CN104076511A - Electronic device and state control method - Google Patents
Electronic device and state control method Download PDFInfo
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- CN104076511A CN104076511A CN201310102686.0A CN201310102686A CN104076511A CN 104076511 A CN104076511 A CN 104076511A CN 201310102686 A CN201310102686 A CN 201310102686A CN 104076511 A CN104076511 A CN 104076511A
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Abstract
The embodiment of the invention provides an electronic device and a state control method. The electronic device of the embodiment of the invention comprises a motherboard, a first power supply unit, wherein the motherboard comprises a first power supply input port and a second power supply input port; the first power supply unit comprises a first battery slot and a first connection unit, a detachable rechargeable battery can be inserted in the first battery slot, the first connection unit is configured to enable the first battery slot to be connected with the first power supply input port. During the period when the detachable rechargeable battery is inserted in the first battery slot, the detachable rechargeable battery is configured to provide power for components on the motherboard via the first power supply input port, the second power supply input port can be connected with an external power supply via a power line, and during the period when the external power supply is connected with the second power supply input port, the external power supply is configured to provide power for the component on the motherboard via the second power supply input port.
Description
Technical field
The condition control method that embodiments of the invention relate to a kind of electronic equipment and are applied to electronic equipment.
Background technology
Along with the development of the communication technology, various portable electric appts are widely used, for example, and portable computer, tablet computer, smart mobile phone and portable media player etc.In order to strengthen portability, by battery, be that these portable electric appts are powered conventionally.Yet, for the battery capacity of portable electric appts power supply is limited, when the energy content of battery exhausts, need to change the battery of portable electric appts or power to portable electric appts from other external device, so that portable electric appts can work on.Therefore, need a kind of effective power supply for portable electric appts to supply with scheme.
Summary of the invention
The object of the embodiment of the present invention is to provide a kind of power supply of effective electronic equipment to supply with scheme.
One embodiment of the present of invention provide a kind of electronic equipment, comprising: mainboard, comprises the first power input mouth and second source input port, the first power supply unit, comprise: the first battery insertion groove, can insert detachable rechargeable battery, and first linkage unit, configuration is connected the first battery insertion groove with the first power input mouth, wherein during detachable rechargeable battery is inserted into the first battery insertion groove, detachable rechargeable battery configuration powers to the element on mainboard via the first power input mouth, second source input port can be connected with external power source by power lead, during externally power supply is connected with second source input port, external power source configuration powers to the element on mainboard via second source input port.
Another embodiment of the present invention provides a kind of electronic equipment, comprising: agent set, comprising: mainboard, comprises the first power input mouth and second source input port, the first power supply unit, comprise: the first battery insertion groove, can insert detachable rechargeable battery, and first linkage unit, configuration is connected the first battery insertion groove with the first power input mouth, wherein during detachable rechargeable battery is inserted into the first battery insertion groove, detachable rechargeable battery configuration powers to the element on mainboard via the first power input mouth, second source input port can be connected with charging device by power lead, during charging device is connected with second source input port, charging device configuration powers to the element on mainboard via second source input port, charging device, comprise: power lead, configuration is connected with agent set, the second battery insertion groove, can insert detachable rechargeable battery, during detachable rechargeable battery is inserted into the second battery insertion groove, external power source configures to detachable rechargeable battery charging, and wherein the first battery insertion groove and the second battery insertion groove can insert the detachable rechargeable battery of same model.
Another embodiment of the present invention provides a kind of condition control method, is applied to have the electronic equipment of the first duty and the second duty, and wherein electronic equipment comprises: mainboard, comprises the first power input mouth and second source input port; The first power supply unit, comprise: the first battery insertion groove, can insert detachable rechargeable battery, the first linkage unit, configuration is connected the first battery insertion groove with the first power input mouth, and first self-contained battery, wherein second source input port can be connected with external power source by power lead.Described method comprises: after unlocking electronic equipment, whether detect external power source is connected with second source input port, when external power source is connected with second source input port, allow external power source to power to the element on mainboard via second source input port, and the duty of electronic equipment is set to the first duty; When external power source is not connected with second source input port, detect detachable rechargeable battery and whether be inserted into the first battery insertion groove, when detachable rechargeable battery is inserted into the first battery insertion groove, allow detachable rechargeable battery to power to the element on mainboard via the first power input mouth, and the duty of electronic equipment is set to the first duty; When external power source is not connected with second source input port and when detachable rechargeable battery is not inserted into the first battery insertion groove, allow the first self-contained battery to be connected to power to the element on mainboard via the first power input mouth with the first linkage unit, and the duty of electronic equipment is set to the second duty.
The scheme providing by the invention described above embodiment, for electronic equipment provides multiple power sources supply strategy, makes user according to actual needs, flexibly, effectively to select power supply to supply with as electronic equipment power supply.
Accompanying drawing explanation
In order to be illustrated more clearly in the technical scheme of the embodiment of the present invention, will the accompanying drawing of required use in the description of embodiment be briefly described below.Accompanying drawing in the following describes is only exemplary embodiment of the present invention.
Fig. 1 shows the block diagram of electronic equipment according to an embodiment of the invention.
Fig. 2 shows the key diagram that the electronic equipment shown in Fig. 1 is an illustrative case of wear-type electronic equipment.
Fig. 3 shows the key diagram that the electronic equipment shown in Fig. 1 is an illustrative case of wear-type electronic equipment.
Fig. 4 shows according to the block diagram of the display unit in the electronic equipment shown in Fig. 3.
Fig. 5 shows the key diagram of a signal situation of the display unit shown in Fig. 4.
Fig. 6 shows the block diagram of transfer voice module according to an embodiment of the invention.
Fig. 7 shows the exemplary plot of electronic equipment according to another embodiment of the present invention.
Fig. 8 shows the block diagram of charging device according to an embodiment of the invention.
Fig. 9 shows the key diagram of inner structure of an illustrative case of the charging device shown in Fig. 8.
