WO2022019368A1 - Terminal bloc temperature measurement device and apparatus comprising same - Google Patents

Terminal bloc temperature measurement device and apparatus comprising same Download PDF

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Publication number
WO2022019368A1
WO2022019368A1 PCT/KR2020/010327 KR2020010327W WO2022019368A1 WO 2022019368 A1 WO2022019368 A1 WO 2022019368A1 KR 2020010327 W KR2020010327 W KR 2020010327W WO 2022019368 A1 WO2022019368 A1 WO 2022019368A1
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WIPO (PCT)
Prior art keywords
pad
terminal block
temperature measuring
heat
terminal
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PCT/KR2020/010327
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French (fr)
Korean (ko)
Inventor
박창범
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선원하이텍(주)
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Publication of WO2022019368A1 publication Critical patent/WO2022019368A1/en

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    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R13/00Details of coupling devices of the kinds covered by groups H01R12/70 or H01R24/00 - H01R33/00
    • H01R13/66Structural association with built-in electrical component
    • H01R13/665Structural association with built-in electrical component with built-in electronic circuit
    • H01R13/6683Structural association with built-in electrical component with built-in electronic circuit with built-in sensor
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16BDEVICES FOR FASTENING OR SECURING CONSTRUCTIONAL ELEMENTS OR MACHINE PARTS TOGETHER, e.g. NAILS, BOLTS, CIRCLIPS, CLAMPS, CLIPS OR WEDGES; JOINTS OR JOINTING
    • F16B5/00Joining sheets or plates, e.g. panels, to one another or to strips or bars parallel to them
    • F16B5/02Joining sheets or plates, e.g. panels, to one another or to strips or bars parallel to them by means of fastening members using screw-thread
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01KMEASURING TEMPERATURE; MEASURING QUANTITY OF HEAT; THERMALLY-SENSITIVE ELEMENTS NOT OTHERWISE PROVIDED FOR
    • G01K7/00Measuring temperature based on the use of electric or magnetic elements directly sensitive to heat ; Power supply therefor, e.g. using thermoelectric elements
    • G01K7/02Measuring temperature based on the use of electric or magnetic elements directly sensitive to heat ; Power supply therefor, e.g. using thermoelectric elements using thermoelectric elements, e.g. thermocouples
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R9/00Structural associations of a plurality of mutually-insulated electrical connecting elements, e.g. terminal strips or terminal blocks; Terminals or binding posts mounted upon a base or in a case; Bases therefor
    • H01R9/22Bases, e.g. strip, block, panel
    • H01R9/24Terminal blocks
    • H01R9/2425Structural association with built-in components

