WO2015013912A1 - 一种电子计步器 - Google Patents

一种电子计步器 Download PDF

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Publication number
WO2015013912A1
WO2015013912A1 PCT/CN2013/080502 CN2013080502W WO2015013912A1 WO 2015013912 A1 WO2015013912 A1 WO 2015013912A1 CN 2013080502 W CN2013080502 W CN 2013080502W WO 2015013912 A1 WO2015013912 A1 WO 2015013912A1
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WIPO (PCT)
Prior art keywords
display screen
hole
bracket
length
avoidance
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PCT/CN2013/080502
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English (en)
French (fr)
Inventor
谢虹
Original Assignee
Xie Hong
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Publication of WO2015013912A1 publication Critical patent/WO2015013912A1/zh

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    • GPHYSICS
    • G01MEASURING; TESTING
    • G01CMEASURING DISTANCES, LEVELS OR BEARINGS; SURVEYING; NAVIGATION; GYROSCOPIC INSTRUMENTS; PHOTOGRAMMETRY OR VIDEOGRAMMETRY
    • G01C22/00Measuring distance traversed on the ground by vehicles, persons, animals or other moving solid bodies, e.g. using odometers, using pedometers
    • G01C22/006Pedometers

Definitions

  • the present invention relates to the field of sports equipment and, more particularly, to an electronic pedometer. ⁇ Background technique ⁇
  • the pedometer calculates the amount of exercise by counting the number of steps, distance, speed, time and other data to calculate the amount of exercise, to prevent underactivity or excessive exercise.
  • the electronic pedometer is mainly composed of a vibration sensor and an electronic counter.
  • the so-called vibration sensor is actually a balance hammer that is broken when the vibration is up and down, so that a contact can be turned on/off.
  • the electronic counter records and displays the main Function, other heat consumption, and distance conversion are all done by the circuit.
  • I have designed an electronic pedometer which includes an upper shell and a lower shell, an upper main board and a lower main board fixed on the inner surface of the upper case, and function keys disposed on the upper main board and the lower main board, and a display screen electrically connected to the upper motherboard, a vibration sensor electrically connected to the upper motherboard, and an electronic counter disposed on the upper motherboard;
  • the electronic pedometer is narrow in front and narrow in the front, and the upper motherboard is fixed at a front end of the upper casing, the display screen is fixed to the front ends of the upper casing and the lower casing, and a display screen avoiding hole corresponding to the shape of the display screen is disposed at a front end of the upper casing and the lower casing.
  • the length and width of the display avoidance hole are both smaller than the length and width of the display screen, so that the display screen is fixed inside the electronic pedometer.
  • This program is not public.
  • the display is electrically connected to the upper motherboard. During use, as the user runs, the display may sway inside the electronic pedometer, which will cause the circuit between the display and the upper motherboard. Damage, which affects the life of the electronic pedometer.
  • the technical problem to be solved by the present invention is to provide an electronic pedometer that effectively fixes the display screen without swaying easily.
  • An electronic pedometer comprising a housing, a display screen electrically connected to the upper main board and the lower main board, and a display screen electrically connected to the upper main board;
  • the head of the housing is provided with a display avoidance hole adapted to the shape of the display screen,
  • the base of the display avoidance hole is provided with a bracket for fixing the display screen, and the bracket includes a vertical arm that is in close contact with the display avoidance hole, and a cross arm that is parallel to and connected to the vertical arm.
  • the bracket has an interference fit with the display screen, the length of the cross arm is greater than or equal to the length of the display screen, and the length of the vertical arm is greater than or equal to the thickness of the display screen. This will allow the display to be attached to the stand.
  • an opening having a length smaller than a length of the display screen is disposed in the middle of the cross arm.
  • the cross arm can also prevent the display from falling backwards and reduce the weight of the electronic pedometer.
  • the housing comprises an upper shell and a lower shell
  • the head of the upper shell is provided with a first escaping half hole with an opening
  • the head of the lower shell is provided with a second escaping with an opening a half hole
  • a total height of the first escaping half hole and the second escaping half hole is smaller than a height of the display screen
  • the first escaping half hole is the same length as the second escaping half hole and smaller than the display screen
  • the bracket is symmetrically disposed on a rear side of the first escape half hole. This is a specific form in which the display avoidance hole and the bracket are disposed on the electronic pedometer. After the first escape half hole and the second escape half hole overlap in the opening, it is a complete display avoidance hole.
  • the height of the vertical arm of the bracket is the same as the height of the cross arm, and the height of the bracket is smaller than the height of the display screen. This is the setting form of the stand.
  • the inner sides of the two portions of the second escaping half hole are provided with a display screen pressing bone, and the display screen pressing bone is symmetrically distributed on both sides of the second escaping half hole, and the two display screens are pressed
  • the distance between the bones is less than the length of the second escape half holes.
  • the height of the display screen is smaller than the distance between the upper case and the lower case, and the display case is pressed in the lower case, so that the display screen does not shake up and down after being fixed.
  • a block-shaped upwardly protruding display screen limiting bone is disposed at an intermediate position behind the second escaping half hole, and between the display screen limiting bone and the second escaping half hole The distance is equal to the distance between the outer side of the cross arm and the first escape half hole.
  • the display limit bone is used in conjunction with the bracket on the upper case to better secure the display.
  • the display screen and the upper main board are connected by a flexible circuit board. Flexible circuit boards have high assembly density and small size, which can reduce the connection between the display and the motherboard.
