WO2024061319A1 - 一种具有数据无线传输模块的连接器 - Google Patents
一种具有数据无线传输模块的连接器 Download PDFInfo
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- WO2024061319A1 WO2024061319A1 PCT/CN2023/120405 CN2023120405W WO2024061319A1 WO 2024061319 A1 WO2024061319 A1 WO 2024061319A1 CN 2023120405 W CN2023120405 W CN 2023120405W WO 2024061319 A1 WO2024061319 A1 WO 2024061319A1
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- connector
- wireless transmission
- temperature measurement
- transmission module
- module according
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- 230000005540 biological transmission Effects 0.000 title claims abstract description 65
- 238000009529 body temperature measurement Methods 0.000 claims abstract description 54
- 239000004020 conductor Substances 0.000 claims description 13
- 238000007789 sealing Methods 0.000 claims description 8
- 239000000428 dust Substances 0.000 claims description 6
- 239000007787 solid Substances 0.000 claims description 6
- 238000000034 method Methods 0.000 claims description 5
- RYGMFSIKBFXOCR-UHFFFAOYSA-N Copper Chemical compound [Cu] RYGMFSIKBFXOCR-UHFFFAOYSA-N 0.000 claims description 4
- XAGFODPZIPBFFR-UHFFFAOYSA-N aluminium Chemical compound [Al] XAGFODPZIPBFFR-UHFFFAOYSA-N 0.000 claims description 4
- 229910052782 aluminium Inorganic materials 0.000 claims description 4
- 229910052802 copper Inorganic materials 0.000 claims description 4
- 239000010949 copper Substances 0.000 claims description 4
- 238000012545 processing Methods 0.000 abstract description 4
- 238000010586 diagram Methods 0.000 description 7
- 239000000306 component Substances 0.000 description 4
- 230000033001 locomotion Effects 0.000 description 3
- 230000009286 beneficial effect Effects 0.000 description 2
- 238000009434 installation Methods 0.000 description 2
- 238000005259 measurement Methods 0.000 description 2
- 238000012986 modification Methods 0.000 description 2
- 230000004048 modification Effects 0.000 description 2
- 230000035939 shock Effects 0.000 description 2
- 239000000243 solution Substances 0.000 description 2
- 239000008358 core component Substances 0.000 description 1
- 238000001514 detection method Methods 0.000 description 1
- 238000011161 development Methods 0.000 description 1
- 230000000694 effects Effects 0.000 description 1
- 238000005516 engineering process Methods 0.000 description 1
- 238000002347 injection Methods 0.000 description 1
- 239000007924 injection Substances 0.000 description 1
- 230000007774 longterm Effects 0.000 description 1
- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Substances O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 description 1
Classifications
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01R—ELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
- H01R13/00—Details of coupling devices of the kinds covered by groups H01R12/70 or H01R24/00 - H01R33/00
- H01R13/02—Contact members
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01R—ELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
- H01R13/00—Details of coupling devices of the kinds covered by groups H01R12/70 or H01R24/00 - H01R33/00
- H01R13/46—Bases; Cases
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01R—ELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
- H01R13/00—Details of coupling devices of the kinds covered by groups H01R12/70 or H01R24/00 - H01R33/00
- H01R13/66—Structural association with built-in electrical component
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- Y—GENERAL 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
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02T—CLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO TRANSPORTATION
- Y02T10/00—Road transport of goods or passengers
- Y02T10/60—Other road transportation technologies with climate change mitigation effect
- Y02T10/70—Energy storage systems for electromobility, e.g. batteries
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- Y—GENERAL 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
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02T—CLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO TRANSPORTATION
- Y02T10/00—Road transport of goods or passengers
- Y02T10/60—Other road transportation technologies with climate change mitigation effect
- Y02T10/7072—Electromobility specific charging systems or methods for batteries, ultracapacitors, supercapacitors or double-layer capacitors
Definitions
- the present invention relates to the technical field of connectors, and in particular to a connector with a data wireless transmission module.
- the present invention aims to solve the technical problems in the prior art of complicated data transmission, messy lines, low temperature data transmission accuracy, and poor vibration resistance and poor contact stability, and provides a connector with a data wireless transmission module.
