WO2019019527A1 - 固态硬盘存储组件及固态硬盘 - Google Patents

固态硬盘存储组件及固态硬盘 Download PDF

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Publication number
WO2019019527A1
WO2019019527A1 PCT/CN2017/115977 CN2017115977W WO2019019527A1 WO 2019019527 A1 WO2019019527 A1 WO 2019019527A1 CN 2017115977 W CN2017115977 W CN 2017115977W WO 2019019527 A1 WO2019019527 A1 WO 2019019527A1
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WO
WIPO (PCT)
Prior art keywords
solid state
hard disk
state hard
printed circuit
board
Prior art date
Application number
PCT/CN2017/115977
Other languages
English (en)
French (fr)
Inventor
李志雄
庞卫文
李小强
Original Assignee
深圳市江波龙电子有限公司
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Application filed by 深圳市江波龙电子有限公司 filed Critical 深圳市江波龙电子有限公司
Publication of WO2019019527A1 publication Critical patent/WO2019019527A1/zh

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Classifications

    • GPHYSICS
    • G11INFORMATION STORAGE
    • G11BINFORMATION STORAGE BASED ON RELATIVE MOVEMENT BETWEEN RECORD CARRIER AND TRANSDUCER
    • G11B33/00Constructional parts, details or accessories not provided for in the other groups of this subclass
    • G11B33/12Disposition of constructional parts in the apparatus, e.g. of power supply, of modules

Definitions

  • the present application belongs to the technical field of storage devices, and in particular, to a solid state hard disk storage component and a solid state hard disk.
  • the hard disk is one of the main storage media of the computer.
  • the hard disk includes a solid state drive.
  • the solid state disk is a hard disk made of a solid state electronic memory chip array.
  • the main body of the solid state disk is a circuit board, and the most basic component on the circuit board. It is the control chip, memory chip and other auxiliary circuits.
  • the purpose of the embodiments of the present application is to provide a solid state hard disk storage component and a solid state hard disk, which are intended to solve the technical problem that the connection terminal in the prior art solid state hard disk is easily deformed by an external force and the welding efficiency is low.
  • a solid state hard disk storage component including a mounting skeleton, a printed circuit board obliquely inserted into the mounting skeleton and used for auxiliary power supply, and inserted into the installation.
  • the solid state hard disk storage component further comprising a terminal block, the terminal block comprising a base body and a plurality of connecting terminals fixed on the base body
  • a soldering disk is disposed on the printed circuit board, and one end of each of the connecting terminals is soldered to the soldering pad, and the other end of each of the connecting terminals is electrically connected to the memory board.
  • each of the connection terminals is mounted side by side on the seat body.
  • the mounting frame is provided with a first accommodating cavity for accommodating the printed circuit board, communicates with the first accommodating cavity, and is used for accommodating the printed circuit board by the first receiving Inserting a cavity toward an outer side of the mounting bobbin to fix an oblique socket of the printed circuit board, a second receiving cavity communicating with the first receiving cavity and for receiving the memory board, and the second a receiving cavity communicating and for inserting the memory board from an outer side of the mounting bobbin toward the second receiving cavity to fix a flat socket of the memory board and for defining the printed circuit board and the A positioning member that describes the position of the storage board.
  • the printed circuit board includes an oblique insertion portion that cooperates with the oblique socket and an extension portion perpendicular to the oblique insertion portion, and the end of the oblique insertion portion is provided with a power interface contact piece, the welding pad Provided on the extension.
  • the positioning member includes a first positioning portion disposed on a side of the first receiving cavity and configured to position the oblique insertion portion, and a second positioning portion for positioning the extending portion. And a third positioning portion for positioning on the storage board on both sides of the flat socket.
  • the third positioning portion includes an extending block extending outward from a sidewall of the second receiving cavity and is disposed on the extending block for mating with a side of the storage board to A positioning protrusion for positioning the memory board.
  • the height of the positioning protrusion gradually increases in a direction in which the memory board is inserted into the flat socket.
  • the storage board is provided with a positioning groove that cooperates with the positioning protrusion.
  • the position surface of the memory board near the opposite ends thereof is respectively provided with a data transmission contact piece and an abutting disk, and the abutting disk is electrically connected to the other end of each of the connection terminals.
