Integrated light source circuit with solar radar control system
By designing an integrated light source circuit for a solar radar control system, the problem of limited application range of solar light sources was solved, enabling power supply from solar energy and rechargeable batteries as well as radar control, improving functional versatility and reducing costs.
Patent Information
- Application Number
- CN202520094982.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-15
- Publication Date
- 2026-01-13
- Estimated Expiration
- 2035-01-15
AI Technical Summary
In existing technologies, the application scope of solar light sources is relatively limited and their functions are restricted, making it difficult to meet market demands.
An integrated light source circuit with a solar radar control system was designed, including a MUC main control chip, a battery power supply circuit, a solar power supply circuit, and a radar control circuit. The MUC main control chip provides power from solar energy and a rechargeable battery, and the radar control circuit enhances the versatility of its functions.
It enables the power supply of the light source by solar energy and rechargeable batteries, and can control the radar by working with the MUC main control chip through the rechargeable battery, thereby improving the functional versatility of the overall structure and reducing the processing cost.
Smart Images

Figure CN223797932U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of solar energy technology, specifically relating to an integrated light source circuit with a solar radar control system. Background Technology
[0002] Solar energy is a common renewable energy source, mostly used to power various electrical appliances, such as light sources. It is often used in conjunction with rechargeable batteries. In current technology, it is generally used with a single light source, which limits its application range and functionality, making it difficult to meet market demands. Summary of the Invention
[0003] The purpose of this invention is to provide an integrated light source circuit with a solar radar control system that has a reasonable structure and multiple functions.
[0004] The technical solution to achieve the purpose of this utility model is an integrated light source circuit with a solar radar control system, which is connected to a solar panel and a rechargeable battery. It includes a MUC main control chip, a battery power circuit and a solar power circuit connected to the MUC main control chip, and the output terminal of the MUC main control chip is connected to the light source.
[0005] It also includes a radar control circuit connected to the MUC main control chip;
[0006] The radar control circuit includes a radar connection terminal, a fifth transistor, a second transistor, an eighth resistor, a ninth resistor, a twenty-seventh resistor, a twenty-fifth resistor, a fourth transistor, a twenty-sixth resistor, a twenty-first resistor, a sixteenth resistor, a sixth capacitor, and a seventh capacitor.
[0007] The collector of the second transistor is connected to the fourth pin of the MUC main control chip, and at the same time, the collector of the second transistor is connected to VCC through the eighth resistor. The base of the second transistor is connected to the radar connection terminal through the ninth resistor, and the emitter is grounded through the twenty-seventh resistor.
[0008] The radar connection terminal is connected to the positive terminal of the rechargeable battery in sequence through the sixth capacitor, the twenty-first resistor and the sixteenth resistor;
[0009] The base of the fifth transistor is connected to the seventh pin of the MUC main control chip through the twenty-fifth resistor, and one end of the twenty-sixth resistor is connected to the collector of the fifth transistor and the other end is connected to the connection point of the sixth capacitor and the twenty-first resistor. The emitter of the fifth transistor is connected to the emitter of the second transistor.
[0010] The base of the fourth transistor is connected to the collector of the fifth transistor, and the collector is connected to the connection point of the sixth capacitor and the twenty-first resistor. The emitter is connected to the radar connection terminal. The seventh capacitor is connected between the emitter of the fifth transistor and the emitter of the third transistor.
[0011] A further preferred embodiment is that the MUC main control chip is model ZD2725.
[0012] A further preferred embodiment is that the second and fifth transistors are NPN transistors, and the fourth transistor is a PNP transistor.
[0013] This utility model has positive effects: its structure is reasonably designed, which can not only enable solar energy and rechargeable batteries to power the light source, but also enable radar control operation through the rechargeable battery in conjunction with the MUC main control chip, thereby improving the functional diversity of the overall structure. In addition, the overall circuit structure design is simple, which helps to reduce processing costs and has strong applicability. Attached Figure Description
[0014] To make the content of this utility model easier to understand, the present utility model will be further described in detail below with reference to specific embodiments and accompanying drawings, wherein:
[0015] Figure 1 This is a schematic diagram of the structure of this utility model.
