CN108737660A - Electronic device and its control method - Google Patents

Electronic device and its control method Download PDF

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Publication number
CN108737660A
CN108737660A CN201810597755.2A CN201810597755A CN108737660A CN 108737660 A CN108737660 A CN 108737660A CN 201810597755 A CN201810597755 A CN 201810597755A CN 108737660 A CN108737660 A CN 108737660A
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CN
China
Prior art keywords
electronic device
sliding shoe
ontology
sensor
standing wave
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
CN201810597755.2A
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Chinese (zh)
Inventor
周林
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.)
Guangdong Oppo Mobile Telecommunications Corp Ltd
Original Assignee
Guangdong Oppo Mobile Telecommunications Corp 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 Guangdong Oppo Mobile Telecommunications Corp Ltd filed Critical Guangdong Oppo Mobile Telecommunications Corp Ltd
Priority to CN201810597755.2A priority Critical patent/CN108737660A/en
Publication of CN108737660A publication Critical patent/CN108737660A/en
Pending legal-status Critical Current

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/72Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
    • H04M1/724User interfaces specially adapted for cordless or mobile telephones
    • H04M1/72448User interfaces specially adapted for cordless or mobile telephones with means for adapting the functionality of the device according to specific conditions
    • H04M1/72454User interfaces specially adapted for cordless or mobile telephones with means for adapting the functionality of the device according to specific conditions according to context-related or environment-related conditions
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M2250/00Details of telephonic subscriber devices
    • H04M2250/12Details of telephonic subscriber devices including a sensor for measuring a physical value, e.g. temperature or motion

Abstract

The application provides a kind of control method of electronic device, applied in an electronic device, the electronic device includes ontology, sliding shoe, driving mechanism, sensor and controller, and the sliding shoe is slidably connected with ontology and is provided at least one function element, the method includes the steps:The Relative motility parameters of electronic device are sensed by the sensor;And it when according to the Relative motility parameters that the sensor senses determining that electronic device be in predetermined movement state, controls driving mechanism driving and is provided with the sliding shoe retraction of at least one function element and is contained in ontology.The application also provides a kind of electronic device.The application control sliding shoe retraction when electronic device is in and falls the predetermined movements state such as motion state is contained in ontology, can effectively be protected at least one function element on sliding shoe.

Description

Electronic device and its control method
Technical field
This application involves field of electronic devices, more particularly to the control method of a kind of electronic device and the electronic device.
Background technology
Currently, the extensive use of the electronic devices such as mobile phone, tablet computer.The function of present electronic device is more and more richer Richness, required function element is also corresponding more and more, for example, camera, sensor, flash lamp etc., and those function elements It generally requires and occupies certain space progress trepanning or fluting to realize its function, result in and resistance is caused to the promotion for shielding accounting Hinder.Some solutions are that have front camera by USB interface or earphone interface connection in a manner of external accessory at present Deng accessory, however this mode results in inconvenient to carry, and when the unexpected thing such as falling, can not have to accessory Effect protection.
Invention content
The application's is designed to provide a kind of electronic device and its control method, to solve the above problems.
In order to solve the above-mentioned technical problem, on the one hand, the application provides a kind of electronic device, and the electronic device includes this Body, sliding shoe, driving mechanism, sensor and controller, the sliding shoe are slidably connected to the ontology and are contained in described Ontology skids off the ontology, and at least one function element is provided on the sliding shoe;The driving mechanism and the sliding Block is fixedly connected, and the controller is electrically connected with the driving mechanism and the sensor, and the sensor is for sensing electricity The Relative motility parameters of sub-device, the controller are determined according to the Relative motility parameters that the sensor senses at electronic device When predetermined movement state, controls the driving mechanism and the sliding shoe is driven to retract and be contained in ontology.
On the other hand, a kind of control method of electronic device is provided, is applied in an electronic device, the electronic device packet Ontology, sliding shoe, driving mechanism, sensor and controller are included, the sliding shoe is slidably connected and is provided at least with ontology One function element, the method includes the steps:The Relative motility parameters of electronic device are sensed by the sensor;And root When the Relative motility parameters sensed according to the sensor determine that electronic device is in predetermined movement state, the driving mechanism is controlled The sliding shoe that driving is provided at least one function element is retracted and is contained in ontology.
Electronic device provided by the present application and its control method, by the way that at least one function element is set to sliding shoe On, sliding shoe and ontology slidable connection, sliding shoe can be easily contained in ontology or stretching is originally external, facilitated and carried It is also beneficial to the raising of electronic device screen accounting, and controls sliding shoe retraction receiving when electronic device is in predetermined movement state In in ontology, effectively at least one function element on sliding shoe can be protected.
Description of the drawings
It, below will be to needed in embodiment in order to illustrate more clearly of the technical solution of the embodiment of the present application Attached drawing is briefly described, it should be apparent that, the accompanying drawings in the following description is some embodiments of the application, general for this field For logical technical staff, without creative efforts, other drawings may also be obtained based on these drawings.
Fig. 1 is the overall schematic in first state of the electronic device in one embodiment of the application.
Fig. 2 is the vertical view signal that illustrates part-structure of the electronic device in one embodiment of the application in the second state Figure.
Fig. 3 is the module rack composition for illustrating subelement of the electronic device in one embodiment of the application.
Fig. 4 is the schematic diagram of the sensor in the electronic device in another embodiment of the application.
Fig. 5 is the schematic diagram of the sensor in the electronic device in another embodiment of the application.
Fig. 6 is the schematic top plan view for illustrating part-structure of the electronic device in one embodiment of the application.
Fig. 7 is the schematic diagram of the sliding shoe in one embodiment of the application.
Fig. 8 is schematic top plan view of the electronic device in one embodiment of the application in first state.