  • the solid state hard disk storage component of the embodiment of the present application the printed circuit board is obliquely inserted into the installation skeleton, and the storage board is inserted into the installation skeleton, so that the installation of the skeleton, the printed circuit board, and the a mechanical connection between the three storage boards, and further one end of each connection terminal of the terminal block is respectively soldered to the welding pad on the printed circuit board and the other end is electrically connected to the memory board, thereby realizing the printed circuit board and The electrical connection between the storage boards, thus completing the assembly of the entire solid state hard disk storage component.
  • connection terminals are fixed together by the base body to form the terminal block, the connection can be completed at one time when the connection terminals are welded to the welding pad, and the connection terminals are not required to be welded one by one, thereby greatly improving the welding efficiency;
  • the connecting terminals are fixed together by the base body, the positions of the respective connecting terminals are relatively fixed, the displacement is not easy to occur, and the stability thereof is improved; and the connecting terminals are not easily deformed by the external force under the protection of the seat body, thereby improving the reliability thereof.
  • a solid state hard disk which includes the above solid state hard disk storage component.
  • the solid state hard disk of the embodiment of the present application can ensure that the connection terminal used in the solid state hard disk storage component can be once-contact-welded to the connection terminal during welding, thereby greatly improving the welding efficiency, because the above-mentioned solid-state hard disk storage component is used; At the same time, the connection terminals are fixed together by the base body, and the positions of the respective connection terminals are relatively fixed, the displacement is not easy to occur, and the stability thereof is improved; and the connection terminals are not easily deformed by the external force under the protection of the seat body, and the connection is improved. reliability.
  • FIG. 1 is a schematic structural diagram 1 of a solid state hard disk storage component according to an embodiment of the present application.
  • FIG. 2 is a schematic structural diagram 2 of a solid state hard disk storage component according to an embodiment of the present disclosure.
  • FIG. 3 is a schematic structural diagram 1 of a connection between a printed circuit board and a terminal block of a solid state hard disk storage component according to an embodiment of the present application.
  • FIG. 4 is a schematic structural diagram 2 of a connection between a printed circuit board and a terminal block of a solid state hard disk storage component according to an embodiment of the present application.
  • FIG. 5 is a schematic structural diagram of a mounting skeleton of a solid state hard disk storage component according to an embodiment of the present application.
  • FIG. 6 is a schematic structural diagram of a storage board of a solid state hard disk storage component according to an embodiment of the present disclosure.
  • FIG. 7 is a schematic structural view of a printed circuit board of a solid state hard disk storage component according to an embodiment of the present invention inserted obliquely on a mounting skeleton.
  • FIG. 8 is a schematic structural diagram of a storage device of a solid state hard disk storage component according to an embodiment of the present disclosure inserted obliquely on a mounting skeleton.
  • first positioning portion 14—second positioning portion; 15—third positioning portion;
  • 16-positioning member 20-printed circuit board; 21- oblique insertion portion;
  • 121 flat socket
  • 151 extension block
  • 152 positioning protrusion
  • first and second are used for descriptive purposes only and are not to be construed as indicating or implying a relative importance or implicitly indicating the number of technical features indicated.
  • features defining “first” and “second” may include one or more of the features either explicitly or implicitly.
  • the meaning of "a plurality” is two or more unless specifically and specifically defined otherwise.
  • connection should be understood broadly, and may be fixed connection, for example, or may be
  • the connection may be disassembled or integrated; it may be a mechanical connection or an electrical connection; it may be directly connected or indirectly connected through an intermediate medium, and may be an internal connection of two elements or an interaction relationship of two elements.
  • connection may be disassembled or integrated; it may be a mechanical connection or an electrical connection; it may be directly connected or indirectly connected through an intermediate medium, and may be an internal connection of two elements or an interaction relationship of two elements.
  • the embodiment of the present application provides a solid state hard disk storage component, including a mounting skeleton 10, and a printed circuit board 20 obliquely inserted into the mounting frame 10 for auxiliary power supply.
  • a memory board 30 mounted within the chassis 10 and electrically coupled to the printed circuit board 20 for storing data
  • the solid state disk storage assembly further including a terminal block 40 including a base 41 and fixed to the a plurality of connecting terminals 42 on the base 41, the printed circuit board 20 is provided with a soldering pad 221, one end of each of the connecting terminals 42 is soldered to the soldering pad 221, and the other end of each of the connecting terminals 42 It is electrically connected to the memory board 30.
