Branching structure of medium storage equipment
By designing a split structure in the storage medium equipment, using the combination of chassis, hub board and transit wires, the wire confusion caused by limited equipment space is solved, and a clearer line layout and convenient maintenance is achieved.
Patent Information
- Application Number
- CN202421902346.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-07
- Publication Date
- 2025-06-06
- Estimated Expiration
- 2034-08-07
AI Technical Summary
In existing storage media equipment, due to limited space, a large number of wires are arranged for data communication, resulting in chaos, affecting maintenance.
A split structure of storage medium equipment is designed, and the distribution and connection of lines are realized through the combination of the chassis, the transfer mounting plate, the first assembly board, the circuit board and the transfer wire, and the use of wires is reduced.
It realizes a clear layout of the lines, avoids messy situations, and can more clearly troubleshoot problems during subsequent maintenance.
Smart Images

Figure CN222952644U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of storage medium equipment, in particular to a line dividing structure of storage medium equipment. Background Art
[0002] The desktop library is a miniaturized removable storage device. It is designed to be placed on the desktop. It is small and light, and is suitable for long-term archiving and backup of small databases. When using a desktop CD library, you need to know the number of CDs in the library so that you can add CDs in time when there are not enough CDs.
[0003] Because the use of optical disks for storage does not require continuous rotation like hard disks, the energy consumption is lower. The structure of the optical disk itself also determines that its service life is longer than that of hard disks. It can be used for 50 years or even longer, and does not need to be replaced frequently. With the development of error correction technology, the reliability of optical disks for storing data has been greatly improved. Because the data stored on the optical disk is recorded on the metal film of the disk through purely physical metal ablation technology, this process is irreversible, making the data impossible to tamper with, and ensuring the stability of the data from a physical level. Hard disks and magnetic tapes will become very fragile if they come into contact with water or in a humid environment, but optical disks are not affected by these and can read data normally even in an office environment above 35°C.
[0004] The invention with application number CN202310945844.2 discloses a device for reading records and migrating optical storage media, including a transfer seat that moves in the X, Y and Z axis directions, the transfer seat is provided with a finger seat that can be inserted into the storage medium, the finger seat is equipped with a first movable part and a second movable part that lifts the stacked storage medium; the transfer seat is equipped with a detection component for detecting the number of storage media; the detection component includes a detection bar that moves in the Z axis direction of the transfer seat, the detection bar is located on the periphery of the finger seat, the detection bar is equipped with a longitudinally arranged counting bar, after the finger seat is inserted into the stacked storage medium, the detection bar is longitudinally lifted against the storage medium; a transfer platform is provided under the transfer seat, the transfer platform is provided with a supporting structure for supporting a storage box, the transfer platform is provided with a clamping member that moves along the length direction of the supporting structure, the clamping member includes a fastener that can be swingably buckled into the storage box, and the clamping member draws out or pushes back the storage box through the fastener.
[0005] In the above scheme, since multiple mechanisms are used in the equipment, and these mechanisms usually need to use multiple communications, such as single-chip microcomputers, PLCs, etc., a large number of wires are needed for data communication to ensure the control effect. Since the space of the equipment is limited, arranging a large number of wires can easily lead to confusion and easily affect subsequent maintenance. Utility Model Content
[0006] The utility model aims to provide a line splitting structure for a storage medium device in view of the deficiencies in the prior art.
[0007] To achieve the above purpose, the technical solution of the utility model is as follows:
[0008] The wiring structure of the storage medium device includes a chassis, the chassis is provided with a transit installation plate, the transit installation plate is arranged with a plurality of first hub boards, the first hub boards are installed with a first input socket and a plurality of first output sockets, the first output sockets are connected with the first input sockets by signal; the chassis is also arranged with a circuit board cooperating with the first hub board, the circuit board is installed with a circuit input socket cooperating with the first output socket, and a transit wire is connected between the first output socket and the circuit input socket.
[0009] Further: the first input socket, the first output socket and the circuit input socket are all female sockets.
[0010] Further: a first male socket connected to the first output socket is installed at one end of the transfer wire, and a second male socket connected to the circuit input socket is installed at the other end.
[0011] Furthermore: the first input socket, the first output socket and the circuit input socket are all male sockets.
[0012] Further: one end of the transfer wire is equipped with a first female socket connected to the first output socket, and the other end is equipped with a second female socket connected to the circuit input socket.
[0013] Further: the number of the first input sockets is more than two, and one first input socket is signal-connected to a plurality of first output sockets.
[0014] Further: the first input socket is located at the top or bottom of the first hub board, the first output socket connected to the first input socket signal is arranged along the length direction of the first hub board, and two adjacent first output sockets are arranged at equal distances.
