Sensing starry sky table and manufacturing method thereof
By installing optical fiber and LED lamp beads on the back of the desktop, combined with circuit board and pressure sensing technology, the existing luminescent desktop materials are solved, and an efficient and interactive user experience is achieved.
Patent Information
- Application Number
- CN202510160802.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-13
- Publication Date
- 2025-06-27
AI Technical Summary
Existing luminescent desktop materials are cost-effective and lack of interactivity, resulting in poor user experience and reduced work efficiency.
By opening square grooves on the back of the desktop, dividing the hexagonal area and installing optical fiber and LED light beads, combining circuit board and pressure sensing technology, the front of the desktop can be used to sense pressure and control the light source to start or close.
It realizes the interactivity of the desktop, improves the fun and user experience of the desktop, and reduces costs.
Smart Images

Figure CN120203353A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of induction control luminous desktops, and particularly to an induction starry sky table and a manufacturing method thereof. Background Art
[0002] Most of the existing tables on the market are composed of a table frame and a tabletop installed on the table frame. The tabletop is usually made of materials such as stone, wood, glass, plastic, synthetic board, metal board, etc. However, the surface decoration of such a tabletop is very single and lacks interactivity, which cannot attract consumers. With the development and popularization of induction control technology, interactive devices with induction control effects have gradually entered people's lives.
[0003] Therefore, the main idea of the present invention is to combine an induction lighting device with a home tabletop to form an interactive tabletop device with an induction lighting effect; especially in the aerospace theme, the tabletop simulates the cosmic starry sky, and the tabletop pressure induction interaction lights up the tabletop, enabling the user to have a comfortable feeling of being in the starry sky, providing more convenience and more fun for people's lives.
[0004] Comparing with similar technologies on the market, such as the utility model patent with the application number CN202120781531.4, this luminous tabletop includes a light guide backing plate, an upper tabletop with a pattern layer, and a lighting component. The upper tabletop is arranged above the light guide backing plate, the upper tabletop is a glass layer, the glass layer is connected to the upper surface of the light guide backing plate, the pattern layer is arranged on the irradiation path of the lighting component, the lighting component adopts an LED lighting component, the light guide backing plate is provided with an installation groove with an opening facing the upper tabletop, and the lighting component is arranged in the installation groove; when in use, the light of the lighting component in the installation groove irradiates onto the pattern layer, and the pattern of the pattern layer is transmitted through the glass layer, making the pattern layer look like it has a luminous visual effect. Although such a luminous tabletop has a lighting effect, the lighting component is only arranged in the range with a pattern layer, and there is no lighting effect in the area without a pattern layer. At the same time, the material cost is high and it cannot interact, thus lacking interest. The indoor working experience effect on such a tabletop is poor for a long time, resulting in a decline in work efficiency.
[0005] For another example, in the utility model patent with the application number CN202320532805.5, this utility model discloses an induction - lighting tabletop, which includes a tabletop, a lighting component, and a wireless charging device. The tabletop has a light - guiding backing plate and a glass plate. The light - guiding backing plate has a lighting area and a charging area. The wireless charging device is arranged at the charging area. A plurality of installation grooves are concavely arranged upward on the bottom surface of the light - guiding backing plate corresponding to the lighting area. Each installation groove is equipped with a lighting component, a capacitive induction module, and a control chip. The capacitive induction module is electrically connected to the control chip, and each lighting component is controllably connected to the output end of the control chip. Although this kind of lighting tabletop has the effect of induction lighting, the application of the capacitive induction module, the supporting capacitive induction tabletop, and the additional charging function lead to a substantial increase in cost. At the same time, the precise induction characteristic of the capacitive device causes the part of the tabletop where the capacitive device is installed to be able to sense, while the part without the capacitive device cannot sense.
[0006] Therefore, there is an urgent need for new inventions to "reduce costs and increase efficiency" for this type of invention, reduce costs, and make up for the interactivity problem. Summary of the Invention
[0007] The purpose of the present invention is to provide an induction starry - sky table and its manufacturing method to solve the problems raised in the above - mentioned background technology.
[0008] To achieve the above - mentioned purpose, the present invention provides the following technical solution: An induction starry - sky table includes a tabletop. A square groove is opened on the back of the tabletop. The square groove is divided into multiple hexagonal areas, and multiple optical - fiber holes are opened in the hexagonal areas. Optical fibers are installed in the optical - fiber holes.