  • the printed circuit board 20 is obliquely inserted into the mounting frame 10, and the memory board 30 is inserted into the mounting frame 10, so that the mounting frame 10 and the printed circuit board 20 can be completed.
  • a mechanical connection between the memory board 30, and further, one end of each of the connection terminals 42 of the terminal block 40 is soldered to the bonding pad 221 on the printed circuit board 20 and the other end is electrically connected to the memory board 30, such that That is, the electrical connection between the printed circuit board 20 and the memory board 30 is achieved, thus completing the assembly of the entire solid state hard disk storage component.
  • connection terminals 42 are fixed together by the base body 41 to form the terminal block 40, the connection can be completed once when the connection terminals 42 are welded to the welding pad 221, without the need to weld the connection terminals 42 one by one, greatly improving the welding.
  • the respective connection terminals 42 are fixed together by the base 41, and the positions of the respective connection terminals 42 are relatively fixed, the displacement is less likely to occur, and the stability thereof is improved; and the connection terminals 42 are subjected to external force under the protection of the seat body 41. The effect is also less prone to deformation and improve its reliability.
  • each of the connection terminals 42 is mounted on the seat body 41 at intervals. Specifically, the connection between the connection terminals 42 and the base body 41 can be ensured by the fitting, and the connection terminal 42 can be easily loosened even if subjected to a certain external force, and the stability of the connection between the connection terminals 42 and the base 41 can be enhanced.
  • the base 41 is generally injection molded from plastic, and each of the connection terminals 42 can be integrally formed with the base 41 when the base 41 is injection molded.
  • the mounting frame 10 is provided with a first accommodating cavity 11 for accommodating the printed circuit board 20, communicates with the first accommodating cavity 11 and is used for the printed circuit board 20 Inserting from the first accommodating cavity 11 toward the outside of the mounting frame 10 to fix the oblique socket 111 of the printed circuit board 20, communicating with the first accommodating cavity 11 and accommodating the memory board a second accommodating cavity 12 of 30, communicating with the second accommodating cavity 12 and for inserting the memory board 30 from the outer side of the mounting frame 10 toward the second accommodating cavity 12 to fix the A flat socket 121 of the memory board 30 and a positioning member 16 for defining the positions of the printed circuit board 20 and the memory board 30.
  • the printed circuit board 20 is inserted from the first accommodating cavity 11 toward the outside of the mounting frame 10 by the slanting socket 111 provided in the mounting frame 10, and the memory board 30 is mounted by the mounting frame 10 through the provided flat socket 121.
  • the outer side is inserted toward the second accommodating cavity 12, and at the same time, the positioning member 16 is disposed to cooperate with the slanting socket 111 and the socket 121 to collectively define the positions of the printed circuit board 20 and the memory board 30, thereby the printed circuit board 20 and the memory board 30 is firmly fixed in the mounting frame 10, and finally the mounting frame 10 is directly assembled with the outer casing of the solid state hard disk into a finished solid state hard disk, and the control chip, the memory chip and other circuit components can be respectively soldered on the printed circuit board according to the embodiment of the present application.
  • 20 and the memory board 30, the printed circuit board 20 and the memory board 30 are small in size, easy to manufacture, and low in cost; and are easy to assemble and replace, and the printed circuit board 20 and the memory board 30 are not easily damaged
  • the printed circuit board 20 includes an oblique insertion portion 21 that cooperates with the oblique insertion port 111 and an extension portion 22 that is perpendicular to the oblique insertion portion 21, and the end of the oblique insertion portion 21 is provided with a power source.
  • the interface contact piece 211 is disposed on the extending portion 22.
  • the oblique insertion portion 21 is integrally formed with the extension portion 22.
  • the printed circuit board 20 of such a structural design is connected to the extending portion 22 by the oblique insertion portion 21 to form a structure having a shape of "7", and a notch is formed at one side, and the notch can be used for the storage board 30 to be accommodated.
