Communication mounting rack facilitating disassembly of communication equipment
The movable bracket mounting structure and locking device solve the problem of inconvenient disassembly and maintenance of communication equipment, enabling rapid installation and disassembly, and improving the flexibility and adaptability of the equipment.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- 杨悦
- Filing Date
- 2025-03-25
- Publication Date
- 2026-04-14
AI Technical Summary
The existing installation structure of communication equipment makes disassembly and maintenance inconvenient, especially in application scenarios with high equipment stacking density, where the disassembly and maintenance of individual devices is more difficult.
The system adopts a movable bracket installation structure. The bracket slides on the upright and is quickly installed and disassembled through a locking device. The bracket is equipped with a sliding sleeve, connecting rod, angle iron, support plate and locking mechanism. The adjustable locking and releasing of the bracket is achieved by using components such as locking pin, ball and spring.
It enables rapid installation and disassembly of communication equipment, improves the flexibility of installation and disassembly, and adapts to the installation requirements of equipment of different specifications.
Smart Images

Figure CN224120914U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of communication equipment technology, specifically a communication mounting bracket that facilitates the disassembly of communication equipment. Background Technology
[0002] Communication equipment mainly includes wired and wireless communication equipment. Wired communication equipment primarily addresses serial communication, professional bus-type communication, industrial Ethernet communication, and conversion between various communication protocols in industrial settings. This includes devices such as routers, switches, and modems. Wireless communication equipment mainly includes wireless access points (APs), wireless bridges, wireless network cards (NICs), wireless surge protectors, and antennas.
[0003] Communication equipment is generally installed in an integrated manner during use, with multiple different devices combined to complete the communication task. In application scenarios with a large amount of information processing, multiple installation mechanisms are also deployed to install different communication devices.
[0004] Currently, the installation of communication equipment generally adopts a bracket-type structure, which fixes the equipment to the bracket with bolts. After the whole system is fixed, it is inconvenient for later maintenance and the disassembly and repair of the equipment is relatively difficult, especially in application scenarios where the equipment is densely stacked, the disassembly, repair and replacement of individual communication equipment is more difficult. Summary of the Invention
[0005] This utility model is a communication mounting bracket that facilitates the disassembly and reassembly of communication equipment. It adopts a movable bracket type mounting structure. When the communication equipment is installed in the bracket, it is supported by the bracket on the one hand, and the relative position of the bracket is locked on the other hand, so as to achieve the effect of quick installation and disassembly.
[0006] The present invention adopts the following technical solution:
[0007] A communication mounting bracket for easy disassembly of communication equipment includes a pole and brackets mounted on the pole. The pole and brackets are provided in two sets that are symmetrical to each other. The communication equipment is installed between the two sets of brackets. The brackets are movable structures that slide up and down on the pole. The brackets are also provided with a locking device that is linked to the communication equipment to limit the position of the brackets on the pole when the communication equipment is installed in the brackets.
[0008] Furthermore, each set of uprights has two symmetrically arranged poles, and the support includes a sliding sleeve on the two uprights and a longitudinally arranged connecting rod connecting the sliding sleeves. The connecting rod is located on the outside of the sliding sleeve. The support slides by sliding the sliding sleeve up and down on the upright.
[0009] The bracket has two sliding sleeves with support structures corresponding to the bottom surface of the communication device. The rear support structure is an L-shaped angle iron set inside the sliding sleeve, and the front support structure is a support plate set inside the bottom of the sliding sleeve. The angle iron corresponds to the two corners at the bottom of the communication device, and the support plate corresponds to the bottom of the front of the communication device.
[0010] The angle iron is hinged to the inner front part of the sliding sleeve, and the hinge position between the angle iron and the sliding sleeve is located in the middle of the side of the angle iron; a locking pin is provided on the angle iron behind the hinge position, and a through hole corresponding to the locking pin is provided on the corresponding sliding sleeve. The upright is provided with evenly distributed slots. The locking pin passes through the through hole on the sliding sleeve and is inserted into the slot on the upright to limit the position of the sliding sleeve.
[0011] Furthermore, a support spring is provided between the angle iron and the sliding sleeve to support the angle iron, so that the locking pin on the angle iron disengages from the slot on the upright.
