CN219838457U - Electric bicycle fills electric pile - Google Patents

Electric bicycle fills electric pile Download PDF

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Publication number
CN219838457U
CN219838457U CN202321115313.2U CN202321115313U CN219838457U CN 219838457 U CN219838457 U CN 219838457U CN 202321115313 U CN202321115313 U CN 202321115313U CN 219838457 U CN219838457 U CN 219838457U
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CN
China
Prior art keywords
solar panel
flexible solar
electric bicycle
control terminal
wiring rod
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CN202321115313.2U
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Chinese (zh)
Inventor
肖国胜
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Yunyichong Shenzhen Intelligent Technology Co ltd
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Yunyichong Shenzhen Intelligent Technology Co ltd
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Priority to CN202321115313.2U priority Critical patent/CN219838457U/en
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Abstract

The utility model discloses an electric bicycle charging pile which comprises a frame body, a charging control terminal and a plurality of sockets, wherein the charging control terminal and the plurality of sockets are arranged on the frame body, the frame body comprises a shielding shed, an automatic roller shutter storage device is arranged on the frame body and used for storing a flexible solar panel, and when the automatic roller shutter storage device is used for tiling the flexible solar panel on the shielding shed, the flexible solar panel is used for providing a driving power supply for the charging control terminal. The charging control terminal is used for connecting an external mains supply to each socket. Because the drive power of the charging control terminal is provided by the flexible solar panel, the control equipment of the charging pile does not consume the power of the mains supply, and the operation and maintenance cost of the charging pile is greatly reduced.

