WO2021135770A1 - 一种建筑智能化的室内光纤检测设备 - Google Patents

一种建筑智能化的室内光纤检测设备 Download PDF

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Publication number
WO2021135770A1
WO2021135770A1 PCT/CN2020/132346 CN2020132346W WO2021135770A1 WO 2021135770 A1 WO2021135770 A1 WO 2021135770A1 CN 2020132346 W CN2020132346 W CN 2020132346W WO 2021135770 A1 WO2021135770 A1 WO 2021135770A1
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Prior art keywords
optical fiber
circuit board
pcb circuit
indoor optical
elastic conductive
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PCT/CN2020/132346
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English (en)
French (fr)
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钱建华
俞维
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江苏智维建设有限公司
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Publication of WO2021135770A1 publication Critical patent/WO2021135770A1/zh

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V33/00Structural combinations of lighting devices with other articles, not otherwise provided for
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01MTESTING STATIC OR DYNAMIC BALANCE OF MACHINES OR STRUCTURES; TESTING OF STRUCTURES OR APPARATUS, NOT OTHERWISE PROVIDED FOR
    • G01M11/00Testing of optical apparatus; Testing structures by optical methods not otherwise provided for
    • G01M11/02Testing optical properties
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21YINDEXING SCHEME ASSOCIATED WITH SUBCLASSES F21K, F21L, F21S and F21V, RELATING TO THE FORM OR THE KIND OF THE LIGHT SOURCES OR OF THE COLOUR OF THE LIGHT EMITTED
    • F21Y2115/00Light-generating elements of semiconductor light sources
    • F21Y2115/10Light-emitting diodes [LED]

