Accommodation module and electronic device including the same
Patent Information
- Authority / Receiving Office
- TW · TW
- Patent Type
- Applications
- Current Assignee / Owner
- LANNER ELECTRONIC INC
- Filing Date
- 2025-01-15
- Publication Date
- 2026-08-01
AI Technical Summary
The development of multiple chassis models for different computer systems consumes significant R&D resources and increases the workload of mechanical engineers, as each model requires a unique chassis design.
A housing module with a lower and upper housing unit that can accommodate N removable electronic modules, allowing for flexible adaptation to high-end, low-end, and special application models by adjusting the accommodation space of the upper housing unit.
Reduces R&D resource consumption and mechanical engineer workload while enabling the same chassis to be used across multiple models, meeting various customer needs and lowering production costs.
Smart Images

Figure TWG2TA001069463_001 
Figure TWG2TA001069463_002 
Figure TWG2TA001069463_003
Abstract
Description
[Technical Field]
[0001] This invention relates to the technical field of electronic devices, and more particularly to a housing module for integrating multiple removable electronic modules within a chassis. [Previous Technology]
[0002] It is known that computer systems, including network appliances, data centers, desktop computers, industrial computers, and game consoles, must be equipped with at least one heat dissipation device to assist in cooling heat sources inside the chassis (such as electronic chips or electronic modules). Taking network appliances such as servers or network switches as an example, they are divided into low-end, mid-end, and high-end models, and different models are equipped with different network interface modules, such as Ethernet modules and SFP fiber optic network modules. Therefore, during the development phase of computer systems such as network appliances, structural engineers must design corresponding chassis based on the model. It is conceivable that as the number of models increases, the number of chassis that structural engineers need to develop also increases, leading to increased consumption of the company's R&D resources and a heavier workload for structural engineers.
[0003] In summary, it is necessary to consider developing and designing a chassis that allows for flexible replacement of electronic modules depending on the computer model, making the chassis suitable for various computer systems. In view of this, the developers of this invention have diligently researched and invented this invention, and have finally completed the development of a housing module according to this invention. [Summary of the Invention]
[0004] The main objective of this invention is to provide a housing module for integration into a chassis of an electronic device. In high-end applications, the housing module of this invention includes a lower housing unit and an upper housing unit, wherein both the lower and upper housing units can accommodate N removable electronic modules. On the other hand, in low-end applications, the housing space of the upper housing unit can be modified (reduced) so that the upper housing unit can only accommodate R (< N) electronic modules or can not accommodate any electronic modules. Furthermore, in other applications, the housing space of the upper housing unit can be modified so that the upper housing unit can accommodate at least one PCIe expansion card and / or at least one electronic module.
[0005] In summary, the housing module of the present invention has the following advantages: (1) When using the housing module of the present invention, engineers can share the chassis and the housing module of the present invention when designing high-end, low-end and special application models. (2) When multiple models share the chassis and the housing module of the present invention, it reduces the consumption of the company's R&D resources, reduces the workload of mechanical engineers, and reduces production costs. (3) Different models can meet the various application needs of customers.
[0006] In order to achieve the above objective, the present invention provides an embodiment of the accommodating module, which is used to integrate into a chassis of an electronic device; wherein, a side panel of the chassis has at least one first opening, the accommodating module includes a first accommodating unit, and the first accommodating unit includes: N first partition plates disposed within the chassis, and having a first side panel, a second side panel, a front side panel, a bottom side panel, a rear side panel, and a top side panel, wherein the first side panel and the bottom side panel are connected by a first bottom side connecting plate, and the first side panel and the top side panel are connected by a first top side connecting plate; N second partitions are disposed within the chassis, and each partition has a first side, a second side, a front side, a bottom side, a rear side, and a top side. A second bottom connecting plate connects the first side and the bottom side, and a second top connecting plate connects the first side and the top side. A first plate is also present, stacked with the N first top connecting plates and the N second top connecting plates. In the first accommodating unit, the second side of the first partition and the second side of the second partition are in contact with each other. Within the first accommodating unit, the N first partitions, the N second partitions, and the first plate together enclose N first accommodating spaces for accommodating N electronic modules. The i-th first partition and the i-th second partition serve as the two sidewalls of the i-th first accommodating space, where i is a positive integer with an initial value of 1 and a maximum value of N.
