Integrated information processing center cabinet

By designing dry and wet areas in the information processing center cabinet, using perfluorohexanone solution to dissipate heat, and achieving high integration and stability of the equipment through cooling pipes and box structures, the integration and safety problems of equipment in battlefield hospitals are solved and efficient equipment operation is achieved.

CN120456488AInactive Publication Date: 2025-08-08THE FIRST AFFILIATED HOSPITAL OF GUANGXI MEDICAL UNIVERSITY
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Patent Information

Application Number
CN202510492165.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-18
Publication Date
2025-08-08
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing information processing equipment cabinets cannot achieve high integration, high mobility, high stability and high security in battlefield or temporary hospitals, and the heat dissipation methods are chaotic, affecting the normal operation and safety of the equipment.

Method used

An integrated information processing center cabinet is designed, including dry area and wet area, and the first and second equipment compartments of pulling type are installed respectively, and the heat is dissipated using perfluorohexanone solution, and the dry area and wet area are cooled through the first and second cooling pipes. The box structure realizes the area independence and sealing, and the plug and socket parts ensure stable electrical connection.

Benefits of technology

It realizes the centralized storage of information processing equipment with high integration, high motorization, high stability and high safety, reducing the impact of liquid fluctuations on the equipment, and ensuring the normal operation and safety of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the field of square cabin type medical equipment, and particularly discloses an integrated information processing center cabinet which comprises a first equipment cabin, a second equipment cabin, a third equipment cabin, a dry area, a wet area, a refrigeration unit, a first cooling pipe, a second cooling pipe, a plug part, a socket part and a sleeve box. The first equipment cabin and the second equipment cabin are of independent pull-out structures and are respectively mounted in the dry area and the wet area, the first equipment cabin can be used for placing equipment with dynamic functions and wireless precision conduction, and the second equipment cabin can be used for placing equipment with static functions and an energy device; the wet area and the second equipment cabin form a mutually communicated space and are filled with a perfluorohexanone solution, so that the heat dissipation and protection effects on equipment in the second equipment cabin are achieved, and the first cooling pipe and the second cooling pipe can cool the dry area and the wet area at the same time, so that the heat dissipation effect is guaranteed; and high-integration, high-maneuverability, high-stability and high-safety centralized storage of the information processing control module equipment is realized.
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Description

Technical Field

[0001] The invention belongs to the field of modular medical equipment, and in particular relates to an integrated information processing center cabinet. Background Art

[0002] In battlefields or makeshift hospitals, medical equipment requires information processing and control modules, including control, energy storage, information storage and control, and signal transmission and reception. These modules must be highly integrated, highly maneuverable, stable, and secure. However, existing information processing equipment chassis cannot centrally house these modules and offer limited mobility. Furthermore, each unit module typically dissipates heat within the cabinet using air cooling and external liquid cooling. The types and methods of heat dissipation are dispersed and complex, making integration difficult. This makes it difficult to use in smaller battlefield or makeshift hospitals, hindering the normal operation of information processing equipment and preventing high security.

[0003] The patent document with the application number "CN2024116823498" discloses a rack-mounted storage server heat dissipation device, including a cabinet, an assembly frame and a movable clamping component. The bottom of the inner cavity of the assembly frame is nested with a bottom heat dissipation component, and the top of the inner cavity of the assembly frame is provided with a top heat dissipation bag. This comparative document absorbs heat by means of the coolant filled inside to complete the heat dissipation treatment. On the other hand, in conjunction with the coolant filled in the bottom heat dissipation component, the coolant prepared by perfluorohexanone is used to achieve contact between the bottom of the rack-mounted storage server and the safety coolant. The heat dissipation device in this comparative document is only suitable for use with static equipment such as storage servers, and is not suitable for use with wireless precision conduction equipment or equipment with dynamic functions. In addition, the heat dissipation of the perfluorohexanone solution by the air convection component will cause gas shock to the equipment and cause the solution to vibrate to produce a water hammer effect, thereby affecting the safety and stability of the equipment.

