CN110021989A - Automatic charge device and wearable device - Google Patents

Automatic charge device and wearable device Download PDF

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Publication number
CN110021989A
CN110021989A CN201910366281.5A CN201910366281A CN110021989A CN 110021989 A CN110021989 A CN 110021989A CN 201910366281 A CN201910366281 A CN 201910366281A CN 110021989 A CN110021989 A CN 110021989A
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CN
China
Prior art keywords
annular
annular magnet
wearable device
annular groove
automatic charge
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
CN201910366281.5A
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Chinese (zh)
Inventor
王德全
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Nubia Technology Co Ltd
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Nubia Technology Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Nubia Technology Co Ltd filed Critical Nubia Technology Co Ltd
Priority to CN201910366281.5A priority Critical patent/CN110021989A/en
Publication of CN110021989A publication Critical patent/CN110021989A/en
Pending legal-status Critical Current

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Classifications

    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02JCIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
    • H02J7/00Circuit arrangements for charging or depolarising batteries or for supplying loads from batteries
    • H02J7/0042Circuit arrangements for charging or depolarising batteries or for supplying loads from batteries characterised by the mechanical construction
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02JCIRCUIT ARRANGEMENTS OR SYSTEMS FOR SUPPLYING OR DISTRIBUTING ELECTRIC POWER; SYSTEMS FOR STORING ELECTRIC ENERGY
    • H02J7/00Circuit arrangements for charging or depolarising batteries or for supplying loads from batteries
    • H02J7/32Circuit arrangements for charging or depolarising batteries or for supplying loads from batteries for charging batteries from a charging set comprising a non-electric prime mover rotating at constant speed
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02KDYNAMO-ELECTRIC MACHINES
    • H02K35/00Generators with reciprocating, oscillating or vibrating coil system, magnet, armature or other part of the magnetic circuit
    • H02K35/02Generators with reciprocating, oscillating or vibrating coil system, magnet, armature or other part of the magnetic circuit with moving magnets and stationary coil systems
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B40/00Technologies aiming at improving the efficiency of home appliances, e.g. induction cooking or efficient technologies for refrigerators, freezers or dish washers

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  • Engineering & Computer Science (AREA)
  • Power Engineering (AREA)
  • Charge And Discharge Circuits For Batteries Or The Like (AREA)

Abstract

This application discloses a kind of automatic charge device and wearable devices, wherein automatic charge device includes annular groove and annular magnet;The annular magnet setting is jagged, and is slidably disposed in annular groove;The cover board for preventing annular magnet to be axially moved is provided on the annular groove, the shaft core position of the annular groove is installed with coil;It further include the rectification circuit and battery being set to outside annular groove, the input terminal of the rectification circuit and the lead of coil connect, and the output end of the rectification circuit is connect with battery.Technical solution of the present invention can charge the battery in automatic generation under motion state, solve the problems, such as that battery life is short, needs frequent external power charging.

Description

Automatic charge device and wearable device
Technical field
The present invention relates to charging technique field, in particular to a kind of automatic charge device and wearable device.
Background technique
Currently, due to the multifunction of wearable device, such as: wearable device has movement step function, rate pressure Monitoring function etc., and it is based on many advantages, such as wearable device is easy to carry and fashion is beautiful, it is more and more popular with consumers. But it is limited to the volume of wearable device, the battery of wearable device generally will not be very big, and corresponding battery capacity also compares It is small, cause the time used of wearable device not grown, usually take one day one and fill or fill more than a day, to life bring it is many not Just.
Summary of the invention
The main object of the present invention is to provide a kind of automatic charge device, it is intended to can in automatic generation under motion state, It charges the battery, solves the problems, such as that battery life is short, needs frequent external power charging.
To achieve the above object, automatic charge device proposed by the present invention, including annular groove and annular magnet;The ring The setting of shape magnet is jagged, and is slidably disposed in annular groove;Being provided on the annular groove prevents annular magnet The shaft core position of the cover board of axial movement, the annular groove is installed with coil;
It further include the rectification circuit and battery being set to outside annular groove, the input terminal of the rectification circuit and drawing for coil Line connection, the output end of the rectification circuit are connect with battery.
Preferably, the eccentric massblock that density is less than annular magnet is installed in the notch of the annular magnet.
Preferably, the eccentric massblock is plastic cement.