Definitions

  • the present invention relates to a device for detecting the heat of terminals to which power is wired in devices such as earth leakage breaker and wiring breaker.
  • the earth leakage breaker 1 includes a connection pad 4 to which a plurality of power cables are connected, and each connection pad 4 and a power cable connected thereto are formed by barrier ribs to prevent interference with neighboring power cables.
  • a separate terminal connection area (2) is provided. Since the earth leakage breaker 1 has a small size, it is not easy to install a separate device to detect a fire that may occur in the earth leakage breaker. For this reason, conventionally, a balco tube using a soft PVC material for insulation and dustproof protection is used. The temperature change of each power cable is detected using the characteristics of
  • the present invention is to solve the problems of the prior art, and it is possible to detect the heat generated from each of a plurality of power cables without replacing a power distribution device such as an earth leakage breaker installed in the prior art to prevent a fire risk in advance.
  • An object of the present invention is to provide a measuring tool and a terminal block temperature measuring device including the same.
  • Terminal block temperature measuring sphere a metal heat-conducting pad tightly fastened to the power cable terminal; an insulating pad fixed to one end of the heat conduction pad; a thermal sensor electrically insulated from the thermal conduction pad by the insulating pad and disposed adjacent to one end of the thermal conduction pad to detect heat generated from the thermal conduction pad; It may be configured to include; a connector electrically connected to the thermal sensor.
  • the heat-conducting pad is characterized in that an opening capable of being fastened to the fastening bolt together with the power cable terminal is formed.
  • the insulating pad is characterized in that it is formed of a printed circuit board on which wiring for electrically connecting the connector and the thermal sensor is formed.
  • the heat conduction pad and the insulating pad are disposed to be perpendicular to each other.
  • One end of the heat conduction pad and one end of the insulating pad are formed in a concave-convex structure including protrusions and recesses, respectively, and are interlocked with each other.
  • the thermal sensor is characterized in that it is disposed on the protrusion of the concave-convex structure formed on the one end of the insulating pad.
  • the terminal block temperature measuring device together with the plurality of terminal block temperature measuring spheres, a plurality of plugs fastened to the connector provided in each of the terminal block temperature measuring spheres; It may be configured to include; a temperature calculation module for calculating the temperature information of the corresponding power cable based on the sensing information collected from the heat sensor provided in each of the plurality of terminal block temperature measuring spheres.
  • the terminal block temperature measuring device may further include a communication module for transmitting the temperature information calculated by the temperature calculation module to the outside.
  • the terminal block temperature measuring device By using the terminal block temperature measuring device according to the present invention, it is possible to more effectively prevent the occurrence of fire by detecting the heat generated by each power cable connected to the circuit breaker while using the existing circuit breaker as it is. In particular, using the terminal block temperature measuring device according to the present invention, since the temperature change of each of the plurality of power cables connected to the circuit breaker can be observed in real time, it is possible to immediately determine the power cable exhibiting an abnormal temperature change.
  • FIG. 1 is a perspective view showing an example of a conventional earth leakage breaker.
  • FIG. 2 is a schematic diagram showing a state in which the terminal block temperature measuring device according to the present invention is installed in a conventional earth leakage breaker.
  • FIG. 3 is a perspective view showing a terminal block temperature measuring tool according to the present invention.
  • FIG. 4 is a schematic diagram showing the configuration of a terminal block temperature measuring device according to the present invention.
  • FIG. 5 is an image showing an example of a bad crimping of a power cable terminal that caused a fire.
  • Terminal block temperature measuring sphere a metal heat-conducting pad tightly fastened to the power cable terminal; an insulating pad fixed to one end of the heat conduction pad; a thermal sensor electrically insulated from the thermal conduction pad by the insulating pad and disposed adjacent to one end of the thermal conduction pad to detect heat generated from the thermal conduction pad; It can be achieved by including; a connector electrically connected to the thermal sensor.
  • the heat conduction pad may have an opening capable of being fastened to a fastening bolt together with the power cable terminal.
  • the insulating pad may be formed of a printed circuit board on which wirings electrically connecting the connector and the thermal sensor are formed.
  • the heat conduction pad and the insulating pad are disposed to be perpendicular to each other.
  • one end of the heat conduction pad and one end of the insulating pad are formed in a concave-convex structure including protrusions and recesses, respectively, and interlock with each other.
  • the thermal sensor is preferably disposed on the protrusion of the concave-convex structure formed on the one end of the insulating pad.
  • the terminal block temperature measuring device together with the plurality of terminal block temperature measuring spheres, a plurality of plugs fastened to the connector provided in each of the terminal block temperature measuring spheres; It can be achieved by including; a temperature calculation module for calculating the temperature information of the corresponding power cable based on the sensing information collected from the heat sensor provided in each of the plurality of terminal block temperature measuring spheres.
  • the terminal block temperature measuring device may further include a communication module for transmitting the temperature information calculated by the temperature calculation module to the outside.
  • the earth leakage breaker 10 includes a connection pad 40 to which the terminal 51 of the power cable 50 can be fastened, and the terminal connection area 20 to which each terminal 51 is fastened is located on the partition wall 30 . separated by Although there is a very narrow interval between the bulkhead and the bulkhead, the terminal block temperature measuring tool 100 manufactured to a size that can be installed in the terminal connection area 20 where the terminal 51 is installed is installed at one end of the power cable 50 . It can be fixed to the connection pad 40 through the fastening bolt 60 together with the (51).
  • the inventor of the present invention studied the cause of fire occurring in a conventional earth leakage breaker, and found that the main cause was a defect in the crimping state of the electric wire and the terminal of the power cable. That is, in the case of self-heating of the power cable, the occurrence of overcurrent due to grounding or short-circuit, increase in contact resistance due to defective conductor connection, and ignition due to insulation breakdown due to deterioration of insulator are the causes of cable fire. cause In particular, as shown in FIG. 5 , when the compression state between the terminal and the computer bundle is poor, heat is generated in the wire bundle by vibration, thereby causing a fire.
  • this terminal block temperature measuring tool 100 is a metal heat-conducting pad 110 that is tightly coupled to the power cable terminal 51, and is fixed to one end of the heat-conducting pad 110.
  • the insulating pad 120 and the insulating pad 120 are electrically insulated from the heat conducting pad 110 and disposed adjacent to one end of the heat conducting pad 110 to dissipate the heat generated by the heat conducting pad 110 .
  • It is configured to include a thermal sensor 130 for sensing, and a connector 140 electrically connected to the thermal sensor 130 .
  • the thermal conductive pad 110 is preferably formed of a metal material having excellent thermal conductivity, and more preferably, may be formed using a metal such as copper having excellent thermal conductivity and electrical conductivity.
  • An opening 113 that can be fastened to the fastening bolt 60 together with the power cable terminal 51 may be formed in the heat conduction pad 110 , and the opening 113 is preferably formed like a circular through hole shown in FIG. 3 . However, its shape and shape can be variously deformed.
  • the thermal sensor 130 may use, for example, a thermistor as a means for sensing the heat generated by the thermal conductive pad 110 .
  • a thermistor is a resistance element that has a larger change in resistance depending on temperature than normal resistance, and is also called a thermosetting resistor.
  • PTC thermistor Physical Temperature Coefficient Thermistor
  • NTC thermistor Negative Temperature Coefficient Thermistor
  • various temperature sensors that detect a change in temperature due to heat generated by the heat conduction pad 110 and generate an electrical signal may be used.
  • the thermal sensor 130 may be disposed adjacent to one end of the thermal conductive pad 110 at one edge of the insulating pad 120 .
  • the thermal sensor 130 is disposed to be electrically insulated from the thermal conductive pad 110 by the insulating pad 120 provided on one side of the thermal conductive pad 110 .
  • An alternating current flows through the heat conduction pad 110 that is closely attached to the terminal 51 of the power cable 50 , and the thermal sensor 130 receives a direct current by the circuit module 200 , so the heat sensing
  • the sensor 130 and the thermal conductive pad 110 should be insulated by the insulating pad 120 .
  • the thermal sensor 130 is disposed as close as possible to the heat-conducting pad 110 , while preventing a short circuit with the alternating current flowing through the heat-conducting pad 110 .
  • the thermal sensor 130 must be insulated from the thermal conductive pad 110 by the insulating pad 120 .
  • One or more thermal sensors 130 may be installed as needed.
  • the insulating pad 120 may be formed in a predetermined area on one side of the thermal conductive pad 110 .
  • the insulation pad 120 may be fixed to one end of the heat conduction pad 110 , and it is preferable that the insulation pad 120 and the heat conduction pad 110 be disposed to be orthogonal to each other.
  • the terminal connection area 20 provided in the circuit breaker 10 is formed in a very narrow space, and the plug 230 and the connector 140 for electrically connecting the thermal sensor 130 to the circuit module 200 are mutually connected. It is preferable that the connecting area be disposed as far as possible from the fastening area of the terminal 51 of the power cable and the thermal conductive pad 110 .
  • One edge of the insulating pad 120 may be fixed to one edge of the thermal conductive pad 110 in a manner such as soldering. Notwithstanding (20), it is easy for an operator to install the terminal block temperature measuring tool 100 while the connection area of the plug 230 and the connector 140 does not interfere with the fastening area of the power cable terminal 51 .
  • the thermal sensor 130 may be disposed on one side of the insulating pad 120 adjacent to the heat conduction pad 110 , and the connector 140 may be disposed on the other side opposite to the insulating pad 120 .
  • the connector 140 is a means for electrical connection with the plug 230 extending from the circuit module 200 , and is electrically connected to the thermal sensor 130 .
  • the insulating pad 120 is preferably formed of a printed circuit board having a predetermined wiring therein.
  • the edges of both sides are formed in a concave-convex structure that can be interlocked with each other. That is, as shown in FIG. 3 , the protrusions 111 and 112 constituting the first concave-convex structure are formed at one end of the heat-conducting pad 110 , and the second concave-convex structure is formed at one end of the insulating pad 120 .
  • the protrusion 121 and the concave portion 121 are formed, and after the occlusion of the first concave-convex structure and the second concave-convex structure, when the heat conduction pad 110 and the insulating pad 120 are combined by a method such as soldering, it is structurally more robust. configurable.
  • the thermal sensor 130 in order for the thermal sensor 130 to more effectively respond to the heat generated by the thermal conductive pad 110 , the thermal sensor 130 has a protrusion 121 having a second concave-convex structure formed at one end of the insulating pad 120 .
  • the thermal sensor 130 can more effectively respond to the heat of the thermal conduction pad 110 .
  • each terminal block temperature measuring device 100 is connected to a circuit module by a connector 140 and a plug 230 . (200) is connected.
  • the circuit module 200 is a temperature calculation module that calculates temperature information for the corresponding power cable 50 based on the sensing information collected from the thermal sensor 130 provided in each of the plurality of terminal block temperature measuring spheres 100 . (210). That is, based on the sensing information of the thermal sensor 130 (eg, the resistance value of the thermistor) collected through the terminal block temperature measuring tool 100 to which the plug 230 having a predetermined identification position is connected, at the corresponding power cable terminal temperature can be calculated.
  • the communication module 220 may further include a communication module 220 for transmitting the temperature information for each of the heat sensor calculated by the temperature calculation module 210 to the outside.
  • the communication module 220 may communicate with the external management terminals 310 and 320 through a wired or wireless communication network.
  • the management terminals 310 and 320 may display temperature changes for each of the plurality of power cables through the temperature information corresponding to each power cable received from the communication module 220 . Therefore, the manager can check the temperature change of each power cable in real time through his/her management terminal without directly observing the circuit breaker.

