CN215817646U - UPS power supply with damping structure - Google Patents

UPS power supply with damping structure Download PDF

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Publication number
CN215817646U
CN215817646U CN202122024358.6U CN202122024358U CN215817646U CN 215817646 U CN215817646 U CN 215817646U CN 202122024358 U CN202122024358 U CN 202122024358U CN 215817646 U CN215817646 U CN 215817646U
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CN
China
Prior art keywords
shock absorption
cushioning
shock
ups
power supply
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Expired - Fee Related
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CN202122024358.6U
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Chinese (zh)
Inventor
郭建科
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Shenzhen Taili Power Supply Co ltd
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Shenzhen Taili Power Supply Co ltd
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Priority to CN202122024358.6U priority Critical patent/CN215817646U/en
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Expired - Fee Related legal-status Critical Current
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Abstract

The utility model belongs to the technical field of UPS power supplies, and particularly relates to a UPS power supply with a damping structure, which comprises a base, wherein two ends of the base are fixedly provided with shielding plates, one side of the tops of the two shielding plates, which is opposite to each other, is fixedly provided with a top plate, a power supply body is arranged between the top plate and the base, two sides of the top of the base are respectively provided with a second damping device, the top ends of the two second damping devices are provided with a damping plate, and two sides of the bottom of the top plate are respectively provided with a first damping device.

