Multi-sense-synergy sleep-aiding night lamp
By combining the rotating component with a timer hourglass and using a detection component to automatically control the brightness of the light source, the problem of requiring users to manually adjust time parameters in existing sleep aid nightlights is solved, simplifying the usage process.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHENZHEN WEICHUANGXIN ELECTRONICS CO LTD
- Filing Date
- 2025-07-02
- Publication Date
- 2026-05-08
AI Technical Summary
Existing sleep aid nightlights require users to set time parameters via physical knobs or buttons before each use, increasing the burden on users.
A multi-sensory collaborative sleep aid night light was designed. By combining a rotating component with a timer hourglass, the light source automatically controls its brightness by detecting the amount of sand, reducing the need for manual operation by the user.
It achieves automatic control of the brightness and dimming of the light-emitting element based on the duration of the hourglass, eliminating the need for users to adjust the timing parameters before each use, thus simplifying the usage process.
Smart Images

Figure CN224215271U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of lighting products technology, and in particular relates to a multi-sensory synergistic sleep aid night light. Background Technology
[0002] A sleep-aid nightlight is a healthy home product that integrates optical technology, environmental regulation, and intelligent control. It aims to improve sleep quality by optimizing light and environmental factors. Its main functions include regulating circadian rhythms and melatonin secretion, relieving anxiety and creating a sense of security, optimizing environmental parameters, and providing intelligent sleep management. Common applications include home settings, medical and special environments, the hotel and rehabilitation industry, and integration with the Internet of Things and smart homes.
[0003] In existing technologies, most sleep aid nightlights use physical knobs or buttons to set time parameters, which are then executed by a microcontroller. Users need to rotate the knob to adjust the timer parameters before use and press the button to confirm. This requires users to adjust the timer parameters before each use, increasing the user's burden. Utility Model Content
[0004] The purpose of this utility model embodiment is to provide a multi-sensory collaborative sleep aid night light, which aims to solve the problem that most sleep aid night lights require users to manually adjust the time parameters by rotating or moving the knob before each use, and then confirm the adjustment by clicking a button. This increases the number of manual steps required for most sleep aid night lights to be used.
[0005] This utility model embodiment is implemented as follows: a multi-sensory synergistic sleep aid night light, the multi-sensory synergistic sleep aid night light comprising:
[0006] A rotating assembly is mounted on a lamp holder. The rotating assembly is provided with a rotating rod for connecting to a timing hourglass. The rotating rod is connected to a moving assembly through a guide assembly. The moving assembly drives the guide assembly to move. The guide assembly is used to guide the rotation of the rotating rod, thereby causing the timing hourglass to invert.
[0007] A detection component, which is mounted on a rotating component, is used to detect the amount of sand in the upper part of the hourglass.
[0008] A movable component, comprising a limiting cylinder and a movable frame, wherein the limiting cylinder is mounted on a rotating component and sleeved on the outer side of the end of the lamp holder, the limiting cylinder being used to limit the distance the lamp holder moves, and the movable frame being movably connected to a guide component;
[0009] A lamp holder is used for mounting a light-emitting element. The lamp holder is inserted into a limiting cylinder. The end of the lamp holder is provided with a switch for triggering the light-emitting element to light up or dim. Moving the lamp holder allows control to determine whether the switch triggers the trigger in the limiting cylinder, thereby causing the light-emitting element to light up or dim.
[0010] Preferably, the lamp holder is inserted into the cavity inside the limiting cylinder. The lamp holder includes a mounting part and a connecting part. The mounting part is disc-shaped and has a mounting groove at its center for detachable connection with the light-emitting element. The connecting part is rod-shaped and its end is connected to a switch element. The connecting part is inserted into the limiting cylinder and has an annular stop block for limiting the movement distance of the lamp holder.
[0011] Preferably, the limiting cylinder has a hollow structure, and a set of limiting holes are provided on the inner wall of the limiting cylinder. The limiting holes are used to limit the movement distance between the lamp holder and the moving frame, and the inner wall of the limiting cylinder is used to install a trigger.
[0012] The movable frame is sleeved on the outside of the limiting cylinder and embedded in the limiting hole. The movable frame is connected to the rotating assembly through a first elastic member. The first elastic member is used to drive the movable frame to reset. The movable frame is provided with a first wedge block.
[0013] Preferably, the rotating assembly is further provided with a mounting bracket and an electric actuator. The mounting bracket is used to connect with the limiting cylinder and the first elastic element. The mounting bracket is slidably connected with the movable frame. The mounting bracket is provided with a set of limiting rings. The rotating rod passes through a set of limiting rings respectively. The set of limiting rings is used to restrict the movement of the rotating rod.