  • the function of the power interface contact 211 is such that the entire solid state hard disk storage component has an interface electrically connected to the external power source, and the bonding pad 221 is disposed on the extension portion 22 and closer to the connection terminal 42 of the terminal block 40 to facilitate the connection terminal. 42 is soldered to the bonding pad 221 to electrically connect the memory board 30 to the printed circuit board 20.
  • the positioning member 16 includes a first positioning portion 13 disposed on the side of the first receiving cavity 11 and configured to position the oblique insertion portion 21 and positioning the extending portion 22
  • the second positioning portion 14 and the third positioning portion 15 provided on both sides of the flat socket 121 for positioning on the storage plate 30.
  • the positioning of the oblique insertion portion 21 and the stability and reliability after the plug installation can be enhanced by the arrangement of the first positioning portion 13 and the first receiving cavity 11
  • the setting of the second positioning portion 14 is
  • the first accommodating cavity 11 can strengthen the positioning of the extending portion 22 and the stability and reliability after the plugging and mounting.
  • the cooperation of the third positioning portion 15 and the second accommodating cavity 12 can strengthen the pair.
  • the third positioning portion 15 includes an extension block 151 extending outward from a sidewall of the second accommodating cavity 12 and is disposed on the extension block 151 for use with the storage board 30.
  • the side edges cooperate with positioning protrusions 152 that position the memory board 30.
  • the positioning protrusion 152 is used for the position definition of the memory board 30 to ensure the accuracy of the position of the memory board 30 after installation.
  • the height of the positioning protrusion 152 is gradually increased along the direction in which the memory board 30 is inserted into the flat socket 121. Specifically, the height of the positioning protrusion 152 at the outer position is low, so that the memory board 30 can be more inserted and inserted, and the height of the positioning position of the positioning protrusion 152 is higher, so that the memory board 30 can be inserted. To the role of the limit.
