Anti-interference UPS (Uninterrupted Power Supply)
By introducing reflective and heat-conducting structures into the UPS power supply, electromagnetic interference and heat dissipation problems are solved, achieving anti-interference and efficient heat dissipation, and extending equipment life.
Patent Information
- Application Number
- CN202520226764.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-13
- Publication Date
- 2026-01-30
- Estimated Expiration
- 2035-02-13
AI Technical Summary
Existing UPS power supplies are susceptible to electromagnetic interference during long-term operation, which leads to reduced stability. Poor heat dissipation and simple support structure design result in overheating and metal fatigue, affecting service life.
The system employs a reflective structure to absorb and reflect electromagnetic waves, combined with a heat-conducting and supporting structure. It utilizes the expansion of inert gas to provide support, reducing the stress on the fixing ears and improving heat dissipation efficiency and support effect.
It enhances the UPS power supply's anti-interference capability, improves heat dissipation efficiency, extends equipment lifespan, and reduces metal fatigue.
Smart Images

Figure CN223858893U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to power supply equipment technical field, specifically, relate to an anti -interference UPS uninterruptible power supply. BACKGROUND
[0002] The existing uninterruptible power supply (UPS) in practical application, due to long -term running environment electromagnetic interference, often will lead to the stability of power supply reduces. Meanwhile, the heat dissipation effect of traditional UPS power supply is limited, and poor heat dissipation can easily cause the overheating problem of equipment. In addition, the support structure design of existing UPS power supply is relatively simple, and uneven stress of the fixing lug can easily occur during equipment installation and operation, leading to equipment metal fatigue, affecting the service life of UPS power supply. For these problems, the prior art has not provided an effective solution. SUMMARY
[0003] In view of the problems in the related art, the utility model provides an anti-interference UPS uninterruptible power supply to overcome the above technical problems existing in the prior art.
[0004] Therefore, the utility model adopts the specific technical scheme as follows:
[0005] An anti-interference UPS uninterruptible power supply, comprising a power supply structure, the power supply structure comprising an uninterruptible power supply, a fixing lug, the fixing lug being provided on the uninterruptible power supply, the uninterruptible power supply being connected with a reflection structure at both ends, the reflection structure being connected with a mounting structure, the mounting structure being connected with a heat conduction structure, and the heat conduction structure being connected with a support structure.
[0006] Further, the reflection structure comprises a reflection metal plate and a mounting slot, the reflection metal plate is fixedly installed at both ends of the uninterruptible power supply, the mounting slot is formed in the reflection metal plate, and the mounting structure is installed in the mounting slot.
[0007] Further, the mounting structure comprises a mounting plate, a butt joint hole, a butt joint slot, and a penetrating hole, the butt joint hole is formed in one end of the mounting plate, the butt joint hole is matched with a butt joint bolt in the mounting slot, the butt joint slot is formed in the mounting plate, and the penetrating hole is formed in the slot wall of the butt joint slot.
[0008] Further, the support structure comprises a supporting plate, a first telescopic sleeve, a bottom plate, a first air cavity, a second telescopic sleeve, a second air cavity, a communication port, an air inlet pipe, and a pressure-reducing check valve, one end of the first telescopic sleeve is sealingly connected to the peripheral side of the supporting plate, the other end of the first telescopic sleeve is connected to the bottom plate, one end of the second telescopic sleeve is connected to the bottom plate, the other end of the second telescopic sleeve is connected to the supporting plate, the second telescopic sleeve is filled with the second air cavity, the first air cavity is formed between the second telescopic sleeve and the first telescopic sleeve, the communication port is formed in the center of the bottom plate, the first telescopic sleeve is connected with the air inlet pipe, and the pressure-reducing check valve is installed on the air inlet pipe.
[0009] Further, the heat conduction structure comprises a heat conduction block, a hollow cavity and a butt joint, the heat conduction block is installed on the butt joint groove, the hollow cavity is arranged in the heat conduction block, and the butt joint is arranged at one end of the heat conduction block and communicates with the communication port.