Fig. 9 is the cross-sectional view of the electronic device in one embodiment of the application.
Figure 10 is the cross section that illustrates sliding equipment of the electronic device in the second state in one embodiment of the application Schematic diagram.
Figure 11 is the cross section that illustrates sliding equipment of the electronic device in first state in one embodiment of the application Schematic diagram.
Figure 12 is the flow chart of the control method of the electronic device in one embodiment of the application.
Figure 13 is the flow chart of the control method of the electronic device in another embodiment of the application.
Figure 14 is the flow chart of the control method of the electronic device in the application another embodiment.
Figure 15 is the flow chart of the control method of the electronic device in the application other embodiments.
Specific implementation mode
Below in conjunction with the attached drawing in the embodiment of the present application, technical solutions in the embodiments of the present application carries out clear, complete Site preparation describes, it is clear that described embodiments are only a part of embodiments of the present application, instead of all the embodiments.It is based on Embodiment in the application, those of ordinary skill in the art are obtained every other under the premise of not making the creative labor Embodiment shall fall in the protection scope of this application.
In the description of the embodiment of the present application, it is to be understood that the side of the instructions such as term " thickness ", " top ", " lower section " Position or position relationship are to be based on the orientation or positional relationship shown in the drawings, and are merely for convenience of description the application and simplify to describe, Rather than imply or device or element that instruction is signified must have a particular orientation, with specific azimuth configuration and operation, because This should not be understood as the limitation to the application.Term " first ", " second " etc. not refer in particular to a certain just to distinguish element Element.
Also referring to Fig. 1 and Fig. 2, Fig. 1 is the electronic device 100 in one embodiment of the application in the whole of first state Body schematic diagram.Fig. 2 is the vertical view signal that illustrates part-structure of the electronic device in one embodiment of the application in the second state Figure.As shown in Figures 1 and 2, the electronic device 100 include ontology 10, sliding shoe 20, controller 30, driving mechanism 40 and Sensor 50, the sliding shoe 20 are slidably connected to the ontology 10 and are contained in the ontology 10 or skid off the ontology 10, At least one function element J1 is provided on the sliding shoe 20;The driving mechanism 40 is fixedly connected with the sliding shoe 20, The controller 30 is electrically connected with the driving mechanism 40 and the sensor 50, and the sensor 50 is for sensing electronics dress 100 Relative motility parameters are set, the controller 30 determines that electronics fills according to the Relative motility parameters that the sensor 50 senses When setting 100 in predetermined movement state, controls the driving mechanism 40 and the sliding shoe 20 is driven to retract and be contained in ontology 10 In.
To, in the application, by the way that at least one function element J1 is set on sliding shoe 20, sliding shoe 20 and ontology 10 slidable connections, sliding shoe 20 can easily be contained in ontology or stretch out that this is external, facilitate carry and are also beneficial to electricity The raising of 100 screen accounting of sub-device, and control the retraction of sliding shoe 20 when electronic device 100 is in predetermined movement state and be contained in In ontology 10, effectively at least one function element J1 on sliding shoe 20 can be protected.
Wherein, when the sliding shoe 20 skids off the ontology 10, at least one function on the sliding shoe 20 is driven Device J1 is located at except ontology 10, and at least one function element J1 is in serviceable condition, when the sliding shoe 20 accommodates When in the ontology 10, at least one function element J1 is accordingly contained in ontology, and is in protected state, User is facilitated to carry.
Wherein, the sensor 50 may be disposed on ontology 10, may also set up at least one described in being used as on sliding shoe 20 One of in a function element J1.
It is the module rack for illustrating subelement of the electronic device 100 in one embodiment of the application also referring to Fig. 3 Composition.In some embodiments, the electronic device 100 further includes antenna T1, and the sensor 50 is sensed including antenna standing wave Device 51, standing wave of the antenna standing wave sensor 51 for the antenna of detection electronic installation 100, the controller 30 is in the day When the standing wave for the antenna that line standing wave sensor 51 detects is default standing wave, determine that electronic device 100 is in predetermined movement state, Controlling the driving mechanism 40 drives the sliding shoe 20 to retract and be contained in ontology 10.
Wherein, the waveform of the standing wave for the antenna T1 that the controller 30 is detected by comparing antenna standing wave sensor 51 with The waveform of default standing wave is more than pre- in the waveform of standing wave and the similarity of the waveform of default standing wave of the antenna T1 confirmly detected If when threshold value (such as 80 percent, 90 percent), the standing wave of the antenna T1 detected described in determination is default standing wave.
Wherein, the default standing wave is the freedom that antenna T1 is presented when no object blocks around no electronic device 100 Space standing wave.In some embodiments, the predetermined movement state is to fall motion state etc..
To when the standing wave of the antenna T1 detected described in the determination is default standing wave, it may be determined that around electronic device 100 There is no object, be not placed on desktop or held with a hand by people, is likely to be at greatly falls the predetermined movements such as motion state very much at this time State drives the sliding shoe 20 to retract and is contained in ontology 10 to control the driving mechanism 40, and can be to sliding shoe At least one function element J1 on 20 carries out effective protection.
Referring to Fig. 4, being the schematic diagram of sensor 50 in another embodiment.In another embodiment, the sensor 50 in addition to including the antenna standing wave sensor 51, further includes acceleration sensor (G-sensor) 52.The controller 30 with The antenna standing wave sensor 51 and acceleration sensor 52 are electrically connected.The acceleration sensor 52 is for sensing electronics dress 100 acceleration value is set, standing wave of the controller 30 in the antenna T1 that the antenna standing wave sensor 51 detects is default When standing wave and when the acceleration value of the sensing of the acceleration sensor 52 is more than predetermined acceleration value simultaneously, electronic device is determined 100 are in predetermined movement state, control the driving mechanism 40 and the sliding shoe 20 is driven to retract and be contained in ontology 10.
