Server-side liquid cooling structure, server-side power supply and liquid cooling structure, and device

By setting up a liquid-cooling module and power supply module on the side of the server installation part, and using sliding and rotating components to achieve quick connection and separation of liquid-cooling and power supply, the problems of low space utilization and inconvenient maintenance are solved, and efficient space utilization and simplified maintenance process are achieved.

WO2025161338A1PCT designated stage Publication Date: 2025-08-07INSPUR SUZHOU INTELLIGENT TECH CO LTD
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Patent Information

Application Number
PCT/CN2024/111521
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Priority Date
2024-01-30
Filing Date
2024-08-12
Publication Date
2025-08-07

AI Technical Summary

Technical Problem

The liquid-cooled structure and power supply design of traditional servers lead to low space utilization, low heat dissipation efficiency, and inconvenient maintenance.

Method used

The liquid-cooling module and the power supply module are respectively fixed to the server installation part, connected to the external cooling circulation system and the power supply, and the sliding component and rotating component are used to quickly connect and separate the liquid-cooling tube interface and electrical connector, and are connected and disconnected using the side wall space of the chassis.

Benefits of technology

It improves the space utilization rate of the server chassis, simplifies the installation and maintenance process, reduces costs, and improves operation and maintenance efficiency and heat dissipation performance.

✦ Generated by Eureka AI based on patent content.

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Abstract

A server-side liquid cooling structure, a server-side power supply and liquid cooling structure, and a device, relating to the technical field of server design. The server-side liquid cooling structure comprises a liquid cooling module (400) and a liquid cooling quick connection module (500). The liquid cooling module (400) comprises at least one first liquid cooling pipe interface, the first liquid cooling pipe interface being fixed on one side of a server mounting part and connected to an external cooling circulation system. The liquid cooling quick connection module (500) comprises: a second liquid cooling pipe interface, fitted with the first liquid cooling pipe interface; and a sliding assembly, connected to the second liquid cooling pipe interface and used to drive the second liquid cooling pipe interface to approach or move away from the first liquid cooling pipe interface along a preset sliding path. By means of using space on a side wall of a chassis to configure a water intake space, the utilization rate of the layout space of a server is increased, and the liquid cooling structure can be centrally maintained, so that the operation and maintenance efficiency can be improved.
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Description

Server-side liquid cooling structure, server-side power supply and liquid cooling structure and equipment

[0001] CROSS-REFERENCE TO RELATED APPLICATIONS

[0002] This application claims priority to the Chinese patent application filed with the China Patent Office on January 30, 2024, with application number 202410129092.7 and application name “Server-side liquid cooling structure, server-side power supply and liquid cooling structure and equipment”, all contents of which are incorporated by reference into this application. Technical Field

[0003] The present application relates to the technical field of server design, and in particular to a server-side liquid cooling structure, a server-side power supply and liquid cooling structure, a server chassis, and a server. Background Art

[0004] Common liquid-cooled servers typically choose to fix quick connectors on the rear window of the chassis. The rear window of the server is often equipped with related modules such as fans, power supplies, and I / O (input / output) interfaces. When the server is in the cabinet, it often needs to connect different external cables such as power cables, data cables, and network cables. When the quick connectors and power supply components are arranged on the rear window, they will take up space and affect the overall heat dissipation of the system. Therefore, a correct and reasonable system layout can maximize the space utilization and heat dissipation performance of the entire chassis system. The traditional server rear-outlet architecture cannot effectively dissipate heat for the network card equipment located at the back of the server. When system maintenance is required, and because the signal cables are set at the rear of the chassis body, the rear-outlet server is inconvenient during both installation and maintenance. It can be seen that the space utilization rate and operation and maintenance efficiency of current services are low.

[0005] Summary of the Invention

[0006] In view of the above problems, some embodiments of the present application are proposed to provide a server-side liquid cooling structure, a server-side power supply and liquid cooling structure, a server chassis and a server that overcome the above problems or at least partially solve the above problems.

[0007] In order to solve the above problems, in the first aspect of the present application, some embodiments of the present application disclose a server-side liquid cooling structure, including: a liquid cooling module, a liquid cooling quick-connect module,

[0008] The liquid cooling module includes at least one first liquid cooling pipe interface, which is fixed to one side of the server installation portion and connected to the external cooling circulation system;

[0009] Liquid cooling quick-connect module includes:

[0010] The second liquid cooling pipe interface matches the first liquid cooling pipe interface;

[0011] A sliding assembly connected to the second liquid cooling pipe interface;

[0012] By operating the sliding assembly, the second liquid cooling pipe interface is driven along a preset sliding trajectory to approach the first liquid cooling pipe interface so as to connect the first liquid cooling pipe interface and the second liquid cooling pipe interface; by operating the sliding assembly, the second liquid cooling pipe interface is driven along a preset sliding trajectory away from the first liquid cooling pipe interface so as to separate the first liquid cooling pipe interface and the second liquid cooling pipe interface.

[0013] In some embodiments, the liquid cooling quick-connect module further includes:

[0014] The liquid-cooled fixed component is located outside the sliding component, contacts the sliding component, and is used to fix the sliding component; the sliding component slides in the liquid-cooled fixed component.

[0015] In some embodiments, the sliding assembly includes:

[0016] A sliding member, fixedly connected to the second liquid cooling pipe interface;

[0017] The fixing member is connected to the sliding member and is used to drive the sliding member to slide along a preset sliding track.

[0018] In some embodiments, the sliding member and the fixing member form a rack and pinion mechanism; the gear of the rack and pinion mechanism is rotated to drive the rack of the rack and pinion mechanism to slide.

[0019] In some embodiments, the sliding member is a rack of a rack and pinion mechanism;

[0020] The fixed part is a gear of a rack and pinion mechanism;

[0021] By rotating the fixing part, the sliding part is driven to slide.

[0022] In some embodiments, the liquid cooling quick-connect module further includes:

[0023] The liquid-cooled manual operating part is connected to the fixed part and is used to operate the fixed part to rotate so as to drive the sliding part to slide.

[0024] In some embodiments, the liquid-cooled manual operating member is a first rotary handle.

[0025] The first rotating handle is arranged at the front end of the server mounting portion.

[0026] In some embodiments, the liquid cooling quick-connect module further includes:

[0027] The limiting component is arranged on the liquid-cooling fixed component and is used to limit the sliding range of the sliding component.

[0028] In some embodiments, the sliding member and the fixing member form a worm gear mechanism; and the worm of the worm gear mechanism is driven to rotate by rotating the worm wheel.

[0029] In some embodiments, the first liquid cooling pipe interface is a quick connector male or a quick connector female;

[0030] The second liquid cooling pipe interface is another type of quick connector male or quick connector female.

[0031] In a second aspect of the present application, some embodiments of the present application disclose a server-side power supply and liquid cooling structure, including: a power supply module, a power supply quick-connect module, and the server-side liquid cooling structure as described above,

[0032] The power supply module is fixed on one side of the server installation part;

[0033] The power supply quick-connect module is connected to the internal cable and is used to rotate along a preset rotation axis. When connected to the power supply module, it connects the power supply module and the internal cable.

[0034] The server-side liquid cooling structure is fixed to one side of the server installation portion;

[0035] The power supply quick-connect module and the liquid cooling quick-connect module of the server-side liquid cooling structure switch states synchronously.

[0036] In some embodiments, the power supply module includes:

[0037] Power contactor, used to connect external power supply;

[0038] The first electrical connector is arranged on the power contactor.

[0039] In some embodiments, the power supply quick connect module includes:

[0040] a second electrical connector connected to an internal cable;

[0041] The rotating member is connected to the second electrical connector and is used to rotate along a preset rotation axis to connect or disconnect the second electrical connector with the first electrical connector.

