CN215220577U - Wall switch with induction lighting and dimming and remote control wall switch - Google Patents

Wall switch with induction lighting and dimming and remote control wall switch Download PDF

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Publication number
CN215220577U
CN215220577U CN202121472671.XU CN202121472671U CN215220577U CN 215220577 U CN215220577 U CN 215220577U CN 202121472671 U CN202121472671 U CN 202121472671U CN 215220577 U CN215220577 U CN 215220577U
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switch
light source
light
room
wall switch
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CN202121472671.XU
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Chinese (zh)
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范卓奕
黎兴旭
其他发明人请求不公开姓名
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Zaoma Technology Guangdong Co ltd
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Zaoma Technology Guangdong Co ltd
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Abstract

The utility model relates to a take wall switch of response illumination and adjust luminance and remote control wall switch, including panel, bottom plate, main control panel. The utility model discloses a wall switch still has the response illumination function except possessing traditional switch function, not only can play the effect of suggestion switch position in night, can also act as interim emergency lighting instrument and use, and multiple problem has been solved to a product, all has stronger substitution to current solitary wall switch and response night-light product, the utility model discloses the cost is retrencied to the structure is not high, is applicable to current wall switch application environment completely, has multiple mode simultaneously, installs simple convenient to use, has wide market prospect.

