CN103246455A - Screen double-unlocking system - Google Patents
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- CN103246455A CN103246455A CN2012100226899A CN201210022689A CN103246455A CN 103246455 A CN103246455 A CN 103246455A CN 2012100226899 A CN2012100226899 A CN 2012100226899A CN 201210022689 A CN201210022689 A CN 201210022689A CN 103246455 A CN103246455 A CN 103246455A
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Abstract
The invention provides a screen double-unblocking system which comprises a setting module used for setting a double-unlocking interface in an unlocking interface storage, a displaying module used for displaying the set double-unlocking interface when an electronic device is connected with a power supply, a judging module used for determining which storage to unlock and an unlocking module used for informing an unlocking controller to control gears in a gear switch through a central processing unit (CPU) to enable the CPU to be connected with the storage to start the storage. The interface that an operation system installed on the storage corresponds to can be displayed on a touch screen. By means of the system, the electronic device configured with two operation systems can be unlocked on the same unlocking interface, namely a user can select which storage to unlock on the unlocking interface, and the interface that the operation system installed on the storage corresponds to can be displayed then. The system improves user operation efficiency and saves user time.
Description
Technical field
The present invention relates to the electronic product field, be specifically related to the bilingual lock of a kind of screen system.
Background technology
Touch-screen is a kind of input equipment, and the user runs into the operation that icon on the touch-screen or literal just can the inputs of realization information by finger or pointer, thereby makes man-machine interaction more convenient, and is more directly perceived.
At present, be equipped with the electronic installation (for example, smart mobile phone, panel computer etc.) of touch-screen to use more and more widely.Usually, be equipped with the electronic installation of touch-screen all to possess screen release interface (for example, slip release interface).Yet, for the electronic installation that dual system (two operating system) is installed, for example, if electronic installation has two storeies, an operating system is installed on each storer, and the user need be equipped with a screen release interface at each storer, when starting a storer, use the screen release interface of this storer to carry out release, and can not allow the user select specifically that storer that operating system is installed to be carried out release by a release interface.
Summary of the invention
In view of above content, be necessary to provide the bilingual lock of a kind of screen system, can make the user on same release interface the electronic installation that dual system is installed be carried out release, namely the user can select that storer is carried out release at this release interface, make things convenient for the user, improved efficient.
The invention provides the bilingual lock of a kind of screen system, this system runs on electronic installation (1), this electronic installation (1) comprises release interface storer (10), the first memory (201) of operating system is installed, the second memory (202) of operating system is installed, change-over circuit (30), driving switch (40), CPU (50), separate lock controller (60), touch sensing unit (70) and touch-screen (80), this system comprises: module is set, be used at release interface storer (10) bilingual lock interface (801) being set, described bilingual lock interface (801) comprises the bilingual lock interface of first kind of form, the bilingual lock interface of second kind of form, the bilingual lock interface of the third form, the bilingual lock interface of the 4th kind of form, the bilingual lock interface of the 5th kind of form; Display module is used for showing the bilingual lock interface (801) of above-mentioned setting when this electronic installation (1) is connected power supply; Judge module is used for carrying out at bilingual lock interface (801) by touch sensing unit (70) detecting user the concrete operations of release, to determine that first memory (201) is still carried out release to second memory (202); Separate lock module, the concrete operations that are used for carrying out at bilingual lock interface (801) as the user release are when first memory (201) is carried out release, separate the switching that lock controller (60) is controlled gear in the driving switch (40) by CPU (50) notice, make CPU (50) be connected with first memory (201), to start first memory (201), touch-screen (80) is gone up the corresponding interface of operating system that shows that first memory (201) is upward installed afterwards; Separate lock module, be when second memory (202) is carried out release for the concrete operations of carrying out release as the user at bilingual lock interface (801) also, separate gear in lock controller (60) the control driving switch (40) by CPU (50) notice, make CPU (50) be connected with second memory (202), to start second memory (202), touch-screen (80) is gone up the corresponding interface of operating system that shows that second memory (202) is upward installed afterwards.
Compared to prior art, the bilingual lock of described screen system, can be implemented on the same release interface electronic installation that two operating systems are installed is carried out release, be that the user can select that storer is carried out release at this release interface, show the corresponding interface of the operating system of installing on this storer afterwards, improve user's operating efficiency, saved user's time.