[0010] The utility model discloses beneficial effect is: the utility model discloses a reflection structure is set up in uninterrupted power supply two ends, utilizes the reflection metal board to effectively absorb and reflect electromagnetic wave, has promoted the anti -interference ability of UPS power supply, simultaneously, the heat conduction structure passes through the absorption power supply's heat, combines the air cavity system of support structure, can provide the sustained support under different air pressure, reduces the stress of fixed ear, slows down the equipment metal fatigue, this design not only has improved the heat dissipation efficiency of UPS power supply, has strengthened the overall support effect of power supply, has prolonged the service life of equipment. BRIEF DESCRIPTION OF DRAWINGS
[0011] In order to more clearly illustrate the technical scheme in the embodiment of the utility model or prior art, the following will briefly introduce the drawing needed to be used in the embodiment, obviously, the drawing in the following description only is some embodiments of the utility model, for ordinary skilled person in the art comes, under the premise of not paying the creative labor, can also obtain other drawings according to these drawings.
[0012] Figure 1 It is the main body structure schematic diagram of anti -interference type UPS uninterrupted power supply according to the utility model embodiment;
[0013] Figure 2 It is the reflection structure schematic diagram of anti -interference type UPS uninterrupted power supply according to the utility model embodiment;
[0014] Figure 3 It is the mounting plate schematic diagram of anti -interference type UPS uninterrupted power supply according to the utility model embodiment;
[0015] Figure 4 It is the mounting structure schematic diagram of anti -interference type UPS uninterrupted power supply according to the utility model embodiment;
[0016] Figure 5 It is the through hole schematic diagram of anti -interference type UPS uninterrupted power supply according to the utility model embodiment;
[0017] Figure 6 It is the heat conduction structure schematic diagram of anti -interference type UPS uninterrupted power supply according to the utility model embodiment;
[0018] Figure 7 It is the support structure schematic diagram of anti -interference type UPS uninterrupted power supply according to the utility model embodiment.
[0019] In the drawing:
[0020] 1, power supply structure; 101, uninterruptible power supply; 102, fixed lug; 2, reflection structure; 201, reflective metal plate; 202, mounting groove; 3, mounting structure; 301, mounting plate; 302, butt joint hole; 303, butt joint groove; 304, through hole; 4, support structure; 401, support plate; 402, first telescopic sleeve; 403, bottom plate; 404, first air cavity; 405, second telescopic sleeve; 406, second air cavity; 407, communication port; 408, air inlet pipe; 409, pressure reducing check valve; 5, heat conduction structure; 501, heat conduction block; 502, hollow cavity; 503, butt joint port. DETAILED DESCRIPTION
[0021] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0022] According to the embodiments of the present application, an anti-interference UPS uninterruptible power supply is provided.
[0023] Embodiment one;
[0024] As Figures 1-7 shown, the anti-interference UPS uninterruptible power supply according to the embodiments of the present application comprises a power supply structure 1, the power supply structure 1 comprising an uninterruptible power supply 101 and a fixed lug 102, the fixed lug 102 being arranged on the uninterruptible power supply 101, and the uninterruptible power supply 101 being connected with a reflection structure 2 at both ends, the reflection structure 2 being connected with a mounting structure 3, the mounting structure 3 being connected with a heat conduction structure 5, and the heat conduction structure 5 being connected with a support structure 4.
[0025] The uninterruptible power supply 101 of the power supply structure 1 is a module rack type UPS power supply with a fixed lug 102, and the uninterruptible power supply 101 of the present application type can be installed on a UPS power supply rack, facilitating installation, management, disassembly and maintenance. The reflection structure 2 arranged thereon can improve the anti-interference function of the uninterruptible power supply 101, and the heat conduction structure 5 arranged thereon in cooperation with the support structure 4 can improve the support effect between the uninterruptible power supplies 101 on the power supply rack by utilizing the heat generated by the internal body and the external air inlet device, reduce the stress of the fixed lug 102, improve the overall support effect of the uninterruptible power supply 101, and prevent metal fatigue of the body of the uninterruptible power supply 101.
[0026] The reflecting structure 2 comprises a reflecting metal plate 201 and a mounting groove 202, the reflecting metal plate 201 is fixedly installed at both ends of the uninterrupted power supply 101, the mounting groove 202 is arranged on the reflecting metal plate 201, and the mounting structure 3 is installed in the mounting groove 202.
[0027] The reflecting metal plate 201 of the reflecting structure 2 is made of aluminum or steel and has good anti-interference function and can absorb and reflect electromagnetic waves and the like, and the mounting groove 202 is used for abutting the mounting structure 3.
[0028] The mounting structure 3 comprises a mounting plate 301, an abutting hole 302, an abutting groove 303 and a penetrating hole 304, the abutting hole 302 is arranged at one end of the mounting plate 301, the abutting bolt matched with the abutting hole 302 is arranged in the mounting groove 202, the abutting groove 303 is arranged on the mounting plate 301, and the penetrating hole 304 is arranged on the groove wall of the abutting groove 303.
