Wireless remote control lighting device of clock

By setting up a wireless remote control lighting device on the clock, the problem of traditional clocks not being able to see the hour and minute hands at night or in poor lighting environments is solved, and clear display and multiple control methods are realized in the absence of light, which enhances the convenience and aesthetics of use.

CN223092313UActive Publication Date: 2025-07-11OMIS (FUJIAN) ARTS & CRAFTS CO LTD
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Patent Information

Application Number
CN202422322770.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-24
Publication Date
2025-07-11
Estimated Expiration
2034-09-24

AI Technical Summary

Technical Problem

Traditional clocks cannot clearly see the hour and minute hands at night or in poor lighting, and lose their function.

Method used

A wireless remote control lighting device is provided on the clock, including the lighting aperture and LED colorful light strip. The LED light strip is turned on and off by wireless control, and the hour and minute hands are extended on the clock body to provide backlight. A remote control storage cavity and a wireless control system are provided on the connecting rod.

Benefits of technology

The hour and minute hands can still be clearly seen at night or in poor lighting, providing a variety of control methods to avoid loss of the remote control and enhance convenience and aesthetics.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a wireless remote control lighting device of a clock, which comprises the clock and a lighting aperture, the clock comprises a base, a connecting rod arranged on the base and a clock body arranged on the connecting rod, and the lighting aperture comprises an annular lampshade annularly arranged on the periphery of the clock body and an LED colorful lamp band arranged in the annular lampshade. The annular lampshade is detachably installed on the connecting rod, and the clock body is provided with an hour hand and a minute hand which extend to the lighting aperture so as to ensure that the hour hand and the minute hand are still visible in the dark. The lighting aperture is wirelessly controlled, so that the lighting aperture can be remotely controlled to be on or off, the color of the lamp tube can be changed, and the use is very convenient.
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Description

Technical Field

[0001] The utility model relates to the technical field of clocks, in particular to a wireless remote control lighting device for a clock. Background Art

[0002] Clocks are indispensable items in people's lives. The time indicated by a clock allows people to work and rest on time. Most traditional clocks only have this one function, and at most, they are slightly adjusted in shape to make them beautiful, but they do not have a lighting function, resulting in the inability to clearly see the hour hand and minute hand at night or in a poorly lit environment, making the clock lose its function at night or in a poorly lit environment.

[0003] In view of this, the inventor of this case conducted in-depth research on the above problems, and thus this case was born. Summary of the Utility Model

[0004] The purpose of the utility model is to address the above deficiencies by providing a wireless remote control lighting device for a clock. By setting a lighting aperture as the light source, it is ensured that the hour hand and minute hand can still be clearly seen at night or in a poorly lit environment.

[0005] The solution adopted by the utility model to solve the technical problem is: a wireless remote control lighting device for a clock, including a clock and a lighting aperture. The clock includes a base, a connecting rod provided on the base, and a clock body provided on the connecting rod. The lighting aperture includes an annular lamp shade disposed around the outer periphery of the clock body and an LED colorful light strip disposed inside the annular lamp shade. The annular lamp shade is detachably installed on the connecting rod. The hour hand and the minute hand extending to the lighting aperture are provided on the clock body to ensure that the hour hand and the minute hand are still visible in the dark.

[0006] Further, in order to realize wireless control of the on / off of the LED colorful light strip and provide convenience in use; the LED colorful light strip is adhered to the inner side wall of the annular lamp shade. The lighting aperture further includes a dimming controller connected to the LED colorful light strip through a first power cord, a power supply connected to the dimming controller through a second power cord, and a remote control wirelessly connected to the dimming controller. The first power cord is disposed inside the connecting rod, the dimming controller and the power supply are both disposed inside the base, and an external plug is provided on the power supply.

[0007] Further, in order to provide a storage place for the remote control and prevent the remote control from being randomly discarded. At the same time, directly installing the remote control on the connecting rod can also convert the wireless control of the lighting device into mechanical control; a storage cavity for seamlessly installing the remote control is provided on the connecting rod. A magnetic sheet is adhered to the back of the remote control, and a magnetic ring for attracting the magnetic sheet to fix the remote control in the storage cavity is provided inside the storage cavity. A night light ring for indicating the location of the remote control is further provided on the connecting rod outside the storage cavity.

[0008] Further, to ensure the aesthetics of the connecting rod, the remote control is seamless, but seamless installation makes it inconvenient to take the remote control. To facilitate the removal of the remote control; a ejector rod for ejecting the remote control out of the storage cavity is provided on the connecting rod. A sliding slot hole is provided in the connecting rod at the rear side of the storage cavity. The ejector rod is slidably installed in the sliding slot hole. A return spring for resetting the ejector rod backward is sleeved on the ejector rod and is located inside the connecting rod.