It preferably, further include guiding piece that density is greater than annular magnet, the one of the notch of the guiding piece and annular magnet End is flexibly connected, and is placed in notch.
Preferably, the shape of the guiding piece is spherical.
Preferably, the guiding piece includes shot, tungsten ball or tungsten alloy ball.
Preferably, the annular magnet is in hollow and annular.
Preferably, the axial cross section of the annular magnet is round, ellipse or annular.
The present invention also proposes that a kind of wearable device, the wearable device include shell and automatic charging as described above Device is provided with annular insulating piece in the shell, and the annular insulating piece circumferentially forms the ring of the automatic charge device Connected in star, the coil, rectification circuit and battery are fixedly arranged in shell.
Technical solution of the present invention is arranged jagged by annular magnet, keeps the weight of annular magnet asymmetric, at device When under motion state, annular magnet can slide in annular groove, so that the magnetic direction of annular magnet is changed, line Circle is fixedly arranged on the shaft core position of annular groove, when magnetic field position changes, coil opposed annular magnet movement cutting magnetic field Magnetic induction line, generate alternating current, alternating current is turned alternating current by the rectification circuit of the lead of coil input connection, rectification circuit Direct current is turned to, and the alternating current of output is charged the battery by its output end, the kinetic energy that movement generates is taken full advantage of and drives Battery automatic charging is given in dynamic device power generation, realization, solves that battery life is short, needs asking for frequent external power charging Topic, while the energy is saved, have the effect of environmentally protective.
Detailed description of the invention
The drawings herein are incorporated into the specification and forms part of this specification, and shows and meets implementation of the invention Example, and be used to explain the principle of the present invention together with specification.
In order to more clearly explain the embodiment of the invention or the technical proposal in the existing technology, to embodiment or will show below There is attached drawing needed in technical description to be briefly described, it should be apparent that, for those of ordinary skill in the art Speech, without any creative labor, is also possible to obtain other drawings based on these drawings.
Fig. 1 is a kind of hardware structural diagram of embodiment of wearable device provided in an embodiment of the present invention;
Fig. 2 is a kind of hardware schematic of embodiment of wearable device provided by the embodiments of the present application;
Fig. 3 is a kind of hardware schematic of embodiment of wearable device provided by the embodiments of the present application;
Fig. 4 is a kind of hardware schematic of embodiment of wearable device provided by the embodiments of the present application;
Fig. 5 is a kind of hardware schematic of embodiment of wearable device provided by the embodiments of the present application;
Fig. 6 is a kind of structural schematic diagram of embodiment of automatic charge device provided by the embodiments of the present application;
Fig. 7 is a kind of structural schematic diagram of embodiment of automatic charge device provided by the embodiments of the present application;
Fig. 8 is a kind of structural schematic diagram of embodiment of automatic charge device provided by the embodiments of the present application;
Fig. 9 is a kind of structural schematic diagram of embodiment of wearable device provided by the embodiments of the present application;
Figure 10 is a kind of structural schematic diagram of embodiment of wearable device provided by the embodiments of the present application.
Drawing reference numeral explanation:
1, annular groove, 2, annular magnet, 3, notch, 4, coil, 5, rectification circuit, 6, battery, 7, eccentric massblock, 8, Guiding piece, 9, shell, 10, annular insulating piece.
Specific embodiment
It should be appreciated that the specific embodiments described herein are merely illustrative of the present invention, it is not intended to limit the present invention.
In subsequent description, it is only using the suffix for indicating such as " module ", " component " or " unit " of element Be conducive to explanation of the invention, itself there is no a specific meaning.Therefore, " module ", " component " or " unit " can mix Ground uses.
The present invention proposes a kind of automatic generating plant.
It is a kind of structural representation of embodiment of automatic charge device provided by the embodiments of the present application referring to Fig. 6 to 9, Fig. 6 Figure;Fig. 7 is a kind of structural schematic diagram of embodiment of automatic charge device provided by the embodiments of the present application;Fig. 8 is that the application is real A kind of structural schematic diagram of embodiment of automatic charge device of example offer is provided;Fig. 9 is provided by the embodiments of the present application wearable A kind of structural schematic diagram of embodiment of equipment;Figure 10 is a kind of embodiment of wearable device provided by the embodiments of the present application Structural schematic diagram.