Figure 10 shows the key diagram of another illustrative case of the charging device shown in Fig. 8.
Figure 11 is the process flow diagram of having described according to the condition control method of the embodiment of the present invention.
Embodiment
Hereinafter, with reference to accompanying drawing, describe the preferred embodiments of the present invention in detail.Note, in this instructions and accompanying drawing, there is substantially the same step and represent with identical Reference numeral with element, and will be omitted the repetition of explanation of these steps and element.
In following examples of the present invention, electronic equipment can be the portable electric appts of portable computer, tablet computer, personal digital assistant, smart mobile phone, game machine and portable media player and so on for example.Preferably, electronic equipment is wear-type electronic equipment.
Fig. 1 shows the block diagram of electronic equipment 100 according to an embodiment of the invention.As shown in Figure 1, electronic equipment 100 comprises mainboard 110 and the first power supply unit 120, wherein mainboard 110 comprises the first power input mouth 111 and second source input port 112, and the first power supply unit 120 comprises the first battery insertion groove 121 and the first linkage unit 122.
Particularly, the first battery insertion groove 121 can insert detachable rechargeable battery.The first linkage unit 122 can be connected the first battery insertion groove 121 with the first power input mouth 111.During detachable rechargeable battery is inserted into the first battery insertion groove 121, detachable rechargeable battery configuration powers to the element on mainboard 110 via the first power input mouth 111.Second source input port 112 can be connected with external power source by power lead.During externally power supply is connected with second source input port 122, external power source configuration powers to the element on mainboard via second source input port 122.
According to an example of the present invention, external power source can be mains supply.Alternatively, according to another example of the present invention, external power source can be charging equipment.Particularly, external power source can be portable charged equipment.Charging equipment can comprise: second battery insertion groove that can insert detachable rechargeable battery.During detachable rechargeable battery is inserted into the second battery insertion groove, external power source configures detachable rechargeable battery is charged.The first battery insertion groove 111 and second battery insertion groove of charging equipment of electronic equipment 100 can insert the detachable rechargeable battery of same model.Also with regard to time say, charging equipment can be to can be to the detachable rechargeable battery charging of electronic equipment 100 power supply.
In addition,, according to another example of the present invention, also motherboard power supply control module can be set on mainboard 110.During detachable rechargeable battery is inserted into the first battery insertion groove and powers to the element on mainboard via the first power input mouth, when motherboard power supply control module detects external power source and is connected to second source input port, can disconnect being connected of the first power input mouth and the first linkage unit, with stop detachable rechargeable battery via the first power input mouth to the element power supply on mainboard.
Selectively, mainboard 110 also comprises the 3rd power input mouth.The 3rd power input mouth is connected with second source input port.And the first power supply unit 120 also can comprise the second linkage unit that connects the 3rd power input mouth and the first battery insertion groove.During detachable rechargeable battery is inserted into the first battery insertion groove, when external power source being detected and be connected to second source input port, motherboard power supply control module can be controlled by external power source and charge to detachable rechargeable battery via second source input port and the 3rd power input mouth.
In the present embodiment, both can to the element on the mainboard of electronic equipment, power by detachable rechargeable battery, also can to the element on the mainboard of electronic equipment, power by the external power source of for example portable charger and so on, thereby for electronic equipment provides multiple power sources supply strategy, make user according to actual needs, flexibly, effectively to select power supply to supply with as electronic equipment power supply.
Yet, externally power supply is not connected to the second source input port of the mainboard of electronic equipment, and the electric weight of detachable rechargeable battery exhausts or detachable rechargeable battery by situation about removing from the first battery insertion groove, electronic equipment cannot move and can be forced closed, this electric weight that user is had at detachable rechargeable battery exhausts or detachable rechargeable battery is preserved its file using before removing from the first battery insertion groove and such as playing progress rate of video or audio file etc., when and after detachable rechargeable battery or external power source while powering to electronic equipment, user need to reopen electronic equipment, and the operating environment of the electronic equipment before recovering, operate very loaded down with trivial details.
For this reason, according to another example of the present invention, the first power supply unit 110 of electronic equipment 100 also can comprise the first self-contained battery and the first energy supply control module.When detachable rechargeable battery does not insert the first battery insertion groove, the first energy supply control module can allow the first self-contained battery to be connected with the first linkage unit, to be powered to the element on mainboard by the first power input mouth by the first self-contained battery.In an embodiment of the present invention, the first power supply unit also can comprise the battery cover covering on the first battery insertion groove.Preferably, during the first energy supply control module is powered to the element on mainboard via the first power input mouth at detachable rechargeable battery, whether detect the first energy supply control module detects battery cover and from the first battery insertion groove, is removed, and detect when the first energy supply control module detects battery cover and removed from the first battery insertion groove, permission the first self-contained battery is connected with the first linkage unit.Thereby externally power supply is not connected to the second source input port 112 of the mainboard 110 of electronic equipment 100, and the electric weight of detachable rechargeable battery exhausts or detachable rechargeable battery by situation about removing from the first battery insertion groove, can, by the first self-contained battery to electronic equipment 100 power supplies, prevent from being forced closed at electronic equipment 100.
According to an example of the present invention, the first self-contained battery there is larger battery capacity, even if thereby external power source is not connected to the second source input port 112 of the mainboard 110 of electronic equipment 100, and the electric weight of detachable rechargeable battery exhausts or detachable rechargeable battery is removed from the first battery insertion groove, and the electric weight that electronic equipment 100 also can provide by the first self-contained battery is normally worked.