Description

Electric bicycle fills electric pile
Technical Field
The utility model relates to the technical field of electric vehicle charging, in particular to an electric bicycle charging pile.
Background
Along with the continuous development of the economy of China and the continuous improvement of the life quality of people, in daily life, the electric bicycle is the most common riding tool at present, and most of urban communities at present can be provided with charging piles in parking places so as to facilitate the charging of the electric bicycle. Please refer to fig. 1, which is a schematic diagram of an electric bicycle charging pile, the electric bicycle charging pile includes a plurality of sockets 2 and charging control terminals disposed on a frame body, the frame body includes a transverse wiring rod 1, a vertical wiring rod 3 and a plurality of supporting legs 4, and the transverse wiring rod 1 and the vertical wiring rod 3 are hollow for wiring. The sockets 2 are arranged in a straight line along the length direction of the transverse wiring rod 1, and each socket 2 is connected with the transverse wiring rod 1 in a sliding mode. The charging control terminal 5 comprises a square shell and a strong current main control board, wherein the square shell is fixedly arranged on the transverse wiring rod 1, and the strong current main control board is arranged in the square shell. The socket 2 is used for providing a mains supply for an electric scooter to be charged. In the prior art, the driving power of the charging control terminal of the charging pile is provided by the mains supply, and even if the charging control terminal stands by, the charging control terminal has electric energy loss, and the electric energy loss greatly increases the daily maintenance cost of the charging pile.
Disclosure of Invention
The technical problem to be solved by the utility model is how to reduce the loss of the charging control terminal to the power of the mains supply.
According to one aspect of the utility model, an embodiment provides an electric bicycle charging pile, which comprises a frame body, a charging control terminal and a plurality of sockets, wherein the charging control terminal and the plurality of sockets are arranged on the frame body;
the frame body comprises a shielding shed, a transverse wiring rod, a lower vertical wiring rod fixedly connected with the transverse wiring rod, an upper vertical wiring rod, a plurality of shed brackets and a plurality of supporting legs; the shed support is used for fixedly connecting the shielding shed to the transverse wiring rod, and the supporting legs are used for supporting the transverse wiring rod; the transverse wiring rod, the upper vertical wiring rod and the lower vertical wiring rod are hollow and are used for wiring; the sockets are arranged in a straight line along the length direction of the transverse wiring rod, and each socket is connected with the transverse wiring rod in a sliding manner;
the charging control terminal is connected with an external mains supply through a hollow wiring of the lower vertical wiring rod; the charging control terminal is electrically connected with each socket through a hollow wire of the transverse wire rod, and is used for connecting the mains supply to the socket;
the electric bicycle charging pile further comprises an automatic rolling curtain containing device arranged on the shielding shed, and the automatic rolling curtain containing device is used for containing the flexible solar panel; the charging control terminal is electrically connected with the flexible solar panel through a hollow wiring of the upper vertical wiring rod; when the automatic roller shutter storage device is used for flatly paving the flexible solar panel on the shielding shed, the flexible solar panel is used for providing a driving power supply for the charging control terminal.
In one embodiment, the automatic roller shutter storage device comprises a flexible frame, and the flexible solar panel is arranged on the flexible frame; the automatic roller shutter storage device stores or expands the flexible solar panel by storing or expanding the flexible frame.
In one embodiment, the flexible frame is in a grid shape, and a flexible solar panel is disposed in each grid for supporting the flexible solar panel.
In an embodiment, the storage opening of the automatic roller shutter storage device is further provided with a dust removal baffle, and the dust removal baffle is used for being in contact with the flexible solar panel in a fitting manner when the flexible frame is stored in the automatic roller shutter storage device, so as to remove dust from the flexible solar panel.
In an embodiment, the shielding shed is further provided with a limiting clamping groove, and the limiting clamping groove is used for being connected with the flexible frame in an adaptive manner when the flexible solar panel is laid on the shielding shed by the automatic rolling curtain storage device, so that the unfolded flexible frame is limited.
In an embodiment, the electric bicycle charging pile further comprises an energy storage battery, the flexible solar panel is used for charging the energy storage battery, and the energy storage battery is used for providing power for the charging control terminal.
In an embodiment, the energy storage battery is further used for providing a driving power supply for the automatic roller shutter storage device.
In one embodiment, the energy storage battery is disposed in the hollow interior of the upper vertical trace.
In an embodiment, the electric bicycle charging pile further comprises an LED illuminating lamp string, wherein the LED illuminating lamp string is arranged at the edge of the shielding shed, and the energy storage battery provides power.
In one embodiment, the upper plane of the shelter forms a preset inclination angle with the horizontal plane.
According to the electric bicycle charging pile, the driving power of the charging control terminal is provided by the flexible solar panel, so that the management and control equipment of the charging pile does not consume the power of the mains supply, and the operation and maintenance cost of the charging pile is greatly reduced.
Drawings
Fig. 1 is a schematic structural view of a charging pile for an electric bicycle;
FIG. 2 is a schematic front view of an electric bicycle charging stake according to one embodiment;
FIG. 3 is a schematic side view of an electric bicycle charging stake according to one embodiment;
fig. 4 is a top view of an electric bicycle charging stake in an embodiment.
Detailed Description
