Dice cup shaking lamp

By combining the dice cup with a table lamp and utilizing a shaking and tilt detection control circuit, the problems of unclear dice numbers and light pollution are solved, achieving a clear display and enhanced fun.

CN224121183UActive Publication Date: 2026-04-14JIANGMEN BANLI CULTURAL CREATIVE PROD CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-26
Publication Date
2026-04-14

AI Technical Summary

Technical Problem

Existing dice cups in entertainment venues have problems such as unclear numbers and light pollution. Traditional dice cups cannot clearly display the numbers in dim environments, and dice cups that are fully illuminated cause serious light pollution.

Method used

A dice cup shaker lamp was designed, which combines a dice cup with a desk lamp. It has a circuit board and a light-emitting circuit inside. The shaking and tilting detection control circuit realizes the light emission of the inside and outside of the dice cup, which has the function of a desk lamp and adds fun with RGB lighting.

Benefits of technology

It enables clear display of dice rolls in dimly lit environments, reduces light pollution, increases the fun and user experience of the game, and saves table space.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224121183U_ABST
    Figure CN224121183U_ABST
Patent Text Reader

Abstract

The dice cup shaking lamp comprises a dice cup body with openings in the upper end and the lower end, a connecting base is arranged on the opening in the upper end of the dice cup body, the upper end of the connecting base is connected with an outer side lampshade, and a circuit board and a battery supplying power to the circuit board are arranged in the connecting base. The circuit board is provided with a lower side light-emitting circuit for lighting the inner side of the dice cup body, an upper side light-emitting circuit arranged on the upper side face of the circuit board and emitting light outwards through the lampshade, and a control circuit connected with the lower side light-emitting circuit and the upper side light-emitting circuit and used for controlling the lower side light-emitting circuit and the upper side light-emitting circuit to emit light. The lower side light-emitting circuit achieves the effect of illuminating the inner cavity of the dice cup, the number of dice points can be checked conveniently, meanwhile, the upper side light-emitting circuit can serve as a table lamp to emit light outwards when the dice cup is static, the purposes of the dice cup are increased, the table lamp and the dice cup are integrated, and the table top space is saved.
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Description

[Technical Field]

[0001] This utility model relates to a dice cup shaker lamp. [Background Technology]

[0002] Dice games are an essential form of entertainment in bars, karaoke lounges, and other similar venues. Most dice cups on the market are either non-illuminated or entirely illuminated. Since the lighting effects in entertainment venues change with the music, the tabletop brightness is usually quite dim. Therefore, non-illuminated dice cups present the problem of making it difficult to see the dice numbers. On the other hand, fully illuminated dice cups are made of translucent material through a single injection molding process. Because the luminous surface is so large, this results in significant light pollution, causing eye discomfort due to the constant focus on the dice cup during gameplay. [Utility Model Content]

[0003] This invention overcomes the shortcomings of the prior art and provides a dice cup shaker lamp that combines a dice cup with a table lamp.

[0004] To achieve the above objectives, the present invention adopts the following technical solution:

[0005] A dice cup shaker lamp, characterized in that: it includes a dice cup body with openings at both the top and bottom, a connecting seat on the upper opening of the dice cup body, an outer lampshade connected to the upper end of the connecting seat, a circuit board and a battery for supplying power to the circuit board are provided inside the connecting seat; the circuit board is provided with a lower light-emitting circuit for illuminating the inside of the dice cup body, an upper light-emitting circuit disposed on the upper side of the circuit board for emitting light outward through the lampshade, and a control circuit connected to the lower light-emitting circuit and the upper light-emitting circuit for controlling the light emission of the lower light-emitting circuit and the upper light-emitting circuit.

[0006] The dice cup shaker lamp described above is characterized in that: the circuit board is provided with a shaking detection circuit for detecting the shaking of the dice cup body and a tilt detection circuit for detecting the tilt of the dice cup body, which are respectively connected to the control circuit; and the control circuit controls the upper light-emitting circuit and / or the lower light-emitting circuit to work according to the received remote control signal or tilt signal.

[0007] The dice cup shaker lamp described above is characterized in that: a charging circuit connected to a battery and a control circuit for supplying power to the battery is provided on the circuit board; the circuit board includes a charging interface J1, which is disposed on the side of the connector; and an instruction input circuit connected to the control circuit for touch input of control commands is provided on the circuit board, wherein the touch input terminal of the instruction input circuit is connected to the metal terminal of the charging interface J1.