Description

UPS power supply with damping structure
Technical Field
The utility model relates to the technical field of UPS power supplies, in particular to a UPS power supply with a damping structure.
Background
UPS, i.e. an uninterruptible power supply, is an uninterruptible power supply that includes an energy storage device. The UPS is mainly used for providing uninterrupted power supply for partial equipment with higher requirement on the stability of the power supply, when the mains supply input is normal, the UPS supplies the mains supply to a load for use after stabilizing the voltage of the mains supply, and the UPS is an alternating current type voltage stabilizer and also charges a battery in the machine; when the commercial power is interrupted, the UPS supplies the direct current electric energy of the battery to the load continuously by the method of switching and converting the inverter with 220V alternating current, so that the load keeps normal work and protects the software and hardware of the load from being damaged. UPS devices typically provide protection against either excessive voltage or insufficient voltage.
At present, a UPS power supply is more and more important for our life, but the protection effect of the UPS power supply cannot be achieved at present, and the UPS power supply has no structure capable of cushioning.
SUMMERY OF THE UTILITY MODEL
The present invention has been made in view of the above and/or other problems occurring in the related art UPS power supply having a shock-absorbing structure.
Therefore, an object of the present invention is to provide a UPS power supply with a shock absorbing structure, which can solve the above-mentioned problem that the conventional UPS power supply does not have its own protection structure.
To solve the above technical problem, according to an aspect of the present invention, the present invention provides the following technical solutions:
a UPS power supply having a shock absorbing structure, comprising: the base, the equal fixed mounting in both ends of base has the shielding plate, two one side fixed mounting that the shielding plate top is relative has the roof, be provided with power supply body between roof and the base, the both sides at base top all are provided with second bradyseism device, two the top of second bradyseism device is provided with the bradyseism board, the both sides of roof bottom all are provided with first bradyseism device.
As a preferable aspect of the UPS power supply with a shock-absorbing structure according to the present invention, wherein: the first cushioning device is composed of a first cushioning frame, a first sliding block, a first cushioning spring, a first wood board, a first sliding groove and a first fixing pin block.
As a preferable aspect of the UPS power supply with a shock-absorbing structure according to the present invention, wherein: the bottom at the roof is seted up to first spout, the both ends of first spout inner wall all with first bradyseism spring fixed connection, the other end and the first slider fixed connection of first bradyseism spring, the bottom of first slider is passed through the bolt and is rotated with first bradyseism frame and be connected, two the other end of first bradyseism frame is passed through the bolt and is rotated with first fixed round pin piece and be connected, the bottom and the first plank fixed connection of first fixed round pin piece.
As a preferable aspect of the UPS power supply with a shock-absorbing structure according to the present invention, wherein: the first cushioning device is composed of a second cushioning frame, a second wood board, a second sliding block, a second cushioning spring, a second sliding groove and a second fixed pin block.
As a preferable aspect of the UPS power supply with a shock-absorbing structure according to the present invention, wherein: the bottom at the roof is seted up to the second spout, the both ends of second spout inner wall all with second slider sliding connection, the bottom of second slider is passed through the bolt and is rotated with second bradyseism frame and be connected, two second bradyseism frame middle part one side relative is passed through second bradyseism spring fixed connection, two the other end of second bradyseism frame passes through the bolt and is rotated with second fixed round pin piece and be connected, the bottom and the second plank fixed connection of second fixed round pin piece.
As a preferable aspect of the UPS power supply with a shock-absorbing structure according to the present invention, wherein: the second bradyseism device is including first bradyseism spout, the both ends at the base top are all seted up to first bradyseism spout, the inner wall sliding connection of first bradyseism spout has the second bradyseism slider, the top of second bradyseism slider is rotated through the bolt and is connected with first support frame.
As a preferable aspect of the UPS power supply with a shock-absorbing structure according to the present invention, wherein: the middle parts of the two first support frames are rotatably connected through bolts, the other ends of the first support frames are rotatably connected with first cushioning sliding blocks through the bolts, the first cushioning sliding blocks are slidably connected with second cushioning sliding grooves, and the second cushioning sliding grooves are arranged at two ends of the bottoms of the cushioning plates.
As a preferable aspect of the UPS power supply with a shock-absorbing structure according to the present invention, wherein: spring shock absorbers are fixedly mounted at two ends of one side, opposite to the cushioning plate, of the base, and the power body is mounted at the top of the cushioning plate.
Compared with the prior art:
1. when the shock absorption device is used, the second shock absorption device designed at the bottom of the power supply body can protect the power supply body, and meanwhile, the two spring shock absorbers improve the shock absorption effect of the bottom of the power supply body;
2. when the power supply is used, the first shock absorption device is designed at the top of the power supply body, so that when the power supply body is subjected to upward force, the power supply body can be protected by buffering force.
Drawings
FIG. 1 is a front view of the present invention;
FIG. 2 is an enlarged view of a first shock absorber device according to embodiment 1 of the present invention;
FIG. 3 is an enlarged view of a second shock absorber structure according to the present invention;
FIG. 4 is a perspective view of a second cushioning device of the present invention;
FIG. 5 is an enlarged view of a first shock absorber device according to embodiment 2 of the present invention.
