Umbrella lamp with stable structure
By incorporating an aluminum alloy battery compartment and a temperature sensor to protect the battery within the umbrella light, and by positioning the light fixture below the upper umbrella disc and employing a modular design, the problems of battery damage and structural instability under high temperatures are resolved, achieving both stability and ease of maintenance.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-23
- Publication Date
- 2026-03-13
AI Technical Summary
Existing umbrella lights suffer from battery performance degradation or damage at high temperatures, unstable structure, difficult maintenance, and shortened lifespan.
The battery pack is housed in a separate aluminum alloy battery compartment and protected by a temperature sensor. The lights are located below the upper umbrella plate and feature a waterproof plug-in structure. The overall design is modular, facilitating disassembly and maintenance. The solar structure provides power and supports multiple charging modes.
It avoids battery damage due to high temperatures, improves structural stability, extends service life, facilitates maintenance, and meets the needs of use in different environments.
Smart Images

Figure CN223992159U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of sunshade technology, and in particular to a structurally stable umbrella light. Background Technology
[0002] With the continuous development of society, people have increasingly higher requirements for outdoor leisure life. Illuminated sun umbrellas have diverse uses and applications in domestic and international markets, such as seaside resorts, pool hotels, yacht clubs, private garden terraces, open-air restaurants, bars, and cafes. Nighttime lighting attracts customers (e.g., the Starbucks outdoor umbrella upgrade case). They are especially favored for their integration of lighting and sunshade functions. The structure of umbrella lights has also undergone various changes, with umbrella lights being a mainstream type of outdoor auxiliary lighting. Currently, in related technologies, the umbrella light controller and battery are installed inside the solar panel battery compartment. Under prolonged sunlight, the temperature of the solar panel compartment rises rapidly, reaching over 60 degrees Celsius in some areas during summer, exceeding the battery's limit (0—+45℃). This leads to decreased charging performance, or damage to the battery due to slightly poor performance and high temperatures, resulting in failure to charge. In recent years, cases of battery explosions and fires have been frequently seen abroad. Furthermore, due to its structural design, the light component of the umbrella light is mounted on the umbrella ribs or the umbrella tray. Several wires from the solar panel connect to the umbrella ribs or to the center light (on the lower umbrella tray). In strong winds, the entire umbrella shakes violently, causing friction damage to the internal structure and wires, significantly shortening its lifespan. Moreover, because this umbrella light technology uses an integrated structure, only the solar panel can be replaced; the light component cannot be repaired and requires return to the factory for repair. Therefore, it is evident that this type of umbrella light has significant drawbacks. Utility Model Content
[0003] To overcome the shortcomings of related technologies, this application provides a structurally stable umbrella lamp.
[0004] A structurally stable umbrella light includes an upper umbrella plate, a lower umbrella plate, umbrella ribs, diagonal bracing rods, an umbrella pole, a solar structure, a light ring, a battery pack assembly, a touch panel, and a touch controller;
[0005] The solar energy structure is located on top of the upper umbrella disk;
[0006] The light ring is located below the upper umbrella disc;
[0007] The battery pack assembly is located inside the umbrella pole. The battery pack assembly includes a battery compartment shell, a battery compartment top cover, a battery compartment bottom cover, a battery pack, a battery controller, and multiple connectors. The umbrella pole is fixedly connected to the battery compartment shell.
[0008] The solar structure, light ring, and touch controller are all electrically connected to the battery pack assembly.
[0009] The touch panel and touch controller are mounted on the umbrella pole and are fixedly connected. The touch panel is electrically connected to the touch controller.
[0010] The upper umbrella disc is fixedly connected to the umbrella ribs, and the lower umbrella disc is fixedly connected to the diagonal support rod; the umbrella rod passes through the lower umbrella disc and is fixedly connected to the upper umbrella disc, the umbrella ribs and the diagonal support rod are rotatably connected, and the umbrella ribs and the upper umbrella disc are rotatably connected.
[0011] Furthermore, the solar energy structure includes a solar panel, a solar panel battery box, a PCB connection board, a DC female connector, a DC male connector, and wires. The solar panel is disposed on the top of the solar panel battery box. The PCB connection board includes a first PCB connection board and a second PCB connection board. The first PCB connection board is fixedly connected to the DC female connector, and the second PCB connection board is fixedly connected to the DC male connector. The DC female connector and the DC male connector cooperate with each other. The second PCB connection board is also connected to a solar charging output plug.