Yet the quality of battery conventionally with larger battery capacity is also larger, is not easy to user and carries.According to another example of the present invention, the first self-contained battery can be less, and there is less battery capacity, to alleviate the quality of electronic equipment.In the case, electronic equipment 100 can have the first duty and the second duty.The power dissipation ratio of electronic equipment 100 electronic equipment low in energy consumption under the first duty under the second duty.For example, electronic equipment 100 can have video and/or audio broadcast unit.The first duty can be the normal operating conditions of electronic equipment.Under the first state, can be by the video playback unit playing video file of electronic equipment 100 and/or by the audio playing unit displaying audio file of electronic equipment 100.And the second duty can be the low-power consumption duty of electronic equipment 100.Under the second state, can suspend the video playback unit playing video file of electronic equipment 100 and/or the audio playing unit displaying audio file of time-out electronic equipment 100.In addition, electronic equipment also can comprise state switch unit.When powering to the element on mainboard by the first self-contained battery, state switch unit can switch to the second duty from the first duty by electronic equipment.
In addition,, according to another example of the present invention, the first self-contained battery can be rechargeable battery.And the first self-contained battery can be connected with the first battery insertion groove, when detachable rechargeable battery is inserted in the first battery insertion groove, can be to the first self-contained battery charging.
In addition,, according to another example of the present invention, electronic equipment 100 can be Wearable electronic equipment.In the case, electronic equipment 100 also comprises fixed cell.Electronic equipment 100 can keep the position relationship with the part of user's health by this fixed cell.
Fig. 2 shows the key diagram that the electronic equipment shown in Fig. 1 is an illustrative case of wear-type electronic equipment.As shown in Figure 2, wear-type electronic equipment 200 comprises the fixed cell that comprises tape member 210, and is arranged on first housing 220 of first end of headband parts 210 and the second housing 230 that is arranged on the second end of headband parts 210.In addition, similar with electronic equipment 100, wear-type electronic equipment 200 also comprises the mainboard that comprises the first power input mouth and second source input port and comprises the first battery insertion groove and the first power supply unit of the first linkage unit, for brief introduction is not repeating at this.Mainboard and the first power supply unit can be arranged in the first housing 220 and/or the second housing 230.In the example shown in Fig. 2, the first battery insertion groove 240 of the first power supply unit is arranged in the second housing 230, and still, in interchangeable example, the first battery insertion groove 240 also can be arranged in the first housing 220.
In addition, as shown in Figure 2, wear-type electronic equipment 200 is also included in the second source input port that external power source is not connected to the mainboard of electronic equipment, and the electric weight of detachable rechargeable battery exhausts or detachable rechargeable battery by situation about removing from the first battery insertion groove, to the first self-contained battery 250 of the element power supply on the mainboard of wear-type electronic equipment 200.
Fig. 3 shows the key diagram that the electronic equipment shown in Fig. 1 is an illustrative case of wear-type electronic equipment.As shown in Figure 3, wear-type electronic equipment 300 is glasses type electronic equipment.As shown in Figure 3, glasses type electronic equipment 300 comprises picture frame 310, eyeglass 320 and fixed cell.Eyeglass 320 is arranged in picture frame 310.Eyeglass 320 meets predetermined transmittance in the direction from inner side to outside, user can be seen be positioned at the object in described eyeglass outside, wherein the inner side of eyeglass is for when electronic equipment is worn by user, eyeglass is near a side of user's head, and the outside of eyeglass is when electronic equipment is worn by user, eyeglass is away from a side of user's head.
The fixed cell of wear-type electronic equipment 300 comprises the first sway brace 331 and the second sway brace 332.As shown in Figure 3, the first sway brace comprises the first pontes 331(as shown in the dash area in Fig. 3) and the first retaining part 332.The first pontes 331 connects picture frame 310 and the first retaining part 332.The second sway brace comprises the second coupling part 341(as shown in the dash area in Fig. 3) and the second retaining part 342.The second coupling part 341 connects picture frame 310 and the second retaining part 342.In addition, the 3rd retaining part (not shown) can be set on picture frame 310.Particularly, the 3rd retaining part can be arranged on picture frame 310 on the position between two eyeglasses.By the first retaining part, the second retaining part and the 3rd retaining part, wear-type electronic equipment is maintained at user's head.Particularly, the first retaining part and the second retaining part can be used for the first sway brace and the second sway brace to be supported on user's ear, and the 3rd retaining part can be used for picture frame 310 to be supported on user's bridge of the nose place.
In addition, similar with electronic equipment 100, electronic equipment 300 also comprises the mainboard that comprises the first power input mouth and second source input port and comprises the first battery insertion groove and the first power supply unit of the first linkage unit, for brief introduction is not repeating at this.Mainboard and the first power supply unit can be arranged in the first sway brace and/or the second sway brace.Preferably, mainboard and the first power supply unit can be arranged in the first retaining part of the first sway brace and/or the second retaining part of the second sway brace.
In addition,, according to another example of the present invention, the electronic equipment 300 described in Fig. 3 also can comprise video processing module, first data transmission line and display unit.Particularly, video processing module can be arranged on the mainboard of electronic equipment 300, and first data transmission line can be arranged in fixed cell and picture frame parts.
Fig. 4 shows according to the block diagram of the display unit 400 in electronic equipment 300.As shown in Figure 4, display unit 400 can comprise the first display module 410, the first optical system 420, the first light guide member 430 and the second light guide member 440.Fig. 5 shows the key diagram of a signal situation of the display unit 400 shown in Fig. 4.
The first display module 410 can be arranged in picture frame 310, and is connected with first data transmission line.The first vision signal that the first display module 410 can transmit according to the first data transmission line of electronic equipment 300 shows the first image.First data transmission line can be arranged in fixed cell and picture frame.First data transmission line can be sent to display unit by display.Display unit can show to user according to display.In addition, although take in the present embodiment data line as example is described, the invention is not restricted to this, for example, according to another example of the present invention, also can pass through wireless transmission method, display is sent to display unit.In addition,, according to an example of the present invention, the first display module 410 can be the display module of the miniature display screen that size is less.
The first optical system 420 also can be arranged in picture frame 310.The first optical system 420 can receive the light sending from the first display module, and the light sending from the first display module is carried out to light path converting, to form the first amplification virtual image.That is to say, the first optical system 420 has positive refractive power.Thereby user can know and watch the first image, and the size of the image watched of user is not subject to the restriction of the size of display unit.
