Power supply and distribution UPS (Uninterrupted Power Supply) case and control method thereof

By designing a mobile device in the UPS power supply case, the stable fixation and convenient replacement of the battery are achieved, and the problems of inconvenient replacement and susceptible damage in the prior art are solved.

CN120073520AActive Publication Date: 2025-05-30YI SHI TE DIAN LI XI TONG JI SHU YOU XIAN GONG SI
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Patent Information

Application Number
CN202510215928.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-02-26
Publication Date
2025-05-30
Estimated Expiration
2045-02-26

AI Technical Summary

Technical Problem

The existing UPS power chassis needs to be removed when replacing the battery, which is inconvenient to operate, and the battery shaking inside the chassis is easily damaged by collision or unstable connection.

Method used

A UPS power supply chassis including a chassis, a battery and a conversion device is designed. The mobile device is composed of a mounting base, a driving rod, a mobile seat, a clamp, a spring and a locking assembly. Through sliding connection and the cooperation of the spring, the battery can be stabilized and conveniently replaced.

Benefits of technology

The battery is stable and fixed, avoiding the problem of collision damage or loose connection when moving in the chassis, simplifying the battery replacement process, and improving the convenience and safety of operation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the field of power supply cases, in particular to a power supply and distribution UPS power supply case and a control method thereof.The power supply and distribution UPS power supply case comprises a case body, a storage battery, a conversion device and a moving device; the moving device comprises a mounting seat, a driving rod, a moving seat, a clamping plate, a first spring and a locking assembly, the mounting seat is pushed to move into the case, the moving seat is driven to move in the moving process of the mounting seat, and after an inclined surface on the moving seat is in contact with an inclined surface on the driving rod, the driving rod drives the moving seat to move, so that the moving seat drives the clamping plate to move towards the storage battery; the two clamping plates are arranged on the mounting base, so that the two clamping plates can clamp the two sides of the storage battery, a plug on the storage battery is connected with the connector in the process that the mounting base moves towards the interior of the case, then the storage battery is connected with the conversion device, and finally the mounting base is locked through the locking assembly.
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Description

Technical Field

[0001] The present invention relates to the field of power supply chassis, and particularly to a power supply and distribution UPS power supply chassis and its control method. Background Art

[0002] UPS, namely uninterruptible power supply, is an uninterruptible power supply containing an energy storage device. In traditional UPS power supplies, it is inconvenient to replace the internal storage battery. When disassembling the storage battery, the entire chassis needs to be disassembled, resulting in inconvenient operation.

[0003] The prior art CN220527733U discloses an uninterruptible power supply chassis, including a power supply chassis box body. The inner wall of the power supply chassis box body is fixedly connected with an internal protection frame. A push-pull plate is arranged inside the internal protection frame. A plurality of storage batteries are arranged on the upper surface of the push-pull plate. The inner bottom wall of the power supply chassis box body is fixedly connected with a power conversion box. Each storage battery is electrically connected to the power conversion box through a connecting wire. A fixed baffle is fixedly connected to the back surface of the push-pull plate. A plurality of heat dissipation fans are fixedly connected to the inner wall of the power supply chassis box body. By installing the storage batteries inside the device, the electric quantity can be stored, so that the chassis can continuously supply power when a power outage occurs. By placing the storage batteries in the push-pull plate, it is convenient to replace the storage batteries, increasing the practicability of the device. At the same time, by installing the storage batteries inside the chassis, the occupied area of the chassis can be reduced and it is convenient to carry.

[0004] The above device facilitates the removal of the storage battery through the push-pull plate. However, the storage battery is only placed on the push-pull plate, resulting in instability. When the chassis is moved, the storage battery is likely to shake inside the chassis, causing the storage battery to be damaged by collision or the connection to be unstable. Summary of the Invention

[0005] The purpose of the present invention is to provide a power supply and distribution UPS power supply chassis and its control method, which solves the problem that in an existing uninterruptible power supply chassis, it is convenient to remove the storage battery through the push-pull plate, but the storage battery is only placed on the push-pull plate, resulting in instability. When the chassis is moved, the storage battery is likely to shake inside the chassis, causing the storage battery to be damaged by collision or the connection to be unstable.