  • the length of the flexible circuit board is greater than the distance between the bracket and the upper main board. This is easy to assemble.
  • the upper shell and the lower shell are fixed by screws, and the upper main board is fixed to the inner surface of the upper shell by screws, and the inner surface of the head of the upper shell is provided with two fixing places.
  • the invention is provided with a bracket on the outer side of the root of the display avoidance hole, so that the display screen can be placed on the bracket, and the bracket comprises a cross arm and two vertical walls, so that the bracket can limit the position of the display screen. This way, the display will not shake inside the pedometer when running with the pedometer.
  • FIG. 1 is a schematic overall view of an electronic pedometer according to an embodiment of the present invention.
  • FIG. 2 is a schematic view of the interior of an upper casing according to an embodiment of the present invention.
  • FIG. 3 is a schematic view showing the display screen fixed to the inside of the upper case according to an embodiment of the present invention.
  • Figure 4 is a schematic view of the inside of the lower case of the embodiment of the present invention.
  • FIG. 5 is a schematic diagram of a connection between an upper motherboard and a display screen according to an embodiment of the present invention.
  • An electronic pedometer includes a housing, an upper main board and a lower main board fixed inside the housing, and a display screen electrically connected to the upper main board; the head of the housing is provided with the display screen a shape-adapted display avoidance hole, the root of the display avoidance hole is provided with a bracket for fixing the display screen, the bracket includes a vertical arm closely adjacent to the display avoidance hole, and the vertical arm A cross arm that is parallel and connected to the vertical arm.
  • the invention is provided with a bracket on the outer side of the root of the display avoidance hole, so that the display screen can be placed on the bracket, and the bracket comprises a cross arm and two vertical walls, so that the bracket can limit the position of the display screen.
  • the electronic pedometer 1 includes an upper casing 2 and a lower casing 4, and is fixed to the upper main board 5 and the lower main board inside the electronic pedometer 1, and the display screen 3 connected to the upper main board 5.
  • a first escaping half hole 21 having an opening is provided at a head portion of the upper case 2, and a second escaping half hole 41 having an opening is provided at a head portion of the lower case 4, and the opening and the second opening of the first escaping half hole 21 are When the openings of the avoidance half holes 41 coincide with each other, the first escape half holes 21 and the second escape half holes 41 are combined into a complete display avoidance hole.
  • the display screen 3 has a square shape as a whole, and the shapes of the first escaping half hole 21 and the second escaping half hole 41 correspond to the shape of the display screen 3.
  • the total height of the first escaping half hole 21 and the second escaping half hole 41 is smaller than
  • the height of the display screen 3, the first escaping half hole 21 and the second escaping half hole 41 are the same length and smaller than the length of the display screen 3; the rear side bracket 22 of the bracket 22 symmetrically disposed at the first escaping half hole is disposed at
  • the first escaping half hole 21 has two vertical arm 221 and a cross arm 222 connected in parallel with the vertical arm.
  • the gap between the bracket 22 and the display screen 3 is matched.
  • the inner distance between the two vertical arms 221 is greater than or equal to the length of the display screen 3.
  • the length of the vertical arm 221 is greater than or equal to the thickness of the display screen 3.
  • the middle of the cross arm 222 is provided.
  • the opening having a length smaller than the length of the display 3 is such that the cross arm 222 can also function to fix the display screen 3, which also reduces the weight of the electronic pedometer 1.
  • Two upwardly protruding display screens 42 are disposed on the inner sides of the two portions of the second escaping half hole 41.
  • the display pressing bones 42 are symmetrically distributed on both sides of the second escaping half hole 41, and the two display screens are pressed. Between bones 42 The distance is smaller than the length of the second escape half hole 41.
  • the height of the display screen 3 is smaller than the distance between the upper casing 2 and the lower casing 4, and the display panel pressing bone 42 is disposed on the lower casing 4, so that the display screen 3 does not sway up and down after being fixed, and the display screen presses the bone 42
  • the height is equal to the difference in height between the display 3 and the upper case 2 and the lower case 4.
  • a block-shaped upwardly protruding display screen limiting bone 43 is disposed at an intermediate position behind the second escaping half hole 41.
  • the distance between the display limiting bone 43 and the second escaping half hole 41 is equal to the cross arm 222.
  • the distance between the outer side and the first escaping half hole 21, the display limit position, 43 is used in conjunction with the bracket 22 on the upper casing 2 to better fix the display screen 3.
  • the upper casing 2 and the lower casing 4 are fixed by screws, and the upper main plate 5 is fixed to the inner surface of the upper casing 2 by screws, and the inner surface of the head of the upper casing 2 is provided with two for fixing the upper casing 2 and the lower casing 4 a first screw hole post 23 and a second screw hole post 24 for fixing the upper case 2 and the upper main plate 5;
  • the first screw hole post 23 is located outside the bracket 22;
  • the second screw hole post 24 is located at the bracket 22
  • the rear side; the height of the bracket 22 is smaller than the height of the first screw hole post 23, and the cross arm 222 of the bracket 22 is the same height as the vertical arm 221.
  • the display screen 3 and the upper main board 5 are connected by a flexible circuit board 6.
  • the flexible circuit 6 has the characteristics of high assembly density and small volume, and can reduce the connection between the display screen 3 and the upper main board 5; the length of the flexible circuit board 6 It is larger than the distance between the bracket 22 and the upper main board 5, so that the assembly is facilitated, and the excess flexible circuit board 6 is folded between the upper main board 5 and the display screen 3 at the time of fixing.

