A light bulb for a dual dial code system
Patent Information
- Application Number
- CN202522347205.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-05
- Publication Date
- 2026-09-22
- Estimated Expiration
- 2035-11-05
AI Technical Summary
[0002]在现有的技术中,A19灯泡调节功能单一,只可以单独调功率或单独调色温
[0014]本实用新型至少具有以下有益效果:本实用新型通过在灯体的外壳设置第一槽口和第二槽口,第一拨码块、第一拨码器、第二拨码块和第二拨码器来组成双拨码系统。通过第一拨码块来实现对照明光的功率的调整,通过第二拨码块来实现照明光的色温的调整。通过构造双拨码系统的方式,实现对于照明光的多维度的调整,增加了灯泡的功能性。本实用新型主要用于照明灯具技术领域。
Smart Images

Figure CN224787064U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of lighting fixtures, specifically to a bulb with a dual DIP switch system. Background Technology
[0002] In existing technology, the A19 bulb has limited adjustment functions, allowing only individual adjustment of wattage or color temperature. This limited functionality is insufficient to enhance the bulb's overall capabilities when users require adjustments. Therefore, existing technology presents a problem that urgently needs to be addressed. Utility Model Content
[0003] This invention provides a bulb with a dual DIP switch system to solve one or more technical problems existing in the prior art, and at least provides a beneficial option or creates conditions.
[0004] This utility model provides a bulb with a dual DIP switch system, including: a bulb head, a bulb body, a first DIP switch block, a second DIP switch block, a power board, a light source board, and a lampshade; the bulb head is connected to the head of the bulb body, the lampshade is connected to the tail of the bulb body, and the power board and the light source board are both disposed inside the bulb body; The outer shell of the lamp body is provided with a first slot and a second slot that penetrate into its interior; the first DIP switch block is disposed in the first slot, and the second DIP switch block is disposed in the second slot; the power board is provided with a first DIP switch and a second DIP switch, the first DIP switch block is connected to the DIP switch terminal of the first DIP switch, and the second DIP switch block is connected to the DIP switch terminal of the second DIP switch. The power board is connected to the light source board, which generates illumination light. The illumination light is emitted outward through the lampshade. The power board is used to adjust the power of the illumination light according to the DIP switch state of the first DIP switch. The power board is used to adjust the color temperature of the illumination light according to the DIP switch state of the second DIP switch.
[0005] Furthermore, the first slot is opened laterally along the outer shell of the lamp body.
[0006] Furthermore, the second slot is opened laterally along the outer casing of the lamp body.
[0007] Furthermore, the lampshade and the lamp body are connected by adhesive and snap-fit methods.
[0008] Furthermore, the first slot and the second slot are arranged vertically parallel to each other.
[0009] Furthermore, the lamp body is a plastic-coated aluminum component.
[0010] Furthermore, the lampshade is a semi-transparent light-transmitting component.
[0011] Furthermore, the light source board includes a substrate and a light-emitting chip, the substrate being connected to the power board via terminals, and the light-emitting chip being soldered onto the substrate.
[0012] Furthermore, the light-emitting chip is an LED chip.
[0013] Furthermore, the substrate is an aluminum substrate.
[0014] This invention has at least the following beneficial effects: By providing a first and second slot on the outer shell of the lamp body, and constructing a dual-dial system consisting of a first dial block, a first dial switch, a second dial block, and a second dial switch, the power of the illumination light is adjusted via the first dial block, and the color temperature of the illumination light is adjusted via the second dial block. This dual-dial system enables multi-dimensional adjustment of the illumination light, increasing the functionality of the bulb. This invention is primarily applicable to the field of lighting fixture technology. Attached Figure Description
[0015] The accompanying drawings are provided to further understand the technical solution of this utility model and constitute a part of the specification. They are used together with the embodiments of this utility model to explain the technical solution of this utility model, and do not constitute a limitation on the technical solution of this utility model.
[0016] Figure 1 This is a three-dimensional structural diagram of a bulb with a dual DIP switch system; Figure 2 This is an exploded view of the bulb in a dual DIP switch system; Figure 3 This is a schematic diagram of the cross-sectional structure of a bulb in a dual DIP switch system. Detailed Implementation
[0017] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain this utility model and are not intended to limit this utility model.
