WO2023039997A1 - 一种便于散热和携带的软件测试装置 - Google Patents

一种便于散热和携带的软件测试装置 Download PDF

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Publication number
WO2023039997A1
WO2023039997A1 PCT/CN2021/126069 CN2021126069W WO2023039997A1 WO 2023039997 A1 WO2023039997 A1 WO 2023039997A1 CN 2021126069 W CN2021126069 W CN 2021126069W WO 2023039997 A1 WO2023039997 A1 WO 2023039997A1
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Prior art keywords
heat dissipation
testing device
convenient
software testing
slider
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PCT/CN2021/126069
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English (en)
French (fr)
Inventor
张帆
王贵真
田建仁
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南京轩世琪源软件科技有限公司
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Publication of WO2023039997A1 publication Critical patent/WO2023039997A1/zh

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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F1/00Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
    • G06F1/16Constructional details or arrangements
    • G06F1/18Packaging or power distribution
    • G06F1/181Enclosures
    • G06F1/182Enclosures with special features, e.g. for use in industrial environments; grounding or shielding against radio frequency interference [RFI] or electromagnetical interference [EMI]
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F1/00Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
    • G06F1/16Constructional details or arrangements
    • G06F1/20Cooling means

Definitions

  • the invention relates to the technical field of software testing, in particular to a software testing device that is convenient for heat dissipation and portability.
  • Software is a collection of computer data and instructions organized in a specific order. Generally speaking, software is divided into system software, application software, and middleware between the two. In order to ensure that the software can be safely and stably run on the computer Running requires continuous software testing. In practical applications, the software testing device is too bulky and not easy to carry, and the heat dissipation structure is not effective, which leads to a lot of dust entering the equipment while pursuing heat dissipation.
  • the present invention proposes a software testing device that is convenient for heat dissipation and portability, so as to overcome the above-mentioned technical problems existing in the related art.
  • a software testing device that is easy to dissipate heat and carry, including a lower casing, the interior of the lower casing is provided with a software running structure, a dustproof structure, a heat dissipation structure and an auxiliary structure, and the heat dissipation structure is located at the top of the software running structure
  • the dust-proof structure is located on both sides of the software running structure
  • the auxiliary structure is located at the bottom inside the lower casing
  • a hand strap is provided on one side of the lower casing
  • the lower casing The other side of the upper housing is provided with an external structure
  • the top of the lower housing is provided with an upper housing
  • the inside of the upper housing is provided with a display.
  • the software running structure is composed of a support frame and a test processor body, and the support frames are located on both sides of the test processor body.
  • the dust-proof structure is composed of a baffle, a telescopic link and a cooling hole, the cooling hole is located at the bottom of the telescopic link, and the baffle is located at one side of the telescopic link.
  • the heat dissipation structure is composed of a motor, a screw rod, a fan blade, a slider, an elastic rope and a rope, the elastic rope is located on one side of the slider, and the rope is located on the other side of the slider , the fan blade is located outside the slider, the screw rod is located inside the slider, and the motor is located on the side of the rope away from the slider.
  • the auxiliary structure is composed of an automatic telescopic rod and a non-slip base, and the non-slip base is located at the bottom end of the automatic telescopic rod.
  • the external connection structure is composed of a rotating shaft, a wiring hole and a cover plate, the cover plate is located on one side of the wiring hole, and the rotating shaft is located at the top of the cover plate.
  • one side of the top end of the upper case is provided with a buckle, and one side of the lower case is provided with a card seat.
  • connecting blocks are provided at both ends of the screw rod, and a pulley is provided at the bottom end of the motor.
  • a software testing device that is easy to dissipate heat and carry, which is composed of a lower casing, a software running structure, a dustproof structure, a heat dissipation structure, an auxiliary structure, a hand strap, an external structure, an upper casing, a display and a support frame, and thus passes
  • the auxiliary structure and the heat dissipation structure improve the heat dissipation efficiency of the device, and the dustproof structure prevents external dust from entering when idle, so that the stable operation of the device is realized, and the device is conveniently carried by the hand strap.
  • FIG. 1 is a schematic structural diagram of a software testing device that is convenient for heat dissipation and portability according to an embodiment of the present invention
  • FIG. 2 is a side view of a software testing device that is convenient for heat dissipation and portability according to an embodiment of the present invention
  • FIG. 3 is a schematic structural diagram of an external structure in a software testing device that is convenient for heat dissipation and portability according to an embodiment of the present invention
  • Fig. 4 is a partial enlarged view of A in Fig. 2 .
  • the present invention provides accompanying drawings, which are part of the disclosure of the present invention, and are mainly used to illustrate the embodiments, and can be used in conjunction with the relevant descriptions in the specification to explain the operating principles of the embodiments, for reference Those of ordinary skill in the art should be able to understand other possible implementations and advantages of the present invention.
