High-sealing UPS (Uninterrupted Power Supply) case

By introducing a water-cooled cooling system and temperature monitor into the UPS power supply chassis, combined with limit snaps and buffer extrusion springs, the time-consuming and labor-intensive replacement of dustproof nets is solved, high sealing and efficient heat dissipation are achieved, and the power supply service life is extended.

CN223141591UActive Publication Date: 2025-07-22NTR (SUZHOU) PRECISION TECH CO LTD
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Patent Information

Application Number
CN202422119842.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-30
Publication Date
2025-07-22
Estimated Expiration
2034-08-30

AI Technical Summary

Technical Problem

The dustproof net replacement of the existing UPS power chassis is time-consuming and labor-intensive, affecting sealing and heat dissipation efficiency.

Method used

A high-sealing UPS uninterruptible power supply chassis is designed, using a water-cooled cooling system and a temperature monitor to monitor the temperature in real time, automatically cool down through the water inlet pump and water-cooled cooling pipe, and sealing and shock absorption are achieved through limit snaps and buffering extrusion springs.

Benefits of technology

It realizes high sealing and efficient heat dissipation of the power supply case, extends the service life of the UPS power supply, and improves the convenience of use.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223141591U_ABST
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Abstract

The utility model discloses a high leakproofness uninterruptible power supply (UPS) case, which relates to the UPS case technical field, and comprises a power supply case main body, a water cooling chassis is fixedly installed at the bottom end of one side of the power supply case main body, and a water cooling heat dissipation pipe is fixedly installed at the top end in the water cooling chassis. A connecting block is fixedly connected to the top end of one side of the water cooling base plate, and a temperature monitor is fixedly installed at the top end of one side of the connecting block. By arranging a temperature monitor and further making contact with the power supply case main body through a temperature detection disc, real-time monitoring of the temperature of the power supply case main body is achieved, once the detected temperature is higher than a set peak value, a trigger control box can directly control starting of a water inlet pump at the moment, water is pumped into a water-cooling heat dissipation pipe through a water inlet pipe, and water cooling is achieved. The water cooling effect of the water cooling heat dissipation pipe is used for the overall cooling operation of the power supply case main body, and the sealing performance of the power supply case main body is guaranteed.
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Description

Technical Field

[0001] The utility model relates to the technical field of UPS power supply chassis, in particular to a high-sealing UPS uninterruptible power supply chassis. Background Art

[0002] UPS, namely uninterruptible power supply, is a system device that connects a storage battery (mostly lead-acid maintenance-free battery) to a host and converts direct current into commercial power through module circuits such as a host inverter. It is mainly used to provide stable and uninterrupted power supply for a single computer, a computer network system or other power electronic devices such as solenoid valves, pressure transmitters, etc. A chassis is generally installed outside the UPS power supply. A dust-proof net is usually installed on the general chassis. After the general dust-proof net is installed, if it is necessary to remove the dust-proof net for cleaning or replacement, it is necessary to use tools such as a screwdriver to screw off the screws for fixing the dust-proof net one by one, which is time-consuming and laborious. As a part of computer accessories, the chassis mainly plays the role of placing and fixing various computer accessories, playing a role of support and protection. In order to improve the high sealing of the device and not affect the heat dissipation efficiency of the device, we newly design a high-sealing UPS uninterruptible power supply chassis. Content of the Utility Model

[0003] The purpose of the utility model is to provide a high-sealing UPS uninterruptible power supply chassis.

[0004] To solve the above technical problems, the utility model provides the following technical solution: A high-sealing UPS uninterruptible power supply chassis, including a power supply chassis main body, a water-cooled chassis is fixedly installed at the bottom end of one side of the power supply chassis main body, a water-cooled heat dissipation pipe is fixedly installed at the top end inside the water-cooled chassis, a connection block is fixedly connected to the top end of one side of the water-cooled chassis, a temperature monitor is fixedly installed at the top end of one side of the connection block, an information transmission line is fixedly connected to the back of one side of the temperature monitor, a temperature detection disk is fixedly connected to the top end of one side of the information transmission line, a trigger control box is fixedly installed at the bottom end of one side of the temperature monitor, a water inlet pump is fixedly installed at one side of the water-cooled chassis close to the trigger control box, a water inlet pipe is communicated with the top end of one side of the water inlet pump, a water outlet pipe is communicated with the top end of one side of the water-cooled chassis close to the water inlet pipe, and a water pump power box is fixedly installed at one side of the water-cooled chassis close to the water inlet pump.

