WO2014026325A1 - 硬盘支架及服务器 - Google Patents

硬盘支架及服务器 Download PDF

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Publication number
WO2014026325A1
WO2014026325A1 PCT/CN2012/080122 CN2012080122W WO2014026325A1 WO 2014026325 A1 WO2014026325 A1 WO 2014026325A1 CN 2012080122 W CN2012080122 W CN 2012080122W WO 2014026325 A1 WO2014026325 A1 WO 2014026325A1
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WO
WIPO (PCT)
Prior art keywords
hard disk
port
connector
circuit board
printed circuit
Prior art date
Application number
PCT/CN2012/080122
Other languages
English (en)
French (fr)
Inventor
罗雁云
刘华伟
水瑞锋
Original Assignee
华为技术有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 华为技术有限公司 filed Critical 华为技术有限公司
Priority to CN201280002596.8A priority Critical patent/CN103189813B/zh
Priority to PCT/CN2012/080122 priority patent/WO2014026325A1/zh
Publication of WO2014026325A1 publication Critical patent/WO2014026325A1/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
    • G11B33/125Disposition of constructional parts in the apparatus, e.g. of power supply, of modules the apparatus comprising a plurality of recording/reproducing devices, e.g. modular arrangements, arrays of disc drives
    • G11B33/127Mounting arrangements of constructional parts onto a chassis
    • G11B33/128Mounting arrangements of constructional parts onto a chassis of the plurality of recording/reproducing devices, e.g. disk drives, onto a chassis

Definitions

  • the present invention relates to the field of structural components, and in particular, to a hard disk bracket and a server.
  • a server is a highly available computer on the network that provides various services for client computers. It provides data accessors, tapes, printers, and various specialized communication devices connected to the network under the control of the network operating system. Customer site sharing can also provide centralized computing, information publishing and data management services for network users. Its high performance is mainly reflected in high-speed computing power, long-term reliable operation, and powerful external data throughput.
  • the data accessor usually a hard disk
  • the inventors have found that the storage density of the servers in the prior art is low, that is, the number of hard disks per unit area in the server is small, which is not conducive to the development of the server in the direction of miniaturization and densification.
  • the technical problem to be solved by the present invention is to provide a hard disk bracket and a server, which can effectively increase the number of hard disks per unit area of the server, and facilitate the development of the server in a miniaturization and intensive manner.
  • a hard disk bracket includes a connector and a printed circuit board, and the connector is disposed at one end of the printed circuit board, and the printed circuit board a first port for connecting the first hard disk and a second port for connecting the second hard disk, the first port being connected to the first hard disk port on the connector, the second port and the second port The second hard drive port on the connector is connected.
  • a server the server is provided with at least one hard disk bracket, the hard disk bracket includes a connector and a printed circuit board, the connector is disposed at one end of the printed circuit board, and the printed circuit board is further provided with a first port connected to the first hard disk and a second port connected to the second hard disk, wherein the first port is connected to the first hard disk port on the connector, The second port is connected to the second hard disk port on the connector.
  • the hard disk bracket includes a connector and a printed circuit board, and the connector is disposed at one end of the printed circuit board, wherein the printed circuit board is further provided with a connection a first port of a hard disk and a second port for connecting a second hard disk, the first hard disk port is connected to a first hard disk port on the connector, and the second hard disk port is connected to the connector The second hard disk port is connected.
  • the two hard disk ports of each connector can be fully used, and the server and other devices can be connected to the corresponding hard disk through the data of any hard disk port of the connector, so that the two hard disk ports of the connector are both It is fully used, and indirectly increases the number of hard disks set per unit area of devices such as servers, and increases the storage density of devices such as servers with multiple hard disks, which is advantageous for miniaturization and intensiveness of servers and the like.
  • FIG. 1 is a schematic structural view 1 of the hard disk bracket according to an embodiment of the present invention.
  • FIG. 2 is a schematic structural view 2 of the hard disk bracket according to an embodiment of the present invention.
  • FIG. 3 is a schematic structural diagram of a server according to an embodiment of the present invention.
  • the first indicator port 14 is a second indicator port 2—the hard disk handle bar;
  • the embodiment of the present invention provides a hard disk bracket, as shown in FIG. 1, including a connector 1 and a printed circuit board 3.
  • the connectors 1 are respectively disposed at one end of the printed circuit board 3.
  • the printed circuit board 3 is further provided with a first port 31 for connecting the first hard disk 4 and a second port 32 for connecting the second hard disk 5, the first port 31 and the connector 1
  • the first hard disk port 11 is connected, and the second port 32 is connected to the second hard disk port 12 on the connector 1.
  • the connector 1 when the connector 1 is used, only one hard disk port on the connector 1 is used to connect the hard disk, so that the connector 1 cannot be fully utilized, and one connector 1 is connected to only one hard disk, and the interconnection is reduced.
  • the storage density of the servers of the hard disks cannot meet the needs of further miniaturization of the servers.
  • the hard disk bracket includes a connector 1 and a larger printed circuit board 3, and the connector 1 is disposed at one end of the printed circuit board 3, and the The printed circuit board 3 is further provided with two ports for connecting to the hard disk, which are respectively a first port 31 and a second port 32, and the first port 31 and the second port 32 are respectively given to the first hard disk 4 and
  • the second hard disk 5 provides an interface for data transmission with the outside, and the first port 31 is connected to the first hard disk port 11 on the connector 1 through a first wire disposed on the printed circuit board.
  • an external device such as a server can be connected to the first port 31 through the first hard disk port 11, and then write data to the first hard disk 4 through the first port 31 or read the first port 31.