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  • Physics & Mathematics (AREA)
  • Engineering & Computer Science (AREA)
  • General Physics & Mathematics (AREA)
  • Radar, Positioning & Navigation (AREA)
  • Remote Sensing (AREA)
  • Measurement Of Distances Traversed On The Ground (AREA)
  • Devices For Indicating Variable Information By Combining Individual Elements (AREA)

Abstract

一种电子计步器,包括壳体,固定在所述壳体内部的上主板(5)与下主板,与所述上主板(5)电连接的显示屏(3);所述壳体的头部设置有与所述显示屏(3)形状相适应的显示屏避让孔,所述显示屏避让孔的根部设置有用来固定所述显示屏(3)的支架(22),所述支架(22)包括一个紧贴所述显示屏避让孔的竖臂、与所述竖臂平行且与所述竖臂相连的横臂。由于在显示屏避让孔的根部的外侧均设置有支架(22),这样就可以让显示屏(3)放置在支架(22)上,而且支架(22)包括一个横臂和两个竖臂,这样支架(22)就可以限制显示屏(3)的位置了,这样在使用计步器跑步时,显示屏(3)就不会在计步器的内部晃动了。

Description

一种电子计步器
【技术领域】
本发明涉及运动器材领域, 更具体的说, 涉及一种电子计步器。 【背景技术】
计步器通过统计步数、 距离、 速度、 时间等数据来计算卡路里或者能量消 耗来掌握运动量的, 防止运动不足或者运动过量。
电子计步器主要由振动传感器和电子计数器组成, 所谓的振动传感器其实 就是一个平衡锤在上下振动时平衡被破坏使一个触点能出现通 /断动作, 由电子 计数器记录并显示就完成了主要功能, 其他的热量消耗, 路程换算均由电路完 成。
本人已设计一种电子计步器, 所述的电子计步器包括上壳与下壳、 固定在 上壳内表面的上主板与下主板、 设置在上主板与下主板上的功能键、 与所述上 主板电连接的显示屏、 与所述上主板电连接的振动传感器和设置在所述上主板 的电子计数器; 所述的电子计步器前宽后窄, 所述的上主板固定在所述上壳的 前端, 所述的显示屏固定在所述上壳与下壳的前端, 在所述上壳与下壳的前端 设置有与所述显示屏形状相适应的显示屏避让孔, 所述显示屏避让孔的长度和 宽度均小于所述显示屏的长度与宽度, 这样显示屏就固定在所述电子计步器的 内部了。 此方案未公开。 但是显示屏与上主板之间是电连接的, 在使用时, 随 着使用者的跑动, 显示屏可能会在电子计步器的内部晃动, 这样会造成显示屏 与上主板之间电路的损坏, 从而影响电子计步器的使用寿命。
【发明内容】
本发明所要解决的技术问题是提供一种将显示屏有效固定, 不会轻易晃动 的电子计步器。
本发明的目的是通过以下技术方案来实现的: 一种电子计步器, 包括壳体, 固定在所述壳体内部的上主板与下主板, 与所述上主板电连接的显示屏; 所述 壳体的头部设置有与所述显示屏形状相适应的显示屏避让孔, 所述显示屏避让 孔的根部设置有用来固定所述显示屏的支架, 所述支架包括一个紧贴所述显示 屏避让孔的竖臂、 与所述竖臂平行的且相连的横臂。
