sandglass lamp

CN224771471UActive Publication Date: 2026-09-18LEOX LIGHTING SHANGHAI
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Patent Information

Application Number
CN202522483991.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-11-24
Publication Date
2026-09-18
Estimated Expiration
2035-11-24

AI Technical Summary

Technical Problem

[0002]在现有技术中,沙漏灯的灯光只是背景照明,无法调节色温和亮度,智能化程度低;沙漏灯采用传统的开关控制方式,操作不够便捷;沙漏灯采用白炽灯或荧光灯作为光源,不仅能耗较高,而且使用寿命较短,频繁更换灯泡还增加了使用成本,能源利用效率不高

Benefits of technology

[0028] Compared with the prior art, the embodiment of this utility model adopts a bottom frame on the hourglass lamp; a cavity is fixed on the bottom frame; a top frame is fixed on the cavity; a top touch switch on the top frame and a bottom touch switch on the bottom frame control the switching of the top LED light source of the top frame and the bottom LED light source of the bottom frame, and adjust their color temperature and brightness in the cavity, respectively. This solves the technical problems of the prior art, where the hourglass lamp only provides background lighting and cannot adjust the color temperature and brightness, resulting in low intelligence; the hourglass lamp uses a traditional switch control method, which is not convenient to operate; and the hourglass lamp uses incandescent or fluorescent lamps as light sources, which not only consumes a lot of energy but also has a short lifespan, and frequent bulb replacements increase the cost of use, resulting in low energy efficiency.

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Abstract

The embodiment of the utility model relates to a sandglass lamp, set up bottom frame on sandglass lamp, fix cavity on bottom frame, fix top frame on cavity, the top touch switch of top frame and the bottom touch switch of bottom frame respectively control the switch of the bottom LED light source of top frame's top LED light source and bottom frame and adjust its color temperature and brightness in the cavity, solved in the prior art, the light of sandglass lamp is only background illumination, cannot adjust color temperature and brightness, the degree of intellectualization is low, sandglass lamp adopts traditional switch control mode, operation is not convenient enough, sandglass lamp adopts incandescent lamp or fluorescent lamp as light source, not only energy consumption is higher, and service life is shorter, frequent replacement of bulb also increased the use cost, and the technical problem of low energy utilization efficiency.
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Description

Technical Field

[0001] The embodiments of this utility model relate to the field of table lamp design, and particularly to an hourglass lamp. Background Technology

[0002] In existing technologies, hourglass lamps only provide background lighting and cannot adjust color temperature and brightness, resulting in low levels of intelligence. Hourglass lamps use traditional switch control methods, which are not convenient to operate. Hourglass lamps use incandescent or fluorescent lamps as light sources, which not only consumes a lot of energy but also has a short lifespan. Frequent bulb replacements increase operating costs, resulting in low energy efficiency. Utility Model Content

[0003] The purpose of this invention is to provide a flexible hourglass lamp that allows for touch adjustment of color temperature and brightness.

[0004] To achieve the above objectives, the present invention provides an hourglass lamp, characterized in that it comprises:

[0005] A bottom frame is provided on the hourglass lamp;

[0006] A cavity, which is fixed to the bottom frame;

[0007] A top frame is fixed to the cavity; a top touch switch on the top frame and a bottom touch switch on the bottom frame control the switching on and off of the top LED light source of the top frame and the bottom LED light source of the bottom frame, and adjust their color temperature and brightness within the cavity.

[0008] Furthermore, in the hourglass lamp of this utility model, the bottom frame includes:

[0009] A base is provided below the hourglass lamp;

[0010] A bottom touch switch is provided below the base.

[0011] A bottom LED light source is fixed inside the base.

[0012] A second acrylic light diffusion layer is disposed between the bottom LED light source and the cavity.

[0013] Furthermore, in the hourglass lamp of this utility model, the cavity includes:

[0014] A lower spherical chamber is provided below the cavity body;

[0015] An upper spherical chamber is provided above the lower spherical chamber;

[0016] The passage is formed between the lower spherical chamber and the upper spherical chamber.

[0017] Furthermore, in the hourglass lamp of this utility model, the top frame includes:

[0018] A top cover is fixed above the cavity.

[0019] A top touch switch is provided on the top cover;

[0020] A top LED light source is fixed inside the top cover;

[0021] A first acrylic light diffusion layer is disposed between the top LED light source and the cavity.

[0022] Furthermore, in the hourglass lamp of this utility model, the first inner glass is fixed below the first acrylic light diffusion layer of the top frame, inside the upper spherical cavity of the cavity, and on the cavity; the second inner glass is fixed above the second acrylic light diffusion layer of the bottom frame, inside the lower spherical cavity of the cavity, and on the cavity.