[0014] The electric actuator is mounted on the mounting bracket. The output end of the electric actuator is provided with a connecting rod. The end of the connecting rod is connected to the second wedge block through a second elastic element. The second wedge block cooperates with the first wedge block to limit the movement distance of the moving frame.
[0015] Preferably, the mounting bracket includes a first mounting part and a second mounting part, the two ends of the first mounting part are slidably connected to the movable frame through guide holes on the movable frame, and the limiting cylinder is installed on the top surface of the first mounting part;
[0016] The second mounting part is provided with a set and is connected to the bottom surface of the first mounting part respectively. The second mounting part is used to connect with the guide component. The rotating rod passes through the set of second mounting parts and is slidably connected with the guide component. The two opposite sides of the set of second mounting parts are respectively provided with mounting holes for mounting the detection component.
[0017] Preferably, the guide assembly is provided in two sets and is slidably connected to both ends of the rotating rod. The guide assembly includes a guide frame, a telescopic rod, and a third elastic element. The guide frame is sleeved on the outer side of the rotating rod. One end of the guide frame abuts against the side of the movable frame. The other end of the guide frame is provided with an annular baffle. The annular baffle is sleeved on the outer side of the rotating rod. The inner wall of the annular baffle is provided with a slider that is slidably connected to the rotating rod.
[0018] The guide frame is connected to one end of the telescopic rod, and the other end of the telescopic rod is connected to the mounting bracket. The third elastic element is sleeved on the outside of the telescopic rod and is connected to the guide frame and the mounting bracket respectively.
[0019] Preferably, the rotating rod includes a mounting ring and a set of third mounting parts. The mounting ring is used for mounting the hourglass. The set of third mounting parts is connected to the outer wall of the mounting ring. The set of third mounting parts passes through the through holes on the mounting bracket and is slidably connected to the guide assembly. The third mounting part is a rod-shaped structure and is provided with two arc-shaped guide grooves. The two guide grooves are connected end to end by sliding grooves. The inner diameter of the starting end of the guide groove connected to the sliding groove is larger than the inner diameter of the ending end. The slider of the guide frame cooperates with the guide groove so that the guide frame moves along the guide groove, thereby driving the rotating rod and the hourglass to rotate.
[0020] Preferably, the multi-sensory sleep aid night light further includes a lampshade, which is disposed above the lamp holder and is used to protect the light-emitting component mounted on the lamp holder. The lamp base is connected to the rotating assembly, and the lamp base is provided with a movable storage shell. The front of the storage shell is provided with several ventilation holes, and the storage shell is used to place aromatherapy tablets.
[0021] Preferably, the multi-sensory sleep aid night light further includes a control module, which is installed in a cavity inside the lamp holder. The control module is provided with a power interface and is electrically connected to a trigger element.
[0022] This utility model provides a multi-sensory collaborative sleep aid night light. The light fixture is attached to a moving component, and a light-emitting element is mounted on the fixture. A switch is located at the end of the fixture to trigger the light-emitting element to turn on or off. The end of the fixture is inserted into a limiting cylinder within the moving component. The limiting cylinder restricts the movement of the fixture, controlling the contact or separation between the switch at the fixture end and the trigger within the limiting cylinder, thus controlling the light-emitting element's brightness. A rotating component connected to the moving component is primarily used to connect to a timing hourglass. When the fixture moves, it causes the moving component, which is fitted outside the limiting cylinder, to move as well. The moving component, through a guide component, causes the rotating rod and the timing hourglass to rotate, allowing the hourglass to keep track of the duration the light-emitting element is illuminated. A detection component detects the amount of sand in the hourglass and outputs an electrical signal to control the repositioning of the moving component and the fixture, thereby controlling the brightness and dimming of the light-emitting element. This eliminates the need for user adjustment of the timing duration before use, reducing manual operation steps by utilizing the hourglass's duration setting. Attached Figure Description
[0023] Figure 1 A three-dimensional structural diagram of a multi-sensory synergistic sleep aid night light provided for an embodiment of this utility model;
[0024] Figure 2 A schematic diagram of the internal structure of a multi-sensory synergistic sleep aid night light provided for an embodiment of this utility model;
[0025] Figure 3 A cross-sectional view of a multi-sensory synergistic sleep aid night light provided for an embodiment of this utility model;
[0026] Figure 4 This is a schematic diagram of the moving component and rotating component in a multi-sensory collaborative sleep aid night light provided by an embodiment of the present invention;
[0027] Figure 5 for Figure 4 A magnified structural diagram of point A in the middle;
[0028] Figure 6 A schematic diagram of the structure of a multi-sensory collaborative sleep aid night light holder when it is lowered, provided for an embodiment of this utility model;
[0029] Figure 7 A cross-sectional view of a multi-sensory synergistic sleep aid night light provided for an embodiment of this utility model;
[0030] Figure 8 This is a schematic diagram of the moving component and rotating component in a multi-sensory collaborative sleep aid night light provided by an embodiment of the present invention;
[0031] Figure 9 for Figure 8A magnified structural diagram of a portion of point B in the middle.