  • the components in the figures are not drawn to scale, and similar component symbols are generally used to represent similar components.
  • a software testing device that is convenient for heat dissipation and portability is provided.
  • the software testing device for heat dissipation and portability includes a lower casing 1, and the inside of the lower casing 1 is provided with a software running structure 2, a dustproof structure 3, a heat dissipation Structure 4 and auxiliary structure 5, the heat dissipation structure 4 is located at the top of the software running structure 2, the dustproof structure 3 is located on both sides of the software running structure 2, and the auxiliary structure 5 is located at the lower casing 1 inside the bottom end, one side of the lower case 1 is provided with a hand strap 6, the other side of the lower case 1 is provided with an external structure 7, and the top end of the lower case 1 is provided with an upper case 8.
  • a display 9 is arranged inside the upper casing 8 .
  • the lower casing 1, the software running structure 2, the dustproof structure 3, the heat dissipation structure 4, the auxiliary structure 5, the hand strap 6, the external structure 7, the upper casing 8, the display 9 and the support frame 10 constitutes a software testing device that is convenient for heat dissipation and portability, so that the heat dissipation efficiency of the device is improved through the auxiliary structure 5 and the heat dissipation structure 4, and the dust-proof structure 3 prevents external dust from entering when idle, so that the device Stable operation, convenient to carry this device by hand strap 6.
  • the inside of the lower housing 1 is provided with a software running structure 2, a dustproof structure 3, a heat dissipation structure 4 and an auxiliary structure 5, and the heat dissipation structure 4 is located at the top of the software running structure 2 , the dust-proof structure 3 is located on both sides of the software running structure 2, the auxiliary structure 5 is located at the bottom end inside the lower casing 1, and a hand strap 6 is provided on one side of the lower casing 1,
  • the other side of the lower housing 1 is provided with an external structure 7, the top of the lower housing 1 is provided with an upper housing 8, and the inside of the upper housing 8 is provided with a display 9, and the software running structure 2 It consists of a support frame 10 and a test processor body 11.
  • the support frame 10 is located on both sides of the test processor body 11.
  • the dust-proof structure 3 is composed of a baffle plate 12, a telescopic link 13 and a cooling hole 14.
  • the heat dissipation hole 14 is located at the bottom of the telescopic link 13, the baffle plate 12 is located at one side of the telescopic link 13, and the heat dissipation structure 4 is composed of a motor 15, a screw rod 16, a fan blade 17, a slide Block 18, elastic rope 19 and rope 20, the elastic rope 19 is located on one side of the slider 18, the rope 20 is located on the other side of the slider 18, and the fan blade 17 is located on the slider
  • the outside of the block 18, the screw rod 16 is located inside the slider 18, the motor 15 is located on the side of the rope 20 away from the slider 18, and the rotation of the slider 18 can drive the fan blade 17 to rotate synchronously
  • the internal and external air exchange and circulation are carried out through the cooling holes 14, and the position of the slider 18 is changed by the elastic force of the elastic cord 19, and one end
  • the inside of the lower housing 1 is provided with a software running structure 2, a dustproof structure 3, a heat dissipation structure 4 and an auxiliary structure 5, and the heat dissipation structure 4 is located at the top of the software running structure 2 , the dust-proof structure 3 is located on both sides of the software running structure 2, the auxiliary structure 5 is located at the bottom end inside the lower casing 1, and a hand strap 6 is provided on one side of the lower casing 1,
  • the other side of the lower casing 1 is provided with an external structure 7, the top of the lower casing 1 is provided with an upper casing 8, the inside of the upper casing 8 is provided with a display 9, and the auxiliary structure 5 is formed by Automatic expansion rod 21 and anti-slip base 22 constitute, described anti-slip base 22 is positioned at the bottom end of described automatic expansion rod 21, and described external connection structure 7 is made of rotating shaft 23, wiring hole 24 and cover plate 25, and described cover plate 25 is positioned at On one side of the wiring hole 24, the rotating shaft 23 is located at the top of
  • the baffle 12 when in use, the baffle 12 is pulled outward, the baffle 12 drives the telescopic connecting rod 13 to open, exposing the cooling hole 14, the output shaft of the motor 15 drives the pulley 29 to rotate, and the pulley 29 shrinks and winds the rope 20 , the elastic rope 19 is stretched, the rope 20 drives the slider 18 to approach the motor 15, the rope 20 is connected to the bearing inside the slider 18, the elastic rope 19 is connected to the bearing inside the slider 18, and the pulley 29 drives the fan blade 17 to wind around the screw rod 16 rotates, when the pulley 29 reaches the far left, the motor 15 rotates in the opposite direction, the rope 20 is released, the elastic rope 19 contracts to drive the slider 18 and the fan blade 17 to rotate in the opposite direction, and the air is circulated through the cooling holes 14 to test the processor body
  • the bottom end of 11 dissipates heat through the heat pipe heat dissipation structure 4, and the extension of the automatic telescopic rod 21 drives the non-slip base 22 away from the housing, so that the
  • the buckle 26 and the card seat 27 are fastened, and the baffle 12 is pushed inward to reset the dust-proof structure 3.
  • the automatic telescopic rod 21 drives the non-slip base 22 to reset, and is stored in the lower casing 1, which can prevent external dust from entering and is easy to carry , pull the hand strap 6 to carry it.