[0008] The dice cup shaker lamp described above is characterized in that: the lower light-emitting circuit includes a transistor Q7, the base of transistor Q7 is connected to one end of resistor R29 and one end of resistor R30 respectively, the other end of resistor R29 is connected to one end of resistor R0 and the control circuit respectively, the other end of resistor R30 and the emitter of transistor Q7 are grounded respectively, the collector of transistor Q7 is connected to the other end of resistor R0 and the negative terminal of white light LED2 respectively, and the positive terminal of white light LED2 is connected to the battery through resistor R10;

[0009] The upper light-emitting circuit includes transistors Q3 and Q4. The base of transistor Q3 is connected to one end of resistor R17 and one end of resistor R26, respectively. The other end of resistor R17 is connected to the control circuit. The other end of resistor R26 and the emitter of transistor Q3 are grounded. The collector of transistor Q3 is connected to pin B of RGB LED3, RGB LED4, RGB LED5, and RGB LED8 through resistor R23. The base of transistor Q6... The emitter of transistor Q6 is connected to one end of resistor R25 and one end of resistor R27, respectively. The other end of resistor R25 is connected to the control circuit. The other end of resistor R27 and the emitter of transistor Q6 are grounded. The collector of transistor Q6 is connected to pins G of RGB LED3, RGB LED4, RGB LED5, and RGB LED8 through resistor R22. The base of transistor Q5 is connected to one end of resistor R19 and one end of resistor R28, respectively. Resistor R19... One end of the transistor is connected to the control circuit. The other end of resistor R28 and the emitter of transistor Q5 are grounded. The collector of transistor Q5 is connected to pins R of RGB LED3, RGB LED4, RGB LED5, and RGB LED8 via resistor R11. Pins 4 of RGB LED3, RGB LED4, RGB LED5, and RGB LED8 are connected to the battery. The base of transistor Q4 is connected to one end of resistor R18 and one end of resistor R20. The other end of resistor R18 is connected to the control circuit. The other end of resistor R20 and the emitter of transistor Q4 are grounded. The collector of transistor Q4 is connected to one end of resistor R14 and one end of resistor R15. The other end of resistor R14 is connected to the negative terminal of white LED6. The other end of resistor R15 is connected to the negative terminal of white LED7. The positive terminals of white LED6 and white LED7 are connected to the battery.

[0010] The dice cup shaker lamp described above is characterized in that: the lower light-emitting circuit includes a transistor Q8, the base of transistor Q8 is connected to the control circuit and one end of resistor R31, the other end of resistor R31 and the emitter of transistor Q8 are connected to the battery, the collector of transistor Q8 is connected to the positive terminal of white light LED11 and pin 4 of RGB light LED1, the negative terminal of white light LED11 is connected to the lower light-emitting circuit, pin R of RGB light LED1 is connected to the lower light-emitting circuit through resistor R32, pin G of RGB light LED1 is connected to the lower light-emitting circuit through resistor R33, and pin B of RGB light LED1 is connected to the lower light-emitting circuit through resistor R34;

[0011] The upper light-emitting circuit includes transistors Q3 and Q4. The base of transistor Q3 is connected to one end of resistor R17 and one end of resistor R26. The other end of resistor R17 is connected to the control circuit. The other end of resistor R26 and the emitter of transistor Q3 are grounded. The collector of transistor Q3 is connected to one end of resistor R23 and the other end of resistor R34. The other end of resistor R23 is connected to pin B of RGB LED3, RGB LED4, RGB LED5, and RGB LED8. The base of transistor Q6 is connected to one end of resistor R25 and one end of resistor R27. The other end of resistor R25 is connected to the control circuit. The other end of resistor R27 and the emitter of transistor Q6 are grounded. The collector of transistor Q6 is connected to one end of resistor R22 and the other end of resistor R33. The other end of resistor R22 is connected to pin G of RGB LED3, RGB LED4, RGB LED5, and RGB LED8. The base of transistor Q5 is connected to one end of resistor R19 and one end of resistor R28. Connect the other end of resistor R19 to the control circuit. Connect the other end of resistor R28 and the emitter of transistor Q5 to ground. Connect the collector of transistor Q5 to one end of resistor R11 and the other end of resistor R32. Connect the other end of resistor R11 to pins R11, R4, R5, and R8 of RGB LEDs. Connect pins 4 of RGB LEDs (LED3, LED4, LED5, and LED8) to pins 4 of LEDs (LED5, LED8, and LED3). 4. Connect to the battery respectively; the base of transistor Q4 is connected to one end of resistor R18 and one end of resistor R20 respectively, the other end of resistor R18 is connected to the control circuit, the other end of resistor R20 and the emitter of transistor Q4 are grounded respectively, the collector of transistor Q4 is connected to the other end of resistor R35, one end of resistor R14 and one end of resistor R15 respectively, the other end of resistor R14 is connected to the negative terminal of white light LED6, the other end of resistor R15 is connected to the negative terminal of white light LED7, and the positive terminals of white light LED6 and white light LED7 are connected to the battery respectively.

[0012] The dice cup shaker lamp described above is characterized in that: the shaking detection circuit includes a shaking detection switch K1, one end of which is grounded, and the other end of which is connected to one end of resistor R13, one end of capacitor C6, and the control circuit, respectively. The other end of capacitor C6 is grounded, and the other end of resistor R13 is connected to the battery; the tilt detection circuit includes a tilt detection switch K2 and a tilt detection switch K3, one end of which and one end of tilt detection switch K3 are grounded, and the other end of tilt detection switch K2 is connected to the other end of tilt detection switch K3, the control circuit, and one end of resistor R12, respectively. The other end of resistor R12 is connected to the battery.