  • a server or the like can write data to the second hard disk 5 or read data in the second hard disk 5 through the second hard disk port 12 of the connector 1.
  • connection between the first port 31 and the first hard disk port 11 may be connected through a trace on the printed circuit board 3, or may be connected by other means; similarly, the first The connection between the two ports 32 and the second hard disk port 12 can be connected by another trace on the printed circuit board 3, or can be connected by other means.
  • the two hard disk ports of each connector 1 can be fully utilized, the server, etc.
  • the device can be connected to the hard disk corresponding to the hard disk port through the data of any hard disk port of the connector 1, so that the two hard disk ports of the connector 1 are fully used, and the server and the like are indirectly provided with multiple hard disks.
  • the storage density of the device, and the hard disk support structure is simple, easy to process, and convenient for popularization.
  • the hard disk bracket includes a connector and a printed circuit board, and the connector is disposed at one end of the printed circuit board, wherein the printed circuit board is further provided with a connection a first port of a hard disk and a second port for connecting a second hard disk, the first port is connected to a first hard disk port on the connector, and the second port is connected to a second port on the connector Hard disk port connection.
  • the two hard disk ports of each connector can be fully used, and the server and other devices can be connected to the corresponding hard disk through the data of any hard disk port of the connector, so that the two hard disk ports of the connector are both It has been fully used, and indirectly increases the number of hard disks set per unit area of devices such as servers, and increases the storage density of devices such as servers with multiple hard disks, which is advantageous for miniaturization and intensiveness of servers and the like. The direction of development.
  • the embodiment of the present invention provides a hard disk bracket, as shown in FIG. 1, including a connector 1 and a printed circuit board 3, and the connector 1 is disposed at one end of the printed circuit board 3.
  • the embodiment of the present invention is based on the first embodiment, and the difference is that the hard disk bracket further includes:
  • a hard disk handle bar 2 as shown in FIG. 2, the hard disk handle bar 2 is disposed on the other end of the printed circuit board 3 opposite to the connector 1, and the hard disk handle bar 2 is provided with a first indicator light 21 of an operating state of the first hard disk 4 and a second indicator light 22 for indicating an operating state of the second hard disk 5, the first indicator light 21 and the first indicator on the connector 1
  • the indicator port 13 is connected, and the second indicator light 22 is connected to the second indicator port 14 of the connector 1 .
  • each hard disk bracket is provided with a hard disk handle bar 2, and each hard disk handle bar 2 has two indicator lights, one of which is connected to the port of the connector 1 connected to the hard disk, indicating the working state of the hard disk; At the same time, the indicator light indicating the power signal of the hard disk is not used in general, so that the device on the hard disk handle 2 is not fully utilized. To, the waste on the device on the hard disk handle bar 2 is caused.
  • the indicator light originally used to indicate the working state of the hard disk is set as the first indicator light 21 for indicating the working state of the first hard disk 4 to the relevant technical personnel, and the first indicator light 21 passes
  • the wiring on the printed circuit board 3 is connected to the first indicator port 13 on the connector 1.
  • the first indicator light 21 emits green light;
  • the first indicator light 21 emits red light to remind the relevant technical personnel.
  • the indicator light originally used to indicate the power signal of the hard disk is set as the second indicator light 22 for indicating to the relevant technical staff the working state of the second hard disk 5, and similarly, the second indicator light 22 is printed.
  • the other trace on the circuit board 3 is connected to the second indicator port 14 on the connector 1.
  • the second indicator light 22 emits green light.
  • the second indicator light 22 emits red light to remind the relevant technical personnel.
  • the first hard disk 4 and the second hard disk 5 are prevented from being bumped during the process of transporting the server or the like.
  • the connection between the hard disk 5 and the second hard disk port 32 is unsuccessful, and the edge of the printed circuit board 3 between the connector 1 and the hard disk handle bar 2 is provided for fixing the first hard disk. 4 and the fixed wall 6 of the second hard disk 5, as shown in FIG. 2, the first hard disk 4 and the second hard disk 5 can be connected and fixed to the fixed wall of the hard disk bracket by a connecting structure such as a screw 7. .
  • At least two screw holes 6 may be disposed at corresponding positions of the hard disks on each of the fixed walls 6.
  • the first hard disk 4 or the second hard disk 5 for fixing the abnormality may be used.
  • the screws 7 are screwed out from the fixed wall 6, so that the first hard disk 4 or the second hard disk 5 that is abnormal in operation can be replaced relatively easily.
  • the hard disk bracket includes a connector and a printed circuit board, and the connector is disposed at one end of the printed circuit board, wherein the printed circuit board is further provided with a connection a first port of a hard disk and a second port for connecting a second hard disk, The first port is connected to a first hard disk port on the connector, and the second port is connected to a second hard disk port on the connector.
  • the two hard disk ports of each connector can be fully used, and the server and other devices can be connected to the corresponding hard disk through the data of any hard disk port of the connector, so that the two hard disk ports of the connector are both It has been fully used, and indirectly increases the number of hard disks set per unit area of devices such as servers, and increases the storage density of devices such as servers with multiple hard disks, which is advantageous for miniaturization and intensiveness of servers and the like. The direction of development.
  • the hard disk bracket is further provided with a first indicator light and a second indicator light for respectively indicating the working states of the first hard disk and the second hard disk, so that the working personnel can observe the working state of the hard disk, and when the working state of the hard disk is incorrect
  • the staff can adjust and maintain in time;
  • the edge of the printed circuit board between the connector and the hard disk handle bar is further provided with a fixed wall, and the first hard disk and the first hard disk can be connected by screws or the like.
