A plug-in frame
By incorporating a partition and double-sided countersunk rivets within the insert frame, along with a module backplate and DC output cables, the design solves the problem of low internal space utilization within the insert frame, achieving more efficient space utilization and stability, and simplifying the installation and maintenance process.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- VERTIV CORP
- Filing Date
- 2025-06-09
- Publication Date
- 2026-05-29
Smart Images

Figure CN224306059U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of power supply system technology, and in particular to a socket frame. Background Technology
[0002] The internal structure layout of the current racks on the market is unreasonable, resulting in low utilization of the internal space of the racks and a large space required for the racks. This affects the efficiency of operators in installing the racks in the racks and in maintaining the racks. Utility Model Content
[0003] The purpose of this utility model is to solve the problems of the unreasonable internal structure layout of existing socket frames on the market, which leads to low internal space utilization, large space occupation, and affects the efficiency of operators in installing the socket frames in the cabinet and maintaining the socket frames. The present invention provides a socket frame.
[0004] The technical solution adopted by this utility model to solve its technical problem is: a frame, including a frame body, a module backplate disposed in the frame body, a monitoring backplate, and a DC output cable electrically connected to the module backplate;
[0005] The main body of the insertion frame includes a bottom shell, several insertion frame partitions fixedly connected to the bottom shell, monitoring brackets and a right-side bracket fixed to both sides of the bottom shell, and a top cover assembly for enclosing the main body of the insertion frame. The insertion frame partitions divide the interior of the main body of the insertion frame into several installation spaces for installing rectifier modules. The main body of the insertion frame is also provided with insertion frame springs for snap-fit connection with the cabinet.
[0006] Furthermore, the main body of the insertion frame also includes a tail cover disposed at the end of the bottom shell, the top cover assembly includes a front top cover fixed to the partition plate of the insertion frame and a rear top cover fixed to the tail cover of the module, and protective covers are also provided on the module back plate and the DC output cable.
[0007] Furthermore, the bottom shell and the front top cover are provided with a number of reinforcing ribs, and the insert frame partition is provided with a number of limiting ribs.
[0008] Furthermore, the bottom shell is also provided with several limiting bridges.
[0009] Furthermore, the insert spring includes a limiting piece, a hook disposed on the limiting piece, and a handle formed by bending at the end of the limiting piece, and the limiting piece is provided with a plurality of reinforcing protrusions.
[0010] Furthermore, the module backplane includes a first power connector electrically connected to the rectifier module, several AC input connectors, several solder terminals electrically connected to the first power connector and the DC output cable, and a signal connector electrically connected to the monitoring backplane.
[0011] Furthermore, the module backplane also includes a second power connector that is electrically connected to the monitoring backplane on the monitoring bracket.
[0012] Furthermore, the bottom shell is also provided with a backplate bracket for mounting the monitoring backplate, the monitoring backplate including a ribbon cable connector electrically connected to the signal connector and a monitoring gold finger connector electrically connected to the monitoring module.
[0013] Furthermore, the monitoring backplane also includes a second power connector electrically connected to the second power connector and a PCB board for control.
[0014] Furthermore, the DC output cable includes several OT terminals electrically connected to the soldering terminals, an output gold finger connector electrically connected to the busbar in the cabinet, and a cable for electrically connecting the OT terminals to the output gold finger connector.