[0006] To achieve the above object, the present invention provides a power supply and distribution UPS power supply chassis and its control method, including a chassis, a storage battery, and a conversion device. The storage battery is arranged inside the chassis. The conversion device is arranged inside the chassis and is electrically connected to the storage battery. It further includes a moving device. The moving device includes a mounting seat, a driving rod, a moving seat, a clamping plate, a first spring, and a locking component. The mounting seat is slidably connected to the chassis, is connected to the storage battery, and is located inside the chassis. The driving rod is fixedly connected to the chassis and is located inside the chassis. The moving seat is slidably connected to the mounting seat and is arranged on the chassis. The clamping plate is fixedly connected to the moving seat and is arranged on the moving seat. Two ends of the first spring are respectively connected to the moving seat and the mounting seat. The first spring is located inside the mounting seat. The locking component is arranged on the mounting seat.

[0007] Wherein, the clamping plate includes a plate body and a rubber pad. The plate body is fixedly connected to the moving seat and is arranged on the moving seat. The rubber pad is fixedly connected to the plate body and is located on a side of the plate body close to the storage battery.

[0008] Wherein, the locking component includes a driving seat, a locking plate, a first driving shaft, and a driving member. The driving seat is slidably connected to the mounting seat and is located inside the mounting seat. The first driving shaft is slidably connected to the driving seat and is arranged on the driving seat. The locking plate is fixedly connected to the first driving shaft, is slidably connected to the mounting seat, and is arranged on the first driving shaft. The driving member is arranged on the mounting seat.

[0009] Wherein, the locking component further includes a locking seat and a second driving shaft. The second driving shaft is slidably connected to the driving seat and is arranged on the driving seat. The locking seat is fixedly connected to the second driving shaft, is slidably connected to the mounting seat, and is arranged on the second driving shaft.

[0010] Wherein, the driving seat has a first driving groove and a second driving groove. The first driving groove is arranged on a side of the driving seat close to the first driving shaft. The second driving groove is arranged on a side of the driving seat close to the second driving shaft.

[0011] Wherein, the driving member includes a connecting rod, a second spring, a slider, and a rotating component. The slider is slidably connected to the mounting seat and is located inside the mounting seat. Two ends of the connecting rod are respectively fixedly connected to the slider and the driving seat. The connecting rod is located inside the mounting seat. Two ends of the second spring are respectively connected to the connecting rod and the mounting seat. The second spring is sleeved on the connecting rod. The rotating component is used to drive the slider to move.

[0012] The present invention also includes a control method for a power supply and distribution UPS power supply chassis, which is applied to the power supply and distribution UPS power supply chassis, and includes the following steps:

[0013] First, the commercial power enters the conversion device through the input end, and after being preprocessed by the conversion device, the high-frequency noise and interference in the power grid are removed;

[0014] The preprocessed commercial power is converted into direct current by the conversion device to charge the storage battery;

[0015] When the commercial power is interrupted or abnormally fluctuates, the storage battery discharges rapidly, and the direct current is converted into alternating current through the conversion device and supplied to other devices in the chassis for use;

[0016] When the commercial power resumes normal, it switches back to the commercial power supply mode.