[0007] In one embodiment, in the i-th first accommodating space, the first side of the first partition plate is formed with at least one first guide rail structure, and the first side of the second partition plate is formed with at least one second guide rail structure opposite to the at least one first guide rail structure.
[0008] In one embodiment, the first partition plate is provided with at least one first side screw hole, and the second partition plate is provided with at least one second side screw hole.
[0009] In one embodiment, among the second to Nth first partition plates and the first to N-1th second partition plates included in the first accommodating unit, the at least one first side screw hole of the first partition plate corresponds to the at least one second side screw hole of the second partition plate.
[0010] In one embodiment, the front side of the first partition plate is connected to the second side by a first front connecting plate, and the front side of the second partition plate is connected to the second side by a second front connecting plate.
[0011] In one embodiment, the first front connecting plate has a first front screw hole, and the second front connecting plate has a second front screw hole.
[0012] In one embodiment, the bottom side edge of the first partition plate is formed with at least one first notch, and the first bottom side connecting plate is further connected with at least one first bottom side extension plate corresponding to the at least one first notch.
[0013] In one embodiment, the second bottom side connecting plate is formed with at least one second notch, and when the second side of the first partition plate and the second side of the second partition plate are in contact with each other, the at least one first bottom side extension plate is located within the at least one second notch.
[0014] In one embodiment, the first bottom connecting plate has at least one first bottom screw hole, the first bottom extension plate has M second bottom screw holes, and the second bottom connecting plate has P third bottom screw holes, where M and P are both positive integers.
[0015] In one embodiment, the at least one first bottom side screw hole of the first bottom side connecting plate of the first first partition plate corresponds to at least one first fixing screw hole formed on the bottom of the chassis, and the P third bottom side screw holes of the second bottom side connecting plate of the Nth second partition plate correspond to P second fixing screw holes formed on the bottom of the chassis.
[0016] In one embodiment, M×(N-1) third fixing screw holes are also formed on the bottom of the chassis, and in the second to the Nth first partition plates, the M second bottom side screw holes of each first bottom side extension plate correspond to the M third fixing screw holes.
[0017] In one embodiment, the first top side connecting plate has at least one first top side screw hole, the second top side connecting plate has at least one second top side screw hole and Q inserts, where Q is a positive integer.
[0018] In one embodiment, the first plate has a plurality of first structures, and the plurality of first structures include: at least one first screw hole corresponding to the at least one first top-side screw hole of the first top-side connecting plate of the first first partition plate; at least one second screw hole corresponding to the at least one second top-side screw hole of the second top-side connecting plate of the Nth second partition plate; Q×K cup-shaped members, wherein K is a positive integer, each cup-shaped member is composed of a base plate and an annular side plate, the annular side plate is connected to a first surface of the first plate, and a receiving space of each cup-shaped member is a groove recessed from a second surface of the first plate; Q×K first slots formed on the Q×K base plates and located within the receiving space; Q×K first guide grooves communicating with the Q×K first slots; at least one third screw hole; P fourth screw holes; and P×K fifth screw holes; In the first to N-1th second partition plates, the insert enters the corresponding first slot through the corresponding first guide groove, thereby being embedded in the first slot.
[0019] In an optional embodiment, the accommodating module of the present invention may further include a second accommodating unit stacked on the first accommodating unit, wherein the second accommodating unit includes L first partition plates and L second partition plates, and further includes a second plate stacked on the L first partition plates and the L second partition plates; L is a positive integer.
[0020] In one embodiment, in the second accommodating unit, the L first partition plates and the L second partition plates are disposed on the first plate of the first accommodating unit, so that the L first partition plates, the L second partition plates, and the second plate together enclose L second accommodating spaces.