Abstract

The terminal bloc temperature measurement device according to the present invention may comprise: a thermally conductive pad, made of metal, closely attached to a power cable terminal; an insulation pad fixed at one end of the thermally conductive pad; thermal sensors sensing heat generated by the thermally conductive pad due to proximity to one end thereof although electrically insulated therefrom by the insulation pad; and a connector electrically connected to the thermal sensors.

Description

단자대온도측정구 및 이를 포함하는 장치Terminal block temperature measuring device and device including same
본 발명은 누전차단기, 배선차단기 등의 장치에서 전원이 배선되는 단자의 열을 감지하기 위한 장치에 관한 것이다.The present invention relates to a device for detecting the heat of terminals to which power is wired in devices such as earth leakage breaker and wiring breaker.
일반적으로 주택이나 공장 등에 들어오는 전기의 전압은 삼상 22,900V로 고전압이므로, 수배전반을 통해 단상 200V의 저압으로 다운한 다음 각 요소로 분배하게 된다. 수배전반에는 고압의 전류가 인출입되기 때문에 아크 발생으로 인한 화재 위험을 방지하기 위하여, 수배전반 회로의 차단기를 트립시키는 등 안정장치가 마련된다. 수배전반의 화재 위험은 아크 발생 뿐만 아니라, 회로 내부의 온도 등에 의해 회로의 파손 및 고장이 발생될 수 있으므로, 이를 해결하고자 온도 및 아크를 검출하는 센서를 구비한 수배전반이 대한민국 공개특허공보 제2013-0137370호 등에 의해 개시되었다.In general, since the voltage of electricity entering a house or factory is high voltage as three-phase 22,900V, it is lowered to a single-phase low voltage of 200V through the switchgear and then distributed to each element. Since high-voltage current is drawn in and out of the switchgear, a safety device is provided, such as tripping the switchgear circuit breaker, in order to prevent a fire hazard due to arc generation. The risk of fire in the switchgear is not only due to arc generation, but also circuit breakage and failure due to the temperature inside the circuit. Ho et al.
한편, 일반적인 누전차단기(1)의 구조를 도 1에 도시하였다. 누전차단기(1)는 복수의 전력케이블이 연결되는 접속패드(4)를 포함하고, 각각의 접속패드(4) 및 이에 연결되는 전력케이블은 이웃하는 전력케이블과의 간섭을 방지하기 위해 격벽에 의해 분리된 단자접속영역(2)이 마련된다. 누전차단기(1)는 그 크기가 작기 때문에, 누전차단기에서 발생할 수 있는 화재를 감지하기 위해 별도의 장치를 설치하기가 용이하지 않다. 이 때문에, 종래에는 절연 및 방진 보호를 위한 연질 PVC 소재를 이용한 발코튜브(Balco Tube)를 이용하고 있는데, 발코튜브는 전력케이블의 전선과 단자의 체결부위에 설치되고, 온도에 따라 변색되는 발코튜브의 특성을 이용하여 각 전력케이블의 온도 변화를 감지하게 된다.Meanwhile, the structure of a general earth leakage breaker 1 is shown in FIG. 1 . The earth leakage breaker 1 includes a connection pad 4 to which a plurality of power cables are connected, and each connection pad 4 and a power cable connected thereto are formed by barrier ribs to prevent interference with neighboring power cables. A separate terminal connection area (2) is provided. Since the earth leakage breaker 1 has a small size, it is not easy to install a separate device to detect a fire that may occur in the earth leakage breaker. For this reason, conventionally, a balco tube using a soft PVC material for insulation and dustproof protection is used. The temperature change of each power cable is detected using the characteristics of
그러나, 발코튜브를 이용하는 경우, 사람이 직접 육안으로 발코튜브의 변색 여부를 확인해야 하므로, 전력케이블의 발열 상태 및 화재 발생을 즉각적으로 감지하고 대응하는 것이 사실상 곤란하다. 이러한 문제를 해결하기 위하여, 온도센서가 구비된 차단기를 이용하는 경우, 이미 설치된 차단기를 새로 교체해야 하는 비용이 발생할 뿐더러, 설치 환경에 따라 연결이 필요한 전력케이블의 개수의 차이로 인해 다양한 규격의 제품을 만들어야 하는 등, 현실적으로 적용하기 어려운 실정이다.However, in the case of using the balco tube, it is practically difficult to immediately detect and respond to the heat generation state of the power cable and the occurrence of a fire, since a person must directly check whether the balco tube is discolored with the naked eye. In order to solve this problem, when a circuit breaker equipped with a temperature sensor is used, the cost of replacing the circuit breaker that is already installed is increased, and products of various standards are required due to the difference in the number of power cables that need to be connected depending on the installation environment. It is difficult to apply in reality.
본 발명은 상술한 종래기술의 문제점을 해결하기 위한 것으로서, 기존에 설치된 누전차단기 등의 배전장치를 교체하지 않고도, 복수의 전력케이블 각각에서 발생되는 열을 감지하여 화재 위험을 미리 예방할 수 있는 단자대온도측정구 및 이를 포함하는 단자대온도측정장치를 제공하는 것을 목적으로 한다.The present invention is to solve the problems of the prior art, and it is possible to detect the heat generated from each of a plurality of power cables without replacing a power distribution device such as an earth leakage breaker installed in the prior art to prevent a fire risk in advance. An object of the present invention is to provide a measuring tool and a terminal block temperature measuring device including the same.
본 발명의 목적들은 이상에서 언급한 목적들로 제한되지 않으며, 언급되지 않은 또 다른 목적들은 아래의 기재로부터 명확하게 이해될 수 있을 것이다.Objects of the present invention are not limited to the objects mentioned above, and other objects not mentioned will be clearly understood from the description below.
본 발명에 따른 단자대온도측정구는, 전력케이블 단자에 밀착 체결되는 금속재질의 열전도패드; 상기 열전도패드의 일단에 고정된 절연패드; 상기 절연패드에 의해 상기 열전도패드와 전기적으로 절연되되 상기 열전도패드의 일단과 인접하게 배치되어 상기 열전도패드에서 발생된 열을 감지하는 열감지센서; 상기 열감지센서와 전기적으로 연결된 커넥터;를 포함하여 구성될 수 있다.Terminal block temperature measuring sphere according to the present invention, a metal heat-conducting pad tightly fastened to the power cable terminal; an insulating pad fixed to one end of the heat conduction pad; a thermal sensor electrically insulated from the thermal conduction pad by the insulating pad and disposed adjacent to one end of the thermal conduction pad to detect heat generated from the thermal conduction pad; It may be configured to include; a connector electrically connected to the thermal sensor.
여기서, 상기 열전도패드는 상기 전력케이블 단자와 함께 체결볼트에 체결가능한 개구가 형성된 것을 특징으로 한다.Here, the heat-conducting pad is characterized in that an opening capable of being fastened to the fastening bolt together with the power cable terminal is formed.
상기 절연패드는 상기 커넥터 및 상기 열감지센서를 전기적으로 연결하는 배선이 형성된 인쇄회로기판으로 형성된 것을 특징으로 한다.The insulating pad is characterized in that it is formed of a printed circuit board on which wiring for electrically connecting the connector and the thermal sensor is formed.