优选的, 所述支架与显示屏之间过盈配合, 所述横臂的长度大于或者等于 所述显示屏的长度, 所述竖臂的长度大于或者等于所述显示屏的厚度。 这样能 够让显示屏固定在支架上。
优选的, 所述横臂的中间设置有长度小于所述显示屏长度的开口。 这样设 置后横臂也能起到防止显示屏向后倒的作用, 而且减少了电子计步器的重量。
优选的, 所述的壳体包括上壳与下壳, 所述上壳的头部设置有带有开口的 第一避让半孔, 所述下壳的头部设置有带有开口的第二避让半孔, 所述第一避 让半孔与第二避让半孔的总高度小于所述显示屏的高度, 所述第一避让半孔与 第二避让半孔的长度相同且小于所述显示屏的长度; 所述的支架对称设置在在 所述第一避让半孔的后侧。 这是显示屏避让孔与支架设置在电子计步器上的具 体形式, 第一避让半孔与第二避让半孔在开口重合之后就是一个完整的显示屏 避让孔。
优选的, 所述支架的竖臂与横臂的高度相同, 所述支架的高度小于所述显 示屏的高度。 这是支架的设置形式。
优选的, 所述第二避让半孔的两根部的内侧设置有显示屏压骨, 所述显示 屏压骨对称分布在所述第二避让半孔的两侧, 且所述两个显示屏压骨之间的距 离小于所述第二避让半孔的长度。 显示屏的高度是小于上壳与下壳之间的距离 的, 在下壳设置显示屏压骨, 这样可以使得显示屏在固定以后不会上下晃动。
优选的, 所述第二避让半孔的后方的中间位置处设置有一个块状的向上凸 出的显示屏限位骨, 所述显示屏限位骨与所述第二避让半孔之间的距离等于所 述横臂外侧与第一避让半孔之间的距离。 显示屏限位骨与上壳上的支架配合使 用, 能够更好的固定显示屏。 优选的, 所述的显示屏与上主板之间通过柔性电路板连接。 柔性电路板具 有组装密度高, 体积小的特点, 可以减少显示屏与主板之间的连线。
优选的, 所述柔性电路板的长度大于所述支架与上主板之间的距离。 这样 方便组装。
优选的, 所述上壳与下壳之间通过螺丝固定, 所述上主板通过螺丝固定在 所述上壳的内表面, 所述上壳的头部的内表面设置有两个用来固定所述上壳与 下壳的第一螺丝孔柱和用来固定所述上壳与上主板的第二螺丝孔柱; 所述第一 螺丝孔柱位于所述支架的外侧; 所述第二螺丝孔柱位于所述支架的后侧; 所述 支架的高度小于所述第一螺丝孔柱的高度。 这是支架与上壳上的各个螺丝孔之 间的位置关系。
本发明由于在显示屏避让孔的根部的外侧设置有支架, 这样就可以让显示 屏放置在支架上, 而且支架包括一个横臂和两个竖壁, 这样支架就可以限制显 示屏的位置了, 这样在使用计步器跑步时, 显示屏就不会在计步器的内部晃动 了。
【附图说明】
图 1是本发明实施例的电子计步器的整体示意图;
图 2是本发明实施例的上壳内部示意图;
图 3是本发明实施例的显示屏固定在上壳内部的示意图;
图 4是本发明实施例的下壳内部示意图;
图 5是本发明实施例的上主板与显示屏之间的连接示意图。
其中: 1、 电子计步器; 2、 上壳; 21、 第一避让半孔; 22、 支架; 221、 竖 臂; 222、 横臂; 23、 第一螺丝孔柱; 24、 第二螺丝孔柱; 3、 显示屏; 4、 下壳; 41、 第二避让半孔; 42、 显示屏压骨; 43、 显示屏限位骨; 5、 上主板; 6、 柔 性电路板。 【具体实施方式】
一种电子计步器, 包括壳体, 固定在所述壳体内部的上主板与下主板, 与所 述上主板电连接的显示屏; 所述壳体的头部设置有与所述显示屏形状相适应的 显示屏避让孔, 所述显示屏避让孔的根部设置有用来固定所述显示屏的支架, 所述支架包括一个紧贴所述显示屏避让孔的竖臂、 与所述竖臂平行的且与所述 竖臂且相连的横臂。 本发明由于在显示屏避让孔的根部的外侧均设置有支架, 这样就可以让显示屏放置在支架上, 而且支架包括一个横臂和两个竖壁, 这样 支架就可以限制显示屏的位置了, 这样在使用计步器跑步时, 显示屏就不会在 计步器的内部晃动了。