- a connector with a data wireless transmission module including a connector housing, a temperature measurement mechanism and a wireless transmission mechanism electrically connected to the temperature measurement mechanism;
- the connector housing is provided with an insulating inner housing and an electrical conduction device at least partially installed in the insulating inner housing;
- the temperature measurement mechanism is arranged in the insulating inner shell, and is in contact with the electrical conduction device for detecting the real-time temperature on the electrical conduction device;
- the wireless transmission mechanism is placed on the connector housing, and the wireless transmission mechanism includes a microprocessor chip for processing and transmitting signals from the temperature measurement mechanism.
- the microprocessor chip includes at least a pair of sensor input pins and a pair of signal transmitting pins installed on the microprocessor chip.
- the wireless transmission mechanism also includes a circuit board
- the circuit board is provided with an antenna connected to a pair of the signal transmitting pins, and the circuit board is provided with at least one collection input port connected to the sensor input pins.
- the circuit board is provided with a power supply module
- the microprocessor chip is provided with at least one pair of power supply input ports electrically connected to the power supply module.
- the electrical conduction device comprises a conductor electrically connecting the terminals.
- the temperature measurement mechanism includes a transmission part, a temperature measurement module and a connection part;
- the temperature measurement module and the connection part are respectively arranged at both ends of the transmission part.
- the temperature measurement module matches the shape of the contact position of the terminal, and the temperature measurement module is fit with the terminal.
- the connector housing is provided with at least one through hole, and the collection input port passes through the through hole and is crimped or welded to the connection part for transmitting the real-time signal of the temperature measurement module.
- the microprocessor chip is provided with a plurality of fixing pins, and the microprocessor chip is fixedly connected to the circuit board through a plurality of the fixing pins.
- the connector housing is provided with a storage slot for fixing the circuit board, and a dust cover is engaged with the storage slot.
- the conductor is covered with a wire sealing body, and the wire sealing body is snap-fitted, screwed or riveted with the connector housing.
- the conductor includes a solid core cable or a multi-core cable
- the solid core cable includes a copper busbar or an aluminum busbar.
- the temperature measuring mechanism is integrally injection-molded inside the insulating inner shell.
- the temperature measurement module is attached to the terminal, and the signal is transmitted to the microprocessor chip to understand the temperature of the terminal in real time. At the same time, the accuracy of temperature data transmission is high.
- the temperature measurement mechanism is set inside the insulating inner shell, which saves space during installation and ensures a more stable fit between the temperature measurement mechanism and the terminals, high shock resistance, and accurate measurement.
- Figure 1 is a schematic structural diagram of a connector with a data wireless transmission module according to the present invention
- Figure 2 is a schematic structural diagram of the wireless transmission mechanism of the present invention.
- FIG. 3 is a schematic structural diagram of the microprocessor chip of the present invention.
- Figure 4 is a schematic structural diagram of the connection between the electrical conduction device and the wireless transmission mechanism of the present invention.
- FIG. 5 is a schematic structural diagram of the temperature measurement mechanism of the present invention.
- Figure 6 is a schematic structural diagram of the temperature measuring mechanism of the present invention integrally injection molded inside the insulating inner shell;
- Figure 7 is a schematic structural diagram of the terminal of the present invention installed inside the insulating inner shell
- Figure 8 is a front view of a connector with a data wireless transmission module according to the present invention.
- a connector with a data wireless transmission module includes a connector housing 1, a temperature measurement mechanism and a wireless transmission mechanism electrically connected to the temperature measurement mechanism;
- the connector housing 1 is provided with an insulating inner shell 2 and an electrical conduction device at least partially installed in the insulating inner shell 2;
- the temperature measurement mechanism is arranged in the insulating inner shell 2.
- the temperature measurement mechanism is in contact with the electrical conduction device and is used to detect the real-time temperature on the electrical conduction device;
- the wireless transmission mechanism is arranged on the connector housing 1 and comprises a microprocessor chip 3 for processing and transmitting the temperature measuring mechanism signal.
