CN220692480U - Multi-port quick-charging circuit adapter - Google Patents
Multi-port quick-charging circuit adapter Download PDFInfo
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- CN220692480U CN220692480U CN202322400271.3U CN202322400271U CN220692480U CN 220692480 U CN220692480 U CN 220692480U CN 202322400271 U CN202322400271 U CN 202322400271U CN 220692480 U CN220692480 U CN 220692480U
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- 230000007547 defect Effects 0.000 description 1
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- 238000012986 modification Methods 0.000 description 1
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Abstract
The utility model relates to a multi-port quick-charging circuit adapter, which comprises a rectangular circuit adapter body, wherein a power socket is arranged on the left side of the front end surface of the body, a plurality of POE power supply sockets are arranged on the right side of the front end surface of the body, a power line is fixedly connected to the rear end surface of the body, and a plug is fixedly connected to the tail end of the power line; rectangular annular accommodating grooves are formed in the body and on the outer wall of the rear side of the body, rectangular rear heat-conducting rubber sleeves are fixedly sleeved on the body at the rear side of the accommodating grooves, middle heat-conducting rubber sleeves are fixedly sleeved on the body at the front side of the accommodating grooves, and rectangular front heat-conducting rubber sleeves are fixedly sleeved on the front end of the body; the outer wall of the middle heat-conducting rubber sleeve is formed with a rectangular annular front cutting groove penetrating through the rear end face of the middle heat-conducting rubber sleeve, and the middle heat-conducting rubber sleeve at the front cutting groove is sleeved with a rectangular telescopic sleeve. The circuit adapter is provided with a plurality of interfaces, so that different electronic devices can be powered respectively, and meanwhile, the adapter is provided with a winding storage structure, so that the adapter is convenient to carry about.
Description
Technical field:
the utility model relates to the technical field of power adapters, in particular to a multi-port quick-charging circuit adapter.
The background technology is as follows:
the power adapter is a power supply conversion device of small portable electronic equipment and electronic appliances, also called as a circuit adapter, and generally consists of components such as a shell, a transformer, an inductor, a capacitor, a control IC, a PCB (printed circuit board) and the like, and the working principle of the power adapter is that alternating current input is converted into direct current output; the device is widely matched with security cameras, set top boxes, routers, lamp bars, massage devices and the like. At present, a plurality of interfaces of power adapters in the market comprise a conventional cable plug interface and a plurality of POE power supply sockets, and the power adapters can be respectively used for connecting POE power supply equipment and conventional electronic equipment; besides a plurality of interfaces, the power adapter is generally provided with a power line connected with alternating current, and the power line is long in length and inconvenient to store and can influence the carrying of the power adapter.
The utility model comprises the following steps:
the utility model aims at overcoming the defects of the prior art, and provides a multi-port quick charging circuit adapter, wherein a plurality of interfaces are arranged on the circuit adapter and can respectively supply power for different electronic equipment, and meanwhile, a winding storage structure is arranged on the adapter, so that the adapter is convenient to carry about.
The utility model provides a many mouthfuls of quick charge way adapter, includes the rectangular body of circuit adapter, and the left side of body front end face is equipped with power socket, and the right side is equipped with a plurality of POE power supply socket, fixedly connected with power cord on the rear end face of body, the end fixedly connected with plug of power cord;
rectangular annular accommodating grooves are formed in the body and on the outer wall of the rear side of the body, rectangular rear heat-conducting rubber sleeves are fixedly sleeved on the body at the rear side of the accommodating grooves, rectangular middle heat-conducting rubber sleeves are fixedly sleeved on the body at the front side of the accommodating grooves, and rectangular front heat-conducting rubber sleeves are fixedly sleeved on the front end of the body; a rectangular annular front cutting groove penetrating through the rear end face of the middle heat-conducting rubber sleeve is formed in the outer wall of the middle heat-conducting rubber sleeve, a rectangular telescopic sleeve is inserted into the middle heat-conducting rubber sleeve at the front cutting groove, and a rear cutting groove opposite to the telescopic sleeve is formed in the outer wall of the front end of the rear heat-conducting rubber sleeve; a wire inlet groove communicated with the accommodating groove is formed in the side wall of one side of the rear heat conducting rubber sleeve.
Preferably, the outer wall of the rear heat conducting rubber sleeve, the outer wall of the front heat conducting rubber sleeve, the outer wall of the middle heat conducting rubber sleeve and the outer wall of the telescopic sleeve are in the same rectangular cylindrical surface.