[0032] In the attached diagram: 1. Lamp holder; 11. Mounting part; 111. Mounting groove; 12. Connecting part; 121. Annular stop; 13. Switch; 14. Trigger; 2. Moving assembly; 21. Limiting cylinder; 211. Limiting hole; 22. Moving frame; 221. First wedge; 222. First elastic element; 223. Guide hole; 3. Rotating assembly; 31. Guide assembly; 311. Guide frame; 312. Annular baffle; 313. Third elastic element; 314. Telescopic rod; 32. Rotating rod; 321. Mounting ring; 322. Guide groove; 323. Slide groove; 33. Mounting bracket; 331. Limiting ring; 34. Electric push rod; 341. Connecting rod; 342. Second wedge; 343. Second elastic element; 4. Timer hourglass; 5. Detection assembly; 6. Lamp holder; 61. Storage shell; 7. Lampshade. Detailed Implementation
[0033] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present utility model and are not intended to limit the present utility model.
[0034] The specific implementation of this utility model will be described in detail below with reference to specific embodiments.
[0035] like Figure 1 The diagram shown is a structural diagram of a multi-sensory synergistic sleep aid night light provided in an embodiment of the present invention. It includes: a rotating component 3, which is mounted on a lamp holder 6. The rotating component 3 is provided with a rotating rod 32 for connecting to a timing hourglass 4. The rotating rod 32 is connected to a moving component 2 through a guide component 31. The moving component 2 drives the guide component 31 to move. The guide component 31 is used to guide the rotation of the rotating rod 32, thereby causing the timing hourglass 4 to invert.
[0036] The detection component 5 is mounted on the rotating component 3 and is used to detect the amount of sand in the upper part of the timekeeping hourglass 4.
[0037] The moving component 2 includes a limiting cylinder 21 and a moving frame 22. The limiting cylinder 21 is mounted on the rotating component 3 and is sleeved on the outer side of the end of the lamp holder 1. The limiting cylinder 21 is used to limit the distance the lamp holder 1 moves. The moving frame 22 is movably connected to the guide component 31.
[0038] The lamp holder 1 is used for mounting the light-emitting element. The lamp holder 1 is inserted into the limiting cylinder 21. The end of the lamp holder 1 is provided with a switch 13 for triggering the light-emitting element to light up or dim. Moving the lamp holder 1 is to control whether the switch 13 triggers the trigger 14 in the limiting cylinder 21, thereby causing the light-emitting element to light up or dim.
[0039] In this embodiment of the invention, preferably, the multi-sensory sleep aid night light can be used by users in a home setting before bedtime. It can be timed to automatically turn off after the user falls asleep, regulating circadian rhythms and melatonin secretion, alleviating anxiety, and creating a sense of security through the light emitted by the light source. This intelligent sleep management system mainly comprises a lamp holder 1, a moving component 2, a rotating component 3, and a detection component 5. The rotating component 3 is mounted on a lamp base 6 and is movably connected to the moving component 2. The lamp holder 1 is inserted into the moving component 2 and is located above the entire multi-sensory sleep aid night light. A light-emitting element is installed at the center of the lamp holder 1. The lamp holder 1 is inserted into the limiting cylinder 21 of the moving component 2, and a trigger element 14 is provided inside the limiting cylinder 21. The moving frame 22, fitted onto the outer side of the limiting cylinder 21, is movably connected to the rotating component 3. When the lamp holder 1 is moved so that the switch element 13 at the end of the lamp holder 1 contacts the trigger element 14 inside the limiting cylinder 21, the light-emitting element illuminates. When the moving frame 22 moves, it also pushes the guide component 31 to move, causing the rotating rod 32 on the rotating component 3 to drive the timing hourglass 4 to rotate and start measuring time. When the sand runs out, the timing ends. The detection component 5 detects that the sand in the upper part of the timing hourglass 4 has run out and outputs an electrical signal to control the moving frame 22 and the lamp holder 1 to reset. At this time, the switch 13 on the lamp holder 1 is disconnected from the trigger 14 in the limit cylinder 21, and the light-emitting element dims. This completes the timed shutdown of the multi-sensory collaborative sleep aid night light. During the entire use process, the user does not need to adjust it before each use, reducing the steps of manual operation. When the multi-sensory collaborative sleep aid night light is turned on, it is only necessary to push the lamp holder 1 to make the switch 13, which is electrically connected to the light-emitting element, contact the trigger 14 and the light-emitting element lights up. After the sand in the upper part of the timing hourglass 4 has run out, the detection component 5 detects the sand flowing in and outputs an electrical signal. The moving component 2 drives the lamp holder 1 to reset, the switch 13 is disconnected from the trigger 14, and the light-emitting element is automatically turned off.