[0029] The mounting plate 301 of the mounting structure 3 is fixedly installed in the mounting groove 202 through the abutting hole 302, the penetrating hole 304 is used for penetrating the air inlet pipe 408, and the abutting groove 303 is used for mounting the heat-conducting structure 5.
[0030] The supporting structure 4 comprises a supporting plate 401, a first telescopic sleeve 402, a bottom plate 403, a first air cavity 404, a second telescopic sleeve 405, a second air cavity 406, a communication port 407, an air inlet pipe 408 and a pressure-reducing one-way valve 409, one end of the first telescopic sleeve 402 is sealingly connected to the circumferential side of the supporting plate 401, the other end of the first telescopic sleeve 402 is connected to the bottom plate 403, one end of the second telescopic sleeve 405 is connected to the bottom plate 403, the other end of the second telescopic sleeve 405 is connected to the supporting plate 401, the second air cavity 406 is arranged in the second telescopic sleeve 405, the first air cavity 404 is arranged between the second telescopic sleeve 405 and the first telescopic sleeve 402, the communication port 407 is arranged at the center of the bottom plate 403, the air inlet pipe 408 is connected to the first telescopic sleeve 402, and the pressure-reducing one-way valve 409 is installed on the air inlet pipe 408.
[0031] The heat-conducting structure 5 comprises a heat-conducting block 501, a hollow cavity 502 and an abutting port 503, the heat-conducting block 501 is installed on the abutting groove 303, the hollow cavity 502 is arranged in the heat-conducting block 501, and the abutting port 503 is arranged at one end of the heat-conducting block 501.
[0032] The heat-conducting block 501 is installed in the butt joint groove 303, and the bottom end of the heat-conducting block 501 is directly connected to the body of the uninterruptible power supply 101; the heat-conducting block 501 can absorb the heat of the uninterruptible power supply 101; inert gas is introduced into the hollow cavity 502; the gas expands when heated, the air pressure of the second air cavity 406 of the second telescopic sleeve 405 increases, the second telescopic sleeve 405 is stretched, the supporting plate 401 drives the first telescopic sleeve 402 to stretch; if other uninterruptible power supplies 101 are installed on the power supply rack, or the uninterruptible power supply 101 is installed close to the bottom of the rack, the supporting plate 401 of the support structure 4 at the bottom end of the uninterruptible power supply 101 contacts the top end of the other uninterruptible power supply 101 or the bottom end of the rack, thereby supporting the uninterruptible power supply 101; a voltage stabilizing device can be externally connected; the voltage stabilizing device is connected to the air inlet pipe 408; the air inlet pressure of the pressure reducing check valve 409 is adjusted; the gas pressure inside the first air cavity 404 of the first telescopic sleeve 402 is maintained; a continuous supporting force is provided; the second telescopic sleeve 405 can be stretched when the air pressure in the first air cavity 404 is low; the temperature of the first air cavity 404 is reduced; and the heat-conducting effect of the heat-conducting block 501 is improved.
[0033] In order to facilitate the understanding of the above technical solutions of the present application, the working principle or operation mode of the present application in the actual process will be described in detail below.