[0017] For a power supply and distribution UPS power supply chassis and its control method of the present invention, during use, the locking of the mounting seat by the locking assembly is released. At this time, the mounting seat is pulled out of the chassis, and then the storage battery is driven to move out of the chassis; during the movement of the mounting seat, the moving seat is driven to move. When the moving seat disengages from the driving seat, the moving seat moves under the action of the first spring, and then drives the clamping plate to move, so that the clamping plate moves away from the storage battery. At this time, the fixation of the storage battery is released, which is convenient for the staff to remove the storage battery for replacement; after the replacement is completed, the mounting seat is pushed to move into the chassis. During the movement of the mounting seat, the moving seat is driven to move. When the inclined surface on the moving seat contacts the inclined surface on the driving rod, the driving rod drives the moving seat to move, and then the moving seat drives the clamping plate to move towards the storage battery, so that the two clamping plates can clamp on both sides of the storage battery. During the movement of the mounting seat into the chassis, the plug on the storage battery is connected to the connector, and finally the mounting seat is locked by the locking assembly. After the mounting seat in the present invention moves out of the chassis interior, the clamping plate moves away from the storage battery, which is convenient for removing the storage battery at this time. At the same time, after the mounting seat is installed into the chassis interior, the two clamping plates can clamp on both sides of the storage battery, realizing an improved fixation effect on the storage battery and avoiding problems such as loose connection or damage to the storage battery due to collision. Description of the Drawings

[0018] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art.

[0019] Figure 1 It is a schematic diagram of the overall structure of the power supply and distribution UPS power supply chassis according to the first embodiment of the present invention.

[0020] Figure 2 It is a schematic diagram of the installation structure of the mounting base in the first embodiment of the present invention.

[0021] Figure 3 It is a schematic diagram of the structure of the mobile device in the first embodiment of the present invention.

[0022] Figure 4 It is a schematic diagram of the structure of the locking assembly in the first embodiment of the present invention.

[0023] Figure 5 It is a schematic diagram of the installation structure of the moving base in the first embodiment of the present invention.

[0024] Figure 6 It is a schematic diagram of the structure of the first driving groove and the second driving groove in the first embodiment of the present invention.

[0025] Figure 7 It is a schematic diagram of the structure of the rotating member in the second embodiment of the present invention.

[0026] Figure 8 It is a schematic diagram of the installation structure of the handle in the second embodiment of the present invention.

[0027] Figure 9 It is a flowchart of the control method of the power supply and distribution UPS power supply cabinet in the third embodiment of the present invention.

[0028] In the figure: 101 - cabinet, 102 - storage battery, 103 - conversion device, 104 - mobile device, 105 - mounting base, 106 - driving rod, 107 - moving base, 108 - clamping plate, 109 - first spring, 110 - locking assembly, 111 - plug, 112 - joint, 113 - plate body, 114 - rubber pad, 115 - driving seat, 116 - locking plate, 117 - first driving shaft, 118 - driving member, 119 - locking seat, 120 - second driving shaft, 121 - first driving groove, 122 - second driving groove, 201 - connecting rod, 202 - second spring, 203 - slider, 204 - rotating member, 205 - rotating shaft, 206 - cam, 207 - handle, 208 - torsion spring. Detailed implementation manners

[0029] The following details the embodiments of the present invention. The examples of the embodiments are shown in the accompanying drawings. The embodiments described below with reference to the accompanying drawings are exemplary and are intended to explain the present invention, and should not be construed as a limitation to the present invention.

[0030] First embodiment:

[0031] Please refer to Figures 1 to 6 , where Figure 1 is the overall structure schematic diagram of the power supply and distribution UPS power supply cabinet, Figure 2It is a schematic diagram of the installation structure of the mounting base. Figure 3 It is a schematic diagram of the structure of the mobile device. Figure 4 It is a schematic diagram of the structure of the locking assembly. Figure 5 It is a schematic diagram of the installation structure of the moving base. Figure 6 It is a schematic diagram of the structure of the first drive groove and the second drive groove.

[0032] The present invention provides a power supply UPS power supply chassis, including a chassis 101, a storage battery 102, a conversion device 103 and a mobile device 104. The mobile device 104 includes a mounting base 105, a drive rod 106, a moving base 107, a clamping plate 108, a first spring 109 and a locking assembly 110. The clamping plate 108 includes a plate body 113 and a rubber pad 114. The locking assembly 110 includes a drive seat 115, a locking plate 116, a first drive shaft 117, a drive member 118, a locking seat 119 and a second drive shaft 120. The drive seat 115 has a first drive groove 121 and a second drive groove 122. By pulling out the mounting base 105, the storage battery 102 and the moving base 107 are driven to move. When the moving base 107 is disengaged from the drive rod 106, the moving base 107 moves away from the storage battery 102 under the action of the first spring 109, thereby releasing the fixation of the storage battery 102. At this time, it is convenient to remove the storage battery 102. When the mounting base 105 is pushed in, the moving base 107 drives the clamping plate 108 to approach the storage battery 102 under the action of the drive rod 106, thereby clamping and fixing the storage battery 102. It can be understood that the foregoing solution can be used not only when fixing the storage battery 102, but also when fixing the plug 111 and the connector 112.

