CN212183717U - Earphone box and earphone set - Google Patents

Earphone box and earphone set Download PDF

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Publication number
CN212183717U
CN212183717U CN202021224617.9U CN202021224617U CN212183717U CN 212183717 U CN212183717 U CN 212183717U CN 202021224617 U CN202021224617 U CN 202021224617U CN 212183717 U CN212183717 U CN 212183717U
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unit
earphone
module
earphone box
control unit
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CN202021224617.9U
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Chinese (zh)
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程泰毅
谢詹奇
李淑娟
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Silead Inc
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Silead Inc
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Priority to CN202021224617.9U priority Critical patent/CN212183717U/en
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Abstract

The application provides earphone box and earphone external member, earphone box includes: the upper cover and the storehouse body, the storehouse body sets up the operating unit, and the internal being provided with in storehouse: a charging section, a battery module, and a circuit configuration for charging; the circuit structure includes: a power management module; the first detection module is electrically connected with the operation unit and is used for detecting a first electric signal; a second detection module for detecting a second electrical signal based on the position of the earphone box; a wireless communication module for establishing a wireless link with another smart device; the control unit is electrically connected with the first detection module, the second detection module and the power management module, and can send out an indication signal based on the first electric signal and send out an orientation signal based on the second electric signal; a wireless communication module for establishing a wireless link between the control unit and an external smart device. This application has realized wireless mouse's function, can be used for operating outside smart machine, has overcome the limitation of current earphone box function singleness.

Description

Earphone box and earphone set
Technical Field
The utility model relates to an acoustics equipment field, in particular to earphone box and earphone suit.
Background
Current TWS (true Wireless stereo) headsets, i.e. bluetooth headsets using TWS technology, the left and right earplugs of which can operate independently without a cable. The earphone is very convenient to carry and use, and has become one of the standard accessories for business people to go on business. Typically, TWS headsets have a mating headset well for storage and charging of the headset. However, as a portable device, the current earphone cabin only has the functions of storage and charging, and the using function is single.
SUMMERY OF THE UTILITY MODEL
For realizing above-mentioned purpose, this application provides an earphone box and earphone external member, and this earphone box not only has the function of charging and storage earphone, can also realize wireless mouse's function for operate outside smart machine, improved the functional of current earphone box, promote user's use and experience.
The technical scheme is as follows:
an earphone box, comprising: the earphone comprises an upper cover and a bin body, wherein the bin body comprises a containing cavity for containing earphones, an operation unit is arranged on the bin body, and the bin body is internally provided with: the earphone comprises a charging part for charging the earphone, a battery module and a circuit structure for electrically connecting the charging part with the battery module;
the circuit structure includes: the power supply management module is used for managing power supply of the battery module;
the first detection module is electrically connected with the operation unit and is used for detecting a first electric signal sent by the operation unit;
a second detection module for detecting a second electrical signal based on the position of the earphone box;
a wireless communication module for establishing a wireless link with another smart device;
the control unit is electrically connected with the first detection module, the second detection module and the power management module, and sends out an indication signal based on the first electric signal and a direction signal based on the second electric signal;
the wireless communication module is used for establishing a wireless link between the control unit and external intelligent equipment and is electrically connected with the control unit.
As a preferred embodiment, the number of the operation units is at least one, and the operation unit is in any one of the following forms: the mouse comprises a key and a roller, wherein the key and the roller are used for realizing the function of the mouse.
As a preferred embodiment, the wireless communication module includes: the wireless transmitting unit is electrically connected with the control unit, the wireless receiving unit is integrated on a plug-in unit, and the plug-in unit is detachably connected in the bin body; the insert further comprises: and the data port is electrically connected with the wireless receiving unit.
As a preferred embodiment, the insert further comprises: a memory unit for storing data, the data comprising: the memory unit is electrically connected with the data port.
As a preferred embodiment, the wireless transmitting unit includes: the wireless transmitting unit includes: the Bluetooth module comprises any one of a Bluetooth unit, a WIFI unit, an infrared emission unit for emitting infrared rays, a Zigbee unit and an NFC unit.
As a preferred embodiment, the wireless communication module is specifically a bluetooth module for sending out bluetooth signals.
As a preferred embodiment, the circuit arrangement comprises a memory unit for storing data, the data comprising: the storage unit is electrically connected with the control unit, the power management module and the wireless communication module.
As a preferred embodiment, the circuit structure further includes: an interface unit capable of establishing a USB connection with the other intelligent device and a storage unit for storing data, the data comprising: the storage unit is electrically connected with the control unit, the power management module and the interface unit.