  • the second hard disk is fixed on the fixed wall to prevent the connection between the hard disk and the port from failing when the device provided with the hard disk holder is moved.
  • the embodiment of the present invention provides a server.
  • the server is provided with at least one hard disk bracket.
  • the hard disk bracket includes a connector 1 and a printed circuit board 3, and the connector 1 is disposed at one end of the printed circuit board 3.
  • the printed circuit board 3 is further provided with a first port 31 for connecting the first hard disk 4 and a second port 32 for connecting the second hard disk 5, the first port 31 and the connector 1
  • the first hard disk port 11 is connected, and the second port 32 is connected to the second hard disk port 12 on the connector 1.
  • the existing connector 1 is usually provided with two hard disk ports, but usually, when the connector 1 is used, only one hard disk port on the connector 1 is used to connect the hard disk, and the other hard disk port is vacant, so that the connector The two hard disk ports on 1 cannot be fully utilized, and one connector 1 is connected to only one hard disk.
  • the grounding reduces the storage density of servers with multiple hard disks, which cannot meet the needs of further miniaturization of the server.
  • the hard disk bracket includes a connector 1 and a larger printed circuit board 3, and the connector 1 is disposed at one end of the printed circuit board 3, and the The printed circuit board 3 is also provided with two ports for connecting to the hard disk, respectively being the first end
  • the port 31 and the second port 32, the first port 31 and the second port 32 respectively provide the first hard disk 4 and the second hard disk 5 with an interface for data transmission with the outside world, and the first port 31 is set by The first cable on the printed circuit board is connected to the first hard disk port 11 on the connector 1.
  • the external device such as a server can pass the first
  • the hard disk port 11 is connected to the first port 31, and further writes data to the first hard disk 4 or reads data in the first hard disk 4 through the first port 31.
  • a server or the like can write data to the second hard disk 5 or read data in the second hard disk 5 through the second port 12 of the connector 1.
  • connection between the first port 31 and the first hard disk port 11 may be connected through a trace on the printed circuit board 3, or may be connected by other means; similarly, the first The connection between the two ports 32 and the second hard disk port 12 can be connected by another trace on the printed circuit board 3, or can be connected by other means.
  • the two hard disk ports of each connector 1 can be fully used, and the server and the like can be connected to the hard disk corresponding to the hard disk port through any hard disk port data of the connector 1, so that the two connectors 1
  • Each hard disk port is fully used, and indirectly increases the storage density of a device such as a server with multiple hard disks, and the hard disk support structure is simple, easy to process, and convenient for popularization.
  • the hard disk bracket further includes:
  • a hard disk handle bar 2 as shown in FIG. 2, the hard disk handle bar 2 is disposed on the other end of the printed circuit board 3 opposite to the connector 1, and the hard disk handle bar 2 is provided with a first indicator light 21 of an operating state of the first hard disk 4 and a second indicator light 22 for indicating an operating state of the second hard disk 5, the first indicator light 21 and the first indicator on the connector 1
  • the indicator port 13 is connected, and the second indicator light 22 is connected to the second indicator port 14 of the connector 1 .
  • each hard disk bracket is provided with a hard disk handle bar 2, and each hard disk handle bar 2 has two light indicators, one of which is connected to the port of the connector 1 connected to the hard disk, indicating the working state of the hard disk;
  • the indicator light As an indicator light indicating the power signal of the hard disk, in general, the indicator light is not used, so that the device on the hard disk handle bar 2 is not fully utilized, and the device on the hard disk handle bar 2 is The waste caused.
  • the indicator light originally used to indicate the working state of the hard disk is set as the first indicator light 21 for indicating the working state of the first hard disk 4 to the relevant technical personnel, and the first indicator light 21 passes The wiring on the printed circuit board 3 is connected to the first indicator port 13 on the connector 1.
  • the first indicator light 21 When the data transmission between the first hard disk 4 and the first hard disk port 11 is normal, the first indicator light 21 emits green light; When the data transmission between the first hard disk 4 and the first hard disk port 11 is abnormal, the first indicator light 21 emits red light to remind the relevant technical personnel.
  • the indicator light originally used to indicate the power signal of the hard disk is set as the second indicator light 22 for indicating to the relevant technical staff the working state of the second hard disk 5, and similarly, the second indicator light 22 is printed.
  • the other trace on the circuit board 3 is connected to the second indicator port 14 on the connector 1.
  • the second indicator light 22 emits green light.
  • the second indicator light 22 emits red light to remind the relevant technical personnel.
  • the first hard disk 4 and the second hard disk 5 are prevented from being bumped during the process of transporting the server or the like.
  • the connection between the hard disk 5 and the second hard disk port 32 is unsuccessful, and the edge of the printed circuit board 3 between the connector 1 and the hard disk handle bar 2 is provided for fixing the first hard disk. 4 and the fixed wall 6 of the second hard disk 5, as shown in FIG. 2, the first hard disk 4 and the second hard disk 5 can be connected and fixed to the fixed wall of the hard disk bracket by a connecting structure such as a screw 7. .
  • At least two screw holes 6 may be disposed at corresponding positions of the hard disks on each of the fixed walls 6.
  • the hard disk handle bars 2 on the hard disk brackets are exposed outside the server 8, so that when the relevant technician passes the first indicator light 21 or the second
  • the indicator light 22 finds that the working state of the corresponding first hard disk 4 or the second hard disk 5 is abnormal
  • the hard disk of the first hard disk 4 or the second hard disk 5 corresponding to the hard disk is not used.