  • the storage plate 30 is provided with a positioning groove 33 that cooperates with the positioning protrusion 152. Specifically, the engagement of the positioning groove 33 with the positioning projection 152 ensures a stable position of the storage plate.
  • the position of the opposite ends of the memory board 30 is respectively provided with a data transmission contact 31 and an abutting disk 32.
  • the abutting disk 32 is electrically connected to the other end of each of the connection terminals 42.
  • the abutting disk 32 abuts the other end of each connecting terminal 42 to electrically connect the connecting terminal 42 and the memory board 30, and the data transmission contact 31 is mainly used for connecting with the external data terminal.
  • the embodiment of the present application further provides a solid state hard disk, which includes the above solid state hard disk storage component.
  • the solid state hard disk of the embodiment of the present application can ensure that the connection terminal 42 used in the solid state hard disk storage component can be once-contacted and soldered to the connection terminal 42 during welding due to the use of the above-described solid state hard disk storage component.

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  • Coupling Device And Connection With Printed Circuit (AREA)

Abstract

一种固态硬盘存储组件及固态硬盘,属于存储设备技术领域。固态硬盘存储组件包括安装骨架(10)、斜插于安装骨架(10)内的印制电路板(20)、平插于安装骨架(10)内的存储板(30)以及端子座(40),端子座(40)包括座体(41)和固定于座体(41)上的若干个连接端子(42),印制电路板(20)上设有焊接盘(221),各连接端子(42)的一端与焊接盘(221)焊接,各连接端子(42)的另一端与存储板(30)电性连接。由于各连接端子(42)通过座体(41)固定在一起形成端子座(40),那么在将各连接端子(42)与焊接盘(221)焊接时可以一次性连接完成,而不需要逐个对连接端子(42)进行焊接,大大提升焊接的效率;同时,各个连接端子(42)通过座体(41)固定在一起,各连接端子(42)不易发生位移,提升其稳定性;且各连接端子(42)在座体(41)的保护下即使受到外力作用也不易发生变形,提升其可靠性。

Description

固态硬盘存储组件及固态硬盘 技术领域
本申请属于存储设备技术领域,尤其涉及一种固态硬盘存储组件及固态硬盘。
背景技术
硬盘是电脑主要的存储媒介之一,硬盘包括固态硬盘(solid state drive),固态硬盘是用固态电子存储芯片阵列制成的硬盘,固态硬盘的主体是一块电路板,电路板上最基本的配件就是控制芯片、存储芯片以及其他辅助电路。
现有的固态硬盘通常由控制芯片、存储芯片以及其他电路元器件(例如印制电路板和存储板)组装在一起,部件与部件之间通过插接的方式实现连接,其中印制电路板和存储板之间的连接多采用多个连接端子连接,连接端子通过焊接的方式固定,但是连接端子由于外露于印制电路板和存储板外,因此容易受到外力作用而发生形变,而且多个连接端子在焊接时需要逐个焊接,焊接效率低。