[0013] The dice cup shaker lamp described above is characterized in that: the charging interface J1 is a TYPE-C interface, the charging circuit includes a charging chip U1, pins 1, 3, and 9 of the charging chip U1 are grounded respectively, pin 2 of the charging chip U1 is grounded through resistor R9, pin 4 of the charging chip U1 is connected to pin 8 of the charging chip U1, one end of capacitor C1, one end of resistor R2, and the drain terminal of MOSFET Q1 respectively, the other end of capacitor C1 is grounded, the other end of resistor R2 is connected to one end of resistor R7 and the control circuit respectively, the other end of resistor R7 is grounded, the gate terminal of MOSFET Q1 is connected to the collector of transistor Q2 and one end of resistor R8 respectively, the other end of resistor R8 is grounded, the source terminal of MOSFET Q1 is connected to the emitter of transistor Q1, one end of resistor R4, one end of resistor R1, pin A9 of charging interface J1, and pin B9 of charging interface J1 respectively. The connection is as follows: the other end of resistor R4 is connected to one end of resistor R6 and the negative terminal of Zener diode D1; the other end of resistor R6 is connected to the base terminal of transistor Q2; the positive terminal of Zener diode D1 is grounded; the other end of resistor R1 is grounded through capacitor C3; pin A5 of charging interface J1 is grounded through resistor R3; pin B5 of charging interface J1 is grounded through resistor R55; pins A12 and B12 of charging interface J1 are grounded; pin 9 of charging interface J1 is connected to the command input circuit; pin 6 of charging chip U1 is connected to the control circuit; pin 5 of charging chip U1 is connected to one end of capacitor C2 and one end of fuse FU1; the other end of capacitor C2 is grounded; fuse FU1 is connected to pin 2 of battery connection terminal J2 and pin 2 of battery connection terminal J3; pins 1 of battery connection terminal J2 and pin 1 of battery connection terminal J3 are grounded.

[0014] The instruction input circuit includes a touch input chip U2. Pin 1 of touch input chip U2 is connected to the control circuit, pin 2 of touch input chip U2 is grounded, pin 3 of touch input chip U2 is connected to one end of resistor R21 and one end of capacitor C4 respectively, the other end of resistor R21 is connected to pin 9 of charging interface J1, the other end of capacitor C4 is grounded, pin 4 of touch input chip U2 is connected to pin 5 of touch input chip U2, the battery and one end of capacitor C5 respectively, the other end of capacitor C5 is grounded, and pin 6 of touch input chip U2 is grounded.

[0015] The control circuit includes a control chip U3. Pin 1 of the control chip U3 is connected to the instruction input circuit. Pins 2 and 8-10 of the control chip U3 are connected to the upper light-emitting circuit, pin 3 of the control chip U3 is connected to the lower light-emitting circuit, pin 4 of the control chip U3 is connected to one end of capacitor C12 and the battery, and the other end of capacitor C12 is grounded. Pins 5-6 of the control chip U3 are connected to the charging circuit, pin 11 of the control chip U3 is grounded, pin 12 of the control chip U3 is connected to the tilt detection circuit, and pin 13 of the control chip U3 is connected to the shaking detection circuit.

[0016] The dice cup shaker lamp described above is characterized in that: the connecting base includes a hollow connecting base body and an upper end cover and a lower end cover respectively disposed at both ends of the connecting base body, the circuit board and the battery are respectively disposed between the upper end cover and the lower end cover of the connecting base body, the lower end cover is provided with a lower end cover through hole, and the light-emitting end of the lower light-emitting circuit extends into the dice cup body through the lower end cover through hole.

[0017] The dice cup shaker lamp described above is characterized in that: a connecting slot is provided on the upper end cover, a light guide plate is inserted into the connecting slot, and multiple pressing protrusions are provided on the inner side of the connecting slot.

[0018] The dice cup shaker lamp described above is characterized in that: positioning bosses supporting the upper end cover and the lower end cover are respectively provided on the inner side walls of both ends of the connecting base body, and at least one positioning protrusion is provided on the upper side of the positioning bosses; positioning cuts that cooperate with the positioning protrusions are respectively provided on the outer side surfaces of the upper end cover and the lower end cover; the inner side surfaces of the connecting sides of the connecting base body and the outer lampshade and the dice cup body are respectively provided with latches; the outer side surfaces of the opening connecting sides of the outer lampshade and the dice cup body are provided with outer edge bosses that extend into the connecting base body and press against the upper end cover and the lower end cover; and the outer side surfaces of the outer edge bosses are provided with snap-fit ​​protrusions that cooperate with the latches.