[0009] The optical fibers in a single hexagonal area are sleeved with metal tubes. An LED lamp bead is installed in the metal tube, and a first plug - wire is electrically connected to the LED lamp bead. The first plug - wire is electrically connected to a circuit board.
[0010] Preferably, two adjacent circuit boards are electrically connected by a second plug - wire. Three slots are arranged on the circuit board, and the slots are adapted to the first plug - wire and the second plug - wire. The circuit board is electrically connected to a power supply through a wire.
[0011] Preferably, the optical fibers in a single hexagonal area are fixedly connected by straps, and the straps are fixed in the square groove.
[0012] Preferably, the metal tube and the circuit board are fixedly installed in the square groove.
[0013] Preferably, an acrylic board is installed on the back of the tabletop, and epoxy resin glue is provided on the front of the tabletop.
[0014] A manufacturing method of an induction starry - sky table includes the following manufacturing steps:
[0015] Step S1: Select a square panel as the desktop, and integrally grind a square groove with a depth of 1 cm on the back of the desktop;
[0016] Step S2: Draw multiple hexagonal areas in the square groove, and drill multiple optical fiber holes in the hexagonal areas with an electric drill;
[0017] Step S3: Insert the upper optical fiber into the optical fiber holes opened on the back of the desktop, apply UV glue at the connection between the optical fiber and the optical fiber holes on the back of the desktop, and irradiate with ultraviolet rays to accelerate the solidification of the UV glue;
[0018] Step S4: Fix an aluminum alloy edge strip around the front of the desktop. At the same time, prepare black epoxy resin glue, evenly brush a layer of black epoxy resin glue on the front of the desktop, then pour a layer of black epoxy resin glue on the front of the desktop, and let it stand and harden;
[0019] Step S5: After the epoxy resin glue hardens, remove the aluminum alloy edge strip, and shovel off the optical fiber on the surface of the epoxy resin glue on the front of the desktop. Then, polish the epoxy resin surface to make it flat;
[0020] Step S6: Fix the optical fibers in a single hexagonal area on the back of the desktop with straps, fix the straps in the square groove, then insert the bundled optical fibers into a metal tube. At the same time, insert an LED lamp bead into the metal tube. The LED lamp bead is connected to a circuit board through a first wire, and two adjacent circuit boards are connected through a second wire;
[0021] Step S7: One of the circuit boards is connected to a power supply through a wire. At the same time, fix and install an acrylic board on the back of the desktop.
[0022] Preferably, the electric drill uses a drill bit with a thickness of 1 - 2 mm. The thickness of the drill bit of the electric drill is adapted to the diameter of the optical fiber, and the diameter of the optical fiber is less than 2 mm.
[0023] Preferably, the aluminum alloy edge strip is fixed on the desktop with hot melt adhesive.
[0024] Compared with the prior art, the beneficial effects of the present invention are:
[0025] When pressure is sensed on the front of the desktop, the circuit board senses the pressure change, thereby controlling the light source to turn on or off, so as to achieve the interactivity of the desktop, improve the fun of the desktop, and enhance the user experience effect. Description of the Drawings
[0026] Figure 1 It is a schematic diagram of the back structure of the present invention;
[0027] Figure 2 It is a schematic diagram of the front structure of the present invention;
[0028] Figure 3 Schematic diagram of the fiber optic connection structure of the present invention;
[0029] Figure 4 Schematic diagram of the manufacturing process of the present invention.
[0030] In the figure: 1, desktop; 2, square groove; 3, optical fiber; 4, binding band; 5, metal tube; 6, LED lamp bead; 7, first plug wire; 8, circuit board; 9, slot; 10, second plug wire. Specific embodiments
[0031] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0032] Please refer to Figures 1-3 , the present invention provides a technical solution: an induction starry sky table, including a desktop 1, a square groove 2 is opened on the back of the desktop 1, multiple hexagonal areas are divided in the square groove 2, and multiple optical fiber holes are opened in the hexagonal areas, and optical fibers 3 are installed in the optical fiber holes;
[0033] The optical fiber 3 in a single hexagonal area is sleeved with a metal tube 5, an LED lamp bead 6 is installed in the metal tube 5, and a first plug wire 7 is electrically connected to the LED lamp bead 6, the first plug wire 7 is electrically connected to a circuit board 8, a sensor is arranged on the circuit board 8, and the circuit board is connected to a control module.
