CN221899242U - A current detection device for grid-connected monitoring of energy storage power station - Google Patents

A current detection device for grid-connected monitoring of energy storage power station Download PDF

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CN221899242U
CN221899242U CN202323501995.3U CN202323501995U CN221899242U CN 221899242 U CN221899242 U CN 221899242U CN 202323501995 U CN202323501995 U CN 202323501995U CN 221899242 U CN221899242 U CN 221899242U
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rack
current detection
detection device
energy storage
power station
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毕道田
王书甲
金学飞
秦冰瑀
李长城
祁小龙
刘世伟
田太阳
刘勇
彭子懿
曹浩杰
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Guoxin Henan Energy Technology Co ltd
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Guoxin Henan Energy Technology Co ltd
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Abstract

The utility model discloses a current detection device for grid-connected monitoring of an energy storage power station, which relates to the technical field of current detection, in particular to a current detection device for grid-connected monitoring of an energy storage power station, comprising a shell, wherein a supporting shaft lever is arranged in the shell, an adjusting gear is rotationally connected on the outer surface of the supporting shaft lever, the surface meshing of adjusting gear has first rack, and the one end of first rack is provided with fixed frame, and fixed frame's inside sliding connection has the clamp, and the surface of clamp is provided with the connection slide bar, and the one end of connecting the slide bar is provided with the control panel, and the surface of clamp is provided with first spring. This energy storage power station is incorporated into power networks current detection device of monitoring, through adjusting gear, first rack, fixed frame, clamp plate, first spring, second rack, solidus board, cassette and wind spring, adjusting the cooperation setting of rack and control slider, the current detection device who makes this energy storage power station be incorporated into power networks monitoring has possessed the effect of conveniently detecting the quick receive and releases of wire.

Description

一种储能电站并网监测的电流检测装置A current detection device for grid-connected monitoring of energy storage power station

技术领域Technical Field

本实用新型涉及电流检测技术领域,具体为一种储能电站并网监测的电流检测装置。The utility model relates to the technical field of current detection, in particular to a current detection device for grid-connected monitoring of an energy storage power station.

背景技术Background Art

储能电站是解决新能源风电、光伏间歇波动性,实现“削峰平谷”功能的重要手段之一,储能电站可以对电力进行存储,在需要的时候释放,能够有效解决电力在时间和空间上的不平衡,其中锂离子电池由于其能量密度高、能量转换效率高等特点,是目前电化学储能项目应用最多的电池。储能电站在使用时,一般会使用外置检测器进行电流检测。Energy storage power stations are one of the important means to solve the intermittent volatility of new energy wind power and photovoltaic power and realize the function of "peak shaving and valley flattening". Energy storage power stations can store electricity and release it when needed, which can effectively solve the imbalance of electricity in time and space. Among them, lithium-ion batteries are the most widely used batteries in electrochemical energy storage projects due to their high energy density and high energy conversion efficiency. When using energy storage power stations, external detectors are generally used for current detection.

现有的电流检测装置在使用时,不方便进行检测导线的收放,影响使用效率,同时,现有的电流检测装置不方便进行固定放置,在检测时需要手持,较为麻烦。When using the existing current detection device, it is not convenient to retract and extend the detection wire, which affects the use efficiency. At the same time, the existing current detection device is not convenient to be fixed and needs to be held in hand during detection, which is relatively troublesome.

实用新型内容Utility Model Content

(一)解决的技术问题1. Technical issues to be resolved

针对现有技术的不足,本实用新型提供了一种储能电站并网监测的电流检测装置,解决了上述背景技术中提出的问题。In view of the deficiencies in the prior art, the utility model provides a current detection device for grid-connected monitoring of an energy storage power station, which solves the problems raised in the above-mentioned background technology.