[0021] In one embodiment, in the second accommodating unit, the j-th first partition plate (11) and the j-th second partition plate (12) serve as two sidewalls of the j-th second accommodating space, and j is a positive integer with an initial value of 1 and a maximum value of L.
[0022] In one embodiment, in the second accommodating unit, among the second to Lth first partition plates and the first to L-1th second partition plates included in the second accommodating unit, the second side of the first partition plate and the second side of the second partition plate are in contact with each other.
[0023] In one embodiment, in the second accommodating unit, the at least one first screw hole of the first bottom connecting plate of the first first partition plate corresponds to the at least one third screw hole of the first plate, and the P third bottom connecting plates of the Lth second partition plate correspond to the P fourth screw holes of the first plate.
[0024] In one embodiment, among the first to L-1 second partition plates of the second accommodating unit, the P third bottom side screw holes of each second bottom side connecting plate correspond to the P fifth screw holes.
[0025] In one embodiment, the second plate has a plurality of second structures, and the plurality of second structures include: at least one sixth screw hole, wherein, in the second receiving unit, the at least one first top-side screw hole of the first top-side connecting plate of the first first partition plate corresponds to the at least one sixth screw hole; at least one seventh screw hole, wherein, in the second receiving unit, the at least one second top-side screw hole of the second top-side connecting plate of the Lth second partition plate corresponds to the at least one seventh screw hole; Q×K second slots; and Q×K second guide grooves, respectively communicating with the Q×K second slots; wherein, in the first to L-1th second partition plates of the second receiving unit, the insert enters the corresponding second slot through the corresponding second guide groove, thereby being embedded in the second slot.
[0026] Furthermore, the present invention also provides an electronic device comprising a chassis and at least one electronic chip and at least one electronic module disposed within the chassis, characterized in that the chassis houses the housing module as described above.
[0027] In one embodiment, the electronic device is selected from any of the group consisting of servers, network switches, gateways, embedded computers, single-board computers, industrial computers, desktop computers, all-in-one computers, vehicle computers, security monitoring hosts, gaming hosts, and game consoles.
Implementation Method
[0028] To enable your review committee to further understand the structure, features, purpose and advantages of the present invention, detailed description of the preferred embodiments is attached below with drawings.
[0029] See FIG. As shown in FIGS. In particular, in an application of a high-end model, the capacity module 1 of the present invention includes a lower-level capacity unit as well as an upper-level capacity unit, and both the lower-level capacity unit and the upper-level capacity unit can accommodate N extractable electronic modules 3, such as Ethernet network modules, SFP fiber optic network modules, PCIE expansion card modules, and the like. Further, in feasible embodiments, the electronic device 2 may be, but is not limited to, a server, a network switch, a gateway, an embedded computer, a single-board computer, an industrial computer, a desktop computer, an all-in-one computer, an on-board computer, a security monitoring console, a gaming console, or a gaming console.
[0030] FIG. As shown in FIG. Specifically, each of the first dividers 11 is provided within the chassis 21 and has a first side, a second side, a front side, a bottom side, a rear side, and a top side. Each of the second dividers 12 is provided within the chassis 21 with respect to the first divider 11 , and also has a first side, a second side, a front side, a bottom side, a rear side, and a top side. and, the first plate member 13 is superimposed on the N first divider plate 11 and the N second divider plate 12 .
[0031] Further, FIG. 3A, 3B, 4A, and 4B, the first side of the first divider plate 11 is connected to the bottom side with a first bottom side connecting plate 111 . Further, the first side of the second divider plate 12 is connected to the bottom side with a second bottom side connecting plate 121 .
