WO2021068630A1 - Procédé d'interaction pour dispositif électronique et dispositif électronique - Google Patents
Procédé d'interaction pour dispositif électronique et dispositif électronique Download PDFInfo
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- WO2021068630A1 WO2021068630A1 PCT/CN2020/107146 CN2020107146W WO2021068630A1 WO 2021068630 A1 WO2021068630 A1 WO 2021068630A1 CN 2020107146 W CN2020107146 W CN 2020107146W WO 2021068630 A1 WO2021068630 A1 WO 2021068630A1
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- Prior art keywords
- electronic device
- pressing
- pressure
- scene
- mobile phone
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- G—PHYSICS
- G06—COMPUTING OR CALCULATING; 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
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04M—TELEPHONIC COMMUNICATION
- H04M1/00—Substation equipment, e.g. for use by subscribers
- H04M1/72—Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
- H04M1/724—User interfaces specially adapted for cordless or mobile telephones
- H04M1/72403—User interfaces specially adapted for cordless or mobile telephones with means for local support of applications that increase the functionality
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04M—TELEPHONIC COMMUNICATION
- H04M1/00—Substation equipment, e.g. for use by subscribers
- H04M1/72—Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
- H04M1/724—User interfaces specially adapted for cordless or mobile telephones
- H04M1/72448—User interfaces specially adapted for cordless or mobile telephones with means for adapting the functionality of the device according to specific conditions
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04M—TELEPHONIC COMMUNICATION
- H04M1/00—Substation equipment, e.g. for use by subscribers
- H04M1/72—Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
- H04M1/724—User interfaces specially adapted for cordless or mobile telephones
- H04M1/72448—User interfaces specially adapted for cordless or mobile telephones with means for adapting the functionality of the device according to specific conditions
- H04M1/72454—User interfaces specially adapted for cordless or mobile telephones with means for adapting the functionality of the device according to specific conditions according to context-related or environment-related conditions
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04M—TELEPHONIC COMMUNICATION
- H04M1/00—Substation equipment, e.g. for use by subscribers
- H04M1/72—Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
- H04M1/724—User interfaces specially adapted for cordless or mobile telephones
- H04M1/72466—User interfaces specially adapted for cordless or mobile telephones with selection means, e.g. keys, having functions defined by the mode or the status of the device
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04M—TELEPHONIC COMMUNICATION
- H04M1/00—Substation equipment, e.g. for use by subscribers
- H04M1/72—Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
- H04M1/725—Cordless telephones
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04M—TELEPHONIC COMMUNICATION
- H04M2250/00—Details of telephonic subscriber devices
- H04M2250/12—Details of telephonic subscriber devices including a sensor for measuring a physical value, e.g. temperature or motion
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04M—TELEPHONIC COMMUNICATION
- H04M2250/00—Details of telephonic subscriber devices
- H04M2250/22—Details of telephonic subscriber devices including a touch pad, a touch sensor or a touch detector
Definitions
- the embodiments of the present application relate to the field of touch technology, and in particular, to an interaction method of an electronic device and an electronic device.
- electronic devices can be equipped with touch sensors and pressure sensors in areas where physical buttons (also called physical buttons) need to be set, and use the touch effect of the touch sensor and the piezoelectric effect of the pressure sensor to detect user input Press operation to realize the related functions of returning, adjusting the volume and other physical buttons.
- touch-press keys such keys that utilize the touch effect of the touch sensor and the piezoelectric effect of the pressure sensor to realize the key function
- keys can also be called virtual keys and other names.
- a touch-press button is easily triggered by the user by mistake. This kind of false triggering will bring a worse user experience, thus restricting the development of touch-and-press button technology on electronic devices such as smart phones and tablet computers.
- the embodiments of the present application provide an electronic device interaction method and electronic device, which can reduce the false touch of the touch key of the electronic device, and improve the false touch prevention performance of the electronic device.
- an embodiment of the present application provides an electronic device interaction method, and the method can be applied to an electronic device.
- the electronic device is provided with a touch sensor and one or more pressure sensors.
- the method may include: the electronic device collects pressing information of the first pressing operation through a touch sensor, and the pressing information indicates the operation type and operation position of the first pressing operation; and the electronic device collects the pressing information of the first pressing operation through the one or more pressure sensors mentioned above.