Wherein, the predetermined acceleration value can be to determine that user is in the threshold value of accelerated motion state, such as 1M/S2(rice Per the quadratic power second), 2M/S2It is equivalent.
To which the acceleration value for arriving acceleration sensing is as another reference factor and the antenna standing wave sensor 51 The standing wave of the antenna T1 detected at the same be used as determining electronic device 100 whether be in predetermined movement state foundation, can Further increase the accuracy of judgement.
Referring to Fig. 5, being schematic diagram of the sensor 50 in another embodiment.In another embodiment, the sensor 50 can only include acceleration sensor 52, and the acceleration value that the controller 30 is sensed in the acceleration sensor 52 is more than pre- If when acceleration value, it is determined that electronic device 100 is in predetermined movement state, controls the driving mechanism 40 and drives the sliding Block 20 is retracted and is contained in ontology 10.
That is, in another embodiment, the acceleration value that can only be sensed by acceleration sensor 52 determines predetermined movement State improves response speed, can also ensure accuracy of judgement substantially.
Wherein, the antenna standing wave sensor 51 can be aerial signal detector etc..
As shown in Figure 1, in some embodiments, the first display screen S1 is provided on the ontology 100, it is described to be set to cunning At least one function element J1 on motion block 20 includes second display screen S2, described when the sliding shoe 20 skids off ontology 10 First display screen S1 and second display screen S2 are used equally for showing.
Wherein, the second display screen S2 be set on the sliding shoe 20 with the first display screen S1 towards phase On same face.
In some embodiments, also in electronic device 100 predeterminable event and the sliding shoe 20 occur for the controller 30 When in the state for skidding off ontology 10, controls the first display screen S1 and second display screen S2 shows corresponding contents.
As shown in figure 3, the electronic device 100 further includes rear camera 53, and in some embodiments, the default thing Part is video communication event, and the controller 30 is additionally operable to that video communication event and the sliding shoe occurs in electronic device 100 20 when skidding off ontology 10, and control rear camera 53 is opened, to acquire the picture at 100 rear of electronic device, the controller 30 And it controls the first display screen S1 and shows that the picture including communicating pair, and the control second display screen S2 show postposition The picture that camera 53 acquires.
In some embodiments, the rear camera 53 may be disposed on ontology 10.
To which in the application, the user of electronic device 100 can pass through second display screen S2 when carrying out video communication Show 53 collected picture of rear camera, user can observe ambient enviroment when carrying out video communication, for being in side When walking in the case of the video calling of roadside, user can while carrying out video communication by second display screen S2 observations in front of Road conditions, when can greatly improve on foot using electronic device 100 carry out video communication safety and convenience.
Wherein, in some embodiments, the controller 30 controls the first display screen S1 and shows in a form of picture-in-picture Show the picture including communicating pair, i.e. the picture of a side of communicating pair is that big window is shown in the first display screen S1, is communicated The picture of another party of both sides is to be shown in the form of wicket in the big window.
In further embodiments, the controller 30 also can control the first display screen S1 in the form of split screen display available Display includes the picture of communicating pair, for example, the picture of a side of communicating pair to be shown in the first half of the first display screen S1 Point, the picture by another party of communicating pair is the lower half portion for being shown in the first display screen S1.
In some embodiments, the controller 30 can also be responsive to the drag kick to picture window, and it is double to adjust communication The size of the picture of at least one party in side.
In further embodiments, when the predeterminable event is video communication event, the controller 30 is additionally operable to When electronic device 100 occurs video communication event and the sliding shoe 20 and skids off ontology 10, it is aobvious to control the first display screen S1 Show that the picture of a side in communicating pair, and control second display screen S2 show the picture of another party in communicating pair.Thus can Effectively increase the display picture dimension of video communication.
For example, the controller 30 can control the picture of the user side of the first display screen S1 display electronics assemblies 100, control Second display screen S2 shows the picture of other side, alternatively, the controllable first display screen S1 of the controller 30 shows the picture of other side, Control the picture of the user side of second display screen S2 display electronics assemblies 100.
In some embodiments, the controller 30 is also responsive to switching command input by user, switching first display The picture that screen S1 and second display screen S2 is shown, for example, the picture of the user side when the first display screen S1 display electronics assemblies 100 Face, when second display screen S2 receives switching command when showing the picture of other side, the controller 30 switches first display Screen S1 shows the picture for showing other side, the picture of the user side of second display screen S2 display electronics assemblies 100.
Wherein, the switching command can be generated by clicking specific virtual key, or pass through the spy to having physical button Fixed operation generates.For example, by double-click power button come generate the switching command, by simultaneously long-press volume increasing key and sound Amount reduces key to generate described switching command, etc..
Wherein, the video communication event can be video calling event, by the Video chat of the softwares such as wechat, QQ unlatching Event, etc..
As shown in figure 3, the electronic device 100 further includes front camera 54, the controller 30 is additionally operable in electronics When video communication event occurs for device 100, control front camera 54 is opened, to acquire this communication of 100 user of electronic device The picture of side so that on the first display screen S1 or second display screen 12 can display electronics assemblies 100 user side Picture.
As described in Figure 1, the front camera 54 may be disposed on the sliding shoe 20, and can be with the sliding shoe 20 Skid off and be in serviceable condition.The front camera 54 also can be considered one at least one function element J1 It is a.
In some embodiments, the predeterminable event can also be playback of songs event, and the controller 30 is used in electronics It when playback of songs event occurs for device 100, controls the first display screen S1 and shows playback of songs interface, and control described the Two display screen S2 show the associated description information of the lyrics or song.The associated description information of the song may include singer's picture, The associated description informations such as the honor that the background introduction of song creation, song are obtained.