[0015] Further: the circuit input socket of the circuit board is closely aligned with the first output socket.
[0016] Furthermore: the transfer installation plate is provided with a plurality of first installation holes, and the first collection plate is provided with second installation holes matching with the first installation holes.
[0017] Furthermore: the transfer mounting plate is provided with a plurality of third mounting holes, and the circuit board is provided with fourth mounting holes matching with the third mounting holes.
[0018] The beneficial effects of the present invention are as follows: the line that needs to be divided into multiple parts can be first inserted into the first output socket of the first hub board, and then the line can be divided into multiple parts through multiple first output sockets and respectively inserted into the circuit input sockets of the circuit board. The single input in the first hub board is converted into multiple outputs through the transit wire, realizing one-to-many connection. The layout of the line is clearer, and there will be no disorder. During subsequent maintenance, it can be clearly checked. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 A schematic diagram of the chassis structure.
[0020] Figure 2 It is a structural diagram of the branch line structure.
[0021] Figure 3 This is a schematic diagram of the line-dividing structure from another perspective.
[0022] Figure 4 Schematic diagram of two types of relay wires.
[0023] Reference numerals include:
[0024] 1-Chassis,
[0025] 11-transfer installation plate, 12-first collection board, 13-circuit board, 14-first installation hole,
[0026] 15-second mounting hole, 16-third mounting hole, 17-fourth mounting hole,
[0027] 2-Transfer wires,
[0028] 21-first input socket, 22-first output socket, 23-circuit input socket,
[0029] 24-first male socket, 25-second male socket, 26-first female socket,
[0030] 27- Second female socket. DETAILED DESCRIPTION
[0031] The utility model is described in detail below with reference to the accompanying drawings.
[0032] like Figure 1-4As shown, the wiring structure of the storage medium device includes a chassis 1, the chassis 1 is provided with a transit installation plate 11, the transit installation plate 11 is arranged with a plurality of first hub boards 12, the first hub board 12 is installed with a first input socket 21 and a plurality of first output sockets 22, the first output sockets 22 are signal-connected with the first input sockets 21; the chassis 1 is also arranged with a circuit board 13 cooperating with the first hub board 12, the circuit board 13 is installed with a circuit input socket 23 cooperating with the first output socket 22, and a transit wire 2 is connected between the first output socket 22 and the circuit input socket 23.
[0033] The line that needs to be divided into multiple parts can be first inserted into the first output socket 22 of the first hub board 12, and then the line can be divided into multiple parts through multiple first output sockets 22 and respectively inserted into the circuit input sockets 23 of the circuit board 13. The single input in the first hub board 12 is converted into multiple outputs through the transit wire 2, realizing one-to-many connection. The layout of the line is clearer and there will be no disorder. During subsequent maintenance, it can be clearly checked.
[0034] In one embodiment, the first input socket 21, the first output socket 22 and the circuit input socket 23 are all female sockets. A first male socket 24 connected to the first output socket 22 is installed at one end of the transfer wire 2, and a second male socket 25 connected to the circuit input socket 23 is installed at the other end. In this embodiment, after the line that needs to be divided into more than one branch is inserted into the first input socket 21 through the female head, the line is divided into more than one branch through the transfer wire 2 and respectively inserted into the circuit input socket 23 of the circuit board 13; the first male socket 24 at one end of the transfer wire 2 is inserted into the first output socket 22, and the second male socket 25 at the other end of the transfer wire 2 is inserted into the circuit input socket 23 of the circuit board 13, so as to realize pluggable connection; when the wire is damaged, it is convenient for inspection, maintenance and replacement.
[0035] In one embodiment, the first input socket 21, the first output socket 22 and the circuit input socket 23 are all male sockets; a first female socket 26 connected to the first output socket 22 is installed at one end of the transfer wire 2, and a second female socket 27 connected to the circuit input socket 23 is installed at the other end. In this embodiment, after the line that needs to be divided into more than one point is inserted into the first input socket 21 through the male plug, the line is divided into more than one point through the transfer wire 2 and respectively inserted into the circuit input socket 23 of the circuit board 13; the first female socket 26 at one end of the transfer wire 2 is inserted into the first output socket 22, and the second female socket 27 at the other end of the transfer wire 2 is inserted into the circuit input socket 23 of the circuit board 13, so as to realize pluggable connection; when the wire is damaged, it is convenient for inspection, maintenance and replacement.