상기 열전도패드 및 상기 절연패드는 서로 직교하도록 배치된 것을 특징으로 한다.The heat conduction pad and the insulating pad are disposed to be perpendicular to each other.
상기 열전도패드의 일단 및 상기 절연패드의 일단은 각각 돌부 및 요부를 포함하는 요철 구조로 형성되어 상호 교합된 것을 특징으로 한다.One end of the heat conduction pad and one end of the insulating pad are formed in a concave-convex structure including protrusions and recesses, respectively, and are interlocked with each other.
상기 열감지센서는 상기 절연패드의 상기 일단에 형성된 상기 요철구조의 상기 돌부에 배치된 것을 특징으로 한다.The thermal sensor is characterized in that it is disposed on the protrusion of the concave-convex structure formed on the one end of the insulating pad.
다른 측면에서, 본 발명에 따른 단자대온도측정장치는, 상술한 복수의 단자대온도측정구와 함께, 각각의 단자대온도측정구에 마련된 상기 커넥터와 체결되는 복수의 플러그; 상기 복수의 단자대온도측정구 각각에 마련된 상기 열감지센서로부터 수집된 센싱정보를 기초로 대응하는 상기 전력케이블에 대한 온도정보를 산출하는 온도산출모듈;을 포함하여 구성될 수 있다.In another aspect, the terminal block temperature measuring device according to the present invention, together with the plurality of terminal block temperature measuring spheres, a plurality of plugs fastened to the connector provided in each of the terminal block temperature measuring spheres; It may be configured to include; a temperature calculation module for calculating the temperature information of the corresponding power cable based on the sensing information collected from the heat sensor provided in each of the plurality of terminal block temperature measuring spheres.
나아가, 본 발명에 따른 단자대온도측장장치는, 상기 온도산출모듈에 의해 산출된 상기 온도정보를 외부로 송출하는 통신모듈을 더 포함할 수 있다.Furthermore, the terminal block temperature measuring device according to the present invention may further include a communication module for transmitting the temperature information calculated by the temperature calculation module to the outside.
본 발명에 따른 단자대온도측정구를 이용하면 기존에 설치된 차단기를 그대로 사용하면서도 차단기에 연결된 각 전력케이블에서 발생되는 열을 감지하여 화재 발생을 더욱 효과적으로 예방할 수 있다. 특히, 본 발명에 따른 단자대온도측정장치를 이용하면, 차단기에 연결된 복수의 전력케이블 각각에 대한 온도변화를 실시간으로 관측할 수 있으므로, 비정상적인 온도 변화를 보이는 전력케이블을 즉각적으로 판별할 수 있다.By using the terminal block temperature measuring device according to the present invention, it is possible to more effectively prevent the occurrence of fire by detecting the heat generated by each power cable connected to the circuit breaker while using the existing circuit breaker as it is. In particular, using the terminal block temperature measuring device according to the present invention, since the temperature change of each of the plurality of power cables connected to the circuit breaker can be observed in real time, it is possible to immediately determine the power cable exhibiting an abnormal temperature change.
도 1은 종래의 누전차단기의 일례를 도시한 사시도이다.1 is a perspective view showing an example of a conventional earth leakage breaker.
도 2는 본 발명에 따른 단자대온도측정구를 종래의 누전차단기에 설치하는 상태를 도시한 개요도이다.2 is a schematic diagram showing a state in which the terminal block temperature measuring device according to the present invention is installed in a conventional earth leakage breaker.
도 3은 본 발명에 따른 단자대온도측정구를 도시한 사시도이다.3 is a perspective view showing a terminal block temperature measuring tool according to the present invention.
도 4는 본 발명에 따른 단자대온도측정장치의 구성을 도시한 개요도이다.4 is a schematic diagram showing the configuration of a terminal block temperature measuring device according to the present invention.
도 5는 화재 발생의 원인이 된 전력케이블 단자의 압착 불량 사례를 보여주는 이미지이다.5 is an image showing an example of a bad crimping of a power cable terminal that caused a fire.
본 발명에 따른 단자대온도측정구는, 전력케이블 단자에 밀착 체결되는 금속재질의 열전도패드; 상기 열전도패드의 일단에 고정된 절연패드; 상기 절연패드에 의해 상기 열전도패드와 전기적으로 절연되되 상기 열전도패드의 일단과 인접하게 배치되어 상기 열전도패드에서 발생된 열을 감지하는 열감지센서; 상기 열감지센서와 전기적으로 연결된 커넥터;를 포함하여 달성될 수 있다.Terminal block temperature measuring sphere according to the present invention, a metal heat-conducting pad tightly fastened to the power cable terminal; an insulating pad fixed to one end of the heat conduction pad; a thermal sensor electrically insulated from the thermal conduction pad by the insulating pad and disposed adjacent to one end of the thermal conduction pad to detect heat generated from the thermal conduction pad; It can be achieved by including; a connector electrically connected to the thermal sensor.
여기서, 상기 열전도패드는 상기 전력케이블 단자와 함께 체결볼트에 체결가능한 개구가 형성될 수 있다.Here, the heat conduction pad may have an opening capable of being fastened to a fastening bolt together with the power cable terminal.
상기 절연패드는 상기 커넥터 및 상기 열감지센서를 전기적으로 연결하는 배선이 형성된 인쇄회로기판으로 형성될 수 있다.The insulating pad may be formed of a printed circuit board on which wirings electrically connecting the connector and the thermal sensor are formed.
상기 열전도패드 및 상기 절연패드는 서로 직교하도록 배치된 것이 바람직하다.Preferably, the heat conduction pad and the insulating pad are disposed to be perpendicular to each other.
상기 열전도패드의 일단 및 상기 절연패드의 일단은 각각 돌부 및 요부를 포함하는 요철 구조로 형성되어 상호 교합된 것이 바람직하다.It is preferable that one end of the heat conduction pad and one end of the insulating pad are formed in a concave-convex structure including protrusions and recesses, respectively, and interlock with each other.
상기 열감지센서는 상기 절연패드의 상기 일단에 형성된 상기 요철구조의 상기 돌부에 배치된 것이 바람직하다.The thermal sensor is preferably disposed on the protrusion of the concave-convex structure formed on the one end of the insulating pad.
다른 측면에서, 본 발명에 따른 단자대온도측정장치는, 상술한 복수의 단자대온도측정구와 함께, 각각의 단자대온도측정구에 마련된 상기 커넥터와 체결되는 복수의 플러그; 상기 복수의 단자대온도측정구 각각에 마련된 상기 열감지센서로부터 수집된 센싱정보를 기초로 대응하는 상기 전력케이블에 대한 온도정보를 산출하는 온도산출모듈;을 포함하여 달성될 수 있다.In another aspect, the terminal block temperature measuring device according to the present invention, together with the plurality of terminal block temperature measuring spheres, a plurality of plugs fastened to the connector provided in each of the terminal block temperature measuring spheres; It can be achieved by including; a temperature calculation module for calculating the temperature information of the corresponding power cable based on the sensing information collected from the heat sensor provided in each of the plurality of terminal block temperature measuring spheres.