[0009] Further, to install the annular lampshade on the connecting rod; the annular lampshade is made of plastic. A first interface is provided at one end of the annular lampshade, and a second interface is provided at the other end of the annular lampshade. A through hole is provided radially on the upper side of the connecting rod. The first interface and the second interface are respectively installed on both sides of the through hole to install the annular lampshade on the connecting rod.

[0010] Compared with the prior art, the present utility model has the following advantages: The present utility model provides a light source by setting an illumination aperture to ensure that the hour hand and the minute hand can still be clearly seen at night or in a poorly lit environment, so as to ensure that the functions of the clock can be normally realized whether it is day or night. Specifically, by extending the hour hand and the minute hand of the clock body to the illumination aperture, the illumination aperture provides backlight for the hour hand and the minute hand, so as to ensure that the hour hand and the minute hand can be clearly seen at night. The illumination aperture can also be directly used as a lighting lamp at night. Moreover, the illumination aperture of the present utility model is wirelessly controlled, and the on / off of the illumination aperture and the change of the light color can be remotely controlled, which is very convenient to use. In addition, to provide a storage space for the remote control, a storage cavity is provided on the connecting rod, which can store and hold the remote control, avoiding the remote control being placed randomly and having to look for it everywhere when in use, and can also effectively prevent the remote control from being lost. At the same time, if the remote control is placed in the storage cavity and not taken out for use, it is equivalent to converting the wireless control form of the lighting device into a wired control form, thus providing multiple control methods and flexible use. BRIEF DESCRIPTION OF THE DRAWINGS

[0011] The following further describes the present utility model with reference to the accompanying drawings in conjunction with embodiments:

[0012] Figure 1 is a schematic structural diagram of the present utility model;

[0013] Figure 2 is a three-dimensional structural diagram of the present utility model;

[0014] Figure 3 is a schematic structural diagram of the ejector rod.

[0015] In the figure: illumination aperture 1; base 2; connecting rod 3; storage cavity 31; sliding seat 32; clock body 4; hour hand 41; minute hand 42; remote control 5; magnetic ring 6; night light ring 7; ejector rod 8; magnetic sheet 9; return spring 10. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0016] The following will describe the content of the present utility model in detail in conjunction with the accompanying drawings of the specification and specific embodiments:

[0017] Embodiment: As Figures 1-3 shown, this embodiment provides a wireless remote control lighting device for a clock, including a clock and a lighting aperture 1. The clock includes a base 2, a connecting rod 3 provided on the base 2, and a clock body 4 provided on the connecting rod 3. The lighting aperture 1 includes an annular lamp shade disposed around the outer periphery of the clock body 4 and an LED colorful light strip disposed inside the annular lamp shade. The annular lamp shade is detachably installed on the connecting rod 3. The clock body 4 is provided with an hour hand 41 and a minute hand 42 extending to the lighting aperture 1 to ensure that the hour hand 41 and the minute hand 42 are still visible in the dark.

[0018] In this embodiment, in order to achieve wireless control of the on / off of the LED colorful light strip and provide convenience in use; the LED colorful light strip is adhered to the side wall inside the annular lamp shade. The lighting aperture 1 further includes a dimming controller connected to the LED colorful light strip through a first power line, a power supply connected to the dimming controller through a second power line, and a remote control 5 wirelessly connected to the dimming controller through wireless radio frequency. The first power line is disposed inside the connecting rod 3, and both the dimming controller and the power supply are disposed inside the base 2. The power supply is provided with an external plug. The dimming controller of the present utility model adopts a color box RGB LED controller and is controlled through RF. When in use, the color of the LED colorful light strip can be arbitrarily switched by the remote control 5, and it can be switched between multiple color-changing states. Moreover, the remote control 5 has a memory function, and after power-off and restart, it is the last set lighting.

[0019] In this embodiment, in order to provide a storage place for the remote control 5 to avoid random throwing of the remote control 5. At the same time, when the remote control 5 is directly installed on the connecting rod 3, the lighting device can also be converted from wireless control to mechanical control; the connecting rod 3 is provided with a storage cavity 31 for seamlessly installing the remote control 5. A magnetic sheet 9 is adhered to the back of the remote control 5. A magnetic ring 6 for attracting the magnetic sheet 9 to fix the remote control 5 in the storage cavity 31 is disposed inside the storage cavity 31. The connecting rod 3 is further provided with a night light ring 7 located outside the storage cavity 31 for indicating the location of the remote control 5.

