Industrial personal computer with vertically stacked structure
By using a stacked industrial computer design, and utilizing metal pillars, screws, bending plates, and guide rails to discharge static electricity, the problems of static electricity discharge and insufficient compactness of plastic-cased industrial computers are solved, thereby improving the efficiency of static electricity discharge and heat dissipation.
Patent Information
- Application Number
- CN202520298302.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-24
- Publication Date
- 2025-12-23
- Estimated Expiration
- 2035-02-24
AI Technical Summary
Plastic-cased industrial control computers suffer from problems such as difficulty in discharging static electricity and insufficient compactness.
The design employs a stacked structure, using metal pillars, screws, portal-shaped bending plates, and L-shaped bending plates to discharge static electricity from the interface board and motherboard. Static electricity is also discharged via metal rails. Combined with heat dissipation components and fans, this design improves compactness and heat dissipation efficiency.
It achieves effective static electricity discharge and a compact industrial control computer design, while improving heat dissipation efficiency and ensuring data preservation in the event of a sudden power outage.
Smart Images

Figure CN223712121U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to industrial computer technical field, especially a kind of industrial computer of upper and lower stacking structure. BACKGROUND
[0002] Plastic shell industrial computer exists static electricity difficult export, there is also how to make its compact technical problem.
[0003] Therefore, it is necessary to develop an industrial computer with an upper and lower stacking structure to overcome the above-mentioned defects. SUMMARY
[0004] To solve the above technical problems, the utility model discloses an industrial computer with an upper and lower stacking structure.
[0005] To achieve the above-mentioned purposes, the utility model provides an industrial computer with an upper and lower stacking structure, comprising a plastic shell, an interface board and a mainboard stacked in the plastic shell.
[0006] A coupling plate is provided on one side of the mainboard, which is perpendicular to the mainboard.
[0007] The mainboard and the interface board are connected by a metal column.
[0008] The mainboard is also provided with a heat dissipation assembly, which is connected to the mainboard by a screw.
[0009] A door-shaped bending plate is provided on the side of the coupling plate, which contacts the metal column.
[0010] One side of the heat dissipation assembly is provided with an L-shaped bending plate, which contacts the screw.
[0011] The top of the door-shaped bending plate is provided with a first elastic sheet, and the top of the L-shaped bending plate is provided with a second elastic sheet.
[0012] A metal guide rail is provided on the top of the plastic shell, which contacts the first elastic sheet and the second elastic sheet.
[0013] Preferably, the heat dissipation assembly comprises a base, a plurality of heat dissipation copper pipes and two symmetrical heat dissipation fins.
[0014] A heat dissipation fan is provided between the two heat dissipation fins.
[0015] Preferably, the two sides of the plastic shell are respectively provided with air vents, and the heat dissipation fan is aligned with the air vents.
[0016] Preferably, a metal connecting piece is provided between the door-shaped bending plate and the metal column.
[0017] Preferably, a guide rail groove is arranged at the top of the plastic shell.
[0018] Preferably, the first elastic sheet and the second elastic sheet are exposed at the bottom of the guide rail groove.
[0019] Preferably, a limiting block is arranged at one side of the guide rail groove, and a first gap is arranged between the limiting block and the guide rail groove.
[0020] Preferably, an elastic block is arranged at the other side of the guide rail groove, and a second gap is arranged between the elastic block and the guide rail groove.
[0021] The elastic block has a wedge surface, which faces the limiting block.
[0022] Preferably, a first horizontal plate and a second horizontal plate are arranged at two sides of the metal guide rail respectively.
[0023] The first horizontal plate is bound to the first gap, and the second horizontal plate is bound to the second gap.
[0024] Preferably, the interface plate is provided with a plurality of IO interfaces.
[0025] Compared with the prior art, the technical effects of the present application are as follows:
[0026] The interface plate and the main plate are designed in a laminated manner, and the coupling plate is inserted at one end of the main plate, having the advantage of compact design. BRIEF DESCRIPTION OF DRAWINGS
[0027] In order to more clearly illustrate the specific embodiments of the present application or the technical solutions in the prior art, the drawings needed in the specific embodiments or the prior art description will be briefly introduced as follows. Obviously, the drawings in the following description are some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained without creative labor.
[0028] Figure 1 is a perspective structural schematic view of the industrial computer in the up-down stacking structure of the present application.
[0029] Figure 2 is a perspective structural schematic view of the industrial computer in the up-down stacking structure of the present application.
[0030] Figure 3 is a perspective structural schematic view of the industrial computer in the up-down stacking structure of the present application.
[0031] Figure 4 is the three-dimensional structure schematic diagram of the industrial computer with the up-down stacking structure.