[0012] Furthermore, the upper and lower umbrella discs are configured as circular umbrella discs, with multiple first mounting grooves evenly arranged on the side wall of the upper umbrella disc and multiple second mounting grooves evenly arranged on the side wall of the lower umbrella disc.
[0013] Furthermore, a single first mounting slot is used to install a single umbrella rib, and a single second mounting slot is used to install a single diagonal brace. The umbrella rib and the diagonal brace are fixedly connected by an umbrella rib connector.
[0014] Furthermore, the bottom of the upper and lower umbrella discs are provided with multiple circular protrusions. The circular protrusions on the upper umbrella disc are used to fix and connect the light ring, and the circular protrusions on the lower umbrella disc are used to fix and connect the push handle. The push handle is used to push the lower umbrella disc to slide along the umbrella pole.
[0015] Furthermore, the lamp ring includes a lamp plate and a lamp cover. The lamp plate is provided with a lamp plate circular hole and lamp beads. The lamp cover is provided with multiple reinforcing ribs, and the reinforcing ribs are provided with screw posts. The circular protrusion is provided with umbrella plate screw holes. The screw posts are inserted into the umbrella plate screw holes of the circular protrusion, and the circular protrusion and the reinforcing ribs are engaged with the lamp plate.
[0016] Furthermore, the umbrella pole is provided with a lower umbrella plate fixing hole, the lower umbrella plate is provided with a pin suspension rope, the pin suspension rope is connected to the lower umbrella plate fixing pin, and the lower umbrella plate fixing pin can be inserted into the lower umbrella plate fixing hole.
[0017] Furthermore, the structurally stable umbrella light is also equipped with a temperature sensor, which is located inside the battery pack assembly; the battery compartment cover is located at the top of the battery pack assembly, the battery compartment cover is located at the bottom of the battery pack assembly, the battery compartment shell is used to completely enclose the battery pack assembly, the battery compartment shell is fitted inside the umbrella pole, and the battery pack is used to provide power to the light ring.
[0018] Furthermore, the touch panel is equipped with a touch switch, a backlight ring, a light-transmitting window, and a power indicator light.
[0019] Furthermore, the touch panel and the touch controller housing are provided with a Type-C interface.
[0020] This application has at least one of the following effects:
[0021] 1. In this application, the battery pack is placed in an independent aluminum alloy battery compartment. During charging and discharging, the temperature generated by the battery is instantly absorbed by the aluminum alloy battery compartment shell. Since the battery compartment is installed inside the umbrella pole, the heat from the battery compartment shell is transferred to the umbrella pole, resulting in a very low overall temperature. In addition, the natural wind blowing over the umbrella pole also helps to dissipate heat. At the same time, there is a temperature detection sensor inside the battery compartment to provide secondary protection against damage to the battery. This application avoids the defects of battery performance degradation and easy damage or even explosion at high temperatures in related technologies.
[0022] 2. This lamp is integrally fixed with high-strength PC+ABS alloy, resulting in extremely high stability. Even at ultra-high brightness levels of 6-10W, heat is quickly dissipated through the umbrella plate and PC lamp cover. Furthermore, the LED lighting beads undergo overall silicone waterproofing treatment. The structure is robust, reliable, safe, and stable.
[0023] 3. The complete electronic control system of this application consists of four parts: a touch controller, a battery compartment, an LED light ring, and a solar panel. All connections use a waterproof plug-in structure for easy replacement, and are moisture-proof, oxidation-proof, and waterproof, making them suitable for use in various complex environments and easier to disassemble and repair. This avoids the drawback of umbrella lights in related technologies that require factory repair.
[0024] 4. In this embodiment, the lamp is configured as a lamp ring and positioned below the upper umbrella disc, providing efficient and practical lighting. The internal plug-in structure is simple, compact, and robust. This avoids the problems of poor wind resistance, easily damaged internal structures, and significantly shortened lifespan associated with umbrella lamps in related technologies during strong winds.
