CN104346061A - Control method and electronic equipment - Google Patents
Control method and electronic equipment Download PDFInfo
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- CN104346061A CN104346061A CN201310341723.3A CN201310341723A CN104346061A CN 104346061 A CN104346061 A CN 104346061A CN 201310341723 A CN201310341723 A CN 201310341723A CN 104346061 A CN104346061 A CN 104346061A
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- electronic equipment
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- G—PHYSICS
- G06—COMPUTING; CALCULATING OR COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F3/00—Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
- G06F3/01—Input arrangements or combined input and output arrangements for interaction between user and computer
- G06F3/048—Interaction techniques based on graphical user interfaces [GUI]
- G06F3/0484—Interaction techniques based on graphical user interfaces [GUI] for the control of specific functions or operations, e.g. selecting or manipulating an object, an image or a displayed text element, setting a parameter value or selecting a range
- G06F3/04847—Interaction techniques to control parameter settings, e.g. interaction with sliders or dials
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- G—PHYSICS
- G06—COMPUTING; CALCULATING OR COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F3/00—Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
- G06F3/01—Input arrangements or combined input and output arrangements for interaction between user and computer
- G06F3/048—Interaction techniques based on graphical user interfaces [GUI]
- G06F3/0487—Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser
- G06F3/0488—Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser using a touch-screen or digitiser, e.g. input of commands through traced gestures
- G06F3/04883—Interaction techniques based on graphical user interfaces [GUI] using specific features provided by the input device, e.g. functions controlled by the rotation of a mouse with dual sensing arrangements, or of the nature of the input device, e.g. tap gestures based on pressure sensed by a digitiser using a touch-screen or digitiser, e.g. input of commands through traced gestures for inputting data by handwriting, e.g. gesture or text
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- Engineering & Computer Science (AREA)
- General Engineering & Computer Science (AREA)
- Theoretical Computer Science (AREA)
- Human Computer Interaction (AREA)
- Physics & Mathematics (AREA)
- General Physics & Mathematics (AREA)
- User Interface Of Digital Computer (AREA)
Abstract
The embodiment of the invention provides a control method for electronic equipment and the corresponding electronic equipment. The control method is applied to the electronic equipment. The control method comprises the steps of detecting operation parameters of the electronic equipment; determining whether the operation state parameters meet preset operation conditions; obtaining mobile distance of mobile input when mobile input carried out on a touch panel of the electronic equipment by a user is detected through the touch panel; when the operation state parameters meet the preset operation conditions, mapping the mobile distance into high resolution pixel displacement according to preset high screen resolution, which is greater than practical screen resolution of the electronic equipment; generating control commands according to the high resolution pixel displacement.
Description
Technical field
The present invention relates to a kind of control method for electronic equipment and corresponding electronic equipment.
Background technology
At present, such as the various electronics of personal computer, notebook, tablet computer, smart mobile phone and portable media player and so on are widely used.Conveniently these electronics of operation of user are equipped with the touch input unit of such as touch-screen, touch panel and so on usually.User, by touch input unit, carries out clicking, double-clicks, slides, the action such as towing to be to realize corresponding controlling functions.
But in some cases, user may be not easy to, in touch input unit, finger is moved longer distance with the action of such as sliding, pulling and so on to input corresponding steering order.Such as, when multiple user is simultaneously at the enterprising line operate of the electronic equipment of such as intelligent desktop computer and so on, if the finger that user carries out longer distance on the touch-screen of intelligent desktop computer moves operation, then may impact other users.
Again such as, the touch input unit in current most of electronic equipment is capacitance touch input block, when user carries out input operation in touch input unit, needs to utilize a part for the health such as pointed to contact with touch input unit.Compared with normal temperature, inside arctic weather, people easily shorten the distance of finger movement in touch input unit usually, reduce the finger exposed time as far as possible.But, reduce sliding distance and easily cause electronic equipment correctly not identify the input gesture of user.
Summary of the invention
The object of the embodiment of the present invention is to provide a kind of control method for electronic equipment and corresponding electronic equipment, to solve the problem.