- the designed temperature measurement mechanism of this structure is arranged in the insulating inner shell 2, which can ensure that the temperature measurement module 14 inside the temperature measurement mechanism and the electrical conduction device are sealed and fit, so that the temperature measurement module 14 and the electrical conduction device can ensure reliable and stable contact, so that The accuracy of the detection results is greatly enhanced, ensuring the healthy and good operation of the vehicle system;
- Real-time temperature can be transmitted and processed through a wireless transmission mechanism.
- the microprocessor chip 3 is the core component of data transmission and processing in this structure and has a wireless transmission module.
- the specific wireless transmission module can be Bluetooth transmission, WIFI, NFC, 4G or 5G, etc., including the above, but not limited to the above wireless transmission methods;
- the specific temperature measurement mechanism is not limited to a fixed position and is installed in the insulating inner shell 2. It can jointly detect one or more electrical conduction devices, allowing the electrical conduction devices to monitor the temperature in real time when they are working.
- the microprocessor chip 3 includes at least a pair of sensor input pins 4 and a pair of signal transmitting pins 5 installed on the microprocessor chip 3 .
- the sensor input pin 4 on the microprocessor chip 3 is used to receive the signal transmitted from the temperature measurement mechanism, and then transmits the signal to the transmitting device through the signal transmitting pin 5, and then transmits it to the terminal monitor, computer, mobile phone or tablet and other smart products. , convenient for intuitive observation of temperature conditions.
- the wireless transmission mechanism also includes a circuit board 6;
- the circuit board 6 is provided with an antenna 7 connected to a pair of the signal transmitting pins 5 , and the circuit board 6 is provided with at least one collection input port 8 connected to the sensor input pins 4 .
- the circuit board 6 is used to integrate various required electrical components, the antenna 7 is used to transmit signals, the collection input port 8 can be electrically connected to the temperature measuring mechanism, and the received signals are transmitted to the microprocessor chip 3 .
- the circuit board 6 is provided with a power supply module 9
- the microprocessor chip 3 is provided with at least a pair of power supply input ports 10 electrically connected to the power supply module 9 .
- the power supply module 9 on the circuit board 6, which can ensure the normal operation of the electrical components, and can also provide power through the connector.
- the power supply method is not limited to the above. If it is powered by a battery, the specific model can be changed with the circuit board 6.
- the electrically conductive device includes a terminal 11 and a conductor 12 electrically connected to the terminal 11 .
- the conductor 12 is connected to the terminal 11 for transmitting current.
- the terminal 11 in the device can be the male end of the connector or can be used as a separate power connection plug.
- the temperature measurement mechanism includes a transmission part 13, a temperature measurement module 14 and a connection part 15;
- the temperature measurement module 14 and the connection part 15 are respectively provided at both ends of the transmission part 13 .
- the transmission part 13 is a carrier, and the temperature measurement module 14 detects the temperature in real time, and then transmits it in the form of a signal.
- the connection part 15 is connected to an external terminal. When the terminal 11 is working, the temperature measurement module 14 monitors it at any time, and then the temperature measurement module 14 is installed. At one end of the transmission part 13, the connecting part 402 is installed at the other end.
- the overall structure does not occupy space and is easy to assemble.
- the shapes of the contact positions of the temperature measuring module 14 and the terminal 11 match, and the temperature measuring module 14 fits the terminal 11 .
- the matching shape is convenient for fitting, and it will not shake or break easily during movement or motion with strong vibration during use, thus avoiding inaccurate temperature measurement or damage to the temperature measurement module 14 due to long-term shaking.
- the airtight fit can effectively prevent the temperature measurement module 14 from falling off.
- the connector housing 1 is provided with at least one through hole, and the collection input port 8 passes through the through hole and is crimped or welded to the connecting portion 15 for transmitting the temperature of the temperature measurement module 14 real-time signal.
- the through holes on the connector housing 1 are used to connect the connecting part 15 to the collection input port 8. One is outside the connector housing 1 and the other is inside the connector housing 1. Therefore, holes need to be opened for connection.
- the through holes are The size matches the connection part 15.
- the microprocessor chip 3 is provided with a plurality of fixing pins 16 , and the microprocessor chip 3 is fixedly connected to the circuit board 6 through the plurality of fixing pins 16 .