As a preferred embodiment, the second detection module includes:
a light source for emitting detection light;
a lens assembly located below the light source;
the earphone box comprises a photoelectric sensor, a control unit and a display unit, wherein the photoelectric sensor is provided with a light sensing part for acquiring movement track information of the earphone box;
the image analysis unit is electrically connected with the photoelectric sensor and the control unit;
the bottom of earphone box is provided with and is used for wearing out detect the trompil of light, detect light certainly after the light source sends, pass through in proper order the lens subassembly the trompil incides to on the reflection of light face of earphone box below, then the warp reflection of light face, lens subassembly after the reflection throw extremely the sensitization portion.
The earphone kit comprises the earphone box and earphones arranged in the accommodating chamber.
Has the advantages that:
the earphone box and the earphone kit that this application embodiment provided have and are used for the circuit structure who charges for the earphone, and this circuit structure still includes first detection module, second detection module and wireless communication module. The first detection module is used for detecting a first electric signal sent by a user operating the operation unit, and the second detection module is used for detecting a second electric signal based on the position of the earphone box. The control unit sends an indication signal and a direction signal based on the first electric signal and the second electric signal, and sends the indication signal and the direction signal to the external intelligent equipment through the wireless communication module, so that the operation control of the external intelligent equipment is realized. The earphone box can realize the function similar to a wireless mouse, the indication signal can correspond to the selection and indication functions of the mouse, the position signal can correspond to the positioning function of the mouse, and the earphone box can be moved to help a user to position the longitudinal and transverse positions of a display system of the intelligent device.
Specific embodiments of the present application are disclosed in detail with reference to the following description and drawings, indicating the manner in which the principles of the application may be employed. It should be understood that the embodiments of the present application are not so limited in scope.
Features that are described and/or illustrated with respect to one embodiment may be used in the same way or in a similar way in one or more other embodiments, in combination with or instead of the features of the other embodiments.
It should be emphasized that the term "comprises/comprising" when used herein, is taken to specify the presence of stated features, integers, steps or components but does not preclude the presence or addition of one or more other features, integers, steps or components.
Drawings
In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the drawings needed to be used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without inventive labor.
Fig. 1 is a schematic view of an overall structure of an earphone box according to an embodiment of the present disclosure;
fig. 2 is a schematic view of an overall structure of an earphone box according to an embodiment of the present disclosure;
FIG. 3 is a front view of FIG. 1 or FIG. 2;
fig. 4 is a schematic block diagram illustrating an internal circuit structure of an earphone box according to an embodiment of the present disclosure;
fig. 5 is a schematic block diagram of an internal circuit structure of another earphone box according to an embodiment of the present disclosure;
fig. 6 is a schematic block diagram illustrating a process of communication between a storage unit and an intelligent device according to an embodiment of the present application;
fig. 7 is a schematic view illustrating an overall structure of an insert according to an embodiment of the present disclosure.
Description of reference numerals:
1. an upper cover; 11. an upper cover switch; 2. a bin body; 21. an operation unit; 41. a first detection module; 42. a control unit; 43. a wireless communication module/wireless transmitting unit; 44. a light source; 45. a lens assembly; 46. a photosensor; 47. an image analysis unit; 48. a light-reflecting surface; 5. a plug-in; 51. a storage unit; 52. a wireless receiving unit; 53. a data port; 54. an interface unit; 6. and an indicator light.
Detailed Description
The technical solution of the present invention will be described in detail with reference to the accompanying drawings and specific embodiments, it should be understood that these embodiments are only for illustrating the present invention and are not intended to limit the scope, and after reading the present invention, the modifications of the various equivalent forms of the present invention by those skilled in the art will fall within the scope defined by the present application.
It will be understood that when an element is referred to as being "disposed on" another element, it can be directly on the other element or intervening elements may also be present. When an element is referred to as being "connected" to another element, it can be directly connected to the other element or intervening elements may also be present. The terms "vertical," "horizontal," "upper," "lower," "left," "right," and the like as used herein are for illustrative purposes only and do not denote a unique embodiment.
It is worth noting that the definition to each direction in this specification is only for the convenience of the technical solution of the present invention, and is not limited by the present invention, the directions of the earphone box and the earphone kit in other scenes that may cause the position to be reversed or the position to be changed, including but not limited by the use, the test, the transportation, the manufacture, etc., are not limited by the present invention.
Unless defined otherwise, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs. The terminology used herein in the description of the present application is for the purpose of describing particular embodiments only and is not intended to be limiting of the application. As used herein, the term "and/or" includes any and all combinations of one or more of the associated listed items.