An embodiment provides a kind of control method, be applied to electronic equipment.Described control method comprises: the operation parameter of detected electrons equipment; Determine whether using state parameter meets predetermined service condition; When the touch panel via electronic equipment detects that user carries out moving input on this touch panel, obtain the displacement of mobile input; When using state parameter meets predetermined service condition, according to the high screen resolution pre-set, displacement is mapped as high-resolution pixel displacement, the high screen wherein pre-set is greater than the actual screen resolution of electronic equipment; And generate steering order according to high-resolution pixel displacement.
Another embodiment of the present invention provides a kind of electronic equipment, comprising: detecting unit, and configuration carrys out the operation parameter of detected electrons equipment; Condition determining unit, configuration determines whether using state parameter meets predetermined service condition; Distance acquiring unit, configuration comes when the touch panel via electronic equipment detects that user carries out moving input on this touch panel, obtains the displacement of mobile input; Map unit, configuration works as using state parameter when meeting predetermined service condition, and according to the high screen resolution pre-set, displacement is mapped as high-resolution pixel displacement, the high screen wherein pre-set is greater than the actual screen resolution of electronic equipment; And instruction generation unit, configuration comes to generate steering order according to high-resolution pixel displacement.
By the scheme that the invention described above embodiment provides, do not need the Gesture Recognition Algorithm revised in current electronic equipment can meet the operational requirements of user under specific service condition yet, thus facilitate the input of user.
Accompanying drawing explanation
In order to be illustrated more clearly in the technical scheme of the embodiment of the present invention, be briefly described to the accompanying drawing used required in the description of embodiment below.Accompanying drawing in the following describes is only exemplary embodiment of the present invention.
Fig. 1 depicts the process flow diagram of control method according to an embodiment of the invention.
Fig. 2 shows the exemplary block diagram of the electronic equipment according to the embodiment of the present invention.
Fig. 3 shows the input carried out on the touch panel of electronic equipment according to user, generates the key diagram of the illustrative case of steering order.
Embodiment
Hereinafter, the preferred embodiments of the present invention are described in detail with reference to accompanying drawing.Note, in the present description and drawings, there is substantially the same step and represent with the identical Reference numeral of element, and will be omitted the repetition of explanation of these steps and element.
In following examples of the present invention, the concrete form of electronic equipment includes but not limited to intelligent desktop computer, personal computer, notebook, tablet computer, smart phone, personal digital assistant, game machine, multimedia player etc.The touch input unit of such as touch-screen, touch panel and so on is comprised according to the electronic equipment of the embodiment of the present invention.Fig. 1 depicts the process flow diagram of control method 100 according to an embodiment of the invention.Below, with reference to Fig. 1, control method is according to an embodiment of the invention described.Control method 100 can be used for above-mentioned electronic equipment.
As shown in Figure 1, in step S101, the operation parameter of detected electrons equipment.Then, in step s 102, determine whether using state parameter meets predetermined service condition.According to an example of the present invention, in the method 100, can determine currently whether there is multiple user simultaneously using electronic equipment.Particularly, the user number of current use electronic equipment can be detected in step S101.Then, in step s 102, determine whether the user number of current use electronic equipment reaches predetermined number.According to another example of the present invention, in the method 100, can determine that whether the temperature in current electronic device environment for use is lower.Particularly, in step S101, the environment temperature in detected electrons conditions for equipment use.Then, in step s 102, determine whether environment temperature is less than or equal to the first predetermined temperature.
In step s 103, when the touch panel via electronic equipment detects that user carries out moving input on this touch panel, obtain the displacement of mobile input.In step S104, when determining that using state parameter meets predetermined service condition in step s 102, according to the high screen resolution pre-set, the displacement obtained in step S103 is mapped as high-resolution pixel displacement, and the high screen wherein pre-set is greater than the actual screen resolution of electronic equipment.Such as, when determining whether environment temperature is less than or equal to the first predetermined temperature in step s 102, according to the high screen resolution pre-set, displacement can be mapped as high-resolution pixel displacement in step S104.Thus the displacement of the mobile input obtained in step s 103 can be mapped as the distance longer than the displacement estimated according to the actual pixels of electronic equipment in step S104.Then, in step S105, generate steering order according to high-resolution pixel displacement.
