Sound box alarm clock turn-off device based on front proximity induction

The speaker alarm clock automatically shuts off by using front proximity sensing technology, solving the problem of inconvenient operation of physical buttons, achieving convenient control and energy saving, and improving the user experience.

CN223827974UActive Publication Date: 2026-01-23HANSONG NANJING TECH LTD
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Patent Information

Application Number
CN202520398066.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-07
Publication Date
2026-01-23
Estimated Expiration
2035-03-07

AI Technical Summary

Technical Problem

The alarm function of existing smart speakers and alarm clocks requires physical button operation to turn off, which is inconvenient, especially in low-light environments. Furthermore, the continuous display or broadcast when no one is around wastes power and reduces battery life.

Method used

The speaker alarm clock adopts a front proximity sensor-based shut-off device. The sensor component detects the user's approach and automatically shuts off the ringing. Combined with the control motherboard to control the display and ringing components, it achieves operation without touching buttons and adjusts the display and lighting according to ambient light and distance.

Benefits of technology

It improves user-friendliness, saves energy, extends battery life, enhances user experience, and increases device intelligence.

✦ Generated by Eureka AI based on patent content.

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Abstract

The embodiment of the utility model provides a sound box alarm clock turn-off device based on front proximity induction. The device comprises a shell, a display assembly, a ringing assembly, an induction assembly and a control mainboard. The shell is provided with a first through groove, and the display assembly is arranged in the first through groove; the sensing assembly, the ringing assembly and the control mainboard are arranged in the shell; the induction assembly is annular and is arranged on the side, facing the first through groove, of the control main board. The sensing assembly has a sensing area; the display assembly, the ringing assembly and the induction assembly are electrically connected with the control mainboard. The device can sense the approaching of the user and automatically turn off the bell, so that the electric energy is saved, the user operation is more convenient, and the user experience is improved.
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Description

Technical Field

[0001] This manual relates to the field of smart speakers and smart alarm clocks, and in particular to a speaker alarm clock shut-off device based on front proximity sensing. Background Technology

[0002] In smart speakers or Bluetooth speakers, users can set alarms, which will then emit sounds, ringtones, music, or voice reminders at the scheduled time. The alarm clock's stop and timer functions are usually switched using physical buttons, requiring users to locate the button to operate, especially in low-light conditions. Furthermore, alarm clocks typically use independent power supplies, continuously displaying or broadcasting when no one is around, wasting energy and reducing battery life.

[0003] Therefore, it is necessary to provide a speaker alarm clock shut-off device based on front proximity sensing, which can sense the user's approach and automatically shut off the ringing, saving energy and making the operation more convenient for the user, thereby improving the user experience. Utility Model Content

[0004] This specification provides one or more embodiments of a speaker alarm clock shut-off device based on front proximity sensing. The device includes a housing, a display component, a ringing component, a sensing component, and a control mainboard. The housing has a first through slot, and the display component is disposed within the first through slot. The sensing component, the ringing component, and the control mainboard are disposed within the housing. The sensing component is annular and is disposed on the control mainboard on one side facing the first through slot. The sensing component has a sensing area. The display component, the ringing component, and the sensing component are electrically connected to the control mainboard. Attached Figure Description

[0005] This specification will be further described by way of exemplary embodiments, which will be described in detail with reference to the accompanying drawings. These embodiments are not limiting; in these embodiments, the same reference numerals denote the same structures, wherein:

[0006] Figure 1 This is a schematic diagram of a speaker alarm clock shut-off device based on front proximity sensing, as shown in some embodiments of this specification.

[0007] Figure 2 These are application scenario diagrams of the control motherboard shown in some embodiments of this specification;

[0008] Figure 3 This is a schematic diagram of the structure of an induction coil according to some embodiments of this specification;

[0009] Figure 4This is an exploded view of the structure of a speaker alarm clock shut-off device based on front proximity sensing, as shown in some embodiments of this specification.

[0010] Figure 5 This is an exploded view of the structure of a speaker alarm clock shut-off device based on front proximity sensing, as shown in some other embodiments of this specification.