- the microprocessor chip 3 is restricted on the circuit board 6 through the fixing pins 16 to prevent it from being detached from the circuit board 6 .
- a storage slot 17 for fixing the circuit board 6 is formed on the connector housing 1 , and a dust cover 18 is clamped on the storage slot 17 .
- the conductor 12 is covered with a wire sealing body 19 , and the wire sealing body 19 is snap-fitted, screwed or riveted with the connector housing 1 .
- the wire sealing body 19 is snap-fitted, screwed or riveted to the connector shell 1 for sealing and protection, and at the same time protects the terminal 11. During use, it prevents the conductor 12 from transmitting tensile force to the terminal 11, causing disconnected or damaged
- the conductor 12 includes a solid core cable or a multi-core cable
- the solid core cable includes a copper busbar or an aluminum busbar.
- the conductor 12 can be replaced, and can be a solid-core cable with an aluminum row, a copper row, or a multi-core cable.
- the specific model can be replaced according to the specific working range of the connector.
- the temperature measuring mechanism is integrally injection-molded inside the insulating inner shell 2 .
- the temperature measuring mechanism is integrally injection-molded inside the insulating inner shell 2, which can withstand strong vibrations and movements, and constantly monitors the temperature of the terminal 11.
- the temperature measuring mechanism and the insulating inner shell 2 are integrally injection-molded, making it stronger and more reliable, will not fall off, and is fixedly connected. It will also have the same effect.
- the temperature measurement module is attached to the terminal 11, and the signal is transmitted to the microprocessor chip 3, so that the temperature of the terminal 11 can be understood in real time, and the temperature data transmission accuracy is high.
