Solar electrodeless dimming lamp
By designing solar-powered dimmer lamps, using the incoming dimmer control switch and the light emitting controller to achieve arbitrary adjustment of the brightness of the lamp, the problem of limited brightness gear of the existing solar lamps is solved and practicality is improved.
Patent Information
- Application Number
- CN202422168761.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-04
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2034-09-04
AI Technical Summary
The brightness gear of existing solar lamps is limited, which cannot fully meet user needs and is less practical.
A solar-energy inverted dimming lamp is designed, including a solar panel, a light emitting controller, a light emitting control switch, a battery and a light emitting body. The control information input by the user is obtained through the light emitting control switch. The light emitting body controller controls the brightness of the light emitting body based on the control information to realize the light emitting light emitting light.
Users can adjust the brightness of the lamp at will, which improves the practicality of solar lamps, and smoothes the brightness and meets personalized needs.
Smart Images

Figure CN223067230U_ABST
Abstract
Description
Technical Field
[0001] This application belongs to the technical field of lamps, and particularly relates to a solar stepless dimming lamp. Background Art
[0002] A solar lamp is a device that converts solar energy into electrical energy and uses the electrical energy to make a light-emitting body emit light to provide a light source. When actually using a solar lamp, users usually need to adjust the brightness of the solar lamp.
[0003] In existing solar lamps, usually a limited number of brightness levels are set so that users can adjust the brightness of the solar lamp by selecting a brightness level. Since the brightness levels of existing solar lamps are limited and cannot fully meet the requirements of users for the brightness of solar lamps, the practicability of existing solar lamps is relatively low. Summary of the Invention
[0004] In view of this, an embodiment of this application provides a solar stepless dimming lamp to solve the technical problem of relatively low practicability of existing solar lamps.
[0005] In a first aspect, an embodiment of this application provides a solar stepless dimming lamp, which includes a solar panel, a light-emitting body controller, a stepless dimming control switch, a battery, and a light-emitting body; the solar panel is connected to the battery, the battery is connected to the light-emitting body, the light-emitting body is connected to the light-emitting body controller, and the light-emitting body controller is connected to the stepless dimming control switch;
[0006] The solar panel is used to provide electrical energy for the battery; the battery is used to store electrical energy and provide electrical energy for the light-emitting body; the stepless dimming control switch is used to obtain control information input by the user and send the control information to the light-emitting body controller; the light-emitting body controller is used to control the light-emitting body according to the control information.
[0007] Optionally, the light-emitting body controller includes a first controller and a second controller; the first controller is connected to the stepless dimming control switch and the second controller, and the second controller is connected to the light-emitting body;
[0008] The first controller is used to receive the control information, generate control parameters according to the control information, and send the control parameters to the second controller;
[0009] The second controller is used to control the light-emitting body according to the control parameters.
[0010] Optionally, the light-emitting body controller further includes a first photoresistor, and the first photoresistor is connected to the first controller;
[0011] The first controller is further configured to generate a switching signal according to the resistance value of the first photosensitive resistor and send the switching signal to the second controller;
[0012] The second controller is further configured to control the light-emitting body according to the switching signal.
[0013] Optionally, the first controller includes a timer for recording the time when the stepless dimming control switch is in the closed state, and the first controller is configured to generate the control parameter according to the time when the stepless dimming control switch is in the closed state.
[0014] Optionally, the first controller further includes a memory connected to the timer, and the memory is configured to receive and store the control parameter generated by the first controller.
[0015] Optionally, the solar stepless dimming lamp further includes a charge and discharge management unit connected between the solar panel and the battery.