[0011] Figure 6 This is a schematic diagram of the sensor position in a speaker alarm clock shut-off device based on front proximity sensing, as shown in some embodiments of this specification.

[0012] Figure 7 This is a schematic diagram of the installation position of the sensing sensor according to some embodiments of this specification;

[0013] Figure 8 This is a schematic diagram of the installation position of the sensing sensor according to other embodiments of this specification. Detailed Implementation

[0014] To more clearly illustrate the technical solutions of the embodiments in this specification, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are merely some examples or embodiments of this specification. For those skilled in the art, these drawings can be applied to other similar scenarios without creative effort. Unless obvious from the context or otherwise specified, the same reference numerals in the drawings represent the same structures or operations.

[0015] It should be understood that the terms “system,” “device,” “unit,” and / or “module” used herein are one way to distinguish different components, elements, parts, sections, or assemblies at different levels. However, if other terms can achieve the same purpose, they may be replaced by other expressions.

[0016] As indicated in this specification, unless the context clearly indicates otherwise, the words "a," "an," "an," and / or "the" do not specifically refer to the singular and may also include the plural. Generally speaking, the terms "comprising" and "including" only indicate the inclusion of explicitly identified steps and elements, which do not constitute an exclusive list, and the method or apparatus may also include other steps or elements.

[0017] Existing alarm clocks or speakers often use physical buttons to turn off, requiring precise pressing of the button location. Sometimes, users even need to search for the button while half-asleep, which not only degrades the user experience but can also cause the button to malfunction due to environmental factors (such as humidity). Therefore, this paper proposes a speaker alarm clock turning-off device based on front proximity sensing. Based on the principle of proximity sensing, the alarm clock or speaker can be turned off without touching a button, simplifying operation and improving the reliability and user experience of the alarm clock or speaker.

[0018] Figure 1 This is a schematic diagram of a speaker alarm clock shut-off device based on front proximity sensing, as shown in some embodiments of this specification. Figure 2 This is an application scenario diagram of the control motherboard shown in some embodiments of this specification.

[0019] In some embodiments, such as Figure 1 and Figure 2 As shown, the speaker alarm clock shut-off device based on front proximity sensing includes a housing 1, a display component 2, a ringing component 3, a sensing component 4, and a control mainboard 5. The housing 1 has a first through slot 11, and the display component 2 is disposed within the first through slot 11. The sensing component 4, the ringing component 3, and the control mainboard 5 are disposed within the housing 1. The sensing component 4 is annular and is disposed on the control mainboard 5 on the side facing the first through slot 11. The sensing component 4 has a sensing area. The display component 2, the ringing component 3, and the sensing component 4 are electrically connected to the control mainboard 5. In some embodiments, the speaker alarm clock shut-off device based on front proximity sensing can be installed inside a speaker or alarm clock, or as part of a speaker or alarm clock. In some embodiments, the speaker alarm clock shut-off device based on front proximity sensing can also be partially installed inside a speaker or alarm clock, or connected to a speaker or alarm clock.

[0020] Housing 1 is the external structural component of the speaker alarm clock shut-off device based on front proximity sensing. Housing 1 is used to protect the internal components of the speaker alarm clock shut-off device based on front proximity sensing (such as the ringing component 3, the sensing component 4, and the control board 5) from damage.

[0021] The first through slot 11 is a through slot on the housing for mounting the display component 2. In some embodiments, the first through slot 11 is located on one side of the housing.

[0022] Display component 2 is used to display information related to the speaker alarm clock shutdown device based on front proximity sensing (such as time, date, or other information). In some embodiments, display component 2 includes at least one of light-emitting diode (LED), liquid crystal display (LCD), digital tube, etc. The shape of display component 2 matches the first through slot 11. For example, display component 2 and first through slot 11 can be rectangles, circles, or other shapes of matching size.

[0023] The sensing component 4 is used to sense the proximity of a user. In some embodiments, the contour of the sensing component 4 is adapted to the contour of the housing 1. For example, the sensing component 4 may be an annular shape surrounding the inner surface of the housing 1.

[0024] The sensing area refers to the effective area where the sensing component 4 can sense the target object (such as a user, the user's finger, etc.).