[0025] 5. This application incorporates a solar energy structure. When sunlight shines on the solar panels, the photovoltaic effect occurs, converting light energy into electrical energy. The generated electricity is then transmitted to the battery pack via electrical connections. When electricity is needed (at night, on rainy days, or during power outages), the electrical energy stored in the battery pack needs to be released to power the load.
[0026] 6. In this embodiment, not only is a solar energy structure provided for receiving electrical energy, but a Type-C interface is also provided to support DC charging, enabling multiple modes of energy storage and meeting the lighting needs of the umbrella lamp.
[0027] 7. In this embodiment, the touch panel is used to turn the device on, turn the light on, turn the light off, and turn the device off. It provides different modes of light intensity for user convenience. Attached Figure Description
[0028] Figure 1 This is a schematic diagram of the overall structure of the umbrella lamp described in the embodiments of this application.
[0029] Figure 2 This is a schematic diagram of the structure of the lower umbrella plate fixing pin described in the embodiment of this application.
[0030] Figure 3 This is a schematic diagram of the internal electrical connection structure of the umbrella lamp described in the embodiments of this application.
[0031] Figure 4 This is a schematic diagram of the solar energy structure described in the embodiments of this application.
[0032] Figure 5 This is a schematic diagram of the umbrella rib structure described in the embodiments of this application.
[0033] Figure 6 This is a schematic diagram of the lamp panel structure described in the embodiments of this application.
[0034] Figure 7 This is a schematic diagram of the lampshade structure described in the embodiment of this application.
[0035] Figure 8 This is a schematic diagram of the battery pack assembly and push handle structure described in the embodiments of this application.
[0036] Figure 9 This is a schematic diagram of the touch panel structure described in the embodiments of this application.
[0037] Figure 10 This is a schematic diagram of the touch controller structure described in the embodiments of this application.
[0038] Figure 11 This is a schematic diagram of the groove structure of the touch controller housing described in the embodiment of this application.
[0039] Figure 12 This is a schematic diagram of the fixed slider structure of the touch controller housing according to an embodiment of this application.
[0040] Figure 13 This is a schematic diagram of the dustproof and waterproof plug structure described in the embodiments of this application.
[0041] Figure 14 This is a schematic diagram of the Type-C interface structure described in the embodiments of this application.
[0042] Reference numerals: 1. Upper umbrella tray; 2. Lower umbrella tray; 3. Umbrella rib; 4. Umbrella pole; 6. Solar structure; 7. Lamp ring; 8. Battery pack assembly; 9. Touch panel; 10. Touch controller; 11. Solar panel; 12. Solar panel battery box; 13. Rotary threaded locking buckle; 14. DC female connector; 15. First PCB connection board; 16. DC plug male connector; 17. Second PCB connection board; 18. Solar charging output plug; 21. First mounting slot; 22. Second mounting slot; 23. Umbrella tray fixing screw; 24. Diagonal brace; 25. First mounting hole; 26. Umbrella rib connector; 27. Circular protrusion; 28. Lamp panel circular hole; 29. Lamp panel; 30. Lampshade; 31. Screw post; 32. Reinforcing rib; 33. Second mounting hole; 35. 36. LED bead; 37. Umbrella disc screw hole; 38. Push handle; 39. Second screw; 40. Push handle screw hole; 41. Battery compartment top cover; 42. Battery pack; 43. Battery compartment bottom cover; 44. Battery compartment outer shell; 49. Power indicator light; 50. Backlight ring; 51. Touch switch; 52. Touch controller outer shell; 53. Touch controller outer shell fixing slider; 54. Light transmission window; 55. Control switch connector plug; 56. Lamp board connector plug; 57. Touch controller outer shell fixing screw; 58. Slider fixing screw; 59. Type-C interface; 60. Battery controller; 61. Temperature sensor; 62. Touch controller outer shell groove; 63. Dustproof and waterproof plug; 71. Lower umbrella disc fixing pin; 72. Lower umbrella disc fixing hole; 73. Pin suspension rope. Detailed Implementation
[0043] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of this application, and not all of the embodiments. Based on the embodiments of this application, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of this application.