나아가, 본 발명에 따른 단자대온도측장장치는, 상기 온도산출모듈에 의해 산출된 상기 온도정보를 외부로 송출하는 통신모듈을 더 포함할 수 있다.Furthermore, the terminal block temperature measuring device according to the present invention may further include a communication module for transmitting the temperature information calculated by the temperature calculation module to the outside.
본 발명은 다양한 변경을 가할 수 있고 여러 가지 실시예를 가질 수 있는 바, 특정 실시예들을 도면에 예시하고 이를 상세한 설명을 통해 상세히 설명하고자 한다. 그러나, 이는 본 발명을 특정한 실시 형태에 대해 한정하려는 것이 아니며, 본 발명의 사상 및 기술 범위에 포함되는 모든 변경, 균등물 내지 대체물을 포함하는 것으로 이해되어야 한다.Since the present invention can have various changes and can have various embodiments, specific embodiments are illustrated in the drawings and will be described in detail through the detailed description. However, this is not intended to limit the present invention to specific embodiments, and it should be understood to include all modifications, equivalents and substitutes included in the spirit and scope of the present invention.
본 발명을 설명함에 있어서, 관련된 공지 기술에 대한 구체적인 설명이 본 발명의 요지를 불필요하게 흐릴 수 있다고 판단되는 경우, 그에 대한 상세한 설명을 생략한다. 또한, 본 명세서의 설명 과정에서 이용되는 숫자(예를 들어, 제1, 제2 등)는 하나의 구성요소를 다른 구성요소와 구분하기 위한 식별기호에 불과하다.In describing the present invention, if it is determined that a detailed description of a related known technology may unnecessarily obscure the gist of the present invention, a detailed description thereof will be omitted. In addition, numbers (eg, first, second, etc.) used in the description process of the present specification are only identification symbols for distinguishing one component from other components.
이하, 첨부된 도면들을 참조하여 본 발명의 실시를 위한 구체적인 내용을 설명하도록 한다.Hereinafter, detailed contents for practicing the present invention will be described with reference to the accompanying drawings.
도 2는 본 발명에 따른 단자대온도측정구(100)를 종래의 누전차단기(10)에 설치하는 상태를 도시한 개요도이다. 누전차단기(10)는 전력케이블(50)의 단자(51)가 체결될 수 있는 접속패드(40)를 구비하고, 각 단자(51)가 체결되는 단자접속영역(20)은 격벽(30)에 의해 분리된다. 격벽과 격벽 사이는 매우 좁은 간격으로 되어 있으나, 단자(51)가 설치되는 단자접속영역(20)에 설치가능한 치수로 제작된 단자대온도측정구(100)를 전력케이블(50)의 일단에 설치된 단자(51)와 함께 체결볼트(60)를 통해 접속패드(40)에 고정할 수 있다.2 is a schematic diagram showing a state in which the terminal block temperature measuring tool 100 according to the present invention is installed in the conventional earth leakage breaker 10. As shown in FIG. The earth leakage breaker 10 includes a connection pad 40 to which the terminal 51 of the power cable 50 can be fastened, and the terminal connection area 20 to which each terminal 51 is fastened is located on the partition wall 30 . separated by Although there is a very narrow interval between the bulkhead and the bulkhead, the terminal block temperature measuring tool 100 manufactured to a size that can be installed in the terminal connection area 20 where the terminal 51 is installed is installed at one end of the power cable 50 . It can be fixed to the connection pad 40 through the fastening bolt 60 together with the (51).
본 발명의 발명자는 종래의 누전차단기에서 발생되는 화재 원인을 연구한 결과, 전력케이블의 전선과 단자의 압착 상태의 불량이 주된 원인임을 알게 되었다. 즉, 전력케이블 자체 발열의 경우, 지락(Grounding) 또는 단락(Short-Circuit)에 의한 과전류 발생, 도체접속부의 불량에 의한 접촉저항의 증가, 절연체의 열화로 인한 절연파괴에 따른 발화가 케이블 화재의 원인이 된다. 특히, 도 5에서 보듯이, 단자와 전산 다발 사이의 압착상태가 불량한 경우, 진동에 의해 전선 다발에서 열이 발생되며 그에 의해 화재가 유발된다. 또한, 단자와 접속패드 사이의 볼트 조임이 불량한 경우에도 진동에 의해 열이 발생되어 화재의 원인이 될 수 있다. 즉, 차단기 자체의 과열 등이 원인이 되기도 하지만, 주된 원인은 각 전력케이블의 단자 영역에서 발생하게 된다. 따라서, 차단기 본체 자체의 온도만을 감지하는 것은 화재 예방에 미흡하다. 열은 "H=I2RT"(H는 열량, I는 전류, R은 저항, T는 시간)이므로, 과부하 발생 또는 절연 파괴 시에는 전류의 제곱 및 시간에 비례한다. 따라서, 전력케이블에서 발생되는 열을 직접적으로 감지할 수 있어야 순식간에 발생하는 발열 및 발화에 효과적으로 대응할 수 있다.The inventor of the present invention studied the cause of fire occurring in a conventional earth leakage breaker, and found that the main cause was a defect in the crimping state of the electric wire and the terminal of the power cable. That is, in the case of self-heating of the power cable, the occurrence of overcurrent due to grounding or short-circuit, increase in contact resistance due to defective conductor connection, and ignition due to insulation breakdown due to deterioration of insulator are the causes of cable fire. cause In particular, as shown in FIG. 5 , when the compression state between the terminal and the computer bundle is poor, heat is generated in the wire bundle by vibration, thereby causing a fire. In addition, even when the bolts between the terminal and the connection pad are poorly tightened, heat may be generated by vibration and cause a fire. That is, overheating of the circuit breaker itself may be the cause, but the main cause is in the terminal area of each power cable. Therefore, sensing only the temperature of the circuit breaker body itself is insufficient for fire prevention. Since heat is "H=I 2 RT" (H is heat quantity, I is current, R is resistance, T is time), it is proportional to the square of the current and time in case of overload or dielectric breakdown. Therefore, it is necessary to be able to directly sense the heat generated from the power cable to effectively respond to heat and ignition occurring in an instant.
이를 위해서, 본 단자대온도측정구(100)는, 도 3에서 보듯이, 전력케이블 단자(51)에 밀착 체결되는 금속재질의 열전도패드(110)와, 상기 열전도패드(110)의 일단에 고정된 절연패드(120)와, 상기 절연패드(120)에 의해 상기 열전도패드(110)와 전기적으로 절연되되 상기 열전도패드(110)의 일단과 인접하게 배치되어 상기 열전도패드(110)에서 발생된 열을 감지하는 열감지센서(130)와, 상기 열감지센서(130)와 전기적으로 연결된 커넥터(140)를 포함하여 구성된다.To this end, this terminal block temperature measuring tool 100, as shown in FIG. 3, is a metal heat-conducting pad 110 that is tightly coupled to the power cable terminal 51, and is fixed to one end of the heat-conducting pad 110. The insulating pad 120 and the insulating pad 120 are electrically insulated from the heat conducting pad 110 and disposed adjacent to one end of the heat conducting pad 110 to dissipate the heat generated by the heat conducting pad 110 . It is configured to include a thermal sensor 130 for sensing, and a connector 140 electrically connected to the thermal sensor 130 .