[0025] The sensing component 4 is designed as a ring, which can generate a closed and uniform electric field, thereby creating a sensing area. It is sensitive to the target object, and the sensing effect of the sensing area is uniform. The sensing component 4 is located on the control main board 5 facing the first through slot 11, so that the sensing area of ​​the sensing component 4 faces the first through slot 11, that is, towards the direction of the alarm clock time, date or other information display, improving the convenience of user operation.

[0026] In some embodiments, the sensing component 4 is configured to acquire a first distance and send it to the control motherboard 5. The first distance is the distance between the sensing component 4 and the user. The control motherboard 5 can control the display component 2 and the ringing component 3 based on the first distance, thereby making the sensing and control of the speaker alarm clock shut-off device based on front proximity sensing more versatile. See the following description of the control motherboard for further details.

[0027] Figure 3 This is a schematic diagram of the structure of an induction coil according to some embodiments of this specification.

[0028] In some embodiments, such as Figure 3 As shown, the sensing component 4 includes an induction coil 41.

[0029] The shape of the induction coil 41 matches the shape of the housing 1. For example, when the housing 1 is square, the annular induction coil is a loop shape that surrounds the inner surface of the housing 1.

[0030] In some embodiments, the induction coil 41 can be a capacitive induction coil, where the capacitance of the capacitive induction coil changes when an object approaches.

[0031] In some embodiments, such as Figure 3As shown, the induction coil 41 is integrated on the control main board 5. The induction coil 41 is located around the control main board. When a target object approaches the sensing area of ​​the induction coil 41, the capacitance of the induction coil 41 changes. The induction coil 41 can convert the change in capacitance into an electrical signal and send it to the control main board 5, thereby controlling the display component 2 and the ringing component 3.

[0032] By incorporating an induction coil, changes in capacitance can be used to detect the approach of an object. The induction coil has a short response time, enabling rapid detection of object proximity or departure. Using an induction coil as a sensing component allows alarm clocks to be turned off without physical contact, while also improving the sensitivity of speaker alarm clock shut-off mechanisms based on front proximity sensing.

[0033] The ringing component 3 is used to generate an alert tone. For example, the ringing component 3 can be a buzzer or a speaker. When the ringing component 3 generates an alert tone, the display component 2 displays relevant information (such as time, date, or other information) of the speaker alarm clock shutdown device based on the front proximity sensor. The alert tone can be a ringing sound, a voice prompt, or music.

[0034] The control board 5 is used to process information related to the speaker alarm clock shut-off device based on front proximity sensing. In some embodiments, the control board 5 may be a printed circuit board (PCB). The control board 5 includes a processor integrated on the control board. The processor may include one or more combinations of microcontrollers (MCUs), embedded processors, etc.

[0035] In some embodiments, the control motherboard 5 is disposed opposite to the first through slot 11. For example, the first through slot 11 is disposed on the side of the front of the housing 1 (the surface on which the alarm clock time, date or other information is displayed), and the control motherboard 5 is disposed on the inner wall of the side of the back of the housing 1.

[0036] In some embodiments, the control board 5 can acquire a first distance sent by the sensing component 4; based on the first distance, it can control the display component 2 to turn on or off, and control the ringing component 3 to turn off. For example, when the ringing component 3 is working, the control board 5 can control the display component 2 to turn on and the ringing component 3 to turn off based on the first distance being less than a first distance threshold. As another example, when the ringing component 3 is not working, the control board 5 can control the display component 2 to turn on based on the first distance being less than the first distance threshold. The first distance threshold can be set based on experience or requirements. See [link to relevant documentation] for more information on the first distance. Figure 1 and Figure 2 Related explanations.

[0037] By combining the display component, sensing component, ringing component, and control motherboard, when the user's hand approaches the alarm clock or speaker and the distance to the sensing component is within a first distance threshold range, the ringing component and display component can be turned off. This allows the user to easily control the alarm clock or speaker and turn off the display lights, improving the user experience.