[0034] In the present invention, two adjacent circuit boards 8 are electrically connected by a second plug wire 10, and three slots 9 are arranged on the circuit board 8, the slots 9 are adapted to the first plug wire 7 and the second plug wire 10, and the circuit board 8 is electrically connected to a power supply.
[0035] In the present invention, the optical fibers 3 in a single hexagonal area are fixedly connected by a binding band 4, and the binding band 4 is fixed in the square groove 2.
[0036] In the present invention, the metal tube 5 and the circuit board 8 are fixedly installed in the square groove 2.
[0037] In the present invention, an acrylic board is installed on the back of the desktop 1, and epoxy resin glue is arranged on the front of the desktop 1.
[0038] Please refer to Figure 4 , a manufacturing method of an induction starry sky table, including the following manufacturing steps:
[0039] Step S1: Select a square panel as the desktop 1, and overall polish a square groove 2 with a depth of 1 cm on the back of the desktop 1;
[0040] Step S2: Draw multiple hexagonal areas in the square groove 2, and drill multiple optical fiber holes in the hexagonal areas with an electric drill;
[0041] Step S3: Insert the upper optical fiber 3 into the optical fiber holes opened on the back of the desktop 1, apply UV glue at the connection between the optical fiber 3 and the optical fiber holes on the back of the desktop 1, and irradiate with ultraviolet rays to accelerate the solidification of the UV glue;
[0042] Step S4: Fix aluminum alloy edge strips around the front of the desktop 1. Meanwhile, prepare black epoxy resin glue, evenly brush a layer of black epoxy resin glue on the front of the desktop 1, then pour a layer of black epoxy resin glue on the front of the desktop 1, and let it stand for hardening;
[0043] Step S5: After the epoxy resin glue hardens, remove the aluminum alloy edge strips, and shovel off the optical fiber 3 on the surface of the epoxy resin glue on the front of the desktop 1. Then, polish the epoxy resin surface to make it flat;
[0044] Step S6: Fix the optical fiber 3 in a single hexagonal area on the back of the desktop 1 with a tie 4, fix the tie 4 in the square groove 2, then insert the tied optical fiber 3 into a metal tube 5. Meanwhile, insert an LED lamp bead 6 into the metal tube 5. The LED lamp bead 6 is connected to a circuit board 8 through a first plug wire 7, and two adjacent circuit boards 8 are connected through a second plug wire 10;
[0045] Step S7: One of the circuit boards 8 is connected to a power source through a wire. Meanwhile, fix and install an acrylic board on the back of the desktop 1.
[0046] In the present invention, the electric drill uses a drill bit with a thickness of 1 - 2 mm. The thickness of the drill bit of the electric drill is adapted to the diameter of the optical fiber, and the diameter of the optical fiber is less than 2 mm.
[0047] In the present invention, the aluminum alloy edge strips are fixed on the desktop 1 with hot melt glue.
[0048] Embodiment
[0049] In the aerospace theme of the present invention, by inserting a starry sky - shaped structure into multiple hexagonal areas on the desktop to simulate the starry sky, when pressure is sensed on the front of the desktop, the circuit board senses the pressure change, thereby controlling the light source to start or turn off, and through the interaction, it gives people a pleasant feeling of being in the starry sky, providing more convenience and more fun for people's lives.
[0050] The present invention: Select a square panel as the desktop 1, and integrally grind a square groove 2 with a depth of 1 cm on the back surface of the desktop 1; Draw a plurality of hexagonal areas in the square groove 2, and drill a plurality of optical fiber holes in the hexagonal areas through an electric drill; Insert the upper optical fiber 3 into the optical fiber holes opened on the back surface of the desktop 1, and apply UV glue at the connection between the optical fiber 3 and the optical fiber holes on the back surface of the desktop 1, and irradiate with ultraviolet rays to accelerate the solidification of the UV glue; Fix an aluminum alloy edge strip around the front surface of the desktop 1. At the same time, prepare black epoxy resin glue, evenly brush a layer of black epoxy resin glue on the front surface of the desktop 1, and then pour a layer of black epoxy resin glue on the front surface of the desktop 1, and let it stand and harden; After the epoxy resin glue hardens, remove the aluminum alloy edge strip, and shovel off the optical fiber 3 on the surface of the epoxy resin glue on the front surface of the desktop 1. Then, polish the epoxy resin surface flat; Fix the optical fiber 3 in a single hexagonal area on the back surface of the desktop 1 with a binding band 4, and fix the binding band 4 in the square groove 2. Then, insert the bundled optical fiber 3 into a metal tube 5. At the same time, insert an LED lamp bead 6 into the metal tube 5. The LED lamp bead 6 is connected to a circuit board 8 through a first wire 7, and two adjacent circuit boards 8 are connected through a second wire 10; One of the circuit boards 8 is connected to a power supply through a wire. At the same time, an acrylic board is fixedly installed on the back surface of the desktop 1.