- the electronic device in response to the first pressing operation, the electronic device obtains scene information of the electronic device, which indicates the application scene and/or physical scene in which the electronic device is located; wherein the application scene and the electronic device running in the foreground Corresponding to the application, the physical scene corresponds to the motion state of the electronic device; the electronic device determines the pressure threshold according to the scene information; the scene information has a corresponding relationship with the pressure threshold; if the pressing pressure collected by the first pressure sensor in one or more pressure sensors is greater than For the first pressure threshold, the electronic device can perform the function corresponding to the aforementioned pressing information.
- the above-mentioned operation type is any one of a single-click operation, a double-click operation, a long-press operation, or a sliding operation.
- the electronic device determines whether the pressing pressure of the first pressing operation is greater than the pressure threshold.
- the pressure thresholds used are different.
- the electronic device can dynamically adjust the pressure threshold according to the scene in which the electronic device is located. For example, the pressure threshold in a scene where false touch is likely to occur is greater than the pressure threshold in a scene where false touch is not likely to occur.
- the electronic device when the pressing pressure of the first pressing operation is greater than the pressure threshold, the electronic device will respond to the first pressing operation to perform the corresponding function; therefore, in scenarios where false touches are prone to occur, a larger pressure threshold is used. The possibility of false touches can be reduced, and the false touch prevention performance of the electronic device can be improved. In addition, in scenarios where false touches are not prone to occur, using a smaller pressure threshold can improve the sensitivity of the electronic device in responding to the user's pressing operation on the preset area.
- a pressure sensor is provided in the electronic device, that is, the above-mentioned first pressure sensor.
- the “a pressure sensor provided in the electronic device” mentioned in the embodiment of the present application specifically refers to: the electronic device is provided with a pressure sensor for realizing touch and press buttons.
- the electronic device may also be provided with a pressure sensor for implementing other functions, for example, a pressure sensor may be provided under the display screen of the electronic device.
- multiple pressure sensors are provided in the electronic device.
- the above-mentioned first pressure sensor is any one of the two pressure sensors.
- the “multiple pressure sensors provided in the electronic device” mentioned in the embodiments of the present application specifically refers to: the electronic device is provided with multiple pressure sensors for realizing touch and press buttons.
- the electronic device before the electronic device executes the function corresponding to the pressing information, it can be determined that the operating position is within the preset area where the first pressure sensor is located. In other words, only when the first pressing operation is applied to the predetermined area, the processor will respond to the first pressing operation and execute the corresponding function.
- the electronic device can determine the first pressing operation based on the double determination conditions of "whether the pressing pressure of the first pressing operation is greater than the pressure threshold corresponding to the scene information" and "whether the first pressing operation is within the preset area" Whether a pressing operation is a valid pressing operation. In this way, effective pressing operations and false touch operations can be more accurately recognized, and false touches to the touch keys of the electronic device can be effectively reduced, and the false touch prevention performance of the electronic device can be improved.
- the above electronic device further includes a memory.
- the memory stores the corresponding relationship between the scene information of the electronic device and the pressure threshold. That is, multiple scene information and pressure thresholds corresponding to each scene information are stored in the memory.
- the scene information of the electronic device is one piece of scene information among the plurality of scene information.
- the aforementioned pressing information is used to determine the function executed by the electronic device triggered by the first pressing operation.
- the operation type and operation position indicated by the aforementioned pressing information are used to determine the function executed by the electronic device triggered by the first pressing operation.
- the foregoing operation type and the corresponding relationship between the operation position and the function may be preset and configured in the electronic device.
- the above-mentioned operation type and the corresponding relationship between the operation position and the function can be set by the user in the electronic device.
- the electronic device may provide the user with a service of setting the function of touching and pressing a button through a user interface (UI).
- UI user interface
- the above-mentioned electronic equipment also includes a display screen.
- the above method may further include: the electronic device displays a first interface on the display screen, the first interface includes a plurality of first options; each first option corresponds to an operation position and a pressing operation of a type of operation; responding to the user-to-many For the selection operation of the second option among the first options, the electronic device displays a second interface on the display screen; the second interface includes a plurality of third options, and each third option corresponds to a function triggered by the pressing operation; in response to the user For the selection operation of the fourth option among the plurality of third options, the electronic device configures the pressing operation corresponding to the second option to trigger the function corresponding to the fourth option.
