CN219691190U - Remote control type multifunctional shutter sunshade capable of externally supplying power - Google Patents

Remote control type multifunctional shutter sunshade capable of externally supplying power Download PDF

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Publication number
CN219691190U
CN219691190U CN202321008489.8U CN202321008489U CN219691190U CN 219691190 U CN219691190 U CN 219691190U CN 202321008489 U CN202321008489 U CN 202321008489U CN 219691190 U CN219691190 U CN 219691190U
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China
Prior art keywords
control
remote control
board
lamp
box
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CN202321008489.8U
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Chinese (zh)
Inventor
周新焰
舒畅
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Ningbo Dongfang Shengshi Optoelectronics Technology Co ltd
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Ningbo Dongfang Shengshi Optoelectronics Technology Co ltd
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Abstract

The utility model relates to a remote control type externally-connected power supply multifunctional louver awning which comprises an upright post, a top frame, a plurality of sun visors, a lighting component, a control box, a remote control board and a base, wherein the lighting component is arranged on at least one position of the upright post, the top frame and the sun visors, the control box and the base are both arranged on the upright post, the remote control board is detachably arranged on the base, a first solar panel, a box storage battery, a control signal transceiver, a charging interface and a base layer main control circuit board which are electrically connected are arranged in the control box, the lighting component is also electrically connected with the base layer main control circuit board, and a built-in battery, a control signal transmitter and a top layer main control circuit board which are connected with buttons and points are arranged in the remote control board. The shutter sunshade of this technical scheme can remote control lighting assembly's operating condition, and except solar panel, can also use external power source to charge the battery in the control box, so convenient to use to can use under more situations.

