Integrated machine frame and network cabinet
By designing an integrated chassis and retractable partitions in the cabinet, the problems of low integration of ONU equipment and scattered wiring are solved, enabling centralized deployment and efficient maintenance of equipment and reducing safety hazards.
Patent Information
- Application Number
- CN202520166012.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-23
- Publication Date
- 2026-01-09
- Estimated Expiration
- 2035-01-23
AI Technical Summary
In existing technologies, installing ONU devices in a cabinet results in low device integration, dispersed wiring which increases the difficulty of management and maintenance, and poses security risks.
Design an integrated chassis comprising a chassis body, multiple slots, and retractable partitions for centralized placement of communication equipment, with honeycomb holes provided in the chassis body and partitions to facilitate heat dissipation.
It improves space utilization, reduces wiring clutter, simplifies equipment maintenance, reduces signal interference and failure risks, and enhances equipment safety and operational efficiency.
Smart Images

Figure CN223786335U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of network cabinet technology, and in particular to an integrated frame and a network cabinet. Background Technology
[0002] With the continuous advancement of technology, people's demands for networks are constantly increasing, and various customer organizations have higher and higher requirements for network quality and performance. In order to meet the needs of customer organizations, telecommunications operators usually need to install multiple ONU (Optical Network Unit) devices in the racks of customer organization's computer room. The main function of ONU devices is to provide direct or remote user-side interfaces for optical access networks.
[0003] If a customer's server room has a small rack or a concentrated installation of ONU devices, a large number of ONU devices will result in low equipment integration, not only occupying a lot of valuable server room space, but also causing serious space congestion. Furthermore, the scattered placement of cables inside the rack will make the rack interior messy, which not only increases the difficulty of management and maintenance, making equipment inspection and troubleshooting difficult, but also poses potential safety hazards, such as signal interference and failure risks. Utility Model Content
[0004] This utility model was developed to at least partially address the technical problems of low equipment integration, dispersed wiring increasing management and maintenance difficulties, and safety hazards associated with ONU devices installed in cabinets in the existing technology.
[0005] According to one aspect of the present invention, an integrated frame is provided, comprising: a frame body, multiple sets of slots and multiple partitions; each set of slots includes an upper slot located at the top of the frame body and a lower slot located at the bottom of the frame body, and the upper slot and the lower slot are disposed opposite to each other; each partition corresponds to a set of slots and is slidably connected to the corresponding set of slots; the surface of each partition is detachably connected to at least one communication device.
[0006] Optionally, the frame body includes a top plate, a bottom plate, a first side plate, and a second side plate; the two sides of the top plate are respectively connected to the top of the first side plate and the top of the second side plate, and the two sides of the bottom plate are respectively connected to the bottom of the first side plate and the bottom of the second side plate; at least one of the top plate, the bottom plate, the first side plate, and the second side plate has a plurality of honeycomb holes arranged in an array.
[0007] Optionally, the chassis body further includes a front frame; the front frame is connected to the front of the rectangular frame formed by the top plate, the bottom plate, the first side plate, and the second side plate; the front frame extends outward from one side corresponding to the first side plate to form a first extension, and the front frame extends outward from one side corresponding to the second side plate to form a second extension; the first extension has a plurality of first through holes from top to bottom, and the second extension has a plurality of second through holes from top to bottom; the chassis body is installed in the network cabinet using screws through the plurality of first through holes and the plurality of second through holes.
[0008] Optionally, the integrated frame also includes a front door panel; one end of the front door panel is rotatably connected to the bottom front end of the frame body, and the other end of the front door panel is detachably connected to the top front end of the frame body.
[0009] Optionally, the other end of the front door panel is magnetically connected to the top front end of the frame body; and / or, the front door panel has a plurality of honeycomb holes arranged in an array; and / or, a handle is provided on the front of the front door panel near the top of the frame body.
[0010] Optionally, the partition includes a partition body; each communication device is detachably connected to the partition body via a first mounting member and a second mounting member.
[0011] Optionally, the back of the communication device is provided with a first mounting slot and a second mounting slot; for each communication device, the partition body is provided with a round hole and an elongated hole, the first mounting component includes a first screw, which is installed in the round hole, the second mounting component includes a second screw, a spring and a washer, the second screw is installed in the elongated hole, the washer is located between the elongated hole and the head of the second screw, and the spring is fitted on the shank of the second screw and located between the washer and the head of the second screw; the communication device is suspended on the head of the first screw through the first mounting slot and on the head of the second screw through the second mounting slot.