Description

Wall switch with induction lighting and dimming and remote control wall switch
Technical Field
The utility model relates to a switch and lighting technology field, in particular to take wall switch of response illumination and adjust luminance and remote control wall switch.
Background
The wall switch is widely applied to families or businesses and production spaces, the popularity is extremely high, along with market development in recent years, common wall switches in the market at present have a certain fluorescence and luminous function, but only are limited to the function of switch position indication basically, have no conventional lighting function, and do not have the auto-induction lighting function, so when a temporary lighting is needed after the main lamp is turned off at night, a user generally purchases the induction lamp additionally for night use, the purchase investment is increased virtually, the resource waste is caused, and the product efficiency is reduced.
To solve the above problems, it is urgently needed to integrate and develop a wall switch with induction lighting and a dimming and remote control wall switch, and the induction lighting function is integrated in the wall switch, so that the wall switch is multipurpose, the resource efficiency is improved, and the existing problems are solved.
Disclosure of Invention
In view of this, the utility model provides a solve above-mentioned problem, provide a wall switch and adjust luminance and remote control wall switch with response illumination.
The purpose of the utility model is realized through the following technical scheme:
a wall switch with induction lighting and a dimming and remote control wall switch comprise a panel, a bottom plate and a main control panel; the light source module comprises a panel, a key hole is arranged in the middle of the panel, a key is fixed in the key hole, a lens cover opening is arranged above the key hole, a mode switch opening is arranged in the middle of the top of the panel, a light emitting opening is arranged in the middle of the bottom of the panel, a mains supply switch is arranged in the center of the bottom plate, a light source seat is arranged at the edge position below the front surface of the bottom plate, a wire passing opening is arranged above the light source seat, a light homogenizing cover seat is arranged below the light source seat, an infrared sensor opening is arranged at the edge position above the bottom plate, a main control panel is arranged at the upper part of the back surface of the bottom plate, an infrared sensor is arranged at the front surface of the main control panel, a lens cover is connected onto the infrared sensor, a photosensitive sensor is arranged at one side of the upper edge of the back surface of the main control panel, a mains supply connector is connected below the back surface of the main control panel, and a light source wire is connected onto one side of the mains supply connector, the tail end of the light source wire extending downwards is connected with an LED light source.
Specifically, the infrared sensor is aligned with an infrared sensor opening of the bottom plate and protrudes from the front surface of the bottom plate, the bottom of the lens cover penetrates through the infrared sensor opening to be clamped on the infrared sensor, and the top of the lens cover protrudes from the lens cover opening above the panel.
Specifically, mains switch is connected with the commercial power wiring in the room, through pressing button in the middle of the panel can drive mains switch carries out on-off operation to the main light in room, the mains connection of main control board below position with mains switch's commercial power input/output port is connected, and when mains switch opened the room main light and was in the light illumination state, the main control board that mains connection connects then was the off-state, and when mains switch closed the room main light and was in the non-illumination state of putting off the light, the main control board that mains connection connects then is in operating condition, infrared sensor and photosensitive sensor get into the detection state.
More specifically, utility power switch one side at the bottom plate back is equipped with the card line seat, the light source line downwardly extending of commercial power joint one side, card line seat chucking the light source line, the light source is followed the back of bottom plate is worn to the front of bottom plate through the line mouth, and with install LED light source electricity in the middle of the light source seat is connected, be fixed with even light cover in the even light cover seat of light source seat below, even light cover is in under the LED light source, the bottom of even light cover with the light-emitting opening of panel bottom aligns, the light of LED light source passes through even light cover and light-emitting opening and sees out.
More specifically, the main control board works according to the following procedures: when a main lamp of a room connected with the wall switch is in a light-off state, the photosensitive sensor starts the infrared sensor to enter a scanning detection state according to a preset minimum threshold value of brightness, once the infrared sensor detects infrared information of user activity, the LED light source is immediately turned on, and after a user leaves a detection range or enters a static state, the LED light source is turned off in a delayed mode.
Furthermore, a mode switch is arranged beside the photosensitive sensor above the back of the main control panel, a switch shifting sheet is connected to the upper portion of the mode switch, the switch shifting sheet penetrates through a mode switch opening at the top of the panel and is fixed on the mode switch, the mode switch can be driven to be adjusted among three working modes of normally on, normally off and induction lighting by shifting the switch shifting sheet, so that different requirements of a user are met, if the user wants the LED light source to be always on under the condition that the main lamp of the room is turned off, the normally on mode can be selected, if the user does not want the LED light source to be on under any condition, the off mode can be selected, and if the user wants to enter the automatic induction lighting, which turns off when the user turns on, is selected.