[0016] Optionally, the charge and discharge management unit includes a second photosensitive resistor, a first resistor, a second resistor, a third resistor, a charge and discharge controller, a diode, and a capacitor;
[0017] The first end of the first resistor, the anode of the solar panel, and the anode of the diode are commonly connected. The second end of the first resistor is commonly connected to the output end of the second photosensitive resistor and the first end of the second resistor. The second end of the second resistor, the cathode of the solar panel, the normally closed end of the charge and discharge controller, and the voltage input end of the charge and discharge controller are grounded. The cathode of the diode, the first end of the third resistor, and the anode of the battery are commonly connected. The second end of the third resistor, the voltage output end of the charge and discharge controller, and the first end of the capacitor are commonly connected. The grounded end of the charge and discharge controller, the voltage information receiving end of the charge and discharge controller, the second end of the capacitor, and the cathode of the battery are commonly connected.
[0018] Optionally, the stepless dimming control switch is a touch switch.
[0019] Optionally, the light-emitting body is a light-emitting diode.
[0020] Optionally, the anode of the light-emitting body is connected to the anode of the battery, and the cathode of the light-emitting body is connected to the control end of the second controller.
[0021] Implementing the solar stepless dimming lamp provided by the embodiments of the present application has the following beneficial effects:
[0022] The solar stepless dimming lamp provided by the embodiment of the present application includes a solar panel, a light emitter controller, a stepless dimming control switch, a battery, and a light emitter; the solar panel is connected to the battery, the battery is connected to the light emitter, the light emitter is connected to the light emitter controller, and the light emitter controller is connected to the stepless dimming control switch; the solar panel is used to provide electric energy for the battery; the battery is used to store electric energy and provide electric energy for the light emitter; the stepless dimming control switch is used to obtain the control information input by the user and send the control information to the light emitter controller; the light emitter controller is used to control the light emitter according to the control information. The solar stepless dimming lamp provided by the embodiment of the present application is provided with a stepless dimming control switch, and the user can arbitrarily adjust the brightness of the solar stepless dimming lamp through this stepless dimming control switch, so the practicability of the solar lamp is improved. Description of the Drawings
[0023] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following will briefly introduce the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings in the following description are only some embodiments of the present application. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.
[0024] Figure 1 It is a schematic structural diagram of a solar stepless dimming lamp provided by an embodiment of the present application;
[0025] Figure 2 It is a schematic structural diagram of a solar stepless dimming lamp provided by another embodiment of the present application;
[0026] Figure 3 It is a schematic structural diagram of a solar stepless dimming lamp provided by still another embodiment of the present application. Detailed Embodiments
[0027] It should be noted that the terms used in the embodiments of the present application are only used to explain the specific embodiments of the present application, and are not intended to limit the present application. In the description of the embodiments of the present application, unless otherwise specified, "a plurality" means two or more than two, and "at least one", "one or more" means one, two or more than two. The terms "first" and "second" are only used for descriptive purposes, and cannot be understood as indicating or implying relative importance or implicitly indicating the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include one or more of such features.
[0028] References to "one embodiment" or "some embodiments" in this specification mean that a particular feature, structure, or characteristic described in connection with the embodiment is included in one or more embodiments of the present application. Thus, statements such as "in one embodiment", "in some embodiments", "in other some embodiments", "in still other embodiments", etc., which appear in different places in this specification, do not necessarily refer to the same embodiment, but mean "one or more but not all embodiments", unless otherwise specifically emphasized. The terms "comprising", "including", "having" and their variants all mean "including but not limited to", unless otherwise specifically emphasized.
[0029] An embodiment of the present application first provides a solar stepless dimming lamp. Please refer to Figure 1 , Figure 1 which is a schematic structural diagram of a solar stepless dimming lamp provided by an embodiment of the present application. As shown in Figure 1 , the solar stepless dimming lamp 11 may include a solar panel 111, a light-emitting body controller 112, a stepless dimming control switch 113, a battery 114, and a light-emitting body 115.
[0030] Among them, the solar panel 111 is connected to the battery 114, the battery 114 is connected to the light-emitting body 115, the light-emitting body 115 is connected to the light-emitting body controller 112, and the light-emitting body controller 112 is connected to the stepless dimming control switch 113.
[0031] The solar panel 111 can be used to provide electrical energy for the battery 114. Specifically, the solar panel 111 is used to convert solar energy into electrical energy and transmit the electrical energy to the battery 114 for storage.