[0005] Preferably, the temperature detection disk is located on the surface of one side of the power supply chassis main body, the connection relationship between the temperature detection disk and the power supply chassis main body is a fixed connection, the connection relationship between the water inlet pipe and the water-cooled heat dissipation pipe is a communication, and the connection relationship between the water outlet pipe and the water-cooled heat dissipation pipe is a communication.

[0006] Preferably, a power control line is provided between the inlet water pump and the trigger control box. The connection relationship between the trigger control box and the inlet water pump is a power-driven connection. A power control line is provided between the water pump power box and the inlet water pump. The connection relationship between the water pump power box and the inlet water pump is a power-driven connection.

[0007] Preferably, mounting plates are fixedly installed on the top surfaces of both sides of the main body of the power supply chassis. A first limit snap-in plate is detachably installed inside the mounting plate. A heat dissipation metal plate is fixedly welded to the top end of one side of the first limit snap-in plate. A second limit snap-in plate is fixedly welded to the top end of one side of the heat dissipation metal plate.

[0008] Preferably, the first limit snap-in plate and the second limit snap-in plate are located inside the mounting plate. The first limit snap-in plate and the second limit snap-in plate are respectively located at both ends inside the mounting plate. The connection relationship between the first limit snap-in plate and the mounting plate is a movable snap connection. The connection relationship between the second limit snap-in plate and the mounting plate is a movable snap connection. The number of the heat dissipation metal plates is several, and several heat dissipation metal plates are equidistantly distributed between the first limit snap-in plate and the second limit snap-in plate.

[0009] Preferably, a temperature value display is fixedly installed on the top end of one side of the front surface of the temperature monitor. A peak setting dial is provided at the bottom end of the front surface of the temperature monitor. A power supply compartment is opened inside the main body of the power supply chassis. Buffer compression springs are fixedly connected to the inner walls on both sides of the power supply compartment. An extrusion limit plate is fixedly connected to the top end of one side of the buffer compression spring. A sealing slide rail is fixedly installed on the top end of one side of the main body of the power supply chassis. A sealing cover is slidably connected inside the sealing slide rail. A sliding friction block is fixedly installed on the top surface of one side of the sealing cover.

[0010] Preferably, the number of the buffer compression springs is several, and several buffer compression springs are distributed in a matrix between the extrusion limit plate and the main body of the power supply chassis. The extrusion limit plate is located inside the main body of the power supply chassis. The connection relationship between the extrusion limit plate and the main body of the power supply chassis is a sliding connection.

[0011] Compared with the related art, the high-sealing UPS uninterruptible power supply chassis provided by the present utility model has the following beneficial effects:

[0012] The utility model provides a high-sealing UPS uninterruptible power supply chassis. By setting a temperature monitor to contact the power supply chassis main body through a temperature detection disk, real-time monitoring of the temperature of the power supply chassis main body is realized. Once the detected temperature is higher than the set peak value, the trigger control box at this time will directly control the start of the water inlet pump, pump water into the internal of the water-cooled heat dissipation pipe through the water inlet pipe, and finally discharge it through the water outlet pipe after the transmission operation of the water-cooled heat dissipation pipe. The water-cooling effect of the water-cooled heat dissipation pipe cools the overall operation of the power supply chassis main body, ensures the sealing of the power supply chassis main body, and at the same time ensures the heat dissipation efficiency. Installation disks are set on both sides of the power supply chassis main body, and the heat dissipation metal plate is installed inside the installation disk through the first limit buckle disk and the second limit buckle disk, so that further cooling operation is realized for the power supply chassis main body on the side of the device, and the heat dissipation efficiency is further improved.

[0013] The utility model provides a high-sealing UPS uninterruptible power supply chassis. By setting a power supply compartment for placing the UPS power supply, the extrusion limit disk will automatically limit and install the UPS power supply. A plurality of buffer extrusion springs are arranged between the extrusion limit disk and the power supply chassis main body. First, it can better match the specifications of the UPS power supply. Second, it can play a certain shock-absorbing effect on the UPS power supply, increasing the service life of the UPS power supply. The sliding adjustment of the sealing cover inside the sealing slide rail can perform the overall sealing operation of the power supply chassis main body, ensuring the sealing of the power supply chassis main body during use, and the sliding friction block reflects the sliding convenience of the sealing cover. Brief Description of the Drawings

[0014] Figure 1 is a three-dimensional structure schematic diagram of the utility model;

[0015] Figure 2 is a structure schematic diagram of the water-cooled chassis of the utility model;

[0016] Figure 3 is a structure schematic diagram of the heat dissipation metal plate of the utility model;

[0017] Figure 4 is a structure schematic diagram of the internal sectional view of the power supply chassis main body of the utility model.