  • the bracket is extracted from the server 8, and then the screws 7 for fixing the abnormal first hard disk 4 or the second hard disk 5 can be unscrewed from the fixed wall 6, so that the replacement or repair work can be performed relatively easily.
  • each U server 8 can be provided with ten hard disk brackets.
  • each U server 8 can be provided with twenty hard disks, which greatly improves the storage density inside the server 8, which is beneficial to the U.
  • the server 8 is moving toward miniaturization and densification.
  • U is a unit that represents the size of the server's exterior and is an abbreviation of unit.
  • the reason for specifying the size of the server is to keep the server in proper size for placement on an iron or aluminum rack.
  • the rack has a screw hole for the fixed server so that it can be aligned with the screw hole of the server and fixed with screws to facilitate the space required for each server.
  • the server is provided with at least one hard disk bracket, the hard disk bracket includes a connector and a printed circuit board, and the connector is disposed at one end of the printed circuit board, wherein
  • the printed circuit board is further provided with a first port for connecting the first hard disk and a second port for connecting the second hard disk, the first port is connected with the first hard disk port on the connector, the second The port is connected to a second hard disk port on the connector.
  • the two hard disk ports of each connector can be fully used, and the server and other devices can be connected to the corresponding hard disk through the data of any hard disk port of the connector, so that the two hard disk ports of the connector are both It is fully used, and indirectly increases the number of hard disks set per unit area of devices such as servers, and increases the storage density of devices such as servers with multiple hard disks, which is advantageous for miniaturization and intensiveness of servers and the like.
  • the hard disk bracket is further provided with a first indicator light and a second indicator light for respectively indicating the working states of the first hard disk and the second hard disk, so that the working personnel can observe the working state of the hard disk, and when the working state of the hard disk is incorrect
  • the staff can adjust and maintain in time;
  • the edge of the printed circuit board between the connector and the hard disk handle bar is further provided with a fixed wall, and the first hard disk and the first hard disk can be connected by screws or the like.