[0016] Figure labels: 1. MUC main control chip, 2. Battery power circuit, 3. Solar power circuit, 4. Light source, 5. Radar control circuit. Detailed Implementation
[0017] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model. Example
[0018] See Figure 1An integrated light source circuit with a solar radar control system is connected to a solar panel and a rechargeable battery. It includes a MUC main control chip 1, a battery power circuit 2 and a solar power circuit 3 connected to the MUC main control chip, and a light source 4 connected to the output terminal of the MUC main control chip. In this embodiment, the model of the MUC main control chip is ZD2725. Furthermore, it also includes a radar control circuit 5 connected to the MUC main control chip; it can be connected to a radar, increasing the functional versatility of the overall structure. The radar control circuit includes a radar connection terminal P1, a fifth transistor Q5, a second transistor Q3, an eighth resistor R8, a ninth resistor R9, a twenty-seventh resistor R27, a twenty-fifth resistor R25, a fourth transistor Q4, a twenty-sixth resistor R26, a twenty-first resistor R21, a sixteenth resistor R16, a sixth capacitor C6, and a seventh capacitor C7. During connection, the collector of the second transistor is connected to the fourth pin of the MUC main control chip, and simultaneously, the collector of the second transistor is connected to VCC through the eighth resistor. The base of the second transistor is connected to the radar connection terminal through the ninth resistor. The transmitter of the fifth transistor is connected to the radar terminal via a 27th resistor. The radar terminal is connected to the positive terminal of the rechargeable battery via a 6th capacitor, a 21st resistor, and a 16th resistor. The base of the fifth transistor is connected to the 7th pin of the MUC main control chip via a 25th resistor, and one end of the 26th resistor is connected to the collector of the fifth transistor, while the other end is connected to the junction of the 6th capacitor and the 21st resistor. The emitter of the fifth transistor is connected to the emitter of the second transistor. The base of the fourth transistor is connected to the collector of the fifth transistor, and the collector is connected to the junction of the 6th capacitor and the 21st resistor. The emitter of the fourth transistor is connected to the radar terminal. The 7th capacitor is connected between the emitters of the fifth and third transistors. This design not only reduces the number of electronic components and manufacturing costs but also ensures the effectiveness of radar control.
[0019] Furthermore, in this embodiment, the second and fifth transistors are NPN transistors, and the fourth transistor is a PNP transistor.
[0020] This utility model has positive effects: its structure is reasonably designed, which can not only enable solar energy and rechargeable batteries to power the light source, but also enable radar control operation through the rechargeable battery in conjunction with the MUC main control chip, thereby improving the functional diversity of the overall structure. In addition, the overall circuit structure design is simple, which helps to reduce processing costs and has strong applicability.
[0021] The standard parts used in this embodiment can be purchased directly from the market, and the non-standard structural parts described in the instruction manual can also be processed without any doubt based on existing technical common sense. At the same time, the connection methods of each component adopt mature conventional methods in the existing technology, and the machinery, parts and equipment all adopt conventional models in the existing technology, so they will not be described in detail here.
[0022] Obviously, the above embodiments of this utility model are merely examples for clearly illustrating this utility model, and are not intended to limit the implementation of this utility model. Those skilled in the art can make other variations or modifications based on the above description. It is neither necessary nor possible to exhaustively list all embodiments here. However, these obvious variations or modifications derived from the essential spirit of this utility model still fall within the protection scope of this utility model.
Claims
1. An integrated light source circuit with a solar radar control system, connected to a solar panel and a rechargeable battery, characterized in that: It includes a MUC main control chip, a battery power circuit and a solar power circuit connected to the MUC main control chip, and a light source connected to the output terminal of the MUC main control chip; It also includes a radar control circuit connected to the MUC main control chip; The radar control circuit includes a radar connection terminal, a fifth transistor, a second transistor, an eighth resistor, a ninth resistor, a twenty-seventh resistor, a twenty-fifth resistor, a fourth transistor, a twenty-sixth resistor, a twenty-first resistor, a sixteenth resistor, a sixth capacitor, and a seventh capacitor. The collector of the second transistor is connected to the fourth pin of the MUC main control chip, and at the same time, the collector of the second transistor is connected to VCC through the eighth resistor. The base of the second transistor is connected to the radar connection terminal through the ninth resistor, and the emitter is grounded through the twenty-seventh resistor. The radar connection terminal is connected to the positive terminal of the rechargeable battery in sequence through the sixth capacitor, the twenty-first resistor and the sixteenth resistor; The base of the fifth transistor is connected to the seventh pin of the MUC main control chip through the twenty-fifth resistor, and one end of the twenty-sixth resistor is connected to the collector of the fifth transistor and the other end is connected to the connection point of the sixth capacitor and the twenty-first resistor. The emitter of the fifth transistor is connected to the emitter of the second transistor. The base of the fourth transistor is connected to the collector of the fifth transistor, and the collector is connected to the connection point of the sixth capacitor and the twenty-first resistor. The emitter is connected to the radar connection terminal. The seventh capacitor is connected between the emitter of the fifth transistor and the emitter of the third transistor.
2. The integrated light source circuit with a solar radar control system according to claim 1, characterized in that: The MUC main control chip is model ZD2725.
3. The integrated light source circuit with a solar radar control system according to claim 1, characterized in that: The second and fifth transistors are NPN transistors, and the fourth transistor is a PNP transistor.