[0018] It should be noted that although functional modules are divided in the system diagram and the logical order is shown in the flowchart, in some cases, the steps shown or described may be performed in a different order than the module division in the system or the order in the flowchart. The terms "first," "second," etc., in the specification, claims, and the aforementioned drawings are used to distinguish similar objects and are not necessarily used to describe a specific order or sequence.
[0019] refer to Figure 1 , Figure 2 and Figure 3 , Figure 1 This is a three-dimensional structural diagram of a bulb with a dual DIP switch system. Figure 2 This is an exploded view of the bulb in a dual DIP switch system. Figure 3 This is a schematic diagram of the cross-sectional structure of a bulb in a dual DIP switch system.
[0020] The purpose of this utility model is to solve the technical problem of the single adjustment function in existing light bulbs. To this end, this application provides a light bulb with a dual DIP switch system, including: a lamp holder 100, a lamp body 200, a first DIP switch block 201, a second DIP switch block 202, a power board 400, a light source board 500, and a lamp cover 300.
[0021] The lamp holder 100 connects to an external lamp socket, draws mains power from the socket, and transmits the mains power to the power board 400 and the light source board 500. The lamp holder 100 connects to the head of the lamp body 200, sometimes using a snap-fit connection. In other cases, it may be glued. The tail of the lamp body 200 connects to the lamp shade 300. In some further embodiments, the lamp shade 300 is connected to the lamp body 200 using adhesive and snap-fit methods.
[0022] The lamp body 200 has an internal mounting space, in which the power board 400 and the light source board 500 are both mounted. To effectively dissipate heat from the power board 400 and the light source board 500, in some further embodiments, the lamp body 200 is made of a plastic-coated aluminum component. The excellent heat dissipation capabilities of the plastic-coated aluminum component efficiently dissipate heat from the power board 400 and the light source board 500.
[0023] The outer shell of the lamp body 200 is provided with a first slot 210 and a second slot 220 extending into its interior; the first switch block 201 is disposed in the first slot 210, and the second switch block 202 is disposed in the second slot 220.
[0024] The power board 400 is provided with a first DIP switch 401 and a second DIP switch 402. The first DIP switch 201 is connected to the DIP switch terminal of the first DIP switch 401, and the second DIP switch 202 is connected to the DIP switch terminal of the second DIP switch 402.
[0025] The power board 400 is connected to the light source board 500, which generates illumination light. The illumination light is emitted outward through the lampshade 300. The power board 400 is used to adjust the power of the illumination light according to the DIP switch state of the first DIP switch 401; the power board 400 is used to adjust the color temperature of the illumination light according to the DIP switch state of the second DIP switch 402.
[0026] The user can move the first DIP switch 201 along the first slot 210 by toggling it. As the first DIP switch 201 moves, it moves the switch terminals of the first DIP switch 401, resulting in different switch states for the first DIP switch 401. The power board 400 includes corresponding circuitry to identify the switch state of the first DIP switch 401, thereby adjusting the power of the illumination light generated by the light source board 500. In this way, the user can adjust the power of the illumination light by toggling the first DIP switch 201.
[0027] The user can move the second DIP switch 202 along the second slot 220 by toggling it. As the second DIP switch 202 moves, it moves the switch terminals of the second DIP switch 402, resulting in different switch states for the second DIP switch 402. The power board 400 includes corresponding circuitry to identify the switch state of the second DIP switch 402, thereby adjusting the color temperature of the illumination light generated by the light source board 500. In this way, the user can adjust the color temperature of the illumination light by toggling the second DIP switch 202.
[0028] This invention utilizes a dual-dial system formed by providing a first slot 210 and a second slot 220 on the outer shell of the lamp body 200, and comprising a first dial block 201, a first dial switch 401, a second dial block 202, and a second dial switch 402. The first dial block 201 adjusts the power of the illumination light, while the second dial block 202 adjusts the color temperature of the illumination light. This dual-dial system enables multi-dimensional adjustment of the illumination light, increasing the functionality of the lamp.