- the above functions include at least any one of the following functions: turn up volume, turn down volume, increase screen brightness, decrease screen brightness, lock screen, screenshot and start voice assistant.
- the aforementioned pressure sensors are piezoelectric pressure sensors. This possible design provides a possible product form of the pressure sensor.
- the above-mentioned piezoelectric pressure sensor includes a piezoelectric ceramic sensor.
- This possible design provides a possible product form of the piezoelectric pressure sensor.
- the embodiments of the present application provide an electronic device interaction method, and the method can be applied to the electronic device.
- the electronic device is provided with a touch sensor and one or more pressure sensors.
- the method may include: the electronic device collects pressing information of the first pressing operation through a touch sensor; the pressing information indicates the operation type and operation position of the first pressing operation, and the operation type is a single-click operation or a long-press operation; Or a plurality of pressure sensors collect the pressing pressure of the first pressing operation; in response to the first pressing operation, the electronic device obtains first scene information of the electronic device, the first scene information indicating the application scene and/or physical scene in which the electronic device is located; The electronic device determines the pressure threshold according to the scene information of the electronic device; the scene information of the electronic device has a corresponding relationship with the pressure threshold; if the pressing pressure collected by the first pressure sensor in one or more pressure sensors is greater than the pressure threshold, the electronic device is based on the operating position A function triggered by a single click operation or a long press operation.
- the electronic device may adjust the volume or adjust the screen brightness in response to a single-click operation (or a long-press operation) in which the pressing pressure is greater than the pressure threshold corresponding to the scene information.
- the electronic device determines whether the pressing pressure of the above-mentioned single-click operation (or long-press operation) is greater than the pressure threshold adopted by the pressure threshold.
- the electronic device can dynamically adjust the pressure threshold according to the scene in which the electronic device is located. For example, the pressure threshold in a scene where false touch is likely to occur is greater than the pressure threshold in a scene where false touch is not likely to occur. Therefore, in scenarios where false touches are prone to occur, a larger pressure threshold can be used to reduce the possibility of false touches, thereby improving the performance of the electronic device to prevent false touches. In addition, in scenarios where false touches are not prone to occur, using a smaller pressure threshold can improve the sensitivity of the electronic device in responding to the user's pressing operation on the preset area.
- an embodiment of the present application provides an electronic device interaction method, and the method can be applied to an electronic device.
- the electronic device is provided with a touch sensor and one or more pressure sensors.
- the method may include: the electronic device collects pressing information of the first pressing operation through a touch sensor, and the pressing information indicates the operation type (such as a double-click operation) and operation position of the first pressing operation; and the electronic device collects the first pressing operation through one or more pressure sensors.
- the pressing pressure of a pressing operation in response to the first pressing operation, the electronic device obtains scene information of the electronic device, the scene information indicating the application scene and/or physical scene in which the electronic device is located; the electronic device determines the pressure according to the scene information of the electronic device Threshold: If the pressing pressure collected by the first pressure sensor of the one or more pressure sensors is greater than the pressure threshold, the electronic device executes the function triggered by the double-click operation according to the above-mentioned operating position.
- the function triggered by the double-click operation includes at least any one of the following functions: lock screen, screenshot, start voice assistant, record screen, and start camera.
- Screen recording refers to recording the content displayed on the display screen of an electronic device.
- the electronic device can perform any of the following functions in response to a double-click operation whose pressing pressure is greater than the pressure threshold corresponding to the scene information: lock screen, screenshot, start voice assistant, record screen, and start camera.
- the electronic device determines whether the pressing pressure of the above-mentioned double-click operation is greater than the pressure threshold, and the pressure threshold adopted by the electronic device is different.
- the electronic device can dynamically adjust the pressure threshold according to the scene in which the electronic device is located. For example, the pressure threshold in a scene where false touch is likely to occur is greater than the pressure threshold in a scene where false touch is not likely to occur. Therefore, in scenarios where false touches are prone to occur, a larger pressure threshold can be used to reduce the possibility of false touches, thereby improving the performance of the electronic device to prevent false touches. In addition, in scenarios where false touches are not prone to occur, using a smaller pressure threshold can improve the sensitivity of the electronic device in responding to the user's pressing operation on the preset area.