(二)技术方案(II) Technical solution

为实现以上目的,本实用新型通过以下技术方案予以实现:一种储能电站并网监测的电流检测装置,包括壳体,所述壳体的内部设置有支撑轴杆,支撑轴杆的外表面转动连接有调节齿轮,调节齿轮的外表面啮合有第一齿条,第一齿条的一端设置有固定框,固定框的内部滑动连接有夹线板,夹线板的外表面设置有连接滑杆,连接滑杆的一端设置有控制板,夹线板的外表面设置有第一弹簧,第一弹簧的一端设置在固定框的内壁上,第一弹簧套接在连接滑杆的外表面上,调节齿轮的外表面啮合有第二齿条,第二齿条的一端设置有固线板,固线板的内部转动连接有转动轴杆,转动轴杆的外表面缠绕有连接导线,连接导线的一端设置有插头,固线板的外表面设置有卡座,插头卡在卡座的内部。To achieve the above objectives, the utility model is implemented through the following technical solutions: a current detection device for grid-connected monitoring of an energy storage power station, comprising a shell, a supporting shaft rod is arranged inside the shell, an outer surface of the supporting shaft rod is rotatably connected to an adjusting gear, an outer surface of the adjusting gear rod is meshed with a first rack, a fixed frame is arranged at one end of the first rack, a wire clamping plate is slidably connected inside the fixed frame, a connecting slide rod is arranged on the outer surface of the wire clamping plate, a control plate is arranged at one end of the connecting slide rod, a first spring is arranged on the outer surface of the wire clamping plate, one end of the first spring is arranged on the inner wall of the fixed frame, the first spring is sleeved on the outer surface of the connecting slide rod, a second rack is meshed on the outer surface of the adjusting gear, a fixing plate is arranged at one end of the second rack, a rotating shaft rod is rotatably connected inside the fixing plate, a connecting wire is wound around the outer surface of the rotating shaft rod, a plug is arranged at one end of the connecting wire, a socket is arranged on the outer surface of the fixing plate, and the plug is clamped inside the socket.

可选的,所述转动轴杆的外表面设置有卷簧,卷簧的一端设置在固线板的内部。Optionally, a coil spring is disposed on the outer surface of the rotating shaft, and one end of the coil spring is disposed inside the wire fixing plate.

可选的,所述第一齿条和第二齿条的外表面设置有限位环,限位环的内部滑动连接有连接滑杆,连接滑杆的两端设置在壳体的内壁上,限位环的外表面设置有第二弹簧,第二弹簧的一端设置在壳体的内壁上。Optionally, a limiting ring is provided on the outer surface of the first rack and the second rack, a connecting slide rod is slidably connected inside the limiting ring, both ends of the connecting slide rod are arranged on the inner wall of the shell, and a second spring is provided on the outer surface of the limiting ring, and one end of the second spring is arranged on the inner wall of the shell.

可选的,所述壳体的外表面开设有调节滑槽,调节滑槽的内部滑动连接有调节滑块,调节滑块的一面设置有调节齿条,调节齿条与调节齿轮相互啮合,调节滑块远离调节齿条一面啮合有控制滑块。Optionally, an adjustment groove is provided on the outer surface of the shell, an adjustment slider is slidably connected inside the adjustment groove, an adjustment rack is provided on one side of the adjustment slider, the adjustment rack and the adjustment gear are meshed with each other, and a control slider is meshed on the side of the adjustment slider away from the adjustment rack.

可选的,所述壳体的外表面设置有显示器和控制按钮,夹线板和插头通过到导线与显示器和控制按钮相互连接。Optionally, a display and control buttons are provided on the outer surface of the shell, and the clamping plate and the plug are connected to the display and the control buttons through wires.

可选的,所述壳体的背面开设有密封隔仓,密封隔仓的内部滑动连接有活塞条,活塞条的上端设置有连接座,连接座的内部转动连接有连接柱,连接柱的外表面设置有限位卡板,连接柱远离活塞条的一端设置有控制把手。Optionally, a sealed compartment is provided on the back side of the shell, a piston bar is slidably connected to the inside of the sealed compartment, a connecting seat is provided at the upper end of the piston bar, a connecting column is rotatably connected to the inside of the connecting seat, a limiting clamping plate is provided on the outer surface of the connecting column, and a control handle is provided at the end of the connecting column away from the piston bar.