[0029] To facilitate user adjustment of lighting power after bulb installation, in some further embodiments, the first slot 210 is horizontally opened along the outer casing of the lamp body 200. Practical research has shown that setting the first slot 210 to be horizontally open makes operation more convenient for users compared to a vertically open slot.
[0030] To facilitate color temperature adjustment of the lighting after bulb installation, in some further embodiments, the second slot 220 is horizontally opened along the outer casing of the lamp body 200. Practical research has shown that setting the second slot 220 to be horizontally open makes operation more convenient for users compared to a vertically open slot.
[0031] In some further specific embodiments, the first slot 210 and the second slot 220 are arranged vertically parallel to each other.
[0032] In some further embodiments, the lampshade 300 is a semi-transparent light-transmitting component. By setting the lampshade 300 as a semi-transparent light-transmitting component, the light emitted by the entire bulb is softer.
[0033] In some further specific embodiments, the light source board 500 includes a substrate and a light-emitting chip. The substrate is connected to the power board 400 via terminals, and the light-emitting chip is soldered onto the substrate. The light-emitting chip is an LED chip. To better dissipate the heat from the light-emitting chip, the substrate is set as an aluminum substrate.
[0034] The assembly sequence of this bulb includes: combining the light source board 500 and the power supply board 400 via terminals, then inserting the entire assembly into the lamp body 200 and pressing it in. Installing the first dial switch block 201 and the second dial switch block 202. Assembling the lamp holder 100, and finally applying adhesive to the joint between the lamp cover 300 and the lamp body 200 before covering it with the lamp cover 300.
[0035] Although the description of this application has been quite detailed and particularly focused on several described embodiments, it is not intended to limit itself to any of these details or embodiments or any particular embodiment. Rather, it should be considered as effectively covering the intended scope of this application by referring to the appended claims and taking into account the broad possible interpretations of these claims provided by the prior art. Furthermore, the foregoing description of this application with respect to embodiments foreseeable by the inventor is intended to provide a useful description, and non-substantial modifications to this application that have not yet been foreseen may still represent equivalent modifications.
Claims
1. A light bulb with a dual DIP switch system, characterized in that, include: Lamp head, lamp body, first DIP switch, second DIP switch, power board, light source board and lamp cover; The lamp head is connected to the head of the lamp body, the lamp cover is connected to the tail of the lamp body, and the power board and the light source board are both located inside the lamp body; The outer shell of the lamp body is provided with a first slot and a second slot that penetrate into its interior; the first DIP switch block is disposed in the first slot, and the second DIP switch block is disposed in the second slot; the power board is provided with a first DIP switch and a second DIP switch, the first DIP switch block is connected to the DIP switch terminal of the first DIP switch, and the second DIP switch block is connected to the DIP switch terminal of the second DIP switch. The power board is connected to the light source board, and the light source board is used to generate illumination light. The illumination light is emitted outward through the lampshade; the power board is used to adjust the power of the illumination light according to the DIP switch state of the first DIP switch; the power board is used to adjust the color temperature of the illumination light according to the DIP switch state of the second DIP switch.
2. The bulb of the dual DIP switch system according to claim 1, characterized in that, The first slot is opened laterally along the outer shell of the lamp body.
3. The bulb of the dual DIP switch system according to claim 1, characterized in that, The second slot is opened laterally along the outer casing of the lamp body.
4. The light bulb of the dual DIP switch system according to claim 1, characterized in that, The lampshade and the lamp body are connected by adhesive and clips.
5. A light bulb with a dual DIP switch system according to claim 1, characterized in that, The first slot and the second slot are arranged parallel to each other vertically.
6. A light bulb with a dual DIP switch system according to claim 1, characterized in that, The lamp body is made of plastic-coated aluminum.
7. A light bulb with a dual DIP switch system according to claim 1, characterized in that, The lampshade is a semi-transparent light-transmitting component.
8. A light bulb with a dual DIP switch system according to claim 1, characterized in that, The light source board includes a substrate and a light-emitting chip. The substrate is connected to the power supply board via terminals, and the light-emitting chip is soldered onto the substrate.
9. A light bulb with a dual DIP switch system according to claim 8, characterized in that, The light-emitting chip is an LED chip.
10. A light bulb with a dual DIP switch system according to claim 8, characterized in that, The substrate is an aluminum substrate.