여기서, 열전도패드(110)는 열전도도가 우수한 금속재질로 형성되는 것이 바람직하고, 더욱 바람직하게는 열전도도 및 전기전도도가 우수한 구리 등과 같은 금속을 이용하여 형성될 수 있다. 열전도패드(110)에는 전력케이블 단자(51)와 함께 체결볼트(60)에 체결가능한 개구(113)가 형성될 수 있으며, 개구(113)는 도 3에 도시한 원형 관통구와 같이 형성되는 것이 바람직하나, 그 형상 및 모양은 다양하게 변형 가능하다.Here, the thermal conductive pad 110 is preferably formed of a metal material having excellent thermal conductivity, and more preferably, may be formed using a metal such as copper having excellent thermal conductivity and electrical conductivity. An opening 113 that can be fastened to the fastening bolt 60 together with the power cable terminal 51 may be formed in the heat conduction pad 110 , and the opening 113 is preferably formed like a circular through hole shown in FIG. 3 . However, its shape and shape can be variously deformed.
열감지센서(130)는 열전도패드(110)에서 발생된 열을 감지하기 위한 수단으로서, 예컨대 서미스터(Thermistor)를 이용할 수 있다. 서미스터는 보통의 저항에 비해 온도에 따른 저항의 변화가 크게 만든 저항 소자를 말하며, 열가변저항기라고도 한다. 온도가 높아지면 저항이 증가하는 PTC 서미스터(Positive Temperature Coefficient Thermistor)와, 온도가 높아지면 저항이 감소하는 NTC 서미스터(Negative Temperature Coefficient Thermistor)가 있다. 이외에도, 열전도패드(110)에서 발생된 열로 인한 온도변화를 감지하여 전기신호를 내는 다양한 온도센서를 이용할 수 있다.The thermal sensor 130 may use, for example, a thermistor as a means for sensing the heat generated by the thermal conductive pad 110 . A thermistor is a resistance element that has a larger change in resistance depending on temperature than normal resistance, and is also called a thermosetting resistor. There is a PTC thermistor (Positive Temperature Coefficient Thermistor), which increases resistance as the temperature increases, and NTC thermistor (Negative Temperature Coefficient Thermistor), which decreases resistance as the temperature increases. In addition, various temperature sensors that detect a change in temperature due to heat generated by the heat conduction pad 110 and generate an electrical signal may be used.
특히, 열감지센서(130)는 절연패드(120)의 일측 가장자리에서 열전도패드(110)의 일단과 인접하게 배치될 수 있다. 특히, 열전도패드(110)의 일측에 마련된 절연패드(120)에 의해, 열감지센서(130)가 열전도패드(110)와 전기적으로 절연되도록 배치된다. 전력케이블(50)의 단자(51)에 밀착되어 체결되는 열전도패드(110)에는 교류 전류가 흐르는 상태이고, 열감지센서(130)는 회로모듈(200)에 의해 직류 전류가 흐르게 되므로, 열감지센서(130) 및 열전도패드(110)는 절연패드(120)에 의해 절연될 수 있어야 한다. 즉, 열전도패드(110)에서 발생된 열에 대한 감응력을 향상시키기 위해 열감지센서(130)가 열전도패드(110)에 가능한 인접하게 배치되면서도, 열전도패드(110)에 흐르는 교류 전류와의 단락을 방지하기 위해 열감지센서(130)가 절연패드(120)에 의해 열전도패드(110)와 절연된 상태로 배치되어야 한다. 열감지센서(130)는 필요에 따라 1개 이상으로 설치될 수 있다.In particular, the thermal sensor 130 may be disposed adjacent to one end of the thermal conductive pad 110 at one edge of the insulating pad 120 . In particular, the thermal sensor 130 is disposed to be electrically insulated from the thermal conductive pad 110 by the insulating pad 120 provided on one side of the thermal conductive pad 110 . An alternating current flows through the heat conduction pad 110 that is closely attached to the terminal 51 of the power cable 50 , and the thermal sensor 130 receives a direct current by the circuit module 200 , so the heat sensing The sensor 130 and the thermal conductive pad 110 should be insulated by the insulating pad 120 . That is, in order to improve the sensitivity to heat generated by the heat-conducting pad 110 , the thermal sensor 130 is disposed as close as possible to the heat-conducting pad 110 , while preventing a short circuit with the alternating current flowing through the heat-conducting pad 110 . In order to do this, the thermal sensor 130 must be insulated from the thermal conductive pad 110 by the insulating pad 120 . One or more thermal sensors 130 may be installed as needed.
또한, 절연패드(120)는 열전도패드(110) 일측의 소정 영역에 형성될 수 있다. 특히 절연패드(120)를 소정 치수의 패널 형태로 제조한 후 열전도패드(110)의 일단에 고정될 수 있으며, 열전도패드(110)와 서로 직교하도록 배치되는 것이 좋다. 차단기(10)에 마련된 단자접속영역(20)은 매우 좁은 공간으로 형성되어 있는데, 열감지센서(130)를 회로모듈(200)과 전기적으로 연결하기 위한 플러그(230) 및 커넥터(140)를 상호 접속하는 영역이, 전력케이블의 단자(51) 및 열전도패드(110)의 체결 영역과 되도록 멀리 배치되는 것이 바람직하다. 절연패드(120)의 일측 가장자리는 열전도패드(110)의 일측 가장자리에 솔더링 등과 같은 방식으로 고정될 수 있으며, 절연패드(120)가 상측으로 연장된 구조로 형성되면, 차단기에 형성된 좁은 단자접속영역(20)에도 불구하고, 플러그(230) 및 커넥터(140)의 접속 영역이 전력케이블 단자(51)의 체결 영역에 간섭되지 않으면서 작업자가 단자대온도측정구(100)를 설치하기가 용이하다.In addition, the insulating pad 120 may be formed in a predetermined area on one side of the thermal conductive pad 110 . In particular, after the insulation pad 120 is manufactured in the form of a panel having a predetermined size, it may be fixed to one end of the heat conduction pad 110 , and it is preferable that the insulation pad 120 and the heat conduction pad 110 be disposed to be orthogonal to each other. The terminal connection area 20 provided in the circuit breaker 10 is formed in a very narrow space, and the plug 230 and the connector 140 for electrically connecting the thermal sensor 130 to the circuit module 200 are mutually connected. It is preferable that the connecting area be disposed as far as possible from the fastening area of the terminal 51 of the power cable and the thermal conductive pad 110 . One edge of the insulating pad 120 may be fixed to one edge of the thermal conductive pad 110 in a manner such as soldering. Notwithstanding (20), it is easy for an operator to install the terminal block temperature measuring tool 100 while the connection area of the plug 230 and the connector 140 does not interfere with the fastening area of the power cable terminal 51 .