可选的,所述壳体的背面开设有导气仓,导气仓和密封隔仓之间开设有连接通孔,壳体的背面设置有吸盘,吸盘与导气仓相连。Optionally, an air guide bin is provided on the back side of the shell, a connecting through hole is provided between the air guide bin and the sealing compartment, and a suction cup is provided on the back side of the shell, and the suction cup is connected to the air guide bin.

可选的,所述壳体的背面设置有永磁铁盘,永磁铁盘和吸盘的数量为若干个,均匀的分布在壳体的背部。Optionally, a permanent magnet disk is disposed on the back of the shell, and there are several permanent magnet disks and suction cups evenly distributed on the back of the shell.

(三)有益效果(III) Beneficial effects

本实用新型提供了一种储能电站并网监测的电流检测装置,具备以下有益效果:The utility model provides a current detection device for grid-connected monitoring of energy storage power stations, which has the following beneficial effects:

1、该储能电站并网监测的电流检测装置,通过调节齿轮、第一齿条、固定框、夹线板、第一弹簧、第二齿条、固线板、卡座和卷簧、调节齿条和控制滑块的配合设置,使该储能电站并网监测的电流检测装置具备了方便检测导线快速收放的效果。1. The current detection device for grid-connected monitoring of the energy storage power station has the effect of facilitating the rapid retraction and extension of the detection wire by adjusting the gear, the first rack, the fixing frame, the clamping plate, the first spring, the second rack, the fixing plate, the clamping seat and the coil spring, the adjusting rack and the control slider.

2、该储能电站并网监测的电流检测装置,通过活塞条、连接柱、控制把手、限位卡板、导气仓、吸盘和永磁铁盘的配合设置,使该储能电站并网监测的电流检测装置具备了方便在不同情况下快速固定电流检测装置的效果。2. The current detection device for grid-connected monitoring of the energy storage power station has the effect of facilitating and quickly fixing the current detection device under different circumstances through the coordinated arrangement of the piston bar, the connecting column, the control handle, the limit card plate, the air guide chamber, the suction cup and the permanent magnet disk.

附图说明BRIEF DESCRIPTION OF THE DRAWINGS

图1为本实用新型立体结构示意图;FIG1 is a schematic diagram of the three-dimensional structure of the utility model;

图2为本实用新型壳体的内部结构示意图;FIG2 is a schematic diagram of the internal structure of the housing of the utility model;

图3为本实用新型固线板的内部结构示意图;FIG3 is a schematic diagram of the internal structure of the wire fixing plate of the utility model;

图4为本实用新型活塞条的外部结构示意图;FIG4 is a schematic diagram of the external structure of the piston bar of the utility model;

图5为本实用新型导气仓的内部结构示意图;FIG5 is a schematic diagram of the internal structure of the air guide bin of the utility model;

图6为本实用新型后视的结构示意图;FIG6 is a schematic diagram of the structure of the utility model from the rear;

图7为本实用新型前视的结构示意图。FIG. 7 is a schematic diagram of the structure of the utility model from the front.

图中:1、壳体;2、调节齿轮;3、第一齿条;4、固定框;5、夹线板;6、第一弹簧;7、第二齿条;8、固线板;9、连接导线;10、卷簧;11、第二弹簧;12、调节齿条;13、控制滑块;14、显示器;15、控制按钮;16、活塞条;17、连接柱;18、限位卡板;19、控制把手;20、导气仓;21、永磁铁盘;22、吸盘。In the figure: 1. shell; 2. adjusting gear; 3. first rack; 4. fixing frame; 5. wire clamping plate; 6. first spring; 7. second rack; 8. wire fixing plate; 9. connecting wire; 10. coil spring; 11. second spring; 12. adjusting rack; 13. control slider; 14. display; 15. control button; 16. piston bar; 17. connecting column; 18. limit card plate; 19. control handle; 20. air guide chamber; 21. permanent magnet disk; 22. suction cup.

