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CN201229511Y - Wireless Temperature Monitoring Device - Google Patents

Wireless Temperature Monitoring Device Download PDF

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Publication number
CN201229511Y
CN201229511Y CNU2008201305346U CN200820130534U CN201229511Y CN 201229511 Y CN201229511 Y CN 201229511Y CN U2008201305346 U CNU2008201305346 U CN U2008201305346U CN 200820130534 U CN200820130534 U CN 200820130534U CN 201229511 Y CN201229511 Y CN 201229511Y
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China
Prior art keywords
those
wireless
temperature
wireless receiving
receiving modules
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Expired - Fee Related
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CNU2008201305346U
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Chinese (zh)
Inventor
谢栋杰
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Yaxiang Engineering Co ltd
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Yaxiang Engineering Co ltd
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Priority to CNU2008201305346U priority Critical patent/CN201229511Y/en
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P90/00Enabling technologies with a potential contribution to greenhouse gas [GHG] emissions mitigation
    • Y02P90/02Total factory control, e.g. smart factories, flexible manufacturing systems [FMS] or integrated manufacturing systems [IMS]

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Abstract

A wireless temperature monitoring device is arranged in a dust-free room and comprises a plurality of temperature sensors, a plurality of wireless transmitting modules, a plurality of wireless receiving modules and a monitoring module, wherein the wireless transmitting modules are connected to the temperature sensors, the temperature sensors detect temperature to generate first identification signals, the wireless transmitting modules read the first identification signals and send the first identification signals to the wireless receiving modules for reading, the monitoring module is connected with the wireless receiving modules, the wireless receiving modules send the first identification signals to the monitoring module for reading, and the monitoring module displays the first identification signals; through the design, the temperature change situation of each area in the dust-free room can be monitored in an all-round mode, and therefore the temperature in the dust-free room can be adjusted more accurately by workers.

Description

无线温度监控装置 Wireless Temperature Monitoring Device

技术领域 technical field

本实用新型有关于一种温度监控装置,尤指一种无线温度监控装置。The utility model relates to a temperature monitoring device, in particular to a wireless temperature monitoring device.

背景技术 Background technique

请参阅图1所示,为现有技术的一装设于无尘室10a内的温度监控装置,包括多个温度感测器1a、多个可编程逻辑控制器(PLC)2a、多个集线器3a、一监视器4a以及多条线材5a。该些线材5a分别连接于温度感测器1a与可编程逻辑控制器2a之间,可编程逻辑控制器2a与集线器3a之间,以及集线器3a与监视器4a之间。温度感测器1a感测出无尘室10a内的温度变化,而温度数据会在监视器4a上显示,通过监控无尘室10a内的温度变化情形,进而对无尘室10a内的温度作调整。Please refer to Fig. 1, which is a temperature monitoring device installed in a clean room 10a in the prior art, including a plurality of temperature sensors 1a, a plurality of programmable logic controllers (PLC) 2a, and a plurality of hubs 3a, a monitor 4a and a plurality of wires 5a. The wires 5a are respectively connected between the temperature sensor 1a and the PLC 2a, between the PLC 2a and the hub 3a, and between the hub 3a and the monitor 4a. The temperature sensor 1a senses the temperature change in the clean room 10a, and the temperature data will be displayed on the monitor 4a. By monitoring the temperature change in the clean room 10a, the temperature in the clean room 10a can be further adjusted. Adjustment.

然而,现有技术的温度监控装置,由于温度数据都必须经过线材5a传输至监视器4a,使得温度感测器1a无法设置于无尘室10a的每一个区域,仅能设置于无尘室10a的特定部分区域,所以无法全方位地监控无尘室10a的每一区域的温度变化情形。However, in the temperature monitoring device of the prior art, since the temperature data must be transmitted to the monitor 4a through the wire 5a, the temperature sensor 1a cannot be installed in every area of the clean room 10a, but can only be installed in the clean room 10a Therefore, it is impossible to comprehensively monitor the temperature changes in each area of the clean room 10a.

实用新型内容Utility model content

鉴于以上的问题,本实用新型的主要目的为提供一种无线温度监控装置,能够全方位地监控无尘室内每一区域的温度变化状况,此外也可以节省了大量线材,使得施工过程较为简化及方便。In view of the above problems, the main purpose of this utility model is to provide a wireless temperature monitoring device, which can monitor the temperature changes in each area of the clean room in an all-round way. In addition, it can also save a lot of wires, making the construction process simpler and more efficient. convenient.