For example, optical system can comprise with convex lens.Alternatively, the interference in order to reduce aberration, to avoid dispersion etc. to cause imaging, brings user better visual experience, and optical system also can form lens subassembly by a plurality of lens that comprise convex lens and concavees lens.In addition,, according to an example of the present invention, the first display module 410 and the first optical system 420 can be set accordingly along the optical axis of 4 optical systems.Alternatively, according to another example of the present invention, display unit also can comprise the 5th light guide member, being sent to the first optical system 420 from the light of the first display module 410 transmittings.
As shown in Figure 5, in the first optical system 420, receive the light sending from the first display module 410, and the light sending from the first display module 410 is carried out light path converting, the first light guide member 430 can be sent to the light through the first optical system the second light guide member 440.The second light guide member 440 can be arranged in lens component 320.And the second light guide member can receive the light transmitting by the first light guide member 430, and the light that the first light guide member 430 is transmitted reflects to the eyes of wearing the user of wear-type electronic equipment.As mentioned above, because lens component 320 meets the first predetermined transmittance in the direction from inner side to outside, so user can watch surrounding environment when watching the first amplification virtual image.
In addition,, according to another example of the present invention, the electronic equipment 300 described in Fig. 3 also can comprise audio processing modules and sound transport module.Audio processing modules can be arranged on the mainboard of electronic equipment 300.Audio processing modules can carry out audio frequency to be processed and output audio signal.And transfer voice module can be arranged in the first sway brace or the second sway brace.Transfer voice module can produce vibration according to sound signal, makes user pass through produced vibration listening to audio.
Below, the transfer voice module of one embodiment of the present of invention is described with reference to Fig. 6.Fig. 6 shows the block diagram of transfer voice module 600 according to an embodiment of the invention.As shown in Figure 6, transfer voice module 600 comprises housing unit 610, signal transmission unit 620, vibration unit 630 and support unit 640.
Particularly, housing unit 610 can be made by metal or plastic or other material.And the inner spatial accommodation that forms of housing unit 610.Signal transmission unit 620 can be used for received audio signal, and signal transmission unit 620 arrives vibration unit 630 by received audio signal transmission.Vibration unit 630 is arranged in described housing unit 610.
According in the transfer voice module of the embodiment of the present invention, vibration unit 630 can be piezoelectric type vibration unit.Particularly, vibration unit 630 can comprise substrate and piezoelectric patches.The substrate of vibration unit 630 is connected to signal transmission unit 620, to receive the sound signal of signal transmission unit 620 transmission.According to an example of the present invention, the substrate of vibration unit 630 can be metal substrate.Piezoelectric patches setting corresponding to substrate.Piezoelectric patches inside has the predetermined electric field forming by polarizing in advance.When sound signal is applied on substrate, piezoelectric patches and substrate are crooked under the effect of sound signal, to produce vibration according to sound signal.
Support unit 640 is arranged in described housing unit.Support unit 640 supports vibration unit 630 and does not contact 610 with housing unit to guarantee vibration unit 630, vibration unit 630 can be vibrated in the spatial accommodation of housing unit 610 inside, and the vibration that vibration unit 630 is produced is sent to housing unit 610.Selectively, support unit can be made by resilient material.Due in order to reduce the shared space of transfer voice module 600.Preferably, transfer voice module is set to have less volume.In the case, be arranged on the volume of support unit wherein inevitable less.By resilient material, make support unit, need to when manufacturing support unit, support unit be strictly defined as to specific size, reduced the complexity of manufacturing.
In electronic equipment 600, transfer voice module can be arranged on the inner side of the first sway brace, when wear-type electronic equipment is worn on user's head, transfer voice module contacts with user's head, the vibration that the vibration unit of user in can perceives sound transport module produced.Similarly, transfer voice module also can be in the inner side of the second sway brace.In addition, can transfer voice module be all set in the inner side of the first sway brace and the second sway brace.
According in transfer voice module, apparatus for processing audio and the electronic equipment of the embodiment of the present invention, the vibration producing by the vibration unit making in user awareness transfer voice module carrys out transmission of audio signal, thereby when having reduced the shared volume of module, improved audio frequency output quality with respect to traditional transfer voice of for example earphone, loudspeaker and so on or playing module.In addition; according in the transfer voice module of the embodiment of the present invention; due to vibration unit is arranged on, housing unit is inner to be formed in spatial accommodation; and do not contact with housing unit to guarantee vibration unit by the support unit supports vibration unit being arranged in housing unit; therefore when having protected vibration unit; guarantee the oscillation space of vibration unit, and made the vibration that vibration unit produces to be sent to housing unit by support unit, and and then be sent to user.
Fig. 7 shows the exemplary plot of electronic equipment 700 according to another embodiment of the present invention.As shown in Figure 7, electronic equipment 700 comprises agent set 710 and charging device 750.Similar with the agent set 100 shown in Fig. 1, agent set 710 comprises the mainboard that comprises the first power input mouth and second source input port and comprises the first battery insertion groove and the first power supply unit of the first linkage unit, for brief introduction is not repeating at this.For example, mainboard and the first power supply unit, wherein mainboard comprises the first power input mouth and second source input port, and the first power supply unit comprises the first battery insertion groove and the first linkage unit.
In addition, as shown in Figure 7, agent set 710 also comprises the fixed cell that comprises tape member 711, and is arranged on first housing 712 of first end of headband parts 711 and the second housing 713 that is arranged on the second end of headband parts 711.In the example depicted in fig. 7, the first battery insertion groove 714 of the first power supply unit is arranged in the second housing 713, and still, in interchangeable example, the first battery insertion groove 714 also can be arranged in the first housing.
As mentioned above, the first battery insertion groove 714 can insert detachable rechargeable battery.The first linkage unit can be connected the first battery insertion groove with the first power input mouth.During detachable rechargeable battery is inserted into the first battery insertion groove, detachable rechargeable battery configuration powers to the element on mainboard via the first power input mouth.