[0038] Figure 4 This is an exploded view of the structure of a speaker alarm clock shut-off device based on front proximity sensing, as shown in some embodiments of this specification. Figure 5 This is an exploded view of the structure of a speaker alarm clock shut-off device based on front proximity sensing, according to other embodiments of this specification.

[0039] In some embodiments, such as Figure 4 and Figure 5 As shown, the speaker alarm clock closing device based on front proximity sensing also includes a touch-illuminated structure 6. The housing 1 is provided with a second through groove 12. The second through groove 12 and the first through groove 11 are located on the same side of the housing 1. The touch-illuminated structure 6 is disposed in the second through groove 12.

[0040] The touch-emitting structure 6 is a structure that emits light after a user performs a touch operation. For example, the touch-emitting structure 6 can be a capacitive touch sensing structure, a resistive touch sensing structure, or other touch sensing structures. In some embodiments, the control motherboard 5 can control the touch-emitting structure 6 to turn on based on a first distance greater than a first distance threshold.

[0041] The second through slot 12 is a through slot on the housing used to house the touch-emitting structure 6. The second through slot 11 can be a regular or irregular shape, such as a rectangle or a circle.

[0042] In some embodiments, the relative positions of the second through slot 12 and the first through slot 11 can be set according to requirements. For example, as Figure 5 As shown, the first through groove 11 is located above the second through groove 12. Alternatively, the first through groove 11 may also be located below or to the sides of the second through groove 12.

[0043] In some embodiments, such as Figure 4 and Figure 5 As shown, the touch-emitting structure 6 includes a light source 61, a touch button 62, and a light guide cavity 63. The light guide cavity 63 is located in the second through groove 12. The touch button 62 is located on the control motherboard 5. The touch button 62 includes a light-transmitting hole 621. The touch button 62 is located between the light guide cavity 63 and the light source 61.

[0044] The light source 61 can be an LED lamp or other lighting equipment.

[0045] The touch button 62 is used for user interaction with the alarm clock. In some embodiments, the user can control the light source 61 and the display component 3 to turn on or off, and adjust the information displayed on the display component 2 (such as time, date, etc.) by touching the touch button 62.

[0046] In some embodiments, such as Figure 4 and Figure 5 As shown, the touch button 62 is located on the side of the control motherboard 5 facing the second through slot 12, so that the user can easily perform touch operation from the side where the second through slot 12 is located.

[0047] The light-transmitting aperture 621 is a through-hole for allowing light generated by the light source 61 to pass through. In some embodiments, such as... Figure 3 and Figure 4 As shown, the light-transmitting hole 621 is located at the center of the touch button 62.

[0048] The light guide cavity 63 is a cavity through which light passes. The light guide cavity 63 is used to refract and reflect light, thereby achieving a uniform illumination effect. In some embodiments, the light guide cavity 63 can be made of transparent or translucent plastic or resin material. The shape of the light guide cavity 63 matches the shape of the second through groove 12.

[0049] In some embodiments, the control motherboard 5 can control the light source 61 of the touch-emitting structure 6 to turn on based on the first distance being greater than a first distance threshold. The light emitted by the light source 61 enters the light guide cavity through the light-transmitting hole 621, thereby illuminating the touch button 62 to indicate the position of the touch button 62, and at the same time enabling the alarm clock or speaker to play a lighting role.

[0050] In some embodiments of this specification, the touch-emitting structure enables the adjustment function of the alarm clock or speaker by a speaker alarm clock shut-off device based on front proximity sensing, and meets more of the user's lighting needs.

[0051] In some embodiments, such as Figure 5 As shown, the speaker alarm clock closing device based on front proximity sensing also includes a light-transmitting decorative element 7, which is disposed in the first through groove 11 and is located between the housing 1 and the display component 2.

[0052] Translucent decorative element 7 refers to a decorative component that allows light to pass through.

[0053] In some embodiments, the light-transmitting decorative element 7 may be made of a light-transmitting material, such as resin, glass, or plastic. The light-transmitting decorative element 7 may be colorless and transparent, or colored as required. The light-transmitting decorative element 7 is located between the housing 1 and the display component 2, thereby allowing light emitted or reflected by the display component 2 to present different display effects through the light-transmitting decorative element 7.