In the figure, 1 base, 2 first shock absorber, 3 baffle plate, 4 second shock absorber, 5 top plate, 6 power body, 7 shock absorber plate, 8 spring shock absorber, 201 first shock absorber, 202 first slide block, 203 first shock absorber spring, 204 first wood plate, 205 first slide groove, 206 first fixed pin block, 207 second shock absorber frame, 208 second wood plate, 209 second slide block, 210 second shock absorber spring, 211 second slide groove, 212 second fixed pin block, 401 first support frame, 402 first shock absorber slide groove, 403 second shock absorber slide groove, 404 first shock absorber slide block, 405 second shock absorber slide block.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more apparent, embodiments of the present invention will be described in detail with reference to the accompanying drawings.
Embodiment 1, the utility model provides a UPS power supply with a damping structure, which has the advantage of damping, please refer to fig. 1-4, and includes a base 1, wherein two ends of the base 1 are both fixedly installed with shielding plates 3, one side of the two shielding plates 3 opposite to the top is fixedly installed with a top plate 5, a power supply body 6 is arranged between the top plate 5 and the base 1, two sides of the top of the base 1 are both provided with second damping devices 4, the top ends of the two second damping devices 4 are provided with damping plates 7, and two sides of the bottom of the top plate 5 are both provided with first damping devices 2;
further, first bradyseism device 2 is first bradyseism frame 201, first slider 202, first bradyseism spring 203, first plank 204, first spout 205 and first fixed pin piece 206 are constituteed, first spout 205 is seted up in the bottom of roof 5, the both ends of first spout 205 inner wall all with first bradyseism spring 203 fixed connection, the other end and the first slider 202 fixed connection of first bradyseism spring 203, the bottom of first slider 202 is passed through the bolt and is rotated with first bradyseism frame 201 and be connected, the other end of two first bradyseism frames 201 passes through the bolt and is rotated with first fixed pin piece 206 and be connected, the bottom and the first plank 204 fixed connection of first fixed pin piece 206, and is concrete, first bradyseism device 2 can protect the top of power supply body 6.
Further, second bradyseism device 4 is including first bradyseism spout 402, first bradyseism spout 402 is all seted up at the both ends at base 1 top, the inner wall sliding connection of first bradyseism spout 402 has second bradyseism slider 405, the top of second bradyseism slider 405 is rotated through the bolt and is connected with first support frame 401, the middle part of two first support frames 401 is rotated through the bolt and is connected, the other end of first support frame 401 is rotated through the bolt and is connected with first bradyseism slider 404, first bradyseism slider 404 sliding connection has second bradyseism spout 403, the both ends in bradyseism board 7 bottom are all seted up to second bradyseism spout 403, it is concrete, second bradyseism device 4 can play the effect of a buffering to power supply body 6's bottom.
Further, the base 1 and the relative one side both ends of bradyseism board 7 equal fixed mounting have spring damper 8, and is concrete, and spring damper 8 also can carry out the bradyseism to power supply body 6's bottom, and power supply body 6 installs the top at bradyseism board 7.
When specifically using, the person skilled in the art places power supply body 6 on bradyseism board 7 and below first plank 204, when power supply body 6 receives vibrations, can let first bradyseism slider 404 and second bradyseism slider 405 at first support frame 401 both ends slide in the inside of second bradyseism spout 403 and first bradyseism spout 402, can play a cushioning effect to power supply body 6 like this, spring damper 8 between bradyseism board 7 and base 1 also can play the effect of bradyseism, when power supply body 6 receives upwards power, first bradyseism spring 203 receives the pressure shrink, first slider 202 wants both sides motion, can play a cushioning effect, protect power supply body 6.
Embodiment 2, the utility model provides a UPS power supply with a damping structure, which has the advantage of damping, please refer to fig. 5, and includes a base 1, wherein two ends of the base 1 are both fixedly provided with shielding plates 3, one side of the two shielding plates 3 opposite to the top is fixedly provided with a top plate 5, a power supply body 6 is arranged between the top plate 5 and the base 1, two sides of the top of the base 1 are both provided with second damping devices 4, the top ends of the two second damping devices 4 are provided with damping plates 7, and two sides of the bottom of the top plate 5 are both provided with first damping devices 2;
further, first bradyseism device 2 is second bradyseism frame 207, second plank 208, second slider 209, second bradyseism spring 210, second spout 211 and second fixed pin piece 212 are constituteed, second spout 211 is seted up in the bottom of roof 5, the both ends of second spout 211 inner wall all with second slider 209 sliding connection, second slider 209's bottom is passed through the bolt and is connected with second bradyseism frame 207 rotation, two second bradyseism frame 207 middle parts relative one side is passed through second bradyseism spring 210 fixed connection, two second bradyseism frame 207's the other end passes through the bolt and is connected with second fixed pin piece 212 rotation, the bottom and the second plank 208 fixed connection of second fixed pin piece 212, it is concrete, first bradyseism device 2 can play a bradyseism effect to the top of power supply body 6 through second bradyseism spring 210.
In a specific use, when the power supply body 6 is forced upward, the second cushioning spring 210 is forced, and then the two second sliding blocks 209 slide to both sides in the second sliding grooves 211, so as to protect the power supply body 6.
While the utility model has been described above with reference to an embodiment, various modifications may be made and equivalents may be substituted for elements thereof without departing from the scope of the utility model. In particular, the various features of the disclosed embodiments of the utility model may be used in any combination, provided that no structural conflict exists, and the combinations are not exhaustively described in this specification merely for the sake of brevity and resource conservation. Therefore, it is intended that the utility model not be limited to the particular embodiments disclosed, but that the utility model will include all embodiments falling within the scope of the appended claims.