Charging device 750 comprises power lead 751 and the second battery insertion groove 752.Power lead 751 can be connected with agent set.Particularly, power lead 751 can be connected with the second source input port of agent set.During power lead 751 is connected with second source input port, charging device 750 configurations power to the element on mainboard via second source input port.
The second battery insertion groove 752 can insert detachable rechargeable battery.During detachable rechargeable battery is inserted into the second battery insertion groove, charging device 750 can charge to detachable rechargeable battery by the second self-contained battery or the mains supply being arranged in charging device 750.The first battery insertion groove of agent set 710 and the second battery insertion groove of charging device 750 can insert the detachable rechargeable battery of same model.Thereby when the detachable rechargeable battery electric weight in agent set 710 exhausts, charging device 750 can charge to this battery.
Fig. 8 shows the block diagram of charging device 800 according to an embodiment of the invention.As shown in Figure 8, charging device 800 comprises power lead 810 and the second power supply unit 820, and wherein power lead 810 configurations are connected with agent set, and the second power supply unit comprises the second battery insertion groove 821-1 to 821-n and power supply adaptor module 822.Although it should be noted that take charging device 800 in Fig. 8 comprises that a plurality of the second battery insertion grooves are described as example, yet according to interchangeable example of the present invention, charging device 800 also can only include second battery insertion groove.
Particularly, each second battery insertion groove in the second battery insertion groove 821-1 to 821-n can insert a detachable rechargeable battery.Power supply adaptor module 822 comprises for receiving the external power source input port of external voltage.Power supply adaptor module 822 can be converted to external voltage the first voltage and be provided to the second battery insertion groove 821-1 to 821-n, to be placed in the second battery insertion groove 821-1 to 821-n at detachable rechargeable battery during, detachable rechargeable battery is charged.In addition, the second battery insertion groove 821-1 to 821-n also can be converted to external voltage second voltage and be provided to power lead 810, during being connected with agent set at power lead 810, to agent set, powers.Thereby charging device can charge to detachable rechargeable battery in agent set power supply.
For example, external power source can be mains supply etc.Again for example, the second power supply unit also can comprise the second self-contained battery, and second source control module.When external power source input port does not receive reception external voltage, second source control module can allow the second self-contained battery be connected with the second battery insertion groove and provide the first voltage to the second battery insertion groove, to be inserted in the second battery insertion groove at detachable rechargeable battery during, detachable rechargeable battery is charged, and when external power source input port receives reception external voltage, second source control module can disconnect being connected of the second self-contained battery and the second battery insertion groove, to keep the electric weight of the second self-contained battery.Even thereby charging device is not in the situation that be connected with the external power source of for example commercial power interface and so on, also can charge to detachable rechargeable battery.In order to reduce the electric quantity consumption of the second self-contained battery, even if can being arranged on charging device, the second self-contained battery is not connected with the external power source of for example commercial power interface and so on, only to the second battery insertion groove power supply.Yet alternatively, also can be set to agent set, powering in the second battery insertion groove power supply by the second self-contained battery.
Preferably, the second self-contained battery is rechargeable battery.When external power source input port receives reception external voltage, second source control module also can be converted to external voltage tertiary voltage and be provided to the second self-contained battery, so that the second self-contained battery is charged.
In addition, in the present embodiment, the agent set that can be connected with charging device by power lead 810 can comprise first battery insertion groove that can insert detachable rechargeable battery, wherein during detachable rechargeable battery is placed in the first battery insertion groove, detachable rechargeable battery can be to the element power supply on the mainboard of agent set.Each second battery insertion groove of each of agent set the first battery insertion groove and charging device 800 can insert the detachable rechargeable battery of same model.
The charging device providing by the present embodiment, for agent set provides multiple power sources supply strategy and mode flexibly, make it possible to according to actual needs, effectively select power supply to supply with as agent set power supply, and immediately for the required rechargeable battery of agent set, charge.
Fig. 9 shows the key diagram of inner structure of an illustrative case of the charging device shown in Fig. 8.Similar with charging device 800, charging device 900 comprises power lead and the second power supply unit.Do not repeat them here for simplicity.In the example depicted in fig. 9, the second power supply unit of charging device 900 comprises the second battery insertion groove 911,912 and 913.In addition, charging device 900 also comprises the charging control unit 920 being connected with 913 with the second battery insertion groove 911,912.Suppose in the example depicted in fig. 9,3 detachable rechargeable batteries are inserted in the second battery insertion groove 911,912 and 913.Charging control unit 920 can be controlled the order that described more than one detachable rechargeable battery is charged.
As mentioned above, according in the agent set of the embodiment of the present invention, both can to detachable rechargeable battery, charge by the second self-contained battery, also can detachable rechargeable battery be charged by the external power source of for example mains supply and so on.When the external power source by for example mains supply and so on charges to detachable rechargeable battery, because the available electric weight of external power source is sufficient, charging control unit 920 can be controlled the electric weight from external power source is provided to a plurality of the second battery insertion grooves 911,912 and 913 simultaneously, more than one detachable rechargeable battery is charged simultaneously.And when the self-contained battery by charging device inside charges to detachable rechargeable battery, because the available electric weight of rechargeable battery is limited, charging control unit 920 can be controlled the charging order to more than one detachable rechargeable battery, one by one more than one detachable rechargeable battery is charged.In the situation that agent set needs a detachable rechargeable battery that the voltage of normal work is provided, charging device can provide the detachable rechargeable battery of electric weight abundance as early as possible for agent set.