[0042] In some embodiments, the power supply quick connect module further includes:

[0043] The electrically connected operating member is connected to the rotating member and is used to operate the rotating member to rotate along a preset rotation axis.

[0044] In some embodiments, the electrical connection operating member is a second rotary handle.

[0045] The second rotating handle is arranged at the front end of the server mounting portion.

[0046] In some embodiments, the second rotary handle is connected to the liquid cooling quick connect module and is also used to operate the liquid cooling quick connect module.

[0047] In some embodiments, the first electrical connector is a male contactor or a female contactor;

[0048] The second electrical connector is another type of contactor male connector or contactor female connector.

[0049] In some embodiments, the power supply module and the server-side liquid cooling structure are located on the same side or opposite sides of the server mounting portion.

[0050] In a third aspect of the present application, some embodiments of the present application disclose a server chassis, including the above server-side liquid cooling structure, or the above server-side power supply and liquid cooling structure.

[0051] In a fourth aspect of the present application, some embodiments of the present application disclose a server, including the server chassis as described above.

[0052] Some embodiments of the present application include the following advantages:

[0053] In some embodiments of the present application, the liquid cooling module includes at least one first liquid cooling pipe interface, the first liquid cooling pipe interface is fixed to one side of the server installation part and is connected to the external cooling circulation system; the liquid cooling quick-connect module includes: a second liquid cooling pipe interface, which matches the first liquid cooling pipe interface; a sliding component, which is connected to the second liquid cooling pipe interface; by operating the sliding component, the second liquid cooling pipe interface is driven to approach the first liquid cooling pipe interface along a preset sliding trajectory to connect the first liquid cooling pipe interface and the second liquid cooling pipe interface; by operating the sliding component, the second liquid cooling pipe interface is driven away from the first liquid cooling pipe interface along a preset sliding trajectory to separate the first liquid cooling pipe interface and the second liquid cooling pipe interface; by arranging the liquid cooling module on one side of the chassis base, the side wall space of the server chassis can be utilized, thereby improving the space utilization rate of the server chassis, and the liquid cooling water pipe can be connected through the liquid cooling quick-connect module, thereby realizing the connection of the liquid cooling water pipe from the side wall space of the server chassis, solving the low space utilization rate of the server layout and the complex structural design, saving costs, and reducing the investment of manpower, financial resources and material resources; the structure is simple, easy to install, easy to maintain, and low in cost. BRIEF DESCRIPTION OF THE DRAWINGS

[0054] FIG1 is a schematic structural diagram of some embodiments of a server-side liquid cooling structure of the present application;

[0055] FIG2 a is a schematic diagram of a first state of a liquid cooling quick-connect assembly and a liquid cooling module in some embodiments of a server-side liquid cooling structure of the present application;

[0056] FIG2 b is a schematic diagram of a second state of a liquid cooling quick-connect assembly and a liquid cooling module in some embodiments of a server-side liquid cooling structure of the present application;

[0057] FIG3 is a schematic diagram of a liquid cooling quick-connect module structure of some embodiments of a server-side liquid cooling structure of the present application;

[0058] FIG4 is a schematic structural diagram of some embodiments of a server-side power supply and liquid cooling structure of the present application;

[0059] FIG5 is a schematic diagram showing the structural connectivity of some embodiments of a server-side power supply and liquid cooling structure of the present application;

[0060] FIG6 a is a schematic diagram of a first state of a power supply module and a power supply quick-connect module in some embodiments of a server-side power supply and liquid cooling structure of the present application;

[0061] FIG6 b is a schematic diagram of a second state of a power supply module and a power supply quick-connect module in some embodiments of a server-side power supply and liquid cooling structure of the present application;

[0062] FIG7 is an exploded view of a power supply module and a power supply quick-connect module in some embodiments of a server-side power supply and liquid cooling structure of the present application;

[0063] FIG8 is a schematic structural diagram of some embodiments of another server-side power supply and liquid cooling structure of the present application.

[0064] Explanation of the accompanying drawings: 100-server installation part, 200-power supply module, 210-power contactor, 220-first electrical connector, 300-power supply quick connect module, 310-second electrical connector, 320-rotating part, 330-electrical connection operating part, 400-liquid cooling module, 410-first liquid cooling pipe interface, 500-liquid cooling quick connect module, 510-second liquid cooling pipe interface, 520-sliding assembly, 521-sliding part, 522-fixing part, 530-liquid cooling fixing assembly, 540-liquid cooling manual operating part, 550-limiting assembly. DETAILED DESCRIPTION

[0065] In order to make the above-mentioned purposes, features and advantages of the present application more obvious and easy to understand, the present application is further described in detail below with reference to the accompanying drawings and specific implementation methods.

[0066] One of the core concepts of some embodiments of the present application is that power supply and / or liquid cooling water pipe connections can be achieved through the sidewall space of the server chassis. By manipulating the structures on both sides, the liquid cooling quick-connects can be plugged in, connecting the water lines and the power lines. Alternatively, the structures on both sides can be manipulated in the opposite direction to detach the liquid cooling quick-connects and disconnect the power lines. This solves the problems of low space utilization in server layouts, complex structural designs, low operation and maintenance efficiency, and inconvenient operations, saving costs and reducing human, financial, and material resources. Furthermore, the structure is simple, easy to install, and easy to maintain, resulting in low costs.

[0067] 1 , a block diagram of some server-side liquid cooling structure embodiments of the present application is shown, which may include the following components: a liquid cooling module 400, a liquid cooling quick-connect module 500,

[0068] The liquid cooling module 400 includes at least one first liquid cooling pipe interface 410, which is fixed to one side of the server installation portion 100 and connected to the external cooling circulation system;

[0069] Liquid Cooling Quick Connect Module 500 includes:

[0070] The second liquid cooling pipe interface 510 matches the first liquid cooling pipe interface 410;

[0071] The sliding assembly 520 is connected to the second liquid cooling pipe interface 510; by operating the sliding assembly 520, the second liquid cooling pipe interface 510 is driven to approach the first liquid cooling pipe interface 410 along a preset sliding trajectory to connect the first liquid cooling pipe interface 410 and the second liquid cooling pipe interface 510; by operating the sliding assembly 520, the second liquid cooling pipe interface 510 is driven to move away from the first liquid cooling pipe interface 410 along a preset sliding trajectory to separate the first liquid cooling pipe interface 410 and the second liquid cooling pipe interface 510.

[0072] In some embodiments of the present application, the liquid cooling module 400 and the liquid cooling quick-connect module 500 circulate the cooling water supply to the server. The liquid cooling module 400 can be located on one side of the server mounting portion 100, and can be fixed on one side of the server mounting portion 100, and can provide a liquid cooling interface for the server. The liquid cooling module 400 is connected to the external cooling circulation system, and can then provide a certain amount of coolant for the server when it is connected to the inside of the server. Among them, the liquid cooling module 400 may include a plurality of first liquid cooling pipe interfaces 410. As shown in Figure 1, the liquid cooling module 400 may include two first liquid cooling pipe interfaces 410. The first liquid cooling pipe interface 410 can be fixed on one side of the chassis base, and on the same side. It is connected to the external cooling circulation system through the first liquid cooling pipe interface 410.