[0004] The disclosure of the above background technology content is only used to assist in understanding the inventive concept and technical solution of the present invention. It does not necessarily belong to the prior art of this patent application. In the absence of clear evidence that the above content has been disclosed on the filing date of this patent application, the above background technology should not be used to evaluate the novelty and creativity of this application. Summary of the Invention

[0005] The purpose of the present invention is to provide an integrated information processing center cabinet, so as to overcome the defects of existing integrated cabinets that are not suitable for use in battlefields or shelters and cannot centrally accommodate various information processing control module equipment with high integration, high mobility, high stability and high safety standards.

[0006] To achieve the above-mentioned objectives, the present invention provides an integrated information processing center cabinet, including a cabinet body, wherein a plurality of mutually independent first equipment compartments, second equipment compartments and third equipment compartments are provided in the cabinet body, the first equipment compartment and the second equipment compartment can be pulled outward from the front of the cabinet body, a first hatch is provided on the top of the first equipment compartment, a second hatch is provided on the top of the second equipment compartment, a socket component is provided on the side of the third equipment compartment facing the first equipment compartment and the second equipment compartment, a plug component matching the socket component is provided at one end of the first equipment compartment and the second equipment compartment, a dry area and a wet area are further provided in the cabinet body, the dry area and the wet area are separated from the third equipment compartment, the first equipment compartment is arranged in the dry area, the second equipment compartment is arranged in the wet area, and the third equipment compartment is provided. A first through hole is provided on the side of the second equipment compartment, and a plurality of first slots and second slots are provided on the front of the cabinet. The position of the first slot corresponds to the dry area, and the position of the second slot corresponds to the wet area. A second through hole connected to the wet area is provided on the side of the second slot; one end of the first equipment compartment can be inserted into the first slot, and one end of the second equipment compartment can be inserted into the second slot. At this time, the first through hole and the second through hole are aligned with each other and the plug component and the socket component are plugged into each other; a refrigeration unit is provided in the third equipment compartment, and the refrigeration unit is provided with a first cooling pipe and a second cooling pipe. The first cooling pipe extends into the dry area, and the second cooling pipe extends into the wet area. The wet area is filled with perfluorohexanone solution.

[0007] Preferably, in the above technical solution, the dry area is located above the wet area, and there are several wet areas, each wet area is stacked in the vertical direction and independent of each other; the other end of the first equipment compartment and the other end of the second equipment compartment are provided with a display panel and a foldable handle.

[0008] Preferably, in the above technical solution, an interlayer cavity is opened inside the two side walls of the second slot, one end of the interlayer cavity is connected to the wet area, the second through hole is connected to the interlayer cavity, and the end of the second cooling pipe extends into the interlayer cavity.

[0009] Preferably, the above technical solution further includes a sleeve box, one end of the sleeve box is inserted into the second slot in a slidable manner and is provided with a makeshift opening, the other end of the sleeve box is provided with a sleeve opening, one end of the second equipment compartment is inserted into the sleeve box in a slidable manner through the sleeve opening, third through holes are provided on both sides of the sleeve box, the position of the third through hole corresponds to the position of the first through hole and the second through hole, and a box opening is provided on the top of the sleeve box, and the box opening corresponds to the position of the second hatch.

[0010] Preferably, in the above technical solution, the plug component is provided with an outer cover and a core body, one end of the outer cover is fixedly connected to one end of the second equipment compartment, the other end of the outer cover is provided with a cover opening, and a limiting ring protruding outward is provided on the outer periphery of the cover opening, and the middle part of the outer cover passes through the clearance opening in a slidable manner. When the second equipment compartment extends outward from the sleeve opening, the clearance opening can block the limiting ring, and at this time, the third through hole and the first through hole can be staggered with each other and block the first through hole.

[0011] Preferably, in the above technical solution, a thrust spring and a damping rod are connected between one end of the second equipment compartment and one end of the sleeve, and the thrust spring is sleeved on the outside of the damping rod. The thrust spring can push the second equipment compartment outward from the sleeve opening.

