WO2011153900A1 - 滚动式输入装置及其灵敏度的设置方法、电子设备 - Google Patents

滚动式输入装置及其灵敏度的设置方法、电子设备 Download PDF

Info

Publication number
WO2011153900A1
WO2011153900A1 PCT/CN2011/074552 CN2011074552W WO2011153900A1 WO 2011153900 A1 WO2011153900 A1 WO 2011153900A1 CN 2011074552 W CN2011074552 W CN 2011074552W WO 2011153900 A1 WO2011153900 A1 WO 2011153900A1
Authority
WO
WIPO (PCT)
Prior art keywords
scrolling
rolling
screen
cursor
input device
Prior art date
Application number
PCT/CN2011/074552
Other languages
English (en)
French (fr)
Inventor
马勇
钟鸣
Original Assignee
华为终端有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 华为终端有限公司 filed Critical 华为终端有限公司
Priority to EP11791891.2A priority Critical patent/EP2581811B1/en
Publication of WO2011153900A1 publication Critical patent/WO2011153900A1/zh
Priority to US13/710,044 priority patent/US9152245B2/en

Links

Classifications

    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input 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
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/03Arrangements for converting the position or the displacement of a member into a coded form
    • G06F3/033Pointing devices displaced or positioned by the user, e.g. mice, trackballs, pens or joysticks; Accessories therefor
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input 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
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/03Arrangements for converting the position or the displacement of a member into a coded form
    • G06F3/033Pointing devices displaced or positioned by the user, e.g. mice, trackballs, pens or joysticks; Accessories therefor
    • G06F3/038Control and interface arrangements therefor, e.g. drivers or device-embedded control circuitry
    • G06F3/0383Signal control means within the pointing device
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input 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
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/03Arrangements for converting the position or the displacement of a member into a coded form
    • G06F3/033Pointing devices displaced or positioned by the user, e.g. mice, trackballs, pens or joysticks; Accessories therefor
    • G06F3/0354Pointing devices displaced or positioned by the user, e.g. mice, trackballs, pens or joysticks; Accessories therefor with detection of 2D relative movements between the device, or an operating part thereof, and a plane or surface, e.g. 2D mice, trackballs, pens or pucks
    • G06F3/03549Trackballs
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input 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
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/03Arrangements for converting the position or the displacement of a member into a coded form
    • G06F3/033Pointing devices displaced or positioned by the user, e.g. mice, trackballs, pens or joysticks; Accessories therefor
    • G06F3/0362Pointing devices displaced or positioned by the user, e.g. mice, trackballs, pens or joysticks; Accessories therefor with detection of 1D translations or rotations of an operating part of the device, e.g. scroll wheels, sliders, knobs, rollers or belts