[0073] The liquid cooling quick-connect module 500 is connected to the internal cooling water pipe of the server. The liquid cooling quick-connect module 500 can move toward the liquid cooling module 400 along a preset sliding track, and can move closer to or away from the liquid cooling module 400. When the liquid cooling quick-connect module 500 is connected to the liquid cooling module 400, the external cooling circulation system and the internal cooling water pipe are connected, and the cooling water of the external cooling circulation system can continuously enter the internal cooling water pipe. During the liquid inlet stage, the cooling water flows into the cooling liquid distribution unit inside the server through the internal cooling water pipe. The cooling liquid distribution unit flows the cooling liquid through the liquid cooling quick-connect assembly from the liquid inlet pipe on the side wall of the chassis into the CPU (central processing unit) liquid cooling module or GPU (graphics processing unit) liquid cooling module and other components that require heat dissipation for heat dissipation. During the liquid discharge phase, the coolant discharged from the cold plate flows through the liquid outlet pipe, passes through the liquid cooling quick connector assembly, and then flows back to the side wall of the chassis, and finally returns to the coolant distribution unit on the cabinet; the coolant distribution unit then flows back to the external cooling circulation system through the internal cooling water pipe, completing the heat dissipation and cooling of the server. Referring to Figures 2a, 2b, and 3, the liquid cooling quick connector module 500 includes: a second liquid cooling pipe interface 510, which matches the first liquid cooling pipe interface 410; a sliding assembly 520, which is connected to the second liquid cooling pipe interface 510 and is used to drive the second liquid cooling pipe interface 510 along a preset sliding trajectory toward or away from the first liquid cooling pipe interface 410;

[0074] That is, the liquid cooling quick-connect assembly includes a second liquid cooling pipe interface 510 that matches the first liquid cooling pipe interface 410, a sliding assembly 520, and a liquid cooling fixing assembly 530. The first liquid cooling pipe interface 410 and the second liquid cooling pipe interface 510 have matching sizes and interface methods and can be connected to each other.

[0075] The sliding component 520 is connected to the second liquid cooling pipe interface 510, and the sliding component 520 and the second liquid cooling pipe interface 510 can be fixedly connected; the sliding component 520 can move along a preset sliding trajectory toward or away from the liquid cooling module 400. During the sliding process of the sliding component 520, it drives the second liquid cooling pipe interface 510 along the preset sliding trajectory toward or away from the first liquid cooling pipe interface 410.

[0076] In some embodiments of the present application, the liquid cooling module 400 includes at least one first liquid cooling pipe interface 410, and the first liquid cooling pipe interface 410 is fixed to one side of the server installation part 100 and connected to the external cooling circulation system; the liquid cooling quick-connect module 500 includes: a second liquid cooling pipe interface 510, which matches the first liquid cooling pipe interface 410; a sliding assembly 520, which is connected to the second liquid cooling pipe interface 510, and is used to drive the second liquid cooling pipe interface 510 to move closer to or away from the first liquid cooling pipe interface 410 along a preset sliding trajectory; by arranging the liquid cooling module 400 on one side of the chassis base, the side wall space of the server chassis can be utilized, thereby improving the space utilization rate of the server chassis, and the liquid cooling water pipe can be connected through the liquid cooling quick-connect module 500, thereby realizing the connection of the liquid cooling water pipe from the side wall space of the server chassis, solving the low space utilization rate of the server layout and the complex structural design, saving costs, and reducing the investment of manpower, financial resources and material resources; the structure is simple, easy to install, easy to maintain, and low in cost.

[0077] In some embodiments of the present application, the liquid cooling quick-connect module 500 further includes:

[0078] The liquid-cooled fixed assembly 530 is located outside the sliding assembly 520 and contacts the sliding assembly 520 to fix the sliding assembly 520 ; the sliding assembly 520 slides in the liquid-cooled fixed assembly 530 .

[0079] The liquid-cooled fixed assembly 530 is located outside the sliding assembly 520 and contacts the sliding assembly 520. The sliding assembly 520 can slide along the surface of the liquid-cooled fixed assembly 530. That is, the predetermined sliding path can be a path on the surface of the liquid-cooled fixed assembly 530. The liquid-cooled fixed assembly 530 semi-encloses the sliding assembly 520 to fix the sliding assembly 520 and limit its sliding range.

[0080] Specifically, the sliding assembly 520 includes:

[0081] The sliding member 521 is fixedly connected to the second liquid cooling pipe interface 510;

[0082] The fixing member 522 is connected to the sliding member 521 and is used to drive the sliding member 521 to slide along a preset sliding track.

[0083] The sliding assembly 520 may include a sliding member 521 and a fixing member 522. The sliding member 521 is fixedly connected to the second liquid cooling pipe interface 510. The sliding member 521 can slide along a preset track on the surface of the liquid cooling fixing assembly 530 and drive the second liquid cooling pipe interface 510. The fixing member 522 is fixed on the liquid cooling fixing assembly 530 and connected to the sliding member 521; it can drive the sliding member 521 to slide along a preset sliding track. Thereby, the second liquid cooling pipe interface 510 can be connected to the first liquid cooling pipe interface 410. Among them, the driving of the fixing member 522 can be driven by manpower or by a motor, and some embodiments of the present application do not limit this.

[0084] Specifically, the sliding member 521 and the fixing member 522 form a rack and pinion mechanism; by rotating the gear of the rack and pinion mechanism, the rack of the rack and pinion mechanism is driven to slide.

[0085] In practical applications, the sliding member 521 and the fixing member 522 form a rack-and-pinion mechanism, and the sliding member 521 is driven based on the meshing of gears in the rack-and-pinion mechanism.

[0086] Furthermore, the sliding member 521 is a rack of a gear rack mechanism; the fixing member 522 is a gear of the gear rack mechanism; and the sliding member 521 is driven to slide by rotating the fixing member 522 .

[0087] The sliding member 521 may be a rack of a gear rack mechanism, and the fixing member 522 may be a gear of the gear rack mechanism. When the fixing member 522 rotates, the sliding member 521 is driven to slide based on the engagement with the gear of the sliding member 521 .

[0088] In addition, the sliding member 521 and the fixing member 522 form a worm gear mechanism; by rotating the worm wheel of the worm gear mechanism, the worm of the worm gear mechanism is driven to rotate.

[0089] The sliding member 521 and the fixing member 522 may form a worm gear mechanism. By rotating the worm wheel of the worm gear mechanism, the worm of the worm gear mechanism is driven to rotate, that is, accurate movement can be achieved through the worm gear mechanism.

[0090] Specifically, the sliding member 521 may be a worm wheel of a worm gear mechanism, and the fixing member 522 may be a worm of the worm gear mechanism.

[0091] In some embodiments of the present application, the liquid cooling quick-connect module 500 further includes:

[0092] The liquid-cooled manual operating member 540 is connected to the fixing member 522 and is used to operate the fixing member 522 to rotate, thereby driving the sliding member 521 to slide.

[0093] In some embodiments of the present application, the fixed member 522 can be manually driven to drive the sliding member 521 to move. The liquid cooling quick-connect assembly also includes a liquid cooling manual operating member 540, which is connected to the fixed member 522. By operating the liquid cooling manual operating member 540, a worker can operate the liquid cooling manual operating member 540 to rotate the fixed member 522, thereby driving the sliding member 521 to slide.

[0094] Specifically, the liquid-cooled manual operating member 540 is a first rotating handle.

[0095] The first rotating handle is disposed at the front end of the server mounting portion 100 .

[0096] In practice, the liquid cooling manual operating member 540 is a first rotary handle, the axis of which is coaxial with the rotation axis of the fixed member 522. Rotating the first rotary handle causes the fixed member 522 to rotate, thereby driving the sliding member 521 to slide. The first rotary handle can be located at the front end of the server mounting portion 100, allowing operators to conveniently operate the liquid cooling quick-connect mechanism from the front end of the server mounting portion 100.

[0097] In some embodiments of the present application, the liquid cooling quick-connect module 500 further includes:

[0098] The limiting assembly 550 is disposed on the liquid-cooling fixing assembly 530 and is used to limit the sliding range of the sliding assembly 520 .