[0012] Preferably, in the above technical solution, a guide groove is provided at the bottom of the second slot, the direction of the guide groove is consistent with the direction of the slot, a slider is provided at the bottom of the sleeve, the slider is slidably stuck in the guide groove, and a limit block is provided at the end of the guide groove. When the sleeve extends outward from the slot, the limit block can block and limit the slider. At this time, the second through hole can be staggered with the third through hole so as to block the second through hole and the third through hole at the same time.

[0013] Preferably, in the above technical solution, a fourth through hole is provided at the end of the second slot, a sealing sleeve is provided in the wet area, the sealing sleeve is sleeved on the outer periphery of the socket component, the end of the sealing sleeve is arranged around the outer periphery of the fourth through hole, and the other end of the outer cover can pass through the fourth through hole and extend into the sealing sleeve and be sleeved on the outside of the socket component.

[0014] Preferably, in the above technical solution, a plurality of conductive sheets are provided in the first equipment compartment and the second equipment compartment, a plurality of connection terminals are provided on the conductive sheets, the core includes a high-voltage plug, and one end of the conductive sheet is fixedly connected to the high-voltage plug.

[0015] Preferably, in the above technical solution, a fifth through hole connected to the dry area is provided at the end of the first slot, and a first vent and a second vent are provided at one end of the first equipment compartment. A filter is installed at the first vent, and a ventilation fan is installed at the second vent, and the filter and the ventilation fan are located within the range of the fifth through hole.

[0016] Compared with the existing technology, the present invention has the following beneficial effects:

[0017] 1. The integrated information processing center computer room of the present invention is provided with a dry area and a wet area in a cabinet at the same time, and a pull-out first equipment compartment and a pull-out second equipment compartment are installed in the dry area and the wet area respectively. The first equipment compartment can place equipment with dynamic functions and wireless precision conduction, and the second equipment compartment can place static function equipment and energy devices. The wet area and the second equipment compartment form a mutually connected space and are filled with perfluorohexanone solution, thereby playing a role in heat dissipation and protection of the equipment in the second equipment compartment. The refrigeration unit can cool the dry area and the wet area at the same time through the first cooling pipe and the second cooling pipe to ensure the heat dissipation effect, thereby realizing the centralized storage of various information processing control module equipment in medical equipment with high integration, high mobility, high stability and high safety.

[0018] 2. The sleeve in the present invention is arranged between the second equipment compartment and the second slot to form a sliding cover structure. When the second equipment compartment is pulled out, the sleeve can block the first through hole and then the second through hole, thereby forming two independent areas between the second equipment compartment and the wet area and storing solutions respectively; when the second equipment compartment is pushed in, the third through hole on the sleeve can first be connected with the second through hole and then with the first through hole, thereby making the second equipment compartment and the wet area connected again, so that they can be cooled as a whole by the second cooling pipe; this process can always keep the perfluorohexanone solution in the wet area and the second equipment compartment in a relatively stable state, so as to minimize the impact of the water hammer effect caused by liquid fluctuations on the equipment.

[0019] 3. A limiting ring is installed at the end of the outer cover provided in the plug component of the present invention. When in use, the outer cover can slide through the clearance opening to play a guiding role, and the limiting ring can abut against the edge of the clearance opening to form a force point to pull the sleeve outward. When the second equipment compartment is fully pulled out, the outer cover can also play the role of connecting and supporting the second equipment compartment to prevent the second equipment compartment from tipping down.

[0020] 4. The spring with the damping pull rod can automatically and slowly pop outward when the second equipment compartment is unlocked, thereby closing the first through hole on the side of the second equipment compartment and forming an independent enclosed area for the second equipment compartment, thereby preventing the leakage of the perfluorohexanone solution and preventing the perfluorohexanone solution from splashing out due to excessive popping speed.

[0021] 5. The socket components and plug components in the present invention can be automatically electrically connected when the first equipment compartment and the second equipment compartment are pushed into the cabinet, and the high-voltage pins in the core are connected to the high-voltage end of the equipment through rigid conductive sheets and terminal blocks, thereby ensuring the connection stability when the equipment is in use.