[0019] The beneficial effects of this utility model are:

[0020] This invention features a connecting base on the top of the dice cup body, with an outer lampshade connected to the upper end of the connecting base. A circuit board is housed within the connecting base, and the circuit board includes a lower light-emitting circuit for illuminating the inner cavity of the dice cup body, and an upper light-emitting circuit that emits light outward through the lampshade on the upper side of the circuit board. The lower light-emitting circuit illuminates the inner cavity of the dice cup, making it easy to see the dice rolls. Simultaneously, the upper light-emitting circuit can function as a table lamp when the dice cup is stationary, increasing the dice cup's versatility and combining it into a single unit, saving table space. Furthermore, the circuit board also includes a shaking detection circuit and a tilt detection circuit. A control circuit controls the operation of the upper and / or lower light-emitting circuits based on received remote control or tilt signals. The upper light-emitting circuit can emit different colored lights, allowing for color changes during dice cup shaking, increasing the fun of the dice game and enhancing the gaming experience. [Image Description]

[0021] Figure 1 This is a schematic diagram of the structure of the dice cup of this utility model;

[0022] Figure 2 This is one of the exploded views of the dice cup of this utility model;

[0023] Figure 3 This is the circuit schematic diagram of this utility model;

[0024] Figure 4 This is a diagram of the shaking detection circuit, tilt detection circuit, control circuit, command input circuit, and charging circuit of this utility model;

[0025] Figure 5 This is a diagram of the upper and lower light-emitting circuits of Embodiment 1 of this utility model;

[0026] Figure 6 This is a diagram of the upper and lower light-emitting circuits of Embodiment 2 of this utility model;

[0027] Figure 7 This is the second exploded view of the dice cup of this utility model;

[0028] Figure 8 This is the third exploded view of the dice cup of this utility model. [Detailed Implementation]

[0029] The technical solutions in the embodiments of this utility model will now be clearly and completely described in conjunction with the accompanying drawings.

[0030] It should be noted that all directional indications (such as up, down, left, right, front, back, etc.) in the embodiments of this utility model are only used to explain the relative positional relationship and movement of the components in a specific posture (as shown in the attached figure). If the specific posture changes, the directional indication will also change accordingly. Furthermore, descriptions involving "preferred," "second-best," etc., in this utility model are for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, features defined as "preferred" or "second-best" may explicitly or implicitly include at least one of those features.

[0031] like Figure 1-8 As shown, a dice cup shaker lamp includes a dice cup body 1 with openings at both the top and bottom. A connecting seat 2 is provided at the top opening of the dice cup body 1, and an outer lampshade 3 is connected to the upper end of the connecting seat 2. A circuit board 4 and a battery 5 supplying power to the circuit board 4 are located inside the connecting seat 2. The circuit board 4 has a lower light-emitting circuit 6 for illuminating the inside of the dice cup body 1, an upper light-emitting circuit 7 for emitting light outwards through the lampshade 3 on the upper side of the circuit board 4, and a control circuit 10 connected to the lower and upper light-emitting circuits 6 and 7 for controlling their illumination. The battery 5 supplies power to the lower and upper light-emitting circuits 6 and 7, respectively, and to the control circuit 10. The upper and lower light-emitting circuits 7 can emit different colors of light. In actual use, when the dice cup is stationary, the control circuit 10 can control the upper light-emitting circuit 7 to emit light outward through the outer lampshade 3, which can be used as a table lamp; during the dice-shaking game, the control circuit 10 can control the lower light-emitting circuit 6 to illuminate the inside of the dice cup body 1, so that the user can easily see the dice numbers, realizing the combination of table lamp and dice cup, saving table space.

[0032] like Figure 3-4 As shown, circuit board 4 is equipped with a shaking detection circuit 8 for detecting the shaking of the dice cup body 1 and a tilt detection circuit 9 for detecting the tilt of the dice cup body 1, which are respectively connected to control circuit 10. Control circuit 10 controls the upper light-emitting circuit 7 and / or the lower light-emitting circuit 6 to operate according to the received remote control signal or tilt signal. Battery 5 supplies power to shaking detection circuit 8 and tilt detection circuit 9 respectively. In actual use, during the shaking of the dice cup, shaking detection circuit 8 generates a shaking signal and sends it to control circuit 10. After receiving the remote control signal, control circuit 10 can control the upper light-emitting circuit 7 to change the light color, increasing the fun of shaking dice. When tilting the dice cup to check the dice numbers, tilt detection circuit 9 generates a tilt signal and sends it to control circuit 10. After receiving the tilt signal, control circuit 10 controls the lower light-emitting circuit 6 to illuminate the dice, improving the user's gaming experience.

[0033] like Figure 3-4As shown, the circuit board 4 is provided with a charging circuit 11 connected to the battery 5 and the control circuit 10 for supplying power to the battery. The circuit board 4 includes a charging interface J141, which is located on the side of the connector 2 to facilitate the connection of a charging cable to charge the battery through the charging circuit 11.