[0012] Optionally, the partition body has multiple honeycomb holes arranged in an array.
[0013] Optionally, the partition further includes a side plate; the side plate is connected to the side of the partition body, the top of the side plate extends upward to form an upper edge, and the bottom of the side plate extends downward to form a lower edge; the upper edge is provided with a third through hole, and the lower edge is provided with a fourth through hole; the partition is installed on the top front end and bottom front end of the frame body by screws through the third through hole and the fourth through hole.
[0014] According to another aspect of the present invention, a network cabinet is provided, comprising: a hollow cabinet body and at least one aforementioned integrated cabinet frame; the cabinet body is divided into multiple areas, and each integrated cabinet is installed in a corresponding area within the cabinet body.
[0015] The technical solution provided by this utility model can include the following beneficial effects:
[0016] The integrated frame described in this utility model, by setting multiple sets of slots and multiple pull-out partitions inside the frame body, and installing communication equipment on the surface of the partitions, realizes the centralized placement of communication equipment, which not only increases the number of communication equipment that can be placed, but also improves the space utilization rate, reduces the phenomenon of messy wiring, facilitates the later maintenance of equipment, and the installation of communication equipment on the spaced partitions is conducive to heat dissipation, reducing signal interference and failure risk.
[0017] Other features and advantages of this invention will be set forth in the description which follows, and will be apparent in part from the description, or may be learned by practicing the invention. The objects and other advantages of this invention may be realized and obtained by means of the structures particularly pointed out in the description, claims, and drawings. Attached Figure Description
[0018] The accompanying drawings are provided to further understand the technical solution of this utility model and constitute a part of the specification. They are used together with the embodiments of this utility model to explain the technical solution of this utility model, and do not constitute a limitation on the technical solution of this utility model.
[0019] Figure 1 This is a schematic diagram of the integrated frame in the closed state provided by an embodiment of the present utility model;
[0020] Figure 2 This is a schematic diagram of the integrated frame in the open state provided by an embodiment of the present utility model;
[0021] Figure 3 A schematic diagram of the installation of the partition and the frame body provided in an embodiment of this utility model;
[0022] Figure 4 This is a schematic diagram of the structure of the partition body provided in an embodiment of the present utility model;
[0023] Figure 5 A schematic diagram of the structure of the partition body, the first mounting component, the second mounting component, and the ONU device provided in the embodiment of this utility model;
[0024] Figure 6 A schematic diagram of the structure of a network cabinet provided for an embodiment of this utility model;
[0025] Figure 7This is a schematic diagram of another network cabinet provided in an embodiment of the present utility model.
[0026] In the diagram: 100 – Integrated frame; 110 – Frame body; 111 – Top plate; 112 – Bottom plate;
[0027] 113 – First side panel; 114 – Second side panel; 115 – Front frame; 1151 – First extension; 1151a
[0028] – First through hole; 1152 – Second extension; 1152a – Second through hole; 116 – Magnet; 120 – Partition; 121 – Partition body; 1211 – Honeycomb holes; 1212 – Round hole; 1213 – Elongated hole;
[0029] 122 – Side panel; 1221 – Third through hole; 1222 – Fourth through hole; 123 – Screw; 124 – First mounting piece; 1241 – First screw; 125 – Second mounting piece; 1251 – Second screw; 1252
[0030] – Gasket; 1253 – Spring; 130 – Slot; 131 – Upper slot; 132 – Lower slot; 140 – Front door panel; 141 – Honeycomb hole; 142 – Handle; 150 – ONU device; 151 – First mounting slot; 152 – Second mounting slot; 200 – Cabinet. Detailed Implementation
[0031] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the specific implementation methods of this utility model will be described in detail below with reference to the accompanying drawings. It should be understood that the specific implementation methods described herein are for illustration and explanation only and are not intended to limit the utility model.
[0032] It should be noted that the orientation or positional relationship indicated by various directional terms is based on the orientation or positional relationship shown in the accompanying drawings, and is only for the convenience of describing this utility model and simplifying the description, and does not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model. Furthermore, the terms "first," "second," etc., in the specification and claims of this utility model are used to distinguish similar objects, and are not necessarily used to describe a specific order or sequence; and, where there is no conflict, the embodiments and features in the embodiments of this utility model can be arbitrarily combined with each other. It should be understood that when an element is referred to as "connected" or "coupled" to another element, it can be a direct connection or coupling to the other element, or there may be an intermediate element.