[0033] For this specific embodiment, the storage battery 102 is arranged inside the chassis 101, and the conversion device 103 is arranged inside the chassis 101 and is electrically connected to the storage battery 102; a plug 111 is arranged on the storage battery 102, and a connector 112 is arranged on the conversion device 103. The plug 111 and the connector 112 are detachably connected. The storage battery 102 is electrically connected to the conversion device 103 through the plug 111 and the connector 112. The storage battery 102 can store electric energy, so that when the power supply is cut off, the chassis 101 can be continuously powered. The conversion device 103 mainly includes an inverter module, a filter circuit and related control circuits, and can convert the DC electric energy stored in the storage battery 102 into AC electric energy and ensure that the output AC power has stable voltage, frequency and waveform. The conversion device 103 and the storage battery 102 are both prior arts, and their structures and principles will not be described in detail here.

[0034] Among them, the mounting base 105 is slidably connected to the chassis 101, connected to the storage battery 102, and located inside the chassis 101. The driving rod 106 is fixedly connected to the chassis 101 and located inside the chassis 101. The moving seat 107 is slidably connected to the mounting base 105 and arranged on the chassis 101. The clamping plate 108 is fixedly connected to the moving seat 107 and arranged on the moving seat 107. Both ends of the first spring 109 are connected to the moving seat 107 and the mounting base 105 respectively. The first spring 109 is located inside the mounting base 105. The locking assembly 110 is arranged on the mounting base 105. The locking assembly 110 is used to lock the mounting base 105 inside the chassis 101, and the locking assembly 110 can lock the plug 111 and the connector 112 to prevent the plug 111 and the connector 112 from loosening and affecting the use. The driving rod 106, the moving seat 107, the clamping plate 108 and the first spring 109 are each provided with two and are respectively located on both sides of the mounting base 105. The driving rod 106 and the moving seat 107 are provided with mutually cooperating inclined surfaces.

[0035] During use, unlock the locking of the mounting base 105 by the locking assembly 110. At this time, pull out the mounting base 105 from the chassis 101, thereby driving the battery 102 out of the chassis 101; during the movement of the mounting base 105, drive the moving seat 107 to move. When the moving seat 107 disengages from the driving seat 115, the moving seat 107 moves under the elastic action of the first spring 109, thereby driving the clamping plate 108 to move, so that the clamping plate 108 moves away from the battery 102. At this time, the fixing of the battery 102 is released, facilitating the staff to remove the battery 102 for replacement; after the replacement is completed, push the mounting base 105 to move inside the chassis 101. During the movement of the mounting base 105, drive the moving seat 107 to move. When the inclined surface on the moving seat 107 contacts the inclined surface on the driving rod 106, the driving rod 106 drives the moving seat 107 to move, thereby causing the moving seat 107 to drive the clamping plate 108 to move towards the battery 102, so that the two clamping plates 108 can clamp on both sides of the battery 102. During the movement of the mounting base 105 into the chassis 101, the plug 111 on the battery 102 is connected to the connector 112, and finally the mounting base 105 is locked by the locking assembly 110. After the mounting base 105 in the present invention is moved out of the chassis 101, the clamping plate 108 moves away from the battery 102, which facilitates the removal of the battery 102. At the same time, after the mounting base 105 is inserted into the chassis 101, the two clamping plates 108 can clamp on both sides of the battery 102, improving the fixing effect on the battery 102 and avoiding problems such as loose connection or damage to the battery 102 due to collision.