Preferably, the inner wall of the telescopic sleeve is respectively flush with the bottom surface of the front cutting groove on the middle heat conducting rubber sleeve and the bottom surface of the rear cutting groove on the rear heat conducting rubber sleeve, and the length of the telescopic sleeve is larger than the groove width of the accommodating groove on the body.
Preferably, a plurality of transverse anti-skid grooves are formed on the outer walls of the two opposite sides of the telescopic sleeve.
Preferably, the wire diameter of the power wire at the rear side of the body is smaller than the slot width of the wire inlet slot on the rear heat conducting rubber sleeve.
Preferably, the distance between the bottom surface of the accommodating groove on the body and the bottom surface of the adjacent rear slot is larger than the thickness of the power line terminal plug.
The utility model has the beneficial effects that:
the circuit adapter is provided with a plurality of interfaces, so that different electronic devices can be powered respectively, and meanwhile, the adapter is provided with a winding storage structure, so that the adapter is convenient to carry about.
Description of the drawings:
FIG. 1 is a schematic view of a three-dimensional structure of the present utility model;
FIG. 2 is a schematic diagram of the front view of the present utility model;
fig. 3 is a schematic side view of the present utility model.
In the figure: 1. a body; 2. a power socket; 3. POE power supply socket; 4. a power line; 5. a middle heat conducting rubber sleeve; 6. a rear heat conductive rubber sleeve; 61. rear grooving; 62. wire inlet groove; 7. a telescopic sleeve; 71. an anti-skid groove; 8. a front heat conducting rubber sleeve.
The specific embodiment is as follows:
examples: referring to fig. 1 to 3, a multi-port quick-charging circuit adapter comprises a rectangular body 1 of the circuit adapter, wherein a power socket 2 is arranged on the left side of the front end face of the body 1, a plurality of POE power supply sockets 3 are arranged on the right side of the front end face of the body 1 (the body 1 can also be provided with a USB socket and a Type-C socket), a power wire 4 is fixedly connected to the rear end face of the body 1, and a plug is fixedly connected to the tail end of the power wire 4;
rectangular annular accommodating grooves 11 are formed in the body 1 and on the outer wall of the rear side, rectangular rear heat conducting rubber sleeves 6 are fixedly sleeved on the body 1 at the rear side of the accommodating grooves 11, rectangular middle heat conducting rubber sleeves 5 are fixedly sleeved on the body 1 at the front side of the accommodating grooves 11, and rectangular front heat conducting rubber sleeves 8 are fixedly sleeved on the front end of the body 1; a rectangular annular front cutting groove penetrating through the rear end face of the middle heat-conducting rubber sleeve 5 is formed in the outer wall of the middle heat-conducting rubber sleeve 5, a rectangular telescopic sleeve 7 is inserted into the middle heat-conducting rubber sleeve 5 at the front cutting groove, and a rear cutting groove 61 opposite to the telescopic sleeve 7 is formed in the outer wall of the front end of the rear heat-conducting rubber sleeve 6; the side wall of one side of the rear heat conducting rubber sleeve 6 is provided with a wire inlet groove 62 communicated with the accommodating groove 11.
The outer wall of the rear heat-conducting rubber sleeve 6, the outer wall of the front heat-conducting rubber sleeve 8, the outer wall of the middle heat-conducting rubber sleeve 5 and the outer wall of the telescopic sleeve 7 are arranged in the same rectangular cylindrical surface.
The inner wall of the telescopic sleeve 7 is respectively flush with the bottom surface of the front cutting groove on the middle heat conducting rubber sleeve 5 and the bottom surface of the rear cutting groove 61 on the rear heat conducting rubber sleeve 6, and the length of the telescopic sleeve 7 is larger than the groove width of the accommodating groove 11 on the body 1.
A plurality of transverse anti-slip grooves 71 are formed on the outer walls of the two opposite sides of the telescopic sleeve 7.
The wire diameter of the power wire 4 at the rear side of the body 1 is smaller than the groove width of the wire inlet groove 62 on the rear heat conducting rubber sleeve 6, and the power wire 4 can be inserted into the wire inlet groove 62.
The distance between the bottom surface of the accommodating groove 11 on the body 1 and the bottom surface of the adjacent rear slot 61 is larger than the thickness of the plug at the tail end of the power cord 4, that is, the plug at the tail end of the power cord 4 can be accommodated in the accommodating groove 11.