As previously mentioned, prior art earphone pods are typically used only to store and charge earphones. The earphone can be a wireless earphone, and the working contents comprise listening to music, switching songs, measuring physiological parameters, making and receiving calls and the like. As a portable device, the current earphone cabin has single use function and cannot meet the multifunctional use of business trip people. The earphone box provided by the embodiment of the application can realize operation control on external intelligent equipment, and overcomes the limitation of single function of the existing earphone box. The external intelligent device can be a smart phone, a mobile notebook computer, a tablet type device, a palm computer and other devices.
In order to implement the communication function between the smart device and the earphone box in the embodiment of the present application, the smart device in this specification may further include other necessary modules or components. Taking a mobile notebook computer as an example, it may further include a display system, such as a display screen, a communication module, a battery, etc. In addition, the smart device is typically configured with a processor and memory. It should be noted that any suitable existing configuration may be used for other necessary modules or components included in the external smart device. For the sake of clarity and brevity, the technical solutions provided by the present invention will not be described in detail herein, but it should be understood that the application scope of the present invention is not limited thereby.
The earphone box and the earphone kit according to the embodiment of the present application will be explained and explained with reference to fig. 1 to 7. It should be noted that, for convenience of description, like reference numerals denote like parts in the embodiments of the present application. And for the sake of brevity, detailed descriptions of the same components are omitted in different embodiments, and the descriptions of the same components may be mutually referred to and cited.
The earphone box that this application provided is shown as fig. 1 to 5, and this earphone box includes: upper cover 1 and storehouse body 2, state storehouse body 2 including being used for holding the chamber that holds of earphone, be provided with operating unit 21 on the storehouse body 2, be provided with in the storehouse body 2: the earphone comprises a charging part for charging the earphone, a battery module and a circuit structure for electrically connecting the charging part with the battery module; the circuit structure includes: the power supply management module is used for managing power supply of the battery module; a first detecting module 41 electrically connected to the operating unit 21 and configured to detect a first electrical signal emitted from the operating unit 21; a second detection module for detecting a second electrical signal based on the position of the earphone box; the control unit 42, the control unit 42 is electrically connected to the first detection module 41, the second detection module and the power management module, the control unit 42 sends an indication signal based on the first electrical signal, and sends an orientation signal based on the second electrical signal; a wireless communication module 43 for establishing a wireless link between the control unit 42 and an external smart device, wherein the wireless communication module 43 is electrically connected to the control unit 42.
The earphone box provided by the embodiment of the application has a circuit structure for charging earphones, and the circuit structure further comprises a first detection module 41, a second detection module and a wireless communication module 43. The first detecting module is used for detecting a first electrical signal sent by the user operating the operating unit 21, and the second detecting module is used for detecting a second electrical signal based on the position of the earphone box. The control unit 42 sends an indication signal and an orientation signal based on the first electrical signal and the second electrical signal, so that the indication signal and the orientation signal are sent to the external smart device through the wireless communication module 43, and operation control of the external smart device is achieved. The earphone box can realize the function similar to a mouse, the indication signal can correspond to the selection and indication functions of the mouse, the position signal can correspond to the positioning function of the mouse, and the earphone box can be moved to help a user to position the longitudinal and transverse positions of a display system of the intelligent device.
In this specification, a charging portion for charging the earphone, a battery module, and a circuit structure for electrically connecting the charging portion to the battery module are provided in the bin body 2 of the earphone box. The charging part may be disposed in the receiving chamber of the cartridge body 2, and the charging part is electrically connected to the battery module. When a user puts the earphone into the earphone box and contacts the contact on the earphone with the charging part, the battery module can charge the earphone through the charging part and can supply power to each module through the circuit structure. The battery module preferably employs a lithium ion polymer battery. The power management module is used for controlling the battery module to supply power to each functional module, and also can control the charging between the battery module and external charging equipment, for example, adjusting external access voltage, and also can control the charging from the battery to the earphone, for example, adjusting the charging voltage of the earphone.
Specifically, the power management module is used for managing the power supply of the battery module to the earphone and other modules. This power management module can include parameter detecting element, this parameter detecting element and the portion of charging electric connection, and this parameter detecting element can detect the state parameter of earphone through the portion of charging, include: the charging voltage of the earphone can be adjusted by parameters such as the electric quantity of the earphone or the voltage of the earphone. In some possible embodiments, when the parameter detection unit detects that the electric quantity of the earphone is lower than a first preset value, the power management module controls the battery module to charge the earphone, and when the electric quantity of the earphone reaches a second preset value, the power management module controls the battery module to stop charging the earphone.
Further, the circuit structure may further include a switching unit for controlling connection or disconnection of the battery module to or from the charging part, and the power management module may be for controlling the switching unit to switch between a connected state and a disconnected state. When the power management module controls the switch unit to be in a connection state, the battery module can charge the earphone, and when the power management module controls the switch unit to be in a disconnection state, the battery module stops charging the earphone.