- an embodiment of the present application provides an electronic device.
- the electronic device includes a memory and a processor.
- the electronic device is also provided with a touch sensor and one or more pressure sensors.
- the memory, the touch sensor, the first pressure sensor and the processor are coupled.
- the memory is used to store computer program codes, the computer program codes including computer instructions, when the computer instructions are executed by the processor, cause the electronic device to perform the following operations:
- the touch sensor collects the pressing information of the first pressing operation, and the pressing information indicates the operation type and operation position of the first pressing operation.
- the operation type is any one of single-click operation, double-click operation, long-press operation or sliding operation; one or more A pressure sensor collects the pressing pressure of the first pressing operation; in response to the first pressing operation, the scene information of the electronic device is acquired, and the scene information indicates the application scene and/or physical scene in which the electronic device is located;
- the application running in the foreground corresponds to the physical scene corresponding to the movement state of the electronic device;
- the pressure threshold is determined according to the scene information of the electronic device; the scene information of the electronic device corresponds to the pressure threshold; if the first pressure in one or more pressure sensors
- the pressing pressure collected by the sensor is greater than the pressure threshold, and the function corresponding to the pressing information is executed.
- the electronic device when the computer instruction is executed by the processor, the electronic device is caused to perform the following operations: before executing the function corresponding to the pressing information, determine that the operating position is in the preset position where the first pressure sensor is located. Set within the area.
- the above-mentioned electronic device further includes a memory; the scene information of the electronic device and the above-mentioned pressure threshold are stored in the memory. That is, multiple scene information and pressure thresholds corresponding to each scene information are stored in the memory.
- the scene information of the electronic device is one scene information among a plurality of scene information.
- the above electronic device further includes a display screen; when the computer instructions are executed by the processor, the electronic device is caused to perform the following operations: the display screen displays a first interface, and the first interface includes multiple A first option; each first option corresponds to an operation position and a pressing operation of an operation type; in response to the user's selection operation of the second option among the multiple first options, the display screen displays the second interface; the second interface It includes a plurality of third options, and each third option corresponds to a function triggered by the pressing operation; in response to the user's selection operation of the fourth option among the plurality of third options, the pressing operation corresponding to the second option is configured to trigger the second option Functions corresponding to the four options.
- an embodiment of the present application provides an electronic device.
- the electronic device includes a memory and a processor.
- the electronic device is also provided with a touch sensor and one or more pressure sensors.
- the memory, the touch sensor, the first pressure sensor and the processor are coupled.
- the memory is used to store computer program codes, the computer program codes including computer instructions, when the computer instructions are executed by the processor, cause the electronic device to perform the following operations:
- the touch sensor collects the pressing information of the first pressing operation, and the pressing information indicates the operation type and operation position of the first pressing operation.
- the operation type is a single-click operation or a long-press operation; one or more pressure sensors collect the pressing pressure of the first pressing operation
- first scene information of the electronic device is acquired, the first scene information indicates the application scene and/or physical scene in which the electronic device is located; wherein the application scene corresponds to the application running on the electronic device in the foreground, and the physical The scene corresponds to the motion state of the electronic device;
- the pressure threshold is determined according to the scene information of the electronic device; the scene information of the electronic device has a corresponding relationship with the pressure threshold; if the pressing pressure collected by the first pressure sensor in one or more pressure sensors is greater than the pressure Threshold, a function triggered by a single-click operation or a long-press operation according to the operating position; among them, the function triggered by a single-click operation or a long-press operation is: adjust the volume or adjust the screen brightness
- an embodiment of the present application provides an electronic device.
- the electronic device includes a memory and a processor.
- the electronic device is also provided with a touch sensor and one or more pressure sensors.
- the memory, the touch sensor, the first pressure sensor and the processor are coupled.
- the memory is used to store computer program codes, the computer program codes including computer instructions, when the computer instructions are executed by the processor, cause the electronic device to perform the following operations:
- the touch sensor collects the pressing information of the first pressing operation.