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  • Engineering & Computer Science (AREA)
  • Theoretical Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Human Computer Interaction (AREA)
  • General Engineering & Computer Science (AREA)
  • General Physics & Mathematics (AREA)
  • Electromagnetism (AREA)
  • Computer Hardware Design (AREA)
  • Power Engineering (AREA)
  • Cooling Or The Like Of Electrical Apparatus (AREA)

Abstract

本发明公开了一种便于散热和携带的软件测试装置,包括下壳体,所述下壳体的内部设置有软件运行结构、防尘结构、散热结构和辅助结构,所述散热结构位于所述软件运行结构的顶端,所述防尘结构位于所述软件运行结构的两侧,所述辅助结构位于所述下壳体内部的底端,所述下壳体的一侧设置有手提带,所述下壳体的另一侧设置有外接结构,所述下壳体的顶端设置有上壳体,所述上壳体的内部设置有显示器。有益效果:通过辅助结构和散热结构使得本装置的散热效率提高,通过防尘结构使得在空闲时外界的灰尘无法进入,实现本装置的稳定运行,通过手提带6方便携带本装置。

Description

一种便于散热和携带的软件测试装置 技术领域
本发明涉及软件测试技术领域,具体来说,涉及一种便于散热和携带的软件测试装置。
背景技术
软件是一系列按照特定顺序组织的计算机数据和指令的集合,一般来讲软件被划分为系统软件、应用软件和介于这两者之间的中间件,为了保证软件可以在计算机上安全稳定的运行,需要不断地进行软件测试,在实际应用中,软件测试装置过与笨重不便于携带,而且散热结构的效果较差,在追求散热的同时导致设备内进入大量灰尘。
针对相关技术中的问题,目前尚未提出有效的解决方案。
技术问题
针对相关技术中的问题,本发明提出一种便于散热和携带的软件测试装置,以克服现有相关技术所存在的上述技术问题。
技术解决方案
为此,本发明采用的具体技术方案如下:
一种便于散热和携带的软件测试装置,包括下壳体,所述下壳体的内部设置有软件运行结构、防尘结构、散热结构和辅助结构,所述散热结构位于所述软件运行结构的顶端,所述防尘结构位于所述软件运行结构的两侧,所述辅助结构位于所述下壳体内部的底端,所述下壳体的一侧设置有手提带,所述下壳体的另一侧设置有外接结构,所述下壳体的顶端设置有上壳体,所述上壳体的内部设置有显示器。
进一步的,所述软件运行结构由支撑架和测试处理器本体构成,所述支撑架位于所述测试处理器本体的两侧。
进一步的,所述防尘结构由挡板、伸缩连杆和散热孔构成,所述散热孔位于所述伸缩连杆的底端,所述挡板位于所述伸缩连杆的一侧。
进一步的,所述散热结构由电机、螺旋杆、扇叶、滑块、弹力绳和绳索构成,所述弹力绳位于所述滑块的一侧,所述绳索位于所述滑块的另一侧,所述扇叶位于所述滑块的外部,所述螺旋杆位于所述滑块的内部,所述电机位于所述绳索远离所述滑块的一侧。
进一步的,所述辅助结构由自动伸缩杆和防滑底座构成,所述防滑底座位于所述自动伸缩杆的底端。
进一步的,所述外接结构由转轴、接线孔和盖板构成,所述盖板位于所述接线孔的一侧,所述转轴位于所述盖板的顶端。