[0032] Figure 5 is the three-dimensional structure schematic diagram of the industrial computer with the up-down stacking structure.
[0033] 1, plastic shell; 11, ventilation opening; 12, guide rail groove; 121, limiting block; 122, telescopic block; 1221, wedge surface; 123, spring; 2, interface board; 21, IO interface; 3, mainboard; 31, screw; 4, coupling plate; 5, metal column; 6, heat dissipation assembly; 61, base; 62, heat dissipation copper pipe; 63, heat dissipation fin; 64, heat dissipation fan; 65, UPS power supply; 7, door-shaped bending plate; 71, vertical part; 72, metal connecting piece; 73, first elastic sheet; 8, L-shaped bending plate; 81, vertical part; 82, second elastic sheet; 9, metal guide rail; 91, first horizontal plate; 92, second horizontal plate. DETAILED DESCRIPTION
[0034] The utility model will be explained in detail below in combination with each embodiment shown in the drawings, but it should be explained that these embodiments are not the limitation of the utility model, and the equivalent transformation or substitution of function, method or structure made by the ordinary skilled in the art according to these embodiments all belong to the protection scope of the utility model.
[0035] In the description of the utility model, it should be understood that the orientation or position relation indicated by the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise" and the like are based on the orientation or position relation shown in the drawings, and are only for the convenience of describing the utility model and simplifying the description, and cannot be understood as indicating or implying that the indicated device or element must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the utility model.
[0036] Example 1
[0037] Referring to Figures 1-5 , the embodiment discloses a specific implementation of an industrial computer with an up-down stacking structure.
[0038] The industrial computer with the up-down stacking structure, referring to Figures 1-5, including plastic shell 1 and interface board 2 and mainboard 3 stacked in the plastic shell 1, interface board 2 is located at the bottom of the plastic shell 1, the interface board 2 is provided with several IO interfaces 21, IO interface 21 outward, mainboard 3 is stacked on the interface board 2, through the stacked structure to realize compact design; In one side of the mainboard 3 is provided with the coupling plate 4, the coupling plate 4 is perpendicular to the mainboard 3, the purpose of the coupling plate 4 is to be compatible with a variety of different manufacturers IO card, improve the adaptability of industrial computer, coupling plate 4 is located at the end of the mainboard 3, also has the compact feature; The mainboard 3 and the interface board 2 are connected through the metal column 5; The mainboard 3 is also provided with a heat dissipation assembly 6, the heat dissipation assembly 6 and the mainboard 3 are connected through the screw 31; In the side of the coupling plate 4 is provided with door type bending plate 7, the door type bending plate 7 contacts the metal column 5, the door type bending plate 7 and the metal column 5 are provided with metal connecting piece 72, the vertical part 71 of the door type bending plate 7 contacts the metal column 5 through the metal connecting piece 72, the door type bending plate 7 is a conductor, the metal column 5, the metal connecting piece 72 and the door type bending plate 7 export the static electricity of one end of the mainboard 3; One side of the heat dissipation assembly 6 is provided with L type bending plate 8, the vertical part 81 of the L type bending plate 8 contacts the screw 31, the metal column 5, the screw 31 and the L type bending plate 8 export the static electricity of the other end of the mainboard 3; The top of the door type bending plate 7 is provided with the first elastic sheet 73, the top of the L type bending plate 8 is provided with the second elastic sheet 82; The top of the plastic shell 1 is provided with metal guide rail 9, the metal guide rail 9 contacts the first elastic sheet 73 and the second elastic sheet 82; Through the above design, the static electricity of the interface board 2 and the mainboard 3 is led into the first elastic sheet 73 and the second elastic sheet 82 through the metal column 5, the screw 31, the door type bending plate 7 and the L type bending plate 8, and then the static electricity of the interface board 2 and the mainboard 3 is led out through the metal guide rail 9, the door type bending plate 7 and the L type bending plate 8 are respectively arranged at both ends in the plastic shell 1, and the design is compact.
[0039] See Figure 3 And Figure 4 , the heat dissipation assembly 6 includes base 61, several heat dissipation copper pipes 62 and two symmetrical heat dissipation fins 63, the heat dissipation copper pipe 62 is embedded in the heat dissipation fin 63; Two heat dissipation fans 64 are arranged between the heat dissipation fins 63; The two sides of the plastic shell 1 are respectively provided with air vents 11, the heat dissipation fan 64 is aligned with the air vent 11, the base 61 is installed on the CPU module of the mainboard 3, the heat of the CPU module is conducted to the heat dissipation fin 63 through the base 61 and the heat dissipation copper pipe 62, under the action of the heat dissipation fan 64, the cold air is blown out after passing through the two heat dissipation fins 63, the heat dissipation efficiency is high, and the heat dissipation assembly 6 is compact; The UPS power supply 65 is arranged between the heat dissipation assembly 6 and the door type bending plate 7, in the case of sudden power failure, the UPS power supply 65 provides temporary power supply for the mainboard 3 for 10-20s, so as to save the data in time.