[0099] In practical applications, at least one limiting assembly 550 may be provided on the liquid-cooling fixing assembly 530 to limit the sliding range of the sliding assembly 520 .

[0100] As shown in FIG. 3 , the limiting component 550 may be an I-pin, and the boss is used to limit the sliding range of the sliding component 520 .

[0101] In some embodiments of the present application, the first liquid cooling pipe interface 410 is a quick connector male or a quick connector female;

[0102] The second liquid cooling pipe interface 510 is another type of quick connector male or female.

[0103] In some embodiments of the present application, the first liquid cooling pipe interface 410 is a quick-connect male or female connector; the second liquid cooling pipe interface 510 is a quick-connect male or female connector. That is, when the first liquid cooling pipe interface 410 is a quick-connect male connector, the second liquid cooling pipe interface 510 is a quick-connect female connector. When the first liquid cooling pipe interface 410 is a quick-connect female connector, the second liquid cooling pipe interface 510 is a quick-connect male connector.

[0104] 4 , a structural block diagram of an embodiment of a server-side power supply and liquid cooling structure of the present application is shown, which may specifically include the following components: a power supply module 200 , a power supply quick-connect module 300 , and the server-side liquid cooling structure as described above,

[0105] The power supply module 200 is fixed to one side of the server installation portion 100;

[0106] The power supply quick-connect module 300 is connected to the internal cable and is used to rotate along a preset rotation axis. When connected to the power supply module 200, it connects the power supply module 200 and the internal cable.

[0107] The server-side liquid cooling structure is fixed to one side of the server mounting portion 100;

[0108] The power supply quick-connect module 300 and the liquid cooling quick-connect module 500 of the server-side liquid cooling structure switch states synchronously.

[0109] In some embodiments of the present application, the server-side power supply and liquid cooling structure may include a power supply module, a power supply quick-connect module, a liquid cooling module for the server-side liquid cooling structure, and a liquid cooling quick-connect module. The power supply module 200 and the power supply quick-connect module 300 are responsible for providing electrical connections to the server. The liquid cooling module 400 and the liquid cooling quick-connect module 500 circulate cooling water for the server.

[0110] The power supply module 200 can be located on one side of the server installation portion 100 and fixed on one side of the server installation portion 100 to provide power to the server.

[0111] The power supply quick-connect module 300 can be connected to the internal cables, and the power supply quick-connect module 300 can rotate along a preset rotation axis. When the power supply quick-connect module 300 is rotated to connect with the power supply module 200, the power supply module 200 is connected to the internal cables. The power energy of the power supply module 200 can enter the power distribution board inside the server through the internal cables, and the equipment inside the server is centrally powered through the power distribution board, thereby better ensuring the reliability and safety of the power distribution in the cabinet, making the power maintenance in the cabinet more convenient, and improving operation and maintenance efficiency.

[0112] Among them, the preset rotation axis can be the rotation axis of the power supply quick-connect module 300 itself, or it can be a reference rotation axis relative to other components. Some embodiments of the present application do not limit this.

[0113] The server-side liquid cooling structure can be fixed on one side of the server installation part 100, that is, the liquid cooling module 400 can be located on one side of the server installation part 100, and can also be fixed on one side of the server installation part 100, and can provide a cooling interface for the server. The liquid cooling module 400 is connected to the external cooling circulation system, and can then provide a certain amount of cooling liquid for the server when it is connected to the inside of the server.

[0114] The liquid cooling quick-connect module 500 is connected to the internal cooling water pipe of the server. The liquid cooling quick-connect module 500 can move toward the liquid cooling module 400 along a preset sliding track, and can move closer to or away from the liquid cooling module 400. When the liquid cooling quick-connect module 500 is connected to the liquid cooling module 400, the external cooling circulation system and the internal cooling water pipe are connected, and the cooling water of the external cooling circulation system can continuously enter the internal cooling water pipe. During the liquid inlet stage, the cooling water flows into the cooling liquid distribution unit inside the server through the internal cooling water pipe. The cooling liquid distribution unit flows the cooling liquid through the liquid cooling quick-connect assembly from the liquid inlet pipe on the side wall of the chassis into the CPU (central processing unit) liquid cooling module or GPU (graphics processing unit) liquid cooling module and other components that require heat dissipation for heat dissipation. During the liquid discharge stage, the coolant discharged from the cold plate flows through the liquid outlet pipe, passes through the liquid cooling quick connector assembly, and then flows back to the side wall of the chassis, and finally returns to the coolant distribution unit on the cabinet; the coolant distribution unit then returns to the external cooling circulation system through the internal cooling water pipe, completing the heat dissipation and cooling of the server.

[0115] In addition, the power supply quick-connect module 300 and the liquid cooling quick-connect module 500 of the server-side liquid cooling structure switch states synchronously; that is, the water circuit and the circuit can be operated synchronously, and the water and electricity can be turned on or off at the same time.

[0116] In some embodiments of the present application, the power supply module 200 is fixed to one side of the server installation part 100; the power supply quick-connect module 300 is connected to the internal cable and is used to rotate along a preset rotation axis. When connected to the power supply module 200, the power supply module 200 and the internal cable are connected; the liquid cooling module 400 of the server side liquid cooling structure is fixed to one side of the server installation part 100 and is connected to the external cooling circulation system; the liquid cooling quick-connect module 500 of the server side liquid cooling structure is connected to the internal cooling water pipe and is used to move closer to or away from the liquid cooling module 400 along a preset sliding trajectory. When connected to the liquid cooling module 400, it is connected to the external cooling system. Circulation system and internal cooling water pipe; by arranging the power supply module 200 and the liquid cooling module 400 on one side of the server installation part 100, the side wall space of the server chassis can be utilized, thereby improving the space utilization rate of the server chassis, and the liquid cooling water pipe and the power supply line can be connected respectively through the power supply quick connection module 300 and the liquid cooling quick connection module 500, thereby realizing the connection of the liquid cooling water pipe and the power supply line from the side wall space of the server chassis, solving the low space utilization rate of the server layout and the complex structural design, saving costs, and reducing the investment of manpower, financial resources and material resources; the structure is simple, easy to install, easy to maintain and low in cost. In addition, the power supply module 200 is connected to the internal cable, that is, when the power supply line is connected, the power supply module 200 is connected to the internal power supply of the chassis, and the power supply is connected to the power supply cable through the power supply module 200 for centralized power supply, thereby better ensuring the reliability and safety of the power distribution in the cabinet, making the power supply maintenance in the cabinet more convenient and improving the operation and maintenance efficiency.

[0117] Referring to FIG5 , a schematic diagram of the structure connection of a server-side power supply and liquid cooling structure embodiment of the present application is shown. The server-side power supply and liquid cooling structure includes: a power supply module 200, a power supply quick-connect module 300, and the server-side liquid cooling structure as described above.

[0118] The power supply module 200 is fixed to one side of the server installation portion 100;

[0119] The power supply quick-connect module 300 is connected to the internal cable and is used to rotate along a preset rotation axis. When connected to the power supply module 200, it connects the power supply module 200 and the internal cable.

[0120] The server-side liquid cooling structure is fixed to one side of the server mounting portion 100;

[0121] The power supply quick-connect module 300 and the liquid cooling quick-connect module 500 of the server-side liquid cooling structure switch states synchronously.