  • the second hard disk is fixed on the fixed wall to prevent the connection between the hard disk and the port from failing when the server provided with the hard disk bracket is moved.

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Abstract

本发明实施例公开了一种硬盘支架及服务器,涉及结构部件领域,能够有效地提高服务器的存储密度。其中,包括连接器、硬盘拉手条以及印刷电路板,所述连接器和所述硬盘拉手条分别设置于所述印刷电路板的两端,所述印刷电路板上还设置有用于连接第一硬盘的第一硬盘端口和用于连接第二硬盘的第二硬盘端口,所述第一硬盘端口与所述连接器上的第一端口连接,所述第二硬盘端口与所述连接器上的第二端口连接。

Description

硬盘支架及服务器 技术领域
本发明涉及结构部件领域, 尤其涉及一种硬盘支架及服务器。
背景技术
服务器是网络上一种为客户端计算机提供各种服务的高可用性计算 机, 它在网络操作系统的控制下, 将与其相连的数据存取器、 磁带、 打印 机及各种专用通讯设备提供给网络上的客户站点共享,也能为网络用户提 供集中计算、 信息发表及数据管理等服务。 它的高性能主要体现在高速度 的运算能力、 长时间的可靠运行、 强大的外部数据吞吐能力等方面。 服务 器中的数据存取器(通常为硬盘)存储了大量的数据, 是服务器的重要的 一部分。
发明人在实现本发明的过程中发现,现有技术中的服务器的存储密度 偏低, 即服务器中单位面积上的硬盘个数较少, 不利于服务器向小型化、 密集化方向发展。
发明内容
本发明所要解决的技术问题在于提供一种硬盘支架及服务器,能够有 效地增加服务器的单位面积上的硬盘个数,有利于服务器向小型化、 密集 化方向发展。
为解决上述技术问题, 本发明硬盘支架及服务器采用如下技术方案: 一种硬盘支架, 包括连接器和印刷电路板, 所述连接器设置于所述印 刷电路板的一端,所述印刷电路板上还设置有用于连接第一硬盘的第一端 口和用于连接第二硬盘的第二端口,所述第一端口与所述连接器上的第一 硬盘端口连接, 所述第二端口与所述连接器上的第二硬盘端口连接。
一种服务器, 所述服务器上设置有至少一个硬盘支架, 所述硬盘支架 包括连接器和印刷电路板, 所述连接器设置于所述印刷电路板的一端, 所 述印刷电路板上还设置有用于连接第一硬盘的第一端口和用于连接第二 硬盘的第二端口, 所述第一端口与所述连接器上的第一硬盘端口连接, 所 述第二端口与所述连接器上的第二硬盘端口连接。
在本发明实施例的技术方案中,所述硬盘支架包括连接器和印刷电路 板, 所述连接器设置于所述印刷电路板的一端, 其中, 所述印刷电路板上 还设置有用于连接第一硬盘的第一端口和用于连接第二硬盘的第二端口, 所述第一硬盘端口与所述连接器上的第一硬盘端口连接,所述第二硬盘端 口与所述连接器上的第二硬盘端口连接。 由此,每一连接器的两个硬盘端 口均可得到充分的使用,服务器等设备均可通过连接器的任一硬盘端口数 据连接至该端口对应的硬盘,使得连接器的两个硬盘端口均得到了充分的 使用, 并且间接地提高了服务器等设备的单位面积上设置的硬盘的个数, 提高了服务器等设置有多个硬盘的设备的存储密度,有利于服务器等设备 向小型化、 密集化方向发展。
附图说明
图 1为本发明实施例中所述硬盘支架结构示意图一;
图 2为本发明实施例中所述硬盘支架结构示意图二;
图 3为本发明实施例中所述服务器结构示意图。
附图标记说明:
1一连接器; 11一第一硬盘端口; 12—第二硬盘端口
13—第一指示灯端口 14一第二指示灯端口 2—硬盘拉手条;
21—第一指示灯; 22—第二指示灯; 23—拉手;
3—印刷电路板; 31—第一端口; 32—第二端口;
4一第一硬盘; 5—第二硬盘; 6—固定壁;
61—螺孔; 7—螺釘; 8—服务器。
具体实施方式 下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进 行清楚、 完整地描述, 显然, 所描述的实施例是本发明一部分实施例, 而 不是全部的实施例。基于本发明中的实施例, 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,都属于本发明保护的范 围。
实施例一
本发明实施例提供一种硬盘支架, 如图 1所示, 包括连接器 1和印刷 电路板 3 , 所述连接器 1分别设置于所述印刷电路板 3的一端。
其中,所述印刷电路板 3上还设置有用于连接第一硬盘 4的第一端口 31和用于连接第二硬盘 5的第二端口 32,所述第一端口 31与所述连接器 1上的第一硬盘端口 11连接, 所述第二端口 32与所述连接器 1上的第二 硬盘端口 12连接。
通常, 在使用连接器 1时, 连接器 1上仅有一个硬盘端口用于连接硬 盘, 使得连接器 1无法得到充分的利用, 并且一个连接器 1只连接一个硬 盘, 间接地降低了设置有多个硬盘的服务器的存储密度, 无法满足服务器 进一步小型化的需求。
在本发明实施例中, 如图 1所示, 所述的硬盘支架包括连接器 1和一 较大的印刷电路板 3 , 所述连接器 1设置于所述印刷电路板 3的一端, 并 且该印刷电路板 3上还设置有两个用于与硬盘连接的端口,分别为第一端 口 31和第二端口 32, 所述第一端口 31和所述第二端口 32分别给第一硬 盘 4和第二硬盘 5提供了与外界进行数据传输的接口, 所述第一端口 31 通过设置于所述印刷电路板上的第一走线与所述连接器 1 上的第一硬盘 端口 11连接, 当所述第一端口 31与第一硬盘 4连接后, 服务器等外界设 备可通过第一硬盘端口 11连接至第一端口 31 , 进而通过第一端口 31向 第一硬盘 4写入数据或读出第一硬盘 4内的数据。