Obviously, the predeterminable event can be also any event that can be shown by two screens, for example, can also be Web page browsing event shows word content on the first display screen S1, relevant illustration etc. is shown on second display screen S2. Differ an illustration herein.
As shown in Figure 1, the ontology 10 includes main part 11 and the recessed groove at the first end D1 of main part 11 Portion 12.The sliding shoe 20 is slidingly arranged in the concave part 12, and is slidably connected with the concave part 12, to institute Sliding shoe 20 is stated with 10 phase of the ontology to splice.The sliding shoe 20 in the concave part 12 sliding and be gradually distance from or close Main part 11, to the second display screen S2 that is set on sliding shoe 20 described in driving skidded off far from the main part 11 it is described Ontology 10 is contained in the ontology 10 close to the main part 11.
Wherein, when the sliding shoe 20 is contained in the concave part 12 of the ontology 10, the sliding shoe 20 with it is described Ontology 10 constitutes a complete entirety.
Specifically, in one embodiment, the concave part 12 connects through the main part 11 with the first end D1 The first side wall B1 and second sidewall B2, the width of the concave part 12 it is equal with the width of the main part 11.The sliding Block 20 is slidably received in the concave part 12 and keeps global consistency with the appearance of the main part 11.To by institute The width for stating sliding shoe 20 is arranged to roughly equal with the width of the ontology 10, enables to be set on ontology 10 second Display screen S2 and the width of the first display screen S1 on the ontology 10 are roughly equal, improve the harmony of display.Meanwhile also making It is sufficiently wide multiple functions including second display screen S2, front camera 54 etc. to be arranged on it to obtain the sliding shoe 20 Device J1, moreover it is possible to ensure the global consistency of the sliding shoe 12 and the appearance of the ontology 1.
It is understood that in another embodiment, the first side wall that the concave part 12 connects not through the first end D1 B1 and second sidewall B2, and the width of the concave part 12 is less than the width of the main part 11.That is, the concave part 12 is only There is the groove of opening on the first end D1.
In some embodiments, the sliding shoe 20 is made of insulating materials, for example, can be plastic material, resin material Deng.The second display screen S2 is set to the identical as the direction of the first display screen S1 on the ontology 10 of the sliding shoe 20 Face on.That is, when sliding shoe 20 skids off, the second display screen S2 and the first display screen S1 are total to towards the same direction It is same to be shown.
Wherein, as shown in Fig. 2, the electronic device 100 further includes main circuit board 60, the controller 30 is set to described On main circuit board 60.The controller 30 by call wire L1 and be set on sliding shoe 20 include second display screen S2 and Multiple function element J1 electrical connections including front camera 54 etc., to realize with the data interaction of the function element J1 with And corresponding control.
Wherein, the multiple function element J1 being set on sliding shoe 20 may also include receiver, optical sensor, Distance-sensing Device, iris recognition device, at least one of infrared sensor and flash lamp.
To, by the way that multiple function element J1 are set on sliding shoe 20, the when of using can needed to skid off sliding shoe 20, Without the reserved space setting function element on ontology 10, so as to which the first display screen S1 being set on ontology 10 is greatly improved Screen accounting.
In some embodiments, the rear camera 53 may also set up on the sliding shoe 20.
As shown in Figure 1, in some embodiments, the antenna T1 may be disposed at the marginal position of the sliding shoe 20.When When sliding shoe 20 skids off ontology 10, antenna T1 can enhance the antenna performance of electronic device 100.Obviously, in further embodiments, The antenna T1 may be disposed on ontology 10.
As shown in Fig. 2, at least one radio frequency module 33 is additionally provided on electronic device 100, at least one radio frequency mould Group 33 is electrically connected at least one antenna T1 being set on sliding shoe 20 respectively by call wire L2.
In some embodiments, each call wire L1 and L2 is flexible conductor line, and can arbitrarily be bent, to slide When block 20 skids off or slides into ontology 10, being stably connected between function element J1 and controller 30 can be kept, and keep day Being stably connected between line T1 and corresponding radio frequency module 33, and realize good electrical connection.Wherein, the call wire L1 can be same Axis cable, USB data line or flexible PCB etc..The second call wire L2 can be coaxial cable or flexible PCB etc..
Wherein, described in when the length of the call wire L2 skids off 10 maximum distance of ontology at least more than the sliding shoe 20 extremely Lack the distance between an antenna T1 and corresponding radio frequency module 33.The call wire L1's slides at least more than the sliding shoe 20 Go out the distance between at least one function element J1 and the controller 30 when 10 maximum distance of ontology.
In some embodiments, each at least one antenna T1 is to be fixedly installed on the sliding shoe 20 FPC (flexible printed circuit, flexible PCB) antennas or by laser technology on sliding shoe shape At LDS (Laser-Direct-structuring, laser direct forming) antenna.For example, at least one antenna T1 is complete Portion is that the part in FPC antenna or LDS antennas or at least one antenna T1 is FPC antenna, and another part is LDS days Line.Wherein, FPC antenna refers to that the metal antenna pattern being formed on FPC, the FPC antenna can be by being bonded, being embedded, weld It the modes such as connects to be fixed on sliding shoe 2.LDS antennas are referred to through laser technology, are directly made in the insulating materials Sliding shoe 2 on the metal antenna pattern that plates.
In further embodiments, the sliding shoe 2 or metal material are made, at least one antenna T1 be The independent metallic region being partitioned by slit band or gap band on the sliding shoe 2, each independent metallic region are formed One antenna T1.Fig. 1 illustrates an antenna T1, and in other embodiments, at least one antenna T1 may include being spaced Two antennas being arranged, three antennas, four antennas etc..