[0036] In one of the embodiments, the order of the first input socket 21, the first output socket 22 and the circuit input socket 23 can be swapped, that is, the output of multiple circuit boards 13 through the circuit input socket 23 is collected to the first output socket 22 of the first hub board 12, and output outwards through the first input socket 21 respectively, thereby realizing the functions of collecting and dividing the lines.
[0037] Preferably, the number of the first input sockets 21 is more than two, and one first input socket 21 is signal-connected to multiple first output sockets 22. Two groups of branching modules can be arranged on a single first hub board 12, and one branching module outputs one group of input lines separately, so that a single first hub board 12 can output multiple inputs to multiple outputs, and the integration is further improved.
[0038] Preferably, the first input socket 21 is located at the top or bottom of the first hub board 12, and the first output socket 22 signal-connected to the first input socket 21 is arranged along the length direction of the first hub board 12, and two adjacent first output sockets 22 are arranged at equal distances; the first output sockets 22 of the same module are aligned, and in the subsequent output branching, the overall appearance is more beautiful and easy to identify, and the first input socket 21 and the first output socket 22 are separately identified for easy subsequent maintenance.
[0039] In addition, the circuit input socket 23 of the circuit board 13 is closely aligned with the first output socket 22, which can reduce the length of the transfer wire 2. When the output is branched, it is further identified to which circuit board 13's circuit input socket 23 the wire connected to the first input socket 21 is connected, which is convenient for subsequent maintenance.
[0040] Furthermore, the transit installation plate 11 is provided with a plurality of first installation holes 14 , the first collection plate 12 is provided with second installation holes 15 matching with the first installation holes 14 , and the first collection plate 12 is fixedly mounted on the transit installation plate 11 through the first installation holes 14 and the second installation holes 15 .
[0041] Furthermore, the transfer mounting plate 11 is provided with a plurality of third mounting holes 16 , the circuit board 13 is provided with fourth mounting holes 17 matching the third mounting holes 16 , and the circuit board 13 is fixedly mounted on the transfer mounting plate 11 through the third mounting holes 16 and the fourth mounting holes 17 .
[0042] In summary, it can be seen that the utility model has the above-mentioned excellent characteristics, which can enhance the performance unprecedented in the prior art and become a product with great practical value.
[0043] The above contents are only preferred embodiments of the present invention. For ordinary technicians in this field, according to the concept of the present invention, there will be changes in the specific implementation methods and application scopes. The contents of this specification should not be understood as limiting the present invention.
Claims
1. A wiring structure for a storage medium device, comprising a chassis, the chassis being provided with a transfer mounting plate, characterized in that: The transfer installation board is arranged with a plurality of first hub boards, the first hub boards are installed with a first input socket and a plurality of first output sockets, and the first output socket is signal-connected with the first input socket; The chassis is also provided with a circuit board matched with the first wiring hub, the circuit board is provided with a circuit input socket matched with the first output socket, and a transfer wire is connected between the first output socket and the circuit input socket.
2. The line splitting structure of the storage medium device according to claim 1, characterized in that: The first input socket, the first output socket and the circuit input socket are all female sockets.
3. The line splitting structure of the storage medium device according to claim 2, characterized in that: One end of the transfer wire is provided with a first male socket connected to the first output socket, and the other end is provided with a second male socket connected to the circuit input socket.
4. The line splitting structure of the storage medium device according to claim 1, characterized in that: The first input socket, the first output socket and the circuit input socket are all male sockets.
5. The line splitting structure of the storage medium device according to claim 4, characterized in that: One end of the transfer wire is equipped with a first female socket connected to the first output socket, and the other end is equipped with a second female socket connected to the circuit input socket.
6. The line splitting structure of the storage medium device according to claim 1, characterized in that: The number of the first input sockets is more than two, and one first input socket is signal-connected to a plurality of first output sockets.
7. The line splitting structure of the storage medium device according to claim 6, characterized in that: The first input socket is located at the top or bottom of the first hub board, the first output socket connected to the first input socket signal is arranged along the length direction of the first hub board, and two adjacent first output sockets are arranged at equal distances.
8. The line splitting structure of the storage medium device according to claim 1, characterized in that: The circuit input socket of the circuit board is closely aligned with the first output socket.
9. The line splitting structure of the storage medium device according to claim 1, characterized in that: The transfer installation plate is provided with a plurality of first installation holes, and the first line collection plate is provided with second installation holes matched with the first installation holes.
10. The line splitting structure of the storage medium device according to claim 9, characterized in that: The transfer mounting plate is provided with a plurality of third mounting holes, and the circuit board is provided with fourth mounting holes matched with the third mounting holes.
Citation Information
Patent Citations
A device for reading records and migrating optical storage media
CN116994613B