[0034] like Figure 3-4 As shown, circuit board 4 is equipped with a command input circuit 12 connected to control circuit 10 for touch input control commands. The touch input terminal of command input circuit 12 is connected to the metal terminal of charging interface J141, enabling touch control commands to be input to control circuit 10 through the metal terminal of charging interface J141. Battery 5 supplies power to command input circuit 12. Charging interface J141 is a TYPE-C interface. The input functions of this case include: pressing and holding the TYPE-C interface for 3 seconds to turn the light on or off; the upper light-emitting circuit 7 has two brightness levels, which can be switched back and forth by short-pressing the TYPE-C interface after the light is turned on; the light color setting function when the dice cup is horizontal and stationary includes: in the power-off state, keep touching the TYPE-C interface until the light flashes twice to indicate that you have entered the color setting mode, and then short-press the TYPE-C interface to set one of the nine light colors. If there is no touch signal input within 5 seconds after selection, the light will flash once to indicate that the color has been set successfully. After that, each time the power is turned on, the set color will be used. If no color is set, the default light is warm white.

[0035] The embodiment of the upper and lower light-emitting circuits in this case is as follows: Figure 5 As shown, in this embodiment, the lower light-emitting circuit 6 has only one white LED, while the upper light-emitting circuit 7 has four RGB LEDs and two white LEDs, enabling nine different light color changes. During the shaking of the dice cup, the control chip U3 of the control circuit 10 controls the transistors Q3-Q6 in the upper light-emitting circuit 7 to turn on or off, causing the RGB LEDs and white LEDs to change color. When the dice cup is tilted and opened, the control chip U3 of the control circuit 10 controls the transistor Q8 in the lower light-emitting circuit 6 to turn on, allowing the white LEDs to provide white light illumination; alternatively, the control circuit 10 can be set to keep the white LEDs in the lower light-emitting circuit 6 constantly lit after the dice cup shaking light is activated.

[0036] Example 2 of the upper and lower light-emitting circuits in this case is as follows: Figure 6As shown, in this embodiment, the lower light-emitting circuit 6 is equipped with one RGB LED and one white LED, while the upper light-emitting circuit 7 is equipped with four RGB LEDs and two white LEDs, all capable of achieving nine different light color changes. During the shaking of the dice cup, the control chip U3 of the control circuit 10 controls the transistors Q3-Q6 in the upper light-emitting circuit 7 to turn on or off, causing the RGB LEDs and white LEDs to change color. Simultaneously, when the dice cup is tilted and opened, the control chip U3 of the control circuit 10 controls the transistor Q8 in the lower light-emitting circuit 6 to turn on, causing the RGB LEDs and white LEDs to operate, achieving the same light color changes as the upper light-emitting circuit 7.

[0037] like Figure 4 As shown, during charging, the charging cable is plugged into the TYPE-C interface of the charging circuit 11 and supplies power to the charging chip U1, enabling the charging chip U1 to charge the battery 5 through the battery connection terminals J2 and J3. Simultaneously, the control chip U3 of the control circuit 10 detects the charging voltage. After the control chip U3 determines that the battery 5 is fully charged based on the detected charging voltage, it controls the charging chip U1 to stop charging. When inputting a touch control command, a touch signal is input through the metal terminal of the TYPE-C interface on the touch charging circuit 11. The touch input chip U2 detects the touch input signal and inputs a touch signal to the control chip U3 of the control circuit 10. During the shaking of the dice cup, the shaking detection switch K1 in the shaking detection circuit 8 generates a shaking signal and sends it to the control chip U3. During the tilting and opening of the dice cup, the tilt detection switches K2 and K3 in the tilt detection circuit 9 generate tilt signals and send them to the control chip U3, causing the control chip U3 of the control circuit 10 to control the upper light-emitting circuit 7 and the lower light-emitting circuit 6 to illuminate based on the received shaking and tilt signals.

[0038] like Figure 7-8 As shown, the connector 2 includes a hollow connector body 21 and an upper end cover 22 and a lower end cover 23 respectively disposed at both ends of the connector body 21. The circuit board 4 and the battery 5 are respectively disposed between the upper end cover 22 and the lower end cover 23 of the connector body 21. The lower end cover 23 is provided with a lower end cover through hole 231. The light-emitting end of the lower light-emitting circuit 6 extends into the dice cup body 1 through the lower end cover through hole 231. A battery holder 27 is provided inside the lower end cover 23, and the battery 5 is disposed in the battery holder 27. The circuit board 4 and the battery 5 are securely installed in the connector 2 by the upper end cover 22 and the lower end cover 23.

[0039] like Figure 7-8As shown, the upper end cover 22 is provided with a connecting slot 221, and a light guide plate 13 is inserted into the connecting slot 221. When the upper light-emitting circuit 7 emits light, the light is conducted through the connecting slot 221 to the light guide plate 13 and emits light outward. The light guide plate 13 can be set with different shapes to improve the overall aesthetics. The inner side of the connecting slot 221 is provided with multiple pressing protrusions 222 to make the light guide plate 13 firmly inserted into the connecting slot 221.

