Rack for light transmission equipment
By designing an adjustable support frame for optical transmission equipment, the problem of traditional racks being unable to be adjusted is solved, achieving stable support for the equipment and efficient utilization of network resources.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- LINHUAN ZHONGLI POWER GENERATION
- Filing Date
- 2025-06-24
- Publication Date
- 2026-05-15
AI Technical Summary
Traditional communication racks cannot be adjusted in size and cannot adapt to different data center environments, resulting in unstable placement of optical transmission equipment and easy damage.
A frame for optical transmission equipment was designed, which adopts adjustable support legs, a lower balancing mechanism and a top support mechanism. The support legs rotate to support the locking bars, and the lower balancing mechanism and the top support mechanism provide synchronous support and limit fixation to ensure that the equipment is placed stably.
It provides stable support for optical transmission equipment, preventing equipment from falling and being damaged, improving network resource utilization and reducing management and maintenance costs.
Smart Images

Figure CN224245820U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of communication transmission technology, and in particular to a rack for an optical transmission device. Background Technology
[0002] When installing communication equipment, communication racks are often needed. The purpose of communication racks is to protect the communication equipment and prevent it from being damaged by external forces.
[0003] Communication equipment includes wired and wireless communication devices used in industrial control environments. Wired communication equipment mainly addresses serial communication, professional bus-type communication, industrial Ethernet communication, and conversion between various communication protocols in industrial settings. Wireless communication equipment primarily includes wireless access points (APs), wireless bridges, wireless network cards (NICs), wireless surge protectors, and antennas. Transmission equipment, as a fundamental component of commonly used communication equipment, requires racks for support and placement. Small racks are also needed in computer rooms to house communication transmission equipment. However, the size of the racks varies depending on the computer room environment, and traditional racks cannot be adjusted. Therefore, this application discloses a rack for optical transmission equipment. Utility Model Content
[0004] The purpose of this invention is to address existing problems by providing a rack for optical transmission equipment.
[0005] This utility model is achieved through the following technical solution: a frame for a light transmission device, including a frame, with adjustable support legs vertically installed at the lower corner of the frame, the lower ends of the support legs being symmetrically connected to the two sides of the inner bottom of the frame via hinge seats, the upper ends of the support legs being hinged to the lower surface of the clip, the middle of the lower surface of the clip being connected to the end sleeve rod of the lower balance mechanism, the two sides of the inner top of the frame being symmetrically provided with corner clips, the corner clips being connected to the tube seat of the top support mechanism, the middle of the seat rod of the top support mechanism being fitted with a seat sleeve, and the seat sleeve being fitted to both sides of the balance rod.
[0006] As a further improvement to the above solution, the lower balancing mechanism includes an end sleeve rod, the outer end of which is hinged to the middle of the lower surface of the clip, the inner end of which is fitted with an adjusting rod, a spring is fitted on the adjusting rod, a seat block is connected between the inner ends of the adjusting rod, the upper end of the inner rod is connected below the seat block, the inner rod is fitted inside the bottom tube, the bottom tube is vertically connected to the frame, and a second spring is fitted on the inner rod.
[0007] The optical transmission device is placed on the clips. The two clips are subjected to the gravity of the optical transmission device. The sides of the clips are locked onto the side wall of the optical transmission device. The bottom of the clips is used to support the optical transmission device. The gravity acts on the adjusting rod and spring one, causing spring one to be compressed and shortened. The adjusting rod retracts into the end sleeve rod. In addition, the inner rod moves down into the bottom tube through the seat block. Spring two supports the gravity, ensuring that the two clips stably support the optical transmission device.
[0008] As a further improvement to the above solution, the top support mechanism includes a seat rod, with both ends of the seat rod fitted onto tube seats. A rod seat is fitted onto the seat rod at the inner end of the tube seats. The lower end of the slide rod is connected to the rod seat. A spring, a sleeve, and a rotating column are sequentially fitted onto the slide rod. A pull handle is connected to the upper end of the slide rod. The rotating column is rotatably connected to the inner side of the support plate. The support plate is symmetrically connected to the top side of the frame. Pull rods are connected between the rotating columns.
[0009] Pulling the handle outward causes the slide rod to move outward, and at the same time, the spring three is shortened by the external force. The slide rod drives the seat rod to move through the rod seat, so that the corner clamp moves with the tube seat to increase the gap between the corner clamp and the clamp strip, so as to facilitate the placement of the light transmission equipment. When the handle is released, the slide rod is pushed downward by the force of the spring three, and drives the seat rod, corner clamp and other related structural components to move downward.