[0122] In some embodiments of the present application, the power supply module 200 is located on one side of the server installation part 100 and is fixed on one side of the server installation part 100, and can provide power to the server. The liquid cooling module 400 of the server-side liquid cooling structure is located on one side of the server installation part 100 and is fixed on one side of the server installation part 100, and can provide a cooling interface for the server. The liquid cooling module 400 is connected to the external cooling circulation system, and can then provide cooling liquid to the server when it is connected to the inside of the server. Among them, the power supply module 200 and the liquid cooling module 400 can be located on different sides of the server installation part 100. As shown in Figure 5, the power supply module 200 is fixed on the left side of the server installation part 100, and the liquid cooling module 400 is fixed on the right side of the server installation part 100.

[0123] The power supply quick-connect module 300 can be connected to the internal cables, and the power supply quick-connect module 300 can rotate along a preset rotation axis. When the power supply quick-connect module 300 is rotated to connect with the power supply module 200, the power supply module 200 is connected to the internal cables. The power energy of the power supply module 200 can enter the power distribution board inside the server through the internal cables, and the equipment inside the server is centrally powered through the power distribution board, thereby better ensuring the reliability and safety of the power distribution in the cabinet, making the power maintenance in the cabinet more convenient, and improving operation and maintenance efficiency.

[0124] The liquid cooling quick-connect module 500 is connected to the server's internal cooling water pipe. It can move along a pre-set sliding path toward the liquid cooling module 400, moving closer to or further away from the liquid cooling module 400. When the liquid cooling quick-connect module 500 is connected to the liquid cooling module 400, the external cooling circulation system and the internal cooling water pipe are connected, allowing cooling water from the external cooling circulation system to continuously flow into the internal cooling water pipe.

[0125] The power supply quick-connect module 300 and the liquid cooling quick-connect module 500 of the server-side liquid cooling structure can switch states synchronously to achieve synchronous water and power off or water and power on.

[0126] The server installation portion 100 may be a server chassis.

[0127] In some embodiments of the present application, referring to FIG. 6 a , FIG. 6 b and FIG. 7 , the power supply module 200 includes:

[0128] A power contactor 210, used for connecting to an external power source;

[0129] The first electrical connector 220 is disposed on the power contactor 210 .

[0130] In some embodiments of the present application, the power supply module 200 may include a power contactor 210 and a first electrical connector 220. The power contactor 210 is connected to an external power source so that, when connected to the power supply quick-connect module 300, it can provide power to the server. The power contactor 210 may have a slot, and the first electrical connector 220 may be disposed on the power contactor 210, specifically, on the slot of the power contactor 210.

[0131] Correspondingly, the power supply quick-connect module 300 includes:

[0132] A second electrical connector 310 connected to an internal cable;

[0133] The rotating member 320 is connected to the second electrical connector 310 and is used to rotate along a preset rotation axis to connect or disconnect the second electrical connector 310 with the first electrical connector 220 .

[0134] In some embodiments of the present application, the power supply quick-connect module 300 may include a second electrical connector 310 and a rotating member 320. The second electrical connector 310 and the first electrical connector 220 match each other so that the same current can pass through without damage. The second electrical connector 310 can be connected to an internal cable, and when connected to the first electrical connector 220, the internal cable and the external power supply can be connected. The rotating member 320 is connected to the second electrical connector 310 and can rotate along a preset rotation axis, such as the rotating member 320 itself connects or disconnects the second electrical connector 310 with the first electrical connector 220. The rotation of the rotating member 320 can be driven by manpower or by a motor, and some embodiments of the present application do not limit this.

[0135] In some embodiments of the present application, the power supply quick-connect module 300 further includes:

[0136] The electrically connected operating member 330 is connected to the rotating member 320 and is used to operate the rotating member 320 to rotate along a preset rotation axis.

[0137] In some embodiments of the present application, the rotating member 320 can be driven manually to rotate. The power supply quick-connect module 300 may also include an electrical connection operating member 330. The electrical connection operating member 330 is connected to the rotating member 320. By rotating the electrical connection operating member 330, the rotating member 320 is rotated along a predetermined rotation axis, thereby driving the second electrical connector 310 to connect or disconnect with the first electrical connector 220.

[0138] Specifically, the electrical connection operating member 330 is a second rotating handle.

[0139] The second rotating handle is disposed at the front end of the server mounting portion 100 .

[0140] In practical applications, the electrical connection operating member 330 can be a second rotary handle. The second rotary handle and the first rotary handle can be the same or different, and some embodiments of the present application do not specifically limit this. The second rotary handle can rotate along its own rotation axis to drive the rotating member 320 to rotate. The second rotary handle can be located at the front end of the server mounting portion 100 to facilitate staff to perform electrical maintenance.

[0141] Furthermore, the second rotary handle is connected to the liquid cooling quick connect module 500 and is also used to operate the liquid cooling quick connect module 500 .

[0142] In some embodiments of the present application, a second rotary handle can be connected to the liquid cooling quick-connect module 500, and the state of the liquid cooling quick-connect module 500 can be controlled by the second rotary handle. That is, the fixed member 522 of the liquid cooling quick-connect module 500 and the rotating member 320 of the power supply quick-connect module 300 can be switched simultaneously by the second rotary handle.

[0143] In some embodiments of the present application, the first electrical connector 220 is a male contactor or a female contactor; and the second electrical connector 310 is another type of male contactor or a female contactor.

[0144] In some embodiments of the present application, the first electrical connector 220 is either a male contactor or a female contactor; the second electrical connector 310 is either a male contactor or a female contactor, thereby enabling a secure connection using matching connectors. When the first electrical connector 220 is a male contactor, the second electrical connector 310 is a female contactor. When the first electrical connector 220 is a female contactor, the second electrical connector 310 is a male contactor.

[0145] In some embodiments of the present application, a power supply module 200 is fixed to one side of the server installation portion 100; a power supply quick-connect module 300 is connected to the internal cable and is used to rotate along a preset rotation axis. When connected to the power supply module 200, the power supply module 200 and the internal cable are connected; a liquid cooling module 400 is fixed to one side of the server installation portion 100 and is connected to the external cooling circulation system; a liquid cooling quick-connect module 500 is connected to the internal cooling water pipe and is used to move closer to or away from the liquid cooling module 400 along a preset sliding trajectory. When connected to the liquid cooling interface module, the external cooling circulation system and the internal cooling system are connected. Water pipe; by arranging the power supply module 200 and the liquid cooling module 400 on one side of the server installation part 100, the side wall space of the server chassis can be utilized, thereby improving the space utilization rate of the server chassis, and the liquid cooling water pipe and the power supply line can be connected respectively through the power supply quick connection module 300 and the liquid cooling quick connection module 500, thereby realizing the connection of the liquid cooling water pipe and the power supply line from the side wall space of the server chassis, solving the problems of low space utilization rate of the server layout and complex structural design, saving costs, and reducing the investment of manpower, financial resources and material resources; the structure is simple, easy to install, easy to maintain and low cost. In addition, the power supply module 200 is connected to the internal cable, that is, when the power supply line is connected, the power supply module 200 is connected to the internal power supply of the chassis, and the power supply is centrally supplied through the power supply cable connection via the power supply module 200, which better ensures the reliability and safety of the power distribution in the cabinet, makes the power supply maintenance in the cabinet more convenient, and improves the operation and maintenance efficiency; and the first rotary handle for controlling the liquid supply quick connection and the second rotary handle for operating the electrical connection are both arranged at the front end of the server, which can facilitate the operator to easily cut off and connect the coolant supply and power supply, thereby improving the operating efficiency.

[0146] 8 , which shows a schematic structural diagram of another embodiment of a server-side power supply and liquid cooling structure of the present application, the server-side power supply and liquid cooling structure includes: a power supply module 200, a power supply quick-connect module 300, and the server-side liquid cooling structure as described above.

[0147] The power supply module 200 is fixed to one side of the server installation portion 100;

[0148] The power supply quick-connect module 300 is connected to the internal cable and is used to rotate along a preset rotation axis. When connected to the power supply module 200, it connects the power supply module 200 and the internal cable.