In some embodiments, at least one antenna T1 is around the setting of the side of the sliding shoe 20, to slide Second display screen S2 can be set as wide as possible on block 20, and the multiple function element J1 may be disposed at except second display screen S2 Region, such as be disposed in proximity to the region that sliding shoe 20 exposes to the top margin of ontology 10, and can be by way of word order Setting, and leave enough upright region setting second display screen S2.
As shown in Fig. 2, the electronic device 100 further includes battery 61, the battery 61 and the main circuit board 60 are electrically connected It connects, for powering for the function elements such as main circuit board 60 and radio frequency module 33, controller 30 on main circuit board 60.
Referring to Fig. 6, for the vertical view for illustrating part-structure of the electronic device 100 in another embodiment.Such as Fig. 4 institutes Show, the electronic device 100 further includes Power Management Unit 70, and the Power Management Unit 70 is set to the main circuit board 60 It above and with the battery 61 is electrically connected, the Power Management Unit 70 is used to be converted to the cell voltage that battery 61 provides described The suitable work electricity of radio frequency module 33, controller 30 and at least one function element J1 being set on sliding shoe 2 Pressure.
As shown in fig. 6, the Power Management Unit 70 is also set by being provided with the power cord P1 of switch module 71 with described At least one function element J1 including second display screen S2, front camera 54 etc. being placed on sliding shoe 20 is electrically connected It connects, and is at least one function element J1 power supplies.The switch module 71 is for power management list described on or off The supply path of 70 couples of at least one function element J1 of member.
The controller 30 is also connect with the switch module 71, and the controller 30 is additionally operable to controlling the sliding shoe 20 when skidding off ontology 10, the conducting of the switch module 71 is controlled, to which the Power Management Unit 70 be connected to described at least one The supply path of a function element J1, and at least one function element J1 is worked on power.
The controller 30 is additionally operable to when controlling the withdrawal of sliding shoe 20 ontology 10, and control stops to described at least one A function element J1 power supplies.Specifically, the controller 30 controls the disconnection of the switch module 71, to cut off the power supply pipe Supply path of the unit 70 at least one function element J1 is managed, the Power Management Unit 70 stops to described at least one A function element J1 power supplies, save energy consumption.
As shown in fig. 6, the switch module 71 includes at least one switch 72, each switch 72 is connected to a power cord In P1, the controller 30 is electrically connected at least one switch 72, and is used to control at least one switch 72 and is led On-off is opened, and is realized the Power Management Unit 70 and powered at least one function element J1 or stop powering.
Referring to Fig. 7, for the schematic diagram of the sliding shoe 20 in an embodiment.As shown in figure 5, sliding shoe 20 includes backboard 121, it covers plate B0 and frame 122, the backboard 11 and capping plate B0 faces and there is certain distance, the frame 122 to surround It is open between backboard 121 and capping plate B0, and with the one side of 11 face of ontology.When sliding shoe 20 is contained in ontology 10 When, the outer surface of backboard 121 and capping plate B0 are mutually spliced with the inner surface of the concave part 12 of ontology 1, the outer surface of frame 122 and Mutually splice the outer surface of the first side wall B1 and second sidewall B2 of ontology 1.Backboard 121, capping plate B0 and frame 122, which surround, to be formed Host cavity 123.Host cavity 123 can be used to accommodate circuit board and electronic component etc..
The second display screen S2 is the most of area for being set on the capping plate B0, and covering the capping plate B0 Domain.
At least one antenna T1 may be disposed on frame 122, to avoid being interfered by second display screen S2.
As shown in fig. 7, in one embodiment, auxiliary circuit plate 125, the auxiliary electricity are also provided in the host cavity 123 The equal other function element J1 of front camera 54 are carried on road plate 125.Wherein, the auxiliary circuit plate 125 with it is described at least One antenna T1 is spaced apart, to ensure not influence the radiance of antenna T1.In some embodiments, the auxiliary circuit Plate 125 is to be set on the inner surface N1 of backboard 121.
As shown in fig. 7, on the capping plate B0 by the positions covered second display screen S2 be not also provided with camera shooting head bore, The functional holes Y1 such as receiver hole, gauge hole,
Referring to Fig. 8, being the electronic device 100 in one embodiment of the application in the schematic top plan view of first state, such as Fig. 8 It is shown, when the sliding shoe 20 skids off ontology 10, it is set to second display screen S2 on sliding shoe 20, function element J1 and antenna T1 etc. will then stretch out except the first display screen S1, so as to be shown by second display screen S2, improve the abundant of display Property, and the equal function elements J1 of described front camera 54 for being set on auxiliary circuit plate 125 also by corresponding functional hole Y1 outside Reveal and can realize corresponding function.Simultaneously as antenna T1 also stretches out simultaneously, the empty regions of antenna T1 can be also effectively promoted, Improve antenna performance.
Referring to Fig. 9, for the cross-sectional view of the electronic device 100 in an embodiment, it is in some embodiments, described Driving mechanism 40 includes the connecting rod 401 being fixedly connected with the sliding shoe 20 and the actuator 402 being set in ontology 1. Actuator 402 for response controller 30 control and drive connection bar 401 stretch out or withdraw so that connecting rod 401 push slide Motion block 20 is separate or close to main part 11, and the sliding shoe 20 that is set as of connecting rod 401 provides support force, and can ensure that sliding shoe 20 Steadily skids off or withdraw.Wherein, the actuator.
As shown in figure 9, specifically, the face for fitting in sliding shoe 20 on the ontology 10 is sealing surface 17.Sealing surface 17 every From in 10 inside of ontology and external environment.Trepanning 17a is offered on sealing surface 17.Trepanning 17a is used for across being electrically connected to function Call wire L1, electrically connected antenna T1 between device J1 and controller 30 and the call wire L2 between radio frequency module 33 and described Power cord P1 is laid out entanglement to avoid the call wire L1, call wire L2 and the power cord P1, is slided in sliding shoe 2 In the process, it avoids call wire L1, call wire L2 and the power cord P1 from being wound in other electronic components, interferes electronic component Normal work improves the stability of electronic device 100.Wherein, the call wire L2 is only illustrated in Fig. 9.