进一步的,所述上壳体顶端的一侧设置有卡扣,所述下壳体的一侧设置有卡座。
进一步的,所述螺旋杆的两端设置有连接块,所述电机的底端设置有滑轮。
有益效果
通过设置由下壳体、软件运行结构、防尘结构、散热结构、辅助结构、手提带、外接结构、上壳体、显示器和支撑架构成的一种便于散热和携带的软件测试装置,从而通过辅助结构和散热结构使得本装置的散热效率提高,通过防尘结构使得在空闲时外界的灰尘无法进入,实现本装置的稳定运行,通过手提带方便携带本装置。
附图说明
为了更清楚地说明本发明实施例或现有技术中的技术方案,下面将对实施例中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本发明的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1是根据本发明实施例的一种便于散热和携带的软件测试装置的结构示意图;
图2是根据本发明实施例的一种便于散热和携带的软件测试装置的侧视图;
图3是根据本发明实施例的一种便于散热和携带的软件测试装置中外接结构的结构示意图;
图4是图2中A处的局部放大图。
图中:
1、下壳体;2、软件运行结构;3、防尘结构;4、散热结构;5、辅助结构;6、手提带;7、外接结构;8、上壳体;9、显示器;10、支撑架;11、测试处理器本体;12、挡板;13、伸缩连杆;14、散热孔;15、电机;16、螺旋杆;17、扇叶;18、滑块;19、弹力绳;20、绳索;21、自动伸缩杆;22、防滑底座;23、转轴;24、接线孔;25、盖板;26、卡扣;27、卡座;28、连接块;29、滑轮。
本发明的实施方式
为进一步说明各实施例,本发明提供有附图,这些附图为本发明揭露内容的一部分,其主要用以说明实施例,并可配合说明书的相关描述来解释实施例的运作原理,配合参考这些内容,本领域普通技术人员应能理解其他可能的实施方式以及本发明的优点,图中的组件并未按比例绘制,而类似的组件符号通常用来表示类似的组件。
根据本发明的实施例,提供了一种便于散热和携带的软件测试装置。
实施例一:
如图1-4所示,根据本发明实施例的便于散热和携带的软件测试装置,包括下壳体1,所述下壳体1的内部设置有软件运行结构2、防尘结构3、散热结构4和辅助结构5,所述散热结构4位于所述软件运行结构2的顶端,所述防尘结构3位于所述软件运行结构2的两侧,所述辅助结构5位于所述下壳体1内部的底端,所述下壳体1的一侧设置有手提带6,所述下壳体1的另一侧设置有外接结构7,所述下壳体1的顶端设置有上壳体8,所述上壳体8的内部设置有显示器9。
借助于上述技术方案,通过设置由下壳体1、软件运行结构2、防尘结构3、散热结构4、辅助结构5、手提带6、外接结构7、上壳体8、显示器9和支撑架10构成的一种便于散热和携带的软件测试装置,从而通过辅助结构5和散热结构4使得本装置的散热效率提高,通过防尘结构3使得在空闲时外界的灰尘无法进入,实现本装置的稳定运行,通过手提带6方便携带本装置。
实施例二:
如图1-4所示,所述下壳体1的内部设置有软件运行结构2、防尘结构3、散热结构4和辅助结构5,所述散热结构4位于所述软件运行结构2的顶端,所述防尘结构3位于所述软件运行结构2的两侧,所述辅助结构5位于所述下壳体1内部的底端,所述下壳体1的一侧设置有手提带6,所述下壳体1的另一侧设置有外接结构7,所述下壳体1的顶端设置有上壳体8,所述上壳体8的内部设置有显示器9,所述软件运行结构2由支撑架10和测试处理器本体11构成,所述支撑架10位于所述测试处理器本体11的两侧,所述防尘结构3由挡板12、伸缩连杆13和散热孔14构成,所述散热孔14位于所述伸缩连杆13的底端,所述挡板12位于所述伸缩连杆13的一侧,所述散热结构4由电机15、螺旋杆16、扇叶17、滑块18、弹力绳19和绳索20构成,所述弹力绳19位于所述滑块18的一侧,所述绳索20位于所述滑块18的另一侧,所述扇叶17位于所述滑块18的外部,所述螺旋杆16位于所述滑块18的内部,所述电机15位于所述绳索20远离所述滑块18的一侧,通过滑块18转动可以带动扇叶17同步转动,通过散热孔14进行内外空气的交换流通,通过弹力绳19的弹力实现滑块18位置的变化,弹力绳19的一端与滑块内部的轴承相连接。
实施例三:
如图1-4所示,所述下壳体1的内部设置有软件运行结构2、防尘结构3、散热结构4和辅助结构5,所述散热结构4位于所述软件运行结构2的顶端,所述防尘结构3位于所述软件运行结构2的两侧,所述辅助结构5位于所述下壳体1内部的底端,所述下壳体1的一侧设置有手提带6,所述下壳体1的另一侧设置有外接结构7,所述下壳体1的顶端设置有上壳体8,所述上壳体8的内部设置有显示器9,所述辅助结构5由自动伸缩杆21和防滑底座22构成,所述防滑底座22位于所述自动伸缩杆21的底端,所述外接结构7由转轴23、接线孔24和盖板25构成,所述盖板25位于所述接线孔24的一侧,所述转轴23位于所述盖板25的顶端,所述上壳体8顶端的一侧设置有卡扣26,所述下壳体1的一侧设置有卡座27,所述螺旋杆16的两端设置有连接块28,所述电机15的底端设置有滑轮29,通过接线孔24与外接的线头连接,通过防滑底座22保护本装置在放置的时候不会滑落,通过盖板25保护接线孔24在不使用时不会有灰尘进入。
为了方便理解本发明的上述技术方案,以下就本发明在实际过程中的工作原理或者操作方式进行详细说明。
在实际应用时,在使用时,向外拉动挡板12,挡板12带动伸缩连杆13张开,露出散热孔14,电机15的输出轴带动滑轮29转动,滑轮29将绳索20进行收缩缠绕,弹力绳19伸长,绳索20带动滑块18向电机15靠近,绳索20与滑块18内部的轴承连接,弹力绳19与滑块18内部的轴承连接,滑轮29带动扇叶17绕螺旋杆16旋转,当滑轮29到达最最左边时电机15反向转动,绳索20被放出,弹力绳19收缩带动滑块18和扇叶17反向转动,通过散热孔14进行空气流通,测试处理器本体11的底端通过导热管散热结构4进行散热,自动伸缩杆21伸长带动防滑底座22远离壳体,使得导热管散热结构4的散热面底端的空隙变大,便于散热,需要与外接线连接时,拨开盖板25与接线孔24连接,不使用时向下关闭盖板25,盖板25的磁铁与壳体内的磁铁吸紧,使用完毕后需要携带时,将上壳体8关闭,卡扣26与卡座27卡紧,向内推动挡板12将防尘结构3复位,自动伸缩杆21带动防滑底座22复位,收纳到下壳体1内,可以阻挡外部的灰尘进入,便于携带,拉动手提带6即可进行携带。
综上所述,借助于本发明的上述技术方案,通过设置由下壳体1、软件运行结构2、防尘结构3、散热结构4、辅助结构5、手提带6、外接结构7、上壳体8、显示器9和支撑架10构成的一种便于散热和携带的软件测试装置,从而通过辅助结构5和散热结构4使得本装置的散热效率提高,通过防尘结构3使得在空闲时外界的灰尘无法进入,实现本装置的稳定运行,通过手提带6方便携带本装置。
以上所述仅为本发明的较佳实施例而已,并不用以限制本发明,凡在本发明的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本发明的保护范围之内。