[0054] In some embodiments, the shape of the light-transmitting decorative element 7 matches the shape of the display component 2.

[0055] In some embodiments, the light-transmitting decorative element can be entirely disposed within the first through groove 11, with the display component 2 disposed close to the inner wall of the light-transmitting decorative element 7. In some embodiments, the light-transmitting decorative element can be partially disposed within the first through groove and partially located outside the housing 1, with the display component 2 disposed close to the inner wall of the light-transmitting decorative element 7.

[0056] The speaker alarm clock closing device based on front proximity sensing can create different appearances for the alarm clock or speaker by incorporating light-transmitting decorative elements, while also protecting the display components.

[0057] In some embodiments, the light-transmitting decorative element 7 enhances the display effect of the alarm clock, adding aesthetic appeal and artistry to the alarm clock or speaker by presenting a unique light and shadow effect.

[0058] Figure 6 This is a schematic diagram of the sensor position in a speaker alarm clock shut-off device based on front proximity sensing, according to some embodiments of this specification.

[0059] Figure 7 This is a schematic diagram showing the installation position of the sensing sensor according to some embodiments of this specification.

[0060] In some embodiments, such as Figure 6 and Figure 7 As shown, the speaker alarm clock shut-off device based on front proximity sensing also includes a light sensor 8, an induction sensor 9, and a baffle 91. The light sensor 8 and the induction sensor 9 are electrically connected to the control main board 5. The light sensor 8 is disposed on the top surface of the housing 1 and is configured to acquire ambient light intensity. The induction sensor 9 is disposed on the control main board 5 at the junction of the side facing the second through slot 12 and the top surface. The baffle 91 blocks at least part of the sensing range of the induction sensor 9. The angle between the sensing center of the induction sensor 9 and the plane where the annular sensing component 4 is located is greater than 90°.

[0061] In some embodiments, such as Figure 2 As shown, the light sensor 8 is electrically connected to the control motherboard 5. In some embodiments, the light sensor 8 is configured to detect the ambient light intensity and send the ambient light intensity to the control motherboard 5.

[0062] Ambient light intensity refers to the ambient light intensity in the environment where the speaker alarm clock shut-off device based on front proximity sensing is located. In some embodiments, the light sensor 9 can be a photoresistor, a photodiode, a phototransistor, or a photoelectric sensor, etc.

[0063] In some embodiments, the light sensor 8 can be disposed at any position on the top surface of the housing 1 that can be illuminated by ambient light.

[0064] The sensing sensor 9 refers to a device used to detect the approach of an object. In some embodiments, the sensing sensor 9 can be a proximity sensor, such as an infrared sensor, an ultrasonic sensor, a photoelectric sensor, etc.

[0065] In some embodiments, the sensing sensor 9 and the control motherboard 5 are electrically connected. In some embodiments, the sensing sensor 8 is configured to detect the presence of a moving object in the environment; in response to the presence of a moving object, a second distance is acquired and sent to the control motherboard 5. The second distance refers to the distance between the moving object (such as a user) and the sensing sensor 8.

[0066] In some embodiments, the control motherboard 5 controls the display component 2 and the touch-emitting structure 6 to turn on or off based on ambient light intensity and a second distance. For example, the control motherboard 5 controls the light source 61 of the display component 2 and the touch-emitting structure 6 to turn off when the ambient light intensity is greater than or equal to a preset intensity threshold and the sensing sensor 9 detects no moving object in the environment, thereby saving power. As another example, the control motherboard 5 controls the light source of the display component 2 and the touch-emitting structure 6 to turn on when the ambient light intensity is greater than a preset intensity threshold and the sensing sensor 9 detects a moving object in the environment. The preset intensity threshold and the second distance threshold can be preset based on experience or requirements. Further explanation of the display component 2 and the touch-emitting structure 6 can be found in [link to relevant documentation]. Figures 1-5 Related descriptions.