[0032] The battery 114 can be used to receive the electrical energy transmitted by the solar panel 111, can be used to store electrical energy, and can provide electrical energy for the light-emitting body 115.
[0033] The stepless dimming control switch 113 can be used to obtain control information input by the user and send the control information to the light-emitting body controller 112. Exemplarily, the user can input the control information into the stepless dimming control switch 113 by means such as long pressing, short pressing, or several point presses on the stepless dimming control switch 113.
[0034] In an embodiment of the present application, the stepless dimming control switch 113 can be a touch switch, and the number of stepless dimming control switches 113 can be 1.
[0035] The light-emitting body 115 can be used as a light source to emit light. In an embodiment of the present application, the light-emitting body 115 can be composed of several light-emitting diodes.
[0036] The light emitter controller 112 can be used to receive the control information sent by the stepless dimming control switch 113 and control the light emitter 115 according to the control information. Specifically, the light emitter controller 112 can generate control parameters according to the control information and control the light emitter 115 according to the control parameters.
[0037] Among them, the control information can include the time when the stepless dimming control switch 113 is in the closed state, and the control parameters can include brightness control parameters. Based on this, the light emitter controller 112 can generate brightness control parameters according to the time when the stepless dimming control switch 113 included in the control information is in the closed state, and control the light emitter 115 according to the brightness control parameters.
[0038] The user can control the brightness of the light emitter 115 by controlling the touch time of the stepless dimming control switch 113. Exemplarily, the user can control the brightness of the light emitter 115 to increase from the current brightness value to the maximum value or decrease from the current brightness value to the minimum value by long pressing the stepless dimming control switch 113, and can stop touching when the brightness of the light emitter 115 reaches the expected brightness of the user.
[0039] Among them, the control parameters can include switch control parameters for controlling the light emitter 115 to turn on or off. Based on this, the light emitter controller 112 can generate switch control parameters according to the time when the stepless dimming control switch 113 included in the control information is in the closed state, and control the light emitter 115 according to the switch control parameters.
[0040] The user can control the light emitter 115 to turn on or off by controlling the touch time of the control switch 113. Exemplarily, when the light emitter 115 is on, the user can control the light emitter 115 to turn off by clicking, and when the light emitter 115 is off, the user can control the light emitter 115 to turn on by clicking.
[0041] Since the solar stepless dimming lamp 11 provided in this application includes the stepless dimming control switch 113 and the light emitter controller 112, the brightness transition of the solar stepless dimming lamp 11 is smooth, so the user can arbitrarily set the brightness of the solar stepless dimming lamp according to actual needs.
[0042] As can be seen from the above, the solar stepless dimming lamp provided by the embodiment of the present application includes a solar panel, a light-emitting body controller, a stepless dimming control switch, a battery, and a light-emitting body; the solar panel is connected to the battery, the battery is connected to the light-emitting body, the light-emitting body is connected to the light-emitting body controller, and the light-emitting body controller is connected to the stepless dimming control switch; the solar panel is used to provide electrical energy for the battery; the battery is used to store electrical energy and provide electrical energy for the light-emitting body; the stepless dimming control switch is used to obtain control information input by the user and send the control information to the light-emitting body controller; the light-emitting body controller is used to control the light-emitting body according to the control information. The solar stepless dimming lamp provided by the embodiment of the present application is provided with a stepless dimming control switch, and the user can arbitrarily adjust the brightness of the solar stepless dimming lamp through this stepless dimming control switch, so the practicability of the solar lamp is improved.
[0043] Please refer to Figure 2 , Figure 2 which is a schematic structural diagram of a solar stepless dimming lamp provided by another embodiment of the present application. As Figure 2 shown, in a possible implementation manner, the light-emitting body controller 112 in the solar stepless dimming lamp 11 may include a first controller 1121 and a second controller 1122.
[0044] Among them, the first controller 1121 may be connected to the stepless dimming control switch 113 and the second controller 1122, and the second controller 1122 may be connected to the light-emitting body 115.