[0012] The front outer side of the sliding sleeve corresponding to the support plate is provided with an extension plate and a hinge plate hinged to the end of the extension plate. The end of the extension plate is provided with a forward-extending bevel plate, and the hinge plate is hinged to the end of the bevel plate. The connecting plates extending outward on both sides of the front of the communication equipment correspond to the extension plate and the hinge plate. The opening and closing of the hinge plate realizes the release and fixation of the connecting plate. The lower end of the hinge plate is provided with a locking plate extending inward. The end of the locking plate is provided with inclined locking teeth. When the hinge plate rotates inward, the locking plate passes through the bottom of the support plate. When the hinge plate and the extension plate are parallel, the locking teeth engage with the rear of the support plate to fix the hinge plate.
[0013] Furthermore, the outer side of the sliding sleeve corresponding to the support plate is provided with a ball groove, and a ball is provided in the ball groove. The ball groove extends to the side wall of the sliding sleeve. The sliding sleeve outside the ball groove is provided with a transverse sliding groove, and a sliding plate is provided in the sliding groove. The rear end of the sliding plate is supported by a support spring, and the front end extends to the outside of the extension plate. The sliding plate is provided with a strip hole corresponding to the ball at the position corresponding to the ball groove. When the front end of the sliding plate is compressed back into the extension plate, the strip hole and the ball groove are not completely aligned. The sliding plate limits the ball so that it is partially pressed into the slot on the upright, thereby locking the sliding sleeve on the upright. When the front end of the sliding plate is released, under the support of the support spring, the sliding plate slides forward a certain distance, and the strip hole completely aligns with the ball. The outer side of the ball loses its limit and also loses its locking to the slot. The sliding sleeve slides up and down on the upright.
[0014] This utility model has the following beneficial effects:
[0015] The device has a simple overall structure. Through the design of the locking structure between the sliding sleeve and the upright, the communication equipment can be locked upon installation and released upon disassembly, thus improving the flexibility of assembly and disassembly.
[0016] Meanwhile, the structure allows the position of the support to be adjusted on the pole, enabling the device to accommodate communication equipment of different specifications. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the present invention.
[0018] Figure 2 This is a schematic diagram of a single-sided upright and support.
[0019] Figure 3 This is a schematic diagram of angle iron.
[0020] Figure 4 for Figure 3 A diagram from another angle.
[0021] Figure 5 This is a schematic diagram of the sliding sleeve corresponding to the support plate.
[0022] Figure 6 for Figure 5 Assembly diagram. Detailed Implementation
[0023] The present invention will be further described below with reference to the accompanying drawings and embodiments. It should be understood that the following embodiments are only one or more manifestations of the present invention and are not a complete limitation on the invention content recorded in this application. Any improvements made based on the invention content or technical solution recorded in this application that are known to those skilled in the art should fall within the scope of protection claimed in this application.
[0024] Furthermore, the descriptions of directions such as up, down, left, right, front, and back presented in the specific embodiments are merely for the purpose of describing the technical solutions and are not absolute limitations unless otherwise stated.
[0025] like Figures 1-6 The diagram shows a communication mounting bracket for easy disassembly of communication equipment. It includes a pole 1 and a bracket 2 mounted on the pole 1. The pole 1 and the bracket 2 are provided in two sets that are symmetrical to each other. The communication equipment 0 is installed between the two sets of brackets 2. The bracket 2 is a movable structure that slides up and down on the pole 1. The bracket 2 is also provided with a locking device that is linked with the communication equipment 0. When the communication equipment 0 is installed in the bracket 2, the position of the bracket 2 on the pole 1 is limited.
[0026] Furthermore, each set of uprights 1 has two symmetrically arranged uprights. The support 2 includes a sliding sleeve 201 on the two uprights 1 and a longitudinally arranged connecting rod 202 connecting the sliding sleeve 201. The connecting rod 202 is located on the outside of the sliding sleeve 201. The support 2 slides by sliding the sliding sleeve 201 up and down on the uprights 1.
[0027] The two sliding sleeves 201 on the bracket 2 are respectively provided with support structures corresponding to the bottom surface of the communication device 0. The rear support structure is an L-shaped angle iron 203 set inside the sliding sleeve 201, and the front support structure is a support plate 204 set inside the bottom of the sliding sleeve 201. The angle iron 203 corresponds to the two corners of the lower rear part of the communication device 0, and the support plate 204 corresponds to the lower front part of the communication device 0.