- the pressing information indicates the operation type and operation position of the first pressing operation.
- the operation type is a double-tap operation; the pressing pressure of the first pressing operation is collected through one or more pressure sensors;
- One pressing operation obtains the scene information of the electronic device.
- the scene information of the electronic device indicates the application scene and/or physical scene in which the electronic device is located; where the application scene corresponds to the application running on the electronic device in the foreground, and the physical scene corresponds to that of the electronic device.
- the movement state corresponds; the pressure threshold is determined according to the scene information of the electronic device; the scene information of the electronic device has a corresponding relationship with the pressure threshold; if the pressing pressure collected by the first pressure sensor in one or more pressure sensors is greater than the pressure threshold, according to the operating position Perform a function triggered by a double-click operation; among them, the function triggered by a double-click operation includes at least any one of the following functions: lock screen, screenshot, start voice assistant, record screen, and start camera; screen recording refers to recording the display of electronic equipment The content displayed.
- an embodiment of the present application provides a chip system, which is applied to an electronic device provided with a touch sensor and a first pressure sensor.
- the chip system includes an interface circuit and a processor.
- the interface circuit and the processor are interconnected by wires.
- the interface circuit is used to receive a signal from the memory of the electronic device and send the signal to the processor, and the signal includes a computer instruction stored in the memory.
- the processor executes the computer instructions, the electronic device executes the method described in the first aspect and any one of its possible designs.
- an embodiment of the present application provides a computer storage medium, which includes computer instructions.
- the computer instructions When the computer instructions are executed on an electronic device, the electronic device is caused to execute the first aspect and any one of them. It is possible to design the described method.
- embodiments of the present application provide a computer program product, which when the computer program product runs on a computer, causes the computer to execute the method described in the first aspect and any one of its possible designs.
- FIG. 1 is a schematic diagram of a configuration in which touch buttons are set in a preset area of a mobile phone according to an embodiment of the application;
- FIG. 2A is a schematic diagram of another mobile phone with a touch button set in a preset area according to an embodiment of the application; FIG.
- Fig. 2B is a right side view of the mobile phone shown in Fig. 2A;
- FIG. 3 is a schematic diagram of the hardware structure of an electronic device provided by an embodiment of the application.
- FIG. 5 is a flowchart of another electronic device interaction method provided by an embodiment of the application.
- FIG. 6 is a flowchart of another electronic device interaction method provided by an embodiment of the application.
- FIG. 7A is a schematic diagram of a display interface of a mobile phone according to an embodiment of the present application.
- FIG. 7B is a schematic diagram of a display interface of another mobile phone provided by an embodiment of the present application.
- FIG. 7C is a schematic diagram of a display interface of another mobile phone provided by an embodiment of the present application.
- FIG. 7D is a schematic diagram of a display interface of another mobile phone provided by an embodiment of the present application.
- FIG. 8 is a flowchart of an electronic device interaction method provided by an embodiment of this application.
- FIG. 9 is a flowchart of an electronic device interaction method provided by an embodiment of this application.
- FIG. 10 is a schematic structural diagram of an electronic device provided by an embodiment of this application.
- FIG. 11 is a functional block diagram of an interaction method based on the electronic device shown in FIG. 9 according to an embodiment of the application;
- FIG. 12 is a schematic diagram of the structural composition of a chip system provided by an embodiment of the application.
- first and second are only used for descriptive purposes, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of indicated technical features. Therefore, the features defined with “first” and “second” may explicitly or implicitly include one or more of these features.
- first pressure sensor and the second pressure sensor are used to represent two pressure sensors.
- plural means two or more.
- the embodiment of the present application provides an interaction method of an electronic device.
- the method can be applied to electronic devices provided with touch keys.
- the above-mentioned touch button is arranged on the surface of the electronic device, which is different from the position of the display screen of the electronic device.
- the touch button can be arranged on the side frame (such as the left frame or the right frame) of the electronic device.
- the electronic device is provided with a touch button, which specifically refers to: the electronic device is provided with a touch sensor and a pressure sensor.
- the touch sensor and the pressure sensor can be set on the electronic device where physical buttons need to be set.