[0067] The baffle 91 refers to a structure used to block the detection range of the sensing sensor 9. In some embodiments, the baffle may be a solid plastic plate or a metal plate, etc. The baffle 91 blocks at least a portion of the sensing range of the sensing sensor 9, and the angle between the sensing center of the sensing sensor 9 and the plane where the sensing component 4 is located is greater than 90°.

[0068] In some embodiments, the baffle 91 is configured to isolate at least a portion of the sensing range of the sensing sensor 9, so that the effective sensing range is located above the alarm clock, thereby enabling detection under specific conditions.

[0069] In some embodiments, such as Figure 7 As shown, the baffle 91 can be positioned diagonally below the sensing sensor 9.

[0070] In some embodiments, such as Figure 7 As shown, the center line of the sensing range of sensor 9 (e.g.) Figure 7The axis D1-D1 in the image can be approximately perpendicular to the plane where the sensing component 4 is located. In some embodiments, after the baffle 91 blocks part of the sensing range of the sensing sensor 9, the angle between the sensing center of the sensing sensor 9 (i.e., the center line of the sensing range) and the plane where the annular sensing component 4 is located is β, where β is greater than 90°. That is, by setting the baffle 91, the sensing range of the sensing sensor 9 is limited to above the alarm clock or speaker.

[0071] Figure 8 This is a schematic diagram of the installation position of the sensing sensor according to other embodiments of this specification.

[0072] In some embodiments, the speaker alarm clock closing device based on front proximity sensing is equipped with a sensing sensor 9, without a baffle 91, and the sensing sensor 9 is tilted. For example, as Figure 8 As shown, the angle between the sensing center of the sensor 9 and the plane of the ring-shaped sensing component 4 is α, where α is greater than 90°. That is, by tilting the sensor 9, its sensing range is positioned above the alarm clock or speaker.

[0073] In some embodiments, by incorporating a sensor and a baffle, the alarm clock light can be activated only when the user is near or above the top of the alarm clock or speaker, thus preventing accidental activation. For example, if the alarm clock or speaker is placed near the bedside, it can prevent the user from entering the sensing range of the sensor 9 when turning over.

[0074] In some embodiments, the speaker alarm clock shut-off device based on front proximity sensing detects ambient light intensity using a light sensor and controls the alarm clock's display effect accordingly, improving the intelligence and ease of operation of the alarm clock or speaker. For example, alarm clocks are typically placed in bedrooms; turning off the light source and display components during the day when no one is in the room saves energy.

[0075] In some embodiments, such as Figure 6 and Figure 7 As shown, the speaker alarm clock shut-off device based on front proximity sensing also includes an ambient light 10. The ambient light 10 is located on the side of the control motherboard 5 facing the first through slot 11, and the ambient light 10 is electrically connected to the control motherboard 5.

[0076] Ambient light 10 is used to enhance the display effect of an alarm clock or speaker. In some embodiments, ambient light 10 can be in various light-emitting forms, such as point light sources, light strips, surface light sources, etc. Ambient light 10 can be various types of lamps, such as LED lights, fluorescent lights, neon lights, etc. The color of the ambient light can be set according to requirements.

[0077] In some embodiments, the ambient light 10 is disposed on the side of the control board 5 facing the first through slot 11. For example, as shown... Figure 7As shown, the ambient light 10 can be arranged in a ring.

[0078] In some embodiments, the housing 1 may be provided with a light-transmitting element for transmitting light emitted by the ambient light 10. The light-transmitting element may be made of a light-transmitting material, such as resin, glass, or plastic. The light-transmitting element may be colorless and transparent, or colored as required. The light-transmitting element may be provided on the side of the housing 1 having the first through groove 11 and the second through groove 12, or it may be provided on other sides, as long as the light emitted by the ambient light 10 can be transmitted.

[0079] In some embodiments, the control board 5 controls the ambient light to turn on or off based on a second distance and ambient light intensity. For example, the control board 5 controls the ambient light to turn on based on the second distance being less than a second distance threshold, thereby indicating the location of the alarm clock or speaker when the user approaches. In some embodiments, the second distance threshold is greater than a first distance threshold. The second distance threshold reflects the distance at which the user wants the ambient light of the alarm clock or speaker to light up, and the first distance threshold reflects the distance at which the user approaches to turn off the alarm clock or speaker. Setting the second distance threshold to be greater than the first distance threshold allows the location of the alarm clock or speaker to be displayed in advance via the ambient light, making it easier for the user to find the location of the alarm clock or speaker and approach it to turn off the ringing component.