As shown in fig. 4 and 5, the circuit structure further includes: a first detection module 41, a second detection module and a control unit 42. The first detecting module 41, the second detecting module and the control unit 42 can be integrated on a PCB and accommodated inside the cabin body 2 in the form of a PCB. The first detection module 41, the second detection module and the control unit 42 can be integrated on a PCB board in a circuit or chip manner, and can be integrated with the cabin body 2, so that an effective space can be provided for other structures of the earphone box on the premise of ensuring functional integrity. Wherein the first detection module 41 and the second detection module are used for detecting a user operation, and the user operation may include: a pressing operation, a touching operation, a moving operation, a scrolling or sliding operation.
Specifically, the first detecting module 41 is electrically connected to the operating unit 21, and can receive and detect a first electrical signal directly and real-timely sent by a user, so as to determine an operation performed by the user. The second detection module may receive a second electrical signal generated by the movement of the earphone box in real time. The second voltage signal is a moving signal which is formed in real time by the movement of the earphone box operated by a user and reflects the position change of the earphone box, and the moving direction and the moving distance of the earphone box can be judged, so that the user is helped to realize the positioning function of the display screen of the intelligent device through the movement of the earphone box.
In this specification, at least one operation unit 21 is disposed on the bin 2, the operation unit 21 is electrically connected to the first detection module 41, the first detection module 41 can detect a first electrical signal through the operation unit 21, and the operation unit 21 is in any form of: a key, a scroll wheel, and a user can input a first electrical signal to the first detection module 41 by pressing the key or the scroll wheel.
Further, the operation unit 21 includes a key and a wheel. Wherein, the keys can comprise a left key and a right key, thereby being convenient for realizing the functions of the left key and the right key of the mouse.
In some embodiments, the user may input the first electrical signal by controlling the duration of pressing the operation unit 21, and the first detection module 41 detects whether the duration of the first electrical signal satisfies a preset condition, for example, when the key is pressed to perform the selection operation, and the duration of the change of the first electrical signal is greater than a threshold, the control unit 42 sends an indication signal. In other embodiments, the user may input the first electrical signal by controlling the number and duration of pressing the key, for example, when the key is pressed by two times to perform the selecting operation, and the time interval between two changes of the first electrical signal is smaller than the threshold, the control unit 42 sends an indication signal to complete the selecting operation. The above embodiments are merely examples, and the scope of the present application is not limited thereto.
The keys and the roller are respectively used for realizing the function of the mouse. In this embodiment, the first detecting module 41 may be electrically connected to the key and the roller, respectively, and when the operating unit 21 is operated, the operating unit 21 may generate a pressing signal carrying a preset identifier, where the preset identifier may be divided into a start preset identifier and an indication preset identifier according to different types of the pressing signal. And starting a trigger signal generated by the preset identification corresponding to the pressed key, and operating an indicating signal generated by the preset identification corresponding to the pressed key and the sliding roller. Furthermore, the preset indication marks can be further divided into different marks according to the function difference of the keys and the idler wheel, the pressing of the keys corresponds to the selected function of the mouse, and the sliding idler wheel corresponds to the indication function of the mouse and the up-and-down sliding function of the idler wheel during page browsing.
In a specific embodiment, when communication with an external smart device is required to be established, a user may start the wireless communication module 43 by long pressing the left key or the right key, perform a mouse operation, and then transmit a user indication signal, including signals corresponding to a selected and page-sliding instruction of the external smart device, to the smart device through the wireless communication module 43 by pressing a key or a sliding wheel, so as to implement an indication operation on the smart device, where the indication includes, but is not limited to, various indication functions of the existing mouse. As shown in fig. 1 to 3, the keys and the rollers may be disposed on the front side of the cartridge body 2 or the rear side of the cartridge body 2 or both sides of the cartridge body 2.
The control unit 42 may generate corresponding signals in response to receiving the electrical signals from the first detection module 41 and the second detection module. For example, when the control unit 42 can send an indication signal after receiving the first electrical signal, the control unit 42 sends the indication signal to the external smart device through the wireless communication module 43, so as to complete the specified operation. When the control unit 42 receives the second electrical signal, it can send out an orientation signal, and send the orientation signal to the external smart device through the wireless communication module 43. In the present application, a user may set some types of command signals in the control unit 42 in advance through a preset operation, and compare the received electrical signals with the types of signals pre-stored in the control unit 42, so as to output corresponding control commands. Alternatively, some control instruction types are provided in advance in the control unit 42, and executed by the control unit 42 at certain predetermined timings.