[0033] Server racks are essential equipment in every computer room, providing a suitable environment and security for the normal operation of electronic equipment. Server racks are generally made of cold-rolled steel or alloys, with relatively fixed dimensions and standardized designs. Telecommunications operators typically install large equipment on rack pillars, while ONU devices are placed directly inside the rack. If multiple ONU devices are stacked in a rack, not only will the scattered cabling make the rack cluttered and increase the difficulty of later equipment maintenance, but stacking multiple ONU devices will also lead to poor heat dissipation, increasing signal interference and the risk of failure. Furthermore, placing ONU devices directly in the rack limits the number of ONU devices that can be placed, occupies a large amount of valuable rack space, and reduces space utilization, especially in small computer rooms or racks. It also increases the difficulty and cost for customers to install other equipment. To solve these problems, this utility model provides an integrated rack that can centrally house ONU devices, reducing cabling clutter. Installing the integrated rack in a server rack facilitates maintenance and management and reduces safety hazards. The following detailed description is provided through specific examples.
[0034] Figure 1 and Figure 2 This is a schematic diagram of the integrated frame provided in an embodiment of the present utility model. Figure 1 and Figure 2 As shown, the integrated chassis 100 includes: a chassis body 110, multiple slots 130, and multiple partitions 120. The integrated chassis is suitable for standard server racks.
[0035] Each set of slots 130 includes an upper slot 131 located at the top of the chassis body and a lower slot 132 located at the bottom of the chassis body, with the upper slot 131 and lower slot 132 positioned opposite each other. The upper slot 131 is detachably connected to the top of the chassis body and its position is adjustable, as is the lower slot 132, which is detachably connected to the bottom of the chassis body and its position is adjustable. In other words, the position of each set of slots 130 within the chassis body can be adjusted according to actual needs. Multiple partitions 120 are spaced apart, each partition 120 corresponding to a set of slots 130 and slidably connected to the corresponding set of slots 130. Specifically, the top of a vertical partition 120 is slidably connected to the upper slot 131, and the bottom of a vertical partition 120 is slidably connected to the lower slot 132, forming a pull-out partition for easy placement and removal, and also for positioning. The surface of each partition 120 is detachably connected to at least one communication device; in this embodiment, the communication device is an ONU device 150.
[0036] In practical applications, five sets of slots can be configured, with one partition inserted into each set. By incorporating five detachable sets of slots inside the chassis, each set equipped with one partition (a total of five partitions), and each partition being independently removable, each partition can hold two ONU devices. Therefore, each integrated chassis can accommodate ten ONU devices with neat and orderly wiring. Of course, those skilled in the art can design the number of slots and partitions according to the dimensions of the ONU devices; this invention does not impose any limitations in this regard.
[0037] In this embodiment, by setting multiple sets of slots and multiple pull-out partitions inside the chassis body, and installing ONU devices on the surface of the partitions, the ONU devices are centrally deployed. This not only increases the number of ONU devices that can be placed, but also improves space utilization, reduces the phenomenon of messy wiring, and facilitates later equipment maintenance. Moreover, the ONU devices are installed on the partitions with spacing, which is conducive to heat dissipation and reduces signal interference and failure risk.
[0038] In one specific implementation, such as Figure 1 and Figure 2 As shown, the frame body 110 includes a top plate 111, a bottom plate 112, a first side plate 113, and a second side plate 114. The two sides of the top plate 111 are respectively connected to the top of the first side plate 113 and the top of the second side plate 114, and the two sides of the bottom plate 112 are respectively connected to the bottom of the first side plate 113 and the bottom of the second side plate 114.
[0039] In this embodiment, the frame body adopts a rectangular frame structure formed by a top plate, a bottom plate, a first side plate, and a second side plate, which is structurally stable and facilitates heat dissipation.
[0040] In one specific implementation, such as Figure 1 and Figure 2 As shown, at least one of the top plate 111, bottom plate 112, first side plate 113 and second side plate 114 has a plurality of honeycomb holes arranged in an array.
[0041] In this embodiment, the honeycomb holes are circular, square, oblong, hexagonal, or other regular shapes. The top plate, bottom plate, and two side plates of the frame body 110 are all honeycomb-shaped metal plates. The frame body 110 is made of honeycomb-shaped flame-retardant metal material, which facilitates ventilation and heat dissipation, reduces the risk of fire, and helps the ONU equipment to be ventilated, cooled, and operated safely.
