Capsule-like micro-lamp
Patent Information
- Application Number
- CN202522404196.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-13
- Publication Date
- 2026-09-11
- Estimated Expiration
- 2035-11-13
AI Technical Summary
然而,这些产品大多仍依赖于传统的导线连接方式,限制了发光单元布置的灵活性;或者其互动方式未能与产品造型形成深层次的、富有故事性的结合,用户体验略显生硬
[0011] 1. Highly engaging and emotionally resonant design: By fully replicating the form of "medicine packaging box - blister pack - capsule" and the interactive process of "pull-out medicine", the functional operation is transformed into a user experience that is rich in storytelling and healing, greatly enhancing the product's appeal and emotional value.
Smart Images

Figure CN224743358U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of decorative lighting technology, specifically relating to a capsule-shaped miniature lamp with a novel structure and fun interactive features. Background Technology
[0002] Miniature lighting fixtures such as ambient lights and desktop decorative lights are widely used in modern home and office environments to create ambiance and a warm atmosphere. Currently, most of these lighting fixtures on the market feature traditional geometric shapes or simple biomimetic forms, and their functions are mainly limited to color changes or simple touch switches, resulting in relatively simple interactive features.
[0003] Existing technologies include some lighting fixtures that attempt to enhance their appeal through unique structures. However, most of these products still rely on traditional wire connections, limiting the flexibility of the light-emitting unit's placement; or their interactive methods fail to create a deep, narrative connection with the product's design, resulting in a somewhat stiff user experience. For example, some wirelessly powered lighting fixtures often only address the basic power supply issue without delving into how to ensure wireless power efficiency or how to ingeniously integrate wireless power with movable light-emitting units, leading to either inefficient products or poor interactive experiences.
[0004] Therefore, there is an urgent need in this field for a new type of miniature lamp that is not only novel in appearance and can evoke emotional resonance, but also technically capable of combining reliable power supply with flexible interaction. Summary of the Invention
[0005] The purpose of this invention is to overcome the shortcomings of the existing technology and provide a capsule-shaped miniature lamp that cleverly imitates the shape and opening interaction of medicine packaging. It also utilizes wireless power supply technology to achieve complete encapsulation and free placement of the light-emitting unit, thus providing a new type of ambient light that combines a strong healing visual experience with flexible and fun interaction.
[0006] To achieve the above objectives, the present invention adopts the following technical solution: A capsule-shaped miniature lamp, comprising: The lamp housing resembles a medicine packaging box; The lamp panel, which resembles a medicine sachet, can be pulled out and housed inside the lamp housing. Inside, there is a control circuit and a primary induction coil. The lampshade, made of transparent or semi-transparent material, is fixed to the lamp plate by magnetic attraction and forms multiple capsule-shaped cavities. Multiple capsule-shaped wireless LED beads are independently disposed within the accommodating cavity, and each capsule-shaped wireless LED bead contains an LED circuit and a secondary induction coil. When the lamp panel is removed from the lamp housing, the control circuit is powered on, and the primary induction coil wirelessly powers the secondary induction coil through electromagnetic induction, thereby driving the LED circuit to emit light.
[0007] As a further improvement of this utility model, the lampshade can be separated from the lamp panel, and the capsule-shaped wireless lamp bead can be removed and maintain light emission when it is within the effective sensing distance of the primary induction coil.
[0008] As a further improvement of this utility model, each of the capsule-shaped wireless LED beads is provided with a first horizontal correction magnet inside, and a second horizontal correction magnet is provided on the lamp board corresponding to the position of each accommodating cavity; the first horizontal correction magnet and the second horizontal correction magnet interact to ensure that when the capsule-shaped wireless LED bead is placed on the lamp board, its internal secondary induction coil remains parallel to the primary induction coil on the lamp board, so as to ensure the best efficiency of wireless power supply.
[0009] As a further improvement of this utility model, the control circuit includes a switching unit (such as a magnetic switch, an infrared sensor, or a physical contact switch), which is configured to disconnect the power supply when the lamp panel is inserted into the lamp housing and connect the power supply when the lamp panel is pulled out, so as to realize automatic lighting.
[0010] Compared with the prior art, the present invention has the following beneficial effects:
[0011] 1. Highly engaging and emotionally resonant design: By fully replicating the form of "medicine packaging box - blister pack - capsule" and the interactive process of "pull-out medicine", the functional operation is transformed into a user experience that is rich in storytelling and healing, greatly enhancing the product's appeal and emotional value.
[0012] 2. True flexibility and immersion: Utilizing wireless power supply technology, the capsule-shaped wireless LED beads become completely independent, handheld, and freely placeable light sources. Users can hold the "capsule" in their hands to play with it or place it anywhere on the desktop, breaking the limitations of traditional lamps that emit light in a fixed manner and creating entirely new possibilities for light and shadow interaction.