Definitions

  • the utility model relates to the technical field of optical fiber detection, in particular to an intelligent indoor optical fiber detection equipment for buildings.
  • optical fiber communication technology With the rapid development of optical fiber communication technology, low cost, and environmental protection requirements, it has become a consensus that the communication network from the core network, metropolitan area network to access network, fiber to the home and optical fiber to the copper and retreat, all use optical fiber to form a network has become a consensus.
  • the application of optical fiber equipment has become more extensive. Fiber optic equipment is a highly sensitive equipment. The failure of a small part of the fiber optic equipment will cause the entire fiber optic equipment to fail to work normally.
  • the inspection items of optical fiber generally include three-dimensional image inspection, power inspection and end face inspection.
  • the so-called three-dimensional image detection is used to detect whether the surface or edge of the optical fiber head is broken or damaged during the grinding process;
  • the so-called power detection is that one end of the optical fiber wire (that is, the optical fiber head) transmits a signal and receives it at the other end. Signal, to test the power of the optical fiber wire when transmitting the signal to know whether there is a break in the optical fiber wire.
  • an optical fiber detection device with an application number of CN201822122428.X includes an optical fiber harness, a processing device, and an optical fiber fault locator.
  • the optical fiber harness penetrates into the processing device and extends to the outside of the processing device.
  • the right end extending out of the processing device is fixedly connected with an optical fiber end.
  • the optical fiber detection device can monitor the optical fiber harness in real time through the cooperation of the microprocessor, data memory, data comparator and alarm, so as to compare the real-time information with the stored information in the data memory. Determine whether the optical fiber harness is faulty.
  • the coordination setting of the microprocessor and the optical fiber fault locator can detect the optical fiber harness and locate the faulty fiber, so that the faulty fiber can be found quickly, efficiently and accurately, which improves
  • the working efficiency and accuracy of optical fiber inspection saves the time of manual inspection.
  • it is inconvenient to perform fast detection processing on the optical fiber and it is inconvenient to carry and use, and at the same time, the functionality is low, and it is difficult to well meet the needs of optical fiber detection.
  • the purpose of the utility model is to provide an intelligent indoor optical fiber detection equipment for buildings to solve the inconvenience of fast optical fiber detection processing in the prior art, and it is inconvenient to carry and use. At the same time, the functionality is low, and it is difficult to meet the requirements of optical fiber. Detect problems required for use.
  • an intelligent building indoor optical fiber inspection equipment including an outer casing and an optical fiber harness
  • a handle is installed at one end of the outer casing
  • a PCB circuit board is installed inside the outer casing
  • a detection jack is opened on one side of the outer shell
  • the PCB circuit board is sequentially fixedly connected with a data memory, a data comparator, an optical fiber fault locator and a microprocessor, and one side of the PCB circuit board is also electrically installed
  • There are elastic conductive clips one end of the optical fiber harness is inserted between the elastic conductive clips through the end of the optical fiber, a wire shelling mechanism is installed on the upper end of the outer shell, and a battery is installed inside the handle.
  • a charging interface is installed, and both the data memory and the data comparator are electrically connected with the microprocessor.
  • a display screen is installed on the upper side of one end of the outer casing, and a plurality of control buttons are installed on the lower side of the outer casing.
  • an LED illuminating lamp is installed at one end of the outer housing, and a condensing cover is installed inside the LED illuminating lamp.
  • an alarm is installed inside the outer shell, and the alarm is electrically connected with the microprocessor.
  • an end cover is screwed on one end of the handle, and a lanyard loop is installed on one end of the outer shell.
  • one end of the elastic conductive clip is electrically bonded to one side of the PCB circuit board through a conductive patch, and the elastic conductive clip is a copper sheet.
  • the wire shelling mechanism includes a shelling hole, and a fixed chuck and a movable chuck are installed inside the shelling hole, and a button is installed at one end of the movable chuck, and the button is connected to the side wall of the shelling hole. Installed with springs.
  • the fixed chuck and the movable chuck are made of metal chuck, and one end of the fixed chuck and the movable chuck is electrically connected with an electric heater, and the bottom side of the shelling hole is provided with a waste discharge port.
  • the utility model inserts one end of the optical fiber harness between the elastic conductive clips and connects the optical fiber harness to the detection circuit, which can perform rapid detection processing, convenient and quick detection, and through the microprocessor, data memory, data comparator and The coordinating setting of the alarm can detect and process the optical fiber harness to compare the detection information with the stored information in the data memory to determine whether the optical fiber harness is malfunctioning.
  • the utility model also has a wire shelling mechanism.
  • the wire shelling mechanism includes a shelling hole, and a fixed chuck and a movable chuck are installed inside the shelling hole, and a button is installed at one end of the movable chuck.
  • a spring is installed on the side wall of the button and the shelling hole, and one end of the cable is inserted into the shelling hole.