[0040] like Figure 7-8 As shown, the inner sidewalls at both ends of the connecting body 21 are respectively provided with positioning bosses 211 supporting the upper end cover 22 and the lower end cover 23, and at least one positioning protrusion 212 is provided on the upper side of the positioning bosses 211. The outer sidewalls of the upper end cover 22 and the lower end cover 23 are respectively provided with positioning cutouts 24 that cooperate with the positioning protrusions 212, so that the upper end cover 22 and the lower end cover 23 are respectively positioned and installed on the positioning bosses 211 at both ends of the connecting body 21, which facilitates assembly.

[0041] like Figure 7-8 As shown, the inner side of the connecting side of the main body 21 of the connector and the outer lampshade 3 and the dice cup body 1 are respectively provided with a latch 213. The outer side of the opening connecting side of the outer lampshade 3 and the dice cup body 1 is provided with an outer edge protrusion 25 that extends into the main body 21 and presses against the upper end cover 22 and the lower end cover 23. The outer side surface of the outer edge protrusion 25 is provided with a snap-fit ​​protrusion 26 that cooperates with the latch 213. The outer edge protrusion 25 makes the measuring end cover 22 and the lower end cover 23 securely installed in the main body 21 of the connector. At the same time, the latch 213 and the snap-fit ​​protrusion 26 cooperate to securely connect the outer lampshade 3 and the main body 21 of the connector, as well as the dice cup body 1 and the main body 21 of the connector.

[0042] The above are merely preferred embodiments of this utility model and do not limit the patent scope of this utility model. Any equivalent structural transformations made based on the inventive concept of this utility model and the contents of this utility model specification and drawings, or direct or indirect applications in other related technical fields, are included within the patent protection scope of this utility model.

Claims

1. A dice cup shaker lamp, characterized in that: The device includes a dice cup body (1) with openings at both the top and bottom. A connecting seat (2) is provided on the opening at the top of the dice cup body (1). An outer lampshade (3) is connected to the upper end of the connecting seat (2). A circuit board (4) and a battery (5) supplying power to the circuit board (4) are provided inside the connecting seat (2). The circuit board (4) is provided with a lower light-emitting circuit (6) for illuminating the inside of the dice cup body (1), an upper light-emitting circuit (7) for illuminating the outside through the lampshade (3) on the upper side of the circuit board (4), and a control circuit (10) connected to the lower light-emitting circuit (6) and the upper light-emitting circuit (7) for controlling the light emission of the lower light-emitting circuit (6) and the upper light-emitting circuit (7).

2. The dice cup shaker lamp according to claim 1, characterized in that: The circuit board (4) is provided with a shaking detection circuit (8) for detecting the shaking of the dice cup body (1) and a tilt detection circuit (9) for detecting the tilt of the dice cup body (1) respectively connected to the control circuit (10). The control circuit (10) controls the upper light-emitting circuit (7) and / or the lower light-emitting circuit (6) to work according to the received remote control signal or tilt signal.

3. A dice cup shaker lamp according to claim 2, characterized in that: The circuit board (4) is provided with a charging circuit (11) connected to the battery (5) and the control circuit (10) for supplying power to the battery. The circuit board (4) includes a charging interface J1 (41), which is located on the side of the connector (2). The circuit board (4) is provided with an instruction input circuit (12) connected to the control circuit (10) for touch input control commands. The touch input end of the instruction input circuit (12) is connected to the metal end of the charging interface J1 (41).

4. A dice cup shaker lamp according to claim 1, characterized in that: The lower light-emitting circuit (6) includes a transistor Q7. The base of transistor Q7 is connected to one end of resistor R29 and one end of resistor R30. The other end of resistor R29 is connected to one end of resistor R0 and control circuit (10). The other end of resistor R30 and emitter of transistor Q7 are grounded. The collector of transistor Q7 is connected to the other end of resistor R0 and negative terminal of white light LED2. The positive terminal of white light LED2 is connected to battery (5) through resistor R10. The upper light-emitting circuit (7) includes transistors Q3 and Q4. The base of transistor Q3 is connected to one end of resistor R17 and one end of resistor R26, respectively. The other end of resistor R17 is connected to the control circuit (10). The other end of resistor R26 and the emitter of transistor Q3 are grounded. The collector of transistor Q3 is connected to pin B of RGB LED3, pin B of RGB LED4, pin B of RGB LED5, and pin B of RGB LED8 through resistor R23. Transistor Q6... The base of the transistor is connected to one end of resistor R25 and one end of resistor R27 respectively. The other end of resistor R25 is connected to the control circuit (10). The other end of resistor R27 and the emitter of transistor Q6 are grounded respectively. The collector of transistor Q6 is connected to pin G of RGB LED3, pin G of RGB LED4, pin G of RGB LED5 and pin G of RGB LED8 respectively through resistor R22. The base of transistor Q5 is connected to one end of resistor R19 and one end of resistor R28 respectively. The other end of resistor R19 is connected to the control circuit (10). The other end of resistor R28 and the emitter of transistor Q5 are grounded respectively. The collector of transistor Q5 is connected to pin R of RGB LED3, pin R of RGB LED4, pin R of RGB LED5 and pin R of RGB LED8 respectively through resistor R11. Pins 4 of RGB LED3, pin 4 of RGB LED4, pin 4 of RGB LED5 and pin 4 of RGB LED8 are connected to the battery (5) respectively. The base of Q4 is connected to one end of resistor R18 and one end of resistor R20 respectively. The other end of resistor R18 is connected to the control circuit (10). The other end of resistor R20 and the emitter of transistor Q4 are grounded respectively. The collector of transistor Q4 is connected to one end of resistor R14 and one end of resistor R15 respectively. The other end of resistor R14 is connected to the negative terminal of white light LED6. The other end of resistor R15 is connected to the negative terminal of white light LED7. The positive terminals of white light LED6 and white light LED7 are connected to the battery (5) respectively.