[0015] The beneficial effects of the insert frame provided by this utility model are as follows: by using several insert frame partitions to divide the interior of the insert frame body into multiple installation spaces for installing rectifier modules, the space utilization rate within the insert frame body can be effectively improved, reducing the space required by the insert frame; by connecting the bottom shell, insert frame partitions, and top cover assembly into one piece using double-sided countersunk rivets, the stability of the insert frame body can be effectively improved; and the insert frame partitions, monitoring bracket, right bracket, and bottom shell together construct the slot installation space for the rectifier module and monitoring module; furthermore, the right bracket and top cover assembly... The bottom shell is connected by double-sided countersunk rivets, which further improves the overall stability of the frame. In addition, by using the module backplane to realize AC input and DC output and using DC output cables to collect DC power to the busbar of the cabinet, and using the monitoring module to monitor the working status of the components in the frame, the safety and operational stability of the frame can be effectively improved. Furthermore, by using the frame spring clip to snap the frame into place in the cabinet, the ease of installing or removing the frame from the cabinet can be effectively improved, thus improving the maintenance efficiency of the operators. Attached Figure Description
[0016] Figure 1 An exploded view of the insert frame provided by this utility model;
[0017] Figure 2 A schematic diagram of the main body of the insert frame provided in this utility model;
[0018] Figure 3 This is a schematic diagram of the structure of the insert frame spring piece provided by this utility model;
[0019] Figure 4 A schematic diagram of the structure of the module back plate in the insert frame provided by this utility model;
[0020] Figure 5 A schematic diagram of the monitoring backplane in the insert frame provided by this utility model;
[0021] In the picture:
[0022] 100-Insert frame,
[0023] 10-Insertion frame body, 11-Bottom shell, 111-Limiting tie bridge, 12-Insertion frame partition, 121-Limiting rib,
[0024] 13-Monitoring bracket, 14-Right side bracket, 15-Top cover assembly, 151-Front top cover, 152-Rear top cover
[0025] 16-Tail cap, 17-Protective cover, 18-Reinforcing rib, 19-Backplate bracket, 20-Module backplate,
[0026] 21-First power connector, 22-AC input connector, 23-Solder terminal, 24-Signal connector, 25-Second power connector, 26-AC input detection connector, 30-Monitoring backplane.
[0027] 31-Flat cable connector, 32-Gold finger connector, 33-Second power connector, 34-PCB board,
[0028] 40 - DC output cable, 41 - OT terminal, 42 - Output gold finger connector
[0029] 50-Insertion frame spring, 51-Limiting piece, 52-Hook, 53-Handle, 54-Reinforcing convex bulge. Detailed Implementation
[0030] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present utility model and are not intended to limit the present utility model.
[0031] See Figure 1-5The present invention provides a type of insertion frame 100, which includes an insertion frame body 10, a module backplate 20 disposed inside the insertion frame body 10, a monitoring backplate 30, and a DC output cable 40 electrically connected to the module backplate 20. The insertion frame body 10 includes a bottom shell 11, a plurality of insertion frame partitions 12 fixedly connected to the bottom shell 11, a monitoring bracket 13 and a right side bracket 14 fixed to both sides of the bottom shell 11, and a top cover assembly 15 for enclosing the insertion frame body 10. The insertion frame partitions 12 divide the interior of the insertion frame body 10 into a plurality of installation spaces for installing rectifier modules. The insertion frame body 10 is also provided with insertion frame springs 50 for snap-fit connection with the cabinet. The beneficial effects of the insert frame 100 provided by this utility model are as follows: by using several insert frame partitions 12 to divide the interior of the insert frame body 10 into multiple installation spaces for installing rectifier modules, the space utilization rate within the insert frame body 10 can be effectively improved, reducing the space required by the insert frame 100; by connecting the bottom shell 11, the insert frame partitions 12, and the top cover assembly 15 together with double-sided countersunk rivets, the stability of the insert frame body 10 can be effectively improved, and the insert frame partitions 12, the monitoring bracket 13, the right bracket 14, and the bottom shell 11 together construct the slot installation space for the rectifier module and the monitoring module; furthermore, the right bracket and the top cover... The component 15 and the base shell 11 are connected by double-sided countersunk rivets, which further improves the overall stability of the frame 100. In addition, by using the module backplate 20 to realize AC input and DC output and using the DC output cable 40 to collect DC power to the busbar of the cabinet, and by using the monitoring module to monitor the working status of the components inside the frame 100, the safety and operational stability of the frame 100 can be effectively improved. Furthermore, by using the frame spring clip 50 to snap the frame 100 into the cabinet, the convenience of installing or removing the frame 100 from the cabinet can be effectively improved, thus improving the maintenance efficiency of the operators.
[0032] like Figure 1 and Figure 2 As shown, the main body 10 of the insertion frame also includes a tail cover 16 disposed at the end of the bottom shell 11. The top cover assembly 15 includes a front top cover 151 fixed to the partition plate 12 of the insertion frame and a rear top cover 152 fixed to the tail cover 16 of the module. Protective covers 17 are also provided on the module back plate 20 and the DC output cable 40. In the embodiment provided by this utility model, the rear top cover 152 and the tail cover 16 are detachably connected to the bottom shell 11 by means of locking components such as countersunk screws, thereby effectively improving the convenience of maintenance operations for the module back plate 20, the DC output cable 40 and the electronic fuse. The protective cover 17 is fixed to the tail cover 16 and the bottom shell 11 of the insertion frame by means of fixing square wires such as combination screws, thereby effectively improving the stability of the fixing of the protective cover 17 and the overall stability of the insertion frame main body 10.