Description

Remote control type multifunctional shutter sunshade capable of externally supplying power
Technical Field
The utility model relates to the technical field of shutter sunshades, in particular to a remote control type multifunctional shutter sunshades capable of externally supplying power.
Background
The shutter sunshade is a common sunshade facility and is widely used in places such as building facades, gardens, balconies and the like, and consists of an outer frame and a series of parallel angle-adjustable sunshades, the indoor illumination is controlled by adjusting the angles of the sunshades, the indoor direct sunlight is prevented, the indoor cooling is kept, the sun damage of furniture and floors is reduced, and in addition, the sunshades can be used for shielding rain when each sunshades are closed.
The function of traditional sunshade is comparatively single, only include above-mentioned sunshade through each sunshading board angle variation realization, hide the rain function, and utilize the aesthetic property that sunshade itself had, play the decoration function of decorating the building, do not have extra other functions that extend, for this, I's put forward the publication number for CN218668710U, patent name is the patent of "a tripe sunshade", the tripe sunshade that this technical scheme relates still has illumination, fan fever, audio play function besides above-mentioned basic function, the function of using of tripe sunshade has been expanded, simultaneously, the electric energy that supplies illumination, fan fever and audio play is the conversion and shines the solar energy that contains in the sunlight on the sunshading board and obtain, so can also make the energy obtain reasonable utilization.
However, according to feedback of practical use, i found that, firstly, because the bluetooth sound equipment, the fan, the spotlight, the lighting devices such as the light bars and the like related to the technical scheme can be controlled in a working state when a user is located below the corresponding device, the working state cannot be controlled remotely, so that the problem of inconvenient use exists.
Disclosure of Invention
Aiming at the situation, in order to overcome the problems that the existing shutter sunshade with various expansion functions cannot be remotely controlled, so that the use is inconvenient, and meanwhile, when the electric energy reserve of a battery is insufficient and the light is insufficient in the dark night, the overcast and rainy days and the like, the battery cannot be used for supplying power to electric equipment, the utility model aims to provide the shutter sunshade which can remotely control the working state and can be charged by using an external power supply, is convenient to use and can be normally used under more conditions.
In order to achieve the above object, the technical solution of the present utility model is:
the utility model provides a but multi-functional tripe sunshade of external power supply of remote control formula, it includes the stand, top frame and a plurality of sunshades, it still package lighting assembly, the control box, remote control board and base, lighting assembly locates on stand, top frame, at least one department of sunshades, control box and base are all located on the stand, remote control board detachable locates on the base, be equipped with including first solar panel in the control box, the box body battery, control signal transceiver, interface and basic unit's main control circuit board charge, first solar panel, lighting assembly, the box body battery, control signal transceiver and interface all are connected with basic unit's main control circuit board electricity charge, and the interface that charges runs through the control box outwards extends, be equipped with the button in the remote control board, built-in battery, control signal transmitter and top layer main control circuit board electricity are connected, the button, built-in battery, control signal transmitter and top layer main control circuit board electricity are connected, the remote control board is through its control signal transmitter to the control signal transceiver of control box send the control command of applying on the button, with remote control lighting assembly's operating condition.
Preferably, a power switch is also arranged in the control box, and the power switch is electrically connected with the base layer main control circuit board.
Preferably, the lighting assembly comprises a solar louver lamp arranged on the sun shield, the solar louver lamp comprises a lamp body, a second solar panel, a lamp storage battery, a control signal receiver and a lamp control circuit board, the lamp body and the second solar panel are respectively arranged on the upper end face and the lower end face of the sun shield, the lamp body, the second solar panel, the lamp storage battery and the control signal receiver are electrically connected with the lamp control circuit board, and the signal receiver is used for receiving control instructions sent by the control box control signal transceiver so as to wirelessly control the operation of the lamp body.
Preferably, the lighting assembly further comprises a longitudinal light bar and a transverse light bar, and the longitudinal light bar and the transverse light bar are respectively arranged on the outer walls of the upright post and the top frame.
Preferably, a plurality of corresponding plug-in posts and plug-in holes are respectively formed on opposite surfaces of the upright post and the control box, and the control box is fixedly connected with the plug-in posts on the upright post in a plug-in matching manner through the plug-in holes.
Preferably, an indicator light is arranged in the remote control board, and the indicator light is electrically connected with the top-layer main control circuit board and is used for displaying the working state of the lighting assembly.
Preferably, a bump is formed on one side of the base, the remote control board is located on the bump, and the remote control board and the base are provided with an upper magnet and a lower magnet which are opposite.