Particularly, charging control unit 920 can obtain the battery parameter that is inserted into the detachable rechargeable battery in the second battery insertion groove, and when more than one detachable rechargeable battery is inserted in the second battery insertion groove, according to obtained battery parameter, control the order that more than one detachable rechargeable battery is charged.For example, battery parameter can comprise the electrical parameter of battery.When more than one detachable rechargeable battery is inserted in the second battery insertion groove, charging control unit 920 can be according to obtained battery parameter, determine the electric weight of more than one detachable rechargeable battery, and according to electric weight order from high to low, successively more than one detachable rechargeable battery is charged.That is to say, charging control unit 920 can be controlled, so that the highest detachable rechargeable battery of electric weight inserting in the second battery insertion groove is charged.Thereby when more than one detachable rechargeable battery is inserted in the second battery insertion groove, the shortest stand-by period of user effort just can obtain one and be full of electric detachable rechargeable battery.
In addition,, according to another example of the present invention, in the situation that charging device comprises the second more than one battery insertion groove, charging device also can comprise charge prompting unit.When more than one detachable rechargeable battery is inserted in the second battery insertion groove, charge prompting unit can obtain the battery parameter that is inserted into the detachable rechargeable battery in the second battery insertion groove, and according to obtained battery parameter, generate the recommendation information that removes of more than one detachable rechargeable battery, wherein remove recommendation information for recommend to remove from charging device the order of more than one detachable rechargeable battery to user.
Figure 10 shows the key diagram of another illustrative case of the charging device shown in Fig. 8.In the example depicted in fig. 10, similar with charging device 800, charging device 1000 comprises power lead and the second power supply unit.Do not repeat them here for simplicity.The second power supply unit of charging device 1000 comprises the second battery insertion groove 1011,1012 and 1013.In addition, charging device also comprises charge prompting unit.Charge prompting unit can comprise the warning light 1021,1022 and 1023 corresponding with the second battery insertion groove 1011,1012 and 1013 difference in the example depicted in fig. 10.In addition, charging device 1000 also comprises receiving element 1030.Receiving element 1030 can receive from removing of user and recommend indication.Indication can be recommended in response to removing in charge prompting unit, according to obtained battery parameter, generate the recommendation information that removes of more than one detachable rechargeable battery, and showing according to the generated recommendation information that removes by warning light 1021,1022 and 1023, so that the priority that the current detachable rechargeable battery of prompting user is removed.
For example, battery parameter can comprise the electrical parameter of battery.When 3 detachable rechargeable batteries are inserted in the second battery insertion groove 1011,1012 and 1013 and receiving element 1030 receives while recommending indication from removing of user, charge prompting unit can be according to obtained battery parameter, determine the electric weight of 3 detachable rechargeable batteries, and according to determined electric weight, generate and remove recommendation information.Particularly, can higher than the detachable rechargeable battery of predetermined value, generate and preferentially remove recommendation information electric weight, and electric weight is generated and do not remove recommendation information lower than the detachable rechargeable battery of predetermined value.Then can show respectively corresponding to preferentially removing the color of recommendation information and corresponding to the color that does not remove recommendation information by warning light 1021,1022 and 1023.
Again for example, battery parameter comprises that the detachable charging of indication is inserted into the time parameter of the time in the second battery insertion groove.When more than one detachable rechargeable battery is inserted in the second battery insertion groove and receiving element 330 receives while recommending indication from removing of user, charge prompting unit can be according to obtained battery parameter, determine the time in the second battery insertion groove that is inserted into of more than one detachable rechargeable battery, and according to the determined time, generate the recommendation information that removes of more than one detachable rechargeable battery.Particularly, can preferentially remove recommendation information to inserting the longest detachable rechargeable battery generation of time in the second battery insertion groove, and reduce successively according to inserting time order from long to short in the second battery insertion groove the priority that removes recommendation.Then can show respectively corresponding to the color that removes recommended priority by warning light 1021,1022 and 1023.Due to the time in the second battery insertion groove of being inserted into, the electric weight of longer battery more may be filled conventionally, by the charging device in the present embodiment, when more than one detachable rechargeable battery is inserted in the second battery insertion groove, user wishes to remove detachable rechargeable battery from charging device when inserting in the agent set that can use this detachable rechargeable battery power supply, can easily select the battery that electric weight is maximum according to the shown recommendation information that removes, and can prevent the harmful effect that duration of charging process causes battery.
Again for example, battery parameter comprises that electric weight that indication is inserted into the detachable rechargeable battery in the second battery insertion groove is filled the time parameter of rear institute elapsed time.When more than one detachable rechargeable battery is inserted in the second battery insertion groove and receiving element 1030 receives while recommending indication from removing of user, charge prompting unit can be according to obtained battery parameter, determine that the electric weight that is inserted into the detachable rechargeable battery in the second battery insertion groove is filled rear institute elapsed time, and according to the determined time, generate the recommendation information that removes of more than one detachable rechargeable battery.Particularly, can be filled the longest detachable rechargeable battery of rear institute elapsed time to electric weight and generate and preferentially remove recommendation information, and according to electric weight, be filled rear institute elapsed time order from long to short and reduce successively the priority that removes recommendation.Then can show respectively corresponding to the color that removes recommended priority by warning light 1021,1022 and 1023.Thereby can prevent the harmful effect that duration of charging process causes battery.
In addition,, according to another example of the present invention, also can on the mainboard of agent set 710, also motherboard power supply control module can be set.During detachable rechargeable battery is inserted into the first battery insertion groove and powers to the element on mainboard via the first power input mouth, when motherboard power supply control module detects external power source and is connected to second source input port, can disconnect being connected of the first power input mouth and the first linkage unit, with stop detachable rechargeable battery via the first power input mouth to the element power supply on mainboard.
In the present embodiment, both can to the element on the mainboard of agent set, power by detachable rechargeable battery, also can to the element on the mainboard of agent set, power by the external power source of for example portable charger and so on, thereby for agent set provides multiple power sources supply strategy, make user according to actual needs, flexibly, effectively to select power supply to supply with as agent set power supply.