[0045] In the embodiment of the present application, the first controller 1121 may be used to receive control information, generate control parameters according to the control information, and send the control parameters to the second controller 1122.
[0046] Specifically, the first controller 1121 may generate a brightness control parameter according to the time when the stepless dimming control switch 113 in the control information is in the closed state, and may generate a switch control parameter according to the time when the stepless dimming control switch 113 in the control information is in the closed state. Then, the first controller 1121 may send the generated brightness control parameter or switch control parameter to the second controller 1122.
[0047] The second controller 1122 may be used to receive the control parameter and control the light-emitting body 115 according to the control parameter.
[0048] In a possible implementation manner, the light-emitting body controller 112 may further include a first photosensitive resistor D1. Among them, the first photosensitive resistor D1 may be connected to the first controller 1121.
[0049] The first controller 1121 can be used to generate a switch control parameter according to the resistance value of the first photosensitive resistor D1, and send the switch control parameter to the second controller 1122.
[0050] Exemplarily, the first controller 1121 can be used to determine whether the light in the external environment is sufficient according to the resistance value of the first photosensitive resistor D1. If it is determined that the light in the external environment is insufficient (such as at night), a switch control parameter can be generated to automatically control the lighting body 115 to turn on.
[0051] In a possible implementation manner, the first controller 1121 can include a timer. The timer can be used to record the time when the stepless dimming control switch 113 is in the closed state, and the first controller 1121 can be used to generate a control parameter according to the time when the stepless dimming control switch 113 is in the closed state.
[0052] In a possible implementation manner, the first controller 1121 can include a memory. The memory is connected to the timer. The memory can be used to receive and store the control parameter generated by the first controller 1121. Based on this, after the control parameter is generated by the first controller 1121, the control parameter can be stored through the memory. Even if the solar energy stepless dimming lamp 11 loses power, the control parameter generated by the first controller 1121 will also be stored in the memory. Therefore, when the solar energy stepless dimming lamp 11 is recharged, the first controller 1121 can re-obtain the original control parameter and control the lighting body 115 through the original control parameter, so that the lighting body 115 emits light at the brightness before the power loss.
[0053] Based on this, after the user sets the brightness of the lighting body 115, the first controller 1121 can store the time when the stepless dimming control switch 113 is in the closed state through the memory. When the lighting body 115 needs to be controlled to turn on next time, the first controller 1121 controls the brightness of the lighting body 115 according to the time when the stepless dimming control switch 113 is in the closed state stored in the memory. Thus, the solar energy stepless dimming lamp 11 has a brightness memory function.
[0054] In a possible implementation manner, the solar energy stepless dimming lamp 11 can further include a charge and discharge management unit 116.
[0055] The charge and discharge management unit 116 can be connected between the solar panel 111 and the battery 114.
[0056] The charge and discharge management unit 116 can be used to manage the charging and discharging process of the battery 114. Specifically, the charge and discharge management unit 116 can be used to perform overcharge protection and over-discharge protection on the charging and discharging process of the battery 114.
[0057] In a possible implementation, the anode of the light emitter 115 is connected to the anode of the battery 114, and the cathode of the light emitter 114 is connected to the control terminal of the second controller 1122.
[0058] Please refer to Figure 3 , Figure 3 FIG. is a schematic structural diagram of a solar non-polar dimming lamp provided by another embodiment of the present application. As Figure 3 shown, in a possible implementation, the charge and discharge management unit 116 may include a second photosensitive resistor D2, a first resistor R1, a second resistor R2, a third resistor R3, a charge and discharge controller 1161, a diode T1, and a first capacitor U1.