[0040] In one embodiment of this utility model, a lamp holder 1 is provided and inserted into a movable component 2. A light-emitting element is mounted on the lamp holder 1. A switch 13 is provided at the end of the lamp holder 1 to trigger the light-emitting element to light up or dim. The end of the lamp holder 1 is inserted into a limiting cylinder 21 of the movable component 2. The limiting cylinder 21 restricts the movement distance of the lamp holder 1, thereby controlling the contact or separation between the switch 13 at the end of the lamp holder 1 and the trigger 14 inside the limiting cylinder 21, thus controlling the light-emitting element to light up or dim. The rotating component 3, which is movably connected to the movable component 22, is mainly used to interact with a timer hourglass 4. When the lamp holder 1 moves, it causes the movable frame 22, which is sleeved outside the limiting cylinder 21, to move as well. The movable frame 22 moves and moves through the guide component 31, causing the rotating rod 32 and the timing hourglass 4 to rotate, so that the timing hourglass 4 can keep track of the time and control the duration of the light-emitting element's illumination. The detection component 5 detects the amount of sand in the timing hourglass 4 and outputs an electrical signal to control the movement and reset of the movable frame 22 and the lamp holder 1, thereby controlling the brightness and dimming of the light-emitting element. The user does not need to adjust the timing duration before use. The duration setting of the timing hourglass 4 reduces the number of manual operation steps for the user.
[0041] like Figure 1-9 As shown, in a preferred embodiment of the present invention, the lamp holder 1 is inserted into the internal cavity of the limiting cylinder 21. The lamp holder 1 includes a mounting part 11 and a connecting part 12. The mounting part 11 is disc-shaped, and a mounting groove 111 for detachable connection with the light-emitting element is provided at the center of the mounting part 11. The connecting part 12 is rod-shaped, and its end is connected to the switch element 13. The connecting part 12 is inserted into the limiting cylinder 21, and an annular stop 121 is provided on the connecting part 12. The annular stop 121 is used to limit the movement distance of the lamp holder 1.
[0042] In this embodiment of the utility model, preferably, the lamp holder 1 inserted into the limiting cylinder 21 mainly includes an installation part 11 and a connecting part 12. The disc-shaped installation part 11 can be used for the installation of the light-emitting element. An installation groove 111 is provided at the center of the installation part 11. The inner wall of the installation groove 111 is provided with threads to facilitate the threaded connection of the light-emitting element with it. The light-emitting element can be a light bulb. The rod-shaped connecting part 12 located below the disc-shaped installation part 11 can also be a hollow structure to facilitate the electrical connection between the switch 13 and the light-emitting element. The switch 13 can be installed and fixed at the end of the connecting part 12 and the connecting part 12 is inserted into the inner cavity of the limiting cylinder 21. An annular stop 121 is provided on the outer wall of the connecting part 12 to limit the movement distance of the lamp holder 1.
[0043] like Figure 1-9As shown, in a preferred embodiment of the present utility model, the limiting cylinder 21 has a hollow structure, and a set of limiting holes 211 are provided on the inner wall of the limiting cylinder 21. The limiting holes 211 are used to limit the moving distance between the lamp holder 1 and the moving frame 22, and the inner wall of the limiting cylinder 21 is used to install the trigger 14.
[0044] The movable frame 22 is sleeved on the outside of the limiting cylinder 21 and embedded in the limiting hole 211. The movable frame 22 is connected to the rotating assembly 3 through the first elastic member 222. The first elastic member 222 is used to drive the movable frame 22 to reset. The movable frame 22 is provided with a first wedge block 221.