Definitions

  • Rolling input device and its sensitivity setting method electronic device
  • the application is submitted to the Chinese Patent Office on June 11, 2010, and the application number is CN 201010198129.
  • the invention name is "rolling input device and its sensitivity setting method, The priority of the Chinese Patent Application for Electronic Devices, the entire contents of which is incorporated herein by reference.
  • TECHNICAL FIELD The present invention relates to the field of electronic technologies, and in particular, to a method for setting the sensitivity of a scroll input device and a scroll input device and an electronic device using the method for setting the sensitivity of the scroll input device.
  • rolling devices such as trackballs and rollers have been widely used in rolling input devices such as a wheel mouse and a game console steering wheel.
  • many mobile phones, computers and other terminal products use scrolling input devices. To control the position of the cursor on the screen.
  • the trackball is more flexible in the direction, and the surface area of the casing is small.
  • the wheel of the wheel mouse is more convenient for the user to change the direction of the cursor.
  • the middle (inside) of the trackball 11 and the upper, lower, left and right directions are respectively provided with a Hall device; when the user rolls the trackball 11, the Hall device detects the rolling direction and the rolling distance of the trackball 11 ( Or the angle), the corresponding interrupt is generated, the software 12 in the scrolling input device can recognize the number of interrupts and the interrupt direction. When the number of interrupts in a certain direction reaches the threshold already set in the software 12, the software 12 responds with an interrupt. Sending a mobile event (or: button event) signal, and reporting the mobile event signal to the processor 9 in the electronic device. After detecting the reported mobile event signal, the processor 9 controls the cursor 80 on the screen 8. Move once to complete a move event.
  • the sensitivity experienced by the user is usually how much distance (or angle) the user rolls.
  • the trackball 11 triggers a movement event to send a movement event signal to the processor 9, and the processor 9 controls the cursor 80 to complete a movement event.
  • the processor 9 controls the cursor 80 to complete a movement event.
  • the scrolling mode is adjusted by setting the threshold value of the interrupt responded to by the software 12 shown in FIG. 1 in the scrolling input device.
  • the sensitivity of the input device in order to meet different user requirements, the scroll input device provided with the trackball 11 in the prior art provides a simple sensitivity setting function, the user manually sets the sensitivity value, and then the software 12 is set according to the user. The value sets the size of the threshold.
  • sensitivity is a subjective indicator and cannot be quantified well, users often cannot know exactly what is appropriate for their sensitivity. They can only continually modify their attempts in person to find the most appropriate sensitivity. This process requires long-term use by users and multiple attempts.
  • the parameters that reflect sensitivity in the trackball between different brands and types of electronic devices are mostly inconsistent. Users must use a new brand and type of electronic equipment for a long time. And after trying many times, you can find the more suitable parameters, so setting the sensitivity is more troublesome. Summary of the invention
  • the embodiment of the invention provides a method for setting the sensitivity of the scrolling input device and a scrolling input device and an electronic device using the method for setting the sensitivity of the scrolling input device, which solves the comparison of the setting methods of the sensitivity of the existing scrolling input device. Troublesome technical problems.
  • a method for setting the sensitivity of a scrolling input device includes the following steps: detecting a rolling direction and a scrolling distance of the rolling device during rolling of the rolling device, and according to a rolling direction and a rolling distance of the rolling device Generate corresponding interrupts;
  • the size of the threshold is set according to the detected parameter.
  • the scroll input device includes: a rolling device, an interrupt generating device, a response module, a detecting module, and a setting Fixed module, where:
  • the interrupt generating device is configured to detect a rolling direction and a rolling distance of the rolling device during the rolling of the rolling device, and generate a corresponding interrupt according to a rolling direction and a rolling distance of the rolling device;
  • the response module is configured to identify the number and direction of the interrupts. When the number of interrupts in the same direction reaches a threshold, in response to an interrupt, a motion event signal that controls the movement of the cursor on the screen is issued;
  • the detecting module is configured to detect a parameter that reflects a user's operation speed and amplitude of scrolling the rolling device;
  • the setting module is configured to set the threshold value according to the parameter detected by the detecting module size.
  • the electronic device provided by the embodiment of the present invention includes a cursor control module, a scrolling input device, a detection module, and a setting module.
  • the scrolling input device includes a rolling device, an interrupt generating device, and a response module, wherein: the interrupt is generated. a device for detecting a rolling direction and a rolling distance of the rolling device during the rolling of the rolling device, and generating a corresponding interruption according to a rolling direction and a rolling distance of the rolling device;
  • the response module is configured to identify the number and direction of the interrupts. When the number of interrupts in the same direction reaches a threshold, in response to an interrupt, a motion event signal that controls the movement of the cursor on the screen is issued;
  • the cursor control module is configured to identify each of the movement event signals, and control the cursor to complete a movement event corresponding to each of the movement event signals on the screen;
  • the detecting module is configured to detect a parameter that reflects a user's operation speed and amplitude of scrolling the rolling device; the setting module is configured to set the threshold value according to the parameter detected by the detecting module size.
  • the parameter reflecting the operating speed and amplitude of the user rolling scrolling device may be detected by the detecting module, thereby obtaining and determining the operating habit of the user using the rolling device on the scrolling scrolling input device.
  • the threshold value can be set according to the detected parameters; since the size of the threshold value is inversely proportional to the number of times the response module responds to the interruption and the number of movement event signals that the control cursor moves on the screen, The number of moving event signals is consistent with the number of moving events. At the same time, the number of moving events is directly related to the speed at which the cursor moves on the screen and the number of movements. Therefore, the more the number of interruptions in the response, the more the user feels.
  • the sensitivity of the scrolling input device can be set by setting the threshold value;
  • the embodiment of the present invention does not require the user to continually modify and try to reflect the sensitivity parameter in the long-term use, the degree of automation is higher, even if the user has no experience in setting the sensitivity of the scrolling input device, or using The electronic device is a new brand and type.
  • the method and the scroll input device provided by the embodiments of the present invention can also determine the user's operation according to the speed and amplitude of the user using the scrolling input device. Habits and characteristics, and then automatically set the sensitivity suitable for the user, so that the technical method of setting the sensitivity of the conventional scrolling input device is troublesome.
  • FIG. 1 is a schematic diagram of a cursor on a scroll input device of a user scrolling operation device in the prior art, and controlling a cursor on the screen by a trackball on the scroll input device;
  • FIG. 2 is a schematic diagram showing a connection relationship of internal components of an embodiment of a scroll type input device according to an embodiment of the present invention
  • FIG. 3 is a schematic diagram showing a connection relationship of internal components of still another embodiment of a scroll type input device according to an embodiment of the present invention.
  • FIG. 4 is a schematic diagram of a connection relationship of internal components of an electronic device according to an embodiment of the present invention
  • FIG. 5 is a schematic flowchart of an embodiment of a method for setting a sensitivity of a scrolling input device according to an embodiment of the present invention
  • FIG. 6 is a schematic flow chart of still another embodiment of a method for setting the sensitivity of a scrolling input device according to an embodiment of the present invention.
  • FIG. 7 is a schematic diagram of a flow of still another embodiment of a method for setting a sensitivity of a scrolling input device according to an embodiment of the present invention.
  • step S4 is a schematic diagram of a flow of an implementation manner of step S4 in a method for setting the sensitivity of a scrolling input device according to an embodiment of the present invention
  • FIG. 9 is a schematic diagram showing the flow of still another embodiment of step S4 in the method for setting the sensitivity of the scrolling input device according to the embodiment of the present invention.
  • FIG. 10 is a schematic diagram showing a flow of still another embodiment of step S4 in the method for setting the sensitivity of the scrolling input device according to the embodiment of the present invention.
  • FIG. 11 is a schematic diagram of a flow of still another embodiment of step S4 in the method for setting the sensitivity of the scrolling input device according to the embodiment of the present invention.
  • the embodiment of the invention provides a method for setting the sensitivity of the scrolling input device with convenient use and high degree of automation, and a scrolling input device and an electronic device applying the setting method of the sensitivity of the scrolling input device.
  • the method for setting the sensitivity of the scrolling input device includes the following steps:
  • parameters reflecting the operation speed and amplitude of the user rolling the scroll device 1 may be detected first, thereby obtaining and determining the operation habit of the user using the scroll device 1 on the scrolling scroll input device.
  • Characteristics, and then the threshold value can be set according to the detected parameters;
  • the size of the threshold value is inversely proportional to the number of times the response module 3 in the scroll input device responds to the interruption, and the number of movement event signals that the control cursor 80 moves on the screen 8, the number of movement event signals and the movement event The number is consistent.
  • the number of moving events is directly related to the speed and number of movements of the cursor 80 on the screen 8. Therefore, the more the number of interruptions of the response, the more sensitive the user feels that the scrolling input device is. Therefore, the sensitivity of the scrolling input device can be set by setting a threshold value;
  • the embodiment of the present invention does not require the user to continually modify and try to reflect the sensitivity parameter in the long-term use, the degree of automation is higher, even if the user has no experience in setting the sensitivity of the scrolling input device, or using
  • the electronic device is a new brand and type.
  • the scrolling input device provided by the embodiment of the present invention can also automatically set the user's operating habits and characteristics according to the speed and amplitude of the user using the scrolling input device. Sensitivity, so it solves the technical problem that the setting method of the sensitivity of the conventional scroll type input device is troublesome.
  • the parameters reflecting the operation speed and amplitude of the user rolling scrolling device 1 in this embodiment include a combination of any one or more of the following parameters:
  • Rolling the rolling device once, the number of interrupts generated by the interrupt generating device 2 in the scrolling input device; scrolling the rolling device 1 the distance that the cursor 80 moves on the screen 8;
  • the method further includes the following steps:
  • the sou prompts the user to perform a specified scrolling operation on the scrolling device 1 to detect a parameter reflecting the operating speed and amplitude of the user's scrolling scrolling device 1, and to set the threshold value based on the detected parameter.
  • the scrolling device 1 of the scrolling input device can be specifically guided according to requirements by playing a prompt tone, a pop-up prompt dialog box, displaying a prompt text, and playing a demo animation. It is beneficial to accurately, quickly and effectively detect the parameters required to set the sensitivity of the scrolling input device.
  • the method for prompting the user to perform a specified scrolling operation on the rolling device in the embodiment includes a combination of any one or more of the following steps:
  • S01 K prompts the user to scroll the rolling device 1, so that the cursor 80 completes the movement on the screen 8 by 1/3 ⁇ 2/3 screens 8 distance operation;
  • the user scrolls the scrolling device 1 on the scrolling input device, and then completes the control cursor 80 to complete the moving event scene, which can be divided into three major scenarios:
  • the medium-distance moving scene can also be called a general operating scene.
  • the middle distance refers to the distance that most users usually move the screen 80 on the screen 8 after the cursor 80 completes a moving event through the scrolling input device. .
  • the cursor 80 moves on the screen 8 for the entire screen.
  • the screen 8 distance is 1/3 ⁇ 2/3, so the distance moving scene in this embodiment is defined as:
  • the cursor 80 completes the operation of moving the distance of 1/3 ⁇ 2/3 screens 8 , of course, how much the specific value of the medium distance moving scene is defined It can be set according to the user type and user needs. For example: It can also be defined as the operation of the cursor 80 to complete the movement of 1/4 ⁇ 4/5 screens 8 distance.
  • Precise positioning of the scene usually refers to the operation of positioning the cursor 80 at a certain point on the screen 8. Since the cursor 80 is positioned to a specific point on the screen 8, it is usually impossible to accurately move in place in one step, requiring a small step. A small step is moved in place. Therefore, the precise positioning scene in this embodiment is defined as: causing the cursor 80 to complete the operation of moving less than 1/3 of the screen 8 distance on the screen 8. Of course, it is also possible to accurately locate the specific numerical value of the scene.
  • the setting is made according to the user type and the user's needs, for example: It can also be defined as an operation in which the cursor 80 completes moving less than 1/4 of the screen 8 distance.
  • Long-distance moving scene Long-distance movement refers to a scene in which the cursor 80 moves on the screen 8 after the cursor 80 completes a movement event, and the distance is greater than the medium distance. Therefore, the long-distance moving scene in this embodiment is defined as: 80 completes the operation of moving more than 2/3 screens 8 on the screen 8.
  • the specific value of the long-distance moving scene is defined, and can also be set according to the user type and the user's needs, for example: It can also be defined as the cursor 80 completes the movement. An operation greater than 1 screen 8 distance.
  • the user can basically know and determine the operating habits and characteristics of the scrolling device 1 on the scrolling input device.
  • the scrolling input device is often used in a medium-range moving scene. Therefore, in this embodiment, the sensitivity of the scrolling input device can be adjusted only in a scenario that the user needs, and the scene required by the user can be the above three.
  • One of the scenes may also be two or three of them, for example, for a part of a drawing worker, a picture processing person, etc., who often use the scrolling input device in a precise positioning scene, only in a precise positioning scene.
  • the user may only be prompted to scroll the scrolling device 1 to move the cursor 80 by less than 1/3 of the screen 8. The distance can be operated.