[0149] The server-side liquid cooling structure is fixed to one side of the server mounting portion 100;

[0150] The power supply quick-connect module 300 and the liquid cooling quick-connect module 500 of the server-side liquid cooling structure switch states synchronously.

[0151] The power supply module and the server-side liquid cooling structure are located on the same side of the server installation portion 100 .

[0152] In some embodiments of the present application, the server installation part 100, the power supply module, the power supply quick-connect module, the liquid cooling module of the server side liquid cooling structure, and the liquid cooling quick-connect module of the server side liquid cooling structure can refer to some of the above embodiments and will not be repeated here.

[0153] The power supply module and the liquid cooling module are located on the same side of the server installation portion 100, so that the electrical part and the cooling liquid supply part of the server can be inspected and repaired on a single side of the chassis, thereby improving operation and maintenance efficiency.

[0154] In some embodiments of the present application, a power supply module is fixed to one side of the server installation portion; a power supply quick-connect module is connected to the internal cable and is used to rotate along a preset rotation axis. When connected to the power supply module, the power supply module and the internal cable are connected; a liquid cooling module 400 is fixed to one side of the server installation portion and is connected to the external cooling circulation system; a liquid cooling quick-connect module 500 is connected to the internal cooling water pipe and is used to move closer to or away from the liquid cooling module 400 along a preset sliding track. When connected to the liquid cooling interface module, the external cooling circulation system and the internal cooling water pipe are connected; by placing the power supply module and the liquid cooling module 400 on the server installation portion, On the same side of the part, the side wall space of the server chassis can be utilized, thereby improving the space utilization rate of the server chassis, and the liquid cooling water pipe and the power supply line can be connected respectively through the power supply quick connection module and the liquid cooling quick connection module 500, thereby realizing the connection of the liquid cooling water pipe and the power supply line from the side wall space of the server chassis; and the power supply module and the internal cable are connected, that is, when the power supply line is connected, the power supply module is connected to the internal power supply of the chassis, and the power supply is centrally supplied through the power supply cable connection via the power supply module, thereby better ensuring the reliability and safety of the power distribution in the cabinet, making the power supply maintenance in the cabinet more convenient, and improving the operation and maintenance efficiency.

[0155] It should be noted that for some embodiments of the present application, for the sake of simplicity of description, they are all expressed as a series of action combinations, but those skilled in the art should be aware that some embodiments of the present application are not limited by the order of the actions described, because according to some embodiments of the present application, certain steps can be performed in other orders or simultaneously. Secondly, those skilled in the art should also be aware that some embodiments described in the specification are preferred embodiments, and the actions involved are not necessarily required for some embodiments of the present application.

[0156] Some embodiments of the present application further disclose a server chassis, including the above server-side liquid cooling structure, or the above server-side power supply and liquid cooling structure.

[0157] Among them, the server side liquid cooling structure includes: liquid cooling module, liquid cooling quick connection module,

[0158] The liquid cooling module includes at least one first liquid cooling pipe interface, which is fixed to one side of the server installation portion and connected to the external cooling circulation system;

[0159] Liquid cooling quick-connect module includes:

[0160] The second liquid cooling pipe interface matches the first liquid cooling pipe interface;

[0161] A sliding assembly connected to the second liquid cooling pipe interface;

[0162] By operating the sliding assembly, the second liquid cooling pipe interface is driven along a preset sliding trajectory to approach the first liquid cooling pipe interface so as to connect the first liquid cooling pipe interface and the second liquid cooling pipe interface; by operating the sliding assembly, the second liquid cooling pipe interface is driven along a preset sliding trajectory away from the first liquid cooling pipe interface so as to separate the first liquid cooling pipe interface and the second liquid cooling pipe interface.

[0163] In some embodiments, the liquid cooling quick-connect module further includes:

[0164] The liquid-cooled fixed component is located outside the sliding component, contacts the sliding component, and is used to fix the sliding component; the sliding component slides in the liquid-cooled fixed component.

[0165] In some embodiments, the sliding assembly includes:

[0166] A sliding member, fixedly connected to the second liquid cooling pipe interface;

[0167] The fixing member is connected to the sliding member and is used to drive the sliding member to slide along a preset sliding track.

[0168] In some embodiments, the sliding member and the fixing member form a rack and pinion mechanism; the gear of the rack and pinion mechanism is rotated to drive the rack of the rack and pinion mechanism to slide.

[0169] In some embodiments, the sliding member is a rack of a rack and pinion mechanism;

[0170] The fixed part is a gear of a rack and pinion mechanism;

[0171] By rotating the fixing part, the sliding part is driven to slide.

[0172] In some embodiments, the liquid cooling quick-connect module further includes:

[0173] The liquid-cooled manual operating part is connected to the fixed part and is used to operate the fixed part to rotate so as to drive the sliding part to slide.

[0174] In some embodiments, the liquid-cooled manual operating member is a first rotary handle.

[0175] The first rotating handle is arranged at the front end of the server mounting portion.

[0176] In some embodiments, the liquid cooling quick-connect module further includes:

[0177] The limiting component is arranged on the liquid-cooling fixed component and is used to limit the sliding range of the sliding component.

[0178] In some embodiments, the sliding member and the fixing member form a worm gear mechanism; and the worm of the worm gear mechanism is driven to rotate by rotating the worm wheel.

[0179] In some embodiments, the first liquid cooling pipe interface is a quick connector male or a quick connector female;

[0180] The second liquid cooling pipe interface is another type of quick connector male or quick connector female.

[0181] The server-side power supply and liquid cooling structure includes: power supply module, power supply quick-connect module, and the server-side liquid cooling structure as above.

[0182] The power supply module is fixed on one side of the server installation part;

[0183] The power supply quick-connect module is connected to the internal cable and is used to rotate along a preset rotation axis. When connected to the power supply module, it connects the power supply module and the internal cable.

[0184] The server-side liquid cooling structure is fixed to one side of the server installation portion;

[0185] The power supply quick-connect module and the liquid cooling quick-connect module of the server-side liquid cooling structure switch states synchronously.

[0186] In some embodiments, the power supply module includes:

[0187] Power contactor, used to connect external power supply;

[0188] The first electrical connector is arranged on the power contactor.

[0189] In some embodiments, the power supply quick connect module includes:

[0190] a second electrical connector connected to an internal cable;

[0191] The rotating member is connected to the second electrical connector and is used to rotate along a preset rotation axis to connect or disconnect the second electrical connector with the first electrical connector.

[0192] In some embodiments, the power supply quick connect module further includes:

[0193] The electrically connected operating member is connected to the rotating member and is used to operate the rotating member to rotate along a preset rotation axis.

[0194] In some embodiments, the electrical connection operating member is a second rotary handle.

[0195] The second rotating handle is arranged at the front end of the server mounting portion.

[0196] In some embodiments, the second rotary handle is connected to the liquid cooling quick connect module and is also used to operate the liquid cooling quick connect module.

[0197] In some embodiments, the first electrical connector is a male contactor or a female contactor;

[0198] The second electrical connector is another type of contactor male connector or contactor female connector.

[0199] In some embodiments, the power supply module and the server-side liquid cooling structure are located on the same side or opposite sides of the server mounting portion.