Working principle: the utility model relates to a multi-port quick-charging circuit adapter, which is provided with a POE power supply socket 3 and a power supply socket 2, and can respectively supply power for different electronic equipment;
meanwhile, the accommodating groove 11 is formed in the body 1 of the circuit adapter, the power line 4 on the body 1 can pass through the wire inlet groove 62 to be wound in the accommodating groove 11, and finally the telescopic sleeve 7 is moved, so that the power line 4 is arranged in the telescopic sleeve 7, constraint on the power line 4 is realized, and the circuit adapter is convenient to carry.
The examples are presented to illustrate the utility model and are not intended to limit the utility model. Modifications to the described embodiment may occur to those skilled in the art without departing from the spirit and scope of the utility model, and the scope of the utility model is therefore set forth in the appended claims.
Claims (6)
1. The utility model provides a many mouthfuls of quick charge circuit adapter, includes circuit adapter rectangle's body (1), its characterized in that: the left side of the front end face of the body (1) is provided with a power socket (2), the right side is provided with a plurality of POE power supply sockets (3), the rear end face of the body (1) is fixedly connected with a power wire (4), and the tail end of the power wire (4) is fixedly connected with a plug;
rectangular annular accommodating grooves (11) are formed in the body (1) and on the outer wall of the rear side, rectangular rear heat-conducting rubber sleeves (6) are fixedly sleeved on the body (1) at the rear side of the accommodating grooves (11), rectangular middle heat-conducting rubber sleeves (5) are fixedly sleeved on the body (1) at the front side of the accommodating grooves (11), and rectangular front heat-conducting rubber sleeves (8) are fixedly sleeved on the front end of the body (1); a rectangular annular front cutting groove penetrating through the rear end face of the middle heat-conducting rubber sleeve (5) is formed in the outer wall of the middle heat-conducting rubber sleeve (5), a rectangular telescopic sleeve (7) is inserted into the middle heat-conducting rubber sleeve (5) at the front cutting groove, and a rear cutting groove (61) opposite to the telescopic sleeve (7) is formed in the outer wall of the front end of the rear heat-conducting rubber sleeve (6); a wire inlet groove (62) communicated with the accommodating groove (11) is formed in the side wall of one side of the rear heat conducting rubber sleeve (6).
2. A multi-port quick charge circuit adapter according to claim 1 and wherein: the outer wall of the rear heat conducting rubber sleeve (6), the outer wall of the front heat conducting rubber sleeve (8), the outer wall of the middle heat conducting rubber sleeve (5) and the outer wall of the telescopic sleeve (7) are arranged in the same rectangular cylindrical surface.
3. A multi-port quick charge circuit adapter according to claim 2 and wherein: the inner wall of the telescopic sleeve (7) is respectively flush with the bottom surface of the front cutting groove on the middle heat conducting rubber sleeve (5) and the bottom surface of the rear cutting groove (61) on the rear heat conducting rubber sleeve (6), and the length of the telescopic sleeve (7) is larger than the groove width of the accommodating groove (11) on the body (1).
4. A multi-port quick charge adapter according to claim 3 and wherein: a plurality of transverse anti-slip grooves (71) are formed in the outer walls of the two opposite sides of the telescopic sleeve (7).
5. A multi-port quick charge circuit adapter according to claim 2 and wherein: the wire diameter of the power wire (4) at the rear side of the body (1) is smaller than the groove width of the wire inlet groove (62) on the rear heat conducting rubber sleeve (6).
6. A multi-port quick charge adapter as set forth in claim 5 wherein: the distance between the bottom surface of the accommodating groove (11) on the body (1) and the bottom surface of the adjacent rear cutting groove (61) is larger than the thickness of the terminal plug of the power line (4).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202322400271.3U CN220692480U (en) | 2023-09-05 | 2023-09-05 | Multi-port quick-charging circuit adapter |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202322400271.3U CN220692480U (en) | 2023-09-05 | 2023-09-05 | Multi-port quick-charging circuit adapter |
Publications (1)
Publication Number | Publication Date |
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CN220692480U true CN220692480U (en) | 2024-03-29 |
Family
ID=90406831
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN202322400271.3U Active CN220692480U (en) | 2023-09-05 | 2023-09-05 | Multi-port quick-charging circuit adapter |
Country Status (1)
Country | Link |
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CN (1) | CN220692480U (en) |
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2023
- 2023-09-05 CN CN202322400271.3U patent/CN220692480U/en active Active
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