According to an example of the present invention, predetermined service condition comprises the first predetermined service condition and the second predetermined service condition.When using state parameter meets the first predetermined service condition and do not meet the second service condition, according to the pre-set first high screen resolution, displacement can be mapped as the first high-resolution pixel displacement in step S104.And when using state parameter meets the second service condition, according to the pre-set second high screen resolution, displacement can be mapped as the second high-resolution pixel displacement in step S104.Preferably, the second high screen resolution is greater than the first high screen resolution.
Such as the electronic equipment that intelligent desktop computer etc. allows multiple user to use simultaneously, first predetermined service condition can be use first of this electronic equipment the predetermined number simultaneously, and second predetermined service condition can be use second of this electronic equipment the predetermined number simultaneously, wherein the first predetermined number can be less than the second predetermined number, that is, when using the number of this electronic equipment to reach the second predetermined number simultaneously, with use the number of this electronic equipment to reach the first predetermined number and compared with the situation not reaching the second predetermined number simultaneously, user can feel more crowded, and each user operating space is on an electronic device less.When not reaching the second predetermined number when determining in step s 102 to use the number of this electronic equipment to reach the first predetermined number simultaneously, according to the pre-set first high screen resolution, displacement can be mapped as the first high-resolution pixel displacement in step S104.And when using the number of this electronic equipment not reach the second predetermined number simultaneously, according to the pre-set second high screen resolution, displacement can be mapped as the second high-resolution pixel displacement in step S104.In this example, second high screen resolution is greater than the first high screen resolution, thus the displacement of the mobile input obtained in step s 103 can be mapped as the distance longer than the displacement estimated according to the actual pixels of electronic equipment in step S104, and the distance mapped in step S104 when using the number of this electronic equipment to reach the second predetermined number is at the same time longer more simultaneously than the distance mapped in step S104 when using the number of this electronic equipment not reach the second predetermined number.
Again such as the electronic equipment that the users such as portable electric appts may use out of doors, first predetermined service condition can be the first predetermined temperature of the environment for use about this electronic equipment, and second predetermined service condition can be the second environment temperature of the environment for use about this electronic equipment, wherein the first predetermined temperature can higher than the second predetermined temperature, that is, when using the environment temperature of this electronic equipment lower than the second predetermined temperature, with use the temperature of this electronic equipment lower than the first predetermined temperature not lower than the second predetermined temperature situation compared with, user can feel more cold.When not reaching the second predetermined temperature when determining to use the environment temperature of this electronic equipment to reach the first predetermined temperature in step s 102, according to the pre-set first high screen resolution, displacement can be mapped as the first high-resolution pixel displacement in step S104.And when using the environment temperature of this electronic equipment not reach the second predetermined temperature, according to the pre-set second high screen resolution, displacement can be mapped as the second high-resolution pixel displacement in step S104.In this example, second high screen resolution is greater than the first high screen resolution, thus the displacement of the mobile input obtained in step s 103 can be mapped as the distance longer than the displacement estimated according to the actual pixels of electronic equipment in step S104, and the distance mapped in step S104 when using the environment temperature of this electronic equipment to reach the second predetermined temperature is not longer lower than the distance mapped in step S104 during the second predetermined temperature than using the environment temperature of this electronic equipment.
In addition, according to another example of the present invention, when the input of the touch on fixed position (that is, the touch input of non-moving input) that user such as clicks or double-clicks and so on touch panel being detected in step S103, can obtain and touch the touch location of input on touch panel.And when using state parameter meets predetermined service condition, do not carry out map operation, but generate steering order according to touch location.Thus decrease the computing that electronic equipment carries out carrying out needed for gesture identification.
In addition, according to another example of the present invention, when using state parameter does not meet predetermined service condition, according to the actual screen resolution of electronic equipment, displacement can be mapped as actual pixels displacement.And steering order can be generated according to actual pixels displacement.
By the control method of above-mentioned the present embodiment, do not need the Gesture Recognition Algorithm revised in current electronic equipment can meet the operational requirements of user under specific service condition yet, thus facilitate the input of user.
Below, the electronic equipment of embodiments of the invention is described with reference to Fig. 2.Fig. 2 is the exemplary block diagram of the electronic equipment 200 illustrated according to the embodiment of the present invention.As shown in Figure 2, the electronic equipment 200 of the present embodiment comprises detecting unit 210, condition determining unit 220, distance acquiring unit 230, map unit 240 and instruction generation unit 250.The modules of electronic equipment 200 performs each step/function of the display packing in above-mentioned Fig. 1, therefore, succinct in order to describe, and no longer specifically describes.