具体实施方式DETAILED DESCRIPTION

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。The technical solutions in the embodiments of the present invention will be described clearly and completely below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all of the embodiments.

实施例1Example 1

一种储能电站并网监测的电流检测装置,包括壳体1,壳体1的内部设置有支撑轴杆,支撑轴杆的外表面转动连接有调节齿轮2,调节齿轮2的外表面啮合有第一齿条3,第一齿条3的一端设置有固定框4,固定框4的内部滑动连接有夹线板5,夹线板5的外表面设置有连接滑杆,连接滑杆的一端设置有控制板,夹线板5的外表面设置有第一弹簧6,第一弹簧6的一端设置在固定框4的内壁上,第一弹簧6套接在连接滑杆的外表面上,调节齿轮2的外表面啮合有第二齿条7,第二齿条7的一端设置有固线板8,固线板8的内部转动连接有转动轴杆,转动轴杆的外表面缠绕有连接导线9,连接导线9的一端设置有插头,固线板8的外表面设置有卡座,插头卡在卡座的内部,转动轴杆的外表面设置有卷簧10,卷簧10的一端设置在固线板8的内部,第一齿条3和第二齿条7的外表面设置有限位环,限位环的内部滑动连接有连接滑杆,连接滑杆的两端设置在壳体1的内壁上,限位环的外表面设置有第二弹簧11,第二弹簧11的一端设置在壳体1的内壁上,壳体1的外表面开设有调节滑槽,调节滑槽的内部滑动连接有调节滑块,调节滑块的一面设置有调节齿条12,调节齿条12与调节齿轮2相互啮合,调节滑块远离调节齿条12一面啮合有控制滑块13,壳体1的外表面设置有显示器14和控制按钮15,夹线板5和插头通过到导线与显示器14和控制按钮15相互连接。A current detection device for grid-connected monitoring of an energy storage power station comprises a shell 1, a supporting shaft is arranged inside the shell 1, an adjusting gear 2 is rotatably connected to the outer surface of the supporting shaft, a first rack 3 is meshed on the outer surface of the adjusting gear 2, a fixing frame 4 is arranged at one end of the first rack 3, a clamping plate 5 is slidably connected inside the fixing frame 4, a connecting slide is arranged on the outer surface of the clamping plate 5, a control plate is arranged at one end of the connecting slide, a first spring 6 is arranged on the outer surface of the clamping plate 5, one end of the first spring 6 is arranged on the inner wall of the fixing frame 4, the first spring 6 is sleeved on the outer surface of the connecting slide, a second rack 7 is meshed on the outer surface of the adjusting gear 2, a fixing plate 8 is arranged at one end of the second rack 7, a rotating shaft is rotatably connected inside the fixing plate 8, a connecting wire 9 is wound around the outer surface of the rotating shaft, a plug is arranged at one end of the connecting wire 9, and a connecting wire 9 is arranged at the outer surface of the fixing plate 8. A card seat is provided, and the plug is stuck inside the card seat. A coil spring 10 is provided on the outer surface of the rotating shaft, and one end of the coil spring 10 is arranged inside the wire fixing plate 8. A limiting ring is provided on the outer surfaces of the first rack 3 and the second rack 7. A connecting slide rod is slidably connected inside the limiting ring. Both ends of the connecting slide rod are arranged on the inner wall of the shell 1. A second spring 11 is provided on the outer surface of the limiting ring, and one end of the second spring 11 is arranged on the inner wall of the shell 1. An adjusting groove is provided on the outer surface of the shell 1, and an adjusting slider is slidably connected inside the adjusting groove. An adjusting rack 12 is provided on one side of the adjusting slider, and the adjusting rack 12 is meshed with the adjusting gear 2. A control slider 13 is meshed on the side of the adjusting slider away from the adjusting rack 12. A display 14 and a control button 15 are provided on the outer surface of the shell 1. The clamping plate 5 and the plug are connected to the display 14 and the control button 15 through the wires.