Below, the condition control method of embodiments of the invention is described with reference to Figure 11.Figure 11 is the process flow diagram of having described according to the condition control method 1100 of the embodiment of the present invention.Each step in condition control method 1100 can be carried out by the corresponding module in the electronic equipment in above-mentioned Fig. 1 to Fig. 3 respectively.Particularly, condition control method 1100 can be applicable to have the electronic equipment of the first duty and the second duty.Particularly, electronic equipment can comprise mainboard and the first power supply unit.Mainboard can comprise the first power input mouth and second source input port.The first power supply unit can comprise can insert the first battery insertion groove of detachable rechargeable battery, the first linkage unit and the first self-contained battery that connection the first battery insertion groove is connected with the first power input mouth.In addition, second source input port can be connected with external power source by power lead.
As shown in figure 11, in step S1101, after unlocking electronic equipment, detect external power source and whether be connected with second source input port.When external power source is connected with second source input port, in step S1102, allow external power source to power to the element on mainboard via second source input port, and the duty of electronic equipment is set to the first duty.On the other hand, when external power source is not connected with second source input port, in step S1103, detects detachable rechargeable battery and whether be inserted into the first battery insertion groove.And when detachable rechargeable battery is inserted into the first battery insertion groove, in step S1104, allow detachable rechargeable battery to power to the element on mainboard via the first power input mouth, and the duty of electronic equipment is set to the first duty.And be not connected with second source input port and when detachable rechargeable battery is not inserted into the first battery insertion groove when external power source, in step S1105, allow the first self-contained battery to be connected to power to the element on mainboard via the first power input mouth with the first linkage unit, and the duty of electronic equipment is set to the second duty.
According in the method for the present embodiment, both can to the element on the mainboard of electronic equipment, power by detachable rechargeable battery, also can to the element on the mainboard of electronic equipment, power by the external power source of for example portable charger and so on, thereby for electronic equipment provides multiple power sources supply strategy, make it possible to according to actual conditions, flexibly, effectively select power supply to supply with as electronic equipment power supply.In addition, externally power supply is not connected to the second source input port of the mainboard of electronic equipment, and the electric weight of detachable rechargeable battery exhausts or detachable rechargeable battery by situation about removing from the first battery insertion groove, can to electronic equipment, power by the first self-contained battery, prevent from being forced closed at electronic equipment, simplified user's operation.
Those of ordinary skills can recognize, unit, the module of each example of describing in conjunction with embodiment disclosed herein, can realize with electronic hardware, computer software or the combination of the two, for the interchangeability of hardware and software is clearly described, composition and the step of each example described according to function in the above description in general manner.These functions are carried out with hardware or software mode actually, depend on application-specific and the design constraint of technical scheme.Professional and technical personnel can specifically should be used for realizing described function with distinct methods to each, but this realization should not thought and exceeds scope of the present invention.
Although illustrated and described some embodiments of the present invention, it will be understood by those skilled in the art that without departing from the principles and spirit of the present invention, can carry out various modifications to these embodiment, such modification should fall within the scope of the present invention.
Claims (14)
1. an electronic equipment, comprising:
Mainboard, comprises the first power input mouth and second source input port;
The first power supply unit, comprises:
The first battery insertion groove, can insert detachable rechargeable battery, and
The first linkage unit, configuration is connected described the first battery insertion groove with described the first power input mouth,
Wherein, during described detachable rechargeable battery is inserted into described the first battery insertion groove, described detachable rechargeable battery configuration powers to the element on described mainboard via described the first power input mouth,
Described second source input port can be connected with external power source by power lead,
During described external power source is connected with described second source input port, described external power source configuration powers to the element on described mainboard via described second source input port.
2. as power requires the electronic equipment as described in 1, wherein
Described external power source is charging equipment,
Described external power source comprises:
Described power lead, configuration is connected with described agent set;
The second battery insertion groove, can insert described detachable rechargeable battery,
During described detachable rechargeable battery is inserted into described the second battery insertion groove, described external power source configures to described detachable rechargeable battery charging, wherein
Described the first battery insertion groove and described the second battery insertion groove can insert the detachable rechargeable battery of same model.
3. electronic equipment as claimed in claim 1 or 2, described mainboard also comprises:
Motherboard power supply control module, configuration is during described detachable rechargeable battery is inserted into described the first battery insertion groove and powers to the element on described mainboard via described the first power input mouth, when described external power source being detected and be connected to described second source input port, disconnect being connected of described the first power input mouth and described the first linkage unit, with stop described detachable rechargeable battery via described the first power input mouth to the element power supply on described mainboard.
4. as power requires the electronic equipment as described in 3, described mainboard also comprises:
The 3rd power input mouth, is connected with described second source input port,
Wherein said the first power supply unit also comprises:
The second linkage unit, is connected with described the 3rd power input mouth,
Described motherboard power supply control module also configures during described detachable rechargeable battery is inserted into described the first battery insertion groove, when described external power source being detected and be connected to described second source input port, control and to described detachable rechargeable battery, charge via described second source input port and described the 3rd power input mouth by described external power source.
5. as power requires the electronic equipment as described in 1 or 2, wherein said the first power supply unit also comprises:
The first self-contained battery; And
The first energy supply control module, configuration comes
When described detachable rechargeable battery does not insert described the first battery insertion groove, allow described the first self-contained battery to be connected with described the first linkage unit, to be powered to the element on described mainboard by described the first power input mouth by described the first self-contained battery.
6. electronic equipment as claimed in claim 5, wherein
Described the first power supply unit also comprises:
Cover the battery cover on described the first battery insertion groove,
During described the first energy supply control module is powered to the element on described mainboard via described the first power input mouth at described detachable rechargeable battery, whether detect described the first energy supply control module detects battery cover and from described the first battery insertion groove, is removed, and detect when described the first energy supply control module detects battery cover and removed from described the first battery insertion groove, allow described the first self-contained battery to be connected with described the first linkage unit.