[0200] In some embodiments of the present application, a power supply module is fixed to one side of the server installation part; a power supply quick-connect module is connected to the internal cable and is used to rotate along a preset rotation axis. When connected to the power supply module, the power supply module and the internal cable are connected; a liquid cooling module is fixed to one side of the server installation part and is connected to the external cooling circulation system; a liquid cooling quick-connect module is connected to the internal cooling water pipe and is used to move closer to or away from the liquid cooling module along a preset sliding trajectory. When connected to the liquid cooling interface module, the external cooling circulation system and the internal cooling water pipe are connected; by arranging the power supply module and the liquid cooling module on one side of the server installation part, the side wall space of the server chassis can be utilized, thereby improving the space utilization rate of the server chassis, and the liquid cooling water pipe and the power supply line can be connected respectively through the power supply quick-connect module and the liquid cooling quick-connect module, thereby realizing the connection of the liquid cooling water pipe and the power supply line from the side wall space of the server chassis, solving the problems of low space utilization rate of server layout and complex structural design, saving costs, and reducing the investment of manpower, financial resources and material resources; the structure is simple, easy to install, easy to maintain and low cost. In addition, the power supply module is connected to the internal cable, that is, when the power supply line is connected, the power supply module is connected to the internal power supply of the chassis, and the power supply is centrally powered through the power supply module through the power supply cable connection, which better ensures the reliability and safety of the power distribution in the cabinet, makes the power maintenance in the cabinet more convenient, and improves the operation and maintenance efficiency.

[0201] Some embodiments of the present application further disclose a server, including the above server chassis, the server chassis including the above server-side liquid cooling structure, or the above server-side power supply and liquid cooling structure.

[0202] Specifically, the server-side liquid cooling structure includes: a liquid cooling module, a liquid cooling quick-connect module,

[0203] The liquid cooling module includes at least one first liquid cooling pipe interface, which is fixed to one side of the server installation portion and connected to the external cooling circulation system;

[0204] Liquid cooling quick-connect module includes:

[0205] The second liquid cooling pipe interface matches the first liquid cooling pipe interface;

[0206] A sliding assembly connected to the second liquid cooling pipe interface;

[0207] By operating the sliding assembly, the second liquid cooling pipe interface is driven along a preset sliding trajectory to approach the first liquid cooling pipe interface so as to connect the first liquid cooling pipe interface and the second liquid cooling pipe interface; by operating the sliding assembly, the second liquid cooling pipe interface is driven along a preset sliding trajectory away from the first liquid cooling pipe interface so as to separate the first liquid cooling pipe interface and the second liquid cooling pipe interface.

[0208] In some embodiments, the liquid cooling quick-connect module further includes:

[0209] The liquid-cooled fixed component is located outside the sliding component, contacts the sliding component, and is used to fix the sliding component; the sliding component slides in the liquid-cooled fixed component.

[0210] In some embodiments, the sliding assembly includes:

[0211] A sliding member, fixedly connected to the second liquid cooling pipe interface;

[0212] The fixing member is connected to the sliding member and is used to drive the sliding member to slide along a preset sliding track.

[0213] In some embodiments, the sliding member and the fixing member form a rack and pinion mechanism; the gear of the rack and pinion mechanism is rotated to drive the rack of the rack and pinion mechanism to slide.

[0214] In some embodiments, the sliding member is a rack of a rack and pinion mechanism;

[0215] The fixed part is a gear of a rack and pinion mechanism;

[0216] By rotating the fixing part, the sliding part is driven to slide.

[0217] In some embodiments, the liquid cooling quick-connect module further includes:

[0218] The liquid-cooled manual operating part is connected to the fixed part and is used to operate the fixed part to rotate so as to drive the sliding part to slide.

[0219] In some embodiments, the liquid-cooled manual operating member is a first rotary handle.

[0220] The first rotating handle is arranged at the front end of the server mounting portion.

[0221] In some embodiments, the liquid cooling quick-connect module further includes:

[0222] The limiting component is arranged on the liquid-cooling fixed component and is used to limit the sliding range of the sliding component.

[0223] In some embodiments, the sliding member and the fixing member form a worm gear mechanism; and the worm of the worm gear mechanism is driven to rotate by rotating the worm wheel.

[0224] In some embodiments, the first liquid cooling pipe interface is a quick connector male or a quick connector female;

[0225] The second liquid cooling pipe interface is another type of quick connector male or quick connector female.

[0226] The server-side power supply and liquid cooling structure includes: power supply module, power supply quick-connect module, and the server-side liquid cooling structure as above.

[0227] The power supply module is fixed on one side of the server installation part;

[0228] The power supply quick-connect module is connected to the internal cable and is used to rotate along a preset rotation axis. When connected to the power supply module, it connects the power supply module and the internal cable.

[0229] The server-side liquid cooling structure is fixed to one side of the server installation portion;

[0230] The power supply quick-connect module and the liquid cooling quick-connect module of the server-side liquid cooling structure switch states synchronously.

[0231] In some embodiments, the power supply module includes:

[0232] Power contactor, used to connect external power supply;

[0233] The first electrical connector is arranged on the power contactor.

[0234] In some embodiments, the power supply quick connect module includes:

[0235] a second electrical connector connected to an internal cable;

[0236] The rotating member is connected to the second electrical connector and is used to rotate along a preset rotation axis to connect or disconnect the second electrical connector with the first electrical connector.

[0237] In some embodiments, the power supply quick connect module further includes:

[0238] The electrically connected operating member is connected to the rotating member and is used to operate the rotating member to rotate along a preset rotation axis.

[0239] In some embodiments, the electrical connection operating member is a second rotary handle.

[0240] The second rotating handle is arranged at the front end of the server mounting portion.

[0241] In some embodiments, the second rotary handle is connected to the liquid cooling quick connect module and is also used to operate the liquid cooling quick connect module.

[0242] In some embodiments, the first electrical connector is a male contactor or a female contactor;

[0243] The second electrical connector is another type of contactor male connector or contactor female connector.

[0244] In some embodiments, the power supply module and the server-side liquid cooling structure are located on the same side or opposite sides of the server mounting portion.

[0245] In some embodiments of the present application, a power supply module is fixed to one side of the server installation part; a power supply quick-connect module is connected to the internal cable and is used to rotate along a preset rotation axis. When connected to the power supply module, the power supply module and the internal cable are connected; a liquid cooling module is fixed to one side of the server installation part and is connected to the external cooling circulation system; a liquid cooling quick-connect module is connected to the internal cooling water pipe and is used to move closer to or away from the liquid cooling module along a preset sliding trajectory. When connected to the liquid cooling interface module, the external cooling circulation system and the internal cooling water pipe are connected; by arranging the power supply module and the liquid cooling module on one side of the server installation part, the side wall space of the server chassis can be utilized, thereby improving the space utilization rate of the server chassis, and the liquid cooling water pipe and the power supply line can be connected respectively through the power supply quick-connect module and the liquid cooling quick-connect module, thereby realizing the connection of the liquid cooling water pipe and the power supply line from the side wall space of the server chassis, solving the problems of low space utilization rate of server layout and complex structural design, saving costs, and reducing the investment of manpower, financial resources and material resources; the structure is simple, easy to install, easy to maintain and low cost. In addition, the power supply module is connected to the internal cable, that is, when the power supply line is connected, the power supply module is connected to the internal power supply of the chassis, and the power supply is centrally powered through the power supply module through the power supply cable connection, which better ensures the reliability and safety of the power distribution in the cabinet, makes the power maintenance in the cabinet more convenient, and improves the operation and maintenance efficiency.

[0246] Some embodiments in this specification are described in a progressive manner. Some embodiments focus on the differences from other embodiments. The same or similar parts between some embodiments can be referenced to each other.

[0247] Those skilled in the art will appreciate that some embodiments of the present application may be provided as methods, devices, or computer program products. Therefore, some embodiments of the present application may take the form of a complete hardware embodiment, a complete software embodiment, or an embodiment combining software and hardware. Furthermore, some embodiments of the present application may take the form of a computer program product implemented on one or more computer-usable storage media (including but not limited to magnetic disk storage, CD-ROM, optical storage, etc.) containing computer-usable program code.