[0013] 3. Reliable technical support: The innovative introduction of a horizontal correction magnet structure ensures that when the capsule-shaped wireless LED bead is placed back on the light board, the secondary induction coil inside can automatically align with and remain parallel to the primary induction coil on the light board. This greatly optimizes the energy transmission efficiency of wireless power supply, solves the common alignment problem of portable wireless power supply devices, and makes the product both fun and practical.
[0014] 4. Intelligent and convenient operation: The switch is automatically triggered by pulling out the light panel, achieving the intelligent effect of "lighting up as soon as the box is opened". The operation is intuitive and has a sense of ritual. There is no need to search for and operate traditional switches, which improves the convenience of use and the integrity of the experience. Attached Figure Description
[0015] Figure 1 This is a three-dimensional exploded view of the overall structure of an embodiment of this utility model.
[0016] Figure 2 for Figure 1 A partial structural diagram showing how the central lamp panel and lamp cover are fixed by magnetic attraction.
[0017] Figure 3 This is a schematic diagram illustrating the structural principle of aligning the coil between the capsule-shaped wireless LED bead and the LED board using a horizontally aligned correction magnet. Detailed Implementation
[0018] To make the above-mentioned objects, features, and advantages of this utility model more apparent and understandable, the specific embodiments of this utility model will be described in detail below with reference to the accompanying drawings. Many specific details are set forth in the following description to provide a full understanding of this utility model. However, this utility model can be implemented in many other ways different from those described herein, and those skilled in the art can make similar modifications without departing from the spirit of this utility model. Therefore, this utility model is not limited to the specific embodiments disclosed below.
[0019] The present invention provides a capsule-shaped miniature lamp whose core concept is to imitate the packaging and dispensing process of daily medicines. Through the combination of ingenious structural design and wireless power supply technology, it creates a highly interesting and interactive ambient lighting device.
[0020] like Figure 1 As shown, in this embodiment, the capsule-shaped miniature lamp mainly includes a lamp housing (1), a lamp plate (2), a lamp shade (3), and multiple capsule-shaped wireless LED beads (4).
[0021] In the current preferred embodiment, the lamp housing (1) serves as an overall package, and its shape, size, and material simulate common medicine packaging boxes. Preferably, the lamp housing (1) can be made of materials such as cardboard, plastic, or metal, and its outer surface is decorated with labels that mimic the name, usage, and dosage of the medicine through printing, labeling, or other means to enhance the visual effect of the simulation.
[0022] like Figure 2As shown, in the current preferred embodiment, the lamp plate (2) simulates the shape and function of a medicine blister pack, and its size matches the inner cavity of the lamp housing (1), and it can be pulled out and accommodated inside the lamp housing (1). The lamp plate (2) integrates a control circuit (21). The control circuit (21) mainly includes a battery, a power management module, a wireless power supply transmission module, a microcontroller (optional, used to implement complex functions such as a breathing light), and a switch unit. The switch unit is used to detect the pull-out state of the lamp plate (2), and it can be a magnetic switch, an infrared sensor, or a physical contact switch. For example, a magnet is installed on the inner wall of the lamp housing (1), and a magnetic switch is installed at the corresponding position of the lamp plate (2). When the lamp plate (2) is fully pushed into the lamp housing (1), the magnetic switch is opened under the action of the magnetic field; when the lamp plate (2) is pulled out and away from the magnetic field, the magnetic switch is closed, thereby connecting the power supply. The lamp plate (2) also has a primary induction coil (22) of the wireless power supply system embedded inside, which is preferably laid horizontally in the circuit board layer of the lamp plate (2).
[0023] like Figure 2 As shown, in the current preferred embodiment, the lampshade (3) is made of transparent or semi-transparent plastic material, and is formed by injection molding and other processes into multiple matrix-arranged, hemispherical or ellipsoidal capsule-shaped accommodating cavities (31). The lampshade (3) is detachably fixed to the lamp plate (2) by magnetic attraction. Specifically, a first magnetic attraction part (32) (e.g., multiple magnets) can be embedded in the middle position of the lampshade (3), and a second magnetic attraction part (23) (e.g., multiple magnets or magnetically conductive metal sheets) that attracts it to the corresponding position on the lamp plate (2) can be provided. This design makes it easy to remove and install the lampshade (3), and facilitates the user to take out and put in the capsule-shaped wireless LED beads (4).
[0024] like Figure 3 As shown, in the current preferred embodiment, the capsule-shaped wireless LED bead (4) is an independent light-emitting unit, the number of which is consistent with the number of accommodating cavities (31) on the lampshade (3). The outer shell of each capsule-shaped wireless LED bead (4) is made of transparent or translucent material (such as PC, ABS) in the form of a sealed capsule particle, and encapsulates an LED circuit (41) and a secondary induction coil (42) of a wireless power supply system inside. This is the key to realizing the "handheld light-emitting" function.