In embodiments of the present invention, the automatic generating plant, including annular groove 1 and annular magnet 2;The annular magnet 2 settings jagged 3, and be slidably disposed in annular groove;Being provided on the annular groove 1 prevents 2 axis of annular magnet To the cover board (not shown go out) of movement, the shaft core position of the annular groove 1 is installed with coil 4;
It further include the rectification circuit 5 and battery 6 being set to outside annular groove 1, the input terminal and coil of the rectification circuit 5 4 lead connection, the output end of the rectification circuit 5 are connect with battery 6, as shown in Figure 6.
Technical solution of the present invention is slidably disposed in annular groove 1 by using annular magnet 2, and annular magnet 2 is set It is equipped with notch 3, keeps the weight of annular magnet 2 asymmetric, when automatic charge device is swung due to the movement of user, annular For magnet 2 since weight asymmetry is slided in annular groove 1 with the movement of user, sliding makes the magnetic of annular magnet 2 Field direction changes, and coil 4 is fixedly arranged on the shaft core position of annular groove 1, when annular magnet 2 slides, is equivalent to line Cutting magnetic induction line movement is done in the magnetic field for enclosing 4 opposed annular magnet 2, generates alternating current, and alternating current is inputted by the lead of coil 4 to be connected The rectification circuit 5 connect, being set to rectification circuit 5 outside annular groove 1 for AC conversion is direct current, and by the exchange of output Electricity is charged by its output end to battery 6, it should be noted that in embodiment, rectification circuit 5 is the prior art
Cover board is provided on annular groove 1, cover board can prevent annular magnet 2 from skidding off annular along the axial movement of groove Groove 1.
In embodiments of the present invention, the kinetic energy driving mechanism that user movement generates the movement of annular magnet 2 is taken full advantage of Power generation, realization give battery 6 automatic charging, solve the problems, such as that 6 cruise duration of battery is short, needs frequent external power charging, together When save the energy, have the effect of environmentally protective.
Further, the eccentric massblock 7 that density is less than annular magnet 2 is installed in the notch 3 of the annular magnet 2, As shown in Figure 7.
It is to be understood that eccentric matter can be fixedly installed in the notch 3 of annular magnet 2 in ground of the invention embodiment Eccentric massblock 7 can be arranged in notch 3 and connected with 3 face of notch by gauge block 7, or can be by eccentric massblock 7 and annular magnet 2 Eccentric massblock 7 can also be placed in notch 3 by 3 face adhesion of notch by filling fixation, and the density of eccentric massblock 7 is less than The density of magnet, the magnet weight for locating notch 3 symmetrically are greater than the weight of notch 3, keep the weight of annular magnet 2 asymmetric, i.e., The deviation of gravity center shaft core position of annular magnet 2, the symmetrical place of notch 3 are easy to drive annular magnet 2 in groove under inertial states Automatic generation is realized in sliding.
In embodiments of the present invention, the fixed eccentric massblock 7 in notch 3, keeps the sliding of annular magnet 2 more balanced, 4 opposed annular magnetic field of coil moves, and the line of magnetic induction for cutting the magnetic field of annular magnet 2 generates electric current, realizes automatic generation, And it charges to battery 6.
Further, the eccentric massblock 7 is plastic cement.
The density of plastic cement is less than the density of annular magnet 2, has light, durable, anticorrosion, easy to drawing materials and easy processing molding The advantages of., can be by after plastic molding when eccentric massblock 7 is plastic cement, matching clamping is set to the notch 3 of annular magnet 2, Plastic cement shape size matches with notch 3, plastic cement can be adhered to 3 end of notch of annular magnet 2, or by being molded in film Plastic cement is filled at high operating temperatures to notch 3 and is formed by mode, and the plastic cement may include;Plastics, rubber, resin or foam.
It further, further include guiding piece 8 of the density greater than annular magnet 2, the guiding piece 8 is lacked with annular magnet 2 One end of mouth 3 is flexibly connected, and is placed in notch 3, as shown in Figure 8.