Description of drawings
Fig. 1 is the Organization Chart of electronic installation preferred embodiment of the present invention;
Fig. 2 is the functional block diagram of the preferred embodiments of the bilingual lock of screen of the present invention system;
Fig. 3 is the process flow diagram of the preferred embodiment of the bilingual locking method of screen of the present invention;
Fig. 4 is the synoptic diagram at the bilingual lock interface of first embodiment of the invention;
Fig. 5 is the synoptic diagram at the bilingual lock interface of second embodiment of the invention;
Fig. 6 is the synoptic diagram at the bilingual lock interface of third embodiment of the invention;
Fig. 7 is the synoptic diagram at the bilingual lock interface of fourth embodiment of the invention;
Fig. 8 is the synoptic diagram at the bilingual lock interface of fifth embodiment of the invention.
Embodiment
With reference to shown in Figure 1, it is the Organization Chart of electronic installation preferred embodiment of the present invention.Described electronic installation 1 refers to mobile phone, personal digital assistant (Personal Digital Assistant, PDA), panel computer, personal computer and comprise two storeies arbitrarily, and the device that operation has operating system independently and operates by touch-screen on each storer.In the present embodiment, described electronic installation 1 is for being equipped with the panel computer of two operating systems.This electronic installation 1 comprise release interface storer 10, first memory 201, second memory 202, change-over circuit 30, driving switch 40, central processing unit (Central processing unit, CPU) 50, separate lock controller 60, touch sensing unit 70 and touch-screen 80.Wherein, release interface storer 10, change-over circuit 30, solution lock controller 60 and touch sensing unit 70 all are connected with CPU 50.In addition, change-over circuit 30 is connected with first memory 201 and second memory 202.Driving switch 40 is connected with change-over circuit 30 and solution lock controller 60.Touch-screen 80 is connected with touch sensing unit 70.An operating system is installed on the first memory 201, an operating system is installed on the second memory 202.First memory 201 is separate with second memory 202, is independent of each other.
Described release interface storer 10 is connected with CPU 50, and this release interface storer 10 is equipped with the bilingual lock of screen system 100, and its function will be described in detail in Fig. 2 and Fig. 3.This release interface storer 10 also stores bilingual lock interface 801.When the user opened the power supply of this electronic installation 1, this bilingual lock interface 801 was presented in the touching induction region 800 of touch-screen 80.The user can carry out release by these 801 pairs of first memories 201 in bilingual lock interface or second memory 202, to start first memory 201 or second memory 202, makes first memory 201 or second memory 202 enter duty.Described bilingual lock interface 801 comprises various ways, in this preferred embodiment, described bilingual lock interface 801 comprises the bilingual lock interface 801 of five kinds of forms, is respectively the bilingual lock interface 801 of the 5th form of the bilingual lock interface 801 of the 4th kind of form of bilingual lock interface 801, Fig. 7 of the third form of bilingual lock interface 801, Fig. 6 of second kind of form of bilingual lock interface 801 as first kind of form of Fig. 4, Fig. 5 and Fig. 8.This bilingual lock interface 801 comprises two zones, be respectively first area 820, second area 830, the concrete operations of user on first area 820 can be carried out release to first memory 201, to start first memory 201, show the corresponding interface of operating system of installing on the first memory 201 afterwards on the touch-screen 80, the concrete operations of user on second area 830 can be carried out release to second memory 202, to start second memory 202, show the corresponding interface of operating system of installing on the second memory 202 afterwards on the touch-screen 80.
Particularly, bilingual lock interface 801 as shown in Figure 4 comprises first area 820 and second area 830, in addition, this bilingual lock interface 801 also comprises a moving slider 810, this moving slider 810 is positioned at the centre position at bilingual lock interface 801, when the user drags moving slider 810 to the first area during 820 slip certain distances, first memory 201 is carried out release, to start first memory 201, show the corresponding interface of operating system of installing on the first memory 201 afterwards on the touch-screen 80, when the user drags moving slider 810 to second area 830 slip certain distances, second memory 202 is carried out release, to start second memory 202, show the corresponding interface of operating system of installing on the second memory 202 afterwards on the touch-screen 80.