[0020] In this embodiment, to ensure the aesthetics of the connecting rod 3, the remote controller 5 is seamless, but seamless installation is not convenient for taking the remote controller 5. To facilitate taking out the remote controller 5, a push rod 8 for ejecting the remote controller 5 out of the storage cavity 31 is further provided on the connecting rod 3. The other end of the push rod 8 extends out of the connecting rod 3. A sliding slot hole is provided in the connecting rod 3 at the rear side of the storage cavity 31. The push rod 8 is slidably installed in the sliding slot hole. A return spring 10 for resetting the push rod 8 backward is sleeved on the push rod 8 and located inside the connecting rod 3. The connecting rod 3 is of a hollow structure. A sliding seat 32 is provided in the connecting rod 3 at the position of the storage cavity 31. The sliding slot hole is provided in the sliding seat 32. A limiting slot hole with an inner diameter larger than that of the sliding slot hole is provided in the middle of the sliding slot hole in the sliding seat 32. The return spring 10 is located in the limiting slot hole. A limiting flange is provided on the push rod 8 and located in the limiting slot hole. The limiting flange protrudes radially outward from the push rod 8 to limit and install the push rod 8 inside the connecting rod 3, preventing the push rod 8 from sliding out of the sliding slot hole under the action of the return spring 10. When installing the remote controller 5, directly place the remote controller 5 into the storage cavity 31. The magnetic sheet 9 in the storage cavity 31 is attracted to the magnetic ring 6 to fix the remote controller 5 in the storage cavity 31. When taking out the remote controller 5, place the tiger's mouth of the palm on the outside of the remote controller 5, extend the palm to the rear side of the connecting rod 3, and press the push rod 8 with the middle finger. When the pressing force applied to the push rod 8 is greater than the suction force between the magnetic sheet 9 and the magnetic ring 6, the remote controller 5 will be ejected out of the storage cavity 31 by the push rod 8, and thus the remote controller 5 can be taken out.

[0021] In this embodiment, to facilitate the taking of the remote control 5; a push rod 8 for ejecting the remote control 5 out of the storage cavity 31 is further provided on the connecting rod 3. A sliding slot hole is provided in the connecting rod 3 at the rear side of the storage cavity 31. The push rod 8 is slidably installed in the sliding slot hole. A return spring 10 for resetting the push rod 8 backward is sleeved on the push rod 8 and located inside the connecting rod 3. The connecting rod 3 is of a hollow structure. A sliding seat 32 is provided in the connecting rod 3 at the position of the storage cavity 31. The sliding slot hole is provided in the sliding seat 32. A limiting slot hole with an inner diameter larger than that of the sliding slot hole is provided in the middle of the sliding slot hole in the sliding seat 32. The return spring 10 is located in the limiting slot hole. A limiting flange is provided on the push rod 8 and located in the limiting slot hole. The limiting flange protrudes radially outward from the push rod 8 to limit the installation of the push rod 8 inside the connecting rod 3 and prevent the push rod 8 from sliding out of the sliding slot hole under the action of the return spring 10. The other end of the push rod 8 is located inside the connecting rod 3. A driving rod perpendicular to the push rod 8 for driving the push rod 8 to move and eject out of the storage cavity 31 is further provided in the connecting rod 3. The driving rod is slidably installed in the connecting rod 3. A second return spring 10 is sleeved on the driving rod. A passive wedge surface is provided on the rear side of the push rod 8. An active wedge surface for cooperating with the passive wedge surface of the push rod 8 is provided on the inner side of the driving rod. The outer side of the driving rod extends out of the connecting rod 3 so as to drive the push rod 8 to eject out of the storage cavity 31 by pressing the driving rod. When installing the remote control 5, directly place the remote control 5 into the storage cavity 31. The magnetic sheet 9 in the storage cavity 31 is attracted to the magnetic ring 6 to fix the remote control 5 in the storage cavity 31. When taking out the remote control 5, place the palm on the outer side of the remote control 5, and the fingers are just located on the side surface of the connecting rod 3. At this time, press the driving rod with the middle finger. The driving rod will drive the push rod 8 to move. When the pressing force acting on the push rod 8 is greater than the suction force between the magnetic sheet 9 and the magnetic ring 6, the remote control 5 will be ejected out of the storage cavity 31 by the push rod 8, thereby taking out the remote control 5.