[0051] The content not described in detail in this specification belongs to the prior art well-known to those skilled in the art. Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. An induction starry sky table, comprising a tabletop (1), characterized in that: The back of the tabletop (1) is provided with a square groove (2), the square groove (2) is divided into a plurality of hexagonal areas, a plurality of optical fiber holes are provided in the hexagonal areas, and optical fibers (3) are installed in the optical fiber holes; The optical fiber (3) in a single hexagonal area is sleeved with a metal tube (5), an LED lamp bead (6) is installed in the metal tube (5), and the LED lamp bead (6) is electrically connected to a first plug wire (7), and the first plug wire (7) is electrically connected to a circuit board (8).
2. The induction starry sky table according to claim 1, characterized in that: Two adjacent circuit boards (8) are connected by wires via a second plug wire (10), and three slots (9) are provided on the circuit board (8), the slots (9) are compatible with the first plug wire (7) and the second plug wire (10), and the circuit board (8) is connected to a power source via wires.
3. The induction starry sky table according to claim 1, characterized in that: The optical fibers (3) in a single hexagonal area are fixedly connected by a binding band (4), and the binding band (4) is fixed in the square groove (2).
4. The induction starry sky table according to claim 1, characterized in that: The metal tube (5) and the circuit board (8) are fixedly mounted in the square groove (2).
5. The induction starry sky table according to claim 1, characterized in that: An acrylic plate is installed on the back of the table top (1), and epoxy resin glue is provided on the front of the table top (1).
6. A method for manufacturing the induction starry sky table as claimed in claims 1-5, characterized in that: The manufacturing steps include: Step S1: Select a square panel as a tabletop (1), and grind a square groove (2) with a depth of 1 cm on the back of the tabletop (1); Step S2: Draw a plurality of hexagonal areas in the square groove (2), and drill a plurality of optical fiber holes in the hexagonal areas by means of an electric drill; Step S3: inserting the upper optical fiber (3) into the optical fiber hole opened on the back of the desktop (1), applying UV glue at the connection between the optical fiber (3) and the optical fiber hole on the back of the desktop (1), and irradiating with ultraviolet light to accelerate the solidification of the UV glue; Step S4: fixing aluminum alloy edge strips around the front of the table top (1), and at the same time, preparing black epoxy resin glue, brushing a layer of black epoxy resin glue evenly on the front of the table top (1), and then pouring a layer of black epoxy resin glue on the front of the table top (1), and letting it stand to harden; Step S5: After the epoxy resin glue is hardened, remove the aluminum alloy edge strip, scrape off the optical fiber (3) on the epoxy resin glue surface on the front of the desktop (1), and then polish the epoxy resin surface to make it smooth; Step S6: fix the optical fiber (3) in a single hexagonal area on the back of the desktop (1) by means of a binding tape (4), and fix the binding tape (4) in the square groove (2), then insert the bound optical fiber (3) into the metal tube (5), and at the same time, insert the LED lamp bead (6) into the metal tube (5), the LED lamp bead (6) is connected to the circuit board (8) via a first plug wire (7), and two adjacent circuit boards (8) are connected via a second plug wire (10); Step S7: One of the circuit boards (8) is connected to a power source via wires, and at the same time, an acrylic plate is fixedly mounted on the back of the desktop (1).
7. The method for making an induction starry sky table according to claim 6, characterized in that: The electric drill uses a drill bit with a thickness of 1-2 mm.
8. The method for making an induction starry sky table according to claim 6, characterized in that: The aluminum alloy edge strip is fixed to the table top (1) by hot melt adhesive.
Citation Information
Patent Citations
Light-emitting table and light-emitting table top structure thereof
CN215820114U
Induction light-emitting desktop
CN219270400U