[0032] According to the design of the present invention, among the 2nd to Nth first partition plates 11 and the 1st to N-1th second partition plates 12 included in the lower accommodating unit, the second side surface of the i-th first partition plate 11 and the second side surface of the (i+1)-th second partition plate 12 are in contact with each other. Furthermore, in the lower accommodating unit, the N first partition plates 11, the N second partition plates 12, and the first plate 13 together enclose N first accommodating spaces for accommodating N electronic modules 3, and the i-th first partition plate 11 and the i-th second partition plate 12 serve as the two sidewalls of the i-th first accommodating space. Specifically, N is a positive integer, i is a positive integer starting with a value of 1, and the maximum value of i is a positive integer greater than or equal to N.
[0033] Taking N=4 as an example, among the 2nd to 4th first partition plates 11 and the 1st to N-1=3th second partition plates 12 included in the lower accommodating unit, the second side surface of the first partition plate 11 and the second side surface of the second partition plate 12 are in contact with each other. Furthermore, among the N first accommodating spaces included in the lower accommodating unit, the i=1st, 2nd, 3rd, or 4th first partition plate 11 and the i=1st, 2nd, 3rd, or 4th second partition plate 12 serve as the two side walls of the i=1st, 2nd, 3rd, or 4th first accommodating space.
[0034] To reiterate, among the 2nd to Nth first partition plates 11 and the 1st to N-1th second partition plates 12, the second side surface of the i-th first partition plate 11 and the second side surface of the (i+1)th second partition plate 12 are in contact with each other. Further, the first partition plate 11 is provided with at least one first side screw hole SS1, and the second partition plate 12 is provided with at least one second side screw hole SS2. It is readily understood that, for the 2nd to Nth first partition plates 11 and the 1st to N-1th second partition plates 12 included in the lower accommodating unit, by screwing screws into the first side screw hole SS1 and the second side screw hole SS2, the i-th first partition plate 11 and the (i+1)th second partition plate 12 are tightly fitted together.
[0035] To further explain, the bottom side edge of the first partition plate 11 has at least one first notch 114, and the first bottom side connecting plate 111 is further connected to at least one first bottom side extension plate 115 corresponding to pass through the at least one first notch 114. Furthermore, the second bottom side connecting plate 121 has at least one second notch 124, and when the second side surface of the first partition plate 11 and the second side surface of the second partition plate 12 are in contact with each other, the at least one first bottom side extension plate 115 is located within the at least one second notch 124.
[0036] Furthermore, to facilitate the placement of each electronic module 3 into the first accommodating space, in each first accommodating space, at least one first guide rail structure 113 is formed on the first side of the first partition plate 11, and at least one second guide rail structure 123 is formed on the first side of the second partition plate 12 opposite to the at least one first guide rail structure 113. In addition, a first front connecting plate 116 is connected to the second side of the first partition plate 11, and the first front connecting plate 116 has a first front screw hole FS1. Relative to the first partition plate 11, a second front connecting plate 126 is connected to the second side of the second partition plate 12, and the second front connecting plate 126 has a second front screw hole FS2. With this design, after a removable electronic module 3 is placed into a first accommodating space, two screws on one panel 31 of the electronic module 3 can be further screwed into the first front screw hole FS1 and the second front screw hole FS2 to fix the electronic module 3.
[0037] Figures 5A and 5B are first and second perspective views of a first partition plate 11 and a second partition plate 12. As shown in Figures 4A, 4B, 5A, and 5B, the first bottom connecting plate 111 of the first partition plate 11 has at least one first bottom screw hole BS1, and the first bottom extension plate 115 has M second bottom screw holes BS2. On the other hand, the second bottom connecting plate 121 of the second partition plate 12 has P third bottom screw holes BS3, and M and P are both positive integers. Furthermore, in the lower accommodating unit, the at least one first bottom screw hole BS1 of the first bottom connecting plate 111 of the first partition plate 11 corresponds to at least one first fixing screw hole formed on the bottom of the chassis 21, and the P third bottom screw holes BS3 of the second bottom connecting plate 121 of the Nth second partition plate 12 correspond to P second fixing screw holes formed on the bottom of the chassis 21. To explain in more detail, M×(N-1) third fixing screw holes are also formed on the bottom of the chassis 21. Furthermore, in the second to the Nth first partition plates 11, the M second bottom side screw holes BS2 of the first bottom side extension plate 115 correspond to the M third fixing screw holes.