In this specification, as shown in fig. 1 and 5, the circuit structure further includes a wireless communication module 43 for establishing a wireless link between the control unit 42 and an external smart device, and the wireless communication module 43 is matched with the control unit 42 and can send out the orientation signal and the indication signal sent by the control unit 42. The wireless communication module 43 is electrically connected to the control unit 42 and the power management module, and the power management module can manage the battery module to supply power to the wireless communication module 43.
When the earphone box needs to be connected with an external smart device, a user may input an electrical signal for performing a start operation through the operation unit 21, and the electrical signal is detected by the first detection module 41, and the control unit 42 sends a start signal to the wireless communication module 43 according to the received electrical signal, so as to start the wireless communication module 43, thereby establishing a wireless link with the external smart device.
In a preferred embodiment, the wireless communication module 43 includes: the wireless transmitting unit 43 is used for transmitting a wireless signal, and the wireless receiving unit 52 is matched with the wireless transmitting unit 43, the wireless transmitting unit 43 is electrically connected with the control unit 42, the wireless receiving unit 52 is integrated on the plug-in 5, and the plug-in 5 is detachably connected in the cabin body 2; the insert 5 further comprises: the data port 53, the data port 53 is electrically connected to the wireless receiving unit 52.
Specifically, a wireless transmitting unit 43 and a wireless receiving unit 52 may be disposed in the bin body 2 of the earphone box. The wireless transmitting unit 43 is used for transmitting the indication signal and the orientation signal transmitted by the control unit 42, and the wireless receiving unit 52 can be paired with the wireless transmitting unit 43. The wireless receiving unit 42 is integrated on the insert 5, and the insert 5 is detachably provided on the earphone box. Therefore, after the user performs the starting operation, the plug-in 5 can be detached from the earphone box and taken out, and the connection with the intelligent device is established through the data port 53 on the plug-in 5. The earphone box can send the indication signal and the direction signal to the external intelligent device through the wireless transmitting unit 43, the wireless receiving unit 52 and the data port 53, so that plug and play is realized, independent pairing with the intelligent device is not needed, and the earphone box can be suitable for intelligent devices of any models. When the device is used, the user experience and convenience are improved.
In this embodiment, the wireless transmitting unit 43 may be any one of a bluetooth unit, a WIFI unit, an infrared transmitting unit for emitting infrared rays, a Zigbee unit, and an NFC unit, or other units and chips capable of implementing a wireless communication function. The wireless receiving unit 52 is matched with the wireless transmitting unit 43, when the wireless receiving unit 52 is detached from the cabin body 2 and is taken out, and is communicated with an interface on the intelligent device through the data port 52, a wireless link is established between the wireless receiving unit 52 and the wireless transmitting unit 43, and signal transmission is carried out.
In particular, the data port 53 is used to establish signal transmission with an external smart device. In general, for example, a mobile notebook computer is provided, and the smart devices are all provided with USB interfaces. The data port 53 on the plug-in 5 can be matched with a USB interface on the intelligent device so as to establish communication with the intelligent device, and transmitted instructions are analyzed and decoded through the interface for the intelligent device to read.
In one embodiment, as shown in fig. 5 and 7, the insert 5 further comprises: a storage unit 51 for storing data, the data comprising: the memory unit 51 is electrically connected with the data port 53, and the memory unit may be one or more of audio data, video data, document data, and image data.
In this embodiment, the storage unit 51 may establish data transmission with the smart device through the data port 53, and the earphone box may not only implement a mouse function, but also be used for storing data, and has better convenience and functionality. When the earphone box is required to establish communication with the intelligent device, the plug-in is taken out of the cabin body 2 and inserted into the USB interface on the intelligent device, the connection between the intelligent device and the plug-in is established, and data can be stored in the storage unit 51 or the data in the storage unit 51 is led into the intelligent device. Since the plug-in 5 is also provided with a wireless receiving unit 52 matched with the wireless transmitting unit 43 arranged in the earphone box, real-time transmission of user instructions is realized through the established wireless link. When the user operates the earphone box, the plug-in 5 can be used as a USB flash disk as well as a function of establishing communication.
Preferably, the insert 5 can be ejected from the cartridge body 2 when the user performs a key operation. In the present embodiment, when the earphone box is required to establish communication with the smart device, the wireless transmission unit 43 is activated through the operation unit 21. At the moment, the plug-in 5 pops out from the bin body 2, the plug-in 5 is not required to be detached from the earphone box by manual means, and the user experience and operation convenience are improved. Said inserts 5 can be ejected either laterally from the cartridge body 2 or rotationally from the cartridge body 2. In the present embodiment, the manner and structure of ejecting the card 5 from the magazine 2 are not particularly limited as long as the ejection of the card 2 can be achieved.