为了达到上述的目的,本实用新型提供一种无线温度监控装置,其装设于一无尘室内,包括:多个温度感测器;多个无线发射模组,该些无线发射模组分别连接于该些温度感测器上,该些温度感测器侦测温度而分别产生一第一辨识信号,该些无线发射模组读取该些第一辨识信号;多个无线接收模组,该些无线发射模组分别传送该些第一辨识信号给该些无线接收模组读取;以及一监控模组,该监控模组连接该些无线接收模组,该些无线接收模组分别传送该等第一辨识信号给该监控模组读取。In order to achieve the above purpose, the utility model provides a wireless temperature monitoring device, which is installed in a clean room, including: a plurality of temperature sensors; a plurality of wireless transmission modules, these wireless transmission modules are connected to On the temperature sensors, the temperature sensors detect the temperature and generate a first identification signal respectively, and the wireless transmitting modules read the first identification signals; a plurality of wireless receiving modules, the The wireless transmitting modules transmit the first identification signals to the wireless receiving modules for reading; and a monitoring module, the monitoring module is connected to the wireless receiving modules, and the wireless receiving modules respectively transmit the Wait for the first identification signal to be read by the monitoring module.

本实用新型具有以下有益的效果:通过温度感测器上的无线发射模组以及与其相搭配的无线接收模组,监控模组可以全方位弹性地布置多组温度点,进而监控无尘室内每一区域的温度变化状况,使得工作人员可以更精确地调整无尘室内的温度。此外也可以节省大量线材,使得施工过程较为简化及方便。The utility model has the following beneficial effects: through the wireless transmitting module on the temperature sensor and the wireless receiving module matched with it, the monitoring module can flexibly arrange multiple groups of temperature points in all directions, and then monitor each temperature point in the clean room. The temperature change in an area allows the staff to adjust the temperature in the clean room more precisely. In addition, a large amount of wire materials can be saved, which simplifies and facilitates the construction process.

附图说明 Description of drawings

图1为现有技术的温度监控装置的平面示意图;Fig. 1 is the schematic plan view of the temperature monitoring device of prior art;

图2为本实用新型的无线温度监控装置的平面示意图;Fig. 2 is the schematic plan view of the wireless temperature monitoring device of the present invention;

图3为本实用新型的无线温度监控装置装设于风机的平面示意图;Fig. 3 is a schematic plan view of a wireless temperature monitoring device of the present invention installed in a fan;

图4为本实用新型的无线温度监控装置装设于风机的俯视示意图。FIG. 4 is a schematic top view of the wireless temperature monitoring device of the present invention installed in a fan.

【主要元件符号说明】[Description of main component symbols]

【现有技术】【current technology】

无尘室 10aClean room 10a

温度感测器 1aTemperature sensor 1a

可编程逻辑控制器 2aProgrammable logic controller 2a

集线器 3ahub 3a

监视器 4amonitor 4a

线材 5aWire 5a

【本实用新型】【This utility model】

无尘室 10Clean room 10

温度感测器 1temperature sensor 1

无线发射模组 2Wireless transmitter module 2

无线接收模组 3Wireless Receiver Module 3

监控模组 4Monitoring Module 4

监视器 41monitor 41

人机界面 42Human Machine Interface 42

电脑 43computer 43

风机 5fan 5

感测辨识标签 51Sensing Identification Labels 51

第一辨识信号 S1First identification signal S1

第二辨识信号 S2Second identification signal S2

具体实施方式 Detailed ways

如图2所示,为本实用新型的无线温度监控装置,其装设于一无尘室10内,包括多个温度感测器1、无线发射模组2、无线接收模组3以及一监控模组4,该些无线发射模组2分别连接于该些温度感测器1上,该些温度感测器1分别设置于该无尘室10内的每一区域,以侦测无尘室10内的每一区域的温度变化情形。该些温度感测器1侦测温度而分别产生一第一辨识信号S1,该些无线发射模组2读取该些第一辨识信号S1。As shown in Figure 2, it is a wireless temperature monitoring device of the present invention, which is installed in a clean room 10 and includes a plurality of temperature sensors 1, a wireless transmitting module 2, a wireless receiving module 3 and a monitoring Module 4, these wireless transmission modules 2 are respectively connected on these temperature sensors 1, and these temperature sensors 1 are respectively arranged in each area in this clean room 10, to detect clean room 10 temperature changes in each area. The temperature sensors 1 detect the temperature and generate a first identification signal S1 respectively, and the wireless transmitting modules 2 read the first identification signals S1.