[0038] Further, the first plate 13 has a plurality of first structures, and the plurality of first structures includes: at least one first screw hole S1, at least one second screw hole S2, Q×K cup-shaped parts 131, Q×K first slots 132, and Q×K first guide grooves 133. In one embodiment, each of the first top-side connecting plates 112 has at least one first top-side screw hole TS1, and each of the second top-side connecting plates 122 has at least one second top-side screw hole TS2 and Q inserts 127, where Q is a positive integer. As shown in Figures 4A, 4B, 5A, and 5B, the at least one first screw hole S1 corresponds to the at least one first top-side screw hole TS1 of the first top-side connecting plate 112 of the first first partition plate 11, and the at least one second screw hole S2 corresponds to the at least one second top-side screw hole TS2 of the second top-side connecting plate 122 of the Nth second partition plate 12.
[0039] On the other hand, according to the present invention, K is a positive integer. For example, when K = 4, N (i.e., the number of the first partition plate 11 and the second partition plate 12) can be 1, 2, 3, or 4.
[0040] In one embodiment, each cup-shaped member 131 is composed of a base plate and an annular side plate. The annular side plate is connected to a first surface of the first plate 13, and the receiving space of each cup-shaped member 131 is a groove recessed from a second surface of the first plate 13. Furthermore, Q×K first slots 132 are respectively formed on Q×K base plates, and Q×K first guide grooves 133 respectively connect to the Q×K first slots 132, wherein each first slot 132 is located within the receiving space. Specifically, in the first to N-1th second partition plates 12, the insert 127 enters the corresponding first slot 132 through the corresponding first guide groove 133, thereby being embedded within the first slot 132.
[0041] Figure 6A is an exploded perspective view of the upper accommodating unit shown in Figure 3A, and Figure 6B is an exploded perspective view of the upper accommodating unit shown in Figure 3B. According to the design of this invention, the upper accommodating unit is stacked on top of the lower accommodating unit, and includes L first partition plates 11 and L second partition plates 12, and further includes a second plate 14 stacked on top of the L first partition plates 11 and the L second partition plates 12. It should be understood that L represents the number of first partition plates 11 and second partition plates 12 included in the upper accommodating unit, and therefore can be 1, 2, 3, or 4. Thus, in the upper accommodating unit, the L first partition plates 11 and the L second partition plates 12 are disposed on top of the first plate 13 of the lower accommodating unit, thereby the L first partition plates 11, the L second partition plates 12, and the second plate 14 together enclose L second accommodating spaces. Furthermore, the j-th first partition plate 11 and the j-th second partition plate 12 serve as the two sidewalls of the j-th second accommodating space, where j is a positive integer with an initial value of 1 and a maximum value of L. It is noteworthy that among the 2nd to Lth first partition plates 11 and the 1st to L-1th second partition plates 12 included in the upper accommodating unit, the second sidewall of the j-th first partition plate 11 and the second sidewall of the (j+1)-th second partition plate 12 are in contact with each other.
[0042] It should be further explained that the plurality of first structures of the first plate 13 also include at least one third screw hole S3, P fourth screw holes S4, and P×K fifth screw holes S5. Furthermore, in the upper accommodating unit, the at least one first bottom screw hole BS1 of the first bottom connecting plate 111 of the first first partition plate 11 corresponds to the at least one third screw hole S3 of the first plate 13, and the P third bottom screw holes BS3 of the second bottom connecting plate 121 of the Lth second partition plate 12 correspond to the P fourth screw holes S4 of the first plate 13. In addition, in the first to L-1th second partition plates 12 of the upper accommodating unit, the P third bottom screw holes BS3 of each second bottom connecting plate 121 correspond to the P fifth screw holes S5.