Further, the switch shifting sheet is made of a light-transmitting material, room light can be projected onto the photosensitive sensor through the switch shifting sheet, and the photosensitive sensor works according to the light and shade state of a room.
In one embodiment, in the state that the wall switch enters induction lighting after the mains switch turns off the main lamp of the room, when the infrared sensor detects that infrared information of user activity needs to initiate night light lighting, the main control board actively reduces the total power and then provides electric power for the main lamp of the room, so that the main lamp of the room emits light with 5% -10% of power, and the induction night light lighting effect is achieved, and the main lamp of the room is turned off in a delayed manner after the user leaves a detection range or enters a static state.
In another embodiment, the main control panel integrates a wireless communication module and a charging module, the main control panel is connected with a lithium battery, a key in the middle of the panel is pressed to directly and wirelessly control the on and off of a main lamp of a room in a remote control manner, and under the off state of the main lamp of the room, the main control panel independently starts induction lighting under the electric support of the built-in lithium battery, is not required to be connected with a mains supply wiring of the room for use, is not limited by the original position of a mains supply junction box of the room, and can be randomly selected by a user.
The utility model has the advantages that:
the utility model relates to a take wall switch of response illumination and adjust luminance and remote control wall switch, except possessing traditional wall switch function, still have the response illumination function, can make the response night-light and use, not only can play the effect of suggestion switch position in the night, can also act as interim emergency lighting instrument and use, multiple problem has been solved to a product, all has stronger substitution to current solitary wall switch and response night-light product, the utility model discloses the cost is retrencied to the structure is not high, is applicable to current municipal electricity wiring and installation environment completely, has multiple usage pattern simultaneously, installs simple to use, has wide market prospect.
Drawings
The invention will be further described with reference to the following figures and examples:
fig. 1 is a schematic structural diagram of an embodiment of the present invention;
fig. 2 is a schematic back structure diagram of an embodiment of the present invention;
FIG. 3 is a schematic diagram of the internal details of an embodiment of the present invention;
fig. 4 is a detailed back view of an embodiment of the present invention;
fig. 5 is a front exploded view of an embodiment of the present invention;
fig. 6 is a rear-view exploded schematic view of an embodiment of the present invention;
fig. 7 is a front exploded view of another embodiment of the present invention;
fig. 8 is a rear-view exploded schematic view of another embodiment of the present invention.
In the figure: the LED light source comprises a panel 1, a key hole 11, a key 12, a lens cover opening 13, a mode switch opening 14, a light emitting opening 15, a bottom plate 2, a mains switch 21, a light source seat 22, a light homogenizing cover seat 23, a light homogenizing cover 24, an infrared sensor opening 25, a wire clamping seat 26, a wire passing opening 27, a main control panel 3, an infrared sensor 31, a lens cover 32, a photosensitive sensor 33, a mode switch 34, a switch shifting sheet 35, a mains connector 36, a light source wire 37, an LED light source 38 and a lithium battery 39.
Detailed Description
To facilitate understanding of those skilled in the art, the present invention will be described in further detail with reference to specific embodiments and drawings. Wherein like or similar reference numerals refer to like or similar elements or elements having like or similar functions throughout. The embodiments described below by referring to the drawings are exemplary and intended to explain the present invention and are not to be construed as limiting the present invention.
In the description of the present invention, it is to be understood that the terms "center", "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer", and the like, indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, and are only for convenience in describing the present invention and simplifying the description, but do not indicate or imply that the device or assembly referred to must have a particular orientation, be constructed in a particular orientation, and be operated, and thus should not be construed as limiting the present invention.
In the present invention, unless otherwise expressly stated or limited, the terms "connected" and "secured" are to be construed broadly, as if the terms "connected" and "secured" were used, for example, to mean mechanically or electrically connected; the connection can be direct connection, indirect connection through an intermediate medium, internal connection, or internal and external connection. The specific meanings of the above terms in the present invention can be specifically understood according to specific situations by those of ordinary skill in the art.
Referring to fig. 1 to 8, an embodiment of the present invention includes:
a wall switch with induction lighting and a dimming and remote control wall switch comprise a panel 1, a bottom plate 2 and a main control panel 3; the improved LED display panel is characterized in that a key hole 11 is formed in the middle of the panel 1, a key 12 is fixed in the key hole 11, a lens cover opening 13 is arranged above the key hole 11, a mode switch opening 14 is arranged in the middle of the top of the panel 1, a light emitting opening 15 is arranged in the middle of the bottom of the panel 1, a mains supply switch 21 is installed at the center of the bottom plate 2, a light source seat 22 is arranged at the edge of the front lower side of the bottom plate 2, a wire passing opening 27 is arranged above the light source seat 22, a light homogenizing cover seat 23 is arranged below the light source seat 22, an infrared sensor opening 25 is arranged at the edge of the upper side of the bottom plate 2, the main control plate 3 is installed at the upper part of the back of the bottom plate 2, an infrared sensor 31 is arranged at the front of the main control plate 3, a lens cover 32 is connected onto the infrared sensor 31, and a photosensitive sensor 33 is arranged at one side of the edge of the upper side of the back of the main control plate 3, the lower position of the back of the main control panel 3 is connected with a commercial power connector 36, one side of the commercial power connector 36 is connected with a light source line 37, and the tail end of the light source line 37 extending downwards is connected with an LED light source 38.
Specifically, referring to fig. 1, 3 and 5, the infrared sensor 31 is aligned with the infrared sensor opening 25 of the bottom plate 2 and protrudes from the front surface of the bottom plate 2, the bottom of the lens cover 32 passes through the infrared sensor opening 25 and is fastened on the infrared sensor 31, and the top of the lens cover 32 protrudes from the lens cover opening 13 above the panel 1.
Specifically, please refer to fig. 4 to 6, the mains switch 21 is connected to the mains wiring in the room, the key 12 in the middle of the panel 1 is pressed to drive the mains switch 21 to perform a switching operation on the main lamp in the room, the mains connector 36 below the main control board 3 is connected to the mains input/output port of the mains switch 21, when the main lamp in the room is turned on by the mains switch 21 and is in a lighting state, the main control board 3 connected to the mains connector 36 is in an off state, when the main lamp in the room is turned off and is not in a lighting state by the mains switch 21, the main control board 3 connected to the mains connector 36 is in an operating state, and the infrared sensor 31 and the photosensitive sensor 33 enter a detection state.
Specifically, referring to fig. 2 and 6, a wire clamping seat 26 is arranged on one side of the mains switch 21 on the back surface of the bottom plate 2, a light source wire 37 on one side of the mains connector 36 extends downward, the wire clamping seat 26 clamps the light source wire 37, the light source wire 37 penetrates from the back surface of the bottom plate 2 to the front surface of the bottom plate 2 through a wire opening 27 and is electrically connected with an LED light source 38 installed in the middle of the light source seat 22, a light homogenizing cover 24 is fixed in a light homogenizing cover seat 23 below the light source seat 22, the light homogenizing cover 24 is located right below the LED light source 38, the bottom of the light homogenizing cover 24 is aligned with a light emitting opening 15 at the bottom of the panel 1, and light of the LED light source 38 is transmitted through the light homogenizing cover 24 and the light emitting opening 15.
More specifically, the main control board 3 operates according to the following process: when the main lamp of the room connected with the wall switch is in a light-off state, the photosensitive sensor 33 starts the infrared sensor 31 to enter a scanning detection state according to a preset minimum brightness threshold, once the infrared sensor 31 detects infrared information of user activity, the LED light source 38 is immediately turned on, and after the user leaves a detection range or enters a static state, the LED light source 38 is turned off in a delayed manner.
Further, referring to fig. 1 to 4, a mode switch 34 is disposed near a photosensitive sensor 33 above the back of the main control board 3, an upper portion of the mode switch 34 is connected with a switch moving sheet 35, the switch moving sheet 35 passes through a mode switch opening 14 at the top of the panel 1 and is fixed on the mode switch 34, and the mode switch 34 can be adjusted among three working modes of normally on, off and induction lighting by moving the switch moving sheet 35, so as to meet different requirements of a user.
Further, referring to fig. 4, the switch moving sheet 35 is made of a light-transmitting material, room light can be projected onto the photosensitive sensor 33 through the switch moving sheet 35, and the photosensitive sensor 33 operates according to the brightness of the room.
As another embodiment of the present invention, under the state that the wall switch got into the response illumination behind the mains switch 21 closed room main light, when infrared sensor 31 detected that user's activity infrared information need initiate the night-light illumination, main control panel 3 provides electric power to room main light again after initiatively reducing the total power, lets room main light give off light with 5% -10% power to play response night-light illuminating effect, after the user left detection range or got into quiescent condition, room main light delayed closing promptly.
As another embodiment of the present invention, please refer to fig. 7 and 8, the main control panel 3 integrates the wireless communication module and the charging module, the main control panel 3 is connected with the lithium battery 39, and the button 12 in the middle of the panel 1 is pressed to directly remotely control the opening and closing of the main lamp in the room in a wireless manner, and under the closed state of the main lamp in the room, the main control panel 3 independently starts the induction lighting under the electric support of the lithium battery 39, and is no longer limited by the original position of the commercial power junction box in the room, and the user can select the position of the wall switch at will.
Although embodiments of the present invention have been shown and described, it should be noted that the above-mentioned embodiments are exemplary and should not be construed as limiting the present invention, and that those skilled in the art can make equivalent changes, modifications, substitutions and alterations to the above embodiments without departing from the spirit and scope of the present invention, and all such equivalent changes, modifications, substitutions and alterations are intended to be included in the scope of the present claims.