Described change-over circuit 30 is connected with first memory 201 and second memory 202, and this change-over circuit 30 also is connected with CPU 50 and switch 40 connects, and can realize switching between first memory 201 and the second memory 202 by change-over circuit 30.Particularly, switch 40 comprises three gears, be respectively a grade A, shelves B and shelves C, the corresponding first memory 201 of its middle-grade A, the corresponding second memory 202 of shelves B, shelves C is neutral gear, when shelves C was connected with shelves A, change-over circuit 30 communicated to connect first memory 201 with CPU 50, start first memory 201, make first memory 201 enter duty, show the corresponding interface of operating system of installing on the first memory 201 afterwards on the touch-screen 80.When shelves C is connected with shelves B, change-over circuit 30 establishes a communications link second memory 202 with CPU 50, start second memory 202, make second memory 202 enter duty, show the corresponding interface of operating system of installing on the second memory 202 afterwards on the touch-screen 80.Need to prove, in order to improve toggle speed, when the user starts this electronic installation 1 by the power key (not shown), first memory 201 and second memory 202 power on simultaneously, just will not enter the first memory 201 of duty or the reading and writing data mouth of second memory 202 closes, at this moment, can not read and write the data on first memory 201 or the second memory 202.Particularly, be example to start first memory 201, when shelves C is connected with shelves A, change-over circuit 30 is opened reading and writing data mouth in the first memory 201 by the flat signal of height, and connection first memory 201 and CPU 50, make CPU 50 to read and write the data on the first memory 201 by the reading and writing data mouth of first memory 201, start the operating system on the first memory 201, make first memory 201 enter duty.When first memory 201 does not have in running order, just the reading and writing data mouth of first memory 201 is closed, but do not close the power supply of first memory 201, when switching to first memory 201 again, only need open the reading and writing data mouth of first memory 201, just can read and write the data in the first memory 201, avoid first memory 201 to power on the time of wait, thereby can accelerate the toggle speed to first memory 201.
The shelves C of described solution lock controller 60 and CPU 50 and switch 40 is connected, and this is separated lock controller 60 and is used for being connected between control shelves C and grade A or grade B.Wherein, the original state of shelves C is neutral, namely is not connected also with shelves A not to be connected with shelves B.Particularly, when the user carries out release by 801 pairs of first memories in bilingual lock interface 201, for example, in Fig. 4 with moving slider 801 to the first area 820 slip certain distances, CPU 50 sending controling instructions are given and are separated lock controller 60, this is separated lock controller 60 control shelves C and is connected with shelves A, when the user carries out release by 801 pairs of second memories in bilingual lock interface 202, for example, in Fig. 4 with moving slider 801 to second area 830 slip certain distances, CPU 50 sends instruction to separating lock controller 60, and this is separated lock controller 60 control shelves C and is connected with shelves B.In addition, when the user was closed the power supply of closing electronic device 1, described solution lock controller 60 control shelves C returned to original state, and namely a shelves C namely is not connected with shelves A yet and is not connected with shelves B.
Described touch-screen 80 comprises a touching induction region 800, be provided with a plurality of touch sensible points in this touching induction region 800, the user carries out concrete operations by finger or pointer in touch-control sensing zone 800, the concrete operations of user on touching induction region 800 can be responded to and detect to touch sensing unit 700, and send the concrete operations that obtain to CPU 50 and handle, operate to carry out the user, thereby realization is to the release of first memory 201 or second memory 202.Described touch-screen 80 is a contact panel, and this contact panel can be capacitance type touch-control panel, also can be electric resistance touch-control panel, and the user can carry out release by 80 pairs of first memories 201 of touch-screen or second memory 202.
With reference to shown in Figure 2, it is the functional block diagram of the bilingual lock of screen system 100 among Fig. 1.Described CPU 50 is used for the instructions that the bilingual lock of control screen system 100 sends.The bilingual lock of this screen system 100 comprises and module 110, display module 120, judge module 130 is set and separates lock module 140.
The described module 110 that arranges is used at release interface storer 10 bilingual lock interface 801 being set.Particularly, the user can arrange Fig. 4 to any one bilingual lock interface 801 shown in Figure 8.
Described display module 120 is used for showing the bilingual lock interface 801 of above-mentioned setting when this electronic installation 1 is connected power supply.