该些无线发射模组2分别发送该些第一辨识信号S1给该些无线接收模组3读取,每一无线接收模组3可以接收至少涵盖50米×50米范围内的无线发射模组2发送的第一辨识信号S1,每一无线接收模组3可以接收至少50个无线发射模组2的第一辨识信号S1。该监控模组4包括一监视器41、一人机界面42以及一电脑43,该电脑43以及该监视器41分别连接该人机界面42,该些无线接收模组3分别连接于该人机界面42,该人机界面42转换该些第一辨识信号S1为一预定信号格式,并且传送至该监视器41以及该电脑43读取,该监视器41显示该些第一辨识信号S1,便可通过监视器41得知无尘室10内每一区域的温度情形,而该电脑43便可以针对无尘室10的每一区域的温度情形进行温度的调整。The wireless transmitting modules 2 respectively send the first identification signals S1 to the wireless receiving modules 3 for reading, and each wireless receiving module 3 can receive wireless transmitting modules covering at least a range of 50 meters × 50 meters 2, each wireless receiving module 3 can receive the first identification signals S1 of at least 50 wireless transmitting modules 2. The monitoring module 4 includes a monitor 41, a man-machine interface 42 and a computer 43, the computer 43 and the monitor 41 are respectively connected to the man-machine interface 42, and the wireless receiving modules 3 are respectively connected to the man-machine interface 42. The man-machine interface 42 converts the first identification signals S1 into a predetermined signal format, and transmits them to the monitor 41 and the computer 43 for reading, and the monitor 41 displays the first identification signals S1, then The temperature of each area in the clean room 10 is known through the monitor 41 , and the computer 43 can adjust the temperature according to the temperature of each area of the clean room 10 .

如图3及图4所示,该无尘室10内更间隔设有多个风机5,该些温度感测器1以及该些无线发射模组2分别连接于该些风机5的顶部,该些风机5上各设有一感测辨识标签51,该些感测辨识标签51分别侦测该些风机5的开关状况、故障状况及运转状况并分别产生一第二辨识信号S2。该些无线发射模组2分别读取该些第一辨识信号S1以及该些第二辨识信号S2,每一无线接收模组3可接收至少50个无线发射模组2的第一辨识信号S1以及第二辨识信号S2。该人机界面42转换该些第一辨识信号S1及该些第二辨识信号S2为一预定信号格式,并且分别传送给该监视器41以及该电脑43读取。该监视器41显示该些第一辨识信号S1以及该些第二辨识信号S2,便可通过监视器41得知无尘室10内每一区域的温度情形以及风机5的使用情形,而该电脑43便可以针对无尘室10的温度情形进行温度的调整以及控制该风机5的运转。As shown in Figures 3 and 4, a plurality of blowers 5 are arranged at intervals in the clean room 10, and the temperature sensors 1 and the wireless transmitting modules 2 are respectively connected to the tops of the blowers 5. Each of the fans 5 is provided with a sensing identification tag 51 , and the sensing identification tags 51 respectively detect the switch status, fault status and operation status of the fans 5 and generate a second identification signal S2 respectively. The wireless transmitting modules 2 respectively read the first identification signals S1 and the second identification signals S2, and each wireless receiving module 3 can receive the first identification signals S1 and the first identification signals of at least 50 wireless transmitting modules 2. The second identification signal S2. The man-machine interface 42 converts the first identification signals S1 and the second identification signals S2 into a predetermined signal format, and sends them to the monitor 41 and the computer 43 for reading respectively. The monitor 41 displays the first identification signals S1 and the second identification signals S2, so that the temperature of each area in the clean room 10 and the usage of the fan 5 can be known through the monitor 41, and the computer 43 can adjust the temperature and control the operation of the fan 5 according to the temperature of the clean room 10 .

本实用新型的无线温度监控装置,通过温度感测器1上的无线发射模组2以及与其相搭配的无线接收模组3,监控模组4可以全方位弹性地布置多组温度点,得以监控无尘室内10每一区域的温度变化状况,使得工作人员可以更精确地调整无尘室10内的温度。此外,也可以有效地节省大量线材,使得施工过程较为简化及方便。另一方面,将温度感测器1以及无线发射模组2连接在风机5上,监控模组4更可以进一步监控每一风机5的开关状况、故障状况及运转状况并根据该些状况加以控制风机5的运转。In the wireless temperature monitoring device of the present utility model, through the wireless transmitting module 2 on the temperature sensor 1 and the wireless receiving module 3 matched with it, the monitoring module 4 can flexibly arrange multiple groups of temperature points in all directions to monitor The temperature variation of each area in the clean room 10 enables the staff to adjust the temperature in the clean room 10 more precisely. In addition, a large number of wires can be effectively saved, making the construction process more simplified and convenient. On the other hand, the temperature sensor 1 and the wireless transmission module 2 are connected to the fan 5, and the monitoring module 4 can further monitor the switch status, fault status and operation status of each fan 5 and control them according to these conditions The operation of fan 5.