类似的, 服务器等设备可通过连接器 1的第二硬盘端口 12向第二硬 盘 5写入数据或读出第二硬盘 5内的数据。
具体地,所述第一端口 31与所述第一硬盘端口 11之间的连接可通过 所述印刷电路板 3上的走线连接, 也可以通过其他方式进行数据连接; 类 似的,所述第二端口 32与所述第二硬盘端口 12之间的连接可通过所述印 刷电路板 3上的另一走线连接, 也可以通过其他方式进行数据连接。
由此, 每一连接器 1的两个硬盘端口均可得到充分的使用, 服务器等 设备均可通过连接器 1 的任一硬盘端口数据连接至该硬盘端口对应的硬 盘, 使得连接器 1的两个硬盘端口均得到了充分的使用, 并且间接地提高 了服务器等设置有多个硬盘的设备的存储密度, 并且该硬盘支架结构筒 单、 易于加工处理, 便于推广使用。
在本发明实施例的技术方案中,所述硬盘支架包括连接器和印刷电路 板, 所述连接器设置于所述印刷电路板的一端, 其中, 所述印刷电路板上 还设置有用于连接第一硬盘的第一端口和用于连接第二硬盘的第二端口, 所述第一端口与所述连接器上的第一硬盘端口连接,所述第二端口与所述 连接器上的第二硬盘端口连接。 由此, 每一连接器的两个硬盘端口均可得 到充分的使用,服务器等设备均可通过连接器的任一硬盘端口数据连接至 该端口对应的硬盘, 使得连接器的两个硬盘端口均得到了充分的使用, 并 且间接地提高了服务器等设备的单位面积上设置的硬盘的个数,提高了服 务器等设置有多个硬盘的设备的存储密度, 有利于服务器等设备向小型 化、 密集化方向发展。
实施例二
本发明实施例提供一种硬盘支架, 如图 1所示, 包括连接器 1和印刷 电路板 3 , 所述连接器 1设置于所述印刷电路板 3的一端。
本发明实施例建立在实施例一的基础上, 所不同之处在于, 所述硬盘 支架还包括:
硬盘拉手条 2 , 如图 2所示, 所述硬盘拉手条 2设置于所述印 刷电路板 3上与所述连接器 1相对的另一端, 所述硬盘拉手条 2上 设置有用于指示所述第一硬盘 4的工作状态的第一指示灯 21和用于 指示所述第二硬盘 5的工作状态的第二指示灯 22 , 所述第一指示灯 21 与所述连接器 1 上的第一指示灯端口 13 连接, 所述第二指示灯 22与所述连接器上 1 的第二指示灯端口 14连接。
通常每一个硬盘支架都设置有硬盘拉手条 2, 每一个硬盘拉手条 2 上有两盏指示灯, 其中一盏指示灯连接至与硬盘连接的连接器 1的端口, 指示硬盘的工作状态; 另一盏为指示硬盘的电源信号的指示灯, 在一般情 况下该指示灯不会使用到,使得所述硬盘拉手条 2上的设备未能充分利用 到, 对所述硬盘拉手条 2上的设备造成了的浪费。
在本发明实施例中,将原先用于指示硬盘的工作状态的指示灯设置为 第一指示灯 21 , 用于向有关技术人员指示第一硬盘 4的工作状态, 所述 第一指示灯 21通过印刷电路板 3上的走线与连接器 1上的第一指示灯端 口 13连接, 当第一硬盘 4与第一硬盘端口 11之间的数据传输正常时, 第 一指示灯 21发出绿光;当第一硬盘 4与第一硬盘端口 11之间的数据传输 异常时, 第一指示灯 21发出红光, 以提醒有关技术人员注意。
类似的,将原先用于指示硬盘的电源信号的指示灯设置为第二指示灯 22, 用于向有关技术人员指示第二硬盘 5的工作状态, 类似的, 所述第二 指示灯 22通过印刷电路板 3上的另一走线与连接器 1上的第二指示灯端 口 14连接, 当第二硬盘 5与第二硬盘端口 12之间的数据传输正常时, 第 二指示灯 22发出绿光;当第二硬盘 5与第二硬盘端口 12之间的数据传输 异常时, 第二指示灯 22发出红光, 以提醒有关技术人员注意。
为了使得第一硬盘 4和第二硬盘 5能够较为牢固的设置在所述硬盘支 架上, 防止在搬运服务器等设备的过程中由于受到颠簸, 导致第一硬盘 4 与第一硬盘端口 31或第二硬盘 5与第二硬盘端口 32之间的连接失效等不 良后果, 所述连接器 1和所述硬盘拉手条 2之间的所述印刷电路板 3 的边缘处设置有用于固定所述第一硬盘 4和所述第二硬盘 5的固定壁 6 , 如图 2所示,所述第一硬盘 4与所述第二硬盘 5可通过螺釘 7等连接结构 连接固定于所述硬盘支架的固定壁上。
一般来说, 为了使得第一硬盘 4和第二硬盘 5的固定较为牢固, 所述 每一固定壁 6上各硬盘的对应位置可至少设置有两个螺孔 6。
当有关技术人员通过第一指示灯 21或第二指示灯 22发现对应的第一 硬盘 4或第二硬盘 5的工作状态异常时, 可将用于固定异常的第一硬盘 4 或第二硬盘 5的各螺釘 7 自所述固定壁 6上旋出,即可较为轻松地更换工 作异常的第一硬盘 4或第二硬盘 5。
在本发明实施例的技术方案中,所述硬盘支架包括连接器和印刷电路 板, 所述连接器设置于所述印刷电路板的一端, 其中, 所述印刷电路板上 还设置有用于连接第一硬盘的第一端口和用于连接第二硬盘的第二端口, 所述第一端口与所述连接器上的第一硬盘端口连接,所述第二端口与所述 连接器上的第二硬盘端口连接。 由此, 每一连接器的两个硬盘端口均可得 到充分的使用,服务器等设备均可通过连接器的任一硬盘端口数据连接至 该端口对应的硬盘, 使得连接器的两个硬盘端口均得到了充分的使用, 并 且间接地提高了服务器等设备的单位面积上设置的硬盘的个数,提高了服 务器等设置有多个硬盘的设备的存储密度, 有利于服务器等设备向小型 化、 密集化方向发展。 另外, 所述硬盘支架还设置有用于分别指示第一硬 盘和第二硬盘的工作状态的第一指示灯和第二指示灯,便于工作人员观察 硬盘的工作状态, 当硬盘的工作状态有误时, 工作人员可及时进行调整、 维护; 所述连接器和所述硬盘拉手条之间的所述印刷电路板的边缘 处还设置有固定壁, 可通过螺釘等连接固定方式将第一硬盘和第二硬盘 固定于固定壁上,防止在移动设置有该硬盘支架的设备时硬盘与端口之间 的连接失效。