[0045] In this embodiment of the present invention, preferably, the hollow limiting cylinder 21 is mounted on the rotating assembly 3, and the limiting cylinder 21 has a limiting hole 211 on its side for limiting the moving distance of the moving frame 22. The moving frame 22 can be a movable U-shaped frame. The plate-shaped middle part of the moving frame 22 can be provided with a through hole to facilitate being sleeved on the outside of the limiting cylinder 21, and a protrusion is provided on the wall of the through hole to facilitate contact with the lamp holder 1 inside the limiting cylinder 21. The rod-shaped side wings of the moving frame 22 can be curved rods and are provided with guide holes 223. The moving frame 22 is sleeved and embedded in the limiting hole 211 and located in the limiting cylinder. The lamp holder 1 inside 21 is connected to the connecting part 12. The annular stop 121 on the connecting part 12 can be used to position the moving frame 22. When the moving frame 22 abuts against the connecting part 12 of the lamp holder 1, the lamp holder 1 is pushed and the annular stop 121 of the positioning moving frame 22 drives the abutting moving frame 22 to protrude, so that the moving frame 22 moves synchronously when the lamp holder 1 is moved. The movement stroke of the lamp holder 1 and the moving frame 22 is limited by the limiting hole 211. The moving frame 22 is provided with a first elastic member 222 so that after the timing hourglass 4 finishes timing, the elastic force of the first elastic member 222 drives the moving frame 22 and the lamp holder 1 to reset.
[0046] like Figure 1-9 As shown, in a preferred embodiment of the present invention, the rotating assembly 3 is further provided with a mounting bracket 33 and an electric push rod 34. The mounting bracket 33 is used to connect with the limiting cylinder 21 and the first elastic member 222. The mounting bracket 33 is slidably connected with the moving frame 22. The mounting bracket 33 is provided with a set of limiting rings 331. The rotating rod 32 passes through a set of limiting rings 331 respectively. The set of limiting rings 331 is used to restrict the movement of the rotating rod 32.
[0047] The electric actuator 34 is mounted on the mounting bracket 33. The output end of the electric actuator 34 is provided with a connecting rod 341. The end of the connecting rod 341 is connected to the second wedge 342 through the second elastic member 343. The second wedge 342 cooperates with the first wedge 221 to limit the movement distance of the moving frame 22.
[0048] In this embodiment of the present invention, preferably, the rotating assembly 3 utilizes the connection between the mounting bracket 33, the limiting cylinder 21, and the first elastic member 222, so that the limiting cylinder 21 is mounted on the top surface of the mounting bracket 33, and the first elastic member 222 is sleeved on the outside of the limiting cylinder 21. One end of the first elastic member 222 is fixedly connected to the movable frame 22, and the other end is fixedly connected to the top surface of the mounting bracket 33. When the lamp holder 1 and the movable frame 22 move, the first elastic member 222 can be pressed down or stretched. When the movable frame 22 is pressed down, the first wedge 221 and the second wedge 3 on the connecting rod 341 of the electric push rod 34 are connected. The 42 components work together to keep the switch 13 inside the lamp holder 1 in contact with the trigger 14 inside the limit cylinder 21, causing the light-emitting element to keep shining. When the sand in the upper part of the timing hourglass 4 runs out, the electrical signal detected by the detection component 5 is output to the electric push rod 34. The electric push rod 34 drives the connecting rod 341 to move, causing the second wedge 342 to disengage from the first wedge 221. Under the elastic force of the first elastic component 222, the moving frame 22 and the lamp holder 1 move, causing the switch 13 to disengage from the trigger 14. At this time, the light-emitting element dims, which means the timing is over, and the light-emitting element automatically turns off.
[0049] like Figure 1-9 As shown, in a preferred embodiment of the present utility model, the mounting bracket 33 includes a first mounting part 11 and a second mounting part 11. The two ends of the first mounting part 11 are slidably connected to the movable frame 22 through guide holes 223 on the movable frame 22, and the limiting cylinder 21 is installed on the top surface of the first mounting part 11.
[0050] The second mounting part 11 is provided with a set and is connected to the bottom surface of the first mounting part 11 respectively. The second mounting part 11 is used to connect with the guide component 31. The rotating rod 32 passes through the set of second mounting parts 11 and is slidably connected with the guide component 31. The two opposite sides of the set of second mounting parts 11 are respectively provided with mounting holes for mounting the detection component 5.