Described judge module 130 is used for the detecting user carries out release at bilingual lock interface 801 concrete operations, to determine that first memory 201 is still carried out release to second memory 202.Described concrete operations meeting is according to different bilingual lock interfaces 801 and different, particularly, corresponding bilingual lock interface 801 as shown in Figure 4, the concrete operations that first memory 201 is carried out release are to drag moving slider 810 certain distance that upwards slides, and the concrete operations that second memory 202 is carried out release are to drag moving slider 810 to the certain distance of lower slider.Corresponding bilingual lock interface 801 as shown in Figure 5, the concrete operations that first memory 201 is carried out release are to drag moving slider 810 to contact with square frame 8210, and the concrete operations that second memory 202 is carried out release are to drag moving slider 810 to contact with square frame 8310.Corresponding bilingual lock interface 801 as described in Figure 6, the concrete operations that first memory 201 is carried out release are to import answer in square frame 8220, the concrete operations that second memory 202 is carried out release are to import answer in square frame 8330.Corresponding bilingual lock interface 801 as shown in Figure 7, the concrete operations that first memory 201 is carried out release are to drag square frame 8220 to contact with square frame 8210, the concrete operations that second memory 202 is carried out release are in square frame 8320 input answers.Corresponding bilingual lock interface 801 as shown in Figure 8, the concrete operations that first memory 201 is carried out release are to drag square frame 8210 to contact to any one icon of icon a10 with icon a1, and the concrete operations that second memory 202 is carried out release are in square frame 8320 input answers.
Described solution lock module 140 be used for when concrete operations that the user carries out release at bilingual lock interface 801 be to one of them storer (first memory 201 or second memory 202) when carrying out release, separate lock controller 60 control driving switch 40 by CPU 50 notices, make CPU 50 be connected with this storer, and open reading and writing data mouth in this storer, to start this storer.Particularly, if the concrete operations of user on bilingual lock interface 801 are when first memory 201 is carried out release, by the shelves C on the CPU 50 notice solution lock controllers 60 control driving switch 40, shelves C is connected with shelves A, make CPU 50 be connected with first memory 201, and open reading and writing data mouth in this first memory 201, to start first memory 201, show the corresponding interface of operating system of installing on the first memory 201 afterwards on the touch-screen 80.If the concrete operations of user on bilingual lock interface 801 are when second memory 202 is carried out release, by the shelves C on the CPU 50 notice solution lock controllers 60 control driving switch 40, shelves C is connected with shelves B, make CPU 50 be connected with second memory 202, and open reading and writing data mouth in this second memory 202, to start second memory 202, show the corresponding interface of operating system of installing on the second memory 202 afterwards on the touch-screen 80.
With reference to shown in Figure 3, it is the process flow diagram of the bilingual locking method preferred embodiment of screen in the electronic installation of the present invention.
Step S10 arranges module 110 bilingual lock interface 801 is set in release interface storer 10.Particularly, the user can arrange Fig. 4 to any one bilingual lock interface 801 shown in Figure 8.
Step S20, when this electronic installation 1 was connected power supply, display module 120 showed the bilingual lock interface 801 of above-mentioned setting.
Step S30, judge module 130 detecting users carry out the concrete operations of release at bilingual lock interface 801, to determine that first memory 201 is still carried out release to second memory 202.Described concrete operations meeting is according to different bilingual lock interfaces 801 and different, particularly, corresponding bilingual lock interface 801 as shown in Figure 4, the concrete operations that first memory 201 is carried out release are to drag moving slider 810 certain distance that upwards slides, and the concrete operations that second memory 202 is carried out release are to drag moving slider 810 to the certain distance of lower slider.Corresponding bilingual lock interface 801 as shown in Figure 5, the concrete operations that first memory 201 is carried out release are to drag moving slider 810 to contact with square frame 8210, and the concrete operations that second memory 202 is carried out release are to drag moving slider 810 to contact with square frame 8310.Corresponding bilingual lock interface 801 as described in Figure 6, the concrete operations that first memory 201 is carried out release are to import answer in square frame 8220, the concrete operations that second memory 202 is carried out release are to import answer in square frame 8330.Corresponding bilingual lock interface 801 as shown in Figure 7, the concrete operations that first memory 201 is carried out release are to drag square frame 8220 to contact with square frame 8210, the concrete operations that second memory 202 is carried out release are in square frame 8320 input answers.Corresponding bilingual lock interface 801 as shown in Figure 8, the concrete operations that first memory 201 is carried out release are to drag square frame 8210 to contact to any one icon of icon a10 with icon a1, and the concrete operations that second memory 202 is carried out release are in square frame 8320 input answers.