[0042] In one specific implementation, such as Figure 2As shown, the frame body 110 also includes a front frame 115. The front frame 115 is connected to the front of the rectangular frame formed by the top plate 111, the bottom plate 112, the first side plate 113, and the second side plate 114. The front frame 115 extends outward from the side corresponding to the first side plate 113 to form a first extension 1151, and the front frame 115 extends outward from the side corresponding to the second side plate 114 to form a second extension 1152. The first extension 1151 is provided with a plurality of first through holes 1151a from top to bottom, and the second extension 1152 is provided with a plurality of second through holes 1152a from top to bottom. Figure 1 , Figure 2 and Figure 6 As shown, the chassis body 110 is installed in the network cabinet using screws through multiple first through holes 1151a and multiple second through holes 1152a.
[0043] In this embodiment, the frame body 110 is installed into the cabinet using screws through two rows of through holes (first through hole 1151a and second through hole 1152a), which increases the installation stability of the integrated frame.
[0044] In one specific implementation, such as Figure 1 and Figure 2 As shown, the integrated chassis 100 also includes a front door panel 140. One end of the front door panel 140 is rotatably connected to the bottom front end of the chassis body 110, and the other end of the front door panel 140 is detachably connected to the top front end of the chassis body 110.
[0045] In this embodiment, one end of the front door panel 140 can be rotatably connected to the frame body 110 via a hinge, and the other end can be snapped or magnetically connected to the frame body 110 to realize the opening and closing of the front door panel 140.
[0046] In one specific implementation, such as Figure 2 As shown, the other end of the front door panel 140 is magnetically connected to the top front end of the frame body 110.
[0047] In this embodiment, multiple magnets 116 can be installed at intervals on the upper front of the front frame 115 to achieve magnetic connection between the front door panel 140 and the top front end of the frame body.
[0048] The front door panel 140, which serves as the frame door, uses a magnetic switch structure for easy opening and closing.
[0049] In one specific implementation, such as Figure 1 and Figure 2 As shown, the front door panel 140 has multiple honeycomb holes 141 arranged in an array.
[0050] In this embodiment, the front door panel 140 is a honeycomb perforated metal plate. The front door panel 140 is made of a honeycomb perforated metal flame-retardant material, which facilitates ventilation and heat dissipation, reduces the risk of fire, and helps the ONU equipment to ventilate, cool down and operate safely.
[0051] In one specific implementation, such as Figure 1 As shown, a handle 142 is provided on the front of the front door panel 140 near the top of the frame body 110.
[0052] In this embodiment, a handle 142 is provided on the front door panel 140 to facilitate opening and closing the front door panel 140.
[0053] In one specific implementation, such as Figure 3 As shown, the partition 120 includes a partition body 121. Each ONU device 150 is detachably connected to the partition body 121 via a first mounting member 124 and a second mounting member 125.
[0054] In this embodiment, each ONU device 150 is detachably connected to the partition body via two mounting members, increasing the installation stability of the ONU device 150. The specific connection method used between the first mounting member 124 and the second mounting member 125 and the ONU device 150 is not limited; for example, it can be a threaded connection, a snap-fit connection, or a suspension connection.
[0055] In one specific implementation, such as Figure 5 As shown, the ONU device 150 has a first mounting slot 151 and a second mounting slot 152 on its back. These two mounting slots are spaced a certain distance apart on the back of the ONU device 150. It should be noted that... Figure 5 This is not a schematic diagram of the installation of the ONU device 150 and the partition 120. In fact, to more clearly show the specific installation structure of the two, [the diagram is missing here]. Figure 5 In the configuration, the back of the ONU device 150 faces upwards to expose the two mounting slots on the back. For example... Figure 4 and Figure 5 As shown, for each ONU device 150, the partition body 121 is provided with a round hole 1212 and an elongated hole 1213. The first mounting member 124 includes a first screw 1241, which is installed in the round hole 1212. The second mounting member 125 includes a second screw 1251, a spring 1253, and a washer 1252. The second screw 1251 is installed in the elongated hole 1213. The washer 1252 is located between the elongated hole 1213 and the head of the second screw 1251. The spring 1253 is fitted onto the shank of the second screw 1251 and is located between the washer 1252 and the head of the second screw 1251. The ONU device 150 is suspended on the head of the first screw 1241 through the first mounting groove 151 and on the head of the second screw 1251 through the second mounting groove 152.