In one embodiment, the wireless communication module 43 is specifically a bluetooth module for sending a wireless signal, so as to establish a wireless connection with a bluetooth module on an external smart device and transmit an instruction.
In this description, the second detection module is configured to implement a positioning function of the mouse, and the second detection module is configured to detect a second electrical signal in response to a position of the earphone box, so as to help a user to position a longitudinal and lateral position of a display system of the smart device. As shown in fig. 4, the second detection module may include: a light source 44 for emitting detection light; a lens assembly 45 located below the light source 44; a photoelectric sensor 46, wherein the photoelectric sensor 46 is provided with a light sensing part for acquiring the movement track information of the earphone box; an image analysis unit 47 electrically connected to the photosensor 46 and the control unit 42; the bottom of earphone box is provided with the trompil that is used for wearing out the detection light, and the detection light certainly after light source 44 sends, incide to earphone box below reflection of light face 48 through lens subassembly 45, trompil in proper order on, then throw to the photosensing portion after reflection of light face 48, lens subassembly 45.
In particular, the light source 44 may be a light emitting diode. The lens assembly 45 is used for collecting the light emitted from the light source 44 and illuminating the reflective surface 48 under the earphone box. The light reflected by the reflective surface 48 carries the position information of the headphone case, and is transmitted to the photoelectric sensor 46 through the lens assembly 45 again, and is incident on the light-sensing portion of the photoelectric sensor 46 to form an image. Thus, as the earphone box moves, the movement track thereof is recorded as a set of continuously shot images, and the changes of the images are acquired and analyzed by the image analysis unit 47 to determine the moving direction and the moving distance of the earphone box, thereby generating the second electric signal. In this embodiment, the light source 44 and the photosensor 46 are preferably integrated on a substrate disposed on a PCB board on which the first detection module 41, the second detection module, and the control unit 42 are located. The lens assembly 45 may comprise two parts, one part being integrated below the light source 44 and the other part being integrated below the photosensor 46, thereby enabling the overall thickness to be reduced.
In this specification, the bottom of the earphone box is provided with an opening (not shown in the figure) for passing out the detection light, so that the reflective surface 48 below the earphone box can be illuminated.
In this specification, as shown in fig. 6, the circuit structure further includes a storage unit 51 for storing data, where the storage unit 51 is used for data transmission with another intelligent device, and the data includes: one or more of audio data, video data, document data, and image data. It will be appreciated that by using a suitable memory unit 51, the memory unit 51 is capable of storing data in any format for use by a user. The storage unit 51 may be an internal flash memory, an external memory card, or the like, and the specific form is not limited. The storage unit 51 may be a memory card disposed in the bin 2, and the data may be stored and exported by connecting the memory card to a data transmission device, for example, connecting the memory card to a card reader. Or the storage unit 51 is connected with the control unit 42 and operates under the control of the control unit 42, and the data stored in the storage unit 51 can be exported to an external device by a user through wired communication or wireless communication.
In a preferred embodiment, the storage unit 51 performs data transmission with another intelligent device through the wireless communication module 43, and the storage unit 51 is electrically connected to the wireless communication module 43, the control unit 42 and the power management module. The control unit 42 may send an activation signal to activate the wireless communication module 43 and the storage unit 51 at the same time, and the control unit 42 may also send an activation signal to activate the wireless communication module 43 and the storage unit 51 in a predetermined order. In the present embodiment, as shown in fig. 5, when the control unit 42 receives the first electric signal sent by the first detection module 41 to perform the start operation, the start signal is sent to the wireless communication module 43 and the storage unit 51, and simultaneously the wireless communication module 43 and the storage unit 51 are activated, and the storage unit 51 transmits the storage data to the external smart device through the wireless communication module 43.
Specifically, the wireless communication module 43 may include a wireless transmitting unit for transmitting bluetooth signals and a wireless receiving unit matched with the wireless transmitting unit, wherein the wireless receiving unit is integrated on the insert 5, and the insert 5 is detachably connected in the bin body 2. Of course, the wireless communication module 43 may be specifically a bluetooth module for emitting bluetooth signals. In this embodiment, the storage unit 51 preferably realizes data transmission with the smart device by a bluetooth transmission method.
In one embodiment, the circuit structure further comprises: an interface unit 54 capable of establishing a USB connection with the other intelligent device and a storage unit 51 for storing data including: the storage unit 51 is electrically connected to the control unit 42, the power management module, and the interface unit 54.