Preferably, the control box further comprises a dust cover, a clamping groove opposite to the charging interface is formed in the outer wall of the control box, the dust cover is embedded in the clamping groove, a rotating needle is formed on the dust cover, a rotating hole matched with the rotating needle is formed in the control box, and the rotating needle is in rotating fit with the rotating hole.
Preferably, the base is detachably connected with the upright by bolts.
Compared with the prior art, the utility model has the advantages that:
the remote control board can be taken down from the base fixed with the upright post and is freely controlled by a user to move, the user can remotely control the working state of the lighting component through the remote control board, when the button is pressed, the control signal transmitter transmits a control instruction applied to the button by the user to the control signal transceiver in the control box, the lighting component correspondingly switches the running state and the brightness according to the control instruction, and the lighting component does not need to be moved to a position opposite to the lighting component in the whole process, so that the convenience of using the louver awning is greatly improved.
In the environments with insufficient light such as the night and rainy days, at the moment, insufficient solar energy is supplied to the first solar panel for conversion, a user can charge the storage battery by using a charging wire connected with an external power supply and a charging interface in a manual mode, so that the storage battery in the box body can have sufficient electric energy for the operation of the lighting assembly, and the abnormal use of the function of the shutter sunshade disclosed by the utility model is avoided.
Drawings
FIG. 1 is a schematic view of the overall structure of the blind awning of the present utility model;
FIG. 2 is a schematic view of the overall structure of the blind awning of the present utility model from another perspective;
FIG. 3 is a schematic view of the overall partial enlarged construction of the control box of the sunshade of the present utility model when detached from the free standing post;
FIG. 4 is a schematic view of the overall structure of the control box of the sunshade of the present utility model;
FIG. 5 is a schematic view of an exploded construction of the control box of the blind sunshade of the present utility model;
FIG. 6 is a schematic view of an exploded view of another view of the control box of the blind sunshade of the present utility model;
FIG. 7 is a schematic view of the overall structure of the remote control panel and base of the sunshade of the present utility model;
FIG. 8 is a schematic view of an exploded construction of a remote control panel for a louvered awning of the present utility model;
fig. 9 is a schematic view of the overall structure of the base of the sunshade of the present utility model.
As shown in the figure:
1. a column; 101. a plug-in column; 2. a top frame; 3. a sun visor; 4. a control box; 401. a first solar panel; 402. a box storage battery; 403. a control signal transceiver; 404. a charging interface; 405. a base layer main control circuit board; 406. a power switch; 407. a plug hole; 408. a dust cover; 5. a remote control board 501, buttons; 502. a built-in battery; 503. a control signal transmitter; 504. a top layer main control circuit board; 505. an indicator light; 6. a base; 601. a bump; 7. solar energy shutter lamp; 701. a lamp body; 702. a second solar panel; 8. a longitudinal light bar; 9. a transverse light bar; 10. a magnetic block is arranged on the upper magnetic block; 11. and a lower magnetic block.
Detailed Description
The utility model will be described in further detail with reference to the drawings and the specific examples.
In the description of the present utility model, it should be noted that, directions or positional relationships indicated by terms such as "upper", "lower", "left", "right", "inner", "outer", etc. are based on directions or positional relationships shown in the drawings, or directions or positional relationships in which the inventive product is conventionally put in use, are merely for convenience of description, and are not intended to indicate or imply that the directions are necessarily specific directions and specific direction configurations and operations, and thus should not be construed as limiting the present utility model.
As shown in fig. 1, 2 and 5 to 7, the utility model relates to a remote control type externally-connected power supply multifunctional louver awning, which comprises an upright post 1, a top frame 2 and a plurality of sun visors 3, wherein the sun visors 3 are arranged in the top frame 2 in parallel and hinged with the top frame 2, the upright post 1 is distributed below the top frame 2 to provide support for the top frame 2 and the sun visors 3, in addition, the remote control type louver awning further comprises a lighting component, a control box 4, a remote control board 5 and a base 6, wherein the lighting component is arranged on at least one part of the upright post 1, the top frame 2 and the sun visors 3, the lighting component is used for providing lighting for users in the environments of insufficient light such as night, overcast and rainy days, the control box 4 and the base 6 are arranged on the upright post 1, the remote control board 5 is detachably arranged on the base 6, and the remote control board 5 is required to be mentioned, the base 6 is arranged at a height which can be easily reached by hands of a user, in the utility model, the base 6 is arranged at a position of the upright column 1 which is about 1.5m away from the ground, the control box 4 comprises a first solar panel 401, a box body storage battery 402, a control signal transceiver 403, a charging interface 404 and a base layer main control circuit board 405, the first solar panel 401, a lighting component, the box body storage battery 402, the control signal transceiver 403 and the charging interface 404 are all electrically connected with the base layer main control circuit board 405, the first solar panel 401 is positioned at the upper end face of the control box 4 to ensure that the solar panel can be subjected to direct irradiation of sunlight so as to maximally convert solar energy into electric energy, the charging interface 404 extends outwards through the control box 4 and is exposed in an external space, the electric energy converted by the first solar panel 