  • the threshold value of the scrolling input device can be set before the user normally uses the scrolling input device, and the user can normally use the scrolling input device. There is no need to set a threshold.
  • the user before the user normally uses the scrolling input device, the user may not be prompted to perform a specified scrolling operation on the rolling device, and the threshold value is set again during the normal use of the scrolling input device by the user.
  • the method for setting the threshold value according to the detected parameter in the embodiment may further include the following steps:
  • B is the number of interrupts generated by the device 2 for each rolling of the device 1 interrupt generated by the user;
  • X is the number of movement events required by the cursor 80 to move the distance of the entire screen 8 on the screen 8.
  • the preferred use effect of the user using the scrolling input device is as follows: 1 or 2 times of scrolling device 1 cursor moves to a desired position, that is, 1 to 2 movement events are completed, and the cursor 80 on the screen 8 can be moved to the required position.
  • the position of the scrolling device 1 is moved to the desired position by scrolling 2 times, that is, completing 2 movement events can move the cursor 80 on the screen 8 to the desired position.
  • the ratio of the moving distance of the cursor 80 to the size of the screen 8 is preferably 2/3, assuming that B is scrolled once for the user.
  • the rolling device 1 interrupt generates the number of interruptions generated by the device 2
  • X is the number of movement events required for the cursor 80 to move the distance of the entire screen 8 on the screen 8, and the user rolls the rolling device 1 to interrupt the generation of the device 2
  • the number of interruptions is 2B for the completion of 2 movement events, and the cursor 80 on screen 8 is moved by 2/3 screens 8.
  • the number of required movement events is X*2/3 ;
  • the number of movement events that are completed by the cursor 80 on the screen 8 by scrolling the device 1 scrolling the device once 1 interrupt generating the number of interrupts generated by the device 2 ⁇ threshold,
  • Threshold scrolling the device once 1 interrupt generating the number of interrupts generated by the device 2 ⁇ scrolling once to roll the device 1 cursor 80 the number of moving events completed on screen 8,
  • the scrolling device 1 can move the cursor 80 on the screen 8 to the desired position.
  • a method of determining the size of a threshold includes the following steps: 5 ⁇ 1. 2
  • the ratio of the ratio of the distance between the cursor and the user's previous scrolling device 1 is 0. 8 ⁇ 1. 2 between;
  • step S201, step S202, and step S203 If the determination result in step S201, step S202, and step S203 is yes, the interrupt responded by the response module 3 is set to:
  • B is the number of interrupts generated by the device 2 for each rolling of the device 1 interrupt generated by the user;
  • X is the number of movement events required by the cursor 80 to move the distance of the entire screen 8 on the screen 8;
  • step S201, step S202, and step S203 If the determination result in step S201, step S202, and step S203 is NO, the threshold value of the scrolling input device is set to be not more than 2.
  • the ratio of the distance that the user scrolls once the scrolling device 1 cursor 80 moves on the screen 8 and the average distance of the user's previous scrolling device 1 cursor 80 moving on the screen 8 is 0.
  • the ratio of the time between the time when the user scrolls the device 1 and the average time of the user to scroll the device 1 is 0. 8 ⁇ 1.
  • the interval between two scrolling operations is not more than 0.5 seconds, indicating that the user scrolling action is very fast, so that it is necessary to speed up the response speed of the response module 3 at the beginning, and then gradually reduce the response.
  • the response speed of the module 3 avoids the problem that the user has over-rolled during the scrolling of the rolling device 1; on the contrary, it indicates that the user operates the scrolling input device very unskilled and the operation speed is very slow, so the number of operations of the user needs to be reduced. , to improve the response speed, set the value of the threshold to be smaller.
  • the specific value used to determine whether the user operation is more skilled in the embodiment may be appropriately increased or decreased.
  • the threshold value may be set to be different according to different user types.
  • the threshold is set according to the detected parameters.
  • the size of the method including the following steps:
  • the threshold value of the scroll input device is decremented by 1 until the minimum threshold is reached every time the movement event is completed.
  • the interval between two scrolling operations is greater than 0.5 seconds, indicating that the user is proficient in operation, but the motion is slow, in order to avoid fatigue caused by long-term use of the user, each completion In one movement event, the threshold of the scrolling input device is decremented by one until the minimum threshold is reached, so that the response module 3 responds faster and faster, thereby producing an acceleration effect.
  • the size method includes the following steps:
  • S22K judges whether the distance that the cursor 80 moves on the screen 8 every time the scrolling device 1 is scrolled is greater than the distance that the user scrolls the scrolling device 1 cursor 80 on the screen 8;
  • step S221 and step S222 If the determination result of step S221 and step S222 is YES, the threshold value of the response module 3 in the scroll input device is set to N-1, and the user does not respond at least when scrolling the device 1 once.
  • B is the number of interrupts generated by the device 2 for each rolling of the device 1 interrupt generated by the user;
  • X is the number of movement events required by the cursor 80 to move the distance of the entire screen 8 on the screen 8.
  • This situation is mainly for a long-distance moving scene.
  • the scrolling device 1 scrolls the cursor 80 on the screen 8 every time, the distance that the cursor 0 is moved on the screen 8 by the scrolling device 1 is scrolled once, and the next time
  • the interval between the scrolling operation and the previous scrolling operation is smaller than the interval between the previous scrolling operation and the previous scrolling operation, indicating that the user operation is more proficient, and the scrolling motion is getting faster and faster.
  • there are many methods for reducing the response speed of the response module 3 in this embodiment and it is possible to reduce the response by a few interrupts or increase the threshold.
  • the response module 3 does not respond to the last 1 to 2 interrupts generated by the device 2 during each scrolling.
  • the scroll input device provided by the embodiment of the present invention includes: a rolling device 1, an interrupt generating device 2, a response module 3, a detecting module 4, and a setting module 5, wherein:
  • the interrupt generating device 2 is configured to detect the scrolling direction and the scrolling distance of the rolling device 1 during the rolling of the rolling device 1, and generate corresponding interrupts according to the rolling direction and the rolling distance of the rolling device 1;
  • the response module 3 is configured to identify the number and direction of the interrupts. When the number of interrupts in the same direction reaches the threshold, in response to an interrupt, a motion event signal that controls the movement of the cursor 80 on the screen 8 is issued;
  • the detecting module 4 is configured to detect a parameter reflecting the operating speed and amplitude of the user rolling the rolling device 1; and the setting module 5 is configured to set the size of the threshold according to the parameter detected by the detecting module 4.
  • the parameter reflecting the operation speed and amplitude of the user rolling the rolling device 1 can be detected by the detecting module 4, thereby obtaining and determining that the user uses the rolling device on the scrolling scroll input device.
  • the setting module 5 can set the threshold value according to the detected parameters;
  • the number of movement event signals is consistent with the number of movement events, and The number of moving events is directly related to the speed at which the cursor 80 moves on the screen 8, and the number of movements. Therefore, the more the number of interruptions of the response, the more sensitive the user feels that the scrolling input device is sensitive, so the gate can be set.
  • the embodiment of the present invention does not require the user to continually modify and try to reflect the sensitivity parameter in the long-term use, the degree of automation is higher, even if the user has no experience in setting the sensitivity of the scrolling input device, or using
  • the electronic device is a new brand and type.
  • the scrolling input device provided by the embodiment of the present invention can also automatically set the user's operating habits and characteristics according to the speed and amplitude of the user using the scrolling input device. Sensitivity, so it solves the technical problem that the setting method of the sensitivity of the conventional scroll type input device is troublesome.
  • the number of interrupts generated by the device 2 is generated by the interrupt in the scroll input device 1 each time the scroll device 1 is scrolled; the distance the cursor 80 moves on the screen 8 every time the device 1 is scrolled;
  • the time between two scrolling operations The number of movement events required for the cursor 80 to move the distance of the entire screen 8 on the screen 8, equivalent to the button pressing the direction key required for the cursor 80 controlled by the direction key of the ordinary keyboard to move the entire screen 8 on the screen 8 frequency.
  • the parameter that the user can use the scrolling input device to operate the speed and amplitude may also be other parameters than the parameters disclosed above.
  • the response module 3, the detection module 4, and the setting module 5 are preferably software modules.
  • the functions of the response module 3, the detection module 4, and the setting module 5 are implemented by software, it is not only low in cost but also easy to change settings.
  • the response module 3, the detection module 4, and/or the setting module 5 can also be hardware modules.
  • the scroll input device of the embodiment further includes a prompting module 6, wherein: the prompting module 6 is configured to prompt the user to perform a specified scrolling operation on the rolling device 1 for detecting
  • the module 4 detects a parameter reflecting the operation speed and amplitude of the user scrolling scrolling device 1, and the setting module 5 sets the magnitude of the threshold value based on the detected parameter.
  • the prompting module 6 can guide the user to scroll the scrolling device 1 of the scrolling input device according to requirements by playing a prompt tone, popping up a prompt dialog box, displaying a prompt text, playing a demo animation, etc., thereby facilitating accurate, rapid, and effective It detects the parameters required to set the sensitivity of the scrolling input device.
  • the rolling device 1 is a trackball or a mouse wheel.
  • the trackball or the mouse wheel are widely used rolling devices 1.
  • the technical solutions provided by the embodiments of the present invention are suitable for setting their respective sensitivities and improving their respective intelligence levels. Of course, the technical solution provided by the embodiment of the present invention can also be applied to other rolling devices than the trackball or the mouse wheel.
  • the scrolling input device can be an electronic device such as a game console handle, a wheel mouse, or the like.
  • the interrupt generating device 2 in this embodiment may be a Hall device.
  • a Hall device is a solid state electronic device that utilizes the Hall effect to detect changes in the magnetic field and convert the change in the magnetic field into an electrical signal output. Hall devices can be used to monitor and measure changes in the operating parameters of various components. For example, the position, the displacement, the angle, the angular velocity, the rotational speed, and the like, and having the characteristics of stable performance and technical maturity, are suitably applied to the embodiments of the present invention.
  • the interrupt generating device 2 in this embodiment may also be a device other than a sensor or other Hall device that can recognize the direction and distance, and can generate a corresponding interrupt according to the direction and the distance.
  • the electronic device provided by the embodiment of the present invention includes a cursor control module 7, a scrolling input device, a detecting module 4, and a setting module 5, and the scrolling input device includes a rolling device 1, an interrupt generating device 2, and Response module 3, where:
  • the interrupt generating device 2 is configured to detect the rolling direction and the rolling distance of the rolling device 1 during the rolling of the rolling device 1, and generate corresponding interrupts according to the rolling direction and the rolling distance of the rolling device 1;
  • the response module 3 is configured to identify the number and direction of the interrupts. When the number of interrupts in the same direction reaches the threshold, in response to an interrupt, a motion event signal that controls the movement of the cursor 80 on the screen 8 is issued;
  • the cursor control module 7 is configured to identify each movement event signal, and control the cursor 80 to complete a movement event corresponding to each movement event signal on the screen 8;
  • the detecting module 4 is configured to detect a parameter reflecting the operating speed and amplitude of the user rolling the rolling device 1; and the setting module 5 is configured to set the size of the threshold according to the parameter detected by the detecting module 4.
  • the operation speed of the user rolling scroll device 1 can be detected by the detecting module 4 first. And amplitude parameters, thereby obtaining and determining the operating habits and characteristics of the rolling device 1 on the scrolling input device, and then setting the threshold of the response module 3 according to the detected parameters by the setting module 5;
  • the size of the threshold value is inversely proportional to the number of times the response module 3 responds to the interruption, and the number of movement event signals that the control cursor 80 moves on the screen 8, the number of movement event signals is consistent with the number of movement events.
  • the number of moving events is directly related to the speed and number of movements of the cursor 80 on the screen 8. Therefore, the more the number of interruptions of the response, the more sensitive the user feels that the scrolling input device is sensitive, so The method of threshold value sets the sensitivity of the scrolling input device;
  • the embodiment of the present invention does not require the user to continually modify and try to reflect the sensitivity parameter in the long-term use, the degree of automation is higher, even if the user has no experience in setting the sensitivity of the scrolling input device, or using
  • the electronic device is a new brand and type.
  • the scrolling input device provided by the embodiment of the present invention can also automatically set the user's operating habits and characteristics according to the speed and amplitude of the user using the scrolling input device. Sensitivity, so it solves the technical problem that the setting method of the sensitivity of the conventional scroll type input device is troublesome.
  • the electronic device of the embodiment may further include a prompting module 6, wherein: the prompting module 6 is configured to prompt the user to perform a specified scrolling operation on the rolling device 1 so that the detecting module 4 detects A parameter reflecting the operation speed and amplitude of the user rolling the rolling device 1, and the setting module 5 setting the size of the threshold based on the detected parameter.
  • the prompting module 6 is configured to prompt the user to perform a specified scrolling operation on the rolling device 1 so that the detecting module 4 detects A parameter reflecting the operation speed and amplitude of the user rolling the rolling device 1, and the setting module 5 setting the size of the threshold based on the detected parameter.
  • the prompting module 6 can guide the user to scroll the scrolling device 1 of the scrolling input device according to requirements by playing a prompt tone, popping up a prompt dialog box, displaying a prompt text, playing a demo animation, etc., thereby facilitating accurate, rapid, and effective It detects the parameters required to set the sensitivity of the scrolling input device.
  • the cursor control module 7 may be a main chip of an electronic device, or may have an electronic device. Other controllers for data processing capabilities.