[0059] Among them, the first end of the first resistor R1, the anode of the solar panel 111, and the anode of the diode T1 are commonly connected. The second end of the first resistor R1 is commonly connected to the second photosensitive resistor D1 and the first end of the second resistor R2. The second end of the second resistor R2, the cathode of the solar panel 111, the normally closed end of the charge and discharge controller 1161, and the voltage input terminal of the charge and discharge controller 1161 are grounded. The cathode of the diode T1, the first end of the third resistor R3, and the anode of the battery 114 are commonly connected. The second end of the third resistor R3, the voltage output terminal of the charge and discharge controller 1161, and the first end of the first capacitor U1 are commonly connected. The grounded end of the charge and discharge controller 1161, the voltage information receiving terminal of the charge and discharge controller 1162, the second end of the first capacitor U1, and the cathode of the battery 114 are commonly connected.
[0060] In a possible implementation, the cathode of the diode T1, the first end of the third resistor R3, and the anode of the battery 114 are also commonly connected to the anodes of the light-emitting diodes in the light emitter 115.
[0061] In a possible implementation, the charge and discharge management unit 116 may further include a power supply. Among them, the anode of the power supply may be commonly connected to the cathode of the diode T1, the first end of the third resistor R3, and the anode of the battery 114, and the cathode of the power supply may be commonly connected to the grounded end of the charge and discharge controller 1161, the voltage information receiving terminal of the charge and discharge controller 1162, the second end of the first capacitor U1, and the cathode of the battery 114.
[0062] In a possible implementation, the light emitter controller 112 may include a first controller 1121, a second controller 1122, a first photosensitive resistor D1, a fourth resistor R4, a fifth resistor R5, a sixth resistor R6, a second capacitor U2, and a third capacitor U3.
[0063] Among them, the control information input end of the first controller 1121 is connected to the first end of the stepless dimming control switch 113. The first end of the fourth resistor R4, the first end of the second capacitor U2, and the first power supply end of the first controller 1121 are commonly connected. The second end of the second capacitor U2 is connected to the second power supply end of the first controller 1121. The photoresistor input end of the first controller 1121 is connected to the first photoresistor D1. The control parameter output end of the first controller 1121 is commonly connected to the control parameter input end of the second controller 1122 and the first end of the fifth resistor R5. The power supply output end of the first controller 1121 is commonly connected to the first end of the third capacitor U3 and the power supply input end of the second controller 1122. The second end of the third capacitor U3 is grounded. The second end of the fifth resistor R5, the grounding end of the second controller 1122, and the first end of the sixth resistor R6 are commonly connected to the ground wire. The second end of the sixth resistor R6 is commonly connected to the first chip select end and the second chip select end of the second controller 1122. The control end of the second controller 1122 is connected to the cathodes of the light-emitting diodes of the light-emitting body 115. The second end of the fourth resistor R4 is connected to the anode of the power supply.
[0064] In a possible implementation manner, the second end of the stepless dimming control switch 113 is grounded.
[0065] The following combines Figure 3 to describe the working mode of the solar stepless dimming lamp provided by the embodiments of the present application.
[0066] The first controller 1121 can obtain the resistance value of the first photoresistor D1 through the photoresistor input end, generate a switch control parameter based on the resistance value of the first photoresistor D1, and send the switch control parameter to the second controller 1122 through the control parameter output end to enable the second controller 1122 to control the light-emitting body 115 to turn on or off. Exemplarily, when the first controller 1121 determines that the light is insufficient through the resistance value of the first photoresistor D1, it generates a switch control parameter for controlling the light-emitting body 115 to turn on. When the first controller 1121 determines that the light is sufficient through the resistance value of the first photoresistor D1, it generates a switch control parameter for controlling the light-emitting body 115 to turn off.
[0067] The first controller 1121 can also obtain the control information sent by the stepless dimming control switch 113 through the control information input end, then generate a control parameter according to the control information, and send the control parameter to the control parameter input end of the second controller 1122 through the control parameter output end, so that the second controller 1122 receives the control parameter and controls the light-emitting body 115 according to the received control parameter through the control end of the second controller 1122.
[0068] In the above embodiments, the descriptions of the respective embodiments have their own emphases. For the parts not detailed or recorded in a certain embodiment, reference may be made to the relevant descriptions of other embodiments.