5. A dice cup shaker lamp according to claim 1, characterized in that: The lower light-emitting circuit (6) includes a transistor Q8. The base of transistor Q8 is connected to the control circuit (10) and one end of resistor R31. The other end of resistor R31 and the emitter of transistor Q8 are connected to the battery (5). The collector of transistor Q8 is connected to the positive terminal of white light LED11 and pin 4 of RGB light LED1. The negative terminal of white light LED11 is connected to the lower light-emitting circuit (6). Pin R of RGB light LED1 is connected to the lower light-emitting circuit (6) through resistor R32. Pin G of RGB light LED1 is connected to the lower light-emitting circuit (6) through resistor R33. Pin B of RGB light LED1 is connected to the lower light-emitting circuit (6) through resistor R34. The upper light-emitting circuit (7) includes transistors Q3 and Q4. The base of transistor Q3 is connected to one end of resistor R17 and one end of resistor R26, respectively. The other end of resistor R17 is connected to the control circuit (10). The other end of resistor R26 and the emitter of transistor Q3 are grounded. The collector of transistor Q3 is connected to one end of resistor R23 and the other end of resistor R34, respectively. The other end of resistor R23 is connected to pin B of RGB LED3, pin B of RGB LED4, pin B of RGB LED5, and pin B of RGB LED8, respectively. The base of transistor Q6 is connected to one end of resistor R25 and one end of resistor R27. The other end of resistor R25 is connected to the control circuit (10). The other end of resistor R27 and the emitter of transistor Q6 are grounded. The collector of transistor Q6 is connected to one end of resistor R22 and the other end of resistor R33. The other end of resistor R22 is connected to pin G of RGB LED3, pin G of RGB LED4, pin G of RGB LED5, and pin G of RGB LED8. The base of transistor Q5 is connected to one end of resistor R19 and one end of resistor R28. The other end of resistor R19 is connected to the control circuit (10). The other end of resistor R28 and the emitter of transistor Q5 are grounded. The collector of transistor Q5 is connected to one end of resistor R11 and the other end of resistor R32. The other end of resistor R11 is connected to pin R of RGB LED3, pin R of RGB LED4, pin R of RGB LED5, and pin R of RGB LED8. Pins 4 of RGB LED3, pins 4 of RGB LED4, pins 4 of RGB LED5, and pins 4 of RGB LED8 are connected to... Battery (5) is connected; the base of transistor Q4 is connected to one end of resistor R18 and one end of resistor R20 respectively, the other end of resistor R18 is connected to control circuit (10), the other end of resistor R20 and the emitter of transistor Q4 are grounded respectively, the collector of transistor Q4 is connected to the other end of resistor R35, one end of resistor R14 and one end of resistor R15 respectively, the other end of resistor R14 is connected to the negative terminal of white light LED6, the other end of resistor R15 is connected to the negative terminal of white light LED7, the positive terminals of white light LED6 and white light LED7 are connected to battery (5) respectively.

6. A dice cup shaker lamp according to claim 2, characterized in that: The shaking detection circuit (8) includes a shaking detection switch K1. One end of the shaking detection switch K1 is grounded, and the other end of the remote control detection switch K1 is connected to one end of the resistor R13, one end of the capacitor C6, and the control circuit (10). The other end of the capacitor C6 is grounded, and the other end of the resistor R13 is connected to the battery (5). The tilt detection circuit (9) includes a tilt detection switch K2 and a tilt detection switch K3. One end of the tilt detection switch K2 and one end of the tilt detection switch K3 are grounded. The other end of the tilt detection switch K2 is connected to the other end of the tilt detection switch K3, the control circuit (10), and one end of the resistor R12. The other end of the resistor R12 is connected to the battery (5).