Claims (9)

1. A wall switch with induction lighting comprises a panel (1), a bottom plate (2) and a main control panel (3); the LED lamp is characterized in that a key hole (11) is arranged at the middle position of the panel (1), a key (12) is fixed in the key hole (11), a lens cover opening (13) is arranged above the key hole (11), a mode switch opening (14) is arranged at the middle position of the top of the panel (1), a light emitting opening (15) is arranged at the middle position of the bottom of the panel (1), a mains supply switch (21) is installed at the center position of the bottom plate (2), a light source seat (22) is arranged at the edge position below the front surface of the bottom plate (2), a wire passing opening (27) is arranged above the light source seat (22), a light homogenizing cover seat (23) is arranged below the light source seat (22), an infrared sensor opening (25) is arranged at the edge position above the bottom plate (2), a main control panel (3) is installed at the upper part of the back surface of the bottom plate (2), an infrared sensor (31) is arranged at the front surface of the main control panel (3), be connected with lens cover (32) on infrared sensor (31), the back top border one side of master control board (3) is equipped with photosensitive sensor (33), the back lower position of master control board (3) is connected with mains supply joint (36), one side of mains supply joint (36) is connected with light source line (37), the end-to-end connection that light source line (37) extend down has LED light source (38).
2. Wall switch with induction lighting according to claim 1, characterized in that the infrared sensor (31) is aligned with the infrared sensor opening (25) of the base plate (2), protruding from the front face of the base plate (2), the bottom of the lens cover (32) is clipped onto the infrared sensor (31) through the infrared sensor opening (25), the top of the lens cover (32) protruding from the lens cover opening (13) above the panel (1).
3. Wall switch with induction lighting according to claim 1, characterized in that the mains switch (21) is connected to mains wiring in a room, the mains supply switch (21) can be driven to switch the main lamp of the room by pressing the key (12) in the middle of the panel (1), a mains supply joint (36) arranged below the main control panel (3) is connected with a mains supply input/output port of the mains supply switch (21), when the main lamp of the room is turned on by the commercial power switch (21) and is in a lighting state, the main control panel (3) connected with the commercial power connector (36) is in a closed state, when the mains supply switch (21) turns off the main lamp of the room and is in a light-off non-illumination state, the main control panel (3) connected with the mains supply connector (36) is in a working state, the infrared sensor (31) and the photosensitive sensor (33) enter a detection state.
4. Wall switch with induction lighting according to claim 1, characterized in that a wire clamping seat (26) is arranged at one side of the mains switch (21) at the back of the bottom plate (2), a light source line (37) at one side of the commercial power connector (36) extends downwards, the wire clamping seat (26) clamps the light source line (37), the light source line (37) penetrates from the back surface of the bottom plate (2) to the front surface of the bottom plate (2) through the line port (27), and is electrically connected with an LED light source (38) arranged in the middle of the light source seat (22), a light homogenizing cover (24) is fixed in a light homogenizing cover seat (23) below the light source seat (22), the light homogenizing cover (24) is positioned right below the LED light source (38), the bottom of the light homogenizing cover (24) is aligned with the light emitting port (15) at the bottom of the panel (1), the light of the LED light source (38) is transmitted out through the light homogenizing cover (24) and the light emitting opening (15).
5. Wall switch with induction lighting according to claim 1, characterized in that the main control board (3) works according to the following procedure: when a main lamp of a room connected with the wall switch is in a light-off state, the photosensitive sensor (33) starts the infrared sensor (31) to enter a scanning detection state according to a preset minimum brightness threshold value, once the infrared sensor (31) detects infrared information of user activity, the LED light source (38) is immediately turned on, and after a user leaves a detection range or enters a static state, the LED light source (38) is turned off in a delayed mode.
6. Wall switch with inductive lighting according to claim 1, characterized in that a mode switch (34) is provided beside the light-sensitive sensor (33) above the back of the main control board (3), the upper part of the mode switch (34) is connected with a switch plectrum (35), the switch plectrum (35) passes through the mode switch port (14) at the top of the panel (1) and is fixed on the mode switch (34), the mode switch (34) can be driven to be adjusted among three working modes of normal brightness, closing and induction lighting by toggling the switch plectrum (35), to meet different requirements of users, if the users want the LED light source (38) to be always on under the condition that the main lamp of the room is off, the normally-on mode is selected, if it is not desired in any case that the LED light source (38) is on, then the off mode is selected, and if people want to enter the induction lighting device, the induction lighting mode is selected according to the automatic induction lighting device which turns on and off when people come and go.
7. Wall switch with induction lighting according to claim 6, characterized in that the switch pick (35) is a light-transparent material, room light can be projected on the light-sensitive sensor (33) through the switch pick (35), the light-sensitive sensor (33) works according to the light and shade state of the room.
8. A wall switch for dimming comprising a wall switch with induction lighting as described in any of claims 1-7, characterized in that when said infrared sensor (31) detects user activity infrared information to initiate night light illumination in the state that said mains switch (21) turns off the main lamp of the room, said main control board (3) actively reduces the total power and then provides power to the main lamp of the room to let the main lamp of the room emit light with 5% -10% power, thereby achieving the effect of induction night light illumination, and after the user leaves the detection range or enters the stationary state, the main lamp of the room is turned off with 5% -10% power, i.e. delayed.
9. A remote control wall switch, comprising the wall switch with induction lighting described in any one of claims 1-7, characterized in that the main control panel (3) integrates a wireless communication module and a charging module, the main control panel (3) is connected with a lithium battery (39), the switch-on and switch-off of the main lamp of the room can be directly and wirelessly controlled by pressing the key (12) in the middle of the panel (1), and under the switch-off state of the main lamp of the room, the main control panel (3) independently starts the induction lighting work under the electric support of the lithium battery (39), and is not limited by the original position of the commercial power junction box of the room, and the user can freely select the position of the wall switch.
CN202121472671.XU 2021-06-30 2021-06-30 Wall switch with induction lighting and dimming and remote control wall switch Active CN215220577U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121472671.XU CN215220577U (en) 2021-06-30 2021-06-30 Wall switch with induction lighting and dimming and remote control wall switch

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121472671.XU CN215220577U (en) 2021-06-30 2021-06-30 Wall switch with induction lighting and dimming and remote control wall switch

Publications (1)

Publication Number Publication Date
CN215220577U true CN215220577U (en) 2021-12-17

Family

ID=79432041

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121472671.XU Active CN215220577U (en) 2021-06-30 2021-06-30 Wall switch with induction lighting and dimming and remote control wall switch

Country Status (1)

Country Link
CN (1) CN215220577U (en)

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