[0040] Referring to Figure 1 and Figure 2 , the top of the plastic shell 1 is provided with a guide rail groove 12, the first elastic sheet 73 and the second elastic sheet 82 are exposed at the bottom of the guide rail groove 12; one side of the guide rail groove 12 is provided with a limiting block 121, a first gap is arranged between the limiting block 121 and the guide rail groove 12; the other side of the guide rail groove 12 is provided with a telescopic block 122, a second gap is arranged between the telescopic block 122 and the guide rail groove 12, a spring 123 is arranged between the telescopic block 122 and the top of the plastic shell 1, the telescopic block 122 has a wedge surface 1221, and the wedge surface 1221 faces the limiting block 122; the cross section of the metal guide rail 9 is in a flat U shape, the two sides of the metal guide rail 9 are respectively provided with a first horizontal plate 91 and a second horizontal plate 92, the first horizontal plate 91 is bound to the first gap, and the second horizontal plate 92 is bound to the second gap; when the metal guide rail 9 is installed, the first horizontal plate 91 is inclined to align with the first gap, the second horizontal plate 92 aligns with the wedge surface 1221 and is pressed downward with force, the telescopic block 122 retreats backward until the second horizontal plate 92 enters the second gap, then the telescopic block 122 restores to the original position under the rebounding action of the spring 123, the second horizontal plate 92 is bound to the second gap, and the metal guide rail 9 is quickly installed; after the metal guide rail 9 is installed in place, the metal guide rail 9 always contacts the first elastic sheet 73 and the second elastic sheet 82 whether in a static state or a moving state, and static electricity of the export interface board 2 and the main board 3 is realized.
Claims
1. An industrial computer of a stack-up structure, characterized by, The plastic shell, the interface board and the main board are arranged in a stack; A coupling board is arranged on one side of the main board, and the coupling board is perpendicular to the main board; The main board and the interface board are connected by metal columns; The main board is further provided with a heat dissipation assembly, and the heat dissipation assembly and the main board are connected by screws; A door-shaped bending plate is arranged on the side of the coupling board, and the door-shaped bending plate contacts the metal columns; One side of the heat dissipation assembly is provided with an L-shaped bending plate, and the L-shaped bending plate contacts the screws; A first elastic sheet is arranged on the top of the door-shaped bending plate, and a second elastic sheet is arranged on the top of the L-shaped bending plate; A metal guide rail is arranged on the top of the plastic shell, and the metal guide rail contacts the first elastic sheet and the second elastic sheet.
2. The top-and-bottom stacked industrial computer of claim 1, wherein, The heat dissipation assembly comprises a base, a plurality of heat dissipation copper pipes and two symmetrically arranged heat dissipation fins; A heat dissipation fan is arranged between the two heat dissipation fins.
3. The top-and-bottom stacked industrial computer of claim 2, wherein, Ventilation openings are arranged on both sides of the plastic shell, and the heat dissipation fan is aligned with the ventilation openings.
4. The top-and-bottom stacked industrial computer of claim 1, wherein, A metal connecting piece is arranged between the door-shaped bending plate and the metal column.
5. The top-and-bottom stacked industrial computer of claim 1, wherein, A guide rail groove is arranged on the top of the plastic shell.
6. The top-and-bottom stacked industrial computer of claim 5, wherein, The first elastic sheet and the second elastic sheet are exposed at the bottom of the guide rail groove.
7. The top-and-bottom stacked industrial computer of claim 6, wherein, A limiting block is arranged on one side of the guide rail groove, and a first gap is arranged between the limiting block and the guide rail groove.
8. The top-and-bottom stacked industrial computer of claim 7, wherein, An expansion block is arranged on the other side of the guide rail groove, and a second gap is arranged between the expansion block and the guide rail groove. The expansion block has a wedge surface, and the wedge surface faces the limiting block.
9. The top-and-bottom stacked industrial computer of claim 8, wherein, First and second horizontal plates are arranged on both sides of the metal guide rail; The first horizontal plate is bound in the first gap, and the second horizontal plate is bound in the second gap.
10. The top-and-bottom stacked industrial computer of any one of claims 1-9, wherein, The interface board is provided with a plurality of IO interfaces.