[0018] Reference numerals in the figures: 1, power supply chassis main body; 2, water-cooled chassis; 3, water-cooled heat dissipation pipe; 4, connecting block; 5, temperature monitor; 6, information transmission line; 7, temperature detection disk; 8, trigger control box; 9, water inlet pump; 10, water inlet pipe; 11, water outlet pipe; 12, water pump power box; 13, installation disk; 14, first limit buckle disk; 15, heat dissipation metal plate; 16, second limit buckle disk; 17, temperature value display; 18, peak value setting disk; 19, power supply compartment; 20, buffer extrusion spring; 21, extrusion limit disk; 22, sealing slide rail; 23, sealing cover; 24, sliding friction block. Detailed implementation mode Embodiment

[0019] Please refer to Figures 1-4 , the present utility model provides a technical solution: a high-sealing UPS uninterruptible power supply chassis, including a power supply chassis main body 1, a water-cooled chassis 2 is fixedly installed at the bottom end of one side of the power supply chassis main body 1, a water-cooled heat dissipation pipe 3 is fixedly installed at the top end inside the water-cooled chassis 2, a connection block 4 is fixedly connected to the top end of one side of the water-cooled chassis 2, a temperature monitor 5 is fixedly installed at the top end of one side of the connection block 4, an information transmission line 6 is fixedly connected to the back of one side of the temperature monitor 5, a temperature detection disc 7 is fixedly connected to the top end of one side of the information transmission line 6, a trigger control box 8 is fixedly installed at the bottom end of one side of the temperature monitor 5, a water inlet pump 9 is fixedly installed on the side of the water-cooled chassis 2 close to the trigger control box 8, a water inlet pipe 10 is communicated with the top end of one side of the water inlet pump 9, a water outlet pipe 11 is communicated with the top end of one side of the water-cooled chassis 2 close to the water inlet pipe 10, a water pump power box 12 is fixedly installed on the side of the water-cooled chassis 2 close to the water inlet pump 9, the temperature detection disc 7 is located on the surface of one side of the power supply chassis main body 1, and the connection relationship between the temperature detection disc 7 and the power supply chassis main body 1 is a fixed connection, the connection relationship between the water inlet pipe 10 and the water-cooled heat dissipation pipe 3 is a communication, the connection relationship between the water outlet pipe 11 and the water-cooled heat dissipation pipe 3 is a communication, a power control line is arranged between the water inlet pump 9 and the trigger control box 8, and the connection relationship between the trigger control box 8 and the water inlet pump 9 is a power-driven connection, a power control line is arranged between the water pump power box 12 and the water inlet pump 9, and the connection relationship between the water pump power box 12 and the water inlet pump 9 is a power-driven connection;

[0020] Mounting plates 13 are fixedly installed on the top end surfaces of both sides of the power supply chassis main body 1, a first limit snap disc 14 is detachably installed inside the mounting plate 13, a heat dissipation metal plate 15 is fixedly welded to the top end of one side of the first limit snap disc 14, a second limit snap disc 16 is fixedly welded to the top end of one side of the heat dissipation metal plate 15, the first limit snap disc 14 and the second limit snap disc 16 are located inside the mounting plate 13, the first limit snap disc 14 and the second limit snap disc 16 are respectively located at both ends inside the mounting plate 13, the connection relationship between the first limit snap disc 14 and the mounting plate 13 is an active snap connection, the connection relationship between the second limit snap disc 16 and the mounting plate 13 is an active snap connection, the number of the heat dissipation metal plates 15 is several, and several heat dissipation metal plates 15 are equally spaced between the first limit snap disc 14 and the second limit snap disc 16.