401 charges the box body storage battery 402 through a charge and discharge management circuit on the base layer circuit board, the charging and discharging management circuit on the base circuit board provides the electric energy necessary for the operation of the lighting assembly, meanwhile, the charging wire connected with an external power supply is connected to the charging interface 404 by utilizing the charging and discharging management circuit, so that the box storage battery 402 can be charged in two different modes, when the illumination is sufficient, the electric energy converted by the first solar panel 401 automatically charges the box storage battery 402, and in the environment with insufficient light such as the night and rainy days, at the moment, insufficient solar energy is supplied for the first solar panel 401 to convert, a user can manually charge the box storage battery 402 by utilizing the charging wire connected with the external power supply and the charging interface 404, the box storage battery 402 can be ensured to have sufficient electric energy for the operation of the lighting assembly, and the abnormal use of the function of the shutter sunshade is avoided;
the remote control board 5 is used for a user to remotely control the working state of the lighting assembly, specifically, a button 501, a built-in battery 502, a control signal transmitter 503 and a top master control circuit board 504 are arranged in the remote control board 5, the button 501, the built-in battery 502 and the control signal transmitter 503 are electrically connected with the top master control circuit board 504, after the user touches the button 501, the control signal transmitter 503 sends a control instruction applied to the button 501 to a control signal transceiver 403 in the control box 4, the lighting assembly correspondingly switches the working state and the brightness according to the control instruction, and when the remote control board 5 is not separated from the base 6, the remote control board 5 is relatively fixed with the upright post 1 along with the base 6, so that the remote control board 5 can be used as a fixed control panel, and based on the detachability between the remote control board 5 and the base 6, the user can detach the remote control board 5 from the base 6, so that the remote control board 5 can independently move, and the user can remotely send the control instruction to the lighting assembly to the working state without moving to the position opposite to the lighting assembly by carrying the remote control board 5, thereby greatly improving the convenience of using the sunshade of the utility model.
As shown in fig. 5 and fig. 6, a power switch 406 is further disposed in the control box 4, the power switch 406 is electrically connected with the base main control circuit board 405, the power switch 406 is used for controlling on/off of a circuit, when the power switch 406 is turned off in the partial scenes of transportation, installation, etc., at this time, the situation that the lighting assembly is turned on by mistake due to the fact that the remote control board 5 is touched by mistake can be avoided, and the box storage battery 402 is in a charging state for a long time due to continuous conversion of electric energy of the first solar panel 401, so that the service life is influenced, and the working state of the lighting assembly and the charging and discharging states of the box storage battery 402 are ensured to be always controllable.
As shown in fig. 1 and 2, the lighting assembly includes a solar louver 7, it is understood that, as a solar lamp, the solar louver 7 is disposed on the sun visor 3 by using electric energy converted from solar energy as an energy source required for lighting, it should be mentioned that, in the present utility model, the solar louver 7 is not in one-to-one correspondence with the sun visor 3, i.e. the number of the solar louver 7 is set according to actual needs, the solar louver 7 includes a lamp body 701, a second solar panel 702, a lamp battery, a control signal receiver and a lamp control circuit board, the lamp body 701 and the second solar panel 702 are disposed on upper and lower end surfaces of the sun visor 3, respectively, light emitted from the louver on the bottom surface of the sun visor 3 can be directly projected below, so that a user located right below the sun visor can obtain sufficient lighting, consistent with the first solar panel 401, the second solar panel 702 is arranged on the upper end face of the sun shield 3 to enable the sun shield to be subjected to direct irradiation of sunlight, solar energy is converted into electric energy to the maximum extent, the lamp body 701, the second solar panel 702, the storage battery for the lamp and the control signal receiver are all electrically connected with the lamp control circuit board, the electric energy converted by the second solar panel 702 is stored in the storage battery through a charge and discharge management circuit on the lamp control circuit board, a control signal which is sent to the control box 4 by the remote control board 5 and used for controlling the operation of the solar louver lamp 7 is sent to the control signal receiver again through the control signal transceiver 403 after being analyzed and processed by the base layer main control circuit board 405 of the control box 4, the lamp control circuit board controls the lamp body 701 to operate after the control signal transceiver 403 receives the control command, and then wireless control of the solar louver lamp 7 is realized, the connecting wire causes tensile failure due to the tensile force generated by repeated rotation of the sun shield 3, so that the service life of the solar louver lamp 7 can be prolonged.
As shown in fig. 1 and fig. 2, the lighting assembly further includes a longitudinal light bar 8 and a transverse light bar 9, where the longitudinal light bar 8 and the transverse light bar 9 are respectively disposed on the outer walls of the upright 1 and the top frame 2, and the electric energy stored in the storage battery 402 of the control box 4 is used for the longitudinal light bar 8 and the transverse light bar 9 to run, and when the longitudinal light bar 8 and the transverse light bar 9 are lighted, light can be diffused into the environment near the louver awning of the present utility model, so that the lighting range is enlarged, and a larger space suitable for movement is provided for users.