7. electronic equipment as claimed in claim 5, wherein
Described electronic equipment has the first duty and the second duty,
The power dissipation ratio of described electronic equipment described electronic equipment low in energy consumption under described the first duty under described the second duty,
Described electronic equipment also comprises:
State switch unit, configuration comes, when powering to the element on described mainboard by described the first self-contained battery, described electronic equipment to be switched to described the second duty from described the first duty.
8. electronic equipment as claimed in claim 1 or 2, wherein
Described electronic equipment is Wearable electronic equipment,
Described electronic equipment also comprises:
Fixed cell, wherein said electronic equipment can keep the position relationship with the part of user's health by this fixed cell.
9. electronic equipment as claimed in claim 8, wherein said electronic equipment is glasses type electronic equipment, described electronic equipment also comprises:
Picture frame;
Eyeglass, is arranged in described picture frame;
Described fixed cell comprises:
The first sway brace, comprises the first pontes and the first retaining part, and wherein said the first pontes configures to connect described picture frame and described the first retaining part;
The second sway brace, comprises the second coupling part and the second retaining part, and wherein said the second coupling part configures to connect described picture frame and described the second retaining part,
Wherein, described picture frame comprises the 3rd retaining part,
Described the first retaining part, described the second retaining part and described the 3rd retaining part configure the head that described electronic equipment is remained on to user,
Described eyeglass meets predetermined transmittance in the direction from inner side to outside,
The inner side of described eyeglass is for when described electronic equipment is worn by user, and described eyeglass is near a side of user's head,
The outside of described eyeglass is for when described electronic equipment is worn by user, and described eyeglass is away from a side of user's head.
10. electronic equipment as claimed in claim 9, also comprises:
Audio processing modules, configuration is carried out audio frequency and is processed and output audio signal;
Transfer voice module, be arranged on described the first sway brace in, configuration comes to produce vibration according to described sound signal, makes user pass through produced vibration listening to audio.
11. electronic equipments as claimed in claim 10, wherein said transfer voice module comprises:
Housing unit, the inner spatial accommodation that forms;
Signal transmission unit, configuration receives the described sound signal of described audio processing modules output;
Vibration unit, is arranged in described housing unit, comprising:
Substrate, is connected to described signal transmission unit, and
Piezoelectric patches, setting corresponding to described substrate,
Wherein, described piezoelectric patches inside has the predetermined electric field forming by polarizing in advance,
When described sound signal is applied on described substrate, described piezoelectric patches and described substrate are crooked under the effect of described sound signal, to produce vibration according to described sound signal;
Support unit, be arranged in described housing unit, configuration is supported described vibration unit and is not contacted with described housing unit to guarantee described vibration unit, described vibration unit can be vibrated in the spatial accommodation of described housing unit inside, and the vibration that configuration produces described vibration unit is sent to described housing unit;
When described electronic equipment is worn on user's head, described transfer voice module contacts with described user's head, make described user can perception described in the vibration that produces of vibration unit in transfer voice module.
12. electronic equipments as claimed in claim 9, also comprise:
Video processing module, Video processing outputting video signal are carried out in configuration;
First data transmission line, is arranged in described fixed cell and described picture frame parts, and configuration is sent to display unit by described the first vision signal;
Described display unit, comprises:
The first display module, is arranged in described picture frame parts, and the first vision signal that configuration transmits according to described first data transmission line shows the first image;
The first optical system, is arranged in described picture frame parts, and configuration receives the light sending from described the first display module, and the light sending from described the first display module is carried out to light path converting, to form the first amplification virtual image;
The first light guide member, configuration is sent to the second light guide member by the light through described the first optical system;
Described the second light guide member, is arranged in described lens component, and the light that configuration transmits described the first light guide member reflects to the eyes of wearing the user of described wear-type electronic equipment.
13. 1 kinds of electronic equipments, comprising:
Agent set, comprising:
Mainboard, comprises the first power input mouth and second source input port;
The first power supply unit, comprises:
The first battery insertion groove, can insert detachable rechargeable battery, and
The first linkage unit, configuration is connected described the first battery insertion groove with described the first power input mouth,
Wherein, during described detachable rechargeable battery is inserted into described the first battery insertion groove, described detachable rechargeable battery configuration powers to the element on described mainboard via described the first power input mouth,
Described second source input port can be connected with charging device by power lead,
During described charging device is connected with described second source input port, described charging device configuration powers to the element on described mainboard via described second source input port,
Described charging device, comprising:
Described power lead, configuration is connected with described agent set;
The second battery insertion groove, can insert described detachable rechargeable battery,
During described detachable rechargeable battery is inserted into described the second battery insertion groove, described external power source configures to described detachable rechargeable battery charging, wherein
Described the first battery insertion groove and described the second battery insertion groove can insert the detachable rechargeable battery of same model.
14. 1 kinds of condition control methods, are applied to have the electronic equipment of the first duty and the second duty, and wherein said electronic equipment comprises:
Mainboard, comprises the first power input mouth and second source input port;
The first power supply unit, comprises:
The first battery insertion groove, can insert detachable rechargeable battery,
The first linkage unit, configuration is connected described the first battery insertion groove with described the first power input mouth, and
The first self-contained battery,
Wherein said second source input port can be connected with external power source by power lead,
Described method comprises:
After opening described electronic equipment, detect described external power source and whether be connected with described second source input port,
When described external power source is connected with described second source input port, allow described external power source to power to the element on described mainboard via described second source input port, and the duty of described electronic equipment is set to described the first duty;
When described external power source is not connected with described second source input port, detect described detachable rechargeable battery and whether be inserted into described the first battery insertion groove,
When described detachable rechargeable battery is inserted into described the first battery insertion groove, allow described detachable rechargeable battery to power to the element on described mainboard via described the first power input mouth, and the duty of described electronic equipment is set to described the first duty;
When described external power source is not connected with described second source input port and when described detachable rechargeable battery is not inserted into described the first battery insertion groove, allow described the first self-contained battery to be connected to power to the element on described mainboard via described the first power input mouth with described the first linkage unit, and the duty of described electronic equipment is set to described the second duty.
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