申请内容
本申请实施例的目的在于提供一种固态硬盘存储组件及固态硬盘,旨在解决现有技术的固态硬盘中的连接端子容易受到外力作用而发生形变以及焊接效率低的技术问题。
为实现上述目的,本申请实施例采用的技术方案是:一种固态硬盘存储组件,包括安装骨架、斜插于所述安装骨架内且用于辅助供电的印制电路板和平插于所述安装骨架内且与所述印制电路板电连接以存储数据的存储板,所述固态硬盘存储组件还包括端子座,所述端子座包括座体和固定于所述座体上的若干个连接端子,所述印制电路板上设有焊接盘,各所述连接端子的一端与所述焊接盘焊接,各所述连接端子的另一端与所述存储板电性连接。
优选地,各所述连接端子并排间隔嵌装于所述座体上。
优选地,所述安装骨架设有用于收容所述印制电路板的第一容置腔、与所述第一容置腔连通且用于将所述印制电路板由所述第一容置腔朝向所述安装骨架的外侧插入以固定所述印制电路板的斜插口、与所述第一容置腔连通且用于收容所述存储板的第二容置腔、与所述第二容置腔连通且用于将所述存储板由所述安装骨架的外侧朝向所述第二容置腔插入以固定所述存储板的平插口和以及用于限定所述印制电路板和所述存储板的位置的定位件。
优选地,所述印制电路板包括与所述斜插口配合的斜插部以及与所述斜插部垂直的延伸部,所述斜插部的末端设有电源接口触片,所述焊接盘设于所述延伸部上。
优选地,所述定位件包括设于所述第一容置腔侧方且用于对所述斜插部进行定位的第一定位部和对所述延伸部进行定位的第二定位部以及设于所述平插口的两侧且用于在所述存储板进行定位的第三定位部。
优选地,所述第三定位部包括由所述第二容置腔的侧壁向外延伸的延伸块和设于所述延伸块上且用于与所述存储板的侧边配合以对所述存储板进行定位的定位凸起。
优选地,所述定位凸起的高度沿着所述存储板插入所述平插口的方向逐渐增高。
优选地,所述存储板上设有与所述定位凸起配合的定位凹槽。
优选地,所述存储板靠近其相对两端的位置表面分别设有数据传输触片和抵接盘,所述抵接盘与各所述连接端子的另一端电性连接。
本申请实施例的有益效果:本申请实施例的固态硬盘存储组件,印制电路板斜插于安装骨架内,存储板平插于安装骨架内,这样即可完成安装骨架、印制电路板和存储板三者之间的机械连接,并且进一步通过端子座的各连接端子的一端分别与印制电路板上的焊接盘焊接以及另一端与存储板电性连接,这样即实现印制电路板与存储板之间的电性连接,如此即完成整个固态硬盘存储组件的组装。由于各连接端子通过座体固定在一起形成端子座,那么在将各连接端子与焊接盘焊接时可以一次性连接完成,而不需要逐个对连接端子进行焊接,大大提升焊接的效率;同时,各个连接端子通过座体固定在一起,那么各个连接端子的位置相对固定,不易发生位移,提升其稳定性;且各连接端子在座体的保护下即使受到外力作用也不易发生变形,提升其可靠性。
本申请实施例采用的技术方案是:一种固态硬盘,其包括上述的固态硬盘存储组件。
本申请实施例的固态硬盘,由于使用有上述的固态硬盘存储组件,那么可以确保固态硬盘存储组件中所采用的连接端子在焊接时可以对连接端子进行一次性联系焊接,大大提升焊接的效率;同时,各个连接端子通过座体固定在一起,那么各个连接端子的位置相对固定,不易发生位移,提升其稳定性;且各连接端子在座体的保护下即使受到外力作用也不易发生变形,提升其可靠性。
附图说明
为了更清楚地说明本申请实施例中的技术方案,下面将对实施例或现有技术描述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申请的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动性的前提下,还可以根据这些附图获得其他的附图。
图1为本申请实施例提供的固态硬盘存储组件的结构示意图一。
图2为本申请实施例提供的固态硬盘存储组件的结构示意图二。
图3为本申请实施例提供的固态硬盘存储组件的印制电路板与端子座连接的结构示意图一。
图4为本申请实施例提供的固态硬盘存储组件的印制电路板与端子座连接的结构示意图二。
图5为本申请实施例提供的固态硬盘存储组件的安装骨架的结构示意图。
图6为本申请实施例提供的固态硬盘存储组件的存储板的结构示意图。
图7为本申请实施例提供的固态硬盘存储组件的印制电路板斜插于安装骨架上时结构示意图。
图8为本申请实施例提供的固态硬盘存储组件的存储平斜插于安装骨架上时结构示意图。
其中,图中各附图标记:
10—安装骨架;11—第一容置腔;12—第二容置腔;
13—第一定位部;14—第二定位部;15—第三定位部;
16—定位件;20—印制电路板;21—斜插部;
22—延伸部;30—存储板;31—数据传输触片;
32—抵接盘;33—定位凹槽;40—端子座;
41—座体;42—连接端子;111—斜插口;
121—平插口;151—延伸块;152—定位凸起;
221—焊接盘;211—电源接口触片。
具体实施方式
下面详细描述本申请的实施例,所述实施例的示例在附图中示出,其中自始至终相同或类似的标号表示相同或类似的元件或具有相同或类似功能的元件。下面通过参考附图1~8描述的实施例是示例性的,旨在用于解释本申请实施例,而不能理解为对本申请实施例的限制。