[0022] In this embodiment, to install the annular lamp shade on the connecting rod 3; the annular lamp shade is made of plastic. A first interface is provided at one end of the annular lamp shade, and a second interface is provided at the other end of the annular lamp shade. A through hole is radially provided on the upper side of the connecting rod 3. The first interface and the second interface are respectively installed on both sides of the through hole to install the annular lamp shade on the connecting rod 3. The first power line passes through the through hole and into the connecting rod 3. An annular groove is provided on the outer side wall of the connecting rod 3 at the outer periphery of the through hole. The width of the annular groove is adapted to the thickness of the annular lamp shade. A magnet is provided in the annular groove. Magnets are correspondingly provided on the first interface and the second interface. When the first interface and the second interface approach the through hole, they will automatically insert into the annular groove, thus completing the automatic installation of the annular lamp shade.

[0023] The utility model provides a light source by setting an illumination aperture 1 to ensure that the hour hand 41 and the minute hand 42 can still be clearly seen at night or in a poorly lit environment, thereby ensuring that the functions of the clock can be normally realized regardless of day or night. Specifically, by extending the hour hand 41 and the minute hand 42 of the clock body 4 to the illumination aperture 1, the illumination aperture 1 provides backlight for the hour hand 41 and the minute hand 42, thereby ensuring that the hour hand 41 and the minute hand 42 can be clearly seen at night. The illumination aperture 1 can also be directly used as a lighting lamp at night. In addition, the illumination aperture 1 of the utility model can realize remote control of the illumination aperture 1 on and off and change the color of the lamp tube through wireless control, which is very convenient to use. In addition, in order to provide a storage space for the remote control 5, a storage cavity 31 is provided on the connecting rod 3, which can store the remote control 5, avoid the remote control 5 from being placed randomly, and avoid having to look for it everywhere when it is needed, and can also effectively prevent the remote control 5 from being lost. At the same time, if the remote control 5 is placed in the storage cavity 31 and is not taken out for use, it is equivalent to converting the wireless control form of the lighting device into a wired control form, thereby providing a variety of control methods.

[0024] The above description is only an embodiment of the utility model, and does not limit the patent protection scope of the utility model. Any equivalent structure or equivalent process transformation made using the contents of the utility model specification and drawings, or directly or indirectly used in other related technical fields, are also included in the patent protection scope of the utility model.

Claims

1. A wireless remote control lighting device for a clock, characterized in that: It includes a clock and an illumination aperture. The clock includes a base, a connecting rod disposed on the base, and a clock body disposed on the connecting rod. The illumination aperture includes an annular lamp shade disposed around the outer periphery of the clock body and an LED color-changing light strip disposed inside the annular lamp shade. The annular lamp shade is detachably mounted on the connecting rod. The clock body is provided with an hour hand and a minute hand extending to the illumination aperture to ensure that the hour hand and the minute hand are still visible in the dark.

2. The wireless remote control lighting device for a clock according to claim 1, characterized in that: The LED color-changing light strip is bonded to the side wall inside the annular lamp shade. The illumination aperture further includes a dimming controller connected to the LED color-changing light strip through a first power cord, a power supply connected to the dimming controller through a second power cord, and a remote control wirelessly connected to the dimming controller. The first power cord is disposed inside the connecting rod. The dimming controller and the power supply are both disposed inside the base. The power supply is provided with an external plug.

3. The wireless remote control lighting device for a clock according to claim 1, characterized in that: The connecting rod is provided with a storage cavity for seamlessly mounting the remote control. A magnetic sheet is adhered to the back of the remote control. A magnetic ring is disposed inside the storage cavity for attracting the magnetic sheet to fix the remote control inside the storage cavity. The connecting rod is further provided with a night light ring located outside the storage cavity for indicating the location of the remote control.

4. The wireless remote control lighting device for a clock according to claim 1, characterized in that: The connecting rod is further provided with a push rod for ejecting the remote control out of the storage cavity. A sliding slot hole is disposed inside the connecting rod at the rear side of the storage cavity. The push rod is slidably mounted in the sliding slot hole. A return spring for resetting the push rod backward is sleeved on the push rod inside the connecting rod.

5. The wireless remote control lighting device for a clock according to claim 1, characterized in that: The annular lamp shade is made of plastic. A first interface is disposed at one end of the annular lamp shade, and a second interface is disposed at the other end of the annular lamp shade. A through hole is radially disposed on the upper side of the connecting rod. The first interface and the second interface are respectively mounted on both sides of the through hole to mount the annular lamp shade on the connecting rod.