It in another embodiment of the invention, can also include guiding piece 8 of the density greater than annular magnet 2, guiding piece 8 can It is movably connected with one end with the notch 3 of annular magnet 2, can be lacked the connection annular magnet 2 of guiding piece 8 by rope or metallic bond Mouthfuls 3 one end is placed in guiding piece 8 in notch 3 and can be movable in notch 3, since the density of guiding piece 8 is greater than annular magnet 2 density makes the quality of guiding piece 8 be greater than the quality with the annular magnet 2 of 3 symmetric position of notch, due to 2 weight of annular magnet It is unbalanced, the deviation of gravity center shaft core position of annular magnet 2, and since guiding piece 8 can move in notch 3, enable annular magnet 2 Enough to slide in annular groove 1, the coil 4 for being fixed on 1 shaft core position of annular groove cuts the magnetic induction in 2 magnetic field of annular magnet Line, generates electric current, and the automatic generation function of realization device charges to battery 6.
In embodiments of the present invention, the metal block of annular magnet 2 can be greater than with density of setting, metal block is set to notch In 3, and the size of metal block matches with 3 size of notch, and metal block can be poured in a liquid state and be cast from notch 3, or Metal block first forms is set to notch 3 afterwards.Due to metal block, same annular magnet 2 is unbalanced in annular groove 1 due to weight Inside slidably, the coil 4 for being fixed on 1 shaft core position of annular groove cuts the line of magnetic induction in 2 magnetic field of annular magnet, generates electric current, The automatic generation function of realization device charges to battery 6.
Further, it is spherical for stating the shape of guiding piece 8.
Sphere is easy to the sliding of the annular groove 1 at 2 notch 3 of annular magnet, it is easier to it is recessed in annular to draw annular magnet 2 Sliding in slot 1, generates electric current, improves generating efficiency.
Further, the guiding piece 8 includes shot, tungsten ball or tungsten alloy ball etc..The material of guiding piece 8 can also include Density is greater than the other materials of 2 density of annular magnet.
Metal block also may include lead, tungsten block, tungsten alloy block etc. in embodiment, and the material of metal block can also include Density is greater than the other materials of 2 density of annular magnet.
Lead, tungsten and tungsten alloy ball easy to drawing materials, molding easy to manufacture and have it is corrosion-resistant, the advantages of anti-high pressure.It is led suitable for production Draw block 8 or metal block.
Further, the annular magnet 2 is in hollow and annular.
In embodiment, annular magnet 2 can be fabricated to hollow state, reduce the weight of annular magnet 2, make at notch 3 Corresponding weight and the weight of guiding piece 8 or the weight difference of metal block are bigger, and easier traction annular magnet 2 is in annular groove 1 Interior sliding improves the efficiency of power generation.
Further, the axial cross section of the annular magnet 2 is round, ellipse or annular.
In embodiment, in solid state, the section of annular magnet 2 can be round or oval annular magnet 2, When section is circular shape or elliptical shape, annular magnet 2 is easy to slide in annular groove 1, improves the generating efficiency of device.
The present invention also proposes a kind of wearable device, which includes shell 9 and automatic charging as described above Device, the specific structure being somebody's turn to do is referring to above-described embodiment, since this wearable device uses whole skills of above-mentioned all embodiments Art scheme, therefore all beneficial effects brought by the same technical solution with above-described embodiment, this is no longer going to repeat them. Wherein, ring block, the circumferentially arranged annular groove 1 of ring block, the coil 4, rectification circuit are provided in the shell 9 5 and battery 6 be fixedly arranged in shell 9.Annular insulating piece 10 is provided in the shell 9, the annular insulating piece 10 is circumferentially Annular groove 1 is set, and the coil 4, rectification circuit 5 and battery 6 are fixedly arranged in shell 9, and the cover board is the back of shell 9 Plate, as shown in Figure 9 and Figure 10.
In the embodiment of the present invention, annular insulating piece 10 is provided in shell 9, annular insulating piece 10 can be fixed and be placed in shell 9 insides, thickness can be identical as the height of shell 9, and alloing cover board is the backboard of shell 9, and annular groove 1 is in annular insulating piece 10 circumferentially arranged annular grooves 1, annular groove 1 can run through the height of annular insulating piece 10, and making the bottom of annular groove 1 is shell The part of other internal structures of 9 part of body or wearable device can cover ring while backboard covers shell 9 Connected in star 1 prevents the axially sliding groove of annular magnet 2, reduces the cost of raw material of wearable device, annular insulating piece 10 prevents ring Shape magnet 2 radially slides, and also has the effect of insulation, while guaranteeing the magnetic field effect of annular magnet 2, improves wearable set Standby safety.