[0043] In one embodiment, the second plate 14 has a plurality of second structures, and the plurality of second structures includes: at least one sixth screw hole S6, at least one seventh screw hole S7, Q×K second slots 142, and Q×K second guide grooves 143. In the upper accommodating unit, the at least one first top-side screw hole TS1 of the first top-side connecting plate 112 of the first first partition plate 11 corresponds to the at least one sixth screw hole S6, and the at least one second top-side screw hole TS2 of the second top-side connecting plate 122 of the Lth second partition plate 12 corresponds to the at least one seventh screw hole S7. More specifically, the Q×K second guide grooves 143 are respectively connected to the Q×K second slots 142. With this design, in the first to L-1 second partition plates 12 of the upper accommodating unit, the insert 127 enters the corresponding second slot 142 through the corresponding second guide groove 143, and is thus embedded in the second slot 142.
[0044] Further, Figures 7 and 8 are the third and fourth perspective views of the electronic device containing the accommodating module of the present invention, respectively. As shown in Figures 3A, 3B, 4A, 4B, 6A, 6B, 7, and 8, in low-end applications, the accommodating space of the upper accommodating unit can be changed (reduced) so that the upper accommodating unit can only accommodate R (< N) removable electronic modules 3 or can not accommodate any electronic modules. Specifically, in Figures 7 and 8, the first partition plate 11 and the second partition plate 12 included in the upper accommodating unit are reduced to two, and the two panel modules 14 are combined with the two first front screw holes FS1 of the two first partition plates 11 and the two second front screw holes FS2 of the two second partition plates 12. Meanwhile, it should be understood that the second plate 14 of the upper accommodating unit is not shown in Figures 7 and 8, the purpose of which is to clearly show the two first partition plates 11 and the two second partition plates 12.
[0045] On the other hand, Figures 9 and 10 are the fifth and sixth perspective views of an electronic device including the accommodating module of the present invention, respectively. As shown in Figures 3A, 3B, 4A, 4B, 6A, 6B, 9, and 10, in other applications, the accommodating space of the upper accommodating unit can be changed so that the upper accommodating unit can accommodate at least one PCIe expansion card and / or at least one electronic module 3. Specifically, in Figures 9 and 10, the first partition plate 11 and the second partition plate 12 included in the upper accommodating unit are reduced to two, and a panel module 14 is coupled to the first front screw hole FS1 of the first partition plate 11 and the second front screw hole FS2 of the second partition plate 12. At the same time, an electronic module 3 is placed in a second accommodating space of the upper accommodating unit.
[0046] In summary, the housing module 1 of the present invention has been fully and clearly described. Furthermore, the housing module 1 of the present invention has the following advantages: (1) When using the housing module 1 of the present invention, engineers can share the chassis and the housing module of the present invention when designing high-end, low-end, and special application models. (2) When multiple models share the chassis and the housing module of the present invention, it reduces the company's R&D resource consumption, alleviates the workload of mechanical engineers, and reduces production costs. (3) Different models can meet various application needs of customers. (4) In the application of high-end models, the housing module 1 of the present invention includes a lower housing unit and an upper housing unit, wherein both the lower housing unit and the upper housing unit can accommodate N removable electronic modules. (5) In low-end applications, the storage space of the upper-level storage unit can be changed (reduced) so that the upper-level storage unit can only accommodate R (R < N) electronic modules or can not accommodate any electronic modules. (6) In other applications, the storage space of the upper-level storage unit can also be changed so that the upper-level storage unit can accommodate at least one PCIe expansion card and / or at least one removable electronic module.