절연패드(120)가 열전도패드(110)에 인접한 일측에 열감지센서(130)가 배치되고, 대향하는 타측에는 커넥터(140)가 배치될 수 있다. 커넥터(140)는 회로모듈(200)로부터 연장된 플러그(230)와의 전기적 접속을 위한 수단으로서, 열감지센서(130)와 전기적으로 연결되어 있다. 이때 절연패드(120)는 내부에 소정의 배선이 형성된 인쇄회로기판으로 형성되는 것이 바람직하다.The thermal sensor 130 may be disposed on one side of the insulating pad 120 adjacent to the heat conduction pad 110 , and the connector 140 may be disposed on the other side opposite to the insulating pad 120 . The connector 140 is a means for electrical connection with the plug 230 extending from the circuit module 200 , and is electrically connected to the thermal sensor 130 . In this case, the insulating pad 120 is preferably formed of a printed circuit board having a predetermined wiring therein.
한편, 절연패드(120) 및 열전도패드(110)의 결합을 강화하기 위하여, 양측의 각 가장자리는 상호 교합 가능한 요철 구조로 형성되는 것이 더욱 바람직하다. 즉, 도 3에서 보듯이, 열전도패드(110)의 일단에는 제1 요철구조를 구성하는 돌부(111) 및 요부(112)가 형성되고, 절연패드(120)의 일단에는 제2 요철구조를 구성하는 돌부(121) 및 요부(121)가 형성되어, 제1 요철구조 및 제2 요철구조의 교합 후 솔더링 등과 같은 방법으로 열전도패드(110) 및 절연패드(120)를 결합하면 구조적으로 더욱 견고하게 구성할 수 있다. 이때, 열감지센서(130)가 열전도패드(110)에서 발생된 열에 더욱 효과적으로 감응하게 하기 위하여, 열감지센서(130)는 절연패드(120)의 일단에 형성된 제2 요철구조의 돌부(121)에 배치되는 것이 더욱 바람직하다. 특히, 열감지센서(130)를 제1 요철구조의 이웃하는 2개의 요부(112) 사이에 끼워지는 제2 요철구조의 돌부(121)에 배치하면, 3개의 면이 열전도패드(110)에 둘러싸인 상태가 되므로, 열감지센서(130)가 열전도패드(110)의 열에 더 효과적으로 감응될 수 있다.On the other hand, in order to strengthen the coupling between the insulating pad 120 and the heat conductive pad 110 , it is more preferable that the edges of both sides are formed in a concave-convex structure that can be interlocked with each other. That is, as shown in FIG. 3 , the protrusions 111 and 112 constituting the first concave-convex structure are formed at one end of the heat-conducting pad 110 , and the second concave-convex structure is formed at one end of the insulating pad 120 . The protrusion 121 and the concave portion 121 are formed, and after the occlusion of the first concave-convex structure and the second concave-convex structure, when the heat conduction pad 110 and the insulating pad 120 are combined by a method such as soldering, it is structurally more robust. configurable. At this time, in order for the thermal sensor 130 to more effectively respond to the heat generated by the thermal conductive pad 110 , the thermal sensor 130 has a protrusion 121 having a second concave-convex structure formed at one end of the insulating pad 120 . It is more preferable to be placed in In particular, when the heat sensor 130 is disposed on the protrusion 121 of the second concave-convex structure that is sandwiched between the two adjacent concave portions 112 of the first concave-convex structure, the three surfaces are surrounded by the heat conduction pad 110 . In this state, the thermal sensor 130 can more effectively respond to the heat of the thermal conduction pad 110 .
차단기에 연결되는 복수의 전력케이블(50)에 대응하여 일대일로 단자대온도측정구(100)가 설치된 상태에서, 각 단자대온도측정구(100)는 커넥터(140) 및 플러그(230)에 의해 회로모듈(200)에 연결된다. 회로모듈(200)은, 복수의 단자대온도측정구(100) 각각에 마련된 열감지센서(130)로부터 수집된 센싱정보를 기초로 대응하는 전력케이블(50)에 대한 온도정보를 산출하는 온도산출모듈(210)을 포함한다. 즉, 미리 정해진 식별위치를 갖는 플러그(230)가 연결된 단자대온도측정구(100)를 통해서 수집되는 열감지센서(130)의 센싱정보(예컨대, 서미스터의 저항값)를 기초로 해당 전력케이블 단자에서의 온도를 산출할 수 있다. 또한, 온도산출모듈(210)에 의해 산출된 해당 열감지센서 각각에 대한 온도정보를 외부로 송출하는 통신모듈(220)을 더 포함할 수 있다. 여기서, 통신모듈(220)은, 외부의 관리단말(310, 320)과 유선 또는 무선 통신망을 통해 통신할 수 있다. 관리단말(310, 320)은 통신모듈(220)로부터 수신된 각 전력케이블에 대응하는 온도정보를 통해, 복수의 전력케이블 각각에 대한 온도변화를 표시할 수 있다. 그러므로, 관리자는 차단기를 직접 관찰하지 않고도 자신의 관리단말을 통해 전력케이블 각각에 대한 온도변화를 실시간으로 확인할 수 있다. In a state in which one-to-one terminal block temperature measuring devices 100 are installed corresponding to the plurality of power cables 50 connected to the circuit breaker, each terminal block temperature measuring device 100 is connected to a circuit module by a connector 140 and a plug 230 . (200) is connected. The circuit module 200 is a temperature calculation module that calculates temperature information for the corresponding power cable 50 based on the sensing information collected from the thermal sensor 130 provided in each of the plurality of terminal block temperature measuring spheres 100 . (210). That is, based on the sensing information of the thermal sensor 130 (eg, the resistance value of the thermistor) collected through the terminal block temperature measuring tool 100 to which the plug 230 having a predetermined identification position is connected, at the corresponding power cable terminal temperature can be calculated. In addition, it may further include a communication module 220 for transmitting the temperature information for each of the heat sensor calculated by the temperature calculation module 210 to the outside. Here, the communication module 220 may communicate with the external management terminals 310 and 320 through a wired or wireless communication network. The management terminals 310 and 320 may display temperature changes for each of the plurality of power cables through the temperature information corresponding to each power cable received from the communication module 220 . Therefore, the manager can check the temperature change of each power cable in real time through his/her management terminal without directly observing the circuit breaker.
지금까지 본 발명의 바람직한 실시예에 대해 설명하였으나, 본 발명이 속하는 기술분야에서 통상의 지식을 가진 자는 본 발명의 본질적인 특성을 벗어나지 않는 범위 내에서 변형된 형태로 구현할 수 있을 것이다. 그러므로 여기서 설명한 본 발명의 실시예는 한정적인 관점이 아니라 설명적인 관점에서 고려되어야 하고, 본 발명의 범위는 상술한 설명이 아니라 특허청구범위에 나타나 있으며, 그와 동등한 범위 내에 있는 모든 차이점은 본 발명에 포함되는 것으로 해석되어야 한다.Although preferred embodiments of the present invention have been described so far, those of ordinary skill in the art to which the present invention pertains will be able to implement it in a modified form within the scope without departing from the essential characteristics of the present invention. Therefore, the embodiments of the present invention described herein should be considered in an illustrative rather than a restrictive view, and the scope of the present invention is indicated in the claims rather than in the above description, and all differences within the equivalent scope are the present invention. should be construed as being included in