为了实现使该储能电站并网监测的电流检测装置具备了方便检测导线快速收放的效果,如附图1-3所示,本申请采用如下结构,通过调节齿轮2、第一齿条3、固定框4、夹线板5、第一弹簧6、第二齿条7、固线板8、卡座和卷簧10、调节齿条12和控制滑块13的配合设置,在使用的过程中,通过滑动控制滑块13,进而带动调节齿条12滑动,带动调节齿轮2转动,在第一齿条3和第二齿条7的作用下,带动固定框4和固线板8沿着连接滑杆向两侧滑动,拉伸第二弹簧11,从而使夹线板5和固线板8从壳体1移出,当储能电站通过内置插头检测电流时,拉动控制板,挤压第一弹簧6,调节夹线板5之间的间距,随后将电站的插头卡到夹线板5之间,松开控制板,在第一弹簧6的弹力作用下,使夹线板5卡紧电站插头,当需要外置导线进行电站电流检测时,通过拉动连接导线9,使卷簧10受力,将插头拉出,进行检测使用,使用完成后,松开插头,在卷簧10的弹力作用下,使转动轴杆转动,进而将连接导线9重新缠绕到转动轴杆上,于此同时,在第二弹簧11的弹力作用下,使固定框4和固线板8复位,重新收纳到壳体1的内部,实现使该储能电站并网监测的电流检测装置具备了方便检测导线快速收放的效果;In order to make the current detection device for grid-connected monitoring of the energy storage power station have the effect of facilitating the rapid retraction and release of the detection wire, as shown in Figures 1-3, the present application adopts the following structure, through the matching arrangement of the adjusting gear 2, the first rack 3, the fixed frame 4, the wire clamping plate 5, the first spring 6, the second rack 7, the wire fixing plate 8, the holder and the coil spring 10, the adjusting rack 12 and the control slider 13, during use, by sliding the control slider 13, thereby driving the adjusting rack 12 to slide, driving the adjusting gear 2 to rotate, under the action of the first rack 3 and the second rack 7, driving the fixed frame 4 and the wire fixing plate 8 to slide to both sides along the connecting slide rod, stretching the second spring 11, so that the wire clamping plate 5 and the wire fixing plate 8 are moved out of the shell 1, when the energy storage power station detects current through the built-in plug, Pull the control panel, squeeze the first spring 6, adjust the spacing between the clamping plates 5, then clamp the plug of the power station between the clamping plates 5, loosen the control panel, and under the elastic force of the first spring 6, the clamping plate 5 clamps the power station plug. When an external wire is needed for power station current detection, the connecting wire 9 is pulled to force the coil spring 10, and the plug is pulled out for detection and use. After use, loosen the plug, and under the elastic force of the coil spring 10, the rotating shaft is rotated, and the connecting wire 9 is rewound onto the rotating shaft. At the same time, under the elastic force of the second spring 11, the fixing frame 4 and the fixing plate 8 are reset and re-stored into the shell 1, so that the current detection device for grid-connected monitoring of the energy storage power station has the effect of facilitating the rapid retraction and release of the detection wire;