Such as, detecting unit 210 can the operation parameter of detected electrons equipment 200.Then, condition determining unit 220 can determine whether using state parameter meets predetermined service condition.According to an example of the present invention, electronic equipment 200 can determine currently whether there is multiple user simultaneously using electronic equipment.Particularly, detecting unit 210 can detect the user number of current use electronic equipment.Then, condition determining unit 220 can determine whether the user number of current use electronic equipment reaches predetermined number.According to another example of the present invention, electronic equipment 200 can determine that whether the temperature in current electronic device environment for use is lower.Particularly, detecting unit 210 can environment temperature in detected electrons conditions for equipment use.Then, condition determining unit 220 can determine whether environment temperature is less than or equal to the first predetermined temperature.
Distance acquiring unit 230, when the touch panel via electronic equipment detects that user carries out moving input on this touch panel, obtains the displacement of mobile input.Map unit 240 can work as condition determining unit 220 when determining that using state parameter meets predetermined service condition, according to the high screen resolution pre-set, the displacement that distance acquiring unit 230 obtains is mapped as high-resolution pixel displacement, and the high screen wherein pre-set is greater than the actual screen resolution of electronic equipment.Such as, when condition determining unit 220 determines whether environment temperature is less than or equal to the first predetermined temperature, displacement according to the high screen resolution pre-set, can be mapped as high-resolution pixel displacement by map unit 240.Thus the mobile displacement inputted that distance acquiring unit 230 can obtain by map unit 240 is mapped as the distance longer than the displacement estimated according to the actual pixels of electronic equipment.Then, instruction generation unit 250 can generate steering order according to high-resolution pixel displacement.
According to an example of the present invention, predetermined service condition comprises the first predetermined service condition and the second predetermined service condition.When using state parameter meets the first predetermined service condition and do not meet the second service condition, displacement according to the pre-set first high screen resolution, can be mapped as the first high-resolution pixel displacement by map unit 240.And when using state parameter meets the second service condition, displacement according to the pre-set second high screen resolution, can be mapped as the second high-resolution pixel displacement by map unit 240.Preferably, the second high screen resolution is greater than the first high screen resolution.
Such as the electronic equipment that intelligent desktop computer etc. allows multiple user to use simultaneously, first predetermined service condition can be use first of this electronic equipment the predetermined number simultaneously, and second predetermined service condition can be use second of this electronic equipment the predetermined number simultaneously, wherein the first predetermined number can be less than the second predetermined number, that is, when using the number of this electronic equipment to reach the second predetermined number simultaneously, with use the number of this electronic equipment to reach the first predetermined number and compared with the situation not reaching the second predetermined number simultaneously, user can feel more crowded, and each user operating space is on an electronic device less.When condition determining unit 220 is determined to use the number of this electronic equipment to reach the first predetermined number and is not reached the second predetermined number simultaneously, displacement according to the pre-set first high screen resolution, can be mapped as the first high-resolution pixel displacement by map unit 240.And when using the number of this electronic equipment not reach the second predetermined number simultaneously, displacement according to the pre-set second high screen resolution, can be mapped as the second high-resolution pixel displacement by map unit 240.In this example, second high screen resolution is greater than the first high screen resolution, thus the displacement of mobile input that distance acquiring unit 230 can obtain by map unit 240 is mapped as the distance longer than displacement estimate according to the actual pixels of electronic equipment, and the distance mapped by map unit 240 when using the number of this electronic equipment to reach the second predetermined number at the same time to compare the distance mapped by map unit 240 when simultaneously using the number of this electronic equipment not reach the second predetermined number longer.