[0080] For example, the control motherboard 5 controls the ambient light to turn on when the ambient light intensity is less than or equal to a preset intensity threshold, thereby indicating the location of the user's alarm clock or speaker at night.

[0081] In some embodiments, the control motherboard 5 controls the ambient light to turn off based on the ambient light intensity being greater than a preset intensity threshold and the sensing sensor 9 detecting that there are no moving objects in the environment, thereby saving power.

[0082] In some embodiments of this specification, ambient lighting can enhance the display effect and aesthetics of the alarm clock, meeting the needs of users in more usage scenarios and improving the user experience. Simultaneously, ambient lighting can also indicate the location of the alarm clock, making it easier for users to find the alarm clock or check the time at night.

[0083] In some embodiments, such as Figure 2 As shown, the speaker alarm clock shut-off device based on front proximity sensing also includes a wireless transmission module 51. The wireless transmission module 51 is located on the control motherboard 5 and is electrically connected to the control motherboard 5. The wireless transmission module 51 is communicatively connected to the user terminal 52.

[0084] The wireless transmission module 51 refers to a device used for information exchange. For example, the wireless transmission module 51 may be configured as a Wi-Fi device or a Bluetooth device.

[0085] User terminal 52 can be a remote control, mobile phone, computer, etc. In some embodiments, user terminal 52 is configured to receive user instructions. These user instructions may include setting an alarm time, preset an alarm sensing range, adjusting the alarm light, etc.

[0086] In some embodiments, the control motherboard 5 can acquire user commands uploaded by the user terminal 52 and adjust relevant parameters of the speaker alarm clock shut-off device based on the user commands. For example, the control motherboard 5 can acquire user commands to reduce the brightness of the light source 61 and control the brightness of the light source 61 to decrease.

[0087] In some embodiments of this specification, the speaker alarm clock shut-off device based on front proximity sensing achieves wireless communication connection with the user by setting up a wireless transmission module 51, thereby enabling the user to remotely control the alarm clock or speaker and improving the convenience of operation.

[0088] In some embodiments, such as Figure 6 As shown, the speaker alarm clock closing device based on front proximity sensing also includes a suction cup base 13, which is disposed at the bottom of the housing 1.

[0089] The suction cup base 13 is used to support and secure the speaker alarm clock closing device based on front proximity sensing. In some embodiments, the suction cup base 13 may include a silicone suction cup, a rubber suction cup, a plastic suction cup, etc. In some embodiments, there may be one or more suction cup bases.

[0090] In some embodiments of this specification, the stability of the speaker alarm clock closing device based on front proximity sensing is improved by providing a suction cup base 13, which prevents the speaker alarm clock closing device based on front proximity sensing from tipping over due to external vibration or unintentional touch by the user, thereby improving the adaptability of the speaker alarm clock closing device based on front proximity sensing.

[0091] It should be noted that the above description of the speaker alarm clock shut-off device based on front proximity sensing and its components is for ease of description only and should not be construed as limiting this specification to the scope of the embodiments described. It is understood that those skilled in the art, after understanding the principle of this system, may arbitrarily combine the various components without departing from this principle.

[0092] The basic concepts have been described above. Obviously, for those skilled in the art, the detailed disclosure above is merely illustrative and does not constitute a limitation of this specification. Although not explicitly stated herein, those skilled in the art may make various modifications, improvements, and corrections to this specification. Such modifications, improvements, and corrections are suggested in this specification and therefore remain within the spirit and scope of the exemplary embodiments described herein.

[0093] Furthermore, this specification uses specific terms to describe embodiments thereof. For example, "some embodiments" refers to a particular feature, structure, or characteristic associated with at least one embodiment of this specification. Therefore, it should be emphasized and noted that "some embodiments" mentioned twice or more in different locations in this specification do not necessarily refer to the same embodiment. In addition, certain features, structures, or characteristics in one or more embodiments of this specification can be appropriately combined.