The utility model will be described in further detail below with reference to the drawings by means of specific embodiments. Wherein like elements in different embodiments are numbered alike in association. In the following embodiments, numerous specific details are set forth in order to provide a better understanding of the present utility model. However, one skilled in the art will readily recognize that some of the features may be omitted, or replaced by other elements, materials, or methods in different situations. In some instances, related operations of the present utility model have not been shown or described in the specification in order to avoid obscuring the core portions of the present utility model, and may be unnecessary to persons skilled in the art from a detailed description of the related operations, which may be presented in the description and general knowledge of one skilled in the art.
Furthermore, the features, operations, or characteristics described in the specification may be combined in any suitable manner to form various embodiments, and the operational steps involved in the embodiments may be sequentially exchanged or adjusted in a manner apparent to those skilled in the art. Accordingly, the description and drawings are merely for clarity of describing certain embodiments and are not necessarily intended to imply a required composition and/or order.
The numbering of the components itself, e.g. "first", "second", etc., is used herein merely to distinguish between the described objects and does not have any sequential or technical meaning. The term "coupled" as used herein includes both direct and indirect coupling (coupling), unless otherwise indicated.
Embodiment one:
referring to fig. 2 and 3, a front schematic view and a side schematic view of an electric bicycle charging post according to an embodiment of the present utility model are shown, and the electric bicycle charging post includes a frame, a charging control terminal 80 disposed on the frame, and a plurality of sockets 20. The frame body comprises a shielding canopy 60, a transverse wire rod 10, a lower vertical wire rod 30 fixedly connected with the transverse wire rod 10, an upper vertical wire rod 90, a plurality of canopy brackets 50 and a plurality of supporting legs 40. The canopy bracket 50 is used for fixedly connecting the shelter 60 to the traversing wire rod 10, and the plurality of supporting legs 40 are used for supporting the traversing wire rod 10. The transverse routing bar 10, the upper vertical routing bar 90 and the lower vertical routing bar 30 are hollow for routing. A plurality of sockets 20 are arranged in a straight line along the length direction of the traverse 10, and each socket 20 is slidably connected to the traverse 10. The charge control terminal is connected to an external mains supply through the hollow wire of the 80 down vertical wire bar 30, and the charge control terminal 80 is electrically connected to each socket 20 through the hollow wire of the horizontal wire bar 10 for connecting the mains supply to the socket 20.
Referring to fig. 4, in a top view of an electric bicycle charging post according to an embodiment, the electric bicycle charging post further includes an automatic roller shutter storage device 70 disposed on the shielding shed 60, and the automatic roller shutter storage device 70 is used for storing a flexible solar panel 72. The charge control terminal 80 is electrically connected to the flexible solar panel 72 through hollow traces of the upper vertical trace bar 90. When the automatic roll-up shade receiving device 70 is tiled on the shade shed 60, the flexible solar panel 72 is used to provide a driving power source to the charge control terminal 80.
In one embodiment, the automatic roller shutter housing device 70 includes a flexible frame 71, and a flexible solar panel 72 is disposed on the flexible frame 72. The automatic roll screen storage device 70 stores and expands the flexible solar panel 72 by storing and expanding the flexible frame 71. In one embodiment, the flexible frame 71 is in the form of a grid, and a flexible solar panel 72 is disposed within each grid for providing support to the flexible solar panel 72.
In an embodiment, the accommodating opening of the automatic roller shutter accommodating device 70 is further provided with a dust removing baffle, and the dust removing baffle is used for being in contact with the flexible solar panel 72 when the flexible frame 71 is accommodated in the automatic roller shutter accommodating device 70, so as to remove dust from the flexible solar panel 72.
In an embodiment, a limiting slot 61 is further disposed on the shielding canopy 60, and is adapted to be connected with the flexible frame 71 when the automatic rolling shutter storage device 70 tiles the flexible solar panel 72 on the shielding canopy 60, so as to limit the unfolded flexible frame 71.
In an embodiment, the electric bicycle charging pile further comprises an energy storage battery, the flexible solar panel is used for charging the energy storage battery, and the energy storage battery is used for providing power for the charging control terminal. In one embodiment, the energy storage battery is also used for providing a driving power supply for the automatic roller shutter storage device. In one embodiment, the energy storage battery is arranged in the hollow interior of the upper vertical wiring rod of the frame body. In an embodiment, the electric bicycle charging pile further comprises an LED illuminating lamp string, wherein the LED illuminating lamp string is arranged at the edge of the shielding shed and is powered by the energy storage battery.
In one embodiment, the upper plane of the shelter forms a predetermined inclination angle with the horizontal plane.
The electric bicycle charging pile comprises a frame body, a charging control terminal and a plurality of sockets, wherein the charging control terminal and the sockets are arranged on the frame body, the frame body comprises a shielding shed, an automatic roller shutter storage device is arranged on the frame body and used for storing a flexible solar panel, and when the automatic roller shutter storage device tiles the flexible solar panel on the shielding shed, the flexible solar panel is used for providing a driving power supply for the charging control terminal. The charging control terminal is used for connecting an external mains supply to each socket. Because the drive power of the charging control terminal is provided by the flexible solar panel, the control equipment of the charging pile does not consume the power of the mains supply, and the operation and maintenance cost of the charging pile is greatly reduced.
The foregoing description of the utility model has been presented for purposes of illustration and description, and is not intended to be limiting. Several simple deductions, modifications or substitutions may also be made by a person skilled in the art to which the utility model pertains, based on the idea of the utility model.