[0021] In an embodiment, by setting the temperature monitor 5 to contact the temperature detection disc 7 and then the main body 1 of the power supply chassis, the real-time monitoring of the temperature of the main body 1 of the power supply chassis is realized. Once the detected temperature is higher than the set peak value, the trigger control box 8 at this time will directly control the start of the water inlet pump 9, and pump the water body into the internal of the water-cooled heat dissipation pipe 3 through the water inlet pipe 10. After the transmission operation of the water-cooled heat dissipation pipe 3, it can be finally discharged through the water outlet pipe 11. The water-cooling effect of the water-cooled heat dissipation pipe 3 for the overall cooling operation of the main body 1 of the power supply chassis ensures the sealing of the main body 1 of the power supply chassis and at the same time ensures the heat dissipation efficiency. Installation discs 13 are set on both sides of the main body 1 of the power supply chassis, and the heat dissipation metal plate 15 is installed inside the installation disc 13 through the first limit buckle disc 14 and the second limit buckle disc 16, so as to realize further cooling operation for the main body 1 of the power supply chassis on the side of the device, and further improve the heat dissipation efficiency. Embodiment

[0022] Please refer to Figures 1-4 , the present utility model provides a technical solution: a high-sealing UPS uninterruptible power supply chassis, including a temperature value display 17 fixedly installed at the top end of the front side of the temperature monitor 5, a peak value setting disc 18 is arranged at the bottom end of the front side of the temperature monitor 5, a power supply compartment 19 is opened inside the main body 1 of the power supply chassis, buffer extrusion springs 20 are fixedly connected to the inner walls on both sides of the power supply compartment 19, an extrusion limit disc 21 is fixedly connected to the top end of one side of the buffer extrusion spring 20, a sealing slide rail 22 is fixedly installed at the top end of one side of the main body 1 of the power supply chassis, a sealing cover 23 is slidably connected inside the sealing slide rail 22, a sliding friction block 24 is fixedly installed on the surface of the top end of one side of the sealing cover 23, the number of the buffer extrusion springs 20 is several, and several buffer extrusion springs 20 are distributed in a matrix between the extrusion limit disc 21 and the main body 1 of the power supply chassis, and the extrusion limit disc 21 is located inside the main body 1 of the power supply chassis, and the connection relationship between the extrusion limit disc 21 and the main body 1 of the power supply chassis is a sliding connection.

[0023] In an embodiment, by setting the power supply compartment 19 for placing the UPS power supply, the extrusion limit disc 21 will automatically limit and install the UPS power supply at this time. A plurality of groups of buffer extrusion springs 20 are arranged between the extrusion limit disc 21 and the main body 1 of the power supply chassis. First, it can better adapt to the specifications of the UPS power supply. Second, it can play a certain shock-absorbing effect on the UPS power supply and increase the service life of the UPS power supply. The sliding adjustment of the sealing cover 23 inside the sealing slide rail 22 can perform the overall sealing operation of the main body 1 of the power supply chassis and ensure the sealing performance of the main body 1 of the power supply chassis during use. The sliding friction block 24 reflects the sliding convenience of the sealing cover 23.

[0024] Working principle:

[0025] By setting the temperature monitor 5 to contact the temperature detection disc 7 and then the main body 1 of the power supply chassis, the real-time monitoring of the temperature of the main body 1 of the power supply chassis is realized. Once the detected temperature is higher than the set peak value, the trigger control box 8 at this time will directly control the start of the water inlet pump 9, and pump the water body into the internal of the water-cooled heat dissipation pipe 3 through the water inlet pipe 10. After the transmission operation of the water-cooled heat dissipation pipe 3, it can be discharged through the water outlet pipe 11 at last. The water-cooling effect of the water-cooled heat dissipation pipe 3 is for the overall cooling operation of the main body 1 of the power supply chassis, ensuring the sealing of the main body 1 of the power supply chassis and at the same time ensuring the heat dissipation efficiency. Installation discs 13 are set on both sides of the main body 1 of the power supply chassis, and the heat dissipation metal plate 15 is installed inside the installation disc 13 through the first limit buckle disc 14 and the second limit buckle disc 16, so as to realize further cooling operation for the main body 1 of the power supply chassis on the side of the device and further improve the heat dissipation efficiency;

[0026] By setting the power supply compartment 19 for placing the UPS power supply, the extrusion limit disc 21 will automatically achieve the effect of limiting and installing the UPS power supply at this time. A plurality of buffer extrusion springs 20 are arranged between the extrusion limit disc 21 and the main body 1 of the power supply chassis. First, it can better match the specifications of the UPS power supply. Second, it can play a certain shock-absorbing effect on the UPS power supply and increase the service life of the UPS power supply. The sliding adjustment of the sealing cover 23 inside the sealing slide rail 22 can perform the overall sealing operation of the main body 1 of the power supply chassis and ensure the sealing of the main body 1 of the power supply chassis during use. The sliding friction block 24 reflects the sliding convenience of the sealing cover 23.