[0047] However, it must be emphasized that the foregoing disclosure is a preferred embodiment of the present invention. Any partial changes or modifications that are derived from the technical concept of the present invention and can be easily deduced by those skilled in the art are not outside the scope of the patent rights of the present invention. [Simplified Explanation of the Diagram]
[0048] FIG1 is a first perspective view of an electronic device including a receiving module of the present invention; FIG2 is a second perspective view of an electronic device including a receiving module of the present invention; FIG3A is a first perspective view of a receiving module of the present invention; FIG3B is a second perspective view of a receiving module of the present invention; FIG4A is an exploded perspective view of the lower receiving unit shown in FIG3A; FIG4B is an exploded perspective view of the lower receiving unit shown in FIG3B; FIG5A is a first perspective view of a first partition and a second partition; FIG5B is a second perspective view of a first partition and a second partition; FIG6A is an exploded perspective view of the upper receiving unit shown in FIG3A; FIG6B is an exploded perspective view of the upper receiving unit shown in FIG3B; FIG7 is a third perspective view of an electronic device including a receiving module of the present invention; FIG8 is a fourth perspective view of an electronic device including a receiving module of the present invention; FIG9 is a fifth perspective view of an electronic device including a receiving module of the present invention; and FIG10 is a sixth perspective view of an electronic device including a receiving module of the present invention.
Claims
1. A housing module for integration into a chassis of an electronic device; wherein, The chassis has at least one first opening on one side panel. The accommodating module includes a first accommodating unit, which includes: N first partition plates disposed within the chassis and having a first side, a second side, a front side, a bottom side, a rear side, and a top side, wherein the first side and the bottom side are connected by a first bottom side connecting plate, and the first side and the top side are connected by a first top side connecting plate; N second partition plates disposed within the chassis and also having a first side, a second side, a front side, a bottom side, a rear side, and a top side, wherein the first side and the bottom side are connected by a second bottom side connecting plate, and the first side and the top side are connected by a second top side connecting plate; and a first plate that stacks the N first top side connecting plates and the N second top side connecting plates. In the first accommodating unit, among the 2nd to Nth first partition plates and the 1st to N-1th second partition plates, the second side of the first partition plate and the second side of the second partition plate are in contact with each other; in the first accommodating unit, the N first partition plates, the N second partition plates, and the first plate together enclose N first accommodating spaces for accommodating N electronic modules, the i-th first partition plate and the i-th second partition plate serve as the two side walls of the i-th first accommodating space, and i is a positive integer with an initial value of 1 and a maximum value of N.
2. The accommodating module as described in claim 1, wherein, In the i-th first accommodating space, the first side of the first partition plate is formed with at least one first guide rail structure, and the first side of the second partition plate is formed with at least one second guide rail structure opposite to the at least one first guide rail structure.
3. The accommodating module as described in claim 1, wherein, The first partition plate is provided with at least one first side screw hole, and the second partition plate is provided with at least one second side screw hole.
4. The accommodating module as described in claim 3, wherein, In the first accommodating unit, among the second to Nth first partition plates and the first to N-1th second partition plates, the at least one first side screw hole of the first partition plate corresponds to the at least one second side screw hole of the second partition plate.
5. The accommodating module as described in claim 1, wherein, The front side of the first partition plate is connected to the second side by a first front connecting plate, and the front side of the second partition plate is connected to the second side by a second front connecting plate.
6. The accommodating module as described in claim 5, wherein, The first front connecting plate has a first front screw hole, and the second front connecting plate has a second front screw hole.
7. The accommodating module as described in claim 1, wherein, The bottom side of the first partition plate has at least one first notch, and the first bottom side connecting plate is further connected to at least one first bottom side extension plate corresponding to the at least one first notch.
8. The accommodating module as described in claim 7, wherein, The second bottom connecting plate has at least one second notch, and when the second side of the first partition plate and the second side of the second partition plate are in contact with each other, the at least one first bottom extension plate is located within the at least one second notch.
9. The accommodating module as described in claim 7, wherein, The first bottom connecting plate has at least one first bottom screw hole, the first bottom extension plate has M second bottom screw holes, and the second bottom connecting plate has P third bottom screw holes, where M and P are both positive integers.
