Pressure-resistant outdoor lamp structure
12385625 ยท 2025-08-12
Assignee
Inventors
Cpc classification
F21V17/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V23/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S8/032
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V23/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S9/037
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V31/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V21/0824
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21Y2113/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F21V15/01
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S8/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S9/03
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V17/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V21/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V23/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V23/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A pressure-resistant outdoor lamp structure includes a solar lighting module installed between a base and a lamp cover, and a first pressure-resistant module with a plastic ring clamped and fixed between the base and the lamp cover, and a multiple of first plastic blocks extending outward from the plastic ring and the first plastic blocks are spaced from each other and arranged on an outer periphery wall of the base, such that a flexible plastic material can be set around the periphery of the outdoor lamp to enhance the ability of the outdoor lamp to resist and buffer external impact and compression.
Claims
1. A pressure-resistant outdoor lamp structure, comprising: a base, comprising an outer periphery wall, a fixed platform arranged on the base, a compartment arranged at the center of the fixed platform, and a ring-shaped groove arranged between the perimeter of the fixed platform and the outer periphery wall of the base; a lamp cover, assembled to the top of the base, and comprising a translucent board covering the fixed platform of the base, a ring-shaped border extending downward from the perimeter of the translucent board, and a ring-shaped bottom edge formed at the bottom of the ring-shaped border and fixed to the ring-shaped groove; and a solar lighting module, comprising a circuit board, a solar panel, a plurality of LEDs and a battery electrically coupled to each other, the circuit board being stacked on the fixed platform, the battery being installed in the compartment, the solar panel and the plurality of LEDs being disposed on the circuit board and installed to the bottom of the translucent board; and a first pressure-resistant module, comprising a plastic ring, and a plurality of first plastic block extending outward from the plastic ring, the plastic ring being mounted around the ring-shaped groove of the base, and pressed and fixed by the ring-shaped bottom edge of the lamp cover, the plurality of first plastic blocks being arranged with a space from each other and around the outer periphery wall of the base, and extending downward along the outer periphery wall of the base to the bottom of the base to form a cushioning part that can be abutted in an external environment.
2. The pressure-resistant outdoor lamp structure according to claim 1, wherein the outer periphery wall of the base is provided with a groove configured to be corresponsive to each first plastic block, the inner side of each first plastic block is provided with a protruding part configured to be in contact with the outer periphery wall of the base and embeddable into the corresponding groove, the protruding part is provided with a buckle slot, and a buckle part installed in the corresponding groove and connectable to the buckle slot.
3. The pressure-resistant outdoor lamp structure according to claim 1, further comprising a second pressure-resistant module, the second pressure-resistant module comprising a top frame, and a plurality of second plastic blocks extending outward from the top frame, the top frame being mounted to the top of the translucent board of the lamp cover, and the plurality of second plastic blocks being spaced from each other, arranged around the ring-shaped border of the lamp cover, and extending downward from the periphery of the ring-shaped border at a position near the translucent board to a position near the ring-shaped groove, and the bottom of each second plastic block being engaged with the top of the corresponding first plastic block.
4. The pressure-resistant outdoor lamp structure according to claim 3, wherein the center of the top frame of the second pressure-resistant module is provided with a window configured to be corresponsive to the solar panel, and the spacing between every two adjacent second plastic blocks is provided for the plurality of LEDs to transmit light.
5. The pressure-resistant outdoor lamp structure according to claim 3, wherein the center of the circuit board is provided with an opening corresponding to the compartment, the battery is installed in a battery box, the battery box is fixed in the opening and the compartment, the height of the battery box is higher than the fixed platform, the solar panel is stacked on the top of the battery box, and the plurality of LEDs is arranged on the circuit board and spaced from each other around the periphery of the solar panel.
6. The pressure-resistant outdoor lamp structure according to claim 5, wherein the bottom of the base is provided with a switch fixing port, the switch fixing port is communicated to the fixed platform, the circuit board is electrically coupled to a switch, the switch is fixed in the switch fixing port, and the plastic ring is provided with a first waterstop sleeve extending towards the center of the fixed platform to be spaced between the switch fixing port and the switch.
7. The pressure-resistant outdoor lamp structure according to claim 5, wherein the bottom of the base is provided with a plug-in port fixing port, the plug-in port fixing port is communicated to the fixed platform, the circuit board is electrically coupled to a plug-in port, the plug-in port is fixed in the plug-in port fixing port, the plastic ring of the first pressure-resistant module extends towards the center of the fixed platform to form a second waterstop sleeve spaced between the plug-in port fixing port and the plug-in port.
8. The pressure-resistant outdoor lamp structure according to claim 5, wherein the bottom of the base is provided with a plurality of screw holes, the screw holes are communicated to the fixed platform, the plastic ring of first pressure-resistant module extends towards the center of the fixed platform to form a plurality of third waterstop sleeves sheathing on the screw holes respectively.
9. The pressure-resistant outdoor lamp structure according to claim 5, wherein the plastic ring of the first pressure-resistant module extends towards the inside of the compartment at the center of the fixed platform to form a plurality of support blocks capable of supporting the battery box.
10. The pressure-resistant outdoor lamp structure according to claim 5, wherein each first plastic block of the first pressure-resistant module is provided with a first through hole, each second plastic block of the second pressure-resistant module is provided with a second through hole, and the first through hole is communicated to the corresponding second through hole.
11. The pressure-resistant outdoor lamp structure according to claim 5, wherein the bottom of the base is provided with a combining part, and the base is detachably assembled with a plug by the combining part.