[0036] Secondly, the plate body 113 is fixedly connected to the moving seat 107 and is arranged on the moving seat 107; the rubber pad 114 is fixedly connected to the plate body 113 and is located on the side of the plate body 113 close to the battery 102; by contacting the surface of the battery 102 through the rubber pad 114, while improving the fixing effect on the battery 102, damage to the surface of the battery 102 is avoided.

[0037] At the same time, the driving seat 115 is slidably connected to the mounting base 105 and is located inside the mounting base 105; the first driving shaft 117 is slidably connected to the driving seat 115 and is arranged on the driving seat 115; the locking plate 116 is fixedly connected to the first driving shaft 117, is slidably connected to the mounting base 105, and is arranged on the first driving shaft 117; the driving member 118 is arranged on the mounting base 105.

[0038] In addition, the second drive shaft 120 is slidably connected to the drive seat 115 and is disposed on the drive seat 115; the locking seat 119 is fixedly connected to the second drive shaft 120, is slidably connected to the mounting seat 105, and is disposed on the second drive shaft 120.

[0039] Finally, the first drive groove 121 is disposed on one side of the drive seat 115 close to the first drive shaft 117; the second drive groove 122 is disposed on one side of the drive seat 115 close to the second drive shaft 120.

[0040] Both the first drive groove 121 and the second drive groove 122 are inclined. The first drive shaft 117 and the second drive shaft 120 respectively extend into the first drive groove 121 and the second drive groove 122. The drive member 118 is used to drive the drive seat 115 to move. A locking groove cooperating with the locking plate 116 is provided at the bottom of the chassis 101. Locking grooves cooperating with the locking seat 119 are provided on the plug 111 and the joint 112; when it is necessary to pull out the mounting seat 105 to replace the battery 102, the drive member 118 is used to drive the drive seat 115 to move. The drive seat 115 drives the first drive groove 121 and the second drive groove 122 thereon to move, so that the first drive shaft 117 rises under the action of the first drive groove 121, and the second drive shaft 120 descends under the action of the second drive groove 122. At this time, the locking seat 119 moves out of the locking grooves on the plug 111 and the joint 112, and the locking plate 116 moves out of the locking groove inside the chassis 101. At this time, the plug 111 and the joint 112 can be separated, and the mounting seat 105 can slide. Then the staff can pull out the mounting seat 105 and the battery 102 from the chassis 101; after the replacement is completed, the staff pushes the mounting seat 105 into the chassis 101 and drives the drive seat 115 to move in the reverse direction again through the drive member 118. At this time, the locking seat 119 rises and then snaps into the locking grooves on the plug 111 and the joint 112, and the locking plate 116 descends and extends into the locking groove to lock the mounting seat 105. The plug 111 and the joint 112 are locked by the locking seat 119, and the mounting seat 105 is locked by the locking plate 116, so as to prevent the plug 111 and the joint 112 from loosening.

[0041] Second Embodiment:

[0042] Based on the first embodiment, please refer to Figure 7 and Figure 8 , Figure 7It is a schematic structural diagram of the rotating component of the second embodiment. Figure 8 It is a schematic structural diagram of the installation of the handle in the second embodiment. In this embodiment, the driving member 118 includes a connecting rod 201, a second spring 202, a slider 203, and a rotating component 204. The rotating component 204 includes a rotating shaft 205, a cam 206, a handle 207, and a torsion spring 208.

[0043] For this specific embodiment, the slider 203 is slidably connected to the mounting seat 105 and is located inside the mounting seat 105; both ends of the connecting rod 201 are fixedly connected to the slider 203 and the driving seat 115 respectively, and the connecting rod 201 is located inside the mounting seat 105; both ends of the second spring 202 are connected to the connecting rod 201 and the mounting seat 105 respectively, and the second spring 202 is sleeved on the connecting rod 201; the rotating component 204 is used to drive the slider 203 to move.