Again such as the electronic equipment that the users such as portable electric appts may use out of doors, first predetermined service condition can be the first predetermined temperature of the environment for use about this electronic equipment, and second predetermined service condition can be the second environment temperature of the environment for use about this electronic equipment, wherein the first predetermined temperature can higher than the second predetermined temperature, that is, when using the environment temperature of this electronic equipment lower than the second predetermined temperature, with use the temperature of this electronic equipment lower than the first predetermined temperature not lower than the second predetermined temperature situation compared with, user can feel more cold.When condition determining unit 220 is determined to use the environment temperature of this electronic equipment to reach the first predetermined temperature and is not reached the second predetermined temperature, displacement according to the pre-set first high screen resolution, can be mapped as the first high-resolution pixel displacement by map unit 240.And when using the environment temperature of this electronic equipment not reach the second predetermined temperature, displacement according to the pre-set second high screen resolution, can be mapped as the second high-resolution pixel displacement by map unit 240.In this example, second high screen resolution is greater than the first high screen resolution, thus the displacement of mobile input that distance acquiring unit 230 can obtain by map unit 240 is mapped as the distance longer than displacement estimate according to the actual pixels of electronic equipment, and the distance mapped by map unit 240 when using the environment temperature of this electronic equipment to reach the second predetermined temperature is not longer lower than the distance mapped by map unit 240 during the second predetermined temperature than the environment temperature of this electronic equipment of use.
In addition, according to another example of the present invention, electronic equipment 200 also can comprise position acquisition unit.When the input of the touch on fixed position that user such as clicks or double-clicks and so on touch panel (that is, the touch input of non-moving input), position acquisition unit can obtain and touch the touch location of input on touch panel.And when using state parameter meets predetermined service condition, map unit 240 does not carry out map operation to the touch location that position acquiring unit obtains, instruction generation unit 250 directly can generate steering order according to touch location.Thus decrease the computing that electronic equipment carries out carrying out needed for gesture identification.
Fig. 3 shows the input carried out on the touch panel of electronic equipment according to user, generates the key diagram of the illustrative case of steering order.The example that electronic equipment 300 shown in Fig. 3 is the electronic equipment 200 shown in Fig. 2, for simplicity, is only briefly described the parts of electronic equipment 300 at this.
As shown in Figure 3, detecting unit 310 is connected with condition determining unit 320.Condition determining unit 320 can determine whether the using state parameter that detecting unit 310 detects meets predetermined service condition.Condition determining unit 320 is connected with map unit 340.When the touch panel 360 via electronic equipment 300 detects that user carries out moving input on this touch panel, the displacement of mobile input is obtained by the distance acquiring unit 330 of electronic equipment 300, and map unit 340 can according to the determination result of condition determining unit 320, and the displacement that acquiring unit 330 of adjusting the distance obtains mobile input carries out map operation.On the other hand, when the touch panel 360 via electronic equipment 300 detects that user carries out non-moving input on this touch panel, position acquisition unit 370 obtains and touches the touch location of input on touch panel.Instruction generation unit 350 is connected with position acquisition unit 370 with map unit 340, so that the position generation steering order obtained according to distance and/or the position acquisition unit 370 of map unit 340 mapping.
In addition, according to another example of the present invention, when using state parameter does not meet predetermined service condition, according to the actual screen resolution of electronic equipment, displacement can be mapped as actual pixels displacement.And steering order can be generated according to actual pixels displacement.
By the electronic equipment of above-mentioned the present embodiment, do not need the Gesture Recognition Algorithm revised in current electronic equipment can meet the operational requirements of user under specific service condition yet, thus facilitate the input of user.
Those of ordinary skill in the art can recognize, in conjunction with unit and the algorithm steps of each example of embodiment disclosed herein description, can realize with electronic hardware, computer software or the combination of the two, in order to the interchangeability of hardware and software is clearly described, generally describe composition and the step of each example in the above description according to function.These functions perform with hardware or software mode actually, depend on application-specific and the design constraint of technical scheme.Those skilled in the art can use distinct methods to realize described function to each specifically should being used for, but this realization should not thought and exceeds scope of the present invention.
It should be appreciated by those skilled in the art that and can be dependent on design requirement and other factors carries out various amendment, combination, incorporating aspects and replacement to the present invention, as long as they are in the scope of appended claims and equivalent thereof.
Claims (10)
1. a control method, is applied to electronic equipment, and described control method comprises:
Detect the operation parameter of described electronic equipment;
Determine whether described using state parameter meets predetermined service condition;
When the touch panel via described electronic equipment detects that user carries out moving input on this touch panel, obtain the displacement of described mobile input;
When described using state parameter meets described predetermined service condition, according to the high screen resolution pre-set, described displacement is mapped as high-resolution pixel displacement, and the wherein said high screen pre-set is greater than the actual screen resolution of described electronic equipment; And
Steering order is generated according to described high-resolution pixel displacement.