In embodiment, the shape of wearable device can be the other shapes such as round or rectangular, can be fixed on coil 4 The center of shell 9.
In embodiment, slip agent can be laid on the groove face of annular groove 1, make annular magnet 2 in annular groove 1 more Easily sliding, improves the generating efficiency of device.
Coil 4, rectification circuit 5 and battery 6 are fixedly arranged in shell 9, and wearable device is in wearing state, with user Movement, wearable device is swung, and with the swing of wearable device, annular magnet 2 moves in annular groove 1, line Circle 4 is placed in the shell 9 of 1 shaft core position of annular groove, with the sliding of annular magnet 2, the ring of fixed 4 cutting movement of coil The line of magnetic induction in 2 magnetic field of shape magnet, and alternating current is generated, the rectification circuit 5 that alternating current is connected by the lead input of coil 4, AC conversion is direct current by the rectification circuit 5 being fixed in shell 9, and the alternating current exported is given by its output end can The battery 6 of wearable device charges,
The kinetic energy that taking full advantage of user movement generates the movement of annular magnet 2 drives the automatic charging being placed in shell 9 Device power generation is realized that 6 cruise duration of battery for solving wearable device to 6 automatic charging of battery of wearable device is short, is needed The problem of wanting frequent external power charging can charge whenever and wherever possible to battery 6, while save the energy, have environmentally protective Effect.
The wearable device provided in the embodiment of the present invention includes that Intelligent bracelet, smartwatch and smart phone etc. move Dynamic terminal.With the continuous development of Screen Technology, the appearance of the screens form such as flexible screen, Folding screen, smart phone etc. is mobile eventually End can also be used as wearable device.The wearable device provided in the embodiment of the present invention may include: RF (Radio Frequency, radio frequency) unit, WiFi module, audio output unit, A/V (audio/video) input unit, sensor, display The components such as unit, user input unit, interface unit, memory, processor and power supply.
It will be illustrated by taking wearable device as an example in subsequent descriptions, referring to Fig. 1, its each implementation to realize the present invention A kind of hardware structural diagram of wearable device of example, which may include: RF (Radio Frequency, radio frequency) unit 101, WiFi module 102, audio output unit 103, A/V (audio/video) input unit 104, Sensor 105, display unit 106, user input unit 107, interface unit 108, memory 109, processor 110, Yi Ji electricity The components such as source 111.It will be understood by those skilled in the art that wearable device structure shown in Fig. 1 is not constituted to wearable The restriction of equipment, wearable device may include perhaps combining certain components or difference than illustrating more or fewer components Component layout.
It is specifically introduced below with reference to all parts of the Fig. 1 to wearable device:
Radio frequency unit 101 can be used for receiving and sending messages or communication process in, signal sends and receivees, specifically, radio frequency list Uplink information can be sent to base station by member 101, and after the downlink information that in addition can also be sent base station receives, being sent to can be worn The processor 110 for wearing equipment is handled, and base station can be to the downlink information that radio frequency unit 101 is sent and be sent out according to radio frequency unit 101 What the uplink information sent generated, it is also possible to actively push away to radio frequency unit 101 after the information update for detecting wearable device It send, for example, base station can penetrating to wearable device after detecting that geographical location locating for wearable device changes Frequency unit 101 sends the message informing of geographical location variation, and radio frequency unit 101, can should after receiving the message informing The processor 110 that message informing is sent to wearable device is handled, and it is logical that the processor 110 of wearable device can control the message Know on the display panel 1061 for being shown in wearable device;In general, radio frequency unit 101 include but is not limited to antenna, at least one Amplifier, transceiver, coupler, low-noise amplifier, duplexer etc..In addition, radio frequency unit 101 can also pass through channel radio Letter communicated with network and other equipment, specifically may include: by wireless communication with the server communication in network system, example Such as, wearable device can download file resource from server by wireless communication, for example can download and answer from server With program, after wearable device completes the downloading of a certain application program, if the corresponding file of the application program in server Resource updates, then the server can be by wireless communication to the message informing of wearable device push resource updates, to remind User is updated the application program.Any communication standard or agreement can be used in above-mentioned wireless communication, including but not limited to GSM (Global System of Mobile communication, global system for mobile communications), GPRS (General Packet Radio Service, general packet radio service), CDMA2000 (Code Division Multiple Access 2000, CDMA 2000), (Wideband Code Division Multiple Access, wideband code division are more by WCDMA Location), TD-SCDMA (Time Division-Synchronous Code Division Multiple Access, time division synchronous CDMA), (Frequency Division Duplexing-Long Term Evolution, frequency division duplex are long by FDD-LTE Phase evolution) and TDD-LTE (Time Division Duplexing-Long Term Evolution, time division duplex are drilled for a long time Into) etc..