- the electronic device can use the touch effect of the touch sensor and the piezoelectric effect of the pressure sensor to detect the pressing operation input by the user, so as to realize the related functions of the physical button such as locking the screen and adjusting the volume.
- the physical buttons provided on the surface of the electronic device can be reduced, and the appearance of the electronic device can be more beautiful.
- such keys may also be referred to as virtual keys and other names, which are not limited in the embodiments of the present application.
- the touch button can be arranged on the side frame (such as the left frame or the right frame) of the mobile phone.
- one or more touch sensors and one or more pressure sensors can be arranged on the side frame of the mobile phone.
- FIG. 1 shows the distribution of touch sensors and pressure sensors for realizing touch-press buttons on the right side frame of the mobile phone 10 shown in (a) in FIG. 1.
- the preset area 101 of the right side frame of the mobile phone 10 is provided with a touch sensor and a pressure sensor 110
- the preset area 102 is provided with a touch sensor and a pressure sensor 120.
- the pressure sensor 110 is arranged in the lower layer of the touch sensor in the preset area 101
- the pressure sensor 120 is arranged in the lower layer of the touch sensor in the preset area 102.
- the positions of the pressure sensor 110 and the pressure sensor 120 on the right side frame of the mobile phone 10 can be set with reference to the positions of physical buttons (such as the "volume +" key and the "volume -" key) on the side frame of the mobile phone.
- the pressure sensor 110 may be set at the position of the "volume +" key on the side frame of the mobile phone
- the pressure sensor 120 may be set at the position of the "volume +” key on the side frame of the mobile phone.
- the preset area 101 is the area where the pressure sensor 110 is located
- the preset area 102 is the area where the pressure sensor 120 is located.
- the sizes of the preset area 101 and the preset area 102 are pre-configured in the mobile phone 10.
- the touch sensor provided on the preset area 101 and the preset area 102 may be the same touch sensor.
- a touch sensor (referred to as a touch sensor X) may be provided on the right side frame of the mobile phone 10, and the touch sensor X is provided at least in the preset area 101 and the preset area 102 of the right side frame.
- the touch sensor X can also be arranged on the entire right side frame of the mobile phone 10, which is not limited in the embodiment of the present application.
- the touch sensor X is integrated with the touch sensor in the touch screen of the mobile phone 10, that is, the touch sensor X is the touch sensor in the touch screen of the mobile phone 10. If the touch screen of the mobile phone 10 is a flat screen mobile phone, the touch sensor X is a touch sensor independent of the touch screen of the mobile phone 10, that is, the touch sensor X is different from the touch sensor in the touch screen of the mobile phone 10.
- the touch sensors provided on the preset area 101 and the preset area 102 may be at least two touch sensors.
- the mobile phone 10 is a flat screen mobile phone, and the preset area 101 and the preset area 102 of the right side frame of the mobile phone 10 may be respectively provided with a touch sensor.
- FIG. 2A shows the distribution of touch sensors and pressure sensors for realizing touch-and-press buttons on the right side frame of the mobile phone 20 shown in (a) in FIG. 2A.
- the preset area 201 of the right side frame of the mobile phone 20 is provided with a touch sensor
- the preset area 202 is provided with a touch sensor
- the boundary between the preset area 201 and the preset area 202 is provided with Pressure sensor 210.
- the pressure sensor 210 is arranged in the lower layer of the touch sensor in the preset area 201 and the preset area 202.
- the position of the pressure sensor 210 on the right side frame of the mobile phone 20 can be set with reference to the position of the physical buttons (such as the "volume +" key and the "volume -" key) on the side frame of the mobile phone.
- the pressure sensor 210 may be arranged in the middle of the position of the "volume +" key on the side frame of the mobile phone and the position of the "volume -" key on the side frame of the mobile phone.
- the preset area 201 is on the right side frame of the mobile phone 20 and above the position where the pressure sensor 210 is located.
- the preset area 202 is on the right side frame of the mobile phone 20 and is located below the position where the pressure sensor 210 is located.
- the sizes of the preset area 201 and the preset area 202 are pre-configured in the mobile phone 20.
- the touch sensors provided on the preset area 201 and the preset area 202 may be the same touch sensor (referred to as touch sensor Y).