Further, as shown in figure 9, having the interface 25 to fit with sealing surface 17 on sliding shoe 2.To described Interface 25, capping plate B0, backboard 121 and frame 122 constitute circumferential closed host cavity.
Wherein, in some embodiments, the connecting rod 401 of the driving mechanism 40 is to be disposed through the interface 25 On.The connecting rod 401 can connect to be stretched into the ontology 1 across the trepanning 17a with the actuator 402 in ontology 1.
Further, as shown in figure 9, being additionally provided with perforation 26a in connecting rod 401.Perforation 26a extends along connecting rod 401 Direction extends.Perforation 26a is used for across the call wire L1 being electrically connected at least one function element J1 and controller 30, is electrically connected It meets the call wire L2 between antenna T1 and RF transmit-receive circuit 34 and is electrically connected at least one function element J1 and power management The setting of at least one power cord P1 between unit 70, the 26a that perforates can to avoid the 4 call wire L1,4 call wire L2 and Power cord P1 is wound in other electronic components, interferes the normal work of electronic component, improves the stability of electronic device 100, together When perforation 26a be set to connecting rod 301 in, save taking up space for cable 321.
It is the cross-sectional view for illustrating sliding equipment 60 of electronic device 100 please with reference to Figure 10 and Figure 11.Such as Shown in Figure 10, electronic device 100 further includes the sliding equipment 80 being connected between ontology 10 and sliding shoe 20.Sliding shoe 20 passes through Sliding equipment 80 is relative to the sliding of ontology 10 and closer or far from ontology 10.Specifically, sliding equipment 80 is to realize sliding shoe 20 The motion of linear motion specially realizes the motion that sliding shoe 20 is slided along the length direction of electronic device 100.This In embodiment, sliding equipment 80 can be fit structure, turbine and the fit structure of worm screw etc. of sliding block and guide rail.The present embodiment In, sliding equipment 80 includes sliding block 81 and guide rail 82, and guide rail 82 is set on the concave part 12 of ontology 10.Guide rail 82 is from concave part 12 Bottom wall B3 to opening direction extend, i.e., along the glide direction of the sliding shoe 20 extend.Sliding block 81 can be fixed on cunning On the lateral surface of the inner surface for concave part 12 of motion block 20.Sliding block 81 slides on guide rail 82, to drive sliding shoe 20 It is slided along guide rail 82.
Specifically, the guide rail 82 is the face far from the first display screen S1 for being set to the concave part 12, the sliding block 81 be to be set on the face far from the first display screen S1 of concave part 12 described in the face of sliding shoe 20, i.e., described 81 face of sliding block The guide rail 82 is arranged.
Further, as shown in Figures 10 and 11, the opposite end of guide rail 82 is limited including the first locating part 83 and second Part 84.First end of the locating part 83 far from main part 11.When sliding shoe 20 is abutted to the first locating part 83, sliding shoe 20 moves It moves to the position farthest from ontology 10.At this point, the first locating part 83 plays the role of the maximum distance of the movement of limit slippage block 20. When sliding shoe 20 is abutted to the second locating part 84, sliding shoe 20 is contained in ontology 10, at this time the structure rule of electronic device 100 Then, the portability of electronic device 100 is improved.
Wherein, when 402 drive connection bar 401 of actuator is stretched out or is withdrawn, drive the sliding shoe 20 far from described Body 10 is moved or is moved close to the ontology 10.
Actuator 402 can be micromotor etc., the actuator 402 may be disposed on the main circuit board 60 and with institute State the electrical connection of controller 30.When actuator 402 is micromotor, the controller 30 specifically can be by changing micromotor Rotation direction and drive connection bar 401 are stretched out or are withdrawn.
As shown in Figures 10 and 11, it is additionally provided with earth polar 19 in the ontology 10.The guide rail 82 can be metal material.It leads Rail 82 can be electrically connected the earth polar 19.The T1 is by being electrically connected the guide rail 82 to be grounded.Guide rail 82 realizes sliding shoe 20 Sliding function while, also function to the function in electrical connection earth polar 19, increase the complicated of electronic device 100 without additional Property.
Wherein, as shown in either of figures 10 or 11, it is additionally provided between the bottom wall B3 of the concave part 12 of the sliding shoe 20 and ontology 10 Sealing element 103.Sealing element 103 can be isolation material, such as ceramics or plastic cement or resin or rubber etc..In ontology 10 and institute State sliding shoe 20 be metal material when, sealing element 103 is to insulating materials.The sealing element 103 so that ontology 10 and sliding shoe 20 phases insulate, and increase the isolation with the antenna T1 on sliding shoe 20.Further, the material of the sealing element 103 can be Elastic material.When sliding shoe 20 is close to ontology 10, sliding shoe 20 can be abutted to sealing element 103, and sealing element 103 is clamped and is slided Between the bottom 102 of the concave part 12 of motion block 20 and ontology 10, so as to be sealed between sliding shoe 20 and ontology 10.Due to sealing element 103 elastic deformation, the hard collision that can be subject to avoid sliding shoe 20 and ontology 10, to reduce sliding shoe 20 and ontology 10 Damage.
In some embodiments, pressure sensor can be also set at the bottom wall B3 of the concave part 12 of the ontology 10, works as cunning When motion block 20 is contained in ontology 10, residing pressure sensor senses pressure and generates inductive signal, the controller 30 and pressure Sensor is electrically connected, and is determined that sliding shoe 20 is in the state for being contained in ontology 10 when receiving inductive signal, is not being received Determine that sliding shoe 20 is in the state for skidding off ontology 10 when inductive signal.