[0010] As a further improvement to the above solution, the adjustable support foot includes a pad, the lower end of the support tube is vertically connected to the pad, the upper end of the support tube is inserted into the support rod, the upper end of the support rod is connected to the lower corner of the frame, and the support tube is threaded with a bolt.
[0011] The extension length of the support rod inserted into the support tube is limited and fixed by bolts, which is used to adjust the height of the support feet, prevent the frame from wobbling due to instability, and ensure that the frame can be stably supported even on uneven ground.
[0012] This integrated information transmission network combines multiplexing, line transmission, and switching functions into one, and is operated by a unified network management system. It enables effective network management, real-time service monitoring, and dynamic network maintenance, greatly improving the utilization rate of network resources while reducing management and maintenance costs.
[0013] Compared with the prior art, this utility model has the following advantages: it has a simple structure, reasonable design, and novel and unique concept. By rotating the support legs to support the clips, and using the lower balancing mechanism to balance the support clips, the movement of the clips is synchronized, so that the two symmetrical clips can stably support the light transmission device. In addition, the corner clips supported by the top support mechanism limit and fix the light transmission device, ensuring that the light transmission device is stably placed in the frame and preventing the light transmission device from falling and being damaged. Attached Figure Description
[0014] Figure 1 This is a schematic diagram of the structure of this utility model.
[0015] Figure 2 This is a schematic diagram of the lower balancing mechanism.
[0016] Figure 3 This is a schematic diagram of the supporting mechanism.
[0017] Figure 4 This is a schematic diagram of the adjustable support legs. Detailed Implementation
[0018] The present invention will be further described below with reference to the accompanying drawings.
[0019] like Figures 1 to 4 As shown, a frame for a light transmission device includes a frame 1. Adjustable support legs 5 are vertically installed at the lower corner of the frame 1. The lower ends of support legs 7 are symmetrically connected to the inner bottom sides of the frame 1 via hinge seats. The upper ends of support legs 7 are hinged to the lower surface of a retaining strip 2. The lower surface of the retaining strip 2 is connected to the end sleeve rod 81 of a lower balancing mechanism 8. Corner clips 6 are symmetrically arranged on both sides of the inner top of the frame 1. The corner clips 6 are connected to the tube seat 30 of the top support mechanism 3. The seat rod 39 of the top support mechanism 3 is fitted with a seat sleeve 5 in the middle. The seat sleeve 5 is fitted onto both sides of the balance rod 4.
[0020] As a further improvement to the above solution, the lower balancing mechanism 8 includes an end sleeve rod 81, the outer end of which is hinged to the middle of the lower surface of the clip 2, the inner end of which is fitted with an adjusting rod 82, a spring 83 is fitted on the adjusting rod 82, a seat block 84 is connected between the inner ends of the adjusting rod 82, the upper end of an inner rod 85 is connected below the seat block 84, the inner rod 85 is fitted inside the bottom tube 86, the bottom tube 86 is vertically connected to the frame 1, and a spring 87 is fitted on the inner rod 85.
[0021] The optical transmission device is placed on the clips 2. The two clips 2 are subjected to the gravity of the optical transmission device. The sides of the clips 2 are locked onto the side wall of the optical transmission device. The bottom surface of the clips 2 is used to support the optical transmission device. The gravity acts on the adjusting rod 82 and the first spring 83, causing the first spring 83 to be compressed and shortened. The adjusting rod 82 retracts into the end sleeve rod 81. In addition, the inner rod 85 is moved down into the bottom tube 86 through the seat block 84. The second spring 87 supports the gravity, ensuring the stable support of the two clips 2 for the optical transmission device.
[0022] As a further improvement to the above solution, the top support mechanism 3 includes a seat rod 39, with both ends of the seat rod 39 fitted onto tube seats 30. A rod seat 38 is fitted onto the seat rod 39 at the inner end of the tube seat 30. The lower end of the slide rod 34 is connected to the rod seat 38. A spring 36, a sleeve 35, and a rotating column 32 are sequentially fitted onto the slide rod 34. A pull handle 37 is connected to the upper end of the slide rod 34. The rotating column 32 is rotatably connected to the inner side of the support plate 31. The support plate 31 is symmetrically connected to the top side of the frame 1. A pull rod 33 is connected between the rotating columns 32.