Landscapes

  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Theoretical Computer Science (AREA)
  • Human Computer Interaction (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Position Input By Displaying (AREA)
  • User Interface Of Digital Computer (AREA)

Description

滚动式输入装置及其灵敏度的设置方法、 电子设备 本申请要求于 2010年 06月 11日提交中国专利局、 申请号为 CN 201010198129. X 发明名称为 "滚动式输入装置及其灵敏度的设置方法、 电子设备" 的中国专利申请的优先权, 其全部内容通过引用结合在本申请中。 技术领域 本发明涉及电子技术领域, 具体涉及一种滚动式输入装置灵敏度的设置方法以及应 用该滚动式输入装置灵敏度的设置方法的滚动式输入装置、 电子设备。 背景技术 随着电子技术的不断发展, 轨迹球、 滚轮等滚动器件已经广泛应用于滚轮鼠标、 游 戏机方向盘等滚动式输入装置中, 目前, 不少手机、 电脑等终端产品都使用滚动式输入 装置来控制屏幕上光标的位置。
与五向导航键相比, 轨迹球在方向上更为灵活, 另外占用机壳的表面积很小, 与双 向导航键相比, 滚轮鼠标的滚轮更方便用户改变光标的方向。
如图 1所示, 下面以滚动器件中比较流行的轨迹球 11为例, 说明现有技术中设置 有滚动式输入装置的电子设备内所设置的轨迹球 11的基本工作原理:
轨迹球 11的中部 (内) 以及上、 下、 左、 右四个方向均分别设置有一个霍尔器件; 用户滚动轨迹球 11时, 霍尔器件会检测到轨迹球 11滚动方向和滚动距离 (或角度), 产生相应的中断, 滚动式输入装置内的软件 12可以识别中断数目及中断方向, 当某一 方向的中断数达到软件 12内已经设定好的门限后, 软件 12会响应一次中断, 发出一次 移动事件 (或称: 按键事件) 信号, 并将移动事件信号上报给电子设备内的处理器 9, 处理器 9探测到一次上报的移动事件信号后便会控制屏幕 8上的光标 80移动一次, 从 而完成一次移动事件。
用户感受到的灵敏度通常是用户滚动多少距离(或角度), 轨迹球 11触发一个移动 事件即发送一个移动事件信号给处理器 9,处理器 9控制光标 80完成一次移动事件。在 硬件设置完成后, 轨迹球 11滚动的距离与中断数目的关系就已经确定, 所以现有技术 中通常通过设定相应的门限, 就可以改变轨迹球 11的灵敏度。
因为用户的手掌大小、 运动习惯不同, 对于灵敏度要求也不同。 现有技术中通过设 置滚动式输入装置内如图 1所示的软件 12所响应的中断的门限值的方式来调节滚动式 输入装置的灵敏度, 为了满足不同用户要求, 现有技术中设置有轨迹球 11 的滚动式输 入装置提供了简单的灵敏度设置功能, 用户手工设定灵敏度的数值, 然后软件 12会根 据用户设定的数值设定门限值的大小。 用户灵敏度的值设定的越高, 软件 12设定门限 值时, 会将门限值设定越低, 这样用户滚动一定的距离(或角度)后, 屏幕 8上光标 80 移动的距离就越大, 例如: 轨迹球 11滚动一圈生成 6个中断, 如门限值设为 3, 则用户 滚动一圈后, 软件 12就会认为用户按下 2 ( BP: 6/3 ) 次方向键, 进而对处理器 9上报 2次移动事件即触发 2个移动事件信号; 如门限值设为 1, 则用户滚动一圈后, 软件 12 就会认为用户按下 6 (即: 6/1 ) 次方向键, 进而对处理器 9上报 6次移动事件。
本发明人在实现本发明的过程中发现, 现有技术至少存在以下问题:
由于灵敏度是一个主观的指标, 无法较好的量化, 导致用户往往不能精确的知道适 合自己的灵敏度, 只能在亲自使用中不断修改尝试, 才能找到最为合适的灵敏度。 这个 过程需要用户长期使用, 多次尝试, 而不同品牌、 类型的电子设备之间轨迹球内反映灵 敏度的参数大多都不一致, 用户使用新的品牌、 类型的电子设备后必须使用很长一段时 间, 并且尝试多次后才能找到比较合适的参数, 所以设定灵敏度比较麻烦。 发明内容
本发明实施例提供了一种滚动式输入装置灵敏度的设置方法以及应用该滚动式输 入装置灵敏度的设置方法的滚动式输入装置、 电子设备, 解决了现有的滚动式输入设备 灵敏度的设置方法比较麻烦的技术问题。
为达到上述目的, 本发明的实施例采用如下技术方案:
本发明实施例所提供的滚动式输入装置灵敏度的设置方法, 包括以下步骤: 在滚动器件滚动过程中检测所述滚动器件的滚动方向和滚动距离, 并根据所述滚动 器件的滚动方向和滚动距离产生相应的中断;
识别所述中断的数目与方向, 当同一方向的中断的数目达到门限值时, 响应一次中 断, 发出一次控制光标在屏幕上移动的移动事件信号;
检测反映用户滚动所述滚动器件的操作速度和幅度的参数;
根据检测到的所述参数设定所述门限值的大小。
与现有技术相比, 本发明实施例所提供上述技术方案能产生如下技术效果: 本发明实施例所提供的滚动式输入装置, 包括: 滚动器件、 中断产生器件、 响应模 块、 检测模块以及设定模块, 其中: 所述中断产生器件,用于在所述滚动器件滚动过程中检测所述滚动器件的滚动方向 和滚动距离, 并根据所述滚动器件的滚动方向和滚动距离产生相应的中断;
所述响应模块, 用于识别所述中断的数目与方向, 当同一方向的中断的数目达到门 限值时, 响应一次中断, 发出一次控制光标在屏幕上移动的移动事件信号;
所述检测模块, 用于检测反映用户滚动所述滚动器件的操作速度和幅度的参数; 所述设定模块, 用于根据所述检测模块检测到的所述参数设定所述门限值的大小。 本发明实施例所提供的电子设备, 包括光标控制模块、 滚动式输入装置、 检测模块 以及设定模块,所述滚动式输入装置包括滚动器件、中断产生器件以及响应模块,其中: 所述中断产生器件,用于在所述滚动器件滚动过程中检测所述滚动器件的滚动方向 和滚动距离, 并根据所述滚动器件的滚动方向和滚动距离产生相应的中断;
所述响应模块, 用于识别所述中断的数目与方向, 当同一方向的中断的数目达到门 限值时, 响应一次中断, 发出一次控制光标在屏幕上移动的移动事件信号;
所述光标控制模块, 用于识别每个所述移动事件信号, 并控制所述光标在屏幕上完 成与每个所述移动事件信号相应的移动事件;
所述检测模块, 用于检测反映用户滚动所述滚动器件的操作速度和幅度的参数; 所述设定模块, 用于根据所述检测模块检测到的所述参数设定所述门限值的大小。 与现有技术相比,本发明实施例所提供上述两个技术方案中的任一技术方案能产生 如下技术效果:
本发明实施例中设置滚动式输入装置灵敏度时, 可以先通过检测模块检测反映用户 滚动滚动器件的操作速度和幅度的参数, 从而获得并确定出用户使用滚动滚动式输入装 置上滚动器件的操作习惯和特点, 然后可以根据检测到的参数设定门限值的大小; 由于 门限值的大小与响应模块响应中断的次数、发出控制光标在屏幕上移动的移动事件信号 的数目是成反比的, 移动事件信号的数目与移动事件的数目是一致的, 同时, 移动事件 的数目的多少与光标在屏幕上移动的速度、 移动次数直接相关, 故而响应的中断的次数 越多, 用户会感觉到该滚动式输入装置越灵敏, 所以可以通过设定门限值的方法设置该 滚动式输入装置的灵敏度;
与现有技术相比, 由于本发明实施例无需用户亲自在长期使用中不断修改、 尝试可 以反映灵敏度的参数, 进而自动化程度更高, 即使用户完全没有滚动式输入装置灵敏度 的设置经验, 或者使用的电子设备是新的品牌、 类型, 本发明实施例所提供的方法及滚 动式输入装置也能够根据用户使用该滚动式输入装置的速度和幅度的确定用户的操作 习惯和特点, 进而自动设置适合用户的灵敏度, 所以解决了现有的滚动式输入装置的灵 敏度的设置方法比较麻烦的技术问题。 附图说明 为了更清楚地说明本发明实施例或现有技术中的技术方案, 下面将对实施例或现有 技术描述中所需要使用的附图作简单地介绍, 显而易见地, 下面描述中的附图仅仅是本 发明的一些实施例, 对于本领域普通技术人员来讲, 在不付出创造性劳动性的前提下, 还可以根据这些附图获得其他的附图。
图 1为现有技术中用户滚动操作滚动式输入装置上的轨迹球, 并通过滚动式输入装 置上的轨迹球控制屏幕上光标的示意图;
图 2为本发明实施例所提供的滚动式输入装置的一种实施方式的内部各部件的连接 关系示意图;
图 3为本发明实施例所提供的滚动式输入装置的又一种实施方式的内部各部件的连 接关系示意图;
图 4为本发明实施例所提供的电子设备的内部各部件的连接关系示意图; 图 5为本发明实施例所提供的滚动式输入装置灵敏度的设置方法的一种实施方式的 流程示意图;
图 6为本发明实施例所提供的滚动式输入装置灵敏度的设置方法的又一种实施方式 的流程示意图;
图 7为本发明实施例所提供的滚动式输入装置灵敏度的设置方法中再一种实施方式 的流程的示意图;
图 8为本发明实施例所提供的滚动式输入装置灵敏度的设置方法中步骤 S4的一种实 施方式的流程的示意图;
图 9为本发明实施例所提供的滚动式输入装置灵敏度的设置方法中步骤 S4的又一种 实施方式的流程的示意图;
图 10为本发明实施例所提供的滚动式输入装置灵敏度的设置方法中步骤 S4的再一 种实施方式的流程的示意图;
图 11为本发明实施例所提供的滚动式输入装置灵敏度的设置方法中步骤 S4的再一 种实施方式的流程的示意图。 具体实肺式 下面将结合本发明实施例中的附图, 对本发明实施例中的技术方案进行清楚、 完 整地描述, 显然, 所描述的实施例仅仅是本发明一部分实施例, 而不是全部的实施例。 基于本发明中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所 有其他实施例, 都属于本发明保护的范围。
本发明实施例提供了一种使用方便、 自动化程度比较高的滚动式输入装置灵敏度 的设置方法以及应用该滚动式输入装置灵敏度的设置方法的滚动式输入装置、 电子设 备。
如图 2、 图 4和图 5所示,本发明实施例所提供的滚动式输入装置灵敏度的设置方 法, 包括以下步骤:
51、 在滚动器件 1滚动过程中检测滚动器件 1的滚动方向和滚动距离, 并根据滚 动器件 1的滚动方向和滚动距离产生相应的中断;
52、 识别中断的数目与方向, 当同一方向的中断的数目达到门限值时, 响应一次 中断, 发出一次控制光标 80在屏幕 8上移动的移动事件信号;