7. A dice cup shaker lamp according to claim 3, characterized in that: The charging interface J1(41) is a TYPE-C interface. The charging circuit (11) includes a charging chip U1. Pins 1, 3 and 9 of the charging chip U1 are grounded. Pin 2 of the charging chip U1 is grounded through resistor R9. Pin 4 of the charging chip U1 is connected to pin 8 of the charging chip U1, one end of capacitor C1, one end of resistor R2 and the drain of MOS transistor Q1. The other end of capacitor C1 is grounded. The other end of resistor R2 is connected to one end of resistor R7 and control circuit (10). The other end of resistor R7 is grounded. The gate of MOS transistor Q1 is connected to the collector of transistor Q2 and one end of resistor R8. The other end of resistor R8 is grounded. The source of MOS transistor Q1 is connected to the emitter of transistor Q1, one end of resistor R4, one end of resistor R1, pin A9 of charging interface J1(41) and pin B9 of charging interface J1(41). The other end of resistor R4 is connected to... Do not connect one end of resistor R6 and the negative terminal of Zener diode D1. Connect the other end of resistor R6 to the base terminal of transistor Q2. Ground the positive terminal of Zener diode D1. Ground the other end of resistor R1 through capacitor C3. Ground the A5 pin of charging interface J1 (41) through resistor R3. Ground the B5 pin of charging interface J1 (41) through resistor R55. Ground the A12 and B12 pins of charging interface J1 (41) respectively. Connect the 9 pin of charging interface J1 (41) to the instruction input circuit (12). Connect the 6 pin of charging chip U1 to the control circuit (10). Connect the 5 pins of charging chip U1 to one end of capacitor C2 and one end of fuse FU1 respectively. Ground the other end of capacitor C2. Connect the FU1 to the 2 pins of battery connection terminal J2 and the 2 pins of battery connection terminal J3 respectively. Ground the 1 pin of battery connection terminal J2 and the 1 pin of battery connection terminal J3 respectively. The instruction input circuit (12) includes a touch input chip U2. Pin 1 of the touch input chip U2 is connected to the control circuit (10). Pin 2 of the touch input chip U2 is grounded. Pin 3 of the touch input chip U2 is connected to one end of resistor R21 and one end of capacitor C4 respectively. The other end of resistor R21 is connected to pin 9 of charging interface J1 (41). The other end of capacitor C4 is grounded. Pin 4 of the touch input chip U2 is connected to pin 5 of the touch input chip U2, battery (5), and one end of capacitor C5 respectively. The other end of capacitor C5 is grounded. Pin 6 of the touch input chip U2 is grounded. The control circuit (10) includes a control chip U3. Pin 1 of the control chip U3 is connected to the instruction input circuit (12). Pins 2 and 8-10 of the control chip U3 are connected to the upper light-emitting circuit (7) respectively. Pin 3 of the control chip U3 is connected to the lower light-emitting circuit (6). Pin 4 of the control chip U3 is connected to one end of capacitor C12 and battery (5) respectively. The other end of capacitor C12 is grounded. Pins 5-6 of the control chip U3 are connected to the charging circuit (11) respectively. Pin 11 of the control chip U3 is grounded. Pin 12 of the control chip U3 is connected to the tilt detection circuit (9). Pin 13 of the control chip U3 is connected to the shaking detection circuit (8).

8. A dice cup shaker lamp according to claim 1, characterized in that: The connector (2) includes a hollow connector body (21) and an upper end cap (22) and a lower end cap (23) respectively disposed at both ends of the connector body (21). The circuit board (4) and the battery (5) are respectively disposed between the upper end cap (22) and the lower end cap (23) of the connector body (21). The lower end cap (23) is provided with a lower end cap through hole (231). The light-emitting end of the lower light-emitting circuit (6) extends into the dice cup body (1) through the lower end cap through hole (231).

9. A dice cup shaker lamp according to claim 8, characterized in that: The upper end cap (22) is provided with a connection slot (221), a light guide plate (13) is inserted into the connection slot (221), and multiple pressing protrusions (222) are provided on the inner side of the connection slot (221).

10. A dice cup shaker lamp according to claim 8, characterized in that: The inner sidewalls at both ends of the connecting seat body (21) are respectively provided with positioning bosses (211) supporting the upper end cover (22) and the lower end cover (23), and at least one positioning protrusion (212) is provided on the upper side of the positioning boss (211). The outer sidewalls of the upper end cover (22) and the lower end cover (23) are respectively provided with positioning cutouts (24) that cooperate with the positioning protrusions (212). The inner sidewalls of the connecting side of the connecting seat body (21) and the outer lampshade (3) and the dice cup body (1) are respectively provided with bayonets (213). The outer sidewalls of the opening connecting side of the outer lampshade (3) and the dice cup body (1) are provided with outer edge bosses (25) that extend into the connecting seat body (21) and press against the upper end cover (22) and the lower end cover (23). The outer sidewalls of the outer edge bosses (25) are provided with snap-fit ​​protrusions (26) that cooperate with the bayonets (213).