[0028] The angle iron 203 is hinged to the inner front part of the sliding sleeve 201. The hinge position between the angle iron 203 and the sliding sleeve 201 is located in the middle of the side of the angle iron 203. A locking pin 2031 is provided on the angle iron 203 behind the hinge position. The corresponding sliding sleeve 201 is provided with a through hole 2032 corresponding to the locking pin 2031. The upright 1 is provided with evenly distributed slots 101. The locking pin 2031 passes through the through hole 2032 on the sliding sleeve 201 and is inserted into the slot 101 on the upright 1 to limit the position of the sliding sleeve 201.
[0029] Furthermore, a first support spring 205 is provided between the angle iron 203 and the sliding sleeve 201 to support it. The first support spring 205 supports the angle iron 203, so that the locking pin 2031 on the angle iron 203 disengages from the slot 101 on the upright 1.
[0030] The front outer side of the sliding sleeve 201 corresponding to the support plate 204 is provided with an extension plate 2041 and a hinge plate 2042 hinged to the end of the extension plate 2041. The end of the extension plate 2041 is provided with a forward-extending bend plate 2043, and the hinge plate 2042 is hinged to the end of the bend plate 2043. The connecting plates extending outward on both sides of the front of the communication device 0 correspond to the extension plate 2041 and the hinge plate 2042. The opening and closing of the hinge plate 2042 realizes the release and fixation of the connecting plate. The lower end of the hinge plate 2042 is provided with a locking plate 2044 extending inward. The end of the locking plate 2044 is provided with an inclined locking tooth 2045. When the hinge plate 2042 rotates inward, the locking plate 2044 passes through the bottom of the support plate 204. When the hinge plate 2042 and the extension plate 2041 are parallel, the locking tooth 2045 engages with the rear of the support plate 204 to fix the hinge plate 2042.
[0031] Furthermore, the outer side of the sliding sleeve 201 corresponding to the support plate 204 is provided with a ball groove 2046, and a ball 207 is provided in the ball groove 2046. The ball groove 2046 extends to the side wall of the sliding sleeve 201. A transverse sliding groove 2047 is provided on the sliding sleeve 201 outside the ball groove 2046. A sliding plate 2048 is provided in the sliding groove 2047. The rear end of the sliding plate 2048 is supported by a second support spring 206, and the front end extends to the outside of the extension plate 2041. A strip hole 2049 corresponding to the ball is provided on the sliding plate 2048 at a position corresponding to the ball groove 2046. When the front end of 2048 is compressed back into the extension plate 2041, the strip hole 2049 and the ball groove 2046 do not completely correspond. The slide plate 2048 limits the ball 207 so that it is partially pressed into the slot 101 on the upright 1, thereby locking the slide sleeve 201 on the upright 1. When the front end of the slide plate 2048 is released, under the support of the second support spring 206, the slide plate 2048 slides forward a certain distance, and the strip hole 2049 completely corresponds to the ball 207. The outer side of the ball 207 loses its limit and also loses its locking to the slot 101. The slide sleeve 201 slides up and down on the upright 1.
[0032] When using this device, the upright is installed at the location where the communication equipment needs to be assembled, which can be a communication cabinet or other facility. Then, the bracket is raised to a suitable height, and the communication equipment is inserted from the front. The rear of the communication equipment is supported by an angle iron, allowing the locking pin to pass through the through hole on the sliding sleeve and insert into the slot on the upright, thus limiting the rear sliding sleeve. At this time, the mounting plates on both sides of the front panel of the communication equipment align with the extension rod on the front sliding sleeve, and the sliding plate extending from the front of the extension plate is pushed backward. As the sliding plate moves backward, it supports the ball bearings, causing the ball bearings to engage with the slot from the outside of the upright, thus limiting the front sliding sleeve. Then, the hinge plate is closed, and the locking teeth on the locking plate engage with the rear of the support plate. The hinge plate blocks the front of the communication equipment, preventing it from sliding back and forth.