  • an LED illuminating lamp is installed at one end of the outer shell, and a condenser is installed on the inside of the LED illuminating lamp, which is convenient for illuminating under the condition of low light, and further improves the diversity of use functions.
  • Figure 1 is a schematic diagram of the overall structure of the utility model
  • Figure 2 is a schematic diagram of the overall internal structure of the utility model
  • Figure 3 is a schematic diagram of the structure of the wire shelling mechanism of the utility model
  • Figure 4 is an enlarged schematic diagram of the structure at A of the utility model
  • Figure 5 is a schematic block diagram of the utility model.
  • an intelligent indoor optical fiber inspection equipment for buildings includes an outer housing 1 and an optical fiber harness 4.
  • the outer housing 1 is equipped with a handle 2 at one end, which is convenient to carry and use.
  • a PCB circuit board 3 is installed inside, and a detection jack 18 is opened on one side of the outer casing 1.
  • the PCB circuit board 3 is sequentially fixedly connected with a data memory 22, a data comparator 7, a fiber optic fault locator 9 and a microprocessor 8 ,
  • the optical fiber harness 4 can be inspected and processed to compare the inspection information with the stored information in the data memory 22 to determine whether the optical fiber harness is faulty. It can be quickly inspected and processed, and the inspection is convenient and quick.
  • the data memory 22 is 16FT24C32.
  • the model of the data comparator 7 is LM339
  • the optical fiber fault locator 9 locates the faulty optical fiber in the optical fiber harness 4, after the positioning is completed, the optical fiber fault locator 9 transmits the positioning information to the microprocessor 8, the microprocessor 8
  • the alarm 10 is controlled to give an alarm.
  • An elastic conductive clip 19 is electrically installed on one side of the PCB circuit board 3, and one end of the optical fiber harness 4 is inserted between the elastic conductive clips 19 through the fiber end 21 to facilitate the connection of one end of the optical fiber harness 4 The optical fiber end 21 is inserted into the detection circuit for detection processing.
  • a wire shelling mechanism 14 is installed on the upper side of the outer shell 1 to facilitate the removal of the outer shell at the end of the wire, thereby facilitating the connection and fixing of the wire, and improving the functional diversity of use.
  • a battery 11 is installed inside, and a charging interface 12 is installed on one side of the battery 11 to facilitate the battery 11 to replenish power to provide power.
  • the data storage 22 and the data comparator 7 are electrically connected to the microprocessor 8 for easy intelligent control.
  • a display screen 15 is installed on the upper side of one end of the outer casing 1, and a plurality of control buttons 16 are installed on the lower side of the outer casing 1, so as to facilitate the overall control processing.
  • an LED illuminating lamp 5 is installed at one end of the outer shell 1, and a condenser 6 is installed inside the LED illuminating lamp 5, which is convenient for lighting use in low light conditions, and further improves the diversity of use functions.
  • an alarm 10 is installed inside the outer shell 1, and the alarm 10 is electrically connected to the microprocessor 8, so as to facilitate the alarm and reminding processing of the unqualified optical fiber.
  • an end cap 13 is screwed on one end of the handle 2 to facilitate the capping process on one end of the handle 2, and a lanyard ring 17 is installed at one end of the outer shell 1.
  • one end of the elastic conductive clip 19 is electrically bonded to the side of the PCB circuit board 3 through a conductive patch 20, and the elastic conductive clip 19 is made of copper, which has better conductive effect and is convenient for connecting the optical fiber end of the optical fiber harness 4
  • the head 21 is inserted into the detection circuit for detection processing.
  • the wire shelling mechanism 14 includes a shelling hole 1401, and a fixed chuck 1402 and a movable chuck 1405 are installed inside the shelling hole 1401.
  • a button 1404 is installed at one end of the movable chuck 1405, and the button 1404 is connected to the button 1404.
  • a spring 1406 is installed on the side wall of the shell hole 1401, and the movable chuck 1405 of the wire shelling mechanism 14 is squeezed to facilitate the removal of the shell at the end of the wire.
  • the fixed chuck 1402 and the movable chuck 1405 are metal chucks, and one end of the fixed chuck 1402 and the movable chuck 1405 is electrically connected with an electric heater 1403, which can heat the fixed chuck 1402 and the movable chuck 1405 It is convenient to remove the outer casing of the wire, and the bottom side of the shelling hole 1401 is provided with a waste discharge port 1407 to facilitate the removal of the removed wire casing.
  • the working principle and use process of the utility model insert one end of the optical fiber harness 4 between the elastic conductive clip 19 so that the optical fiber harness 4 is connected to the detection circuit of the PCB circuit board 3, and the PCB circuit board 3 is fixedly connected in turn.
  • the data memory 22, the data comparator 7 and the microprocessor 8 can perform detection processing on the optical fiber harness 4 to compare the detection information with the stored information in the data memory 22 to determine whether the optical fiber harness 4 is malfunctioning, and can perform Fast detection processing, convenient and quick detection, and through the provided wire shelling mechanism 14, by squeezing the movable chuck 1405 of the wire shelling mechanism 14, it is convenient to remove the shell at the end of the wire, thereby facilitating the connection and fixing of the wire.
  • the functional diversity of use is that the LED illuminating lamp 5 is installed at one end of the outer shell 1, which is convenient for lighting use in the case of low light, and further improves the functional diversity of use.