[0094] Although the above disclosure has discussed some inventive embodiments that are currently considered useful through various examples, it should be understood that such details are for illustrative purposes only.

[0095] Similarly, it should be noted that, in order to simplify the description disclosed in this specification and thus aid in the understanding of one or more embodiments of the invention, the foregoing description of the embodiments in this specification may sometimes combine multiple features into a single embodiment, drawing, or description thereof. In fact, the embodiments have fewer features than all the features of the single embodiment disclosed above.

[0096] In some embodiments, numbers describing the quantity of components and attributes are used. It should be understood that such numbers used in the description of embodiments are modified in some examples with the terms "approximately," "approximately," or "generally." Unless otherwise stated, "approximately," "approximately," or "generally" indicates that the numbers are allowed to vary by ±20%. Accordingly, in some embodiments, the numerical parameters used in the specification are approximate values, which may be changed depending on the characteristics required by individual embodiments. In some embodiments, numerical parameters should take into account specified significant digits and employ a general method of digit reservation. Although the numerical ranges and parameters used to confirm their breadth of range in some embodiments of this specification are approximate values, in specific embodiments, such values ​​are set as precisely as feasible.

[0097] Finally, it should be understood that the embodiments described in this specification are merely illustrative of the principles of the embodiments described herein. Other variations may also fall within the scope of this specification. Therefore, alternative configurations of the embodiments described herein are intended to be illustrative rather than limiting, and should be considered consistent with the teachings of this specification. Accordingly, the embodiments described herein are not limited to those explicitly introduced and described herein.

Claims

1. A speaker alarm clock shut-off device based on front proximity sensing, characterized in that, Includes housing, display assembly, ringing assembly, sensing assembly, and control motherboard; The housing has a first through slot, and the display component is disposed in the first through slot; the sensing component, the ringing component, and the control motherboard are disposed inside the housing; The sensing component is ring-shaped and is located on the control motherboard on the side facing the first through slot. The sensing component has a sensing area. The display component, the ringing component, and the sensing component are electrically connected to the control motherboard.

2. The apparatus as described in claim 1, characterized in that, The sensing component includes an induction coil.

3. The apparatus as described in claim 1, characterized in that, It also includes a touch-emitting structure, wherein the housing is provided with a second through groove, the second through groove and the first through groove are located on the same side of the housing, and the touch-emitting structure is disposed in the second through groove.

4. The apparatus as described in claim 3, characterized in that, The touch-emitting structure includes a light source, a touch button, and a light guide cavity. The light guide cavity is located in the second through groove. The touch button is located on the control motherboard and includes a light-transmitting hole. The touch button is located between the light guide cavity and the light source.

5. The apparatus as described in claim 4, characterized in that, The touch button is located on the side of the control motherboard facing the second through slot.

6. The apparatus as claimed in claim 1, characterized in that, It also includes a light-transmitting decorative element, which is disposed in the first through groove and located between the housing and the display component.

7. The apparatus as described in claim 3, characterized in that, It also includes a light sensor, a sensing sensor, and a baffle, wherein the light sensor and the sensing sensor are electrically connected to the control motherboard; The light sensor is disposed on the top surface of the housing and is configured to acquire ambient light intensity. The sensing sensor is located on the control motherboard at the junction of the side facing the second through slot and the top surface. The baffle blocks at least part of the sensing range of the sensing sensor. The angle between the sensing center of the sensing sensor and the plane where the sensing component is located is greater than 90°.

8. The apparatus as claimed in claim 1, characterized in that, It also includes an ambient light, which is located on the side of the control motherboard facing the first through slot, and the ambient light is electrically connected to the control motherboard.

9. The apparatus as claimed in claim 1, characterized in that, It also includes a wireless transmission module, which is located on the control motherboard and electrically connected to the control motherboard. The wireless transmission module is communicatively connected to the user terminal.

10. The apparatus as claimed in claim 1, characterized in that, It also includes a suction cup base, which is disposed at the bottom of the housing.