Claims (8)

1. The utility model provides a UPS power with shock-absorbing structure, includes base (1), the equal fixed mounting in both ends of base (1) has shielding plate (3), two one side fixed mounting that shielding plate (3) top is relative has roof (5), be provided with power supply body (6), its characterized in that between roof (5) and base (1): the two sides of the top of the base (1) are provided with second cushioning devices (4), the top ends of the second cushioning devices (4) are provided with cushioning plates (7), and the two sides of the bottom of the top plate (5) are provided with first cushioning devices (2).
2. The UPS with a shock absorption structure according to claim 1, wherein the first shock absorption device (2) is composed of a first shock absorption frame (201), a first sliding block (202), a first shock absorption spring (203), a first wood board (204), a first sliding groove (205) and a first fixed pin block (206).
3. The UPS with the shock absorption structure according to claim 2, wherein the first sliding groove (205) is formed at the bottom of the top plate (5), two ends of the inner wall of the first sliding groove (205) are fixedly connected with the first cushioning spring (203), the other end of the first cushioning spring (203) is fixedly connected with the first sliding block (202), the bottom end of the first sliding block (202) is rotatably connected with the first cushioning frame (201) through a bolt, the other ends of the two first cushioning frames (201) are rotatably connected with the first fixing pin block (206) through a bolt, and the bottom end of the first fixing pin block (206) is fixedly connected with the first wood plate (204).
4. The UPS power supply with a shock absorbing structure of claim 1, wherein the first shock absorber (2) is composed of a second shock absorber bracket (207), a second wood board (208), a second sliding block (209), a second shock absorber spring (210), a second sliding groove (211), and a second fixing pin block (212).
5. The UPS with the shock absorption structure according to claim 4, wherein the second sliding groove (211) is formed at the bottom of the top plate (5), two ends of the inner wall of the second sliding groove (211) are slidably connected with the second sliding block (209), the bottom end of the second sliding block (209) is rotatably connected with the second cushioning frame (207) through a bolt, one side of the two second cushioning frames (207) opposite to the middle is fixedly connected with the second cushioning spring (210), the other end of the two second cushioning frames (207) is rotatably connected with the second fixing pin block (212) through a bolt, and the bottom end of the second fixing pin block (212) is fixedly connected with the second wood plate (208).
6. The UPS with the shock absorption structure according to claim 1, wherein the second shock absorption device (4) comprises a first shock absorption sliding groove (402), the first shock absorption sliding groove (402) is arranged at two ends of the top of the base (1), a second shock absorption sliding block (405) is connected to the inner wall of the first shock absorption sliding groove (402) in a sliding mode, and the top end of the second shock absorption sliding block (405) is rotatably connected with the first support frame (401) through a bolt.
7. The UPS with the shock absorption structure according to claim 6, wherein the middle parts of the two first supporting frames (401) are rotatably connected through a bolt, the other ends of the first supporting frames (401) are rotatably connected with a first shock absorption sliding block (404) through a bolt, the first shock absorption sliding block (404) is slidably connected with a second shock absorption sliding groove (403), and the second shock absorption sliding grooves (403) are arranged at two ends of the bottom of the shock absorption plate (7).
8. The UPS with the shock absorption structure according to claim 1, wherein both ends of one side of the base (1) opposite to the shock absorption plate (7) are fixedly provided with spring shock absorbers (8), and the power body (6) is arranged on the top of the shock absorption plate (7).
CN202122024358.6U 2021-08-25 2021-08-25 UPS power supply with damping structure Expired - Fee Related CN215817646U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122024358.6U CN215817646U (en) 2021-08-25 2021-08-25 UPS power supply with damping structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122024358.6U CN215817646U (en) 2021-08-25 2021-08-25 UPS power supply with damping structure

Publications (1)

Publication Number Publication Date
CN215817646U true CN215817646U (en) 2022-02-11

Family

ID=80151606

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122024358.6U Expired - Fee Related CN215817646U (en) 2021-08-25 2021-08-25 UPS power supply with damping structure

Country Status (1)

Country Link
CN (1) CN215817646U (en)

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Granted publication date: 20220211