- the temperature measurement mechanism is set inside the insulating inner shell 2, which saves space during installation, and ensures that the temperature measurement mechanism and the terminal 11 fit more stably, with high shock resistance and accurate measurement.
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- Arrangements For Transmission Of Measured Signals (AREA)
Abstract
本发明为一种具有数据无线传输模块的连接器,涉及连接器技术领域,解决了现有技术中的数据传输复杂,线路杂乱、温度数据传输精准度不高、抗振差接触稳定性较差的问题。技术特征包括连接器壳体、测温机构和与测温机构电连接的无线传输机构;所述连接器壳体内设有绝缘内壳、和至少部分安装在绝缘内壳内的电传导装置;所述测温机构设置在绝缘内壳内,所述测温机构与所述电传导装置相接触,用于检测电传导装置上的实时温度;所述无线传输机构安置于连接器壳体上,所述无线传输机构包括用于处理和传输测温机构信号的微型处理器芯片。通过电路板和微型处理器芯片进行传输及处理信号,解决了传统数据传输复杂和线路杂乱的问题。
Description
本发明要求2022年09月21日递交的申请号为2022225075505、名称为“一种具有数据无线传输模块的连接器”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
本发明涉及连接器技术领域,特别涉及一种具有数据无线传输模块的连接器。
随着新能源汽车领域的发展,目前法规要求电动汽车直流充电插座必须针对大电流充电端子配备温度传感器以监控充电温度,目前,现有技术存在的数据传输复杂,线路杂乱、温度数据传输精准度不高、抗振差接触稳定性较差的问题,因此设计一种具有数据无线传输模块的连接器。
发明内容
本发明要解决现有技术中的数据传输复杂,线路杂乱、温度数据传输精准度不高、抗振差接触稳定性较差的技术问题,提供一种具有数据无线传输模块的连接器。
为了解决上述技术问题,本发明的技术方案具体如下:
一种具有数据无线传输模块的连接器,包括连接器壳体、测温机构和与测温机构电连接的无线传输机构;
所述连接器壳体内设有绝缘内壳、和至少部分安装在绝缘内壳内的电传导装置;
所述测温机构设置在绝缘内壳内,所述测温机构与所述电传导装置相接触,用于检测电传导装置上的实时温度;
所述无线传输机构安置于连接器壳体上,所述无线传输机构包括用于处理和传输测温机构信号的微型处理器芯片。
优选的,所述微型处理器芯片包括安装在微型处理器芯片上的至少一对传感器输入针脚和一对信号发射脚。
优选的,无线传输机构还包括电路板;
所述电路板上设有与一对所述信号发射脚相连的天线,所述电路板上设有与传感器输入针脚相连接的至少一个采集输入口。
优选的,所述电路板上设有供电模块,所述微型处理器芯片上设有与供电模块电连接的至少一对供电输入口。
优选的,所述电传导装置包括端子与端子电连接的导体。
优选的,所述测温机构包括传输部、测温模块和连接部;
所述测温模块和连接部分别设置在传输部的两端。
优选的,所述测温模块与端子的接触位置的形状相匹配,所述测温模块与端子贴合。
优选的,所述连接器壳体上开设有至少一个通孔,所述采集输入口穿过通孔与连接部压接或者焊接,用于传递所述测温模块的实时信号。
优选的,所述微型处理器芯片上设有多个固定脚,所述微型处理器芯片通过多个所述固定脚固定连接在电路板上。
优选的,所述连接器壳体上开设有固定电路板的存放槽,所述存放槽上卡接有防尘盖。
优选的,所述导体上套设有线封体,所述线封体与连接器壳体卡接、螺接或铆接。
优选的,所述导体包括实芯线缆或多芯线缆;
所述实芯线缆包括铜排或铝排。
优选的,所述测温机构一体注塑于绝缘内壳的内部。
本发明具有以下的有益效果:
1、通过电路板和微型处理器芯片进行传输及处理信号,解决了传统数据传输复杂和线路杂乱的问题,避免了线路过多造成故障的产生;
2、测温模块与端子贴合,信号传递给微型处理器芯片,从而实时了解端子的温度,同时温度数据传输精准度较高。
3、测温机构设置在绝缘内壳的内部,在安装时节省空间,并且能保证测温机构与端子贴合更加稳定,抗震性高,测量准确。
下面结合附图和具体实施方式对本发明作进一步详细说明。
图1为本发明的一种具有数据无线传输模块的连接器的结构示意图;
图2为本发明的无线传输机构的结构示意图;
图3为本发明的微型处理器芯片的结构示意图;
图4为本发明的电传导装置与无线传输机构连接的结构示意图;
图5为本发明的测温机构的结构示意图;