[0022] 6. The first equipment compartment in the present invention is equipped with two ventilation openings, and is provided with a filter and a ventilation fan. A cooling pipe is provided in the dry area. The fan can form an air circulation between the first equipment compartment and the dry area, thereby improving the circulation and cooling effect in the first equipment compartment. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] Figure 1 It is a structural diagram of the integrated information processing center cabinet of the present invention.

[0024] Figure 2 This is a structural diagram of the integrated information processing center cabinet from another perspective.

[0025] Figure 3 It is a partial cutaway view of the integrated information processing center cabinet.

[0026] Figure 4 This is a partial cross-sectional view after the first equipment compartment and the second equipment compartment are pulled out.

[0027] Figure 5 This is a partial cutaway view of the cabinet.

[0028] Figure 6 It is a partial cutaway view of the casing and the second equipment compartment.

[0029] Figure 7 This is the structural diagram of the first equipment compartment.

[0030] Description of main reference numerals:

[0031] 100 - cabinet, 110 - first slot, 111 - fifth through hole, 120 - second slot, 121 - guide groove, 122 - limit block, 123 - fourth through hole, 130 - second through hole, 140 - first cooling pipe, 150 - second cooling pipe, 160 - interlayer cavity;

[0032] 200-first equipment compartment, 210-first hatch, 220-first vent, 230-second vent, 240-filter, 250-ventilation fan;

[0033] 300-second equipment compartment, 310-second hatch, 320-first through hole;

[0034] 400-the third equipment compartment;

[0035] 500-socket, 510-plug, 520-outer cover, 521-cover opening, 522-limiting ring, 540-conductive sheet, 541-connecting terminal, 542-high-voltage plug;

[0036] 600-dry area;

[0037] 700-wet area, 710-sealing sleeve;

[0038] 800-display panel, 810-handle, 820-hook plate;

[0039] 900-housing, 910-yield opening, 920-housing opening, 930-third through hole, 940-thrust spring, 950-damping rod, 960-slider, 970-housing opening. DETAILED DESCRIPTION

[0040] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0041] In the description of the present invention, it should be noted that the terms "center", "longitudinal", "lateral", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "top", "bottom", "top surface", "bottom surface", "inside", "outside", "inside", "outside" and the like to indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be understood as limiting the present invention.

[0042] In the description of the present invention, "several" means one or more, "many" means more than two, "greater than," "less than," and "exceed" are understood to exclude the number itself, while "above," "below," and "within" are understood to include the number itself. The terms "first," "second," and "third" are used solely for descriptive purposes and to distinguish technical features. They are not to be construed as indicating or implying relative importance, or as implicitly specifying the number or order of the technical features indicated.

[0043] In the description of the present invention, it should be noted that, unless otherwise clearly specified or limited, the terms "installed," "connected," "connected," and "set" should be understood in a broad sense. For example, they can refer to fixed connections, detachable connections, or integral connections; they can refer to mechanical connections or electrical connections; they can refer to direct connections or indirect connections through an intermediate medium, or they can refer to internal connections between two components. Those skilled in the art will understand the specific meanings of the above terms in the present invention based on the specific circumstances. The following describes an embodiment of the present invention based on its overall structure.

[0044] like Figures 1 to 7As shown, the integrated information processing center cabinet in this embodiment includes: a cabinet body 100, a first slot 110, a fifth through hole 111, a second slot 120, a guide groove 121, a limit block 122, a fourth through hole 123, a second through hole 130, a first cooling pipe 140, a second cooling pipe 150, an interlayer cavity 160, a first equipment compartment 200, a first hatch 210, a first vent 220, a second vent 230, a filter 240, a ventilation fan 250, a second equipment compartment 300, and a second hatch 310. 10. First through hole 320, third equipment compartment 400, socket component 500, plug component 510, outer cover 520, cover opening 521, limiting ring 522, conductive sheet 540, terminal block 541, high-voltage pin 542, dry area 600, wet area 700, sealing sleeve 710, display panel 800, handle 810, hook plate 820, sleeve box 900, make way opening 910, sleeve opening 920, third through hole 930, thrust spring 940, damping rod 950, slider 960, box opening 970.