[0023] Furthermore, in the hourglass lamp of this utility model, the top touch switch of the top frame and the bottom touch switch of the bottom frame are capacitive touch switches.

[0024] Furthermore, in the hourglass lamp of this utility model, the top touch switch controls the top LED light source; double-clicking the top touch switch turns the top LED light source on and off; rotating the top touch switch clockwise adjusts the color temperature of the top LED light source; rotating the top touch switch counterclockwise adjusts the brightness of the top LED light source. The bottom touch switch controls the bottom LED light source; double-clicking the bottom touch switch turns the bottom LED light source on and off; rotating the bottom touch switch clockwise adjusts the color temperature of the bottom LED light source; rotating the bottom touch switch counterclockwise adjusts the brightness of the bottom LED light source.

[0025] Furthermore, in the hourglass lamp of this invention, lithium batteries are placed inside the top touch switch and the bottom touch switch respectively, and the lithium batteries are charged via wireless Type-C fast charging.

[0026] Furthermore, in the hourglass lamp of this invention, fine sand is placed in the upper spherical cavity, and the fine sand can flow from the upper spherical cavity to the lower spherical cavity through the channel.

[0027] Furthermore, in the hourglass lamp of this invention, the first inner glass, the second inner glass, and the cavity are made of high-silicon glass.

[0028] Compared with the prior art, the embodiment of this utility model adopts a bottom frame on the hourglass lamp; a cavity is fixed on the bottom frame; a top frame is fixed on the cavity; a top touch switch on the top frame and a bottom touch switch on the bottom frame control the switching of the top LED light source of the top frame and the bottom LED light source of the bottom frame, and adjust their color temperature and brightness in the cavity, respectively. This solves the technical problems of the prior art, where the hourglass lamp only provides background lighting and cannot adjust the color temperature and brightness, resulting in low intelligence; the hourglass lamp uses a traditional switch control method, which is not convenient to operate; and the hourglass lamp uses incandescent or fluorescent lamps as light sources, which not only consumes a lot of energy but also has a short lifespan, and frequent bulb replacements increase the cost of use, resulting in low energy efficiency. Attached Figure Description

[0029] Figure 1 This is a cross-sectional view of the present invention;

[0030] Figure 2 This is the front view of the present invention;

[0031] Figure 3 This is a top view of the present invention;

[0032] Figure 4 This is a bottom view of the present invention;

[0033] Figure 5 This is the circuit diagram of this utility model. Detailed Implementation

[0034] To make the objectives, technical solutions, and advantages of this utility model clearer, the various embodiments of this utility model will be described in detail below with reference to the accompanying drawings. However, those skilled in the art will understand that many technical details have been provided in the various embodiments of this utility model to facilitate a better understanding of this application. However, the technical solutions claimed in the claims of this application can be implemented even without these technical details and with various variations and modifications based on the following embodiments.

[0035] The embodiments of this utility model relate to an hourglass lamp, such as... Figure 1 , Figure 2 , Figure 3 and Figure 4 As shown, it includes:

[0036] In this embodiment, a bottom frame 1 is provided on the hourglass lamp. The bottom frame 1 is the basic support structure of the hourglass lamp, which is used to bear the weight of the entire hourglass lamp and provide a base for the installation of other components.

[0037] A cavity 2 is fixed on the bottom frame 1. The cavity 2 is the main part of the hourglass lamp, which is used to hold fine sand 8 and is also the space for the top LED light source 33 and the bottom LED light source 13 to be illuminated.

[0038] A top frame 3 is fixed on the cavity 2; the top touch switch 32 of the top frame 3 and the bottom touch switch 12 of the bottom frame 1 control the switching of the top LED light source 33 of the top frame 3 and the bottom LED light source 13 of the bottom frame 1, respectively, and adjust their color temperature and brightness in the cavity 2.

[0039] In this embodiment, a top frame 3 is fixed on the cavity 2. The top touch switch 32 of the top frame 3 and the bottom touch switch 12 of the bottom frame 1 control the switching of the top LED light source 33 of the top frame 3 and the bottom LED light source 13 of the bottom frame 1, respectively, and adjust their color temperature and brightness within the cavity 2. This solves the technical problems in the prior art, where the hourglass lamp only provides background lighting and cannot adjust the color temperature and brightness, resulting in low intelligence; the hourglass lamp uses a traditional switch control method, which is not convenient to operate; and the hourglass lamp uses incandescent or fluorescent lamps as light sources, which not only consumes a lot of energy but also has a short lifespan, and frequent bulb replacements increase the cost of use, resulting in low energy efficiency.