[0044] It should be noted that if the embodiments of this application involve directional indicators (such as up, down, left, right, front, back, etc.), the directional indicators are only used to explain the relative positional relationship and movement of the components in a certain specific posture (as shown in the figure). If the specific posture changes, the directional indicators will also change accordingly.
[0045] Furthermore, if the embodiments of this application involve descriptions such as "first" or "second," these descriptions are for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, features defined with "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, the technical solutions of various embodiments can be combined with each other, but this must be based on the ability of those skilled in the art to implement them. If the combination of technical solutions is contradictory or impossible to implement, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection claimed in this application.
[0046] Example 1:
[0047] The following is in conjunction with the appendix Figure 1-14 This application will be described in further detail.
[0048] Reference Figure 1 , Figure 2 and Figure 3 A structurally stable umbrella light includes an umbrella canopy, an upper umbrella plate 1, a lower umbrella plate 2, umbrella ribs 3, a diagonal support rod 24, an aluminum alloy umbrella pole 4, a solar structure 6, a light ring 7, a battery pack assembly 8, a touch panel 9, and a touch controller 10.
[0049] The solar energy structure 6 is disposed on the top of the upper umbrella disk 1;
[0050] The light ring 7 is positioned below the upper umbrella disc 1;
[0051] Reference Figure 3 The battery pack assembly 8 is disposed inside the umbrella pole 4. The battery pack assembly 8 includes an aluminum alloy battery compartment shell 44, an aluminum alloy battery compartment upper cover 41, an aluminum alloy battery compartment lower cover 43, a battery pack 42, a battery controller 60, and multiple connecting plugs. The umbrella pole 4 is fixedly connected to the battery compartment shell 44.
[0052] The solar structure 6, the light ring 7, and the touch controller 10 are all electrically connected to the battery pack assembly 8.
[0053] The touch panel 9 and the touch controller 10 are disposed on the umbrella pole 4, and the touch panel 9 and the touch controller 10 are fixedly connected. The touch panel 9 and the touch controller 10 are electrically connected.
[0054] The upper umbrella disc 1 is fixedly connected to the umbrella rib 3, and the lower umbrella disc 2 is fixedly connected to the diagonal support rod 24; the umbrella rod 4 passes through the lower umbrella disc 2 and is fixedly connected to the upper umbrella disc 1, the umbrella rib 3 and the diagonal support rod 24 are rotatably connected, and the umbrella rib 3 and the upper umbrella disc 1 are rotatably connected.
[0055] Reference Figure 3 and Figure 4The solar energy structure 6 includes a solar panel 11, a solar panel battery box 12, a first PCB connecting board 15, a second PCB connecting board 17, a DC female connector 14, a DC male connector 16, and wires. The solar panel 11 is disposed on the top of the solar panel battery box 12. The first PCB connecting board 15 and the second PCB connecting board 17 are each provided with wires to connect to the solar panel 11. The first PCB connecting board 15 is disposed inside the solar panel battery box 12 and is fixedly connected to the DC female connector 14. The bottom of the solar panel battery box 12 is also provided with a rotary thread locking buckle 13, which locks the DC female connector 14. The DC female connector 14 is the output interface of the solar panel. The second PCB connecting board 17 is provided with a DC male connector 16, which cooperates with the DC female connector 14. The second PCB connecting board 17 is fixedly disposed inside the upper umbrella plate 1. In this application, a solar energy structure 6 is provided. When sunlight shines on the solar panel 11, the photovoltaic effect occurs, converting light energy into electrical energy. The generated electricity is transmitted to the battery pack 42 through electrical connections. When electricity is needed (at night, on rainy days, or when the power grid is down), the electrical energy stored in battery pack 42 needs to be released to power the load.
[0056] The second PCB connector 17 is also connected to a solar charging output plug 18; the solar charging output plug 18 is used to connect to the quick-connect waterproof connector of the battery pack assembly 8.