[0044] Among them, the rotating shaft 205 is rotatably connected to the mounting seat 105 and is provided on the mounting seat 105; the cam 206 is fixedly connected to the rotating shaft 205 and is sleeved on the rotating shaft 205; the handle 207 is fixedly connected to the rotating shaft 205 and is provided on the rotating shaft 205.

[0045] Secondly, both ends of the torsion spring 208 are connected to the rotating shaft 205 and the mounting seat 105 respectively, and the torsion spring 208 is sleeved on the rotating shaft 205.

[0046] Apply a force to the connecting rod 201 through the second spring 202, causing the connecting rod 201 to drive the slider 203 to move, so that the slider 203 is always in contact with the surface of the cam 206. There are protrusions on the cam 206. Apply a force to the rotating shaft 205 through the torsion spring 208, causing the rotating shaft 205 to drive the cam 206 and the handle 207 to move, so that the handle 207 is in a vertical state to reduce the occupied space, and at this time the protrusion on the cam 206 leaves the slider 203. When the storage battery 102 needs to be replaced, rotate the handle 207 to drive the rotating shaft 205 and the cam 206 to rotate. At this time, the handle 207 rotates to a horizontal state, which is convenient for the staff to operate. The rotation of the cam 206 drives the slider 203 to move, causing the slider 203 to drive the connecting rod 201 and the driving seat 115 to move. The driving seat 115 drives the first driving shaft 117 and the second driving shaft 120 to move, so that the locking seat 119 descends, and the locking plate 116 ascends, thereby releasing the fixation of the plug 111 and the connector 112, and releasing the locking of the mounting seat 105. At this time, it is convenient to pull out the mounting seat 105. After the replacement is completed, the staff releases the handle 207, so that the rotating shaft 205 can reset under the elastic action of the torsion spring 208, and then drive the handle 207 to reset, so that the locking seat 119 and the locking plate 116 are reset.

[0047] When using the power supply UPS power supply chassis of the present invention, when it is necessary to replace the storage battery 102, rotate the handle 207 to drive the rotation of the rotating shaft 205 and the cam 206, so that the cam 206 drives the slider 203 to move. The slider 203 drives the connecting rod 201 and the driving seat 115 to move, so that the first driving groove 121 on the driving seat 115 drives the first driving shaft 117 to descend, and the second driving groove 122 drives the second driving shaft 120 to ascend. Furthermore, the locking seat 119 is separated from the plug 111 and the joint 112, and the locking plate 116 is removed from the locking groove. At this time, pull the handle 207 outwards to drive the mounting seat 105 out, and then the mounting seat 105 drives the moving seat 107 to move. When the moving seat 107 is separated from the driving rod 106, the moving seat 107 moves away from the storage battery 102 under the action of the first spring 109, and then drives the clamping plate 108 to move away from the storage battery 102, thereby releasing the clamping and fixing of the storage battery 102 and facilitating the removal of the storage battery 102; after the replacement of the storage battery 102 is completed, push the mounting seat 105 back into the chassis 101 again. At this time, the moving seat 107 approaches the storage battery 102 under the action of the driving rod 106, and then the two clamping plates 108 can clamp on both sides of the storage battery 102. When the mounting seat 105 is in place, the staff releases the handle 207. At this time, the rotating shaft 205 returns to its original position under the action of the torsion spring 208, and then drives the cam 206 and the handle 207 to return to their original positions. At this time, the connecting rod 201 and the driving seat 115 return to their original positions under the action of the second spring 202, and then the locking seat 119 and the locking plate 116 return to their original positions, and the mounting seat 105, the plug 111 and the joint 112 are locked again.

[0048] Third Embodiment:

[0049] The present invention also includes a control method for a power supply UPS power supply chassis, including the following steps:

[0050] S101: First, the commercial power enters the conversion device 103 through the input end, and after being preprocessed by the conversion device 103, the high-frequency noise and interference in the power grid are removed;

[0051] S102: The preprocessed commercial power is converted into direct current by the conversion device 103 to charge the storage battery 102;

[0052] S103: When the commercial power is interrupted or abnormally fluctuates, the storage battery 102 discharges rapidly, and the direct current is converted into alternating current by the conversion device 103 and supplied to other devices in the chassis 101 for use;

[0053] S104: After the mains power supply resumes normal, switch back to the mains power supply mode.