Step S40, the concrete operations of carrying out release at bilingual lock interface 801 as the user are to one of them storer (first memory 201 or second memory 202) when carrying out release, separate lock module 140 and separate lock controller 60 control driving switch 40 by CPU 50 notices, make CPU 50 be connected with this storer, and open reading and writing data mouth in this storer, to start this storer.Particularly, if the concrete operations of user on bilingual lock interface 801 are when first memory 201 is carried out release, by the shelves C on the CPU 50 notice solution lock controllers 60 control driving switch 40, shelves C is connected with shelves A, make CPU 50 be connected with first memory 201, and open reading and writing data mouth in this first memory 201, to start first memory 201, show the corresponding interface of operating system of installing on the first memory 201 afterwards on the touch-screen 80.If the concrete operations of user on bilingual lock interface 801 are when second memory 202 is carried out release, by the shelves C on the CPU 50 notice solution lock controllers 60 control driving switch 40, shelves C is connected with shelves B, make CPU 50 be connected with second memory 202, and open reading and writing data mouth in this second memory 202, to start second memory 202, show the corresponding interface of operating system of installing on the second memory 202 afterwards on the touch-screen 80.
Need to prove at last, above embodiment is only unrestricted in order to technical scheme of the present invention to be described, although with reference to preferred embodiment this aspect is had been described in detail, those skilled in the art are to be understood that, can make amendment or be equal to replacement technical scheme of the present invention, and not break away from the scope of technical solution of the present invention.
Claims (10)
1. the bilingual lock of screen system, this system runs on electronic installation (1), this electronic installation (1) comprises release interface storer (10), the first memory (201) of operating system is installed, be equipped with operating system second memory (202), change-over circuit (30), driving switch (40), CPU (50), separate lock controller (60), touch sensing unit (70) and touch-screen (80), it is characterized in that this system comprises:
Module is set, be used at release interface storer (10) bilingual lock interface (801) being set, described bilingual lock interface (801) comprises the bilingual lock interface of the bilingual lock interface of the bilingual lock interface of first kind of form, second kind of form, the bilingual lock interface of the third form, the 4th kind of form, the bilingual lock interface of the 5th kind of form;
Display module is used for showing the bilingual lock interface (801) of above-mentioned setting when this electronic installation (1) is connected power supply;
Judge module is used for carrying out at bilingual lock interface (801) by touch sensing unit (70) detecting user the concrete operations of release, to determine that first memory (201) is still carried out release to second memory (202);
Separate lock module, the concrete operations that are used for carrying out at bilingual lock interface (801) as the user release are when first memory (201) is carried out release, separate gear in lock controller (60) the control driving switch (40) by CPU (50) notice, make CPU (50) be connected with first memory (201), to start first memory (201), touch-screen (80) is gone up the corresponding interface of operating system that shows that first memory (201) is upward installed afterwards; And
Separate lock module, be when second memory (202) is carried out release for the concrete operations of carrying out release as the user at bilingual lock interface (801) also, separate gear in lock controller (60) the control driving switch (40) by CPU (50) notice, make CPU (50) be connected with second memory (202), to start second memory (202), touch-screen (80) is gone up the corresponding interface of operating system that shows that second memory (202) is upward installed afterwards.
2. the bilingual lock of a kind of screen as claimed in claim 1 system, it is characterized in that, the bilingual lock interface of first kind of form comprises first area (820), second area (830) and is positioned at the moving slider (810) in this centre position, bilingual lock interface, when the user drags moving slider (810) to the first area during (820) slip certain distance, first memory (201) is carried out release, when the user drags moving slider (810) to second area (830) slip certain distance, second memory (202) is carried out release.
3. the bilingual lock of a kind of screen as claimed in claim 1 system, it is characterized in that, the bilingual lock interface of second kind of form comprises first area (820), second area (830) and a moving slider (810) that is positioned at zone except first area (820) and second area (830), first area (820) comprises a square frame (8210), second area (830) comprises a square frame (8310), square frame (8210) in the user drags moving slider (810) and first area (820) is when contacting, first memory (201) is carried out release, square frame (8310) in the user drags moving slider (810) and second area (830) carries out release to second memory (202) when contacting.
4. the bilingual lock of a kind of screen as claimed in claim 1 system, it is characterized in that, the first area, bilingual lock interface (820) of the third form and second area (830), first area (820) comprises that a square frame (8210) that is provided with question-and-answer problem and one allow the user by the square frame (8220) of dummy keyboard input answer to answer this question-and-answer problem, if the user is consistent with the answer of storage in the release interface storer (10) by the answer of dummy keyboard input, then first memory (201) is carried out release; Second area (830) comprises a square frame that Shows Picture (8310), going up the picture that shows according to square frame (8310) is provided with the square frame (8320) of question-and-answer problem and allows the user by the square frame (8330) of dummy keyboard input answer to answer this question-and-answer problem, if the user is consistent with the answer of storage in the release interface storer (10) by the answer of dummy keyboard input, then second memory (202) is carried out release.