S3、 检测反映用户滚动滚动器件 1的操作速度和幅度的参数;
S4、 根据检测到的参数设定门限值的大小。
本发明实施例中设置滚动式输入装置灵敏度时, 可以先检测反映用户滚动滚动器 件 1的操作速度和幅度的参数, 从而获得并确定出用户使用滚动滚动式输入装置上滚动 器件 1的操作习惯和特点, 然后可以根据检测到的参数设定门限值的大小;
由于门限值的大小与滚动式输入装置内的响应模块 3响应中断的次数、 发出控制 光标 80在屏幕 8上移动的移动事件信号的数目是成反比的, 移动事件信号的数目与移 动事件的数目是一致的, 同时, 移动事件的数目的多少与光标 80在屏幕 8上移动的速 度、 移动次数直接相关, 故而响应的中断的次数越多, 用户会感觉到该滚动式输入装置 越灵敏, 所以可以通过设定门限值的方法设置该滚动式输入装置的灵敏度;
与现有技术相比, 由于本发明实施例无需用户亲自在长期使用中不断修改、 尝试 可以反映灵敏度的参数, 进而自动化程度更高, 即使用户完全没有滚动式输入装置灵敏 度的设置经验, 或者使用的电子设备是新的品牌、 类型, 本发明实施例所提供的滚动式 输入装置也能够根据用户使用该滚动式输入装置的速度和幅度的确定用户的操作习惯 和特点, 进而自动设置适合用户的灵敏度, 所以解决了现有的滚动式输入装置的灵敏度 的设置方法比较麻烦的技术问题。 本实施例中反映用户滚动滚动器件 1 的操作速度和幅度的参数, 包括以下参数中 的任一个或多个的组合:
光标 80在屏幕 8上移动整个屏幕 8的距离所需要的移动事件的数目;
滚动一次滚动器件 1, 滚动式输入装置内的中断产生器件 2所产生的中断数目; 滚动一次滚动器件 1光标 80在屏幕 8上移动的距离;
滚动一次滚动器件 1所持续的时间;
两次滚动操作之间所间隔的时间。
以上参数的具体含义前文已经阐述, 此处不再重复。
如图 3和图 6所示, 作为本发明实施例的进一步改进, 本实施例中在滚动滚动器 件 1之前, 该方法还包括以下步骤:
sou 提示用户对滚动器件 1进行指定的滚动操作, 以便检测反映用户滚动滚动器 件 1的操作速度和幅度的参数, 并根据检测到的参数设定门限值的大小。
本实施例中执行步骤 S01 时, 具体可以通过播放提示音、 弹出提示对话框、 显示 提示文字、播放演示动画等方式有针对性的指导用户根据要求滚动该滚动式输入装置的 滚动器件 1, 从而有利于准确、 迅速、 有效的检测出设置滚动式输入装置灵敏度所需要 的参数。
如图 4和图 7所示,本实施例中提示用户对滚动器件进行指定的滚动操作的方法, 包括以下步骤其中的任一个或多个的组合:
S01 K提示用户滚动滚动器件 1,使光标 80完成在屏幕 8上移动 1/3〜2/3个屏幕 8距离的操作;
5012、 提示用户滚动滚动器件 1, 使光标 80完成在屏幕 8上移动小于 1/3个屏幕 8距离的操作;
5013、 提示用户滚动滚动器件 1, 使光标 80完成在屏幕 8上移动大于 2/3个屏幕 8距离的操作。
本实施例中用户滚动该滚动式输入装置上的滚动器件 1, 进而完成的控制光标 80 完成移动事件的场景, 可以分为 3大场景:
1、 中距离移动场景: 中距离移动场景也可以称为一般操作场景, 中距离是指大部 分用户通常通过该滚动式输入装置控制光标 80完成一次移动事件后光标 80在屏幕 8上 移动的距离。
由于大部分用户通常完成一次移动事件后光标 80在屏幕 8上移动的距离为整个屏 幕 8距离 1/3〜2/3, 所以本实施例中距离移动场景定义为: 光标 80完成移动 1/3〜2/3 个屏幕 8距离的操作, 当然, 中距离移动场景具体数值定义多少, 可以根据用户类型以 及用户需要进行设置, 例如: 也可以定义为光标 80完成移动 1/4〜4/5个屏幕 8距离的 操作。
2、 精确定位场景: 精确定位通常是指使光标 80定位到屏幕 8上的某一点上的操 作, 由于光标 80定位至屏幕 8上具体某一个点时, 通常无法一步准确移动到位, 需要 一小步、 一小步挪动到位, 所以本实施例中精确定位场景定义为: 使光标 80完成在屏 幕 8上移动小于 1/3个屏幕 8距离的操作, 当然, 精确定位场景具体数值定义多少, 也 可以根据用户类型以及用户需要进行设置, 例如: 也可以定义为光标 80完成移动小于 1/4个屏幕 8距离的操作。
3、 长距离移动场景: 长距离移动是指用户控制光标 80完成一次移动事件后光标 80在屏幕 8上移动的距离大于中距离的场景, 所以本实施例中长距离移动场景定义为: 使光标 80完成在屏幕 8上移动大于 2/3个屏幕 8距离的操作, 当然, 长距离移动场景 具体数值定义多少, 也可以根据用户类型以及用户需要进行设置, 例如: 也可以定义为 光标 80完成移动大于 1个屏幕 8距离的操作。
通过采集用户在以上 3大场景的滚动该滚动式输入装置上的滚动器件 1的操作速 度和幅度,基本上便可以获知并确定用户对该滚动式输入装置上滚动器件 1的操作习惯 与特点。
由于不同职业、性格的用户使用该滚动式输入装置时所经常应用的场景是不同的, 比如: 部分绘图工作者、 图片处理人员经常在精确定位场景下使用该滚动式输入装置, 而一般的使用者经常在中距离移动场景下使用该滚动式输入装置,所以本实施例中可以 仅在用户需要的场景下, 对该滚动式输入装置的灵敏度进行调整, 用户需要的场景既可 以是以上 3大场景其中的 1个也可以是其中的 2个或 3个,例如:对于部分绘图工作者、 图片处理人员等经常在精确定位场景下使用该滚动式输入装置的用户, 可以仅在精确定 位场景下调整该滚动式输入装置的灵敏度,进而在确定用户对该滚动式输入装置上滚动 器件 1的操作习惯与特点时,可以仅提示用户滚动该滚动器件 1使光标 80移动小于 1/3 个屏幕 8距离的操作即可。
由上可见, 提示用户对滚动器件进行指定的滚动操作可以在用户正常使用该滚动 式输入装置之前设置好该滚动式输入装置的门限值,用户在正常使用该滚动式输入装置 时, 便可以无需再设定门限值。 当然, 本实施例中也可以在用户正常使用该滚动式输入装置之前, 不提示用户对 滚动器件进行指定的滚动操作,在用户正常使用该滚动式输入装置的过程中再设定门限 值。
如图 4和图 8所示, 本实施例中根据检测到的参数设定门限值的大小的方法, 还 可以包括以下步骤:
S200、 检测用户每滚动一次滚动器件 1中断产生器件 2所产生的中断数目, 将滚 动式输入装置内的响应模块 3的门限值设定为: N=3B/X, 其中:
B为用户每滚动一次滚动器件 1中断产生器件 2所产生的中断数目;
X为光标 80在屏幕 8上移动整个屏幕 8的距离所需要的移动事件的数目。
用户使用该滚动式输入装置的较佳使用效果是: 滚动 1〜2次滚动器件 1光标移动 至所需要的位置,即完成 1〜2次移动事件可将屏幕 8上的光标 80移动至所需要的位置, 优选为: 滚动 2次滚动器件 1光标移动至所需要的位置, 即完成 2次移动事件可将屏幕 8上的光标 80移动至所需要的位置。
根据经验对于普通用户而言, 使用比较多的场景是中距离移动场景, 而对于中距 离移动场景,光标 80移动距离与屏幕 8尺寸的比值最佳为 2/3,假设 B为用户每滚动一 次滚动器件 1中断产生器件 2所产生的中断数目, X为光标 80在屏幕 8上移动整个屏幕 8的距离所需要的移动事件的数目, 则用户滚动两次滚动器件 1中断产生器件 2所产生 的中断数目即完成 2次移动事件产生的中断的数目为 2B, 而将屏幕 8上的光标 80移动 2/3个屏幕 8的尺寸, 则需要的移动事件的数目为 X*2/3;
由于滚动一次滚动器件 1光标 80在屏幕 8上完成的移动事件的数目 =滚动一次滚 动器件 1中断产生器件 2所产生的中断数目 ÷门限值,
从上述公式可以推导出: 门限值 =滚动一次滚动器件 1中断产生器件 2所产生的中 断数目 ÷滚动一次滚动器件 1光标 80在屏幕 8上完成的移动事件的数目,
所以此时, 门限值 N=2B÷ (X*2/3) = 3B/X, 进而响应模块 3 的最佳门限应该为: N=3B/X,
由上可见, 通过上述设置可以使得大部分用户使用该滚动式输入装置时, 完成 2 次移动事件即滚动两次滚动器件 1可将屏幕 8上的光标 80移动至所需要的位置。
如图 4和图 9所示, 本实施例中如果用户滚动滚动器件 1, 完成至少两次使光标 80在屏幕 8上移动小于 1/3个屏幕 8距离的操作时,根据检测到的参数设定门限值的大 小的方法, 包括以下步骤: 5201、 判断用户滚动一次滚动器件 1, 光标 80在屏幕 8上移动的距离与用户之前 滚动一次滚动器件 1光标 80在屏幕 8上移动的距离的平均值之比是否在 0. 8〜 1. 2之间;
5202、判断用户滚动一次滚动器件 1所持续的时间与用户之前滚动一次滚动器件 1 所持续的时间的平均值之比是否在 0. 8〜1. 2之间;
S203、 判断两次滚动操作之间所间隔的时间是否不大于 0. 5秒;
5204、 若以上步骤 S201、 步骤 S202以及步骤 S203的判断结果均为是, 则将响应 模块 3所响应的中断设定为:
用户每滚动一次滚动器件 1时, 响应中断产生器件 2所产生的第一个中断, 然后 将门限值设定为: N+l, 其中: N=3B/X,
B为用户每滚动一次滚动器件 1中断产生器件 2所产生的中断数目;
X为光标 80在屏幕 8上移动整个屏幕 8的距离所需要的移动事件的数目;
5205、 若以上步骤 S201、 步骤 S202以及步骤 S203的判断结果均为否, 则将滚动 式输入装置的门限值设定为不大于 2。
以上步骤 S201、 步骤 S202以及步骤 S203的执行无先后顺序的限制。
这种情况主要是针对精确定位场景,用户滚动一次滚动器件 1光标 80在屏幕 8上 移动的距离与用户之前每滚动一次滚动器件 1光标 80在屏幕 8上移动的距离的平均值 之比在 0. 8〜1. 2之间, 且用户滚动一次滚动器件 1所持续的时间与用户之前每滚动一 次滚动器件 1所持续的时间的平均值之比在 0. 8〜1. 2之间时, 说明用户操作比较熟练, 两次滚动操作之间所间隔的时间不大于 0. 5秒, 说明用户滚动的动作很快, 这样就需要 开始时加快响应模块 3的响应速度,然后再逐渐减小响应模块 3的响应速度以避免用户 在滚动该滚动器件 1的过程中发生滚动过头的问题; 反之, 则说明用户操作该滚动式输入装置很不熟练, 操作速度很慢, 所以需要减 少用户的操作次数, 提高响应速度, 将门限值的值设置较小。
当然, 本实施例中用于判断用户操作是否比较熟练的具体数值也可以适当的增大 或减小, 具体将门限值设置为多少可以根据不同的用户类型分别进行设置。