[0040] To achieve the above-mentioned technical effects, such as Figure 1 and Figure 4 As shown, the bottom frame 1 includes:

[0041] A base 11 is installed below the hourglass lamp. The base 11 serves to support and stabilize the hourglass lamp, ensuring that it remains stable and is not easily tipped over, thus guaranteeing its normal use and safety.

[0042] A bottom touch switch 12 is set below the base 11. Touching the bottom touch switch 12 controls the switching on and off of the bottom LED light source 13 and adjusts the color temperature and brightness, making the operation flexible and convenient.

[0043] A bottom LED light source 13 is fixed inside the base 11, which can provide illumination.

[0044] A second acrylic light diffusion layer 14 is provided between the bottom LED light source 13 and the cavity 2. Acrylic material has good light transmittance and light diffusion performance. The second acrylic light diffusion layer 14 can diffuse the light emitted by the bottom LED light source 13, so that the light is more evenly distributed in the cavity 2, avoiding the situation of concentrated light or uneven brightness, thereby improving the lighting effect. The second acrylic light diffusion layer 14 can also soften the light, making the light softer and less dazzling, reducing the damage to the eyes.

[0045] To achieve the above-mentioned technical effects, such as Figure 1 As shown, cavity 2 includes:

[0046] A lower spherical chamber 21 is provided below the cavity 2. The lower spherical chamber 21 has good structural stability and can evenly distribute the internal pressure, ensuring the stability and durability of the hourglass lamp during use.

[0047] An upper spherical chamber 22 is provided above the lower spherical chamber 21. The upper spherical chamber 22 and the lower spherical chamber 21 are designed symmetrically, so that the hourglass lamp achieves balance in the overall structure.

[0048] A channel 23 is opened between the lower spherical chamber 21 and the upper spherical chamber 22. The channel 23 connects the lower spherical chamber 21 and the upper spherical chamber 22, providing a clear flow path for the sand, controlling the flow speed of the sand, and enabling the hourglass to keep accurate time.

[0049] To achieve the above-mentioned technical effects, such as Figure 1 , Figure 2 and Figure 3 As shown, the top frame 3 includes:

[0050] A top cover 31 is fixed above the cavity 2. The top cover 31 serves to support and stabilize the hourglass lamp, ensuring that it remains stable and is not easily tipped over, thus guaranteeing the normal use and safety of the hourglass lamp.

[0051] A top touch switch 32 is provided on the top cover 31; touching the top touch switch 32 controls the switching on and off of the top LED light source 33 and adjusts the color temperature and brightness, making the operation flexible and convenient.

[0052] A top LED light source 33 is fixed inside the top cover 31, which can provide illumination.

[0053] A first acrylic light diffusion layer 34 is provided between the top LED light source 33 and the cavity 2. Acrylic material has good light transmittance and light diffusion performance. The first acrylic light diffusion layer 34 can diffuse the light emitted by the top LED light source 33, so that the light is more evenly distributed in the cavity 2, avoiding the situation of concentrated light or uneven brightness, thereby improving the lighting effect. The first acrylic light diffusion layer 34 can also soften the light, making the light softer and less dazzling, reducing the damage to the eyes.

[0054] To achieve the above-mentioned technical effects, such as Figure 1 and Figure 2As shown, a first inner glass 4 is fixed below the first acrylic light diffusion layer 34 of the top frame 3, inside the upper spherical chamber 22 of the cavity 2, and on the cavity 2; a second inner glass 5 is fixed above the second acrylic light diffusion layer 14 of the bottom frame 1, inside the lower spherical chamber 21 of the cavity 2, and on the cavity 2; the first inner glass 4 and the second inner glass 5 can be blow-molded into any shape, with a high degree of design freedom.

[0055] To achieve the above-mentioned technical effects, such as Figure 1 and Figure 5 As shown, the top touch switch 32 of the top frame 3 and the bottom touch switch 12 of the bottom frame 1 are capacitive touch switches. Capacitive touch switches have fast response speed, flexible and convenient operation, and strong anti-interference ability.

[0056] To achieve the above-mentioned technical effects, such as Figure 1 and Figure 5 As shown, the top touch switch 32 controls the top LED light source 33. Double-clicking the top touch switch 32 turns the top LED light source 33 on and off. Rotating the top touch switch 32 clockwise adjusts the color temperature of the top LED light source 33, and rotating the top touch switch 32 counterclockwise adjusts the brightness of the top LED light source 33. The bottom touch switch 12 controls the bottom LED light source 13. Double-clicking the bottom touch switch 12 turns the bottom LED light source 13 on and off. Rotating the bottom touch switch 12 clockwise adjusts the color temperature of the bottom LED light source 13, and rotating the bottom touch switch 12 counterclockwise adjusts the brightness of the bottom LED light source 13.