[0045] The cabinet body 100 is divided into an independent third equipment compartment 400, and a dry area 600 and a wet area 700 are provided on the front side of the third equipment compartment 400. A cabinet door connected to the rear side of the third equipment compartment 400 is provided on the cabinet body 100, wherein the dry area 600 is located above the wet area 700. There are two wet areas 700, and each wet area 700 is stacked in the vertical direction and is independent of each other. A plurality of first slots 110 are provided in the dry area 600, and each first slot 110 is arranged at intervals in the horizontal direction. A plurality of second slots 120 are provided in the wet area 700, and each second slot 120 is arranged at intervals in the horizontal direction. The mouth of the first slot 110 is located at the mouth of the second slot The openings of 120 are all opened on the front of the cabinet 100, one end of the first equipment compartment 200 can be inserted into the first slot 110 from the opening of the first slot 110, and one end of the second equipment compartment 300 can be inserted into the second slot 120 from the opening of the second slot 120. A first hatch 210 is opened on the top of the first equipment compartment 200, and a second hatch 310 is opened on the top of the second equipment compartment 300; a socket component 500 is provided on the side of the third equipment compartment 400 facing the first equipment compartment 200 and the second equipment compartment 300, and a plug component 510 matching the socket component 500 is provided at one end of the first equipment compartment 200 and the second equipment compartment 300. A first through hole 320 is provided on the side of the second equipment compartment 300, and a second through hole 130 connected to the wet area 700 is provided on the side of the second slot 120. When the second equipment compartment 300 is fully inserted into the second slot 120, the first through hole 320 and the second through hole 130 are aligned with each other and the plug 510 and the socket 500 are plugged into each other; a refrigeration unit is installed in the third equipment compartment 400, and the refrigeration unit is provided with a first cooling pipe 140 and a second cooling pipe 150. The first cooling pipe 140 extends into the dry area 600, and the second cooling pipe 150 extends into the wet area 700. The wet area 700 is filled with perfluorohexanone solution; A display panel 800 and a downward-foldable handle 810 are installed at the other end of the equipment compartment 200 and the other end of the second equipment compartment 300. An independent battery is installed inside the display panel 800, and information such as temperature and status can be displayed on the display panel 800. A hook plate 820 that can move up and down is also provided on the back side of the panel. Sockets are provided on both sides of the first slot 110 and the second slot 120, and pins are provided in the sockets. When the first equipment compartment 200 and the second equipment compartment 300 are closed, the hook plate 820 can be inserted into the socket and hooked on the pin. When the handle 810 is opened upward, the hook plate 820 can be moved upward and separated from the pin.

[0046] In more detail, a rack is provided at the end of the hook plate 820, and a spring is provided between the end of the rack and the display panel 800. The length direction of the rack is consistent with the moving direction of the hook plate 820. A motor and gear are provided in the display panel 800. When the handle 810 is pulled upward, it can trigger the telecommunications starter motor. The motor drives the gear to drive the rack to move upward and compress the spring, thereby separating the hook plate 820 from the pin. When the first equipment compartment 200 and the second equipment compartment 300 are in a closed state, the elastic force of the spring can push the rack and the hook plate 820 downward, so that they are tightly connected to the pin.

[0047] In more detail, an interlayer cavity 160 is opened inside the two side walls of the second slot 120, one end of the interlayer cavity 160 is connected to the wet area 700, the second through hole 130 and the interlayer cavity 160 are connected to each other, and the end of the second cooling pipe 150 extends into the interlayer cavity 160 to the position corresponding to the second through hole 130.