如图 4和图 10所示, 如果用户滚动滚动器件 1, 完成至少两次使光标 80在屏幕 8 上移动大于 2/3个屏幕 8距离的操作时, 根据检测到的参数设定门限值的大小的方法, 包括以下步骤:
S21 K 判断滚动一次滚动器件 1, 光标 80在屏幕 8上移动的距离与用户之前每滚 动一次滚动器件 1光标 80在屏幕 8上移动的距离的平均值之比是否在 0. 8〜1. 2之间;
5212、 判断两次滚动操作之间所间隔的时间是否大于 0. 5秒,
5213、 若以上步骤 S211、 步骤 S212的判断结果均为是, 则每完成一次移动事件, 将滚动式输入装置的门限值减 1直到达到最小门限值为止。
以上步骤 S211以及步骤 S212的执行无先后顺序的限制。
这种情况主要是针对长距离移动场景, 此时, 两次滚动操作之间所间隔的时间大 于 0. 5秒说明用户操作熟练, 但动作较慢, 为避免用户长时间使用引起疲劳, 每完成一 次移动事件, 将滚动式输入装置的门限值减 1直到达到最小门限值为止, 这样, 响应模 块 3响应的速度会越来越快, 从而产生加速的效果。
如图 4和图 11所示, 如果用户滚动滚动器件 1, 完成至少三次使光标 80在屏幕 8 上移动大于 2/3个屏幕 8距离的操作时, 根据检测到的参数设定门限值的大小的方法, 包括以下步骤:
S22K判断每滚动一次滚动器件 1光标 80在屏幕 8上移动的距离是否均大于用户 前次滚动一次滚动器件 1光标 80在屏幕 8上移动的距离;
S222、 判断后次滚动操作与前次滚动操作之间所间隔的时间是否均小于前次滚动 操作与前次之前的一次滚动操作之间所间隔的时间;
S223、若以上步骤 S221、步骤 S222的判断结果均为是, 则将滚动式输入装置内的 响应模块 3的门限值设置为 N-1, 且用户每滚动一次滚动器件 1时, 至少不响应每次滚 动过程中中断产生器件 2所产生的最后的至少一个中断, 其中: N=3B/X,
B为用户每滚动一次滚动器件 1中断产生器件 2所产生的中断数目;
X为光标 80在屏幕 8上移动整个屏幕 8的距离所需要的移动事件的数目。
以上步骤 S221以及步骤 S222的执行无先后顺序的限制。
这种情况主要也是针对长距离移动场景, 当每滚动一次滚动器件 1光标 80在屏幕 8上移动的距离均大于用户前次滚动一次滚动器件 1光标 80在屏幕 8上移动的距离,且 后次滚动操作与前次滚动操作之间所间隔的时间均小于前次滚动操作与前次之前的一 次滚动操作之间所间隔的时间, 说明用户操作比较熟练, 而且滚动的动作越来越快, 为 避免用户在滚动该滚动器件 1的过程中发生滚动过头的问题, 需要逐渐降低响应模块 3 的响应速度。 当然, 本实施例中降低响应模块 3的响应速度的方法很多, 既可以少响应 几个中断也可以增大门限值。本实施例中优选为响应模块 3不响应每次滚动过程中中断 产生器件 2所产生的最后的 1〜2个中断。 如图 2和图 4所示, 本发明实施例所提供的滚动式输入装置, 包括: 滚动器件 1、 中断产生器件 2、 响应模块 3、 检测模块 4以及设定模块 5, 其中:
中断产生器件 2,用于在滚动器件 1滚动过程中检测滚动器件 1的滚动方向和滚动 距离, 并根据滚动器件 1的滚动方向和滚动距离产生相应的中断;
响应模块 3,用于识别中断的数目与方向,当同一方向的中断的数目达到门限值时, 响应一次中断, 发出一次控制光标 80在屏幕 8上移动的移动事件信号;
检测模块 4, 用于检测反映用户滚动滚动器件 1的操作速度和幅度的参数; 设定模块 5, 用于根据检测模块 4检测到的参数设定门限值的大小。
本发明实施例中设置滚动式输入装置灵敏度时, 可以通过检测模块 4先检测反映 用户滚动滚动器件 1的操作速度和幅度的参数,从而获得并确定出用户使用滚动滚动式 输入装置上滚动器件 1的操作习惯和特点,然后可以通过设定模块 5根据检测到的参数 设定门限值的大小;
由于门限值的大小与响应模块 3响应中断的次数、发出控制光标 80在屏幕 8上移 动的移动事件信号的数目是成反比的, 移动事件信号的数目与移动事件的数目是一致 的, 同时, 移动事件的数目的多少与光标 80在屏幕 8上移动的速度、 移动次数直接相 关, 故而响应的中断的次数越多, 用户会感觉到该滚动式输入装置越灵敏, 所以可以通 过设定门限值的方法设置该滚动式输入装置的灵敏度;
与现有技术相比, 由于本发明实施例无需用户亲自在长期使用中不断修改、 尝试 可以反映灵敏度的参数, 进而自动化程度更高, 即使用户完全没有滚动式输入装置灵敏 度的设置经验, 或者使用的电子设备是新的品牌、 类型, 本发明实施例所提供的滚动式 输入装置也能够根据用户使用该滚动式输入装置的速度和幅度的确定用户的操作习惯 和特点, 进而自动设置适合用户的灵敏度, 所以解决了现有的滚动式输入装置的灵敏度 的设置方法比较麻烦的技术问题。
本实施例中反映用户滚动滚动器件的操作速度和幅度的参数, 包括以下参数中的 任一个或多个的组合:
光标 80在屏幕 8上移动整个屏幕 8的距离所需要的移动事件的数目;
每滚动一次滚动器件 1滚动式输入装置内的中断产生器件 2所产生的中断数目; 每滚动一次滚动器件 1光标 80在屏幕 8上移动的距离;
每滚动一次滚动器件 1所持续的时间;
两次滚动操作之间所间隔的时间。 光标 80在屏幕 8上移动整个屏幕 8的距离所需要的移动事件的数目,相当于普通 键盘的方向键所控制的光标 80在屏幕 8上移动整个屏幕 8的距离所需要的按压方向键 的按键次数。
当然, 本实施例中可以反映出用户使用该滚动式输入装置操作速度和幅度的参数 还可以为以上所公开的参数之外的其他参数。
本实施例中响应模块 3、检测模块 4以及设定模块 5优选为软件模块。通过软件来 实现响应模块 3、 检测模块 4以及设定模块 5的功能时, 不仅成本低, 而且便于更改设 置。 当然, 响应模块 3、 检测模块 4和 /或设定模块 5也可以为硬件模块。
如图 3所示, 作为本发明实施例的进一步改进, 本实施例滚动式输入装置还包括 提示模块 6, 其中: 提示模块 6, 用于提示用户对滚动器件 1进行指定的滚动操作, 以 便检测模块 4检测反映用户滚动滚动器件 1的操作速度和幅度的参数,和设定模块 5根 据检测到的参数设定门限值的大小。
提示模块 6可以通过播放提示音、 弹出提示对话框、 显示提示文字、 播放演示动 画等方式有针对性的指导用户根据要求滚动该滚动式输入装置的滚动器件 1, 从而有利 于准确、 迅速、 有效的检测出设置滚动式输入装置灵敏度所需要的参数。
滚动器件 1为轨迹球或鼠标滚轮。 轨迹球或鼠标滚轮均为应用广泛的滚动器件 1, 适宜采用本发明实施例所提供的技术方案来设置其各自的灵敏度, 并提高其各自的智能 化程度。 当然, 本发明实施例所提供的技术方案也可以应用于轨迹球或鼠标滚轮之外的 其他滚动器件上。 滚动式输入装置可以为游戏机手柄、 滚轮鼠标等电子设备。
本实施例中中断产生器件 2可以为霍尔器件。 霍尔器件是一种利用霍尔效应的固 态电子器件, 其可以检测磁场变化, 并将磁场变化转变为电信号输出。 霍尔器件可以用 于监视和测量各部件运行参数的变化。 例如位置、 位移、 角度、 角速度、 转速等等, 且 具有性能稳定、 技术成熟特点, 适宜应用于本发明实施例中。 当然, 本实施例中中断产 生器件 2也可以为传感器或其他霍尔器件之外的可以识别方向与距离, 并可根据方向与 距离产生相应中断的器件。
如图 4所示, 本发明实施例所提供的电子设备, 包括光标控制模块 7、滚动式输入 装置、 检测模块 4以及设定模块 5, 滚动式输入装置包括滚动器件 1、 中断产生器件 2 以及响应模块 3, 其中:
中断产生器件 2,用于在滚动器件 1滚动过程中检测滚动器件 1的滚动方向和滚动 距离, 并根据滚动器件 1的滚动方向和滚动距离产生相应的中断; 响应模块 3,用于识别中断的数目与方向,当同一方向的中断的数目达到门限值时, 响应一次中断, 发出一次控制光标 80在屏幕 8上移动的移动事件信号;
光标控制模块 7, 用于识别每个移动事件信号, 并控制光标 80在屏幕 8上完成与 每个移动事件信号相应的移动事件;
检测模块 4, 用于检测反映用户滚动滚动器件 1的操作速度和幅度的参数; 设定模块 5, 用于根据检测模块 4检测到的参数设定门限值的大小。
与上述本发明实施例所提供的滚动式输入装置同理, 设置本发明实施例所提供的 电子设备内滚动式输入装置灵敏度时, 可以通过检测模块 4先检测反映用户滚动滚动器 件 1的操作速度和幅度的参数, 从而获得并确定出用户使用滚动滚动式输入装置上滚动 器件 1的操作习惯和特点, 然后可以通过设定模块 5根据检测到的参数设定响应模块 3 门限值的大小;
由于的门限值的大小与响应模块 3响应中断的次数、发出控制光标 80在屏幕 8上 移动的移动事件信号的数目是成反比的,移动事件信号的数目与移动事件的数目是一致 的, 同时, 移动事件的数目的多少与光标 80在屏幕 8上移动的速度、 移动次数直接相 关, 故而响应的中断的次数越多, 用户会感觉到该滚动式输入装置越灵敏, 所以可以通 过设定门限值的方法设置该滚动式输入装置的灵敏度;
与现有技术相比, 由于本发明实施例无需用户亲自在长期使用中不断修改、 尝试 可以反映灵敏度的参数, 进而自动化程度更高, 即使用户完全没有滚动式输入装置灵敏 度的设置经验, 或者使用的电子设备是新的品牌、 类型, 本发明实施例所提供的滚动式 输入装置也能够根据用户使用该滚动式输入装置的速度和幅度的确定用户的操作习惯 和特点, 进而自动设置适合用户的灵敏度, 所以解决了现有的滚动式输入装置的灵敏度 的设置方法比较麻烦的技术问题。
如图 4所示,作为实施例的进一步改进,本实施例电子设备还可以包括提示模块 6, 其中: 提示模块 6, 用于提示用户对滚动器件 1进行指定的滚动操作, 以便检测模块 4 检测反映用户滚动滚动器件 1的操作速度和幅度的参数,和设定模块 5根据检测到的参 数设定门限值的大小。
提示模块 6可以通过播放提示音、 弹出提示对话框、 显示提示文字、 播放演示动 画等方式有针对性的指导用户根据要求滚动该滚动式输入装置的滚动器件 1, 从而有利 于准确、 迅速、 有效的检测出设置滚动式输入装置灵敏度所需要的参数。
本实施例中光标控制模块 7可以为电子设备的主芯片, 也可以为电子设备内具有 数据处理能力的其他控制器。
以上所述, 仅为本发明的具体实施方式, 但本发明的保护范围并不局限于此, 任 何熟悉本技术领域的技术人员在本发明揭露的技术范围内, 可轻易想到变化或替换, 都 应涵盖在本发明的保护范围之内。 因此, 本发明的保护范围应以权利要求的保护范围为