5. the bilingual lock of a kind of screen as claimed in claim 1 system, it is characterized in that, the bilingual lock interface of the 4th kind of form comprises first area (820) and second area (830), first area (820) comprises square frame (8210) and square frame (8220), when the user does not drag square frame (8220), square frame (8210) does not contact in first area (820) with square frame (8220), when the user drags square frame (8220) and square frame (8210) when contacting, first memory (201) is carried out release; Second area (830) comprises that a square frame (8310) that is provided with question-and-answer problem and one allow the user by the square frame (8320) of dummy keyboard input answer to answer this question-and-answer problem, if the answer that the user imports in square frame (8310) by dummy keyboard is consistent with the answer of storage in the release interface storer (10), then second memory (202) is carried out release.
6. the bilingual lock of a kind of screen as claimed in claim 1 system, it is characterized in that, the bilingual lock interface of the 5th kind of form comprises first area (820) and second area (830), first area (820) comprises the square frame (8210) that can move, this first area (820) also comprises the icon of one or more application programs, when the user drags square frame (8210) when contacting with one of them icon, not only first memory 201 is carried out release, also enter this icon corresponding application program; Second area (830) comprises that a square frame (8310) that is provided with question-and-answer problem and one allow the user by the square frame (8320) of dummy keyboard input answer to answer this question-and-answer problem, if the answer that the user imports in square frame (8310) by dummy keyboard is consistent with the answer of storage in the release interface storer (10), then second memory (202) is carried out release.
7. the bilingual lock of a kind of screen as claimed in claim 1 system, it is characterized in that, the concrete operations that release is carried out to first memory (201) in bilingual lock interface (801) by first kind of form are to drag moving slider (810) certain distance that upwards slides, and the bilingual lock interface (801) by first kind of form is to drag moving slider (810) to the certain distance of lower slider to the concrete operations that second memory (202) carries out release; Bilingual lock interface (801) by second kind of form is to drag moving slider (810) to contact with square frame (8210) to the concrete operations that first memory (201) carries out release, and the bilingual lock interface (801) by second kind of form is to drag moving slider (810) to contact with square frame (8310) to the concrete operations that second memory (202) carries out release; Bilingual lock interface (801) by the third form is input answers in square frame (8220) to the concrete operations that first memory (201) carries out release, and the concrete operations of second memory 202 being carried out release by the bilingual lock interface (801) of the third form are input answers in square frame (8330); Bilingual lock interface (801) by the 4th kind of form is to drag square frame (8220) to contact with square frame (8210) to the concrete operations that first memory (201) carries out release, and the bilingual lock interface (801) by the 4th kind of form is in square frame (8320) input answer to the concrete operations that second memory (202) carries out release; Bilingual lock interface (801) by the 5th kind of form is to drag square frame (8210) to contact with an icon to the concrete operations that first memory (201) carries out release, and the bilingual lock interface (801) by the 5th kind of form is in square frame (8320) input answer to the concrete operations that second memory (202) carries out release.
8. the bilingual lock of a kind of screen as claimed in claim 1 system is characterized in that, described driving switch (40) comprises three gears, is respectively a grade A, shelves B and shelves C, wherein, and the corresponding first memory (201) of shelves A, the corresponding second memory (202) of shelves B.
9. as the bilingual lock of the described a kind of screen of claim 1 to 8 system, it is characterized in that, the concrete operations of carrying out release as the user at bilingual lock interface (801) are when first memory (201) is carried out release, the shelves C that separates in lock controller (60) the control driving switch (40) by CPU (50) notice is connected with shelves A, make first memory (201) be connected with CPU50, to start first memory (201).
10. as the bilingual lock of the described a kind of screen of claim 1 to 8 system, it is characterized in that, the concrete operations of carrying out release as the user at bilingual lock interface (801) are when second memory (202) is carried out release, the shelves C that separates in lock controller (60) the control driving switch (40) by CPU (50) notice is connected with shelves B, make second memory (202) be connected with CPU (50), to start second memory (202).
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CN106127008A (en) * | 2016-06-28 | 2016-11-16 | 珠海市魅族科技有限公司 | A kind of method and device accessing terminal |
CN106648772A (en) * | 2016-12-15 | 2017-05-10 | 北京珠穆朗玛移动通信有限公司 | Task processing method based on double systems and mobile terminal |
CN111125663A (en) * | 2019-11-27 | 2020-05-08 | 宇龙计算机通信科技(深圳)有限公司 | Control method and device for child mode, storage medium and terminal |
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