[0048] In more detail, one end of the sleeve 900 is inserted into the second slot 120 in a slidable manner and is provided with a clearance opening 910, and the other end of the sleeve 900 is provided with a sleeve opening 920. One end of the second equipment compartment 300 is inserted into the sleeve 900 in a slidable manner through the sleeve opening 920. Third through holes 930 are provided on both sides of the sleeve 900. The positions of the third through holes 930 correspond to the positions of the first through holes 320 and the second through holes 130. A box opening 970 is provided on the top of the sleeve 900, and the box opening 970 corresponds to the position of the second hatch 310; the plug 510 includes an outer cover 520 and a core body, one end of the outer cover 520 is fixedly connected to one end of the second equipment compartment 300, and the outer cover 5 A cover opening 521 is provided at the other end of 20, and a limit ring 522 protruding outward is provided on the outer periphery of the cover opening 521. The middle part of the outer cover 520 passes through the clearance opening 910 in a slidable manner. A thrust spring 940 and a damping rod 950 are installed between one end of the second equipment compartment 300 and one end of the sleeve 900. The thrust spring 940 is sleeved on the outside of the damping rod 950. The thrust spring 940 can push the second equipment compartment 300 outward from the sleeve opening 920. When the second equipment compartment 300 extends outward from the sleeve opening 920, the clearance opening 910 can block the limit ring 522. At this time, the third through hole 930 and the first through hole 320 can be staggered with each other and block the first through hole 320.

[0049] In more detail, a number of conductive sheets 540 are provided at the bottom of the first equipment compartment 200 and the second equipment compartment 300. The conductive sheet 540 is a long strip structure, and a plurality of wiring terminals 541 are arranged at intervals on the surface. The core includes a high-voltage pin 542 and a data interface. One end of the conductive sheet 540 is fixedly connected to the high-voltage pin 542. Two guide grooves 121 are provided at the bottom of the second slot 120. The direction of the guide groove 121 is consistent with the direction of the slot and is arranged parallel to the direction of the slot. A slider 960 protruding outward is provided at the bottom of the sleeve 900. The slider 960 is slidably stuck in the guide groove 121, and a limit block 122 is installed at the end of the guide groove 121. When the sleeve 900 extends outward from the slot, the limit block 122 can block the slider 960. At this time, the second through hole 130 can be staggered with the third through hole 930, and can simultaneously block the second through hole 130 and the third through hole 930.

[0050] In addition, a fifth through hole 111 connected to the dry area 600 is provided at the end of the first slot 110, and a first vent 220 and a second vent 230 are provided through one end of the first equipment compartment 200. A filter 240 is installed at the first vent 220, and a ventilation fan 250 is installed at the second vent 230. The filter 240, the ventilation fan 250 and the outer cover 520 on the first equipment compartment 200 are all located within the range of the fifth through hole 111.

[0051] Next, the working principle of an integrated information processing center cabinet in this embodiment is described in detail to enable those skilled in the art to better understand the present invention:

[0052] When the cabinet is used in a mobile square cabin hospital, dynamic equipment and wireless signal receiving equipment can be installed in the first equipment compartment 200, and static electrical equipment such as storage equipment or batteries can be installed in the second equipment compartment 300, and the strong current terminal is connected to the terminal 541 on the conductive sheet 540, and the data terminal is connected to the data interface in the core of the plug 510; in the third equipment compartment 400, the strong current terminal 541 in the socket 500 and the data socket can be connected according to design needs. There are also two refrigeration units in the third equipment compartment 400, and two control units. The cooling unit cools the dry area 600 and the wet area 700 through the first cooling pipe 140 and the second cooling pipe 150 respectively, and the wet area 700 is filled with perfluorohexanone solution; when the second equipment compartment 300 is closed, the positions of the first through hole 320, the second through hole 130 and the third through hole 930 are aligned with each other, so that the interior of the second equipment compartment 300, the wet area 700 and the interlayer cavity 160 are interconnected, and the second cooling pump can cool down all the perfluorohexanone solutions in the above areas at the same time. When it is necessary to open the second equipment compartment 300 for equipment maintenance and data processing, first, the second equipment compartment 300 is opened by the handle 810. The equipment compartment 300 is unlocked, and the thrust spring 940 can push the second equipment compartment 300 out of the sleeve opening 920 of the sleeve box 900 and limit the length of the second equipment compartment 300 extending from the sleeve opening 920 through the limiting ring 522, and at the same time separate the plug component 510 and the socket component 500 of the equipment compartment from each other, so that the equipment is automatically powered off. At this time, the first through hole 320 is covered by the side of the sleeve box 900, so that the interior of the second equipment compartment 300 forms an independent sealed space for containing perfluorohexanone solution; then when the handle 810 is continued to be pulled outward, the second equipment compartment 300 and the sleeve box 900 are separated. They can move outward at the same time until they are pulled to the position where the limit block 122 and the slider 960 abut each other. At this time, the second through hole 130 and the third through hole 930 are staggered with each other so that both are sealed at the same time. In this way, the wet area 700 and the interlayer cavity 160 can form a closed space to hold the perfluorohexanone solution and achieve the effect of independent sealing. This design will not affect the immersion height of the perfluorohexanone solution in each area, and the areas are independently separated from each other. It will not cause damage to electrical equipment due to the water hammer effect caused by a large number of water waves, nor will it affect the normal operation and cooling of other second equipment compartments 300.