一种储能电站并网监测的电流检测装置,壳体1的背面开设有密封隔仓,密封隔仓的内部滑动连接有活塞条16,活塞条16的上端设置有连接座,连接座的内部转动连接有连接柱17,连接柱17的外表面设置有限位卡板18,连接柱17远离活塞条16的一端设置有控制把手19,壳体1的背面开设有导气仓20,导气仓20和密封隔仓之间开设有连接通孔,壳体1的背面设置有吸盘22,吸盘22与导气仓20相连,壳体1的背面设置有永磁铁盘21,永磁铁盘21和吸盘22的数量为若干个,均匀的分布在壳体1的背部。A current detection device for grid-connected monitoring of an energy storage power station, wherein a sealed compartment is provided on the back of a shell 1, a piston bar 16 is slidably connected inside the sealed compartment, a connecting seat is provided at the upper end of the piston bar 16, a connecting column 17 is rotatably connected inside the connecting seat, a limiting clamping plate 18 is provided on the outer surface of the connecting column 17, a control handle 19 is provided at one end of the connecting column 17 away from the piston bar 16, an air guide compartment 20 is provided on the back of the shell 1, a connecting through hole is provided between the air guide compartment 20 and the sealed compartment, a suction cup 22 is provided on the back of the shell 1, the suction cup 22 is connected to the air guide compartment 20, a permanent magnet disk 21 is provided on the back of the shell 1, and the number of the permanent magnet disk 21 and the suction cup 22 is several and evenly distributed on the back of the shell 1.

为了实现使该储能电站并网监测的电流检测装置具备了方便在不同情况下快速固定电流检测装置的效果,如附图4-7所示,本申请采用如下结构,通过活塞条16、连接柱17、控制把手19、限位卡板18、导气仓20、吸盘22和永磁铁盘21的配合设置,在使用的过程中,当储能电站外壳为铁质材料时,在永磁铁盘21的作用下,可以将检测装置快速的固定到储能电站的外表面上,当不为铁制品时,将检测装置的壳体1放置到平面上,随后,通过拉动控制把手19,进而拉动活塞条16,使导气仓20的内部负压,在吸盘22的作用下,将壳体1吸附到储能电站外置的平面上,同时,当限位卡板18脱离壳体1后,转动控制把手19,在限位卡板18的作用下,对连接柱17的位置进行限位,防止活塞条16回缩,使用完成后,转动控制把手19,使限位卡板18复位,下滑活塞条16,对导气仓20进行泄压,将检测装置快速拆卸,从而实现了使该储能电站并网监测的电流检测装置具备了方便在不同情况下快速固定电流检测装置的效果。In order to make the current detection device of the energy storage power station grid-connected monitoring have the effect of being convenient for quickly fixing the current detection device under different circumstances, as shown in Figures 4-7, the present application adopts the following structure, through the cooperation of the piston bar 16, the connecting column 17, the control handle 19, the limit card plate 18, the air guide bin 20, the suction cup 22 and the permanent magnet disk 21. During use, when the shell of the energy storage power station is made of iron material, under the action of the permanent magnet disk 21, the detection device can be quickly fixed to the outer surface of the energy storage power station. When it is not made of iron, the shell 1 of the detection device is placed on a plane, and then, by pulling the control handle 19, By pulling the piston bar 16, the internal negative pressure of the air guide bin 20 is generated, and under the action of the suction cup 22, the shell 1 is adsorbed to the external plane of the energy storage power station. At the same time, when the limit card plate 18 is separated from the shell 1, the control handle 19 is turned, and under the action of the limit card plate 18, the position of the connecting column 17 is limited to prevent the piston bar 16 from retracting. After use, the control handle 19 is turned to reset the limit card plate 18, and the piston bar 16 is lowered to relieve the pressure in the air guide bin 20, and the detection device is quickly disassembled, thereby achieving the effect of enabling the current detection device for grid-connected monitoring of the energy storage power station to be convenient for quickly fixing the current detection device under different circumstances.