[0057] Reference Figure 5 , Figure 6 , Figure 7 and Figure 8 The upper umbrella tray 1 is mainly shaped like a disc. In this embodiment, eight first mounting slots 21 are evenly arranged on the side wall of the upper umbrella tray 1. The lower umbrella tray 2 has the same shape as the upper umbrella tray 1, and eight second mounting slots 22 are evenly arranged on the side wall of the lower umbrella tray 2. Each first mounting slot 21 is used to install a single umbrella rib 3, and each second mounting slot 22 is used to install a single diagonal support rod 24. The main discs of the lower umbrella tray 2 and the upper umbrella tray 1 are provided with first mounting holes 25 for the passage of the umbrella rod 4. The umbrella rib 3 and the diagonal support rod 24 are fixedly connected by an umbrella rib connector 26, and the end of the diagonal support rod 24 away from the lower umbrella tray 2 is fixed to the side wall of the umbrella rib 3. (Refer to...) Figure 3 The upper umbrella plate 1 is also fixedly provided with an umbrella plate fixing screw 23 that passes through the side wall of the umbrella pole 4, which is used to fix the upper umbrella plate 1 and the umbrella pole 4.
[0058] The canopy is set above the umbrella rib 3. This is a common setting method in the existing technology, and will not be elaborated on here.
[0059] The bottom of the upper umbrella plate 1 is provided with multiple circular protrusions 27. In this embodiment, there are four circular protrusions 27, which are used to engage with the lamp plate circular holes 28 on the lamp plate 29 of the lamp ring 7. The lamp ring 7 includes a lamp plate 29 and a lamp cover 30. Multiple LED lighting beads 35 are provided on the downward-facing side of the lamp plate 29, and a lamp plate connecting plug 56 is provided on the other side of the lamp plate 29 for electrically connecting to the battery pack 8. The lamp cover 30 is provided with four reinforcing ribs 32 inside, and each reinforcing rib 32 is provided with a single screw post 31. The circular protrusions 27 are provided with umbrella plate screw holes 36. The circular protrusions 27 pass through the lamp plate circular holes 28, and the screw posts 31 are inserted into the umbrella plate screw holes 36 of the circular protrusions 27. The circular protrusions 27 and the reinforcing ribs 32 engage with the lamp plate 29. The threaded engagement locks the upper umbrella plate 1, the lamp plate 29, and the lamp cover 30 together. The battery compartment cover 41 is provided at the bottom of the lamp cover 30.
[0060] In this embodiment, the lamp is a lamp ring 7, located below the upper umbrella plate 1, providing efficient and practical lighting with a simple, compact, and robust structure. If the lamp strip is embedded within the umbrella rib 3, the entire umbrella rib 3 structure needs to be disassembled and replaced in case of malfunction, making disassembly and repair difficult. However, in this embodiment, the lamp is a lamp ring 7, located below the upper umbrella plate 1, making disassembly and repair of the lamp ring 7 much easier compared to existing umbrella lights.
[0061] Reference Figure 8 The lower umbrella tray 2 has a push handle 37 at its bottom. A second mounting hole 33 is located at the center of the push handle 37 for the umbrella rod 4 to pass through. Multiple second screws 38 are located at the top of the push handle 37; in this embodiment, four second screws 38 are provided. Each second screw 38 has a push handle screw hole 39 at its top, for insertion into four circular protrusions 27 at the bottom of the lower umbrella tray 2. The circular protrusions 27 can be inserted into the push handle screw holes 39, thus fixing the lower umbrella tray 2 and the push handle 37 together. The push handle 37 is a single piece of plastic.
[0062] Reference Figure 3 and Figure 5 The umbrella pole 4 is provided with a lower umbrella plate fixing hole 72, and the lower umbrella plate 2 is provided with a pin suspension rope 73. The pin suspension rope 73 is connected to the lower umbrella plate fixing pin 71, and the lower umbrella plate fixing pin 71 can be inserted into the lower umbrella plate fixing hole 72. When the push handle 37 is pushed to open the umbrella canopy, the lower umbrella plate fixing pin 71 is inserted into the lower umbrella plate fixing hole 72 to fix the lower umbrella plate 2.