Claims (8)

  1. 전력케이블 단자에 밀착 체결되는 금속재질의 열전도패드;a thermal conductive pad made of a metal material that is tightly fastened to the power cable terminal;
    상기 열전도패드의 일단에 고정된 절연패드;an insulating pad fixed to one end of the heat conduction pad;
    상기 절연패드에 의해 상기 열전도패드와 전기적으로 절연되되 상기 열전도패드의 일단과 인접하게 배치되어 상기 열전도패드에서 발생된 열을 감지하는 열감지센서;a thermal sensor electrically insulated from the thermal conduction pad by the insulating pad and disposed adjacent to one end of the thermal conduction pad to detect heat generated from the thermal conduction pad;
    상기 열감지센서와 전기적으로 연결된 커넥터;a connector electrically connected to the thermal sensor;
    를 포함하는, 단자대온도측정구.Including, the terminal block thermometer.
  2. 제 1 항에 있어서,The method of claim 1,
    상기 열전도패드는 상기 전력케이블 단자와 함께 체결볼트에 체결가능한 개구가 형성된 것을 특징으로 하는, 단자대온도측정구.The heat-conducting pad is characterized in that the opening that can be fastened to the fastening bolt together with the power cable terminal is formed, the terminal block temperature measuring tool.
  3. 제 1 항에 있어서,The method of claim 1,
    상기 절연패드는 상기 커넥터 및 상기 열감지센서를 전기적으로 연결하는 배선이 형성된 인쇄회로기판으로 형성된 것을 특징으로 하는, 단자대온도측정구.The insulating pad is a terminal block temperature measuring device, characterized in that formed of a printed circuit board on which wiring for electrically connecting the connector and the thermal sensor is formed.
  4. 제 1 항에 있어서, The method of claim 1,
    상기 열전도패드 및 상기 절연패드는 서로 직교하도록 배치된 것을 특징으로 하는, 단자대온도측정구.The heat-conducting pad and the insulating pad, characterized in that arranged to be perpendicular to each other, terminal block thermometer.
  5. 제 1 항에 있어서,The method of claim 1,
    상기 열전도패드의 일단 및 상기 절연패드의 일단은 각각 돌부 및 요부를 포함하는 요철 구조로 형성되어 상호 교합된 것을 특징으로 하는, 단자대온도측정구.One end of the heat conduction pad and one end of the insulating pad are formed in a concave-convex structure including protrusions and recesses, respectively, and are interlocked with each other.
  6. 제 5 항에 있어서,6. The method of claim 5,
    상기 열감지센서는 상기 절연패드의 상기 일단에 형성된 상기 요철구조의 상기 돌부에 배치된 것을 특징으로 하는, 단자대온도측정구.The thermal sensor is a terminal block temperature measuring device, characterized in that disposed on the protrusion of the concave-convex structure formed on the one end of the insulating pad.
  7. 제 1 항 내지 제 6항 중 어느 한 항에 따른 복수의 단자대온도측정구;A plurality of terminal block temperature measuring spheres according to any one of claims 1 to 6;
    상기 복수의 단자대온도측정구 각각에 마련된 상기 커넥터와 체결되는 복수의 플러그;a plurality of plugs coupled to the connectors provided in each of the plurality of terminal block temperature measuring spheres;
    상기 복수의 단자대온도측정구 각각에 마련된 상기 열감지센서로부터 수집된 센싱정보를 기초로 대응하는 상기 전력케이블에 대한 온도정보를 산출하는 온도산출모듈;을 포함하는, 단자대온도측정장치.A terminal block temperature measuring device comprising a; a temperature calculation module for calculating temperature information for the corresponding power cable based on the sensing information collected from the heat sensor provided in each of the plurality of terminal block temperature measuring spheres.
  8. 제 7 항에 있어서,8. The method of claim 7,
    상기 온도산출모듈에 의해 산출된 상기 온도정보를 외부로 송출하는 통신모듈을 더 포함하는 것을 특징으로 하는, 단자대온도측정장치.Terminal block temperature measuring device, characterized in that it further comprises a communication module for transmitting the temperature information calculated by the temperature calculation module to the outside.
PCT/KR2020/010327 2020-07-21 2020-08-05 Terminal bloc temperature measurement device and apparatus comprising same WO2022019368A1 (en)

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KR1020200090556A KR102283300B1 (en) 2020-07-21 2020-07-21 Terminal thermal detecting apparatus
KR10-2020-0090556 2020-07-21

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WO2022019368A1 true WO2022019368A1 (en) 2022-01-27

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KR101978709B1 (en) * 2018-03-23 2019-08-28 (주)메티스 Temperature monitoring device for preventing overheating of terminal block
JP2019200066A (en) * 2018-05-14 2019-11-21 三菱電機エンジニアリング株式会社 Terminal block with built-in sensor, and electronic device

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KR20090130992A (en) * 2008-06-17 2009-12-28 주식회사 대륙 The electrical device with sensor for temperature
KR20120113306A (en) * 2011-04-05 2012-10-15 주식회사 대륙 Detecting device for temperature of terminal
KR101978709B1 (en) * 2018-03-23 2019-08-28 (주)메티스 Temperature monitoring device for preventing overheating of terminal block
JP2019200066A (en) * 2018-05-14 2019-11-21 三菱電機エンジニアリング株式会社 Terminal block with built-in sensor, and electronic device

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