以上所述者,仅为本实用新型其中的较佳实施例而已,并非用来限定本实用新型的实施范围,即凡依本实用新型申请专利范围所做的均等变化与修饰,皆为本实用新型专利范围所涵盖。The above are only preferred embodiments of the present utility model, and are not used to limit the scope of implementation of the present utility model. Covered by the scope of new patents.

Claims (7)

1, a kind of wireless temperature supervising device is characterized in that, this wireless temperature supervising device is installed in the dust free room, and this wireless temperature supervising device comprises:
A plurality of temperature-sensitive stickers;
A plurality of wireless transmitting module, those wireless transmitting module are connected on those temperature-sensitive stickers, and those temperature-sensitive stickers are detected temperature and produced one first identification signal respectively, and those wireless transmitting module read those first identification signals;
A plurality of wireless receiving modules, those wireless transmitting module transmit those first identification signals respectively and read for those wireless receiving modules; And
One monitoring module, this monitoring module connects those wireless receiving modules, and those wireless receiving mould splits supplementary biographies give these first identification signals to read to this monitoring module.
2, wireless temperature supervising device as claimed in claim 1, it is characterized in that, this monitoring module comprises a monitor, a man-machine interface and a computer, this computer and this monitor connect this man-machine interface respectively, those wireless receiving modules connect this man-machine interface respectively, it is a predetermined signal type that this man-machine interface is changed those first identification signals, and is sent to this monitor and this computer reads.
3, wireless temperature supervising device as claimed in claim 1 is characterized in that, those wireless receiving modules receive first identification signal of the wireless transmitting module transmission of containing at least in 50 meters * 50 meters scopes.
4, wireless temperature supervising device as claimed in claim 1 is characterized in that, each receives first identification signal of at least 50 wireless transmitting module those wireless receiving modules.
5, wireless temperature supervising device as claimed in claim 1, it is characterized in that, be interval with a plurality of blower fans in this dust free room, those temperature-sensitive stickers and those wireless transmitting module are connected on those blower fans, respectively be provided with a sensing identification label on those blower fans, those sensing identification labels are detected the switch situation of those blower fans respectively, fault state and operational situation also produce one second identification signal respectively, those wireless transmitting module read those second identification signals and send to those wireless receiving modules and read, and those wireless receiving mould splits supplementary biographies give these second identification signals to read to this monitoring module.
6, wireless temperature supervising device as claimed in claim 5, it is characterized in that, this monitoring module comprises a monitor, a man-machine interface and a computer, this computer and this monitor connect this man-machine interface respectively, those wireless receiving modules connect this man-machine interface respectively, it is a predetermined signal type that this man-machine interface is changed those first and second identification signals, and sends this computer to and this monitor reads.
7, wireless temperature supervising device as claimed in claim 5 is characterized in that, each receives first and second identification signal of at least 50 wireless transmitting module those wireless receiving modules.
CNU2008201305346U 2008-07-04 2008-07-04 Wireless Temperature Monitoring Device Expired - Fee Related CN201229511Y (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
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Application Number Priority Date Filing Date Title
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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102004508A (en) * 2010-10-20 2011-04-06 襄樊市博亚机械有限公司 Temperature control device for ball cage coupling
CN102436271A (en) * 2011-10-19 2012-05-02 库博汽车标准配件(昆山)有限公司 Sealing strip surface temperature monitoring system
CN106444912A (en) * 2016-11-08 2017-02-22 吴锦珠 Wireless intelligent temperature control system

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102004508A (en) * 2010-10-20 2011-04-06 襄樊市博亚机械有限公司 Temperature control device for ball cage coupling
CN102436271A (en) * 2011-10-19 2012-05-02 库博汽车标准配件(昆山)有限公司 Sealing strip surface temperature monitoring system
CN106444912A (en) * 2016-11-08 2017-02-22 吴锦珠 Wireless intelligent temperature control system

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Granted publication date: 20090429

Termination date: 20110704