[0053] Similarly, when a thrust is applied to the end of the second equipment compartment 300 to close the second equipment compartment 300, the supporting force of the thrust spring 940 itself can enable the second equipment compartment 300 and the sleeve 900 to move toward the interior of the second slot 120. First, the positions of the second through hole 130 and the third through hole 930 can be restored to the correct position, and then the two ends of the thrust spring 940 are compressed, and then the first through hole 320 and the third through hole 930 are aligned, thereby continuing to connect the space of the second equipment compartment 300 and the wet area 700 to each other.

[0054] Perfluorohexanone solution has the characteristics of insulation and fire resistance. Using perfluorohexanone solution as a cooling and protection medium for electrical equipment can make the internal area of the entire cabinet have higher safety and stability.

[0055] To sum up, the integrated information processing center room in this embodiment is provided with a dry area 600 and a wet area 700 in the cabinet at the same time, and a pull-out first equipment compartment 200 and a pull-out second equipment compartment 300 are installed in the dry area 600 and the wet area 700 respectively. The first equipment compartment 200 can be used to place equipment with dynamic functions and wireless precision conduction, and the second equipment compartment 300 can be used to place static function equipment and energy devices. The wet area 700 and the second equipment compartment 300 form an interconnected space and are filled with perfluorohexanone solution, thereby playing a role in heat dissipation and protection of the equipment in the second equipment compartment 300. The refrigeration unit can cool the dry area 600 and the wet area 700 at the same time through the first cooling pipe 140 and the second cooling pipe 150 to ensure the heat dissipation effect, thereby realizing the centralized storage of various information processing control module equipment in medical equipment with high integration, high mobility, high stability and high safety.

[0056] The foregoing descriptions of specific exemplary embodiments of the present invention are for the purpose of illustration and description. These descriptions are not intended to limit the invention to the precise form disclosed, and it is obvious that many changes and variations can be made based on the above teachings. Although an embodiment of the present invention has been shown and described, this specific embodiment is only an explanation of the present invention and is not a limitation of the invention. The specific features, structures, materials or characteristics described can be combined in an appropriate manner in any one or more embodiments or examples. The purpose of selecting and describing the exemplary embodiments is to explain the specific principles of the present invention and its practical application, so that those skilled in the art can make modifications, substitutions, variations and various different selections and changes to the embodiments as needed without departing from the principles and purpose of the present invention after reading this specification, but they are protected by patent law as long as they are within the scope of the claims of the present invention.

Claims

1. An integrated information processing center cabinet, comprising a cabinet body, wherein the cabinet body is provided with a plurality of mutually independent first, second, and third equipment compartments, wherein the first and second equipment compartments are removable from the front of the cabinet body, a first hatch is provided at the top of the first equipment compartment, and a second hatch is provided at the top of the second equipment compartment, wherein: A socket is provided on one side of the third equipment compartment facing the first equipment compartment and the second equipment compartment, and a plug matching the socket is provided at one end of the first equipment compartment and the second equipment compartment. A dry area and a wet area are further provided in the cabinet, and the dry area and the wet area are separated from the third equipment compartment. The first equipment compartment is arranged in the dry area, and the second equipment compartment is arranged in the wet area. A first through hole is provided through the side of the second equipment compartment, and a plurality of first slots and second slots are provided on the front of the cabinet. The position of the first slot corresponds to the dry area, and the position of the second slot corresponds to the wet area. A second through hole connected to the wet area is provided on the side of the second slot; One end of the first equipment compartment can be inserted into the first slot, and one end of the second equipment compartment can be inserted into the second slot. At this time, the first through hole and the second through hole are aligned with each other and the plug component and the socket component are plugged into each other; a refrigeration unit is provided in the third equipment compartment, and the refrigeration unit is provided with a first cooling pipe and a second cooling pipe. The first cooling pipe extends into the dry area, and the second cooling pipe extends into the wet area. The wet area is filled with perfluorohexanone solution.