10. The accommodating module as described in claim 9, wherein, The first bottom side screw hole of the first bottom side connecting plate of the first partition plate corresponds to the at least one first fixing screw hole formed on the bottom of the chassis, and the P third bottom side screw holes of the second bottom side connecting plate of the Nth second partition plate correspond to the P second fixing screw holes formed on the bottom of the chassis.
11. The accommodating module as described in claim 10, wherein, The bottom of the chassis is also formed with M×(N-1) third fixing screw holes, and in the second to the Nth first partition plates, the M second bottom side screw holes of each first bottom side extension plate correspond to the M third fixing screw holes.
12. The accommodating module as described in claim 11, wherein, The first top-side connecting plate has at least one first top-side screw hole, the second top-side connecting plate has at least one second top-side screw hole and Q inserts, where Q is a positive integer.
13. The accommodating module as described in claim 12, wherein, The first plate has a plurality of first structures, and the plurality of first structures include: at least one first screw hole corresponding to the at least one first top-side screw hole of the first top-side connecting plate of the first first partition plate; at least one second screw hole corresponding to the at least one second top-side screw hole of the second top-side connecting plate of the Nth second partition plate; Q×K cup-shaped parts, where K is a positive integer, each cup-shaped part is composed of a base plate and an annular side plate, the annular side plate is connected to a first surface of the first plate, and a receiving space of each cup-shaped part is a groove recessed from a second surface of the first plate; Q×K first slots formed on the Q×K base plates and located within the receiving space; Q×K first guide grooves communicating with the Q×K first slots; at least one third screw hole; P fourth screw holes; and P×K fifth screw holes; In the first to N-1th second partition plates, the insert enters the corresponding first slot through the corresponding first guide groove, thereby being embedded in the first slot.
14. The accommodating module as described in claim 13 further includes a second accommodating unit stacked on top of the first accommodating unit, wherein, The second accommodating unit includes L first partitions and L second partitions, and further includes a second plate stacked on the L first partitions and L second partitions; L is a positive integer.
15. The accommodating module as described in claim 14, wherein, In the second accommodating unit, the L first partition plates and the L second partition plates are disposed on the first plate of the first accommodating unit, so that the L first partition plates, the L second partition plates, and the second plate together enclose L second accommodating spaces.
16. The accommodating module as described in claim 15, wherein in the second accommodating unit, the j-th first partition plate (11) and the j-th second partition plate (12) serve as two sidewalls of the j-th second accommodating space, and j is a positive integer with an initial value of 1 and a maximum value of L.
17. The accommodating module as described in claim 15, wherein, In the second accommodating unit, among the second to Lth first partition plates and the first to L-1th second partition plates included in the second accommodating unit, the second side of the first partition plate and the second side of the second partition plate are in contact with each other.
18. The accommodating module as described in claim 17, wherein, In the second accommodating unit, at least one first screw hole of the first bottom connecting plate of the first first partition plate corresponds to at least one third screw hole of the first plate, and P third bottom connecting plates of the Lth second partition plate correspond to P fourth screw holes of the first plate.
19. The accommodating module as described in claim 18, wherein, In the first to L-1 second partition plates of the second accommodating unit, the P third bottom side screw holes of each second bottom side connecting plate correspond to the P fifth screw holes.
20. The accommodating module as described in claim 19, wherein, The second plate has a plurality of second structures, and the plurality of second structures include: at least one sixth screw hole, wherein, in the second receiving unit, the at least one first top-side screw hole of the first top-side connecting plate of the first first partition plate corresponds to the at least one sixth screw hole; at least one seventh screw hole, wherein, in the second receiving unit, the at least one second top-side screw hole of the second top-side connecting plate of the Lth second partition plate corresponds to the at least one seventh screw hole; Q×K second slots; and Q×K second guide grooves, respectively communicating with the Q×K second slots; wherein, in the first to L-1th second partition plates of the second receiving unit, the insert enters the corresponding second slot through the corresponding second guide groove, thereby being embedded in the second slot.
21. An electronic device, characterized in that it has a chassis, and the chassis houses a housing module as described in any one of claims 1 to 20.