[0051] In this embodiment of the utility model, preferably, the mounting bracket 33 for mounting the limiting cylinder 21 mainly includes a first mounting part 11 and a second mounting part 11. The entire mounting bracket 33 can be U-shaped. The bottom surface of the first mounting part 11 is connected to a set of second mounting parts 11. The two ends of the first mounting part 11 are respectively inserted into the guide holes 223 on the movable frame 22. The top surface of the first mounting part 11 is used to mount the limiting cylinder 21 and the first elastic member 222. A set of second mounting parts 11 is provided with coaxial through holes so that the rotating rod 32 can pass through to limit the movement of the rotating rod 32. Above the through holes, a mounting hole for mounting the detection component 5 can be provided. The detection component 5 can be a set of through-beam sensors used to detect whether the sand in the upper part of the timer hourglass 4 has run out. When the sand runs out, an electrical signal will be output to make the electric push rod 34 drive the second wedge 342 on the connecting rod 341 to move, so that the first wedge 221 and the second wedge 342 are disengaged, thereby resetting the lamp holder 1 and the movable frame 22 and turning off the light-emitting element.
[0052] like Figure 1-9 As shown, in a preferred embodiment of the present invention, the guide assembly 31 is provided with two sets and is slidably connected to both ends of the rotating rod 32 respectively. The guide assembly 31 includes a guide frame 311, a telescopic rod 314 and a third elastic member 313. The guide frame 311 is sleeved on the outer side of the rotating rod 32. One end of the guide frame 311 abuts against the side of the movable frame 22. The other end of the guide frame 311 is provided with an annular baffle 312. The annular baffle 312 is sleeved on the outer side of the rotating rod 32. The inner wall of the annular baffle 312 is provided with a slider that is slidably connected to the rotating rod 32.
[0053] The guide frame 311 is connected to one end of the telescopic rod 314, and the other end of the telescopic rod 314 is connected to the mounting bracket 33. The third elastic member 313 is sleeved on the outside of the telescopic rod 314 and is connected to the guide frame 311 and the mounting bracket 33 respectively.
[0054] In this embodiment of the utility model, preferably, the guide assembly 31 is provided in two sets and is respectively connected to both ends of the rotating rod 32. The guide frame 311 contacts the moving frame 22. When the moving frame 22 moves, it will push the two guide assemblies 31 to move in opposite directions, thereby causing the rotating rod 32 to rotate. The guide assembly 31 is fixedly connected to the mounting bracket 33 through the telescopic rod 314, and a third elastic member 313 is sleeved on the outside of the telescopic rod 314 to facilitate the reset of the guide frame 311. When the moving frame 22 moves down, the guide frame 311 is pushed by the moving frame 22. The two guide frames 311 move towards each other and the slider on the annular baffle 312 slides, causing the rotating rod 32 to rotate. At this time, the hourglass 4 rotates and starts timing. After the timing is completed, the moving frame 22 moves up, and the guide frame 311 is reset under the elastic force of the third elastic member 313.
[0055] like Figure 1-9 As shown, in a preferred embodiment of this utility model, the rotating rod 32 includes a mounting ring 321 and a set of third mounting parts 11. The mounting ring 321 is used for mounting the hourglass 4. The set of third mounting parts 11 are respectively connected to the outer wall of the mounting ring 321. The set of third mounting parts 11 are respectively slidably connected to the guide assembly 31 through the through holes on the mounting bracket 33. The third mounting part 11 is a rod-shaped structure. The third mounting part 11 is provided with two arc-shaped guide grooves 322. The two guide grooves 322 are connected end to end by sliding grooves 323. The inner diameter of the starting end of the guide groove 322 connected to the sliding groove 323 is larger than the inner diameter of the ending end. The slider of the guide frame 311 cooperates with the guide groove 322 so that the guide frame 311 moves along the guide groove 322, thereby driving the rotating rod 32 and the hourglass 4 to rotate.