Claims (10)

1. The electric bicycle charging pile is characterized by comprising a frame body, a charging control terminal and a plurality of sockets, wherein the charging control terminal and the plurality of sockets are arranged on the frame body;
the frame body comprises a shielding shed, a transverse wiring rod, a lower vertical wiring rod fixedly connected with the transverse wiring rod, an upper vertical wiring rod, a plurality of shed brackets and a plurality of supporting legs; the shed support is used for fixedly connecting the shielding shed to the transverse wiring rod, and the supporting legs are used for supporting the transverse wiring rod; the transverse wiring rod, the upper vertical wiring rod and the lower vertical wiring rod are hollow and are used for wiring; the sockets are arranged in a straight line along the length direction of the transverse wiring rod, and each socket is connected with the transverse wiring rod in a sliding manner;
the charging control terminal is connected with an external mains supply through a hollow wiring of the lower vertical wiring rod; the charging control terminal is electrically connected with each socket through a hollow wire of the transverse wire rod, and is used for connecting the mains supply to the socket;
the electric bicycle charging pile further comprises an automatic rolling curtain containing device arranged on the shielding shed, and the automatic rolling curtain containing device is used for containing the flexible solar panel; the charging control terminal is electrically connected with the flexible solar panel through a hollow wiring of the upper vertical wiring rod; when the automatic roller shutter storage device is used for flatly paving the flexible solar panel on the shielding shed, the flexible solar panel is used for providing a driving power supply for the charging control terminal.
2. The electric bicycle charging stake of claim 1, characterized in that the automatic roller shutter storage device includes a malleable frame on which the flexible solar panel is disposed; the automatic roller shutter storage device stores or expands the flexible solar panel by storing or expanding the flexible frame.
3. The electric bicycle charging stake of claim 2, wherein the malleable frame is in the form of a grid, each grid having a flexible solar panel disposed therein for providing support to the flexible solar panel.
4. The electric bicycle charging stake of claim 2, wherein the receiving opening of the automatic roller shutter receiving device is further provided with a dust removal baffle for being in abutting contact with the flexible solar panel to remove dust from the flexible solar panel when the automatic roller shutter receiving device receives the ductile frame.
5. The electric bicycle charging stake of claim 4, wherein a limit slot is further provided on the shelter for being adapted to connect with the flexible frame when the automatic roller shutter receiving device is laying the flexible solar panel on the shelter, so as to limit the unfolded flexible frame.
6. The electric bicycle charging stake of claim 5, further comprising an energy storage battery, wherein the flexible solar panel is configured to charge the energy storage battery, and wherein the energy storage battery is configured to provide power to the charge control terminal.
7. The electric bicycle charging stake of claim 6, wherein the energy storage battery is further configured to provide a driving power source for the automatic roller shade receiving device.
8. The electric bicycle charging stake of claim 6, wherein the energy storage battery is disposed within the hollow interior of the upper vertical travel bar.
9. The electric bicycle charging stake of claim 6, further comprising a string of LED lights disposed on an edge of the shelter and powered by the energy storage battery.
10. The electric bicycle charging stake of claim 1, wherein the upper plane of the shelter is at a predetermined angle of inclination from the horizontal.
CN202321115313.2U 2023-05-10 2023-05-10 Electric bicycle fills electric pile Active CN219838457U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321115313.2U CN219838457U (en) 2023-05-10 2023-05-10 Electric bicycle fills electric pile

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321115313.2U CN219838457U (en) 2023-05-10 2023-05-10 Electric bicycle fills electric pile

Publications (1)

Publication Number Publication Date
CN219838457U true CN219838457U (en) 2023-10-17

Family

ID=88302938

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321115313.2U Active CN219838457U (en) 2023-05-10 2023-05-10 Electric bicycle fills electric pile

Country Status (1)

Country Link
CN (1) CN219838457U (en)

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