实施例三
本发明实施例提供一种服务器, 如图 3所示, 所述服务器上设置有至 少一个硬盘支架, 如图 1所示, 所述硬盘支架包括连接器 1和印刷电路板 3 , 所述连接器 1设置于所述印刷电路板 3的一端。
其中,所述印刷电路板 3上还设置有用于连接第一硬盘 4的第一端口 31和用于连接第二硬盘 5的第二端口 32,所述第一端口 31与所述连接器 1上的第一硬盘端口 11连接, 所述第二端口 32与所述连接器 1上的第二 硬盘端口 12连接。
现有的连接器 1上通常都设置有两个硬盘端口, 但通常, 在使用连接 器 1时, 连接器 1上仅有一个硬盘端口用于连接硬盘, 另一硬盘端口则空 置, 使得连接器 1上的两个硬盘端口无法得到充分的利用, 并且一个连接 器 1 只连接一个硬盘, 间接地降低了设置有多个硬盘的服务器的存储密 度, 无法满足服务器进一步小型化的需求。
在本发明实施例中, 如图 1所示, 所述的硬盘支架包括连接器 1和一 较大的印刷电路板 3 , 所述连接器 1设置于所述印刷电路板 3的一端, 并 且该印刷电路板 3上还设置有两个用于与硬盘连接的端口,分别为第一端 口 31和第二端口 32, 所述第一端口 31和所述第二端口 32分别给第一硬 盘 4和第二硬盘 5提供了与外界进行数据传输的接口, 所述第一端口 31 通过设置于所述印刷电路板上的第一走线与所述连接器 1 上的第一硬盘 端口 11连接, 当所述第一端口 31与第一硬盘 4连接后, 服务器等外界设 备可通过第一硬盘端口 11连接至第一端口 31 , 进而通过第一端口 31向 第一硬盘 4写入数据或读出第一硬盘 4内的数据。
类似的, 服务器等设备可通过连接器 1 的第二端口 12向第二硬盘 5 写入数据或读出第二硬盘 5内的数据。
具体地,所述第一端口 31与所述第一硬盘端口 11之间的连接可通过 所述印刷电路板 3上的走线连接, 也可以通过其他方式进行数据连接; 类 似的,所述第二端口 32与所述第二硬盘端口 12之间的连接可通过所述印 刷电路板 3上的另一走线连接, 也可以通过其他方式进行数据连接。
由此, 每一连接器 1的两个硬盘端口均可得到充分的使用, 服务器等 设备均可通过连接器 1 的任一硬盘端口数据连接至该硬盘端口对应的硬 盘, 使得连接器 1的两个硬盘端口均得到了充分的使用, 并且间接地提高 了服务器等设置有多个硬盘的设备的存储密度, 并且该硬盘支架结构筒 单、 易于加工处理, 便于推广使用。
进一步的, 所述硬盘支架还包括:
硬盘拉手条 2 , 如图 2所示, 所述硬盘拉手条 2设置于所述印 刷电路板 3上与所述连接器 1相对的另一端, 所述硬盘拉手条 2上 设置有用于指示所述第一硬盘 4的工作状态的第一指示灯 21和用于 指示所述第二硬盘 5的工作状态的第二指示灯 22 , 所述第一指示灯 21 与所述连接器 1 上的第一指示灯端口 13 连接, 所述第二指示灯 22与所述连接器上 1 的第二指示灯端口 14连接。
通常每一个硬盘支架都设置有硬盘拉手条 2, 每一个硬盘拉手条 2上 有两盏指示灯, 其中一盏指示灯连接至与硬盘连接的连接器 1的端口, 指 示硬盘的工作状态; 另一盏为指示硬盘的电源信号的指示灯, 在一般情况 下该指示灯不会使用到, 使得所述硬盘拉手条 2 上的设备未能充分利用 到, 对所述硬盘拉手条 2上的设备造成了的浪费。 在本发明实施例中,将原先用于指示硬盘的工作状态的指示灯设置为 第一指示灯 21 , 用于向有关技术人员指示第一硬盘 4的工作状态, 所述 第一指示灯 21通过印刷电路板 3上的走线与连接器 1上的第一指示灯端 口 13连接, 当第一硬盘 4与第一硬盘端口 11之间的数据传输正常时, 第 一指示灯 21发出绿光;当第一硬盘 4与第一硬盘端口 11之间的数据传输 异常时, 第一指示灯 21发出红光, 以提醒有关技术人员注意。
类似的,将原先用于指示硬盘的电源信号的指示灯设置为第二指示灯 22, 用于向有关技术人员指示第二硬盘 5的工作状态, 类似的, 所述第二 指示灯 22通过印刷电路板 3上的另一走线与连接器 1上的第二指示灯端 口 14连接, 当第二硬盘 5与第二硬盘端口 12之间的数据传输正常时, 第 二指示灯 22发出绿光;当第二硬盘 5与第二硬盘端口 12之间的数据传输 异常时, 第二指示灯 22发出红光, 以提醒有关技术人员注意。
为了使得第一硬盘 4和第二硬盘 5能够较为牢固的设置在所述硬盘支 架上, 防止在搬运服务器等设备的过程中由于受到颠簸, 导致第一硬盘 4 与第一硬盘端口 31或第二硬盘 5与第二硬盘端口 32之间的连接失效等不 良后果, 所述连接器 1和所述硬盘拉手条 2之间的所述印刷电路板 3 的边缘处设置有用于固定所述第一硬盘 4和所述第二硬盘 5的固定壁 6 , 如图 2所示,所述第一硬盘 4与所述第二硬盘 5可通过螺釘 7等连接结构 连接固定于所述硬盘支架的固定壁上。
一般来说, 为了使得第一硬盘 4和第二硬盘 5的固定较为牢固, 所述 每一固定壁 6上各硬盘的对应位置可至少设置有两个螺孔 6。
如图 3所示, 各所述硬盘支架在设置在服务器内部后, 各硬盘支架上 的硬盘拉手条 2暴露在所述服务器 8外,以便于当有关技术人员通过第一 指示灯 21或第二指示灯 22发现对应的第一硬盘 4或第二硬盘 5的工作状 态异常时, 利用所述硬盘拉手条 2上的拉手 23 , 将对应承载的第一硬盘 4 或第二硬盘 5状态异常的硬盘支架从所述服务器 8中抽出, 之后, 可将用 于固定异常的第一硬盘 4或第二硬盘 5的各螺釘 7自所述固定壁 6上旋出 , 即可较为轻松地更换或检修工作异常的第一硬盘 4或第二硬盘 5 , 并可轻 松地将排除了异常状态的硬盘及承载硬盘的硬盘支架设置回服务器中。 利用所述硬盘支架, 每一 U的服务器 8可设置有十个硬盘支架, 对 应的, 每一 U的服务器 8可设置有二十个硬盘, 大大地提高了服务器 8 内部的存储密度, 有利于服务器 8向小型化、 密集化方向发展。