在本申请实施例的描述中,需要理解的是,术语“长度”、“宽度”、“上”、“下”、“前”、“后”、“左”、“右”、“竖直”、“水平”、“顶”、“底”“内”、“外”等指示的方位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述本申请实施例和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本申请实施例的限制。
此外,术语“第一”、“第二”仅用于描述目的,而不能理解为指示或暗示相对重要性或者隐含指明所指示的技术特征的数量。由此,限定有“第一”、“第二”的特征可以明示或者隐含地包括一个或者更多个该特征。在本申请实施例的描述中,“多个”的含义是两个或两个以上,除非另有明确具体的限定。
在本申请实施例中,除非另有明确的规定和限定,术语“安装”、“相连”、“连接”、“固定”等术语应做广义理解,例如,可以是固定连接,也可以是可拆卸连接,或成一体;可以是机械连接,也可以是电连接;可以是直接相连,也可以通过中间媒介间接相连,可以是两个元件内部的连通或两个元件的相互作用关系。对于本领域的普通技术人员而言,可以根据具体情况理解上述术语在本申请实施例中的具体含义。
如图1~2所示,本申请实施例提供了一种固态硬盘存储组件,包括安装骨架10、斜插于所述安装骨架10内且用于辅助供电的印制电路板20和平插于所述安装骨架10内且与所述印制电路板20电连接以存储数据的存储板30,所述固态硬盘存储组件还包括端子座40,所述端子座40包括座体41和固定于所述座体41上的若干个连接端子42,所述印制电路板20上设有焊接盘221,各所述连接端子42的一端与所述焊接盘221焊接,各所述连接端子42的另一端与所述存储板30电性连接。
具体地,本申请实施例的固态硬盘存储组件,印制电路板20斜插于安装骨架10内,存储板30平插于安装骨架10内,这样即可完成安装骨架10、印制电路板20和存储板30三者之间的机械连接,并且进一步通过端子座40的各连接端子42的一端分别与印制电路板20上的焊接盘221焊接以及另一端与存储板30电性连接,这样即实现印制电路板20与存储板30之间的电性连接,如此即完成整个固态硬盘存储组件的组装。由于各连接端子42通过座体41固定在一起形成端子座40,那么在将各连接端子42与焊接盘221焊接时可以一次性连接完成,而不需要逐个对连接端子42进行焊接,大大提升焊接的效率;同时,各个连接端子42通过座体41固定在一起,那么各个连接端子42的位置相对固定,不易发生位移,提升其稳定性;且各连接端子42在座体41的保护下即使受到外力作用也不易发生变形,提升其可靠性。
本实施例中,各所述连接端子42并排间隔嵌装于所述座体41上。具体地,采用嵌装的方式可以确保各连接端子42与座体41连接稳定,确保连接端子42即使在受到一定的外力作用也不易松脱,加强各连接端子42与座体41连接的稳定性。另外,座体41一般采用塑料注塑成型,那么各连接端子42可以在注塑座体41时与座体41一体成型。
本实施例中,所述安装骨架10设有用于收容所述印制电路板20的第一容置腔11、与所述第一容置腔11连通且用于将所述印制电路板20由所述第一容置腔11朝向所述安装骨架10的外侧插入以固定所述印制电路板20的斜插口111、与所述第一容置腔11连通且用于收容所述存储板30的第二容置腔12、与所述第二容置腔12连通且用于将所述存储板30由所述安装骨架10的外侧朝向所述第二容置腔12插入以固定所述存储板30的平插口121和以及用于限定所述印制电路板20和所述存储板30的位置的定位件16。具体地,通过安装骨架10设置的斜插口111,将印制电路板20由第一容置腔11朝向安装骨架10的外侧插入,通过设置的平插口121,将存储板30由安装骨架10的外侧朝向第二容置腔12插入,同时,通过设置定位件16与斜插口111和平插口121配合以共同限定印制电路板20和存储板30的位置,从而将印制电路板20和存储板30稳固在安装骨架10内,最后将安装骨架10直接与固态硬盘的外壳组装成成品固态硬盘,且由于本申请实施例可以将控制芯片、存储芯片以及其他电路元器件分别焊接在印制电路板20和存储板30上,印制电路板20和存储板30体积小,便于生产,成本低;且便于装配和更换,装配后印制电路板20和存储板30不易损坏。
本实施例中,所述印制电路板20包括与所述斜插口111配合的斜插部21以及与所述斜插部21垂直的延伸部22,所述斜插部21的末端设有电源接口触片211,所述焊接盘221设于所述延伸部22上。优选地,斜插部21与延伸部22一体成型设计。该种结构设计的印制电路板20通过斜插部21与延伸部22连接形成呈“7”字形状的结构,并且一侧形成一个缺口,该缺口则可以用于供存储板30容置,这样可以进一步加强存储板30与印制电路板20连接的稳定性。电源接口触片211的作用是使得整个固态硬盘存储组件具有一个与外界电源电性连接的接口,而焊接盘221设置在延伸部22上且更加靠近端子座40的连接端子42,以便于连接端子42与焊接盘221焊接,从而使得存储板30与印制电路板20实现电性连接。