下面结合附图和较佳的实施例对本发明作进一步说明。
如图 1至 5所示, 电子计步器 1包括上壳 2和下壳 4, 固定在电子计步器 1 内部的上主板 5与下主板, 与上主板 5连接的显示屏 3。 在上壳 2头部设置有带 有开口的第一避让半孔 21 , 下壳 4的头部设置有带有开口的第二避让半孔 41 , 当第一避让半孔 21的开口与第二避让半孔 41的开口相互重合时, 第一避让半 孔 21与第二避让半孔 41组合成一个完整的显示屏避让孔。 显示屏 3整体呈方 块状, 第一避让半孔 21与第二避让半孔 41的形状与显示屏 3的形状相对应, 第一避让半孔 21与第二避让半孔 41的总高度小于显示屏 3的高度, 第一避让 半孔 21与第二避让半孔 41的长度相同且小于显示屏 3的长度; 支架 22对称设 置在所述第一避让半孔的后侧支架 22包括设置在第一避让半孔 21 两根部的竖 臂 221和与竖臂平行且相连的横臂 222。 支架 22与显示屏 3之间间隙配合, 两 竖臂 221之间的内距大于或者等于显示屏 3的长度, 竖臂 221的长度大于或者 等于显示屏 3的厚度, 横臂 222的中间设置有长度小于显示屏 3长度的开口, 这样横臂 222也能够起到固定显示屏 3的作用, 这样还减轻了电子计步器 1的 重量。
在第二避让半孔 41的两根部的内侧设置有两个向上凸出的显示屏压骨 42, 显示屏压骨 42对称分布在第二避让半孔 41的两侧, 且两个显示屏压骨 42之间 的距离小于第二避让半孔 41的长度。 显示屏 3的高度是小于上壳 2与下壳 4之 间的距离的, 在下壳 4设置显示屏压骨 42, 这样可以使得显示屏 3在固定以后 不会上下晃动, 显示屏压骨 42的高度等于显示屏 3与上壳 2和下壳 4之间的高 度差。 第二避让半孔 41的后方的中间位置处设置有一个块状的向上凸出的显示 屏限位骨 43 , 显示屏限位骨 43与第二避让半孔 41之间的距离等于横臂 222外 侧与第一避让半孔 21之间的距离, 显示屏限位, 43与上壳 2上的支架 22配合使 用, 能够更好的固定显示屏 3。
上壳 2与下壳 4之间通过螺丝固定, 上主板 5通过螺丝固定在上壳 2的内表 面, 上壳 2的头部的内表面设置有两个用来固定上壳 2与下壳 4的第一螺丝孔 柱 23和用来固定上壳 2与上主板 5的第二螺丝孔柱 24; 第一螺丝孔柱 23位于 所述支架 22的外侧; 第二螺丝孔柱 24位于支架 22的后侧; 支架 22的高度小 于第一螺丝孔柱 23的高度, 且支架 22的横臂 222与竖臂 221的高度相同。
显示屏 3与上主板 5之间通过柔性电路板 6连接, 柔性电路 6具有组装密度 高, 体积小的特点, 可以减少显示屏 3与上主板 5之间的连线; 柔性电路板 6 的长度大于支架 22与上主板 5之间的距离, 这样方便组装, 在固定时将多出的 柔性电路板 6折叠在上主板 5与显示屏 3之间。
以上内容是结合具体的优选实施方式对本发明所作的进一步详细说明, 不能 认定本发明的具体实施只局限于这些说明。 对于本发明所属技术领域的普通技 术人员来说, 在不脱离本发明构思的前提下, 还可以做出若干筒单推演或替换, 都应当视为属于本发明的保护范围。