[0056] In this embodiment, the round hole 1212 is fixed by the first screw 1241, and the elongated hole 1213 is fixed by the second screw 1251, the spring 1253 and the washer 1252. Then, it is suspended on the two screws through the two mounting slots on the back of the ONU device. Thus, the partition and the ONU device adopt a screw and spring structure. By using the mounting slots on the back of the ONU device and combining the screw and spring structure, the ONU device is fixed.
[0057] In practical applications, when installing an ONU device, a suitable partition 120 is pulled out from the chassis body 110. The first screw 1241 on the partition 120 is used to fix the first mounting slot 151 on the back of the ONU device. Then, taking advantage of the shape of the elongated hole 1213, which can adapt to ONU devices of various sizes, the position of the second screw 1251 in the elongated hole 1213 is adjusted so that the second screw 1251 is aligned with the second mounting slot 152 on the back of the ONU device. Then, the second screw 1251 on the partition 120 is used to fix the second mounting slot 152 on the back of the ONU device. This completes the installation of the ONU device on the partition 120. The partition 120 is then placed into the interior of the chassis body 110 along the corresponding set of slots 130.
[0058] In one specific implementation, such as Figure 2 and Figure 3 As shown, the partition body 121 has multiple honeycomb holes 1211 arranged in an array.
[0059] In this embodiment, the partition body 121 is a honeycomb perforated metal plate. The partition body 121 is made of honeycomb perforated metal flame-retardant material, which facilitates ventilation and heat dissipation, reduces the risk of fire, and helps the ONU equipment to ventilate, cool down and operate safely.
[0060] In addition to fixing the ONU device by opening round holes 1212 and elongated holes 1213 on the partition body, the ONU device can also be fixed by using the honeycomb holes on the partition body 121. For example, the honeycomb holes on the partition body 121 can be designed as waist-shaped holes, which can also achieve the fixing of ONU devices of various sizes.
[0061] In one specific implementation, such as Figure 3 As shown, the partition also includes a side plate 122. The side plate 122 is connected to the side of the partition body 121. The top of the side plate 122 extends upward to form an upper edge, and the bottom of the side plate 122 extends downward to form a lower edge. A third through hole 1221 is provided on the upper edge, and a fourth through hole 1222 is provided on the lower edge. The partition 120 is installed on the top front end and bottom front end of the frame body 110 through the third through hole 1221 and the fourth through hole 1222 using screws 123.
[0062] In this embodiment, after the ONU device is installed on the partition 120 and the partition 120 is placed into the interior of the chassis body 110 along the corresponding set of slots 130, the upper and lower ends of the partition 120 are fixed to the chassis body 110 by screws 123, specifically to the front frame 115 of the chassis body 110. Then, the ONU device's wiring extends out from the rear of the chassis body 110, is classified and bundled to ensure that the wiring is neat and orderly.
[0063] The integrated chassis provided in this embodiment of the utility model, by setting multiple sets of detachable and movable slots and multiple pull-out partitions inside the chassis body, can realize the centralized placement of ONU devices, effectively optimize space utilization, reduce the phenomenon of messy wiring, and the chassis body and partitions are designed with honeycomb holes for ventilation, which can effectively dissipate heat, thereby improving the safety, maintainability and operational efficiency of the entire system.
[0064] Furthermore, the integrated chassis can be installed in network cabinets, which facilitates the installation of ONU devices, simplifies the layout of ONU devices, and provides good support and protection for ONU devices. It is suitable for various types of data center cabinets.
[0065] Figure 6 and Figure 7 This is a schematic diagram of the structure of a network cabinet provided in an embodiment of the present utility model, wherein... Figure 6 The front door panel is concealed by the integrated chassis. For example... Figure 6 and Figure 7 As shown, the network cabinet includes a hollow cabinet body 200 and at least one integrated rack 100 as described in the previous embodiment. The cabinet body 200 is divided into multiple areas, and each integrated rack 100 is installed in a corresponding area within the cabinet body 200.