图6为本发明的测温机构一体注塑在绝缘内壳内部的结构示意图;
图7为本发明的端子安装在绝缘内壳内部的结构示意图;
图8为本发明的一种具有数据无线传输模块的连接器的主视图。
图中的附图标记表示为:
1、连接器壳体;2、绝缘内壳;3、微型处理器芯片;4、传感器输入针脚;5、信号发射脚;6、电路板;7、天线;8、采集输入口;9、供电模块;10、供电输入口;11、端子;12、导体;13、传输部;14、测温模块;15、连接部;16、固定脚;17、存放槽;18、防尘盖;19、线封体。
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
请参阅图1-图8,一种具有数据无线传输模块的连接器,包括连接器壳体1、测温机构和与测温机构电连接的无线传输机构;
所述连接器壳体1内设有绝缘内壳2、和至少部分安装在绝缘内壳2内的电传导装置;
所述测温机构设置在绝缘内壳2内,所述测温机构与所述电传导装置相接触,用于检测电传导装置上的实时温度;
所述无线传输机构安置于连接器壳体1上,所述无线传输机构包括用于处理和传输测温机构信号的微型处理器芯片3。
此结构的设计测温机构设置于绝缘内壳2内,能够保证测温机构内部的测温模块14与电传导装置密闭贴合,使测温模块14与电传导装置保证可靠稳定的接触,使检测结果的精度大大增强,确保整车系统健康良好的运行;
实时的温度,可以通过无线传输机构进行传输和处理,微型处理器芯片3为此结构数据传输和处理的核心元器件,内具备无线传输模块。
具体的无线传输模块可为蓝牙传输、WIFI、NFC、4G或5G等进行传输,包括以上,但不限于以上几种无线传输的方式;
具体的测温机构不限定固定位置,安装在绝缘内壳2内,可以一个或者多个共同检测电传导装置,让电传导装置在工作时,实时监控温度。
在一实施方式中,所述微型处理器芯片3包括安装在微型处理器芯片3上的至少一对传感器输入针脚4和一对信号发射脚5。
微型处理器芯片3上的传感器输入针脚4用来接收测温机构传输来的信号,之后通过信号发射脚5把信号传递给发射装置,传送到终端的显示器、电脑、手机或者平板等智能产品上,便于直观的观察温度情况。
在一实施方式中,无线传输机构还包括电路板6;
所述电路板6上设有与一对所述信号发射脚5相连的天线7,所述电路板6上设有与传感器输入针脚4相连接的至少一个采集输入口8。
具体的,电路板6用来集成各种所需的电器元件,天线7用于发射信号,采集输入口8可以与测温机构电连接,接收到的信号传递给微型处理器芯片3。
在一实施方式中,所述电路板6上设有供电模块9,所述微型处理器芯片3上设有与供电模块9电连接的至少一对供电输入口10。
电路板6上有供电模块9,可以保证电器元件的正常运行,也可以通过连接器进行供电,供电方式不限于以上几种,如果通过电池供电,具体型号可以随电路板6进行更改。
在一实施方式中,所述电传导装置包括端子11与端子11电连接的导体12。
导体12和端子11相连,用于传输电流,本装置内的端子11可以为连接器的公端,也可以单独做为动力连接插头。
在一实施方式中,所述测温机构包括传输部13、测温模块14和连接部15;
所述测温模块14和连接部15分别设置在传输部13的两端。
传输部13为载体,测温模块14实时检测温度,之后通过以信号的方式传递出,连接部15接外部终端,端子11在工作时,测温模块14随时进行监测,之后测温模块14安装在传输部13的一端,连接部402安装在另外一端,整体结构不占用空间,便于装配。
在一实施方式中,所述测温模块14与端子11的接触位置的形状相匹配,所述测温模块14与端子11贴合。
做成相匹配的形状,是方便贴合,在使用时具有强烈震动的移动或运动的过程中,不会轻易晃动、断开贴合的情况,避免测温不准确,或者长期晃动损伤测温模块14,同时密闭贴合可以有效的防止测温模块14脱落。
在一实施方式中,所述连接器壳体1上开设有至少一个通孔,所述采集输入口8穿过通孔与连接部15压接或者焊接,用于传递所述测温模块14的实时信号。
连接器壳体1上的通孔是让连接部15与采集输入口8进行连接的,一个在连接器壳体1的外部,一个在其内部,因此需要开孔,才能进行连接,通孔的大小和连接部15相匹配。
在一实施方式中,所述微型处理器芯片3上设有多个固定脚16,所述微型处理器芯片3通过多个所述固定脚16固定连接在电路板6上。
微型处理器芯片3是通过固定脚16进行限制在电路板6上,避免脱离电路板6。
在一实施方式中,所述连接器壳体1上开设有固定电路板6的存放槽17,所述存放槽17上卡接有防尘盖18。
电路板6上的电器元件组装完毕后,放入到连接器壳体1上的存放槽17中,之后通过防尘盖18进行闭合,可以有效的防水防尘,避免损伤或者影响电路板6和电路板6上的电器元件。