Wherein, the electronic device 100 can be the electronic products such as display, television set, mobile phone, tablet computer.
It should be noted that a certain embodiment of the application may only introduce the variation to one or a few components, When other parts do not introduced or do not introduced there are different modes of texturing in other embodiments, also fit in this embodiment With.
Obviously, the electronic device 100 may also include other elements, such as memory etc., due to changing with the application Into unrelated, therefore it is not described herein.
2 are please referred to Fig.1, is the flow chart of the control method of the electronic device in one embodiment of the application.The method can Applied in electronic device 100 above-mentioned.As shown in Figure 10, the method may include following steps.
The Relative motility parameters (S121) of electronic device 100 are sensed by sensor 50.
When the Relative motility parameters sensed according to the sensor 50 determine that electronic device 100 is in predetermined movement state, Control driving mechanism 40 drives the sliding shoe 20 for being provided at least one function element J1 to retract and be contained in ontology 10 (S123).In some embodiments, the predetermined movement state is to fall motion state etc..
3 are please referred to Fig.1, is the flow chart of the control method of the electronic device in another embodiment of the application.The method It can be applied in electronic device 100 above-mentioned.In another embodiment, the sensor 50 specifically includes antenna standing wave sensor 51, as shown in figure 13, the method may include following steps.
Pass through the standing wave (S131) of the antenna T1 of 51 detection electronic installation 100 of antenna standing wave sensor.
When the standing wave for the antenna T1 that the antenna standing wave sensor 51 detects is default standing wave, electronic device is determined 100 are in predetermined movement state, control the driving mechanism 40 and the sliding shoe 20 is driven to retract and be contained in ontology 10 (S133).Wherein, the waveform of the standing wave for the antenna T1 that the controller 30 is detected by comparing antenna standing wave sensor 51 with The waveform of default standing wave is more than pre- in the waveform of standing wave and the similarity of the waveform of default standing wave of the antenna T1 confirmly detected If when threshold value (such as 80 percent, 90 percent), the standing wave of the antenna T1 detected described in determination is default standing wave.Its In, the default standing wave is the free space standing wave that antenna T1 is presented when no object blocks around no electronic device 100.
Wherein, step S131 is the more specific steps of step S121 in Figure 12, and step S133 is also the step in Figure 12 The more specific steps of S123, specific description can be cross-referenced.
4 are please referred to Fig.1, is the flow chart of the control method of the electronic device 100 in another embodiment of the application.The side Method can be applied in electronic device 100 above-mentioned.In another embodiment, the sensor 50 specifically includes antenna standing wave sensing Device 51 and acceleration sensor 52, as shown in figure 14, the method may include following steps.
By the standing wave of the antenna T1 of 51 detection electronic installation 100 of antenna standing wave sensor and pass through acceleration sense Survey the acceleration value (S141) that device 52 senses electronic device 100.
When the standing wave for the antenna T1 that the antenna standing wave sensor 51 detects is default standing wave and the acceleration sense When surveying the acceleration value of the sensing of device 52 more than predetermined acceleration value, determines that electronic device 100 is in predetermined movement state, control institute Stating driving mechanism 40 drives the sliding shoe 20 to retract and be contained in ontology 10 (S143).
Wherein, step S141 is the more specific steps of step S121 in Figure 12, and step S143 is also the step in Figure 12 The more specific steps of S123, and step S141 and step S143 and the step S131 and S133 of Figure 13 also have it is certain corresponding Property, specific description can be cross-referenced.
5 are please referred to Fig.1, is the flow chart of the control method of the electronic device 100 in the application another embodiment.The side Method can be applied in electronic device 100 above-mentioned.In another embodiment, the sensor 50 can only include acceleration sensor 52, as shown in figure 15, the method may include following steps.
The acceleration value (S151) of electronic device 100 is sensed by acceleration sensor 52.
When the acceleration value that institute's acceleration sensor 52 senses is more than predetermined acceleration value, determine at electronic device 100 In predetermined movement state, controls the driving mechanism 40 and the sliding shoe 20 is driven to retract and be contained in ontology 10 (S153).
Wherein, step S151 is the more specific steps of step S121 in Figure 12, and step S153 is also the step in Figure 12 The more specific steps of S123, and the step S131 of step S141 and step S143 and Figure 13 and step S141 in S133, Figure 14, S143 also has certain correspondence, and specific description can be cross-referenced.
Electronic device 100 provided by the present application and its control method, by the way that at least one function element J1 is set to cunning On motion block 20, sliding shoe 20 and 10 slidable connection of ontology, sliding shoe 20 can be easily contained in ontology or stretching is originally external, Facilitate and carry out carrying the raising for being also beneficial to 100 screen accounting of electronic device, and when electronic device 100 is in predetermined movement state The control retraction of sliding shoe 20 is contained in ontology 10, can effectively be protected at least one function element J1 on sliding shoe 20 Shield.
It is the embodiment of the embodiment of the present application above, it is noted that those skilled in the art are come It says, under the premise of not departing from the embodiment of the present application principle, several improvements and modifications can also be made, these improvements and modifications It is considered as the protection domain of the application.

Claims (16)

1. a kind of electronic device, which is characterized in that the electronic device include ontology, sliding shoe, driving mechanism, sensor and Controller, the sliding shoe are slidably connected to the ontology and are contained in the ontology or skid off the ontology, the sliding shoe On be provided at least one function element;The driving mechanism is fixedly connected with the sliding shoe, the controller and the drive Motivation structure and sensor electrical connection, the sensor are used to sense the Relative motility parameters of electronic device, the control When device determines that electronic device is in predetermined movement state according to the Relative motility parameters that the sensor senses, the driving is controlled Mechanism drives the sliding shoe to retract and be contained in ontology.