In one embodiment, wearable device 100 can access existing communication network by insertion SIM card.
In another embodiment, wearable device 100 can be come real by the way that esim card (Embedded-SIM) is arranged Existing communication network is now accessed, by the way of esim card, the inner space of wearable device can be saved, reduce thickness.
It is understood that although Fig. 1 shows radio frequency unit 101, but it is understood that, radio frequency unit 101 its And it is not belonging to must be configured into for wearable device, it can according to need within the scope of not changing the essence of the invention and save completely Slightly., wearable device 100 can realize the communication connection with other equipment or communication network separately through wifi module 102, The embodiment of the present invention is not limited thereto.
WiFi belongs to short range wireless transmission technology, and wearable device can help user to receive and dispatch by WiFi module 102 Email, browsing webpage and access streaming video etc., it provides wireless broadband internet access for user.Although Fig. 1 WiFi module 102 is shown, but it is understood that, and it is not belonging to must be configured into for wearable device, it completely can root It is omitted within the scope of not changing the essence of the invention according to needs.
Audio output unit 103 can be in call signal reception pattern, call mode, record in wearable device 100 When under the isotypes such as mode, speech recognition mode, broadcast reception mode, by radio frequency unit 101 or WiFi module 102 it is received or The audio data that person stores in memory 109 is converted into audio signal and exports to be sound.Moreover, audio output unit 103 can also provide audio output relevant to the specific function that wearable device 100 executes (for example, call signal reception sound Sound, message sink sound etc.).Audio output unit 103 may include loudspeaker, buzzer etc..
A/V input unit 104 is for receiving audio or video signal.A/V input unit 104 may include graphics processor (Graphics Processing Unit, GPU) 1041 and microphone 1042, graphics processor 1041 is in video acquisition mode Or the image data of the static images or video obtained in image capture mode by image capture apparatus (such as camera) carries out Reason.Treated, and picture frame may be displayed on display unit 106.Through graphics processor 1041, treated that picture frame can be deposited Storage is sent in memory 109 (or other storage mediums) or via radio frequency unit 101 or WiFi module 102.Mike Wind 1042 can connect in telephone calling model, logging mode, speech recognition mode etc. operational mode via microphone 1042 Quiet down sound (audio data), and can be audio data by such acoustic processing.Audio that treated (voice) data can To be converted to the format output that can be sent to mobile communication base station via radio frequency unit 101 in the case where telephone calling model. Microphone 1042 can be implemented various types of noises elimination (or inhibition) algorithms and send and receive sound to eliminate (or inhibition) The noise generated during frequency signal or interference.
In one embodiment, wearable device 100 includes one or more cameras, by opening camera, It can be realized the capture to image, realize the functions such as take pictures, record a video, the position of camera, which can according to need, to be configured.
Wearable device 100 further includes at least one sensor 105, for example, optical sensor, motion sensor and other Sensor.Specifically, optical sensor includes ambient light sensor and proximity sensor, wherein ambient light sensor can be according to ring The light and shade of border light adjusts the brightness of display panel 1061, proximity sensor can when wearable device 100 is moved in one's ear, Close display panel 1061 and/or backlight.As a kind of motion sensor, accelerometer sensor can detect in all directions The size of (generally three axis) acceleration, can detect that size and the direction of gravity, can be used to identify mobile phone posture when static It (for example pedometer, is struck using (such as horizontal/vertical screen switching, dependent game, magnetometer pose calibrating), Vibration identification correlation function Hit) etc..
In one embodiment, wearable device 100 further includes proximity sensor, can by using proximity sensor Wearable device can be realized non-contact manipulation, provide more modes of operation.
In one embodiment, wearable device 100 further includes heart rate sensor, when wearing, by close to using Person can be realized the detecting of heart rate.
In one embodiment, wearable device 100 can also include that fingerprint sensor can by reading fingerprint Realize the functions such as safety verification.