[0054] The above-disclosed are only one or more preferred embodiments of the present application, and the scope of rights of the present application cannot be limited thereby. Those of ordinary skill in the art can understand all or part of the processes of implementing the above embodiments, and the equivalent changes made according to the claims of the present application still fall within the scope covered by the present application.

Claims

1. A UPS power supply chassis for power supply and distribution, comprising a chassis, a battery and a conversion device, wherein the battery is arranged inside the chassis, and the conversion device is arranged inside the chassis and electrically connected to the battery, characterized in that: Also includes mobile devices; The moving device includes a mounting seat, a driving rod, a moving seat, a clamp, a first spring and a locking assembly. The mounting seat is slidably connected to the chassis, connected to the battery, and located inside the chassis. The driving rod is fixedly connected to the chassis and located inside the chassis. The moving seat is slidably connected to the mounting seat and is arranged on the chassis. The clamp is fixedly connected to the moving seat and is arranged on the moving seat. Both ends of the first spring are respectively connected to the moving seat and the mounting seat. The first spring is located inside the mounting seat. The locking assembly is arranged on the mounting seat.

2. The UPS power supply chassis for power supply and distribution as claimed in claim 1, characterized in that: The clamping plate comprises a plate body and a rubber pad. The plate body is fixedly connected to the movable seat and arranged on the movable seat. The rubber pad is fixedly connected to the plate body and is located on a side of the plate body close to the battery.

3. The UPS power supply chassis for power supply and distribution according to claim 1, characterized in that: The locking assembly comprises a driving seat, a locking plate, a first driving shaft and a driving member, wherein the driving seat is slidably connected to the mounting seat and is located inside the mounting seat; the first driving shaft is slidably connected to the driving seat and is disposed on the driving seat; The locking plate is fixedly connected to the first driving shaft and slidably connected to the mounting seat, and is arranged on the first driving shaft; the driving component is arranged on the mounting seat.

4. The UPS power supply chassis for power supply and distribution as claimed in claim 3, characterized in that: The locking assembly also includes a locking seat and a second drive shaft, the second drive shaft is slidably connected to the drive seat and is arranged on the drive seat; the locking seat is fixedly connected to the second drive shaft, slidably connected to the mounting seat, and is arranged on the second drive shaft.

5. The UPS power supply chassis for power supply and distribution as claimed in claim 4, characterized in that: The driving seat has a first driving groove and a second driving groove, wherein the first driving groove is arranged on a side of the driving seat close to the first driving shaft; and the second driving groove is arranged on a side of the driving seat close to the second driving shaft.

6. The UPS power supply chassis for power supply and distribution as claimed in claim 5, characterized in that: The driving component includes a connecting rod, a second spring, a slider and a rotating component. The slider is slidably connected to the mounting seat and is located inside the mounting seat; the two ends of the connecting rod are respectively fixedly connected to the slider and the driving seat, and the connecting rod is located inside the mounting seat; the two ends of the second spring are respectively connected to the connecting rod and the mounting seat, and the second spring is sleeved on the connecting rod; the rotating component is used to drive the slider to move.

7. A control method for a power supply and distribution UPS power supply chassis, applied to the power supply and distribution UPS power supply chassis as claimed in any one of claims 1 to 6, characterized in that: The following steps are involved: The mains electricity first enters the conversion device through the input end, and is pre-processed by the conversion device to remove high-frequency noise and interference in the power grid; The pre-processed mains electricity is converted into direct current by the conversion device to charge the battery; When the city power is interrupted or fluctuates abnormally, the battery discharges rapidly, and the direct current is converted into alternating current through the conversion device, which is supplied to other devices in the chassis; When the AC power returns to normal, switch back to the AC power supply mode.

Citation Information

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