Claims

权利要求
1、 一种滚动式输入装置灵敏度的设置方法, 其特征在于, 包括以下步骤: 在滚动器件滚动过程中检测所述滚动器件的滚动方向和滚动距离, 并根据所述滚动 器件的滚动方向和滚动距离产生相应的中断;
识别所述中断的数目与方向, 当同一方向的中断的数目达到门限值时, 响应一次中 断, 发出一次控制光标在屏幕上移动的移动事件信号;
检测反映用户滚动所述滚动器件的操作速度和幅度的参数;
根据检测到的所述参数设定所述门限值的大小。
2、 根据权利要求 1所述的滚动式输入装置灵敏度的设置方法, 其特征在于, 在滚 动所述滚动器件之前, 该方法还包括以下步骤:
提示用户对所述滚动器件进行指定的滚动操作, 以便检测反映用户滚动所述滚动器 件的操作速度和幅度的参数。
3、 根据权利要求 1或 2所述的滚动式输入装置灵敏度的设置方法, 其特征在于, 所述反映用户滚动所述滚动器件的操作速度和幅度的参数,包括以下参数中的任一个或 多个的组合:
所述光标在所述屏幕上移动整个所述屏幕的距离所需要的移动事件的数目; 滚动一次所述滚动器件, 所述滚动式输入装置内的中断产生器件所产生的中断数 百;
滚动一次所述滚动器件所述光标在所述屏幕上移动的距离;
滚动一次所述滚动器件所持续的时间; 和
两次滚动操作之间所间隔的时间。
4、 根据权利要求 3所述的滚动式输入装置灵敏度的设置方法, 其特征在于: 所述 根据检测到的所述参数设定所述门限值的大小的方法, 包括以下步骤:
检测用户每滚动一次所述滚动器件所述中断产生器件所产生的中断数目,将所述滚 动式输入装置内的所述响应模块的所述门限值设定为 N=3B/X;
其中, B 为用户每滚动一次所述滚动器件所述中断产生器件所产生的中断数目; X 为所述光标在所述屏幕上移动整个所述屏幕的距离所需要的移动事件的数目。
5、 根据权利要求 3所述的滚动式输入装置灵敏度的设置方法, 其特征在于: 如果 用户滚动所述滚动器件, 完成至少两次使所述光标在所述屏幕上移动小于 1/3个所述屏 幕距离的操作时, 所述根据检测到的所述参数设定所述门限值的大小的方法, 包括以下 步骤: 5201、判断用户滚动一次所述滚动器件所述光标在所述屏幕上移动的距离与用户之 前滚动一次所述滚动器件所述光标在所述屏幕上移动的距离的平均值之比是否在 0. 8〜 1. 2之间;
5202、判断用户滚动一次所述滚动器件所持续的时间与用户之前滚动一次所述滚动 器件所持续的时间的平均值之比是否在 0. 8〜1. 2之间;
5203、 判断两次滚动操作之间所间隔的时间是否不大于 0. 5秒;
5204、若以上步骤 S201、步骤 S202以及步骤 S203的判断结果均为是, 则将所述响 应模块所响应的中断设定为: 用户每滚动一次所述滚动器件时, 响应所述中断产生器件 所产生的第一个中断; 并将所述门限值设定为 N+l, 其中: N=3B/X, B为用户每滚动一 次所述滚动器件所述中断产生器件所产生的中断数目; X为所述光标在所述屏幕上移动 整个所述屏幕的距离所需要的移动事件的数目;
5205、若以上步骤 S201、步骤 S202以及步骤 S203的判断结果均为否, 则将所述滚 动式输入装置的门限值设定为不大于 2。
6、 根据权利要求 3所述的滚动式输入装置灵敏度的设置方法, 其特征在于: 如果 用户滚动所述滚动器件, 完成至少两次使所述光标在所述屏幕上移动大于 2/3个所述屏 幕距离的操作时, 所述根据检测到的所述参数设定所述门限值的大小的方法, 包括以下 步骤:
S21 K判断滚动一次所述滚动器件所述光标在所述屏幕上移动的距离与用户之前每 滚动一次所述滚动器件所述光标在所述屏幕上移动的距离的平均值之比是否在 0. 8〜 1. 2之间;
5212、 判断两次滚动操作之间所间隔的时间是否大于 0. 5秒,
5213、 若以上步骤 S211、 步骤 S212的判断结果均为是, 则每完成一次移动事件, 将所述滚动式输入装置的门限值减 1直到达到预设的最小门限值为止。
7、 根据权利要求 3所述的滚动式输入装置灵敏度的设置方法, 其特征在于: 如果 用户滚动所述滚动器件, 完成至少三次使所述光标在屏幕上移动大于 2/3个屏幕距离的 操作时, 所述根据检测到的所述参数设定所述门限值的大小的方法, 包括以下步骤:
S22 K判断每滚动一次所述滚动器件光标在屏幕上移动的距离是否均大于用户前次 滚动一次所述滚动器件光标在屏幕上移动的距离;
5222、判断后次滚动操作与前次滚动操作之间所间隔的时间是否均小于前次滚动操 作与前次之前的一次滚动操作之间所间隔的时间;
5223、 若以上步骤 S221、 步骤 S222的判断结果均为是, 则将所述滚动式输入装置 内的响应模块的门限值设置为 N-l, 且用户每滚动一次所述滚动器件时, 至少不响应每 次滚动过程中所述中断产生器件所产生的最后的至少一个中断, 其中: N=3B/X, B为用 户每滚动一次所述滚动器件所述中断产生器件所产生的中断数目; X为所述光标在屏幕 上移动整个屏幕的距离所需要的移动事件的数目。
8、 一种滚动式输入装置, 其特征在于: 包括: 滚动器件、 中断产生器件、 响应模 块、 检测模块以及设定模块;
所述中断产生器件,用于在所述滚动器件滚动过程中检测所述滚动器件的滚动方向 和滚动距离, 并根据所述滚动器件的滚动方向和滚动距离产生相应的中断;
所述响应模块, 用于识别所述中断的数目与方向, 当同一方向的中断的数目达到门 限值时, 响应一次中断, 发出一次控制光标在屏幕上移动的移动事件信号;
所述检测模块, 用于检测反映用户滚动所述滚动器件的操作速度和幅度的参数; 所述设定模块, 用于根据所述检测模块检测到的所述参数设定所述门限值的大小。
9、 根据权利要求 8所述的滚动式输入装置, 其特征在于: 该滚动式输入装置还包 括提示模块;
所述提示模块, 用于提示用户对所述滚动器件进行指定的滚动操作, 以便所述检测 模块检测反映用户滚动所述滚动器件的操作速度和幅度的参数,和所述设定模块根据检 测到的所述参数设定所述门限值的大小。
10、 根据权利要求 8或 9所述的滚动式输入装置, 其特征在于: 所述滚动器件为轨 迹球或鼠标滚轮。
11、 一种电子设备, 其特征在于, 包括光标控制模块、 滚动式输入装置、 检测模块 以及设定模块; 所述滚动式输入装置包括滚动器件、 中断产生器件以及响应模块; 所述中断产生器件,用于在所述滚动器件滚动过程中检测所述滚动器件的滚动方向 和滚动距离, 并根据所述滚动器件的滚动方向和滚动距离产生相应的中断;
所述响应模块, 用于识别所述中断的数目与方向, 当同一方向的中断的数目达到门 限值时, 响应一次中断, 发出一次控制光标在屏幕上移动的移动事件信号;
所述光标控制模块, 用于识别每个所述移动事件信号, 并控制所述光标在屏幕上完 成与每个所述移动事件信号相应的移动事件;
所述检测模块, 用于检测反映用户滚动所述滚动器件的操作速度和幅度的参数; 所述设定模块, 用于根据所述检测模块检测到的所述参数设定所述门限值的大小。
PCT/CN2011/074552 2010-06-11 2011-05-24 滚动式输入装置及其灵敏度的设置方法、电子设备 WO2011153900A1 (zh)