Claims

权利要求
1、 一种电子计步器, 其特征在于, 包括壳体, 固定在所述壳体内部的上主 板与下主板, 与所述上主板电连接的显示屏; 所述壳体的头部设置有与所述显 示屏形状相适应的显示屏避让孔, 所述显示屏避让孔的根部设置有用来固定所 述显示屏的支架, 所述支架包括一个紧贴所述显示屏避让孔的竖臂、 与所述竖 臂平行的且与相连的横臂。
2、 如权利要求 1所述的电子计步器, 其特征在于, 所述支架与显示屏之间 过盈配合, 所述横臂的长度大于或者等于所述显示屏的长度, 所述竖臂的长度 大于或者等于所述显示屏的厚度。
3、 如权利要求 2所述的电子计步器, 其特征在于, 所述横臂的中间设置有 长度小于所述显示屏长度的开口。
4、 如权利要求 3所述的电子计步器, 其特征在于, 所述的壳体包括上壳与 下壳, 所述上壳的头部设置有带有开口的第一避让半孔, 所述下壳的头部设置 有带有开口的第二避让半孔, 所述第一避让半孔与第二避让半孔的总高度小于 所述显示屏的高度, 所述第一避让半孔与第二避让半孔的长度相同且小于所述 显示屏的长度; 所述的支架对称设置在在所述第一避让半孔的后侧。
5、 如权利要求 4所述的电子计步器, 其特征在于, 所述支架的竖臂与横臂 的高度相同, 所述支架的高度小于所述显示屏的高度。
6、 如权利要求 5所述的电子计步器, 其特征在于, 所述第二避让半孔的两 根部的内侧设置有显示屏压骨, 所述显示屏压骨对称分布在所述第二避让半孔 的两侧, 且所述两个显示屏压骨之间的距离小于所述第二避让半孔的长度。
7、 如权利要求 6所述的电子计步器, 其特征在于, 所述第二避让半孔的后 方的中间位置处设置有一个块状的向上凸出的显示屏限位骨, 所述显示屏限位 骨与所述第二避让半孔之间的距离等于所述横臂外侧与第一避让半孔之间的距 离。
8、 如权利要求 1所述的电子计步器, 其特征在于, 所述的显示屏与上主板 之间通过柔性电路板连接。
9、 如权力要求 8所述的电子计步器, 其特征在于, 所述柔性电路板的长度 大于所述支架与上主板之间的距离。
10、 如权利要求 1 所述的电子计步器, 其特征在于, 所述上壳与下壳之间 通过螺丝固定, 所述上主板通过螺丝固定在所述上壳的内表面, 所述上壳的头 部的内表面设置有两个用来固定所述上壳与下壳的第一螺丝孔柱和用来固定所 述上壳与上主板的第二螺丝孔柱; 所述第一螺丝孔柱位于所述支架的外侧; 所 述第二螺丝孔柱位于所述支架的后侧; 所述支架的高度小于所述第一螺丝孔柱 的高度。
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