[0069] Those of ordinary skill in the art can realize that the units and algorithm steps of each example described in combination with the embodiments disclosed herein can be implemented by electronic hardware or a combination of computer software and electronic hardware. Whether these functions are executed in a hardware or software manner depends on the specific application and design constraints of the technical solution. A professional technician can use different methods for each specific application to implement the described functions, but such implementation should not be considered to exceed the scope of this application.
[0070] The above-described embodiments are only used to illustrate the technical solutions of this application, rather than to limit them; although this application has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that they can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements on some of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of this application, and should all be included in the protection scope of this application.
Claims
1. A solar stepless dimming lamp, characterized in that, The solar stepless dimming lamp includes a solar panel, a light-emitting body controller, a stepless dimming control switch, a battery, and a light-emitting body; the solar panel is connected to the battery, the battery is connected to the light-emitting body, the light-emitting body is connected to the light-emitting body controller, and the light-emitting body controller is connected to the stepless dimming control switch; The solar panel is used to provide electrical energy for the battery; The battery is used to store electrical energy and provide electrical energy for the light-emitting body; The stepless dimming control switch is used to obtain control information input by the user and send the control information to the light-emitting body controller; the light-emitting body controller is used to control the light-emitting body according to the control information.
2. The solar non-polar dimming lamp according to claim 1, wherein The light-emitting body controller includes a first controller and a second controller; the first controller is connected to the stepless dimming control switch and the second controller, and the second controller is connected to the light-emitting body; The first controller is used to receive the control information, generate control parameters according to the control information, and send the control parameters to the second controller; The second controller is used to control the light-emitting body according to the control parameters.
3. The solar non-polar dimming lamp according to claim 2, wherein The light-emitting body controller further includes a first photosensitive resistor, and the first photosensitive resistor is connected to the first controller; The first controller is further used to generate a switch signal according to the resistance value of the first photosensitive resistor and send the switch signal to the second controller; The second controller is further used to control the light-emitting body according to the switch signal.
4. The solar non-polar dimming lamp according to claim 2, characterized in that The first controller includes a timer, the timer is used to record the time when the stepless dimming control switch is in the closed state, and the first controller is used to generate the control parameters according to the time when the stepless dimming control switch is in the closed state.
5. The solar non-polar dimming lamp according to claim 4, wherein The first controller further includes a memory, the memory is connected to the timer, and the memory is used to receive and store the control parameters generated by the first controller.
6. The solar non-polar dimming lamp according to claim 1, wherein, The solar stepless dimming lamp further includes a charge and discharge management unit, and the charge and discharge management unit is connected between the solar panel and the battery.
7. The solar non-polar dimming lamp according to claim 6, characterized in that, The charge and discharge management unit includes a second photosensitive resistor, a first resistor, a second resistor, a third resistor, a charge and discharge controller, a diode, and a capacitor; The first end of the first resistor, the anode of the solar panel, and the anode of the diode are commonly connected. The second end of the first resistor is commonly connected to the output end of the second photosensitive resistor and the first end of the second resistor. The second end of the second resistor, the cathode of the solar panel, the normally closed end of the charge and discharge controller, and the voltage input end of the charge and discharge controller are grounded. The cathode of the diode, the first end of the third resistor, and the anode of the battery are commonly connected. The second end of the third resistor, the voltage output end of the charge and discharge controller, and the first end of the capacitor are commonly connected. The ground end of the charge and discharge controller, the voltage information receiving end of the charge and discharge controller, the second end of the capacitor, and the cathode of the battery are commonly connected.
8. The solar non-polar dimming lamp according to claim 1, characterized in that, The stepless dimming control switch is a touch switch.
9. The solar non-polar dimming lamp according to claim 1, characterized in that, The light-emitting body is a light-emitting diode.
10. The solar non-polar dimming lamp according to claim 2, wherein, The anode of the light-emitting body is connected to the anode of the battery, and the cathode of the light-emitting body is connected to the control terminal of the second controller.