型工矿企业的高低压输配电系统的导电触头、连接端头和母排在线测温。推广应用后能更好地实时监测、预防因过热导致的事故,增强电力系统运行的稳定性、安全性,具有较高的社会经济效益。 5. The utility model can be widely used for online temperature measurement of conductive contacts, connection terminals and busbars of high and low voltage power transmission and distribution systems in power plants, substations and large industrial and mining enterprises. After popularization and application, it can better monitor and prevent accidents caused by overheating in real time, enhance the stability and safety of power system operation, and have high social and economic benefits.

附图说明 Description of drawings

图1为本发明的装置框图。 Fig. 1 is a device block diagram of the present invention.

图2为本发明的空心骨架结构示意图。 Fig. 2 is a schematic diagram of the hollow skeleton structure of the present invention.

图3为本发明的表带结构示意图。 Fig. 3 is a structural schematic diagram of the watch strap of the present invention.

主要组件符号说明]Explanation of main component symbols]

图中:1为空心横梁,2为第一侧板,3为第二侧板,4为空心横梁的空心槽,5为表带的卡头,6为表带的固定框,7为表带的带卡槽部分。 In the figure: 1 is the hollow beam, 2 is the first side plate, 3 is the second side plate, 4 is the hollow groove of the hollow beam, 5 is the clip of the strap, 6 is the fixed frame of the strap, and 7 is the strap part with card slot.

具体实施方式 Detailed ways

下面结合附图及实施例对本实用新型做进一步说明。 Below in conjunction with accompanying drawing and embodiment the utility model is described further.

如图1、图2以及图3所示,本实施例提供一种表带式无源无线在线测温装置,包括一电磁场感应取能模块与一温度传感器;所述的电磁场感应取能模块与一电源整理模块相连,所述的电源整理模块分别连接至一储能模块与一单片机,所述的温度传感器经一信号调制模块连接至所述单片机,所述的单片机还连接有一无线发射模块;所述的磁场感应取能模块包括一空心骨架1(如图2所示)、环绕在所述空心骨架上的漆包线以及一穿过所述空心骨架的表带(如图3所示);所述的电磁场感应取能模块、所述电源整理模块与所述储能模块构成供电单元用以维持所述单片机、所述温度传感器、所述信号调制模块以及所述无线发射模块工作。 As shown in Figure 1, Figure 2 and Figure 3, this embodiment provides a watchband-type passive wireless online temperature measurement device, including an electromagnetic field induction energy harvesting module and a temperature sensor; the electromagnetic field induction energy harvesting module and A power arrangement module is connected, and the power arrangement module is respectively connected to an energy storage module and a single-chip microcomputer, the temperature sensor is connected to the single-chip microcomputer through a signal modulation module, and the single-chip microcomputer is also connected to a wireless transmission module; The magnetic field induction energy harvesting module includes a hollow frame 1 (as shown in Figure 2), enameled wires wrapped around the hollow frame and a strap passing through the hollow frame (as shown in Figure 3); The electromagnetic field induction energy harvesting module, the power supply arrangement module and the energy storage module constitute a power supply unit to maintain the operation of the single chip microcomputer, the temperature sensor, the signal modulation module and the wireless transmission module.

在本实施例中,如图2所示,所述的空心骨架包括一空心横梁1、一第一侧板2以及一第二侧板3;所述的第一侧板2与第二侧板3分别设置于所述空心横梁1的两侧,用以固定所述漆包线。 In this embodiment, as shown in Figure 2, the hollow frame includes a hollow beam 1, a first side plate 2 and a second side plate 3; the first side plate 2 and the second side plate 3 are respectively arranged on both sides of the hollow beam 1 to fix the enameled wire.

在本实施例中,所述的漆包线环绕在所述空心横梁1表面。 In this embodiment, the enameled wire wraps around the surface of the hollow beam 1 .

进一步地,在本实施例中,所述的表带由高磁通合金软磁材料制成,所述高磁通合金软磁材料所制表带穿过所述空心骨架并环绕在被测设备的导电触头上面,构成一个闭合的电磁场环路。其中所述的高磁通合金软磁材料含有 Further, in this embodiment, the strap is made of high-flux alloy soft-magnetic material, and the strap made of high-flux alloy soft-magnetic material passes through the hollow skeleton and wraps around the device under test On the conductive contacts, a closed electromagnetic field loop is formed. The high magnetic flux alloy soft magnetic material described therein contains

较佳地,所述的温度传感器设置于所述被测设备的导电触头表面,并紧密接触。 Preferably, the temperature sensor is arranged on the surface of the conductive contact of the device under test and is in close contact with it.