在一实施方式中,所述导体12上套设有线封体19,所述线封体19与连接器壳体1卡接、螺接或铆接。
线封体19与连接器外壳1卡接、螺接或铆接起到密封防护的作用,同时起到保护端子11的功能,在使用的过程中,防止导体12把拉力传给端子11时,造成断开或者损坏
在一实施方式中,所述导体12包括实芯线缆或多芯线缆;
所述实芯线缆包括铜排或铝排。
导体12可以进行替换,可以为铝排、铜排的实芯线缆,也可以更换为多芯线缆,具体型号可以通过连接器具体工作范围,进行更换。
在一实施方式中,所述测温机构一体注塑于绝缘内壳2的内部。
测温机构一体注塑在绝缘内壳2的内部,可以抗强震动和运动,时时对端子11进行监控温度,测温机构与绝缘内壳2一体注塑成形,更加牢固可靠,不会脱落,固定连接同样会起到相同的作用。
本发明具有以下的有益效果:
1、通过电路板6和微型处理器芯片3进行传输及处理信号,解决了传统数据传输复杂和线路杂乱的问题,避免了线路过多造成故障的产生;
2、测温模块与端子11贴合,信号传递给微型处理器芯片3,从而实时了解端子11的温度,同时温度数据传输精准度较高。
3、测温机构设置在绝缘内壳2的内部,在安装时节省空间,并且能保证测温机构与端子11贴合更加稳定,抗震性高,测量准确。
显然,上述实施例仅仅是为清楚地说明所作的举例,而并非对实施方式的限定。对于所属领域的普通技术人员来说,在上述说明的基础上还可以做出其它不同形式的变化或变动。这里无需也无法对所有的实施方式予以穷举。而由此所引伸出的显而易见的变化或变动仍处于本发明创造的保护范围之中。
Claims (13)
- 一种具有数据无线传输模块的连接器,其特征在于,包括连接器壳体(1)、测温机构和与测温机构电连接的无线传输机构;所述连接器壳体(1)内设有绝缘内壳(2)、和至少部分安装在绝缘内壳(2)内的电传导装置;所述测温机构设置在绝缘内壳(2)内,所述测温机构与所述电传导装置相接触,用于检测电传导装置上的实时温度;所述无线传输机构安置于连接器壳体(1)上,所述无线传输机构包括用于处理和传输测温机构信号的微型处理器芯片(3)。
- 根据权利要求1所述的一种具有数据无线传输模块的连接器,其特征在于,所述微型处理器芯片(3)包括安装在微型处理器芯片(3)上的至少一对传感器输入针脚(4)和一对信号发射脚(5)。
- 根据权利要求2所述的一种具有数据无线传输模块的连接器,其特征在于,无线传输机构还包括电路板(6);所述电路板(6)上设有与一对所述信号发射脚(5)相连的天线(7),所述电路板(6)上设有与传感器输入针脚(4)相连接的至少一个采集输入口(8)。
- 根据权利要求3所述的一种具有数据无线传输模块的连接器,其特征在于,所述电路板(6)上设有供电模块(9),所述微型处理器芯片(3)上设有与供电模块(9)电连接的至少一对供电输入口(10)。
- 根据权利要求3所述的一种具有数据无线传输模块的连接器,其特征在于,所述电传导装置包括端子(11)与端子(11)电连接的导体(12)。
- 根据权利要求5所述的一种具有数据无线传输模块的连接器,其特征在于,所述测温机构包括传输部(13)、测温模块(14)和连接部(15);所述测温模块(14)和连接部(15)分别设置在传输部(13)的两端。
- 根据权利要求6所述的一种具有数据无线传输模块的连接器,其特征在于,所述测温模块(14)与端子(11)的接触位置的形状相匹配,所述测温模块(14)与端子(11)贴合。
- 根据权利要求6所述的一种具有数据无线传输模块的连接器,其特征在于,所述连接器壳体(1)上开设有至少一个通孔,所述采集输入口(8)穿过通孔与连接部(15)压接或者焊接,用于传递所述测温模块(14)的实时信号。
- 根据权利要求3所述的一种具有数据无线传输模块的连接器,其特征在于,所述微型处理器芯片(3)上设有多个固定脚(16),所述微型处理器芯片(3)通过多个所述固定脚(16)固定连接在电路板(6)上。
- 根据权利要求1所述的一种具有数据无线传输模块的连接器,其特征在于,所述连接器壳体(1)上开设有固定电路板(6)的存放槽(17),所述存放槽(17)上卡接有防尘盖(18)。
- 根据权利要求5所述的一种具有数据无线传输模块的连接器,其特征在于,所述导体(12)上套设有线封体(19),所述线封体(19)与连接器壳体(1)卡接、螺接或铆接。
- 根据权利要求5所述的一种具有数据无线传输模块的连接器,其特征在于,所述导体(12)包括实芯线缆或多芯线缆;所述实芯线缆包括铜排或铝排。
- 根据权利要求1所述的一种具有数据无线传输模块的连接器,其特征在于,所述测温机构一体注塑于绝缘内壳(2)的内部。
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