Priority Applications (2)

Application Number Priority Date Filing Date Title
EP11791891.2A EP2581811B1 (en) 2010-06-11 2011-05-24 Rolling type input device, method and electronic equipment for setting sensitivity thereof
US13/710,044 US9152245B2 (en) 2010-06-11 2012-12-10 Rolling type input apparatus and method for setting sensitivity thereof, and electronic equipment

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201010198129XA CN101847052B (zh) 2010-06-11 2010-06-11 滚动式输入装置及其灵敏度的设置方法、电子设备
CN201010198129.X 2010-06-11

Related Child Applications (1)

Application Number Title Priority Date Filing Date
US13/710,044 Continuation US9152245B2 (en) 2010-06-11 2012-12-10 Rolling type input apparatus and method for setting sensitivity thereof, and electronic equipment

Publications (1)

Publication Number Publication Date
WO2011153900A1 true WO2011153900A1 (zh) 2011-12-15

Family

ID=42771686

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2011/074552 WO2011153900A1 (zh) 2010-06-11 2011-05-24 滚动式输入装置及其灵敏度的设置方法、电子设备

Country Status (4)

Country Link
US (1) US9152245B2 (zh)
EP (1) EP2581811B1 (zh)
CN (1) CN101847052B (zh)
WO (1) WO2011153900A1 (zh)

Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101847052B (zh) 2010-06-11 2013-09-11 华为终端有限公司 滚动式输入装置及其灵敏度的设置方法、电子设备
CN103491408A (zh) * 2013-09-11 2014-01-01 天脉聚源(北京)传媒科技有限公司 一种遥控器
CN107960124B (zh) * 2016-05-16 2021-02-26 深圳维盛半导体科技有限公司 一种dpi自动调节的鼠标及方法

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH1011212A (ja) * 1996-06-26 1998-01-16 Casio Comput Co Ltd 位置情報入力装置
CN1247607A (zh) * 1997-02-12 2000-03-15 卡尼泰克有限公司 一种用于计算机的输入装置
CN1514986A (zh) * 2001-03-26 2004-07-21 英特尔公司 实现指示装置光标速度的手动调整
CN101847052A (zh) * 2010-06-11 2010-09-29 华为终端有限公司 滚动式输入装置及其灵敏度的设置方法、电子设备

Family Cites Families (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102005007257A1 (de) * 2005-02-16 2006-08-17 Armin Bolkart Variable Steuerung der Controllersensitivität
TWI311275B (en) * 2006-05-04 2009-06-21 Sunplus Technology Co Ltd Apparatus and method for cursor control
TW200928880A (en) * 2007-12-21 2009-07-01 Pixart Imaging Inc Displacement detection apparatus and method
US8704767B2 (en) * 2009-01-29 2014-04-22 Microsoft Corporation Environmental gesture recognition
CN101714035A (zh) * 2009-11-07 2010-05-26 硕维科技有限公司 一种鼠标dpi自动调节的方法及dpi自动调节鼠标

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH1011212A (ja) * 1996-06-26 1998-01-16 Casio Comput Co Ltd 位置情報入力装置
CN1247607A (zh) * 1997-02-12 2000-03-15 卡尼泰克有限公司 一种用于计算机的输入装置
CN1514986A (zh) * 2001-03-26 2004-07-21 英特尔公司 实现指示装置光标速度的手动调整
CN101847052A (zh) * 2010-06-11 2010-09-29 华为终端有限公司 滚动式输入装置及其灵敏度的设置方法、电子设备

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
See also references of EP2581811A4 *

Also Published As

Publication number Publication date
EP2581811A4 (en) 2013-12-18
US9152245B2 (en) 2015-10-06
CN101847052A (zh) 2010-09-29
CN101847052B (zh) 2013-09-11
US20130100024A1 (en) 2013-04-25
EP2581811A1 (en) 2013-04-17
EP2581811B1 (en) 2016-08-03

Similar Documents

Publication Publication Date Title
KR100537518B1 (ko) 공간에서 클릭 동작에 따른 포인팅 위치 조절 방법 및이를 위한 공간형 입력 장치
JP6553136B2 (ja) タッチ感応表面上でのマルチ圧力相互作用のためのシステムと方法
KR101871882B1 (ko) 단말 장치상에서의 작업을 관리하는 방법, 및 단말 장치
US20110018828A1 (en) Touch device, control method and control unit for multi-touch environment
US9285976B2 (en) User interface device capable of image scrolling not accompanying finger movement, image scrolling method, and program
KR101890079B1 (ko) 동적 햅틱 효과를 가지는 멀티 터치 장치
JP4964964B2 (ja) 近接感知による触覚的効果
CN103955336B (zh) 传感装置和方法
US20140152581A1 (en) Force as a device action modifier
US8164575B2 (en) Method for identifying a single tap, double taps and a drag and a controller for a touch device employing the method
JP2012502393A (ja) 相対的ジェスチャー認識モードを有する携帯用電子デバイス
US8681125B2 (en) Method and system for estimating the tendency of pressure change on a touch panel
WO2012068912A1 (zh) 电容式触摸屏信号处理方法及装置
US20090062005A1 (en) Method for adjusting sensing range and sensitivity and inertia interactive aparatus and system using thereof
CN107463290A (zh) 触摸操作的响应控制方法、装置、存储介质及移动终端
TW200949618A (en) Input device and the control method thereof
WO2011153900A1 (zh) 滚动式输入装置及其灵敏度的设置方法、电子设备
CN109933267B (zh) 控制终端设备的方法及终端设备
TWI419037B (zh) 觸控系統、觸控操作方法與電腦系統
AU2017407719B2 (en) Method for adjusting scrolling speed of interface, related device, and computer program product
CN105912235A (zh) 一种桌面处理的方法及终端
TWI576752B (zh) 觸控裝置及其觸控偵測方法
CN114568870A (zh) 智能床控制方法、智能床、装置、设备及存储介质
CN111327822B (zh) 一种控制摄像头移动的方法及电子设备
CN110989895A (zh) 一种控件显示状态检测方法及装置

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 11791891

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

REEP Request for entry into the european phase

Ref document number: 2011791891

Country of ref document: EP

WWE Wipo information: entry into national phase

Ref document number: 2011791891

Country of ref document: EP