2. electronic device according to claim 1, which is characterized in that when the sliding shoe skids off the ontology, it is described extremely A few function element is in serviceable condition, when the sliding shoe is contained in the ontology, at least one function Device is accordingly contained in ontology.
3. electronic device according to claim 1 or 2, which is characterized in that the electronic device further includes antenna, the sense It includes antenna standing wave sensor, standing wave of the antenna standing wave sensor for the antenna of detection electronic installation, the control to survey device Device processed determines that electronic device is in default fortune when the standing wave for the antenna that the antenna standing wave sensor detects is default standing wave Dynamic state controls the driving mechanism and the sliding shoe is driven to retract and be contained in ontology.
4. electronic device according to claim 3, which is characterized in that the sensor further includes acceleration sensor, institute Acceleration value of the acceleration sensor for sensing electronic device is stated, the controller is detected in the antenna standing wave sensor The standing wave of antenna when being default standing wave and when the acceleration value of acceleration sensor sensing is more than predetermined acceleration value, really Determine electronic device and be in predetermined movement state, controls the driving mechanism and the sliding shoe is driven to retract and be contained in ontology.
5. electronic device according to claim 3 or 4, which is characterized in that the default standing wave is free space standing wave.
6. electronic device according to claim 1 or 2, which is characterized in that the sensor further includes acceleration sensor, The acceleration sensor is used to sense the acceleration value of electronic device, and the controller is sensed in the acceleration sensor It when acceleration value is more than predetermined acceleration value, determines that electronic device is in predetermined movement state, controls the driving mechanism driving The sliding shoe is retracted and is contained in ontology.
7. electronic device according to claim 2, which is characterized in that the first display screen is provided on the ontology, it is described At least one function element being set on sliding shoe includes second display screen, when the sliding shoe skids off ontology, described One display screen and second display screen are used equally for showing.
8. electronic device according to claim 7, which is characterized in that the second display screen is set on the sliding shoe Face identical with the direction of the first display screen on.
9. electronic device according to claim 7, which is characterized in that before at least one function element also includes at least Set camera, receiver, optical sensor, range sensor, iris recognition device, at least one in infrared sensor and flash lamp Kind.
10. according to claim 1-9 any one of them electronic devices, which is characterized in that the ontology includes main part and recessed Concave part at the first end of main part, the sliding shoe are slidingly arranged in the concave part, and with it is described recessed Groove portion is slidably connected, and the sliding shoe is slided in the concave part and is gradually distance from or close to main part, described to skid off Ontology is contained in the ontology.
11. electronic device according to claim 1, which is characterized in that the electronic device further includes main circuit board, described Controller is set on the main circuit board;The controller passes through call wire and at least one function being set on sliding shoe Device is electrically connected, to realize and the data interaction of function element and corresponding control.
12. a kind of control method of electronic device, it is applied in an electronic device, which is characterized in that the electronic device includes Ontology, sliding shoe, driving mechanism, sensor and controller, the sliding shoe are slidably connected with ontology and are provided at least one A function element, the method includes the steps:
The Relative motility parameters of electronic device are sensed by the sensor;And
When the Relative motility parameters sensed according to the sensor determine that electronic device is in predetermined movement state, the drive is controlled The sliding shoe that the driving of motivation structure is provided at least one function element is retracted and is contained in ontology.
13. control method according to claim 12, which is characterized in that the electronic device further includes antenna, the sense It includes antenna standing wave sensor to survey device, the Relative motility parameters that electronic device is sensed by the sensor, including:Pass through The standing wave of the antenna of the antenna standing wave sensor detection electronic installation;
When the Relative motility parameters according to sensor sensing determine that electronic device is in predetermined movement state, institute is controlled Driving mechanism driving is stated to be provided with the sliding shoe retraction of at least one function element and be contained in ontology, including:
When the standing wave for the antenna that the antenna standing wave sensor detects is default standing wave, determine that electronic device is in default fortune Dynamic state controls the sliding shoe retraction for being provided at least one function element described in the driving mechanism driving and is contained in ontology In.
14. control method according to claim 13, which is characterized in that the sensor further includes acceleration sensor, The Relative motility parameters that electronic device is sensed by the sensor, including:It is detected by the antenna standing wave sensor The standing wave of the antenna of electronic device and the acceleration value that electronic device is sensed by acceleration sensor;
When the Relative motility parameters according to sensor sensing determine that electronic device is in predetermined movement state, institute is controlled It states driving mechanism driving to be provided with the sliding shoe retraction of at least one function element and be contained in ontology, specifically include:
When the standing wave for the antenna that the antenna standing wave sensor detects is default standing wave and the acceleration sensor senses Acceleration value when being more than predetermined acceleration value, determine that electronic device be in predetermined movement state, control driving mechanism drive The dynamic sliding shoe for being provided at least one function element is retracted and is contained in ontology.
15. the control method according to claim 13 or 14, which is characterized in that the default standing wave is stayed for free space Wave.
16. control method according to claim 12, which is characterized in that the sensor further includes acceleration sensor, The Relative motility parameters that electronic device is sensed by the sensor, including:Electronics dress is sensed by acceleration sensor The acceleration value set;
When the Relative motility parameters according to sensor sensing determine that electronic device is in predetermined movement state, institute is controlled Driving mechanism driving is stated to be provided with the sliding shoe retraction of at least one function element and be contained in ontology, including:
When the acceleration value of acceleration sensor sensing is more than predetermined acceleration value, determine that electronic device is in default fortune Dynamic state controls the sliding shoe retraction for being provided at least one function element described in the driving mechanism driving and is contained in ontology In.
CN201810597755.2A 2018-06-11 2018-06-11 Electronic device and its control method Pending CN108737660A (en)

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