[0033] In addition, such as Figure 1 and Figure 2 As shown in the embodiment provided by this utility model, a plurality of reinforcing ribs 18 are provided on the bottom shell 11 and the front top cover 151, and a plurality of limiting ribs 121 are provided on the insert frame partition 12. The multiple reinforcing ribs 18 on the bottom shell 11 and the front top cover 151 effectively improve the strength of the bottom shell 11 and the front top cover 151, thereby effectively improving the overall stability of the insert frame body 10 of the insert frame 100. In addition, a plurality of limiting bridges 111 are also provided on the bottom shell 11. The limiting bridges 111 on the bottom shell 11 effectively limit the depth of the rectifier module inserted into the insert frame body 10, thereby effectively preventing the rectifier module from being inserted too deeply, which could lead to direct collision and damage between the male connector of the rectifier module and the first power connector 21 on the module backplate 20, further improving the overall safety of the insert frame 100.
[0034] like Figure 2 and Figure 3 As shown, the insert frame spring 50 provided by this utility model includes a limiting piece 51, a hook 52 disposed on the limiting piece 51, and a handle 53 formed by bending at the end of the limiting piece 51. The limiting piece 51 is provided with several reinforcing protrusions 54. By embedding the hook 52 of the insert frame spring 50 into the slot of the cabinet, the insert frame 100 can be clamped and installed in the cabinet, and the insert frame spring 50 can be positioned in the front-to-back direction within the cabinet. Furthermore, by pulling the handle 53, the ease of removing the insert frame 100 from the cabinet can be effectively improved. In addition, by utilizing the reinforcing protrusions 54 on the limiting piece 51, the overall strength of the insert frame spring 50 can be effectively improved. Furthermore, the insert frame body 10 is also provided with a limiting spring 141 for limiting the vertical positioning of the insert frame 100 within the cabinet, thereby further improving the positioning accuracy of the insert frame 100 within the cabinet.
[0035] like Figure 2 and Figure 4As shown, the module backplane 20 includes a first power connector 21 electrically connected to the rectifier module, several AC input connectors 22, several solder terminals 23 electrically connected to the first power connector 21 and the DC output cable 40, and a signal connector 24 electrically connected to the monitoring backplane 30. AC power flows into the rectifier module through the AC input connectors 22, is converted to DC power by the rectifier module, and then transmitted to the solder terminals 23 via the first power connector 21. The DC power is then fed to the busbar in the cabinet via the DC output cable 40 electrically connected to the solder terminals 23. Data from the monitoring module is transmitted to the monitoring backplane 30 via the signal connectors 24 and then to the monitoring system via the gold finger connectors 32. The monitoring system displays the relevant monitoring data and uploads it to the monitoring system in the cabinet. Furthermore, the module backplane 20 also includes a second power connector 25 electrically connected to the monitoring backplane 30 on the monitoring bracket 13. The DC power converted by the rectifier module is transmitted to the monitoring backplane 30 via the second power connector 25, and the monitoring backplane 30 powers the monitoring module. Furthermore, the module backplane 20 is also equipped with an AC input detection connector 26 to monitor the input status of AC power input and ensure the stability and safety of AC power input.
[0036] like Figure 2 and Figure 5 As shown, the base shell 11 provided by this utility model is also provided with a backplate bracket 19 for mounting the monitoring backplate 30. The monitoring backplate 30 includes a ribbon cable connector 31 electrically connected to the signal connector 24 and a monitoring gold finger connector 32 electrically connected to the monitoring module. The monitoring module is mounted on the base shell 11 via the monitoring bracket 13, and the monitoring backplate 30 is mounted on the left side bending plate of the base shell 11 via the backplate bracket 19, thereby effectively improving the stability of the monitoring module and the monitoring backplate 30 mounted on the base shell 11. The monitoring data of the monitoring module is transmitted to the signal connector 24 of the module backplate 20 via the ribbon cable connector 31, and the monitoring module is electrically connected to the monitoring backplate 30 via the monitoring gold finger connector 32. In addition, the monitoring backplate 30 also includes a second power connector 33 electrically connected to the second power connector 25 and a PCB board 34 for control. The second power connector 25 and the second power connector 33 are electrically connected by wires. The DC power generated by the rectifier module is transmitted to the second power connector 33 of the monitoring backplane 30 through the second power connector 25, and the monitoring module is powered through the second power connector 33. At the same time, the PCB board 34 can effectively improve the effectiveness of the monitoring backplane 30 in monitoring and transmitting the monitoring data of the monitoring module.