[0023] Pulling the handle 37 outward causes the slide bar 34 to move outward. At the same time, the spring 36 is shortened by the external force. The slide bar 34 drives the seat bar 39 to move through the rod seat 38, so that the angle clip 6 moves with the tube seat 30 to increase the gap between the angle clip 6 and the clip 2, so as to facilitate the placement of the light transmission equipment. When the handle 37 is released, the slide bar 34 is pushed downward by the force of the spring 36, and drives the seat bar 39, angle clip 6 and other related structural components to move downward.
[0024] As a further improvement to the above solution, the adjustable support foot 5 includes a pad 51, the lower end of the support tube 52 is vertically connected to the pad 51, the upper end of the support tube 52 is inserted into the support rod 53, the upper end of the support rod 53 is connected to the lower corner of the frame 1, and the support tube 52 is threaded with a bolt 54.
[0025] Bolt 54 is used to limit and fix the extension length of the support rod 53 inserted into the support tube 52, so as to adjust the height of the support leg 5, avoid the unstable swaying of the frame 1, and ensure that the frame 1 can be stably supported even on uneven ground.
[0026] This integrated information transmission network combines multiplexing, line transmission, and switching functions into one, and is operated by a unified network management system. It enables effective network management, real-time service monitoring, and dynamic network maintenance, greatly improving the utilization rate of network resources while reducing management and maintenance costs.
[0027] Working principle of a rack for optical fiber transmission equipment:
[0028] The optical transmission device is placed on the clip 2. The two clips 2 are subjected to the gravity of the optical transmission device. The sides of the clips 2 are clamped to the side wall of the optical transmission device. The bottom surface of the clips 2 is used to support the optical transmission device. The gravity acts on the adjusting rod 82 and the first spring 83, causing the first spring 83 to be compressed and shortened. The adjusting rod 82 retracts into the end sleeve rod 81. In addition, the inner rod 85 is moved down into the bottom tube 86 through the seat block 84. The second spring 87 supports the gravity and ensures the stable support of the two clips 2 for the optical transmission device.
[0029] Pulling the handle 37 outward causes the slide bar 34 to move outward. At the same time, the spring 36 is shortened by the external force. The slide bar 34 drives the seat bar 39 to move through the rod seat 38, so that the corner clip 6 moves with the tube seat 30 to increase the gap between the corner clip 6 and the clip 2, so as to facilitate the placement of the light transmission equipment. When the handle 37 is released, the slide bar 34 is pushed downward by the force of the spring 36, and drives the seat bar 39, corner clip 6 and other related structural components to move downward.
[0030] In addition, the balance bar 4 ensures that the corner clips 6 on both sides move synchronously, so that the corner clips 6 simultaneously lock and release the light transmission equipment.
[0031] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.
Claims
1. A frame for an optical transmission device, comprising a frame, wherein adjustable support legs are vertically mounted at the lower corners of the frame, characterized in that, The bottom sides of the frame are symmetrically connected to the lower ends of the support legs via hinges. The upper ends of the support legs are hinged to the lower surface of the clip. The lower surface of the clip is connected to the end sleeve rod of the lower balance mechanism in the middle. Corner clips are symmetrically arranged on both sides of the top of the frame. The corner clips are connected to the tube seat of the top support mechanism. The seat rod of the top support mechanism is fitted with a seat sleeve in the middle. The seat sleeve is fitted onto both sides of the balance rod.
2. The rack for an optical transmission device according to claim 1, characterized in that, The lower balancing mechanism includes an end sleeve rod, the outer end of which is hinged to the middle of the lower surface of the clip, and an adjusting rod inserted into the inner end of the end sleeve rod. A spring is mounted on the adjusting rod, and a seat block is connected between the inner ends of the adjusting rod. The upper end of the inner rod is connected below the seat block. The inner rod is fitted inside the bottom tube, which is vertically connected to the frame. A second spring is mounted on the inner rod.
3. The rack for an optical transmission device according to claim 1, characterized in that, The top support mechanism includes a seat rod, with tube seats fitted at both ends of the seat rod. A rod seat is fitted on the seat rod at the inner end of the tube seat. The lower end of a slide rod is connected to the rod seat. A spring, a sleeve, and a rotating column are sequentially fitted on the slide rod. A pull handle is connected to the upper end of the slide rod. The rotating column is rotatably connected to the inner side of the support plate. The support plate is symmetrically connected to the top side of the frame. Pull rods are connected between the rotating columns.