[0034] In summary, by means of the technical scheme of the utility model, the uninterrupted power supply 101 of the power supply structure 1 is a module rack type UPS power supply with fixing ears 102, the uninterrupted power supply 101 of the utility model type can be installed on the UPS power supply rack, installation and management dismounting maintenance are facilitated, the reflection structure 2 is provided, the anti-interference function of the uninterrupted power supply 101 can be improved, the heat generated by the internal body and the external air inlet device are utilized to improve the support effect between the uninterrupted power supplies 101 on the power supply rack, the stress of the fixing ear 102 is reduced, the overall support effect of the uninterrupted power supply 101 is improved, metal fatigue of the body of the uninterrupted power supply 101 is prevented, the reflection metal plate 201 of the reflection structure 2 is an aluminum or steel metal plate, has a better anti-interference function, can absorb and reflect electromagnetic waves, the installation groove 202 is used for connecting the installation structure 3, the mounting plate 301 of the installation structure 3 is fixedly installed in the installation groove 202 through the connecting hole 302, the penetrating hole 304 is used for penetrating the air inlet pipe 408, the connecting groove 303 is used for installing the heat conduction structure 5, the heat conduction block 501 is installed in the connecting groove 303, the bottom end of the heat conduction block 501 directly contacts the body of the uninterrupted power supply 101, the heat conduction block 501 can absorb the heat of the uninterrupted power supply 101, inert gas is introduced into the hollow cavity 502, the gas is expanded when heated, the air pressure of the second air cavity 406 of the second telescopic sleeve 405 is increased, the second telescopic sleeve 405 is stretched, the supporting plate 401 drives the first telescopic sleeve 402 to stretch, if other uninterrupted power supplies 101 are installed on the power supply rack or the uninterrupted power supply 101 is installed close to the bottom of the rack, the supporting plate 401 of the support structure 4 at the bottom end of the uninterrupted power supply 101 contacts the top end of other uninterrupted power supplies 101 or the bottom end of the rack, thereby supporting the uninterrupted power supply 101, a voltage stabilizing device can be externally connected, the voltage stabilizing device is connected with the air inlet pipe 408, the air inlet pressure of the pressure reducing check valve 409 is adjusted, the first air cavity 404 of the first telescopic sleeve 402 can maintain a certain gas pressure, continuous support force is provided, the second telescopic sleeve 405 in the first air cavity 404 can be stretched when the air pressure is low, thereby reducing the temperature of the first air cavity 404, and the heat conduction effect of the heat conduction block 501 is improved.
[0035] The above merely describes preferred embodiments of the utility model and is not intended to limit the utility model, and any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the utility model shall be included in the protection scope of the utility model.
Claims
1. An anti-jam UPS uninterruptible power supply, characterized by, The application relates to a power supply structure (1) which comprises an uninterruptible power supply (101) provided with fixing ears (102), a reflecting structure (2) connected to the two ends of the uninterruptible power supply (101), a mounting structure (3) connected to the reflecting structure (2), a heat conduction structure (5) connected to the mounting structure (3), and a supporting structure (4) connected to the heat conduction structure (5).
2. The anti-jam UPS uninterruptible power supply of claim 1, wherein, The reflecting structure (2) comprises a reflecting metal plate (201) and mounting grooves (202), the reflecting metal plate (201) is fixedly installed at the two ends of the uninterruptible power supply (101), the mounting grooves (202) are formed in the reflecting metal plate (201), and the mounting structure (3) is installed in the mounting grooves (202).
3. The tamper-resistant UPS uninterruptible power supply of claim 2, wherein, The mounting structure (3) comprises a mounting plate (301), a butt joint hole (302), a butt joint groove (303) and a penetrating hole (304), one end of the mounting plate (301) is provided with the butt joint hole (302), the butt joint hole (302) is matched with a butt joint bolt in the mounting groove (202), the butt joint groove (303) is formed in the mounting plate (301), and the penetrating hole (304) is formed in the groove wall of the butt joint groove (303).
4. The tamper-resistant UPS uninterruptible power supply of claim 3, wherein, The supporting structure (4) comprises a supporting plate (401), a first telescopic sleeve (402), a bottom plate (403), a first air cavity (404), a second telescopic sleeve (405), a second air cavity (406), a communication port (407), an air inlet pipe (408) and a pressure-reducing check valve (409), one end of the first telescopic sleeve (402) is sealingly connected to the periphery of the supporting plate (401), and the other end of the first telescopic sleeve (402) is connected to the bottom plate (403).
5. The tamper-resistant UPS uninterruptible power supply of claim 4, wherein, One end of the second telescopic sleeve (405) is connected to the bottom plate (403), the other end of the second telescopic sleeve (405) is connected to the supporting plate (401), the second telescopic sleeve (405) is provided with the second air cavity (406), and the first air cavity (404) is formed between the second telescopic sleeve (405) and the first telescopic sleeve (402).
6. The tamper-resistant UPS uninterruptible power supply of claim 5, wherein, The communication port (407) is formed in the center of the bottom plate (403), the air inlet pipe (408) is connected to the first telescopic sleeve (402), and the pressure-reducing check valve (409) is installed on the air inlet pipe (408).
7. The tamper-resistant UPS uninterruptible power supply of claim 6, wherein, The heat conduction structure (5) comprises a heat conduction block (501), a hollow cavity (502) and a butt joint port (503), the heat conduction block (501) is installed on the butt joint groove (303), the hollow cavity (502) is formed in the heat conduction block (501), one end of the heat conduction block (501) is provided with the butt joint port (503), and the butt joint port (503) is connected to the communication port (407).