- touch sensor Y The arrangement method of the touch sensor Y on the right side frame of the mobile phone 20 and the specific form of the touch sensor Y can refer to the detailed description of the touch sensor X in the above-mentioned examples, which will not be repeated here in the embodiment of the present application.
- the touch sensors provided on the preset area 201 and the preset area 202 may be at least two touch sensors.
- the mobile phone 20 is a flat screen mobile phone, and the preset area 201 and the preset area 202 of the right side frame of the mobile phone 20 may be respectively provided with a touch sensor.
- the pressure sensors (such as the pressure sensor 110, the pressure sensor 120, and the pressure sensor 210) in the embodiment of the present application may be piezoelectric pressure sensors.
- the piezoelectric pressure sensor may be a piezoelectric ceramic sensor. Compared with other pressure sensors, the piezoelectric ceramic sensor has higher sensitivity.
- touch buttons can be set on both side frames (such as the left frame and the right frame) of the mobile phone. That is, one or more pressure sensors and one or more touch sensors (not shown in the drawings) can be provided on both the left side frame and the right side frame of the mobile phone to realize the function of touching and pressing the keys.
- the touch buttons provided on the electronic device are located inside the electronic device and are not visible to the user.
- FIG. 2B shows a right side view of the mobile phone 20 shown in (a) of FIG. 2A.
- the touch button is not visible to the user.
- the identification of the touch button on the mobile phone that is visible to the user is set.
- the right side frame of the mobile phone 20 includes a mark 220, which is used to identify the location of the touch button.
- the electronic device may be in different scenarios (including application scenarios and/or physical scenarios).
- the application scenario refers to a scenario in which electronic devices run different applications in the foreground.
- the application scenario corresponds to the application running on the foreground of the electronic device.
- the above-mentioned application scene may be any scene such as a video scene, a game scene, a lock screen scene, or a phone scene.
- the physical scene corresponds to the motion state of the electronic device.
- the physical scene may include one or more scenes such as a driving scene, a running scene, a static scene, or a pocket scene.
- the electronic device when it is placed in a pocket, when it is in a pocket scene, the electronic device is easily impacted by an external force, and the possibility of accidentally touching the touch button is high.
- the electronic device runs a game application in the foreground, when it is in a game scene, the side frame of the electronic device is easily squeezed by the user's finger, and the touch button is more likely to be accidentally touched.
- the electronic device displays a lock screen interface and is placed on the desktop. When it is in a static scene, the possibility that the touch button is accidentally touched is low.
- the electronic device can dynamically adjust the pressure threshold of the pressure sensor according to the scene (including the application scene and/or the physical scene) where the electronic device is located. For example, the electronic device may increase the pressure threshold of the pressure sensor in a scene where accidental touch is prone to occur (that is, a scene where the possibility of a touch button being accidentally touched is high). Since the electronic device will respond to the pressing operation to perform the corresponding function when the pressing pressure of the pressing operation is greater than the pressure threshold; therefore, in scenarios where false touches are prone to occur, increasing the pressure threshold of the pressure sensor can reduce the occurrence of false touches. Possibility, which can improve the anti-mistouch performance of electronic equipment.
- the electronic device can also lower the pressure threshold of the pressure sensor in a scene that is not prone to accidental touch (that is, a scene where the possibility of a touch button being accidentally touched is low). In this way, the sensitivity of the electronic device in response to the user's pressing operation of the touch key can be improved.
- the unit of the pressing pressure and the pressure threshold may be Newton, or cattle for short, and the unit symbol is N.
- G is gravity
- m is mass
- g is a constant
- g is about 9.8N/kg. That is, gravity is proportional to mass. Therefore, in this embodiment, the unit of mass m can also be used as the unit of pressing pressure and pressure threshold.
- the unit of mass m is kilogram (unit symbol is kg) or gram (unit symbol is g).
- the unit of the pressing pressure and the pressure threshold may be grams, and the unit symbol is g.
- the electronic device in the embodiments of the present application may be a mobile phone, a tablet computer, a desktop computer, a laptop, a handheld computer, a notebook computer, an ultra-mobile personal computer (UMPC), a netbook, and a cellular phone.