Claims (8)

  1. 一种便于散热和携带的软件测试装置,其特征在于,包括下壳体(1),所述下壳体(1)的内部设置有软件运行结构(2)、防尘结构(3)、散热结构(4)和辅助结构(5),所述散热结构(4)位于所述软件运行结构(2)的顶端,所述防尘结构(3)位于所述软件运行结构(2)的两侧,所述辅助结构(5)位于所述下壳体(1)内部的底端,所述下壳体(1)的一侧设置有手提带(6),所述下壳体(1)的另一侧设置有外接结构(7),所述下壳体(1)的顶端设置有上壳体(8),所述上壳体(8)的内部设置有显示器(9)。
  2. 根据权利要求1所述的一种便于散热和携带的软件测试装置,其特征在于,所述软件运行结构(2)由支撑架(10)和测试处理器本体(11)构成,所述支撑架(10)位于所述测试处理器本体(11)的两侧。
  3. 根据权利要求1所述的一种便于散热和携带的软件测试装置,其特征在于,所述防尘结构(3)由挡板(12)、伸缩连杆(13)和散热孔(14)构成,所述散热孔(14)位于所述伸缩连杆(13)的底端,所述挡板(12)位于所述伸缩连杆(13)的一侧。
  4. 根据权利要求1所述的一种便于散热和携带的软件测试装置,其特征在于,所述散热结构(4)由电机(15)、螺旋杆(16)、扇叶(17)、滑块(18)、弹力绳(19)和绳索(20)构成,所述弹力绳(19)位于所述滑块(18)的一侧,所述绳索(20)位于所述滑块(18)的另一侧,所述扇叶(17)位于所述滑块(18)的外部,所述螺旋杆(16)位于所述滑块(18)的内部,所述电机(15)位于所述绳索(20)远离所述滑块(18)的一侧。
  5. 根据权利要求1所述的一种便于散热和携带的软件测试装置,其特征在于,所述辅助结构(5)由自动伸缩杆(21)和防滑底座(22)构成,所述防滑底座(22)位于所述自动伸缩杆(21)的底端。
  6. 根据权利要求1所述的一种便于散热和携带的软件测试装置,其特征在于,所述外接结构(7)由转轴(23)、接线孔(24)和盖板(25)构成,所述盖板(25)位于所述接线孔(24)的一侧,所述转轴(23)位于所述盖板(25)的顶端。
  7. 根据权利要求1所述的一种便于散热和携带的软件测试装置,其特征在于,所述上壳体(8)顶端的一侧设置有卡扣(26),所述下壳体(1)的一侧设置有卡座(27)。
  8. 根据权利要求4所述的一种便于散热和携带的软件测试装置,其特征在于,所述螺旋杆(16)的两端设置有连接块(28),所述电机(15)的底端设置有滑轮(29)。
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