[0066] In this embodiment, the network cabinet uses a standard cabinet with a height, depth, and width of 200cm × 45cm × 48.26cm. A standard cabinet is typically 42U (1U = 44.45mm). The integrated chassis can have a height, depth, and width of 40.5cm × 50.5cm × 25cm. Therefore, the integrated chassis is suitable for standard cabinets. Each integrated chassis only occupies about 1U of space in a standard cabinet, and multiple integrated chassis can be installed in a standard cabinet to save cabinet space.
[0067] The integrated frame with the aforementioned structure is simple and low-cost, with the cost controllable at around 300 yuan. Moreover, the unit cost will decrease significantly as the number of units used increases, indicating a promising market application prospect.
[0068] The network cabinet provided in this embodiment of the utility model adopts an integrated frame, which realizes the centralized placement of communication equipment, effectively improves the space utilization rate inside the cabinet, reduces the phenomenon of messy wiring, facilitates the later equipment maintenance, and has good heat dissipation, reducing signal interference and failure risk of communication equipment, and does not affect the customer's ability to install other equipment in the cabinet.
[0069] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this utility model, and are not intended to limit it. Although the utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some or all of the technical features therein. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of this utility model.
Claims
1. An integrated chassis, characterized in that, include: The chassis body comprises multiple sets of slots and multiple partitions; each set of slots includes an upper slot located at the top of the chassis body and a lower slot located at the bottom of the chassis body, with the upper slot and the lower slot being disposed opposite to each other; each partition corresponds to a set of slots and is slidably connected to the corresponding set of slots; the surface of each partition is detachably connected to at least one communication device.
2. The integrated frame according to claim 1, characterized in that, The frame body includes a top plate, a bottom plate, a first side plate, and a second side plate; the two sides of the top plate are respectively connected to the top of the first side plate and the top of the second side plate, and the two sides of the bottom plate are respectively connected to the bottom of the first side plate and the bottom of the second side plate; at least one of the top plate, the bottom plate, the first side plate, and the second side plate has a plurality of honeycomb holes arranged in an array.
3. The integrated frame according to claim 2, characterized in that, The chassis body also includes a front frame; the front frame is connected to the front of the rectangular frame formed by the top plate, the bottom plate, the first side plate, and the second side plate; the front frame extends outward from one side corresponding to the first side plate to form a first extension, and the front frame extends outward from one side corresponding to the second side plate to form a second extension; the first extension has a plurality of first through holes from top to bottom, and the second extension has a plurality of second through holes from top to bottom; the chassis body is installed in the network cabinet using screws through the plurality of first through holes and the plurality of second through holes.
4. The integrated frame according to claim 2 or 3, characterized in that, It also includes a front door panel; one end of the front door panel is rotatably connected to the bottom front end of the frame body, and the other end of the front door panel is detachably connected to the top front end of the frame body.
5. The integrated frame according to claim 4, characterized in that, The other end of the front door panel is magnetically connected to the top front end of the frame body; and / or, the front door panel has multiple honeycomb holes arranged in an array; and / or, a handle is provided on the front of the front door panel near the top of the frame body.
6. The integrated frame according to claim 1, characterized in that, The partition includes a partition body; each communication device is detachably connected to the partition body via a first mounting component and a second mounting component.
7. The integrated frame according to claim 6, characterized in that, The back of the communication device is provided with a first mounting slot and a second mounting slot; for each communication device, the partition body is provided with a round hole and an elongated hole; the first mounting component includes a first screw, which is installed in the round hole; the second mounting component includes a second screw, a spring, and a washer; the second screw is installed in the elongated hole; the washer is located between the elongated hole and the head of the second screw; the spring is fitted onto the shank of the second screw and is located between the washer and the head of the second screw; the communication device is suspended on the head of the first screw through the first mounting slot and on the head of the second screw through the second mounting slot.
8. The integrated chassis according to claim 6, characterized in that, The partition body has multiple honeycomb holes arranged in an array.
9. The integrated frame according to claim 6, characterized in that, The partition also includes a side plate; the side plate is connected to the side of the partition body, the top of the side plate extends upward to form an upper edge, and the bottom of the side plate extends downward to form a lower edge; the upper edge is provided with a third through hole, and the lower edge is provided with a fourth through hole; the partition is installed on the top front end and bottom front end of the frame body by screws through the third through hole and the fourth through hole.
10. A network cabinet, characterized in that, include: The cabinet is hollow and includes at least one integrated frame as described in any one of claims 1-9; the cabinet is divided into multiple areas, and each integrated cabinet is installed in a corresponding area within the cabinet.