[0025] like Figure 3As shown, in the current preferred embodiment, in order to optimize the wireless power supply efficiency, a first horizontal correction magnet (43) is provided inside each capsule-shaped wireless LED (4), and a second horizontal correction magnet (24) is also embedded in the center of each accommodating cavity (31) on the lamp plate (2). Since the capsule-shaped wireless LED (4) can roll freely in the cavity, when it is placed on the lamp plate (2), under the magnetic attraction and correction of the first horizontal correction magnet (43) and the second horizontal correction magnet (24), the capsule-shaped wireless LED (4) will automatically rotate and stabilize in a specific position, ensuring that the secondary induction coil (42) inside it is parallel to the primary induction coil (22) in the lamp plate (2), thereby maximizing the electromagnetic induction coupling efficiency and ensuring power supply stability and brightness.
[0026] The working process of this utility model is as follows:
[0027] The user pulls the lamp plate (2) out of the lamp housing (1), which triggers the switching unit in the control circuit (21), and the system power is turned on. The primary induction coil (22) generates an alternating magnetic field under the drive of the control circuit (21). The capsule-shaped wireless LED bead (4) placed in the cavity (31) of the lamp cover (3) generates an induced current by cutting the magnetic field lines with its secondary induction coil (42), which drives the LED circuit (41) to emit light. All the "capsules" light up at the same time, simulating the luminous capsules neatly arranged on the medicine plate, with a prominent visual effect.
[0028] When the user wants to interact further, they can lift the magnetically secured lampshade (3) and directly take out the luminous capsule-shaped wireless LED bead (4). Due to the effective range of wireless power supply (usually several centimeters to tens of centimeters), as long as the LED bead does not move too far from the lamp plate (2), it can continuously emit light in the hand, on the table, or in any other location. After use, put the capsule-shaped wireless LED bead (4) back into the lamp plate (2), where it will automatically align under the action of the horizontal alignment magnet. Then, cover the lampshade (3) and finally push the lamp plate (2) back into the lamp housing (1) to turn off the power.
[0029] The above description is only a preferred embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the technical scope disclosed in the present utility model, based on the technical solution and the inventive concept of the present utility model, should be included within the protection scope of the present utility model.
Claims
1. A capsule-shaped miniature lamp, characterized in that, include: The lamp housing (1) resembles a medicine packaging box; The lamp panel (2) is retractable and housed in the lamp housing (1). It is shaped like a medicine blister and has a control circuit (21) and a primary induction coil (22) inside. The lampshade (3) is made of transparent or semi-transparent material and is fixed to the lamp plate (2) by magnetic attraction, forming multiple capsule-shaped cavities (31); Multiple capsule-shaped wireless LED beads (4) are independently disposed in the cavity (31), and each capsule-shaped wireless LED bead (4) is encapsulated with an LED circuit (41) and a secondary induction coil (42). When the lamp panel (2) is pulled out of the lamp housing (1), the control circuit (21) is powered on, and the primary induction coil (22) wirelessly powers the secondary induction coil (42) through electromagnetic induction, thereby driving the LED circuit (41) to emit light.
2. The capsule-shaped miniature lamp according to claim 1, characterized in that, The lampshade (3) can be separated from the lamp panel (2), and the capsule-shaped wireless LED bead (4) can be removed and maintain light emission when within the effective sensing distance of the primary induction coil (22).
3. The capsule-shaped miniature lamp according to claim 1, characterized in that, The capsule-shaped wireless LED bead (4) has a sealed encapsulation structure, and its outer shell is made of transparent or semi-transparent material, forming the shape of capsule particles.
4. The capsule micro light of claim 1, wherein, The magnetic attraction method is that the first magnetic attraction part (32) set on the lamp cover (3) and the second magnetic attraction part (23) set on the lamp plate (2) attract each other.
5. The capsule micro light of claim 1, wherein, The control circuit (21) includes a switching unit configured to disconnect the power supply when the lamp plate (2) is inserted into the lamp housing (1) and to connect the power supply when the lamp plate (2) is pulled out.
6. The capsule micro light of claim 5, wherein, The switching unit is any one of a magnetic switch, an infrared sensor, or a physical contact switch.
7. The capsule-shaped miniature lamp according to claim 1, characterized in that, Each of the capsule-shaped wireless LED beads (4) is further provided with a first horizontal correction magnet (43), and a second horizontal correction magnet (24) is provided on the lamp plate (2) corresponding to the position of each accommodating cavity (31); the first horizontal correction magnet (43) and the second horizontal correction magnet (24) interact so that when the capsule-shaped wireless LED bead (4) is placed on the lamp plate (2), its internal secondary induction coil (42) remains parallel to the primary induction coil (22) on the lamp plate (2).
8. The capsule-shaped miniature lamp according to claim 1, characterized in that, The outer surface of the lamp housing (1) is printed with a label pattern that imitates pharmaceutical packaging.