U是一种表示服务器外部尺寸的单位,是 unit的缩略语,之所以要规 定服务器的尺寸,是为了使服务器保持适当的尺寸以便放在铁质或铝质的 机架上。 机架上有固定服务器的螺孔, 以便它能与服务器的螺孔对上号, 再用螺丝加以固定好, 以方便安装每一部服务器所需要的空间。
在本实施例的技术方案中, 所述服务器内设置有至少一个硬盘支架, 所述硬盘支架包括连接器和印刷电路板,所述连接器设置于所述印刷电路 板的一端, 其中, 所述印刷电路板上还设置有用于连接第一硬盘的第一端 口和用于连接第二硬盘的第二端口,所述第一端口与所述连接器上的第一 硬盘端口连接,所述第二端口与所述连接器上的第二硬盘端口连接。由此, 每一连接器的两个硬盘端口均可得到充分的使用,服务器等设备均可通过 连接器的任一硬盘端口数据连接至该端口对应的硬盘,使得连接器的两个 硬盘端口均得到了充分的使用,并且间接地提高了服务器等设备的单位面 积上设置的硬盘的个数,提高了服务器等设置有多个硬盘的设备的存储密 度, 有利于服务器等设备向小型化、 密集化方向发展。 另外, 所述硬盘支 架还设置有用于分别指示第一硬盘和第二硬盘的工作状态的第一指示灯 和第二指示灯,便于工作人员观察硬盘的工作状态, 当硬盘的工作状态有 误时, 工作人员可及时进行调整、 维护; 所述连接器和所述硬盘拉手条 之间的所述印刷电路板的边缘处还设置有固定壁, 可通过螺釘等连接 固定方式将第一硬盘和第二硬盘固定于固定壁上,防止在移动设置有该硬 盘支架的服务器时硬盘与端口之间的连接失效。
以上所述, 仅为本发明的具体实施方式, 但本发明的保护范围并不局 限于此, 任何熟悉本技术领域的技术人员在本发明揭露的技术范围内, 可 轻易想到变化或替换, 都应涵盖在本发明的保护范围之内。 因此, 本发明 的保护范围应以所述权利要求的保护范围为准。

Claims

权 利 要 求 书
1、 一种硬盘支架, 包括连接器和印刷电路板, 所述连接器设置 于所述印刷电路板的一端, 其特征在于,
所述印刷电路板上还设置有用于连接第一硬盘的第一端口和用 于连接第二硬盘的第二端口, 所述第一端口与所述连接器上的第一硬 盘端口连接, 所述第二端口与所述连接器上的第二硬盘端口连接。
2、 根据权利要求 1所述的硬盘支架, 其特征在于,
所述第一端口通过所述印刷电路板上的第一走线与所述连接器 上的第一硬盘端口连接, 所述第二端口通过所述印刷电路板上的第二 走线与所述连接器上的第二硬盘端口连接。
3、 根据权利要求 1所述的硬盘支架, 其特征在于, 还包括: 硬盘拉手条,所述硬盘拉手条设置于所述印刷电路板上与所述连 接器相对的另一端, 所述硬盘拉手条上设置有用于指示所述第一硬盘 的工作状态的第一指示灯和用于指示所述第二硬盘的工作状态的第 二指示灯, 所述第一指示灯与所述连接器上的第一指示灯端口连接, 所述第二指示灯与所述连接器上的第二指示灯端口连接。
4、 根据权利要求 1所述的硬盘支架, 其特征在于,
所述连接器和所述硬盘拉手条之间的所述印刷电路板的边缘处 设置有用于固定所述第一硬盘和所述第二硬盘的固定壁, 所述固定壁 上设置有至少两个螺孔。
5、 根据权利要求 4中任一项所述的硬盘支架, 其特征在于, 所述第一硬盘与所述第二硬盘通过螺釘连接固定于所述硬盘支 架的所述固定壁上。
6、 一种服务器, 所述服务器上设置有至少一个硬盘支架, 所述 硬盘支架包括连接器和印刷电路板, 所述连接器设置于所述印刷电路 板的一端, 其特征在于,
所述印刷电路板上还设置有用于连接第一硬盘的第一端口和用 于连接第二硬盘的第二端口, 所述第一端口与所述连接器上的第一硬 盘端口连接, 所述第二端口与所述连接器上的第二硬盘端口连接。
7、 根据权利要求 6所述的服务器, 其特征在于,
所述第一端口通过所述印刷电路板上的第一走线与所述连接器 上的第一硬盘端口连接, 所述第二端口通过所述印刷电路板上的第二 走线与所述连接器上的第二硬盘端口连接。
8、 根据权利要求 6所述的服务器, 其特征在于, 还包括: 硬盘拉手条,所述硬盘拉手条设置于所述印刷电路板上与所述连 接器相对的另一端, 所述硬盘拉手条上设置有用于指示所述第一硬盘 的工作状态的第一指示灯和用于指示所述第二硬盘的工作状态的第 二指示灯, 所述第一指示灯与所述连接器上的第一指示灯端口连接, 所述第二指示灯与所述连接器上的第二指示灯端口连接。
9、 根据权利要求 6所述的硬盘支架, 其特征在于,
所述连接器和所述硬盘拉手条之间的所述印刷电路板的边缘处 设置有用于固定所述第一硬盘和所述第二硬盘的固定壁, 所述固定壁 上设置有至少两个螺孔。
10、 根据权利要求 9中任一项所述的硬盘支架, 其特征在于, 所述第一硬盘与所述第二硬盘通过螺釘连接固定于所述硬盘支 架的所述固定壁上。
PCT/CN2012/080122 2012-08-14 2012-08-14 硬盘支架及服务器 WO2014026325A1 (zh)

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CN104484264A (zh) * 2014-12-30 2015-04-01 浪潮电子信息产业股份有限公司 一种硬盘状态指示方法及装置
CN107037859B (zh) * 2017-03-28 2021-09-14 联想(北京)有限公司 硬盘安装结构及检测方法
CN109213284A (zh) * 2018-09-14 2019-01-15 郑州云海信息技术有限公司 一种硬盘托架

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