As shown in fig. 3, a plurality of plugging posts 101 are formed on opposite surfaces of a control box 4 and the control box 1, in the utility model, the plugging posts 101 are arranged along the outer edge trend of the side surface of the control box 1, and plugging holes 407 which are equal in number and correspond to the plugging posts 101 one by one are formed on the control box 4, when the plugging holes 407 are in plugging fit with the corresponding plugging posts 101, the control box 4 can be fixed with the upright 1, the plugging fit mode belongs to detachable connection, the control box 4 can be conveniently separated from the upright 1, when the box body storage battery 402 needs to be charged through an external power supply, the control box 4 is taken down from the upright 1, at the moment, the control box 4 can be moved to a position close to the external power supply along with the requirement of a user, and can be charged through a shorter charging wire and a charging interface 404 of the control box 4.
As shown in fig. 7 and 8, an indicator lamp 505 is disposed in the remote control board 5, the indicator lamp 505 is electrically connected with a top master control circuit board 504, and is used for displaying the working state of the lighting assembly, specifically, the number of the indicator lamps 505 corresponds to the number of the longitudinal lamp bars 8, the transverse lamp bars 9 and the buttons 501 included in the lighting assembly one by one, the working states of the solar louver lamps 7 are uniformly reflected by one indicator lamp 505 and are uniformly controlled by one button 501, when in use, a user can control the working states of the longitudinal lamp bars 8 and the transverse lamp bars 9 one by one and the working states of the solar louver lamps 7 one by one according to the actual requirement of the buttons 501, and can accurately determine the on-off states and the positions of the indicator lamp 505, the longitudinal lamp bars 8 and the solar louver lamps 7, so as to promote the control of the lighting assembly.
As shown in fig. 7 and 9, a bump 601 is formed on one side of the base 6, the base 6 with the bump 601 is L-shaped, the remote control board 5 is located on the bump 601, that is, the remote control board 5 is accommodated in a groove above the bump 601, the remote control board 5 and the base 6 are provided with opposite upper magnet 10 and upper magnet 10, and the remote control board 5 can be firmly fixed on the base 6 by using the magnetic force of the upper magnet 10 and the upper magnet 10 to prevent slipping.
As shown in fig. 4 to 6, the control box 4 further includes a dust cover 408, a clamping groove opposite to the charging interface 404 is provided on the outer wall of the control box 4, the dust cover 408 is embedded in the clamping groove, the charging interface 404 can be closed by the clamping groove, and poor contact caused when external dust and other impurities enter the charging interface 404 during charging is avoided, so that good protection is formed on the charging interface 404, the dust cover 408 is provided with a rotating needle, a rotating hole matched with the rotating needle is provided on the control box 4, the rotating needle is in rotating fit with the rotating hole, and a rotating connection mode is convenient for a user to use the rotating needle as a rotating shaft to separate the rotating needle from the butt joint position with the charging interface 404 by rotating the dust cover 408, so that the charging interface 404 can be easily exposed outwards.
Further, the base 6 is detachably connected with the upright 1 through a bolt, and the base 6 is characterized by quick disassembly and self-locking based on threaded connection, so that the base 6 can be quickly assembled on the upright 1 and kept fixed.
In combination with fig. 1 to 9, in the shutter sunshade of the present utility model, under the environment of sufficient illumination, the first solar panel 401 of the control box 4 and the second solar panel 702 of the solar shutter lamp 7 automatically convert solar energy into electric energy to be stored in the box body storage battery 402 and the storage battery for the lamp respectively, meanwhile, the remote control board 5 can be used as a control panel when being connected with the base 6, when a user touches the buttons 501 corresponding to the required lighting position, the longitudinal lamp strip 8, the transverse lamp strip 9 and the solar shutter lamp 7, the box body storage battery 402 is the longitudinal lamp strip 8 and the transverse lamp strip 9 to supply power to operate, the lamp storage battery is the solar shutter lamp 7 to supply power to operate, the indicator lamp 505 on the remote control board 5 can be convenient for the user to accurately determine the lighting of the transverse lamp strip 9, the longitudinal lamp strip 8 and the solar shutter lamp 7 at each position, the user can take the remote control board 5 off the base 6, and when the user touches the storage battery 402 in the environment with insufficient light such as dark night, the storage battery 402 is not enough, the user can rotate the control box body storage battery cover 4 to charge the electric wire to be separated from the plug-in the charging box 1, and the electric wire can be charged by the external power line is separated from the plug-in the power supply terminal 4, and the external power supply terminal 4 is charged by the manual mode, and the plug-type LED lamp box 4 is charged by the manual power is charged by the user, and the plug control box 4 is charged by the external power plug 4 is connected to the electric connector 1, and the electric power plug connector is charged to the plug 4 is charged to the electric connector has the power plug 4, and the electric connector has the power plug connector is charged to the electric connector has the electric wire is charged.
The foregoing embodiments and description have been provided merely to illustrate the principles and best modes of carrying out the utility model, and various changes and modifications can be made therein without departing from the spirit and scope of the utility model as defined in the appended claims.