Claims

1. A high-sealing UPS uninterruptible power supply chassis, including a power supply chassis main body (1), a water-cooled chassis (2) is fixedly installed at the bottom end of one side of the power supply chassis main body (1), and it is characterized in that: At the inner top of the water-cooled chassis (2), a water-cooled heat dissipation pipe (3) is fixedly installed. At the top of one side of the water-cooled chassis (2), a connection block (4) is fixedly connected. At the top of one side of the connection block (4), a temperature monitor (5) is fixedly installed. At the back of one side of the temperature monitor (5), an information transmission line (6) is fixedly connected. At the top of one side of the information transmission line (6), a temperature detection disc (7) is fixedly connected. At the bottom of one side of the temperature monitor (5), a trigger control box (8) is fixedly installed. On the side of the water-cooled chassis (2) close to the trigger control box (8), a water inlet pump (9) is fixedly installed. At the top of one side of the water inlet pump (9), a water inlet pipe (10) is communicated. At the top of one side of the water-cooled chassis (2) close to the water inlet pipe (10), a water outlet pipe (11) is communicated. On the side of the water-cooled chassis (2) close to the water inlet pump (9), a water pump power box (12) is fixedly installed.

2. The high-sealing UPS uninterruptible power supply chassis according to claim 1, wherein The temperature detection disc (7) is located on one side surface of the power supply chassis main body (1), and the connection relationship between the temperature detection disc (7) and the power supply chassis main body (1) is a fixed connection. The connection relationship between the water inlet pipe (10) and the water-cooled heat dissipation pipe (3) is a communication. The connection relationship between the water outlet pipe (11) and the water-cooled heat dissipation pipe (3) is a communication.

3. A high-sealing UPS uninterruptible power supply chassis according to claim 1, characterized in that, A power control line is arranged between the water inlet pump (9) and the trigger control box (8), and the connection relationship between the trigger control box (8) and the water inlet pump (9) is a power-driven connection. A power control line is arranged between the water pump power box (12) and the water inlet pump (9), and the connection relationship between the water pump power box (12) and the water inlet pump (9) is a power-driven connection.

4. A high-sealing UPS uninterruptible power supply chassis according to claim 1, characterized in that, At the top surfaces of both sides of the power supply chassis main body (1), mounting discs (13) are fixedly installed. Inside the mounting discs (13), first limit snap discs (14) are detachably installed. At the top of one side of the first limit snap disc (14), a heat dissipation metal plate (15) is fixedly welded. At the top of one side of the heat dissipation metal plate (15), a second limit snap disc (16) is fixedly welded.

5. A high-sealing UPS uninterruptible power supply chassis according to claim 4, characterized in that, The first limit snap disc (14) and the second limit snap disc (16) are located inside the mounting disc (13). The first limit snap disc (14) and the second limit snap disc (16) are respectively located at both ends inside the mounting disc (13). The connection relationship between the first limit snap disc (14) and the mounting disc (13) is an active snap connection. The connection relationship between the second limit snap disc (16) and the mounting disc (13) is an active snap connection. The number of the heat dissipation metal plates (15) is several, and several heat dissipation metal plates (15) are equidistantly distributed between the first limit snap disc (14) and the second limit snap disc (16).

6. The high-sealing UPS uninterruptible power supply chassis according to claim 1, wherein On the top of the front side of the temperature monitor (5), a temperature value display (17) is fixedly installed. At the bottom end of the front side of the temperature monitor (5), a peak setting dial (18) is provided. Inside the power supply chassis main body (1), a power supply compartment (19) is opened. On the inner walls on both sides of the power supply compartment (19), buffer extrusion springs (20) are fixedly connected. At the top end of one side of the buffer extrusion spring (20), an extrusion limit disc (21) is fixedly connected. On the top end of one side of the power supply chassis main body (1), a sealing slide rail (22) is fixedly installed. Inside the sealing slide rail (22), a sealing cover (23) is slidably connected. On the surface of the top end of one side of the sealing cover (23), a sliding friction block (24) is fixedly installed.

7. A highly-sealed UPS uninterruptible power supply chassis according to claim 6, characterized in that, The number of the buffer extrusion springs (20) is several. The several buffer extrusion springs (20) are distributed in a matrix between the extrusion limit disc (21) and the power supply chassis main body (1). The extrusion limit disc (21) is located inside the power supply chassis main body (1). The connection relationship between the extrusion limit disc (21) and the power supply chassis main body (1) is a sliding connection.