[0063] Reference Figure 3The battery pack assembly 8 also includes a temperature sensor 61, which is located inside the battery pack assembly 8 and specifically on the side wall of the battery pack 42. The sensor is connected to the battery controller 60 via two wires. The battery compartment cover 41 is located at the top of the battery pack assembly 8, and the battery compartment cover 43 is located at the bottom. The battery compartment shell 44 completely encloses the battery pack assembly 8 and fits inside the umbrella pole 4. The battery pack 42 provides power to the light ring 7. The battery controller 60 is located below the battery pack 42. The battery pack assembly 8 has three quick-connect waterproof connectors extending from the battery controller 60, which respectively connect to the solar charging output connector 18, the light panel connector 56, and the control switch connector 55. The modular design of the battery pack assembly 8 facilitates disassembly and maintenance. The entire umbrella light's modular design facilitates component replacement. The battery controller 60 integrates an LED constant current drive circuit, a solar charging circuit, a lithium battery overcharge and over-discharge protection circuit, and a temperature sensor and detection circuit.
[0064] Working principle of battery pack assembly 8: The battery is connected to the battery controller 60. The battery controller 60 board integrates lithium battery overcharge and over-discharge protection circuit and temperature control circuit. The temperature control circuit protects the battery from excessively high or low temperatures.
[0065] First charging: The solar panel at the top of the parasol converts light energy into electrical energy. This energy is transmitted through the connecting wires and circuit board inside the solar cell box 12, via the DC female connector 14, to the DC plug male connector 16 in the upper umbrella tray, and then to the connecting circuit board. The electrical energy is then transmitted to the battery controller 60 through the waterproof plug. The battery is charged by the dedicated solar charging chip. At the same time, the solar charging status indicator light on the light board 29 is driven by the wire connecting to the light board. A red light indicates that charging is in progress, and a green light indicates that charging is complete.
[0066] Second charging: External power is input through the Type-C interface 59 of the touch controller 10. The fast charging circuit integrated in the touch controller 10 and the control switch connector 55 deliver power to the battery controller 60 to charge the battery. At this time, there are 4 charging indicator lights below the touch panel 9 that display the current battery level in real time. They flash while charging and stay on when fully charged.
[0067] Reference Figure 13 and Figure 14 In this embodiment, in addition to the solar energy structure 6 for receiving electrical energy, a dustproof and waterproof plug 63 is also provided at the bottom of the touch controller housing 52. Opening the dustproof and waterproof plug 63 reveals a Type-C interface that supports DC charging, enabling multiple energy storage modes including solar energy storage and charging to meet the lighting needs of the umbrella light. It supports Type-C charging input / discharging output and includes a communication protocol.
[0068] Reference Figure 9 , Figure 10 , Figure 11 and Figure 12 The umbrella pole 4 is equipped with a touch panel 9 and a touch controller 10. The touch panel 9 includes a touch switch 51, a backlight ring 50, a light-transmitting window 54, and a power indicator light 49. The touch switch 51 is used to turn the umbrella on, turn the light on, turn the light off, and turn the umbrella off. The backlight ring 50 automatically opens at night, and the power indicator light 49 displays the battery level. The light-transmitting window 54 is used to sense light intensity and collect ambient light; a sensor is located behind the light-transmitting window 54. The touch panel 9 and the touch controller 10 are sequentially mounted on the touch controller housing 52. The touch controller housing 52 has a touch controller housing groove 62 inside, which is used for silicone coating to adhere the panel of the touch controller 10 and for waterproofing. The touch controller housing 52 is fixedly connected to the umbrella pole 4 via a touch controller housing fixing slider 53. The touch controller housing has sliding grooves on both sides of the slider 53, and the touch controller housing 52 has corresponding concave and convex structures on the back of the sliding grooves. The slider mounting groove is located on the back of the touch controller housing 52, and the slider 53 is positioned within the mounting groove. The sliding grooves engage with the concave and convex structures, and the slider 53 is then secured by the touch controller housing fixing screws 57. The slider 53 is further secured by two slider fixing screws 58 and the umbrella rod 4. In this embodiment, the touch panel 9 is configured with functions for powering on, turning on the light, turning off the light, and powering off. It provides different brightness levels for user convenience. The touch panel 9 is made of acrylic.