Display unit 106 is for showing information input by user or being supplied to the information of user.Display unit 106 can wrap Display panel 1061 is included, liquid crystal display (Liquid Crystal Display, LCD), Organic Light Emitting Diode can be used Forms such as (Organic Light-Emitting Diode, OLED) configure display panel 1061.
In one embodiment, display panel 1061 uses flexible display screen, and wearable using flexible display screen sets For when wearing, screen is able to carry out bending, to more be bonded.Optionally, the flexible display screen can use OLED screen Body and graphene screen body, in other embodiments, the flexible display screen is also possible to other display materials, the present embodiment It is not limited thereto.
In one embodiment, the display panel 1061 of wearable device can take rectangle, ring when convenient for wearing Around.In other embodiments, other modes can also be taken.
User input unit 107 can be used for receiving the number or character information of input, and generate and wearable device User setting and the related key signals input of function control.Specifically, user input unit 107 may include touch panel 1071 And other input equipments 1072.Touch panel 1071, also referred to as touch screen collect the touch behaviour of user on it or nearby Make (for example user uses any suitable objects or attachment such as finger, stylus on touch panel 1071 or in touch panel Operation near 1071), and corresponding attachment device is driven according to preset formula.Touch panel 1071 may include touching Two parts of detection device and touch controller.Wherein, the touch orientation of touch detecting apparatus detection user, and detect touch behaviour Make bring signal, transmits a signal to touch controller;Touch controller receives touch information from touch detecting apparatus, and It is converted into contact coordinate, then gives processor 110, and order that processor 110 is sent can be received and executed.This Outside, touch panel 1071 can be realized using multiple types such as resistance-type, condenser type, infrared ray and surface acoustic waves.In addition to touching Panel 1071 is controlled, user input unit 107 can also include other input equipments 1072.Specifically, other input equipments 1072 It can include but is not limited to physical keyboard, function key (such as volume control button, switch key etc.), trace ball, mouse, operation One of bar etc. is a variety of, specifically herein without limitation.
In one embodiment, one or more buttons have can be set in the side of wearable device 100.Button can be with The various ways such as short-press, long-pressing, rotation are realized, to realize a variety of operating effects.The quantity of button can be different to be multiple It can be applied in combination between button, realize a variety of operating functions.
Further, touch panel 1071 can cover display panel 1061, when touch panel 1071 detect on it or After neighbouring touch operation, processor 110 is sent to determine the type of touch event, is followed by subsequent processing device 110 according to touch thing The type of part provides corresponding visual output on display panel 1061.Although in Fig. 1, touch panel 1071 and display panel 1061 be the function that outputs and inputs of realizing wearable device as two independent components, but in certain embodiments, Touch panel 1071 and display panel 1061 can be integrated and be realized the function that outputs and inputs of wearable device, specifically herein Without limitation.For example, processor 110 can be controlled when receiving the message informing of a certain application program by radio frequency unit 101 The message informing show in a certain predeterminable area of display panel 1061 by system, the predeterminable area and touch panel 1071 certain One region is corresponding, can be to corresponding to area on display panel 1061 by carrying out touch control operation to a certain region of touch panel 1071 The message informing shown in domain is controlled.
Interface unit 108 be used as at least one external device (ED) connect with wearable device 100 can by interface.Example Such as, external device (ED) may include wired or wireless headphone port, external power supply (or battery charger) port, You Xianhuo Wireless data communications port, memory card port, the port for connecting the device with identification module, audio input/output (I/O) end Mouth, video i/o port, ear port etc..Interface unit 108 can be used for receiving the input from external device (ED) (for example, number It is believed that breath, electric power etc.) and the input received is transferred to one or more elements in wearable device 100 or can For transmitting data between wearable device 100 and external device (ED).
In one embodiment, wearable device 100 interface unit 108 using contact structure, by contact with Corresponding other equipment connection, realizes the functions such as charging, connection.Use contact can be with waterproof.
Memory 109 can be used for storing software program and various data.Memory 109 can mainly include storing program area The storage data area and, wherein storing program area can (such as the sound of application program needed for storage program area, at least one function Sound playing function, image player function etc.) etc.;Storage data area can store according to mobile phone use created data (such as Audio data, phone directory etc.) etc..In addition, memory 109 may include high-speed random access memory, it can also include non-easy The property lost memory, a for example, at least disk memory, flush memory device or other volatile solid-state parts.