[0037] like Figure 1 and Figure 4As shown, in the embodiment provided by this utility model, the DC output cable 40 includes a plurality of OT terminals 41 electrically connected to the soldering terminals 23, an output gold finger connector 42 electrically connected to the busbar in the cabinet, and a cable for electrically connecting the OT terminals 41 and the output gold finger connector 42. After the rectifier module converts the DC power to DC power, it transmits the DC power to the soldering terminals 23 through the first power connector 21, and uses the OT terminals 41 electrically connected to the soldering terminals 23 to output the DC power to the terminals, and then uses the output gold finger connector 42 to combine the DC power to the busbar in the cabinet, thereby effectively improving the effectiveness and stability of the DC output cable 40 in transmitting DC power to the busbar in the cabinet.
[0038] The above are merely preferred embodiments of the present utility model and are 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 type of insert frame, characterized in that, It includes a frame body (10), a module backplate (20) disposed within the frame body (10), a monitoring backplate (30), and a DC output cable (40) electrically connected to the module backplate (20); The main body of the insertion frame (10) includes a bottom shell (11), several insertion frame partitions (12) fixedly connected to the bottom shell (11), monitoring brackets (13) and a right side bracket (14) fixed to both sides of the bottom shell (11), and a top cover assembly (15) for closing the main body of the insertion frame (10). The insertion frame partitions (12) divide the interior of the main body of the insertion frame (10) into several installation spaces for installing rectifier modules. The main body of the insertion frame (10) is also provided with insertion frame springs (50) for snap-fit connection with the cabinet.
2. The insert frame as described in claim 1, characterized in that, The main body of the insert frame (10) also includes a tail cover (16) disposed at the end of the bottom shell (11), the top cover assembly (15) includes a front top cover (151) fixed to the insert frame partition (12) and a rear top cover (152) fixed to the module tail cover (16), and protective covers (17) are also provided on the module back plate (20) and the DC output cable (40).
3. The insert frame as described in claim 2, characterized in that, The bottom shell (11) and the front top cover (151) are provided with a number of reinforcing ribs (18), and the insert frame partition (12) is provided with a number of limiting ribs (121).
4. The insert frame as described in claim 3, characterized in that, The bottom shell (11) is also provided with several limiting bridges (111).
5. A frame as described in claim 1, characterized in that, The insert spring (50) includes a limiting piece (51), a hook (52) disposed on the limiting piece (51), and a handle (53) located at the end of the limiting piece (51) and bent to form a handle. The limiting piece (51) is provided with a plurality of reinforcing protrusions (54).
6. The insert frame as described in claim 1, characterized in that, The module backplane (20) includes a first power connector (21) electrically connected to the rectifier module, a plurality of AC input connectors (22), a plurality of solder terminals (23) electrically connected to the first power connector (21) and DC output cable (40), and a signal connector (24) electrically connected to the monitoring backplane (30).
7. A frame as described in claim 6, characterized in that, The module backplane (20) also includes a second power connector (25) that is electrically connected to the monitoring backplane (30) on the monitoring bracket (13).
8. A frame as described in claim 7, characterized in that, The bottom shell (11) is also provided with a backplate bracket (19) for mounting the monitoring backplate (30). The monitoring backplate (30) includes a ribbon cable connector (31) electrically connected to the signal connector (24) and a monitoring gold finger connector (32) electrically connected to the monitoring module.
9. A frame as described in claim 8, characterized in that, The monitoring backplane (30) also includes a second power connector (33) electrically connected to the second power connector (25) and a PCB board (34).
10. A frame as described in claim 6, characterized in that, The DC output cable (40) includes several OT terminals (41) electrically connected to the soldering terminals (23), an output gold finger connector (42) electrically connected to the busbar in the cabinet, and a cable for electrically connecting the OT terminals (41) to the output gold finger connector (42).