[0033] When disassembling or removing the device, engage the locking teeth to open the locking plate and hinge plate. Then, pull the communication device outwards. The sliding plate corresponding to the front sliding sleeve extends forward under the action of the second support spring. At this time, the ball bearings align with the slotted hole, the tail end loses its limiting function, and the front sliding sleeve also loses its limiting function. Simultaneously, the tail end of the communication device disengages from the angle iron. The angle iron, now unsupported by the communication device, is lifted along the hinge point under the action of the first support spring, causing the locking pin to disengage from the slot and through hole, releasing the rear sliding sleeve. When the communication device is not inserted, the angle iron is tilted, with a wider front and narrower back, which is advantageous for inserting the communication device and prevents it from hitting the front end of the angle iron.
Claims
1. A communication mounting bracket for easy disassembly of communication equipment, characterized in that: It includes a pole and a bracket mounted on the pole. The pole and the bracket are provided in two sets that are symmetrical to each other. The communication equipment is installed between the two sets of brackets. The bracket is a movable structure that slides up and down on the pole. The bracket is also provided with a locking device that is linked to the communication equipment. When the communication equipment is installed in the bracket, the position of the bracket on the pole is limited.
2. The communication mounting bracket for convenient disassembly of communication equipment according to claim 1, characterized in that: Each set of uprights has two symmetrical uprights. The support includes a sliding sleeve on the two uprights and a longitudinally arranged connecting rod connecting the sliding sleeve. The connecting rod is located on the outside of the sliding sleeve. The support slides by sliding the sliding sleeve up and down on the upright.
3. The communication mounting bracket for convenient disassembly of communication equipment according to claim 2, characterized in that: The bracket has two sliding sleeves with support structures corresponding to the bottom surface of the communication device. The rear support structure is an L-shaped angle iron set inside the sliding sleeve, and the front support structure is a support plate set inside the bottom of the sliding sleeve. The angle iron corresponds to the two corners at the bottom of the communication device, and the support plate corresponds to the bottom of the front of the communication device.
4. The communication mounting bracket for convenient disassembly of communication equipment according to claim 3, characterized in that: The angle iron is hinged to the inner front part of the sliding sleeve, and the hinge position between the angle iron and the sliding sleeve is located in the middle of the side of the angle iron; a locking pin is provided on the angle iron behind the hinge position, and a through hole corresponding to the locking pin is provided on the corresponding sliding sleeve. The upright is provided with evenly distributed slots. The locking pin passes through the through hole on the sliding sleeve and is inserted into the slot on the upright to limit the position of the sliding sleeve.
5. A communication mounting bracket for convenient disassembly of communication equipment according to claim 4, characterized in that: A support spring is also provided between the angle iron and the sliding sleeve to support the angle iron, so that the locking pin on the angle iron disengages from the slot on the upright.
6. A communication mounting bracket for convenient disassembly of communication equipment according to claim 5, characterized in that: The front outer side of the sliding sleeve corresponding to the support plate is provided with an extension plate and a hinge plate hinged to the end of the extension plate. The end of the extension plate is provided with a forward-extending bevel plate, and the hinge plate is hinged to the end of the bevel plate. The connecting plates extending outward on both sides of the front of the communication equipment correspond to the extension plate and the hinge plate. The opening and closing of the hinge plate realizes the release and fixation of the connecting plate. The lower end of the hinge plate is provided with a locking plate extending inward. The end of the locking plate is provided with inclined locking teeth. When the hinge plate rotates inward, the locking plate passes through the bottom of the support plate. When the hinge plate and the extension plate are parallel, the locking teeth engage with the rear of the support plate to fix the hinge plate.
7. A communication mounting bracket for convenient disassembly of communication equipment according to claim 6, characterized in that: The outer side of the sliding sleeve corresponding to the support plate is provided with a ball groove, and a ball is provided in the ball groove. The ball groove extends to the side wall of the sliding sleeve. The sliding sleeve outside the ball groove is provided with a transverse sliding groove, and a sliding plate is provided in the sliding groove. The rear end of the sliding plate is supported by a support spring, and the front end extends to the outside of the extension plate. The sliding plate is provided with a strip hole corresponding to the ball at the position corresponding to the ball groove. When the front end of the sliding plate is compressed back into the extension plate, the strip hole and the ball groove are not completely aligned. The sliding plate limits the ball so that it is partially pressed into the slot on the upright, thereby locking the sliding sleeve on the upright. When the front end of the sliding plate is released, under the support of the support spring, the sliding plate slides forward a certain distance, and the strip hole completely aligns with the ball. The outer side of the ball loses its limit and also loses its locking to the slot. The sliding sleeve slides up and down on the upright.