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  • General Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Analytical Chemistry (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Light Guides In General And Applications Therefor (AREA)

Abstract

一种建筑智能化的室内光纤检测设备,包括外壳体(1)和光纤线束(4),外壳体(1)内部安装有PCB线路板(3),且外壳体(1)一侧开设有检测插孔(18),PCB线路板(3)上依次固定连接有数据存储器(22)、数据比较器(7)、光纤故障定位仪(9)和微处理器(8),PCB线路板(3)一侧还电性安装有弹性导电夹片(19),光纤线束(4)一端通过光纤端头(21)插设在弹性导电夹片(19)之间,外壳体(1)上端一侧还安装有电线去壳机构(14),把手(2)内部安装有蓄电池(11),且数据存储器(22)和数据比较器(7)均与微处理器(8)电性连接。该检测设备能够将光纤线束(4)一端插入弹性导电夹片(19)之间进行快速检测处理,且通过电线去壳机构(14)去除导线端部的外壳,便于电线的连接固定,提高了使用的功能多样性。

Description

一种建筑智能化的室内光纤检测设备 技术领域
本实用新型涉及光纤检测技术领域,具体是一种建筑智能化的室内光纤检测设备。
背景技术
随着光纤通信技术的快速发展和低成本化以及绿色环保的要求,使得通讯网络从核心网,城域网到接入网及光纤到户和光进铜退,全部使用光纤组成网络已经成为共识。近年来,随着光纤的海量增长,光纤设备的应用越加广泛。光纤设备是一种敏感性很高的设备,光纤设备中一个很小的部件出现故障,都会造成整个光纤设备不能正常工作,目前,光纤的检测项目大致包含有三维影像检测、功率检测及端面检测等,所谓三维影像检测是用来检测光纤头是否在研磨的过程中发生表面或边缘破碎损伤的现象;所谓功率检测是由光纤导线的其中一端(也就是光纤头)发射信号,在另一端接受信号,来测试光纤导线在传递信号时的功率,以得知光纤导线内是否发生有断点的现象。
现有技术中申请号为CN201822122428.X的一种光纤检测装置,包括光纤线束、处理装置和光纤故障定位仪,所述光纤线束穿入处理装置内并延伸到处理装置的外部,所述光纤线束延伸出处理装置的右端固定连接有光纤端头。该光纤检测装置,一方面,通过微处理器、数据存储器、数据比较器和报警器的配合设置,可以对光纤线束进行实时监测,以将实时信息与数据存储器内的储存信息进行比较,用以判断光纤线束是否出现故障,另一方面,微处理器和光纤故障定位仪的配合设置,可以对光纤线束进行检测并对故障光纤进行定位,以快速、高效、精准得查找到故障光纤,提高了光纤检测的工作效率和精准性,节省了人工检测的时间。但是,不便于对光纤进行快捷检测处理,而且不便于携带使用,同时功能性较低,难以很好满足光纤检测使用所需。
实用新型内容
本实用新型的目的在于提供一种建筑智能化的室内光纤检测设备,以解决现有技术中不便于对光纤进行快捷检测处理,而且不便于携带使用,同时功能性较低,难以很好满足光纤检测使用所需的问题。
为实现上述目的,本实用新型提供如下技术方案:一种建筑智能化的室内光纤检测设备,包括外壳体和光纤线束,所述外壳体一端安装有把手,所述外壳体内部安装有PCB线路板,且外壳体一侧开设有检测插孔,所述PCB线路板的上依次固定连接有数据存储器、数据比较器、光纤故障定位仪和微处理器,所述PCB线路板一侧还电性安装有弹性导电夹片,所述光纤线束一端通过光纤端头插设在弹性导电夹片之间,所述外壳体上端一侧安装有电线去壳机构,所述把手内部安装有蓄电池,蓄电池一侧安装有充电接口,且数据存储器和数据比较器均与微处理器电性连接。
优选的,所述外壳体一端上侧安装有显示屏,所述外壳体下侧安装有多个操控按键。
优选的,所述外壳体一端安装有LED照明灯,且LED照明灯内侧安装有聚 光罩。
优选的,所述外壳体内部安装有报警器,且报警器与微处理器电性连接。
优选的,所述把手一端螺纹安装有端盖,所述外壳体一端安装有挂绳环。
优选的,所述弹性导电夹片一端侧通过导电贴片电性粘接在PCB线路板一侧,所述弹性导电夹片采用铜片。
优选的,所述电线去壳机构包括设置有的去壳孔,且去壳孔内部安装有固定夹头和活动夹头,所述活动夹头一端安装有按钮,且按钮与去壳孔侧壁安装有弹簧。
优选的,所述固定夹头和活动夹头采用金属夹头,且固定夹头和活动夹头一端电性连接有电加热器,所述去壳孔底部一侧开设有排杂口。
与现有技术相比,本实用新型的有益效果是:
1、本实用新型通过将光纤线束一端插入弹性导电夹片之间,将光纤线束接入检测电路中,能够进行快速检测处理,检测方便快捷,而且通过微处理器、数据存储器、数据比较器和报警器的配合设置,可以对光纤线束进行检测处理,以将检测信息与数据存储器内的储存信息进行比较,用以判断光纤线束是否出现故障。
2、本实用新型而且通过设有的电线去壳机构,电线去壳机构包括设置有的去壳孔,且去壳孔内部安装有固定夹头和活动夹头,活动夹头一端安装有按钮,且按钮与去壳孔侧壁安装有弹簧,将线缆一端插入去壳孔内,通过挤压活动夹头,便于去除导线端部的外壳,从而便于电线的连接固定,提高了使用的功能多样性。