[0057] To achieve the above-mentioned technical effects, such as Figure 1 and Figure 5 As shown, lithium batteries 6 are placed inside the top touch switch 32 and the bottom touch switch 12 respectively. The lithium batteries 6 are charged via wireless charger 7 with Type-C fast charging, providing strong battery life and rapid charging.

[0058] To achieve the above-mentioned technical effects, such as Figure 1 and Figure 2 As shown, fine sand 8 is placed in the upper spherical chamber 22. The fine sand 8 can flow from the upper spherical chamber 22 to the lower spherical chamber 21 through the channel 23. After the hourglass lamp is reversed, the fine sand 8 can also flow from the lower spherical chamber 21 to the upper spherical chamber 22. Different timings can be set by controlling the quantity and flow rate of the fine sand 8.

[0059] To achieve the above-mentioned technical effects, such as Figure 1As shown, the first inner glass 4, the second inner glass 5, and the cavity 2 are made of high-silicon glass. High-silicon glass has high light transmittance, which allows light to fully illuminate the inside of the cavity 2, making the hourglass lamp's lighting effect brighter and clearer. High-silicon glass is also a drop-resistant and temperature-resistant material, which can withstand a certain degree of external impact and temperature changes, and is not easily deformed or broken, reducing the risk of damage and improving the reliability and service life of the product.

[0060] Those skilled in the art will understand that the above embodiments are specific examples of implementing the present invention, and in practical applications, various changes can be made to them in form and detail without departing from the spirit and scope of the present invention.

Claims

1. An hourglass lamp, characterized in that, include: A bottom frame is provided on the hourglass lamp; A cavity, which is fixed to the bottom frame; A top frame is fixed to the cavity; a top touch switch on the top frame and a bottom touch switch on the bottom frame control the switching on and off of the top LED light source of the top frame and the bottom LED light source of the bottom frame, and adjust their color temperature and brightness within the cavity.

2. The hourglass lamp according to claim 1, characterized in that, The bottom frame includes: A base is provided below the hourglass lamp; A bottom touch switch is provided below the base. A bottom LED light source is fixed inside the base. A second acrylic light diffusion layer is disposed between the bottom LED light source and the cavity.

3. The hourglass lamp according to claim 1, characterized in that, The cavity includes: A lower spherical chamber is provided below the cavity body; An upper spherical chamber is provided above the lower spherical chamber; The passage is formed between the lower spherical chamber and the upper spherical chamber.

4. The hourglass lamp according to claim 1, characterized in that, The top frame includes: A top cover is fixed above the cavity. A top touch switch is provided on the top cover; A top LED light source is fixed inside the top cover; A first acrylic light diffusion layer is disposed between the top LED light source and the cavity.

5. The hourglass lamp according to claim 1, characterized in that, Below the first acrylic light diffusion layer of the top frame, inside the upper spherical cavity of the cavity, a first inner glass is fixed on the cavity; above the second acrylic light diffusion layer of the bottom frame, inside the lower spherical cavity of the cavity, a second inner glass is fixed on the cavity.

6. The hourglass lamp according to claim 1, characterized in that, The top touch switch of the top frame and the bottom touch switch of the bottom frame are capacitive touch switches.

7. The hourglass lamp according to claim 1, characterized in that, The top touch switch controls the top LED light source. Double-clicking the top touch switch turns the top LED light source on and off. Rotating the top touch switch clockwise adjusts the color temperature of the top LED light source, and rotating it counterclockwise adjusts the brightness of the top LED light source. The bottom touch switch controls the bottom LED light source. Double-clicking the bottom touch switch turns the bottom LED light source on and off. Rotating the bottom touch switch clockwise adjusts the color temperature of the bottom LED light source, and rotating it counterclockwise adjusts the brightness of the bottom LED light source.

8. The hourglass lamp according to claim 6, characterized in that, A lithium battery is placed inside the top touch switch and the bottom touch switch respectively, and the lithium battery is charged via a wireless charger with Type-C fast charging.

9. The hourglass lamp according to claim 3, characterized in that, Fine sand is placed in the upper spherical chamber, and the fine sand can flow from the upper spherical chamber to the lower spherical chamber through the channel.

10. The hourglass lamp according to claim 5, characterized in that, The first inner glass, the second inner glass, and the cavity are all made of high-silicon glass.