[0248] Some embodiments of the present application are described with reference to the flowcharts and / or block diagrams of the methods, terminal devices (systems), and computer program products according to some embodiments of the present application. It should be understood that each process and / or box in the flowchart and / or block diagram, as well as the combination of the processes and / or boxes in the flowchart and / or block diagram, can be implemented by computer program instructions. These computer program instructions can be provided to a processor of a general-purpose computer, a special-purpose computer, an embedded processor, or other programmable data processing terminal device to produce a machine, so that the instructions executed by the processor of the computer or other programmable data processing terminal device generate a device for implementing the functions specified in one or more processes in the flowchart and / or one or more boxes in the block diagram.

[0249] These computer program instructions may also be stored in a computer-readable memory that can direct a computer or other programmable data processing terminal device to operate in a specific manner, so that the instructions stored in the computer-readable memory produce a manufactured product including an instruction device that implements the functions specified in one or more processes in the flowchart and / or one or more boxes in the block diagram.

[0250] These computer program instructions can also be loaded onto a computer or other programmable data processing terminal device so that a series of operating steps are executed on the computer or other programmable terminal device to produce computer-implemented processing, so that the instructions executed on the computer or other programmable terminal device provide steps for implementing the functions specified in one or more processes in the flowchart and / or one or more boxes in the block diagram.

[0251] Although preferred embodiments of some embodiments of the present application have been described, those skilled in the art may make additional changes and modifications to some embodiments once they are aware of the basic creative concepts. Therefore, the appended claims are intended to be interpreted as including the preferred embodiments and all changes and modifications that fall within the scope of some embodiments of the present application.

[0252] Finally, it should be noted that, in this document, relational terms such as first and second, etc., are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprises," "comprising," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or terminal device that includes a series of elements includes not only those elements, but also other elements not explicitly listed, or elements inherent to such process, method, article, or terminal device. In the absence of further limitations, an element defined by the phrase "comprising a ..." does not exclude the presence of additional identical elements in the process, method, article, or terminal device that includes the element.

[0253] The above is a detailed introduction to a server-side liquid cooling structure, a server-side power supply and liquid cooling structure, a server chassis and a server provided by this application. This article uses specific examples to illustrate the principles and implementation methods of this application. The description of some of the above embodiments is only used to help understand the method of this application and its core idea; at the same time, for general technical personnel in this field, based on the ideas of this application, there will be changes in the specific implementation methods and application scope. In summary, the content of this specification should not be understood as a limitation on this application.

Claims

1. A server-side liquid cooling structure, characterized in that: include: Liquid cooling module, liquid cooling quick connect module, The liquid cooling module includes at least one first liquid cooling pipe interface, which is fixed to one side of the server installation portion and connected to the external cooling circulation system; The liquid cooling quick-connect module includes: A second liquid cooling pipe interface, matching the first liquid cooling pipe interface; A sliding assembly is connected to the second liquid cooling pipe interface; by operating the sliding assembly, the second liquid cooling pipe interface is driven to approach the first liquid cooling pipe interface along a preset sliding trajectory to connect the first liquid cooling pipe interface and the second liquid cooling pipe interface; by operating the sliding assembly, the second liquid cooling pipe interface is driven to move away from the first liquid cooling pipe interface along the preset sliding trajectory to separate the first liquid cooling pipe interface and the second liquid cooling pipe interface.

2. The server-side liquid cooling structure according to claim 1, characterized in that: The liquid cooling quick-connect module also includes: A liquid-cooled fixed component is located outside the sliding component, contacts the sliding component, and is used to fix the sliding component; the sliding component slides in the liquid-cooled fixed component.

3. The server-side liquid cooling structure according to claim 2, wherein: The sliding assembly comprises: A sliding member, fixedly connected to the second liquid cooling pipe interface; The fixing member is connected to the sliding member and is used to drive the sliding member to slide along the preset sliding track.

4. The server-side liquid cooling structure according to claim 3, characterized in that: The sliding member and the fixing member form a rack and pinion mechanism; the rack of the rack and pinion mechanism is driven to slide by rotating the gear of the rack and pinion mechanism.

5. The server-side liquid cooling structure according to claim 4, characterized in that: The sliding member is the rack of the gear rack mechanism; The fixing member is a gear of the rack and pinion mechanism; The sliding member is driven to slide by rotating the fixing member.

6. The server-side liquid cooling structure according to claim 3, characterized in that: The liquid cooling quick-connect module also includes: A liquid-cooled manual operating member is connected to the fixing member and is used to operate the fixing member to rotate so as to drive the sliding member to slide.

7. The server-side liquid cooling structure according to claim 6, characterized in that: The liquid-cooled manual operating part is a first rotary handle, The first rotating handle is arranged at the front end of the server mounting portion.

8. The server-side liquid cooling structure according to claim 2, wherein: The liquid cooling quick-connect module also includes: A limiting component is provided on the liquid-cooling fixing component and is used to limit the sliding range of the sliding component.

9. The server-side liquid cooling structure according to claim 4, wherein: The sliding member and the fixing member form a worm gear mechanism; the worm of the worm gear mechanism is driven to rotate by rotating the worm wheel.

10. The server-side liquid cooling structure according to claim 1, wherein: The first liquid cooling pipe interface is a quick connector male or a quick connector female; The second liquid cooling pipe interface is another type of the quick connector male or the quick connector female.

11. A server-side power supply and liquid cooling structure, characterized in that: include: A power supply module, a power supply quick-connect module, and a server-side liquid cooling structure according to any one of claims 1 to 10, The power supply module is fixed to one side of the server installation portion; The power supply quick-connect module is connected to the internal cable and is used to rotate along a preset rotation axis. When connected to the power supply module, the power supply module and the internal cable are connected; The server-side liquid cooling structure is fixed to one side of the server installation portion; The power supply quick-connect module and the liquid cooling quick-connect module of the server-side liquid cooling structure switch states synchronously.

12. The server-side power supply and liquid cooling structure according to claim 11, characterized in that: The power supply module includes: Power contactor, used to connect external power supply; The first electrical connector is arranged on the power contactor.

13. The server-side power supply and liquid cooling structure according to claim 12, characterized in that: The power supply quick-connect module includes: a second electrical connector connected to the internal cable; The rotating member is connected to the second electrical connector and is used to rotate along the preset rotation axis to connect or disconnect the second electrical connector with the first electrical connector.

14. The server-side power supply and liquid cooling structure according to claim 13, characterized in that: The power supply quick-connect module also includes: The electrically connected operating member is connected to the rotating member and is used to operate the rotating member to rotate along the preset rotation axis.

15. The server-side power supply and liquid cooling structure according to claim 14, characterized in that: The electrical connection operating member is a second rotary handle, The second rotating handle is arranged at the front end of the server mounting portion.

16. The server-side power supply and liquid cooling structure according to claim 15, characterized in that: The second rotary handle is connected to the liquid-cooling quick-connect module and is also used to operate the liquid-cooling quick-connect module.

17. The server-side power supply and liquid cooling structure according to claim 13, characterized in that: The first electrical connector is a contactor male connector or a contactor female connector; The second electrical connector is another type of the contactor male connector or the contactor female connector.

18. The server-side power supply and liquid cooling structure according to claim 11, characterized in that: The power supply module and the server-side liquid cooling structure are located on the same side or opposite sides of the server installation portion.

19. A server chassis, characterized in that: It includes the server-side liquid cooling structure as described in any one of claims 1-10, or the server-side power supply and liquid cooling structure as described in any one of claims 11-18.

20. A server, characterized in that: Comprising the server chassis as claimed in claim 19.

Citation Information

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