3、本实用新型通过外壳体一端安装有LED照明灯,且LED照明灯内侧安装有聚光罩,便于在光线较暗的情况下进行照明使用,进一步提高了使用功能多样性。
附图说明
附图用来提供对本实用新型的进一步理解,并且构成说明书的一部分,与本实用新型的实施例一起用于解释本实用新型,并不构成对本实用新型的限制。在附图中:
图1为本实用新型的整体结构示意图;
图2为本实用新型的整体内部结构示意图;
图3为本实用新型的电线去壳机构结构示意图;
图4为本实用新型的A处结构放大示意图;
图5为本实用新型的原理框图。
图中:1、外壳体;2、把手;3、PCB线路板;4、光纤线束;5、LED照明灯;6、聚光罩;7、数据比较器;8、微处理器;9、光纤故障定位仪;10、报警器;11、蓄电池;12、充电接口;13、端盖;14、电线去壳机构;1401、去壳孔;1402、固定夹头;1403、电加热器;1404、按钮;1405、活动夹头;1406、弹簧;1407、排杂口;15、显示屏;16、操控按键;17、挂绳环;18、检测插孔;19、弹性导电夹片;20、导电贴片;21、光纤端头;22、数据存储器。
具体实施方式
下面将结合本实用新型实施例中的附图,对本实用新型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实用新型一部分实施例,而不是全部的实施例。基于本实用新型中的实施例,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,都属于本实用新型保护的范围。
请参阅图1-5,本实用新型实施例中,一种建筑智能化的室内光纤检测设备,包括外壳体1和光纤线束4,外壳体1一端安装有把手2,便于携带使用,外壳体1内部安装有PCB线路板3,且外壳体1一侧开设有检测插孔18,PCB线路板3的上依次固定连接有数据存储器22、数据比较器7、光纤故障定位仪9和微处理器8,可以对光纤线束4进行检测处理,以将检测信息与数据存储器22内的储存信息进行比较,用以判断光纤线束是否出现故障,能够进行快速检测处理,检测方便快捷,数据存储器22为16FT24C32的存储芯片,数据比较器7的型号为LM339,光纤故障定位仪9对光纤线束4中的故障光纤进行定位,定位完成后光纤故障定位仪9将定位信息传递给微处理器8,微处理器8控制报警器10进行报警,PCB线路板3一侧还电性安装有弹性导电夹片19,光纤线束4一端通过光纤端头21插设在弹性导电夹片19之间,便于将光纤线束4一端的光纤端头21插入检测电路进行检测处理,外壳体1上端一侧安装有电线去壳机构14,便于去除导线端部的外壳,从而便于电线的连接固定,提高了使用的功能多样性,把手2内部安装有蓄电池11,蓄电池11一侧安装有充电接口12,便于蓄电池11补充电量进行提供电能,且数据存储器22和数据比较器7均与微处理器8电性连接,便于进行智能操控。
优选的,外壳体1一端上侧安装有显示屏15,外壳体1下侧安装有多个操控按键16,便于进行整体操控处理。
优选的,外壳体1一端安装有LED照明灯5,且LED照明灯5内侧安装有聚光罩6,便于在光线较暗的情况下进行照明使用,进一步提高了使用功能多样性。
优选的,外壳体1内部安装有报警器10,且报警器10与微处理器8电性连接,便于对检测不合格的光纤进行报警提醒处理。
优选的,把手2一端螺纹安装有端盖13,便于对把手2一端进行封盖处理,外壳体1一端安装有挂绳环17。
优选的,弹性导电夹片19一端侧通过导电贴片20电性粘接在PCB线路板3一侧,弹性导电夹片19采用铜片,导电效果较好,便于将光纤线束4一端的光纤端头21插入检测电路进行检测处理。
优选的,电线去壳机构14包括设置有的去壳孔1401,且去壳孔1401内部安装有固定夹头1402和活动夹头1405,活动夹头1405一端安装有按钮1404,且按钮1404与去壳孔1401侧壁安装有弹簧1406,通过挤压电线去壳机构14的活动夹头1405,便于去除导线端部的外壳。
优选的,固定夹头1402和活动夹头1405采用金属夹头,且固定夹头1402 和活动夹头1405一端电性连接有电加热器1403,能够对固定夹头1402和活动夹头1405进行加热处理,便于去除电线外壳体,去壳孔1401底部一侧开设有排杂口1407,便于将去除的电线外壳排出。
本实用新型的工作原理及使用流程:将光纤线束4一端插入弹性导电夹片19之间使光纤线束4接入PCB线路板3的检测电路中,而且通过PCB线路板3的上依次固定连接有数据存储器22、数据比较器7和微处理器8,可以对光纤线束4进行检测处理,以将检测信息与数据存储器22内的储存信息进行比较,用以判断光纤线束4是否出现故障,能够进行快速检测处理,检测方便快捷,而且通过设有的电线去壳机构14,通过挤压电线去壳机构14的活动夹头1405,便于去除导线端部的外壳,从而便于电线的连接固定,提高了使用的功能多样性,通过外壳体1一端安装有LED照明灯5,便于在光线较暗的情况下进行照明使用,进一步提高了使用功能多样性。
最后应说明的是:以上所述仅为本实用新型的优选实施例而已,并不用于限制本实用新型,尽管参照前述实施例对本实用新型进行了详细的说明,对于本领域的技术人员来说,其依然可以对前述各实施例所记载的技术方案进行修改,或者对其中部分技术特征进行等同替换。凡在本实用新型的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本实用新型的保护范围之内。