[0069] Power on: Press and hold touch switch 51 for 5 seconds (if it exceeds 7 seconds, it is considered an accidental touch and will automatically turn off and enter sleep mode) to enter standby mode. At the same time, backlight ring 50 will light up for 120 seconds (afterward): 1. If it is daytime (photosensitive feedback), then turn off backlight ring 50; 2. If it is nighttime, backlight ring 50 will light up once every 30 seconds in a breathing pattern at 30% brightness (to save power and make it easier for users to find the touch position). If a touch operation is detected, backlight ring 50 will continue to light up at 100% brightness for easy user operation. If no touch operation is detected for more than 120 seconds, backlight ring 50 will continue to enter standby mode with a breathing pattern (backlight ring 50 will light up once every 30 seconds in a breathing pattern at 30% brightness).
[0070] Turn on the light: In standby mode: 1. Short touch of the 51-touch switch for the first time to turn on 20% brightness; 2. Short touch of the 51-touch switch for the second time to turn on 50% brightness (gradually changing from 20% to 50%); 3. Short touch of the 51-touch switch for the third time to turn on 80% brightness (gradually changing from 50% to 80%); 4. Short touch of the 51-touch switch for the fourth time to turn on 100% brightness (gradually changing from 80% to 100%); 5. Short touch of the 51-touch switch for the fifth time to turn off the light (gradually changing from 100% to 0% for 2 seconds). This cycle repeats.
[0071] Turn off the lights: Press and hold the touch switch 51 for 1.5 seconds at any setting to turn off the lights. The lights turn on and off with a gradual transition, slowly brightening and slowly turning off, giving people a comfortable feeling.
[0072] Power off: In standby mode or with the lights on, press and hold the touch switch 51 for 5 seconds to power off and enter sleep mode (the factory defaults to sleep mode for easy transport).
[0073] Battery level display: When the device is powered on and enters standby mode, the battery level display will be activated simultaneously (simulating a button). The battery level display will be activated once for each touch operation.
[0074] Low battery warning: When the battery voltage is below 3.2V, if the brightness is working at 80%-100%, the brightness will be automatically reduced to 50%. When the battery voltage is below 3.0V, the brightness of the light will be reduced to 20%, and the backlight ring will flash three times every 5 seconds when touched. When the voltage is below 2.8V, the light will turn off and enter sleep mode to wait for charging.
[0075] Solar charging: The red indicator light illuminates when solar charging is in progress, and the green light illuminates when fully charged (located inside the light panel 29).
[0076] The working principle of the touch controller 10 is as follows: It integrates four indicator lights for power display, a Type-C charging and discharging interface, a charging circuit, a touch control circuit, an ambient light sensor, and an MCU microprocessor. The MCU microprocessor completes charging and discharging management, ambient light intensity signal processing, touch command processing, and output commands, which are transmitted to the battery controller 60 through the control switch connector 55 and the wire. This controls the brightness adjustment and on / off of the lights. The MCU collects the ambient light sensor signal and determines whether it is day or night according to the internal software, and turns on or off the backlight ring 50 of the 51 touch switch. The backlight ring 50 lights up in a breathing pattern every 30 seconds at night, making it easy for users to find the location of the light switch.
[0077] In summary, this application provides an umbrella light suitable for personal use, with a stable wind-resistant structure and easy disassembly and maintenance. It achieves multiple energy storage modes, including solar energy storage and recharging, to meet the lighting needs of the umbrella light.
[0078] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.
Claims
1. A structurally stable umbrella light, characterized by, The umbrella includes an upper umbrella disc (1), a lower umbrella disc (2), a rib (3), an inclined support rod (24), a pole (4), a solar structure (6), a lamp ring (7), a battery pack assembly (8), a touch panel (9), and a touch controller (10); The solar structure (6) is arranged on the top of the upper umbrella disc (1); The lamp ring (7) is arranged below the upper umbrella disc (1); The battery pack assembly (8) is arranged inside the pole (4), and the battery pack assembly (8) includes a battery compartment shell (44), a battery compartment upper cover (41), a battery compartment lower cover (43), a battery pack (42), a battery controller (60), and a plurality of connection plugs, the pole (4) is fixedly connected with the battery compartment shell (44); The solar structure (6), the lamp ring (7), and the touch controller (10) are electrically connected with the battery pack assembly (8); The touch panel (9) and the touch controller (10) are arranged on the pole (4), and the touch panel (9) and the touch controller (10) are fixedly connected, the touch panel (9) is electrically connected with the touch controller (10); The upper umbrella disc (1) is fixedly connected with the rib (3), the lower umbrella disc (2) is fixedly connected with the inclined support rod (24), the pole (4) passes through the lower umbrella disc (2) and is fixedly connected with the upper umbrella disc (1), the rib (3) and the inclined support rod (24) are rotationally connected, and the rib (3) is rotationally connected with the upper umbrella disc (1).