本实施例中,所述定位件16包括设于所述第一容置腔11侧方且用于对所述斜插部21进行定位的第一定位部13和对所述延伸部22进行定位的第二定位部14以及设于所述平插口121的两侧且用于在所述存储板30进行定位的第三定位部15。具体地,进一步通过第一定位部13的设置与第一容置腔11配合可以加强对斜插部21的定位以及插接安装后的稳定性和可靠性,通过第二定位部14的设置与第一容置腔11配合可以加强对延伸部22的定位以及插接安装后的稳定性和可靠性;同理,通过第三定位部15的设置与第二容置腔12的配合可以加强对存储板30的定位以及插接安装后的稳定性和可靠性。
本实施例中,所述第三定位部15包括由所述第二容置腔12的侧壁向外延伸的延伸块151和设于所述延伸块151上且用于与所述存储板30的侧边配合以对所述存储板30进行定位的定位凸起152。具体地,延伸块151有两个,两个延伸块151可以对存储板30进行夹持,如此可以加强对存储板30固定的稳定性。而定位凸起152则用于存储板30进行位置限定,确保存储板30安装后的位置的准确性。
本实施例中,所述定位凸起152的高度沿着所述存储板30插入所述平插口121的方向逐渐增高。具体地,定位凸起152靠外位置的高度较低,这样可以使得存储板30更加容置插入,而定位凸起152靠内位置的高度较高,这样可以对完成插接的存储板30起到限位的作用。
本实施例中,所述存储板30上设有与所述定位凸起152配合的定位凹槽33。具体地,定位凹槽33与定位凸起152的配合即可确保稳定地限定住储存板的位置。
本实施例中,所述存储板30靠近其相对两端的位置表面分别设有数据传输触片31和抵接盘32,所述抵接盘32与各所述连接端子42的另一端电性连接。具体地,抵接盘32与各连接端子42的另一端抵接即可使得连接端子42与存储板30实现电性连接,数据传输触片31的设置则主要用于与外界的数据端连接。
本申请实施例还提供了一种固态硬盘,其包括上述的固态硬盘存储组件。具体地,本申请实施例的固态硬盘,由于使用有上述的固态硬盘存储组件,那么可以确保固态硬盘存储组件中所采用的连接端子42在焊接时可以对连接端子42进行一次性联系焊接,大大提升焊接的效率;同时,各个连接端子42通过座体41固定在一起,那么各个连接端子42的位置相对固定,不易发生位移,提升其稳定性;且各连接端子42在座体41的保护下即使受到外力作用也不易发生变形,提升其可靠性。
以上所述仅为本申请的较佳实施例而已,并不用以限制本申请,凡在本申请的精神和原则之内所作的任何修改、等同替换和改进等,均应包含在本申请的保护范围之内。

Claims (10)

  1. 一种固态硬盘存储组件,包括安装骨架、斜插于所述安装骨架内且用于辅助供电的印制电路板和平插于所述安装骨架内且与所述印制电路板电连接以存储数据的存储板,其特征在于:所述固态硬盘存储组件还包括端子座,所述端子座包括座体和固定于所述座体上的若干个连接端子,所述印制电路板上设有焊接盘,各所述连接端子的一端与所述焊接盘焊接,各所述连接端子的另一端与所述存储板电性连接。
  2. 根据权利要求1所述的固态硬盘存储组件,其特征在于:各所述连接端子并排间隔嵌装于所述座体上。
  3. 根据权利要求1所述的固态硬盘存储组件,其特征在于:所述安装骨架设有用于收容所述印制电路板的第一容置腔、与所述第一容置腔连通且用于将所述印制电路板由所述第一容置腔朝向所述安装骨架的外侧插入以固定所述印制电路板的斜插口、与所述第一容置腔连通且用于收容所述存储板的第二容置腔、与所述第二容置腔连通且用于将所述存储板由所述安装骨架的外侧朝向所述第二容置腔插入以固定所述存储板的平插口和以及用于限定所述印制电路板和所述存储板的位置的定位件。
  4. 根据权利要求3所述的固态硬盘存储组件,其特征在于:所述印制电路板包括与所述斜插口配合的斜插部以及与所述斜插部垂直的延伸部,所述斜插部的末端设有电源接口触片,所述焊接盘设于所述延伸部上。
  5. 根据权利要求4所述的固态硬盘存储组件,其特征在于:所述定位件包括设于所述第一容置腔侧方且用于对所述斜插部进行定位的第一定位部和对所述延伸部进行定位的第二定位部以及设于所述平插口的两侧且用于在所述存储板进行定位的第三定位部。
  6. 根据权利要求5所述的固态硬盘存储组件,其特征在于:所述第三定位部包括由所述第二容置腔的侧壁向外延伸的延伸块和设于所述延伸块上且用于与所述存储板的侧边配合以对所述存储板进行定位的定位凸起。
  7. 根据权利要求6所述的固态硬盘存储组件,其特征在于:所述定位凸起的高度沿着所述存储板插入所述平插口的方向逐渐增高。
  8. 根据权利要求6所述的固态硬盘存储组件,其特征在于:所述存储板上设有与所述定位凸起配合的定位凹槽。
  9. 根据权利要求1~8任一项所述的固态硬盘存储组件,其特征在于:所述存储板靠近其相对两端的位置表面分别设有数据传输触片和抵接盘,所述抵接盘与各所述连接端子的另一端电性连接。
  10. 一种固态硬盘,其特征在于:包括权利要求1~9任一项所述的固态硬盘存储组件。
PCT/CN2017/115977 2017-07-28 2017-12-13 固态硬盘存储组件及固态硬盘 WO2019019527A1 (zh)

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CN2788385Y (zh) * 2005-02-07 2006-06-14 美国莫列斯股份有限公司 记忆卡连接器
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