12. The pressure-resistant outdoor lamp structure according to claim 5, further comprising a waterproof charging wire, a plurality of connectors spaced from each other and arranged on the waterproof charging wire, and the plug-in port of the base and the connector of the waterproof charging wire are engaged with each other.
13. The pressure-resistant outdoor lamp structure according to claim 5, wherein the perimeter of the fixed platform is provided with a ring-shaped rib, and the ring-shaped groove is formed between the ring-shaped rib, the fixed platform and the outer periphery wall of the base.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DESCRIPTION OF THE PREFERRED EMBODIMENTS
(12) With reference to
(13) A ring-shaped groove 14 is formed between the periphery of the fixed platform 12 and the outer periphery wall 11 of the base 1. Specifically, periphery of the fixed platform 12 is provided with a ring-shaped rib 15, such that the ring-shaped groove 14 is formed between the ring-shaped rib 15, the fixed platform 12 and the outer periphery wall 11 of the base 1.
(14) In the figures, the lamp cover 2 is in the shape of a cylinder, assembled to the top of the base 1 and the outer periphery wall 11 of the base 1, the lamp cover 2 includes a translucent board 21 covering the top of the fixed platform 12 of the base 1, a ring-shaped border 22 extending downward from the perimeter of the translucent board 21, and the ring-shaped border 22 has a ring-shaped bottom edge 222 that can be abutted against and fixed to the ring-shaped groove 14.
(15) In
(16) Specifically, the center of the circuit board 31 is provided with an opening 311 corresponding to the compartment 13, the battery 34 is installed in a battery box 35, the battery box 35 is fixed into the opening 311 and the compartment 13, the height of the battery box 35 is higher than the fixed platform 12, the solar panel 32 is stacked on the top of the battery box 35, the LEDs 33 are installed at the top side of the circuit board 31, and the LEDs 33 are soldered directly onto the circuit at the top side of the circuit board 31 and spaced with each other and around the periphery of the solar panel 32. The circuit board 31, the solar panel 32 and the battery box 35 (battery 34) are electrically coupled to each other by electric wires.
(17) With reference to
(18) The plurality of first plastic blocks 42 is spaced from each other and arranged around the outer periphery wall 11 of the base 1 and they extend downward along the outer periphery wall 11 of the base 1 to the bottom of the base 1 to form a cushioning part 420 that can be abutted in an external environment. In
(19) In
(20) The center of the top frame 51 corresponding to the solar panel 32 is provided with a window 53. In addition, the gap between every two adjacent second plastic blocks 52 is provided for the plurality of LEDs 33 to transmit light. In use, sunlight may pass through the lamp cover 2, the translucent board 21 and the window 53 to illuminate the solar panel 32, driving the solar panel 32 to charge the battery 34. In addition, the battery 34 supplies power to the circuit board 31 and the plurality of LEDs 33 to drive the plurality of LEDs 33 to emit lights upward through the lamp cover 2, the translucent board 21 and the ring-shaped border 22, causing the light to scatter upward and around.
(21) It can be understood that the present disclosure uses the flexible plastic material (such as plastic, rubber, silicone, etc.) to manufacture the plurality of first plastic blocks 42 and the second plastic block 52. With the structural design of the plastic ring 41, the groove 16 and the protruding part 421, the plurality of first plastic blocks 42 can be stably spaced and fixed on the outer periphery wall 11 of the base 1. With the structural design of top-bottom engagement of the top frame 51, the plurality of first plastic blocks 42 and the plurality of second plastic blocks 52, the plurality of second plastic blocks 52 can be stably spaced and fixed around the ring-shaped border 22. In this way, the flexible plastic material is set around the whole housing assembly including the base 1 and the lamp cover 2 of the outdoor lamp to provide the pressure-resistant design of the outdoor lamp, so as to enhance the ability of the outdoor lamp to resist external impact and compression and to enhance the durability and service life of the outdoor lamp.
(22) Embodiments of each component is further described as follows:
(23) In
(24) The switch 36 is provided for users to press or switch in order to turn on/off the LED 33, and switches the circuit board 31 to control the lighting effect of the plurality of LEDs 33. For example, after the switch 36 is pressed or switched, the light can be switched to white light, or change the RGB colors, so as to provide users more options for the lighting effect.
(25) In a feasible embodiment, the plastic ring 41 extends towards the center of the fixed platform 12 to form a first waterstop sleeve 43 spaced between the switch fixing port 17 and the switch 36. This prevents water from penetrating into the interior of the outdoor lamp through the switch fixing port 17.
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(27) In addition, the plastic ring 41 extends towards the center of the fixed platform 12 to form a second waterstop sleeve 44 spaced between the plug-in port fixing port 18 and the plug-in port 37. This prevents water from penetrating into the interior of the outdoor lamp through the plug-in port fixing port 18.
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(29) The plastic ring 41 extends towards the center of the fixed platform 12 to form a plurality of third waterstop sleeves 45 sheathing on each screw hole 19. This prevents water from penetrating into the interior of the outdoor lamp through the screw holes 19 of the base 1.
(30) The overall waterproof design of the aforementioned plastic ring 41, first waterstop sleeve 43, second waterstop sleeve 44 and third waterstop sleeve 45 effectively enhance the waterproof ability of the outdoor lamp.
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(35) While the present disclosure has been described by means of specific embodiments, numerous modifications and variations could be made thereto by those skilled in the art without departing from the scope and spirit of the invention as set forth in the claims.