在本实施例中,工作时,先将电源整理模块、储能模块、单片机、温度传感器、信号调制模块、无线收发模块、空心骨架和漆包线封装,然后使用高磁通合金软磁材料所制表带穿过空心骨架的空心横梁的空心槽部分,表带的带卡槽部分穿过表带的卡头部分再穿过表带的固定框将表带及其所述的表带式无源无线在线测温装置锁紧在被测设备的导电触头上。将表带式无源无线测温装置紧紧环绕固定在被测导设备的电触头表面;将温度传感器安装于被测导电触头表面,并紧密接触; In this embodiment, when working, the power supply arrangement module, energy storage module, single-chip microcomputer, temperature sensor, signal modulation module, wireless transceiver module, hollow skeleton and enameled wire are packaged first, and then the watch is made of high magnetic flux alloy soft magnetic material The hollow groove part with the hollow crossbeam passing through the hollow skeleton, the part with the card slot of the watch strap passes through the clip part of the watch strap and then passes through the fixed frame of the watch strap to connect the watch strap and its said strap-type passive wireless The online temperature measuring device is locked on the conductive contact of the device under test. Tightly surround and fix the strap-type passive wireless temperature measuring device on the surface of the electrical contact of the measured conductivity device; install the temperature sensor on the surface of the tested conductive contact and make close contact with it;

电磁场感应取能模块将电磁场转换成电能,交由电源整理模块处理后供给单片机,多余的电能储存至储能模块备用;温度传感器采集的温度变化信号通过信号调制模块输入单片机;单片机对温度产生的电信号进行A/D 转换,将结果编码后通过无线收发模块发送出去。 The electromagnetic field induction energy harvesting module converts the electromagnetic field into electrical energy, which is processed by the power sorting module and supplied to the single-chip microcomputer, and the excess electric energy is stored in the energy storage module for backup; the temperature change signal collected by the temperature sensor is input to the single-chip microcomputer through the signal modulation module; the temperature generated by the single-chip microcomputer The electrical signal is A/D converted, and the result is encoded and sent out through the wireless transceiver module.

综上所述,本实用新型减少以往传统方法带来的繁琐操作及老的工作程序带来的不安全因素;同时又具有维护费用低、节能、节资等显著的经济性,有的放矢地开展设备维修,减少维护工作量,减少事故 ;达到增产、增效、安全的效益,具有巨大的社会效益。 In summary, the utility model reduces the cumbersome operations brought by the traditional methods and the unsafe factors brought by the old working procedures; at the same time, it has significant economical advantages such as low maintenance costs, energy saving, and capital saving, and develops equipment in a targeted manner. Maintenance, reduce maintenance workload, reduce accidents; achieve the benefits of increasing production, increasing efficiency, and safety, and have huge social benefits.

值得一提的是,以上仅为本实用新型实施例中一个较佳的实施方案。但是,本实用新型并不限于上述实施方案,凡按本实用新型方案所做的任何均等变化和修饰,所产生的功能作用未超出本方案的范围时,均属于本实用新型的保护范围。 It is worth mentioning that the above is only a preferred implementation in the embodiments of the present utility model. But, the utility model is not limited to above-mentioned embodiment, all changes and modifications done according to the utility model scheme, when the functional effect produced does not exceed the scope of the scheme, all belong to the protection scope of the utility model.

Claims (5)

1. a watchband type passive and wireless temperature measurement on-line device, is characterized in that: comprise an electromagnetic field inducing and get energy module and a temperature sensor; Described electromagnetic field inducing is got and can module be connected with a power supply sorting module, described power supply sorting module is connected to an energy-storage module and a single-chip microcomputer respectively, described temperature sensor is through a signal madulation model calling to described single-chip microcomputer, and described single-chip microcomputer is also connected with a wireless transmitter module; Described magnetic field induction gets the watchband that energy module comprises a hollow backbone, the enameled wire and be looped around on described hollow backbone passes described hollow backbone; Described electromagnetic field inducing is got and module, described power supply sorting module and described energy-storage module can be formed power supply unit in order to maintain described single-chip microcomputer, described temperature sensor, described signal madulation module and described wireless transmitter module work.
2. a kind of watchband type passive and wireless temperature measurement on-line device according to claim 1, is characterized in that: described hollow backbone comprises a hollow crossbeam, one first side plate and one second side plate; The first described side plate and the second side plate are arranged at the both sides of described hollow crossbeam respectively, in order to fixing described enameled wire.
3. a kind of watchband type passive and wireless temperature measurement on-line device according to claim 2, is characterized in that: described enameled wire is looped around described hollow beam surface.
4. a kind of watchband type passive and wireless temperature measurement on-line device according to claim 1, is characterized in that: described watchband is made up of high magnetic flux alloy soft magnetic material.
5. a kind of watchband type passive and wireless temperature measurement on-line device according to claim 1, it is characterized in that: described watchband type passive and wireless temperature measurement on-line device is fixed on the conductive contact surface of equipment under test by described watchband, described temperature sensor is arranged at the conductive contact surface of described equipment under test.
CN201520030574.3U 2015-01-16 2015-01-16 A kind of watchband type passive and wireless temperature measurement on-line device Expired - Fee Related CN204373809U (en)

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104515623A (en) * 2015-01-16 2015-04-15 国家电网公司 Watch strap type passive wireless online temperature measuring device and monitoring system thereof
CN105181160A (en) * 2015-11-03 2015-12-23 国家电网公司 Wireless temperature measurement system
CN110686802A (en) * 2019-11-11 2020-01-14 徐州瓦特电气科技有限公司 Wireless temperature measuring device for cable intermediate joint

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104515623A (en) * 2015-01-16 2015-04-15 国家电网公司 Watch strap type passive wireless online temperature measuring device and monitoring system thereof
CN105181160A (en) * 2015-11-03 2015-12-23 国家电网公司 Wireless temperature measurement system
CN110686802A (en) * 2019-11-11 2020-01-14 徐州瓦特电气科技有限公司 Wireless temperature measuring device for cable intermediate joint

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