Claims (8)

  1. 一种建筑智能化的室内光纤检测设备,包括外壳体(1)和光纤线束(4),其特征在于:所述外壳体(1)一端安装有把手(2),所述外壳体(1)内部安装有PCB线路板(3),所述PCB线路板(3)的上依次固定连接有数据存储器(22)、数据比较器(7)和微处理器(8),所述PCB线路板(3)一侧还电性安装有弹性导电夹片(19),所述光纤线束(4)一端通过光纤端头(21)插设在弹性导电夹片(19)之间,所述外壳体(1)上端一侧安装有电线去壳机构(14),所述把手(2)内部安装有蓄电池(11),且数据存储器(22)和数据比较器(7)均与微处理器(8)电性连接。
  2. 根据权利要求1所述的一种建筑智能化的室内光纤检测设备,其特征在于:所述外壳体(1)一端上侧安装有显示屏(15),所述外壳体(1)下侧安装有多个操控按键(16)。
  3. 根据权利要求1所述的一种建筑智能化的室内光纤检测设备,其特征在于:所述外壳体(1)一端安装有LED照明灯(5),且LED照明灯(5)内侧安装有聚光罩(6)。
  4. 根据权利要求1所述的一种建筑智能化的室内光纤检测设备,其特征在于:所述外壳体(1)内部安装有报警器(10),且报警器(10)与微处理器(8)电性连接。
  5. 根据权利要求1所述的一种建筑智能化的室内光纤检测设备,其特征在于:所述把手(2)一端螺纹安装有端盖(13),所述外壳体(1)一端安装有挂绳环(17)。
  6. 根据权利要求1所述的一种建筑智能化的室内光纤检测设备,其特征在于:所述弹性导电夹片(19)一端侧通过导电贴片(20)电性粘接在PCB线路板(3)一侧,所述弹性导电夹片(19)采用铜片。
  7. 根据权利要求1所述的一种建筑智能化的室内光纤检测设备,其特征在于:所述电线去壳机构(14)包括设置有的去壳孔(1401),且去壳孔(1401)内部安装有固定夹头(1402)和活动夹头(1405),所述活动夹头(1405)一端安装有按钮(1404),且按钮(1404)与去壳孔(1401)侧壁安装有弹簧(1406)。
  8. 根据权利要求7所述的一种建筑智能化的室内光纤检测设备,其特征在于:所述固定夹头(1402)和活动夹头(1405)采用金属夹头,且固定夹头(1402)和活动夹头(1405)一端电性连接有电加热器(1403),所述去壳孔(1401)底部一侧开设有排杂口(1407)。
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