2. the method for claim 1, wherein
The operation parameter of the described electronic equipment of described detection comprises:
Detect the environment temperature in described electronic equipment environment for use;
Describedly determine whether described using state parameter meets predetermined service condition and comprise:
Determine whether described environment temperature is less than or equal to the first predetermined temperature;
Described when described using state parameter meets described predetermined service condition, according to the high screen resolution pre-set, described displacement is mapped as high-resolution pixel displacement and comprises:
When described environment temperature is less than or equal to described first predetermined temperature, according to the high screen resolution pre-set, described displacement is mapped as high-resolution pixel displacement.
3. control method as claimed in claim 1 or 2, also comprises:
When described using state parameter does not meet predetermined service condition, according to the actual screen resolution of described electronic equipment, described displacement is mapped as actual pixels displacement; And
Steering order is generated according to described actual pixels displacement.
4. control method as claimed in claim 1 or 2, wherein
Described predetermined service condition comprises the first predetermined service condition and the second predetermined service condition;
Described when described using state parameter meets described predetermined service condition, according to the high screen resolution pre-set, described displacement is mapped as high-resolution pixel displacement and comprises:
When described using state parameter meets described first predetermined service condition and do not meet described second service condition, according to the pre-set first high screen resolution, described displacement is mapped as the first high-resolution pixel displacement; And
When described using state parameter meets described second service condition, according to the pre-set second high screen resolution, described displacement is mapped as the second high-resolution pixel displacement,
Wherein said second high screen resolution is greater than described first high screen resolution.
5. control method as claimed in claim 1 or 2, also comprises:
When detecting that user carries out the touch input of non-moving input on described touch panel, obtain the described touch location inputted on touch panel that touches; And
When described using state parameter meets described predetermined service condition, generate steering order according to described touch location.
6. an electronic equipment, comprising:
Detecting unit, configuration detects the operation parameter of described electronic equipment;
Condition determining unit, configuration determines whether described using state parameter meets predetermined service condition;
Distance acquiring unit, configuration comes when the touch panel via described electronic equipment detects that user carries out moving input on this touch panel, obtains the displacement of described mobile input;
Map unit, configuration works as described using state parameter when meeting described predetermined service condition, according to the high screen resolution pre-set, described displacement is mapped as high-resolution pixel displacement, the wherein said high screen pre-set is greater than the actual screen resolution of described electronic equipment; And
Instruction generation unit, configuration comes to generate steering order according to described high-resolution pixel displacement.
7. electronic equipment as claimed in claim 6, wherein
Described detecting unit detects the environment temperature in described electronic equipment environment for use;
Described condition determining unit determines whether described environment temperature is less than or equal to the first predetermined temperature;
When described environment temperature is less than or equal to described first predetermined temperature, described displacement, according to the high screen resolution pre-set, is mapped as high-resolution pixel displacement by described distance acquiring unit.
8. electronic equipment as claimed in claims 6 or 7, wherein
Described map unit also configures works as described using state parameter when not meeting predetermined service condition, according to the actual screen resolution of described electronic equipment, described displacement is mapped as actual pixels displacement; And
Described instruction generation unit also configures and generates steering order according to described actual pixels displacement.
9. electronic equipment as claimed in claim 7, wherein
Described predetermined service condition comprises the first predetermined service condition and the second predetermined service condition;
When described using state parameter meets described first predetermined service condition and do not meet described second service condition, described displacement, according to the pre-set first high screen resolution, is mapped as the first high-resolution pixel displacement by described map unit; And
When described using state parameter meets described second service condition, described displacement, according to the pre-set second high screen resolution, is mapped as the second high-resolution pixel displacement by described map unit,
Wherein said second high screen resolution is greater than described first high screen resolution.
10. electronic equipment as claimed in claims 6 or 7, also comprises:
Position acquisition unit, configuration comes, when detecting that user carries out the touch input of non-moving input on described touch panel, to obtain the described touch location inputted on touch panel that touches,
Wherein said instruction generation unit also configures works as described using state parameter when meeting described predetermined service condition, generates steering order according to described touch location.
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