2. The structurally stable umbrella light of claim 1, wherein, The solar structure (6) includes a solar panel (11), a solar panel battery box (12), a PCB connecting plate, a DC female socket (14), a DC plug male head (16), and a wire, the solar panel (11) is arranged on the top of the solar panel battery box (12), the PCB connecting plate includes a first PCB connecting plate (15) and a second PCB connecting plate (17), the first PCB connecting plate (15) is fixedly connected with the DC female socket (14), the second PCB connecting plate (17) is fixedly connected with the DC plug male head (16), the DC female socket (14) and the DC plug male head (16) are matched, and the second PCB connecting plate (17) is further connected with a solar charging output plug (18).
3. The structurally stable umbrella light of claim 2, wherein, The upper umbrella disc (1) and the lower umbrella disc (2) are disc-shaped, the side wall of the upper umbrella disc (1) is uniformly provided with a plurality of first installation grooves (21), and the side wall of the lower umbrella disc (2) is uniformly provided with a plurality of second installation grooves (22).
4. The structurally stable umbrella light of claim 3, wherein, A single first installation groove (21) is used for installing a single rib (3), a single second installation groove (22) is used for installing a single inclined support rod (24), and the rib (3) and the inclined support rod (24) are fixedly connected by a rib connecting piece (26).
5. The structurally stable umbrella light of claim 4, wherein, The bottom of the upper umbrella disc (1) and the bottom of the lower umbrella disc (2) are respectively provided with a plurality of circular protrusions (27), the upper umbrella disc (1) is provided with the circular protrusions (27) and is used for fixedly connecting the lamp ring (7), the lower umbrella disc (2) is provided with the circular protrusions (27) and is used for fixedly connecting a handle (37), and the handle (37) is used for pushing the lower umbrella disc (2) to slide along the pole (4).
6. The structurally stable umbrella light of claim 5, wherein, The lamp ring (7) comprises a lamp plate (29) and a lamp cover (30), the lamp plate (29) is provided with a lamp plate round hole (28) and a lamp bead (35), the lamp cover (30) is internally provided with a plurality of reinforcing ribs (32), the reinforcing ribs (32) are provided with screw columns (31), the circular protrusions (27) are provided with umbrella disc screw holes (36), the screw columns (31) are inserted into the umbrella disc screw holes (36) of the circular protrusions (27), and the circular protrusions (27) and the reinforcing ribs (32) are clamped with the lamp plate (29).
7. The structurally stable umbrella light of claim 6, wherein, The umbrella rod (4) is provided with a lower umbrella disc fixing insertion hole (72), the lower umbrella disc (2) is provided with a bolt hanging rope (73), the bolt hanging rope (73) is connected with a lower umbrella disc fixing bolt (71), and the lower umbrella disc fixing bolt (71) can be matched and inserted into the lower umbrella disc fixing insertion hole (72).
8. The structurally stable umbrella light of claim 7, wherein, The structure-stable umbrella lamp is further provided with a temperature sensor (61), the temperature sensor (61) is arranged in the battery pack assembly (8), a battery compartment upper cover (41) is arranged at the top of the battery pack assembly (8), a battery compartment lower cover (43) is arranged at the bottom of the battery pack assembly (8), a battery compartment shell (44) is used for wrapping the battery pack assembly (8), the battery compartment shell (44) is sleeved in the umbrella rod (4), and a battery pack (42) is used for providing electric energy for the lamp ring (7).
9. The structurally stable umbrella light of claim 8, wherein, The touch panel (9) is provided with a touch switch (51), a backlight ring (50), a light transmission window (54) and an electric quantity indicating lamp (49).
10. The structurally stable umbrella light of claim 9, wherein, The touch panel (9) and a touch controller (10) are arranged in a touch controller shell (52), and the touch controller shell (52) is provided with a Type-C interface (59).