Processor 110 is the control centre of wearable device, utilizes various interfaces and the entire wearable device of connection Various pieces, by running or execute the software program and/or module that are stored in memory 109, and call and be stored in Data in memory 109 execute the various functions and processing data of wearable device, to carry out to wearable device whole Monitoring.Processor 110 may include one or more processing units;Preferably, processor 110 can integrate application processor and modulation Demodulation processor, wherein the main processing operation system of application processor, user interface and application program etc., modulation /demodulation processing Device mainly handles wireless communication.It is understood that above-mentioned modem processor can not also be integrated into processor 110.
Wearable device 100 can also include the power supply 111 (such as battery) powered to all parts, it is preferred that power supply 111 can be logically contiguous by power-supply management system and processor 110, thus charged by power-supply management system realization management, The functions such as electric discharge and power managed.
Although Fig. 1 is not shown, wearable device 100 can also be including bluetooth module etc., and details are not described herein.It is wearable to set Standby 100, by bluetooth, can connect with other terminal devices, realize communication and the interaction of information.
Fig. 2-Fig. 4 is please referred to, is the structure under a kind of a kind of embodiment of wearable device provided in an embodiment of the present invention Schematic diagram.Wearable device in the embodiment of the present invention, including flexible screen.In wearable device expansion, flexible screen is in Strip;When wearable device is in wearing state, flexible screen bending is annular in shape.Fig. 2 and Fig. 3 show wearable device Structural schematic diagram when screen is unfolded, Fig. 4 show structural schematic diagram when wearable device screen-bending.
Based on above-mentioned each embodiment, it can be seen that if the equipment is wrist-watch, bracelet or wearable device When, the screen of the equipment can not overlay device watchband region, can also be with the watchband region of overlay device.Here, this Shen It please propose a kind of optional embodiment, in the present embodiment, the equipment for wrist-watch, bracelet or wearable can be set Standby, the equipment includes screen and interconnecting piece.The screen can be flexible screen, and the interconnecting piece can be watchband.It can Choosing, the screen of the equipment or the viewing area of screen can be partly or completely covered on the watchband of equipment.Such as Fig. 5 Shown, Fig. 5 is a kind of a kind of hardware schematic of embodiment of wearable device provided by the embodiments of the present application, the equipment Screen extends to two sides, and part is covered on the watchband of equipment.In other embodiments, the screen of the equipment can also be with It is all covered on the watchband of the equipment, the embodiment of the present application is not limited thereto.

Claims (9)

1. a kind of automatic charge device, which is characterized in that including annular groove and annular magnet;The annular magnet is provided with scarce Mouthful, and be slidably disposed in annular groove;The cover board for preventing annular magnet to be axially moved is provided on the annular groove, The shaft core position of the annular groove is installed with coil;
It further include the rectification circuit and battery being set to outside annular groove, the input terminal of the rectification circuit and the lead of coil connect It connects, the output end of the rectification circuit is connect with battery.
2. automatic charge device as described in claim 1, which is characterized in that be installed with density in the notch of the annular magnet Less than the eccentric massblock of annular magnet.
3. automatic charge device as claimed in claim 2, which is characterized in that the eccentric massblock is plastic cement.
4. automatic charge device as described in claim 1, which is characterized in that further include the traction that density is greater than annular magnet Block, the guiding piece are flexibly connected with one end of the notch of annular magnet, are placed in notch.
5. automatic charge device as claimed in claim 4, which is characterized in that the shape of the guiding piece is spherical.
6. automatic charge device as claimed in claim 5, which is characterized in that the guiding piece includes that shot, tungsten ball or tungsten close Gold goal.
7. automatic charge device as claimed in claim 6, which is characterized in that the annular magnet is in hollow and annular.
8. such as the described in any item automatic charge devices of claim 1-7, which is characterized in that the axial cross section of the annular magnet For round, ellipse or annular.
9. a kind of wearable device, which is characterized in that the wearable device includes automatic described in shell and claim 1-8 Charging unit is provided with annular insulating piece in the shell, and the annular insulating piece circumferentially forms the automatic charge device Annular groove, the coil, rectification circuit and battery are fixedly arranged in shell.
CN201910366281.5A 2019-04-29 2019-04-29 Automatic charge device and wearable device Pending CN110021989A (en)

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