以上所述,仅为本实用新型较佳的具体实施方式,但本实用新型的保护范围并不局限于此,任何熟悉本技术领域的技术人员在本实用新型揭露的技术范围内,根据本实用新型的技术方案及其实用新型构思加以等同替换或改变,都应涵盖在本实用新型的保护范围之内。The above description is only a preferred specific implementation manner of the present invention, but the protection scope of the present invention is not limited thereto. Any technician familiar with the technical field can make equivalent replacements or changes within the technical scope disclosed by the present invention according to the technical scheme and the utility model concept of the present invention, which should be covered by the protection scope of the present invention.

Claims (8)

1. The utility model provides a power storage power station is incorporated into power networks current detection device of monitoring, includes casing, its characterized in that: the inside of casing is provided with the support axostylus axostyle, the surface rotation of support axostylus axostyle is connected with adjusting gear, adjusting gear's surface meshing has first rack, the one end of first rack is provided with fixed frame, the inside sliding connection of fixed frame has the clamp plate, the surface of clamp plate is provided with the connection slide bar, the one end of connecting the slide bar is provided with the control panel, the surface of clamp plate is provided with first spring, the one end setting of first spring is on the inner wall of fixed frame, first spring cup joints on the surface of connecting the slide bar, adjusting gear's surface meshing has the second rack, the one end of second rack is provided with the solidus board, the inside rotation of solidus board is connected with the rotation axostylus axostyle, the surface winding of rotation axostylus axostyle has connecting wire, the one end of connecting wire is provided with the plug, the surface of solidus axostyle is provided with the cassette, the plug card is in the inside of cassette.
2. The energy storage power station grid-connected monitored current detection device according to claim 1, wherein: the outer surface of the rotating shaft rod is provided with a coil spring, and one end of the coil spring is arranged inside the wire fixing plate.
3. The energy storage power station grid-connected monitored current detection device according to claim 1, wherein: the outer surface of first rack and second rack is provided with the spacing ring, and the inside sliding connection of spacing ring has the connection slide bar, and the both ends of connecting the slide bar set up on the inner wall of casing, and the surface of spacing ring is provided with the second spring, and the one end setting of second spring is on the inner wall of casing.
4. The energy storage power station grid-connected monitored current detection device according to claim 1, wherein: the outer surface of casing has seted up the regulation spout, and the inside sliding connection of regulation spout has an adjusting slide, and adjusting slide's one side is provided with adjusting rack, adjusting rack and adjusting gear intermeshing, adjusting slide keep away from adjusting rack one side meshing has control slide.
5. The energy storage power station grid-connected monitored current detection device according to claim 1, wherein: the outer surface of the shell is provided with a display and a control button, and the clamp plate and the plug are mutually connected with the display and the control button through the lead wires.
6. The energy storage power station grid-connected monitored current detection device according to claim 1, wherein: the back of casing has seted up sealed compartment, and the inside sliding connection of sealed compartment has the piston strip, and the upper end of piston strip is provided with the connecting seat, and the inside rotation of connecting seat is connected with the spliced pole, and the surface of spliced pole is provided with spacing cardboard, and the one end that the piston strip was kept away from to the spliced pole is provided with control handle.
7. The energy storage power station grid-connected monitored current detection device according to claim 1, wherein: the back of casing has seted up the air guide storehouse, has seted up the connection through-hole between air guide storehouse and the sealed compartment, and the back of casing is provided with the sucking disc, and the sucking disc links to each other with the air guide storehouse.
8. The energy storage power station grid-connected monitored current detection device according to claim 1, wherein: the back of casing is provided with the permanent magnetism dish, and permanent magnetism dish and sucking disc's quantity is a plurality of, evenly distributed is at the back of casing.
CN202323501995.3U 2023-12-21 2023-12-21 A current detection device for grid-connected monitoring of energy storage power station Active CN221899242U (en)

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CN202323501995.3U CN221899242U (en) 2023-12-21 2023-12-21 A current detection device for grid-connected monitoring of energy storage power station

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Application Number Priority Date Filing Date Title
CN202323501995.3U CN221899242U (en) 2023-12-21 2023-12-21 A current detection device for grid-connected monitoring of energy storage power station

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