[0056] In this embodiment of the present invention, preferably, a rotating rod 32 of a certain length can be provided with a mounting ring 321 for mounting the hourglass 4 at its center. The mounting ring 321 is fitted around the narrow middle part of the hourglass 4 to restrict its movement. The rod-shaped third mounting portions 11 located on both sides of the mounting ring 321 can be collinear. The third mounting portions 11 can be round rods. A set of arc-shaped guide grooves 322 are provided on the outer wall surface of the third mounting portions 11. The guide grooves 322 are arranged around the outer diameter of the third mounting portions 11 in a spiral arc shape, and one end of the first arc-shaped guide groove 322 is aligned with the second arc-shaped guide groove 32 on the same axial direction. One end of 2 is connected via a slide groove 323, and the two ends of the slide groove 323, the end closer to the guide component 31 is the starting end of the slider sliding, and the end closer to the mounting ring 321 is the ending end of the slider sliding. In the initial state, the slider is engaged with the guide groove 322, and the side closer to the starting end with the larger inner diameter is located in the guide groove 322, not at the junction of the guide groove 322 and the slide groove 323. When the lamp holder 1 and the moving frame 22 move down, the first wedge 221 and the second wedge 342 on the moving frame 22 engage and lock the moving frame 22. The moving frame 22 moves and pushes the guide frame 311 to move along the length of the telescopic rod 314 and compress the third elastic force. During the movement of component 313, the slider on the annular baffle 312 moves along the first arc-shaped guide groove 322, causing the rotating rod 32 to rotate in the direction of slider movement. At this time, the rotation angle of the rotating rod 32 can be slightly less than 180 degrees and greater than 170 degrees, with some angular deviation so that the slider can be located at one end of the guide groove 322 with a larger inner diameter at the beginning. At this time, the hourglass 4 is inverted, causing the sand in the upper part to flow to the lower part, thus starting the timing. After the timing is completed, the detection component 5 detects that the sand in the upper part has flowed out and outputs an electrical signal to control the electric push rod 34 to drive the second wedge block 342 on the connecting rod 341 to move. The movement causes the second wedge 342 to disengage from the first wedge 221. The moving frame 22 and the lamp holder 1 move upward under the elastic force of the first elastic member 222. The switch member 13, which is electrically connected to the light-emitting element, disengages from the trigger member 14 in the limiting cylinder 21, causing the light-emitting element to dim. When the moving frame 22 moves upward, the guide frame 311 moves in the opposite direction under the elastic force of the third elastic member 313. At this time, the slider on the annular baffle 312 moves along the slide groove 323 and, according to the gravity of the hourglass 4 itself, the slider will move to the end with the larger inner diameter of the guide groove 322 so that when the lamp holder 1 and the moving frame 22 are moved downward next time, the slider will move along the guide groove 322.
[0057] like Figure 1-9As shown, in a preferred embodiment of the present invention, the multi-sensory synergistic sleep aid night light further includes a lampshade 7, which is disposed above the lamp holder 1 and is used to protect the light-emitting component installed on the lamp holder 1. The lamp base 6 is connected to the rotating component 3, and the lamp base 6 is provided with a movable storage shell 61. The front of the storage shell 61 is provided with several ventilation holes, and the storage shell 61 is used to place aromatherapy tablets.
[0058] In a preferred embodiment of this utility model, the multi-sensory synergistic sleep aid night light further includes a lampshade 7 placed on the lamp holder 1 and a lamp base 6 installed at the bottom of the mounting bracket 33 of the rotating component 3. The lampshade 7 can be a mushroom-shaped lampshade 7, which can effectively reduce glare and provide a more comfortable lighting environment to aid sleep. The lamp base 6, which is fixedly connected to the mounting bracket 33, has a certain cavity and is provided with a drawer-like storage shell 61, and ventilation holes are provided on the storage shell 61. Aromatherapy tablets are placed inside the storage shell 61 and have a sleep-aiding effect through the ventilation holes.
[0059] like Figure 1-9 As shown in the preferred embodiment of this utility model, the multi-sensory collaborative sleep aid night light also includes a control module. The control module is installed in the cavity inside the lamp holder 6. The control module is provided with a power interface and is electrically connected to the trigger 14.
[0060] In this embodiment of the utility model, preferably, a control module is provided in the cavity inside the lamp holder 6, and the control module is electrically connected to the trigger 14 in the limiting cylinder 21 so that when the switch 13 contacts the trigger 14, the circuit is connected and the light-emitting element lights up; when the contact is broken, the light-emitting element dims. The control module is provided with a power interface so that it can be connected to an external power source or used for charging via a connecting wire.
[0061] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.
Claims
1. A multi-sensory synergistic sleep-aiding night light, characterized in that, The multi-sensory synergistic sleep aid night light includes: A rotating assembly is mounted on a lamp holder. The rotating assembly is provided with a rotating rod for connecting to a timing hourglass. The rotating rod is connected to a moving assembly through a guide assembly. The moving assembly drives the guide assembly to move. The guide assembly is used to guide the rotation of the rotating rod, thereby causing the timing hourglass to invert. A detection component, which is mounted on a rotating component, is used to detect the amount of sand in the upper part of the hourglass. A movable component, comprising a limiting cylinder and a movable frame, wherein the limiting cylinder is mounted on a rotating component and sleeved on the outer side of the end of the lamp holder, the limiting cylinder being used to limit the distance the lamp holder moves, and the movable frame being movably connected to a guide component; A lamp holder is used for mounting a light-emitting element. The lamp holder is inserted into a limiting cylinder. The end of the lamp holder is provided with a switch for triggering the light-emitting element to light up or dim. Moving the lamp holder allows control to determine whether the switch triggers the trigger in the limiting cylinder, thereby causing the light-emitting element to light up or dim.