Generally, as shown in fig. 2, the earphone pod bodies 2 each have an interface unit 54 thereon for charging earphones. The interface unit 54 is specifically a data interface disposed on the earphone pod 2, and the interface unit 54 not only can be used as a charging interface, but also can be used to establish communication with an intelligent device. Further, at least one interface unit 54 is provided, and when a plurality of interface units 54 are provided, the interface units can be divided into a charging interface and a data transmission interface according to their functions, which is not particularly limited in the present application.
In this embodiment, the storage unit 51 can perform data transmission with another smart device through the interface unit 54 on the cartridge body 2. The interface unit 54 is not only used for charging the earphone, but also used for establishing communication with the smart device, and the storage unit 51 may export and store data with the smart device through the interface unit 54 on the earphone box.
In other possible embodiments, the storage unit 51 is removably associated to the cartridge body 2. The storage unit 51 may be a memory card disposed in the bin 2, and the memory card may be connected to a data transmission device for data storage and transmission.
In the present application, the first detection module 41 and the second detection module in the embodiment of the present application detect the voltage signal and perform an operation such as analysis processing on the voltage signal, so that the control unit 42 issues a signal corresponding to a user operation. The utility model discloses technical scheme has realized that the confession user passes through the work of this earphone box in order to operate the smart machine, the effectual multifunctionality that improves the earphone box has promoted user's use and has experienced. The control unit 42 may be implemented in any suitable way. In particular, for example, the control unit 42 may take the form of, for example, a microprocessor or processor and a memory store executable by the microprocessor or processorComputer readable medium of computer readable program code (e.g. software or firmware), logic gate, switch, application specific integrated circuit (a)PPLICATION SPECIFIC INTEGRATED CIRCUITASIC), programmable logic controller (P)ROGRAMMABLE LOGIC CONTROLLERPLC) and embedded micro-control unit (M)ICROCONTROLLER UNITMCU), examples of such modules include, but are not limited to, the following micro control units: ARC 625D, ATMEL AT91SAM、MICROCHIPPIC18F26K20 and SILICONE LABSC8051F 320. It will also be appreciated by a person skilled in the art that instead of implementing the functionality of the control unit 42 in the form of pure computer readable program code, it is entirely possible to logically program the method steps such that the control unit implements the same functionality in the form of logic gates, switches, application specific integrated circuits, programmable logic controllers, embedded micro control units, etc.
The application also provides an earphone kit, the earphone kit includes the earphone box to and set up the earphone in holding the cavity. The specific structural parameters of the earphone box in the above embodiments are all technical solutions of all the above embodiments, so that the earphone kit at least has all beneficial effects brought by the technical solutions of the above embodiments, and details are not repeated here.
In this specification, the earphone box has a circuit structure for charging the earphone, and the circuit structure is provided with a power management module for managing power supply of the battery module to each module. When the user performs the start operation, the control unit 42 starts the wireless communication module 43 and the other modules and units to be turned on, and the battery module supplies power to the respective modules. Referring to fig. 3, the bin body 2 is further provided with an indicator light 6, the indicator light 6 may be electrically connected to the power management module, the battery module and the charging portion, and the indicator light 6 may be used to indicate the charging condition of the earphone box to the earphone and the electric quantity state of the battery module. The indicator light 6 can also be used for indicating other operating conditions of the earphone box, and can be electrically connected with the control unit 42, so that the operating conditions of the earphone box when the earphone box is used as a mouse can be indicated, or the indicator light 6 can also be electrically connected with the storage unit 51, and when the earphone box is used as a USB flash disk, the indicator light 6 can display the operating conditions of data transmission with the intelligent device. Further, the earphone box comprises an upper cover 1, the upper cover 1 is provided with an upper cover switch 11, and the upper cover switch 11 is used for opening the upper cover 1 and closing the upper cover 1. The upper cover switch 11 can be designed to be of a flicking type or a magnetic type structure, and correspondingly, the bin body 2 can be provided with a structure matched with the upper cover switch 11 to realize the opening and closing functions of the upper cover 1.
The above embodiments are merely illustrative of the technical concepts and features of the present application, and the purpose of the present invention is to enable those skilled in the art to understand the content of the present application and implement the present application, and not to limit the protection scope of the present application. All equivalent changes and modifications made according to the spirit of the present application should be covered in the protection scope of the present application.
A plurality of elements, components, parts or steps can be provided by a single integrated element, component, part or step. Alternatively, a single integrated element, component, part or step may be divided into separate plural elements, components, parts or steps. The disclosure of "a" or "an" to describe an element, ingredient, component or step is not intended to foreclose other elements, ingredients, components or steps.