Claims (9)

1. The utility model provides a but multi-functional tripe sunshade of external power supply of remote control formula, includes stand (1), top frame (2) and a plurality of sunshades board (3), its characterized in that, it still wraps lighting module, control box (4), remote control board (5) and base (6), lighting module locates on at least one department of stand (1), top frame (2), sunshades board (3), control box (4) and base (6) are all located on stand (1), remote control board (5) detachable locates on base (6), be equipped with in control box (4) including first solar panel (401), box battery (402), control signal transceiver (403), charging interface (404) and basic unit master control circuit board (405), first solar panel (401), lighting module, box battery (402), control signal transceiver (403) and charging interface (404) all are connected with basic unit master control circuit board (405) electricity, just charging interface (404) runs through control box (4) and outwards extends, be equipped with in button board (5), in-board (501), battery (502), top layer (502) are put to controller (502) The control signal transmitter (503) is electrically connected with the top-layer main control circuit board (504), and the remote control board (5) sends a control instruction applied to the button (501) to the control signal transceiver (403) of the control box (4) through the control signal transmitter (503) so as to remotely control the working state of the lighting assembly.
2. The remote control type externally-connected power supply multifunctional shutter sunshade of claim 1, wherein a power switch (406) is further arranged in the control box (4), and the power switch (406) is electrically connected with a base layer main control circuit board (405).
3. The remote control type externally-connected power-supplied multifunctional shutter sunshade according to claim 1, wherein the lighting assembly comprises a solar shutter lamp (7), the solar shutter lamp is arranged on the sunshade board (3), the solar shutter lamp (7) comprises a lamp body (701), a second solar panel (702), a lamp storage battery, a control signal receiver and a lamp control circuit board, the lamp body (701) and the second solar panel (702) are respectively arranged on the upper end face and the lower end face of the sunshade board (3), the lamp body (701), the second solar panel (702), the lamp storage battery and the control signal receiver are electrically connected with the lamp control circuit board, and the signal receiver is used for receiving control instructions sent by a control box (4) for controlling a signal transceiver (403) so as to wirelessly control the operation of the lamp body (701).
4. A remote control externally powered multifunctional shutter sunshade according to claim 1 or 3, wherein the lighting assembly further comprises a longitudinal light bar (8) and a transverse light bar (9), and the longitudinal light bar (8) and the transverse light bar (9) are respectively arranged on the outer walls of the upright post (1) and the top frame (2).
5. The remote control type externally-connected power supply multifunctional shutter sunshade according to claim 1, wherein a plurality of corresponding plug-in posts (101) and plug-in holes (407) are respectively formed on opposite surfaces of the upright post (1) and the control box (4), and the control box (4) is fixedly connected with the plug-in posts (101) on the upright post (1) in a plug-in connection manner through the plug-in holes (407) of the control box.
6. The remote control type externally-connected power supply multifunctional shutter sunshade according to claim 1, wherein an indicator lamp (505) is arranged in the remote control board (5), and the indicator lamp (505) is electrically connected with the top-layer main control circuit board (504) and is used for displaying the working state of the lighting assembly.
7. The remote control type multifunctional shutter sunshade capable of externally supplying power according to claim 1, wherein a bump (601) is formed on one side of the base (6), the remote control plate (5) is located on the bump (601), and the remote control plate (5) and the base (6) are provided with an upper magnetic block (10) and a lower magnetic block (11) which are opposite.
8. The remote control type multifunctional shutter sunshade capable of externally supplying power according to claim 1, wherein the control box (4) further comprises a dust cover (408), a clamping groove opposite to the charging interface (404) is formed in the outer wall of the control box, the dust cover (408) is embedded in the clamping groove, a rotating needle is formed on the dust cover (408), a rotating hole matched with the rotating needle is formed in the control box (4), and the rotating needle is in rotating fit with the rotating hole.
9. The remote control type externally-connected power supply multifunctional shutter sunshade according to claim 1, wherein the base (6) is detachably connected with the upright post (1) through bolts.
CN202321008489.8U 2023-04-28 2023-04-28 Remote control type multifunctional shutter sunshade capable of externally supplying power Active CN219691190U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321008489.8U CN219691190U (en) 2023-04-28 2023-04-28 Remote control type multifunctional shutter sunshade capable of externally supplying power

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321008489.8U CN219691190U (en) 2023-04-28 2023-04-28 Remote control type multifunctional shutter sunshade capable of externally supplying power

Publications (1)

Publication Number Publication Date
CN219691190U true CN219691190U (en) 2023-09-15

Family

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Application Number Title Priority Date Filing Date
CN202321008489.8U Active CN219691190U (en) 2023-04-28 2023-04-28 Remote control type multifunctional shutter sunshade capable of externally supplying power

Country Status (1)

Country Link
CN (1) CN219691190U (en)

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