2. The multi-sensory synergistic sleep aid night light according to claim 1, characterized in that, The lamp holder is inserted into the cavity inside the limiting cylinder. The lamp holder includes a mounting part and a connecting part. The mounting part is disc-shaped and has a mounting groove at its center for detachable connection with the light-emitting element. The connecting part is rod-shaped and its end is connected to a switch element. The connecting part is inserted into the limiting cylinder and has an annular stop block for limiting the movement distance of the lamp holder.
3. The multi-sensory synergistic sleep aid night light according to claim 1, characterized in that, The limiting cylinder has a hollow structure, and a set of limiting holes are provided on the inner wall of the limiting cylinder. The limiting holes are used to limit the movement distance between the lamp holder and the moving frame, and the inner wall of the limiting cylinder is used to install a trigger. The movable frame is sleeved on the outside of the limiting cylinder and embedded in the limiting hole. The movable frame is connected to the rotating assembly through a first elastic member. The first elastic member is used to drive the movable frame to reset. The movable frame is provided with a first wedge block.
4. The multi-sensory synergistic sleep aid night light according to claim 3, characterized in that, The rotating assembly is also provided with a mounting bracket and an electric actuator. The mounting bracket is used to connect with the limiting cylinder and the first elastic element. The mounting bracket is slidably connected with the movable frame. The mounting bracket is provided with a set of limiting rings. The rotating rod passes through a set of limiting rings. The set of limiting rings is used to restrict the movement of the rotating rod. The electric actuator is mounted on the mounting bracket. The output end of the electric actuator is provided with a connecting rod. The end of the connecting rod is connected to the second wedge block through a second elastic element. The second wedge block cooperates with the first wedge block to limit the movement distance of the moving frame.
5. The multi-sensory synergistic sleep aid night light according to claim 4, characterized in that, The mounting bracket includes a first mounting part and a second mounting part. The two ends of the first mounting part are slidably connected to the movable frame through guide holes on the movable frame. The limiting cylinder is installed on the top surface of the first mounting part. The second mounting part is provided with a set and is connected to the bottom surface of the first mounting part respectively. The second mounting part is used to connect with the guide component. The rotating rod passes through the set of second mounting parts and is slidably connected with the guide component. The two opposite sides of the set of second mounting parts are respectively provided with mounting holes for mounting the detection component.
6. The multi-sensory synergistic sleep aid night light according to claim 4, characterized in that, The guide assembly is provided in two sets and is slidably connected to both ends of the rotating rod. The guide assembly includes a guide frame, a telescopic rod and a third elastic element. The guide frame is sleeved on the outer side of the rotating rod. One end of the guide frame abuts against the side of the movable frame. The other end of the guide frame is provided with an annular baffle. The annular baffle is sleeved on the outer side of the rotating rod. The inner wall of the annular baffle is provided with a slider that is slidably connected to the rotating rod. The guide frame is connected to one end of the telescopic rod, and the other end of the telescopic rod is connected to the mounting bracket. The third elastic element is sleeved on the outside of the telescopic rod and is connected to the guide frame and the mounting bracket respectively.
7. The multi-sensory synergistic sleep aid night light according to claim 6, characterized in that, The rotating rod includes a mounting ring and a set of third mounting parts. The mounting ring is used for mounting the hourglass. The set of third mounting parts is connected to the outer wall of the mounting ring. The set of third mounting parts passes through the through holes on the mounting bracket and is slidably connected to the guide assembly. The third mounting part is a rod-shaped structure and is provided with two arc-shaped guide grooves. The two guide grooves are connected end to end by sliding grooves. The inner diameter of the starting end of the guide groove and the sliding groove is larger than the inner diameter of the ending end. The slider of the guide frame cooperates with the guide groove so that the guide frame moves along the guide groove, thereby driving the rotating rod and the hourglass to rotate.
8. The multi-sensory synergistic sleep aid night light according to claim 1, characterized in that, The multi-sensory sleep aid night light also includes a lampshade, which is positioned above the lamp holder and is used to protect the light-emitting components mounted on the lamp holder. The lamp base is connected to a rotating assembly, and the lamp base is provided with a movable storage shell. The front of the storage shell is provided with several ventilation holes, and the storage shell is used to hold aromatherapy tablets.
9. The multi-sensory synergistic sleep aid night light according to claim 8, characterized in that, The multi-sensory sleep aid night light also includes a control module, which is installed in a cavity inside the lamp holder. The control module is equipped with a power interface and is electrically connected to a trigger element.