2. The integrated information processing center cabinet according to claim 1, characterized in that: The dry area is located above the wet area. There are several wet areas, which are stacked vertically and independent of each other. The other end of the first equipment compartment and the other end of the second equipment compartment are provided with a display panel and a foldable handle.

3. The integrated information processing center cabinet according to claim 1, characterized in that: An interlayer cavity is opened inside the two side walls of the second slot, one end of the interlayer cavity is connected to the wet area, the second through hole is connected to the interlayer cavity, and the end of the second cooling pipe extends into the interlayer cavity.

4. The integrated information processing center cabinet according to claim 1, characterized in that: It also includes a sleeve, one end of the sleeve is inserted into the second slot in a slidable manner and is provided with a makeshift opening, the other end of the sleeve is provided with a sleeve opening, one end of the second equipment compartment is inserted into the sleeve in a slidable manner through the sleeve opening, third through holes are provided on both sides of the sleeve, the position of the third through hole corresponds to the position of the first through hole and the second through hole, and a box opening is provided on the top of the sleeve, and the box opening corresponds to the position of the second hatch.

5. The integrated information processing center cabinet according to claim 4, characterized in that: The plug component is provided with an outer cover and a core body, one end of the outer cover is fixedly connected to one end of the second equipment compartment, the other end of the outer cover is provided with a cover opening, and a limiting ring protruding outward is provided on the outer periphery of the cover opening, and the middle part of the outer cover passes through the clearance opening in a slidable manner. When the second equipment compartment extends outward from the sleeve opening, the clearance opening can block the limiting ring and limit the position. At this time, the third through hole and the first through hole can be staggered with each other and block the first through hole.

6. The integrated information processing center cabinet according to claim 5, characterized in that: A thrust spring and a damping rod are connected between one end of the second equipment compartment and one end of the sleeve box. The thrust spring is sleeved on the outside of the damping rod. The thrust spring can push the second equipment compartment outward from the sleeve opening.

7. The integrated information processing center cabinet according to claim 4, characterized in that: A guide groove is provided at the bottom of the second slot, and the direction of the guide groove is consistent with the direction of the slot. A slider is provided at the bottom of the sleeve, and the slider is slidably stuck in the guide groove. A limit block is provided at the end of the guide groove. When the sleeve extends outward from the slot, the limit block can block and limit the slider. At this time, the second through hole can be staggered with the third through hole so as to block the second through hole and the third through hole at the same time.

8. The integrated information processing center cabinet according to claim 5, characterized in that: A fourth through hole is provided at the end of the second slot, a sealing sleeve is provided in the wet area, the sealing sleeve is sleeved on the outer circumference of the socket component, the end of the sealing sleeve is arranged around the outer circumference of the fourth through hole, and the other end of the outer cover can pass through the fourth through hole, extend into the sealing sleeve and be sleeved on the outside of the socket component.

9. The integrated information processing center cabinet according to claim 5, characterized in that: Several conductive sheets are provided in the first equipment compartment and the second equipment compartment. Several connection terminals are provided on the conductive sheets. The core includes a high-voltage plug and a data interface. One end of the conductive sheet is fixedly connected to the high-voltage plug.

10. The integrated information processing center cabinet according to claim 1, characterized in that: A fifth through hole connected to the dry area is provided at the end of the first slot, and a first vent and a second vent are provided at one end of the first equipment compartment. A filter is installed at the first vent, and a ventilation fan is installed at the second vent. The filter and the ventilation fan are located within the range of the fifth through hole.