It should be noted that, in the description of the present application, the terms "first", "second", and the like are used for descriptive purposes only and for distinguishing similar objects, and no precedence between the two is intended or should be construed to indicate or imply relative importance. In addition, in the description of the present application, "a plurality" means two or more unless otherwise specified.
It is to be understood that the above description is intended to be illustrative, and not restrictive. Many embodiments and many applications other than the examples provided will be apparent to those of skill in the art upon reading the above description. The disclosures of all articles and references, including patent applications and publications, are hereby incorporated by reference for all purposes.

Claims (10)

1. An earphone box, comprising: the earphone comprises an upper cover and a bin body, wherein the bin body comprises a containing cavity for containing earphones, an operation unit is arranged on the bin body, and the bin body is internally provided with: the earphone comprises a charging part for charging the earphone, a battery module and a circuit structure for electrically connecting the charging part with the battery module;
the circuit structure includes: the power supply management module is used for managing power supply of the battery module;
the first detection module is electrically connected with the operation unit and is used for detecting a first electric signal sent by the operation unit;
a second detection module for detecting a second electrical signal based on the position of the earphone box;
the control unit is electrically connected with the first detection module, the second detection module and the power management module, and sends out an indication signal based on the first electric signal and a direction signal based on the second electric signal;
the wireless communication module is used for establishing a wireless link between the control unit and external intelligent equipment and is electrically connected with the control unit.
2. The earphone box of claim 1, wherein the at least one operating unit is any one of the following forms: the mouse comprises a key and a roller, wherein the key and the roller are used for realizing the function of the mouse.
3. The headset case of claim 1, wherein the wireless communication module comprises: the wireless transmitting unit is electrically connected with the control unit, the wireless receiving unit is integrated on a plug-in unit, and the plug-in unit is detachably connected in the bin body; the insert further comprises: and the data port is electrically connected with the wireless receiving unit.
4. The headset case of claim 3, wherein the insert further comprises: a memory unit for storing data, the data comprising: the memory unit is electrically connected with the data port.
5. The headset case of claim 3, wherein the wireless transmitting unit comprises: the Bluetooth module comprises any one of a Bluetooth unit, a WIFI unit, an infrared emission unit for emitting infrared rays, a Zigbee unit and an NFC unit.
6. Earphone box according to claim 1, wherein said wireless communication module is in particular a bluetooth module for emitting bluetooth signals.
7. Earphone box according to claim 1 or 6, characterized in that said circuit arrangement comprises a memory unit for storing data comprising: the storage unit is electrically connected with the control unit, the power management module and the wireless communication module.
8. The headset case of claim 1, wherein the circuit structure further comprises: the USB interface unit can establish USB connection with the external intelligent equipment and a storage unit used for storing data, wherein the data comprises: the storage unit is electrically connected with the control unit, the power management module and the interface unit.
9. The headset case of claim 1, wherein the second detection module comprises:
a light source for emitting detection light;
a lens assembly located below the light source;
the earphone box comprises a photoelectric sensor, a control unit and a display unit, wherein the photoelectric sensor is provided with a light sensing part for acquiring movement track information of the earphone box;
the image analysis unit is electrically connected with the photoelectric sensor and the control unit;
the bottom of earphone box is provided with and is used for wearing out detect the trompil of light, detect light certainly after the light source sends, pass through in proper order the lens subassembly the trompil incides to on the reflection of light face of earphone box below, then the warp reflection of light face, lens subassembly after the reflection throw extremely the sensitization portion.
10. Earphone kit, characterized in that the earphone kit comprises an earphone box according to any of claims 1-9, and an earphone arranged in the receiving chamber.
CN202021224617.9U 2020-06-29 2020-06-29 Earphone box and earphone set Active CN212183717U (en)

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Application Number Priority Date Filing Date Title
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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113068875A (en) * 2021-03-31 2021-07-06 深圳市讴可电子科技有限公司 Electronic cigarette and control method of electronic device
CN113784253A (en) * 2021-10-28 2021-12-10 歌尔科技有限公司 Multifunctional earphone charging box, control method thereof and terminal control system

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113068875A (en) * 2021-03-31 2021-07-06 深圳市讴可电子科技有限公司 Electronic cigarette and control method of electronic device
CN113784253A (en) * 2021-10-28 2021-12-10 歌尔科技有限公司 Multifunctional earphone charging box, control method thereof and terminal control system
CN113784253B (en) * 2021-10-28 2022-10-18 歌尔科技有限公司 Multifunctional earphone charging box, control method thereof and terminal control system
WO2023071741A1 (en) * 2021-10-28 2023-05-04 歌尔股份有限公司 Multifunctional earphone charging box and control method therefor, and terminal control system

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