- the electronic device 300 may include: a system on chip (SOC) unit 310, a storage unit 320, a power supply unit 330, a display touch unit 340, a sensor unit 350, an audio input/output unit 360, The camera unit 370 and the wireless communication unit 380.
- SOC system on chip
- the aforementioned sensor unit 350 may include: a Microcontroller Unit (MCU) 350E, a motor 350F, and sensors such as a pressure sensor 350A, a touch sensor 350B, a proximity sensor 350C, an acceleration sensor 350D, and a gyroscope sensor.
- the sensors in the sensor unit 350 include but are not limited to the above-mentioned sensors.
- the sensor unit 350 may also include sensors such as an air pressure sensor, a magnetic sensor, a distance sensor, a fingerprint sensor, a temperature sensor, an ambient light sensor, and a bone conduction sensor.
- the structure illustrated in this embodiment does not constitute a specific limitation on the electronic device 300.
- the electronic device 300 may include more or fewer components than shown, or combine certain components, or split certain components, or arrange different components.
- the illustrated components can be implemented in hardware, software, or a combination of software and hardware.
- the above-mentioned SOC unit 310 is integrated with a processor of an electronic device, and the processor may include one or more processing units.
- the processor may include an application processor (AP), a modem processor, a graphics processing unit (GPU), an image signal processor (ISP), a controller, and a memory , Video codec, digital signal processor (digital signal processor, DSP), baseband processor, and/or neural-network processing unit (NPU), etc.
- the controller may be the nerve center and command center of the electronic device 300.
- the controller can generate operation control signals according to the instruction operation code and timing signals to complete the control of fetching and executing instructions.
- a memory may also be provided in the above-mentioned processor to store instructions and data.
- the memory in the processor is a cache memory.
- the memory can store instructions or data that the processor has just used or recycled. If the processor needs to use the instruction or data again, it can be called directly from the memory. It avoids repeated access and reduces the waiting time of the processor, thus improving the efficiency of the system.
- the aforementioned power supply unit 330 may include: a battery, a charging management module, and a power management module.
- the charging management module is used to receive charging input from the charger.
- the charger can be a wireless charger or a wired charger. While the charging management module charges the battery, it can also supply power to the electronic device through the power management module.
- the power management module is used to connect the battery, the charging management module and the SOC unit 310.
- the power management module receives input from the battery and/or charging management module, and supplies power to the SOC unit 310, MCU 350E, storage unit (ie, memory) 320, display touch unit 340, camera unit 370, and wireless communication unit 380.
- the electronic device 300 implements a display function through a GPU, a display touch unit 340, and an application processor.
- the GPU is an image processing microprocessor, which is connected to the display touch unit 340 and the application processor.
- the GPU is used to perform mathematical and geometric calculations for graphics rendering.
- the aforementioned processor may include one or more GPUs, which execute program instructions to generate or change display information.
- the display touch unit 340 may include a display screen, which is used to display images, videos, and the like.
- the display screen may include a display panel.
- the display touch unit 340 may also be provided with a touch sensor 350B, which is also called a “touch panel”.
- the above-mentioned display touch unit 340 may be a touch screen composed of a touch sensor 350B and a display screen, which is also called a “touch screen”.
- the above-mentioned touch sensor 350B is used to detect a touch operation acting on or near it.
- the touch sensor can pass the detected touch operation to the application processor to determine the type of touch event.
- the visual output related to the touch operation can be provided through the display screen.
- the touch sensor 350B may also be disposed on the surface of the electronic device 300, which is different from the position of the display screen.
- a touch sensor is provided on the right side frame of the mobile phone.
- both the left side frame and the right side frame of the mobile phone may be provided with a touch sensor (not shown in the drawings) for realizing the function of pressing the button.
- the electronic device 300 may include one or more touch sensors 350B.
- the electronic device 300 may include a touch sensor 350B-1 and a touch sensor 350B-2.
- the touch sensor 350B-1 may be disposed on the display screen, and the touch sensor 350B-2 may be disposed on the side frame of the electronic device 300.
- the aforementioned touch sensor 350B-1 and touch sensor 350B-2 may be one touch sensor.
- the touch sensor 350B-1 and the touch sensor 350B-2 are one touch sensor.
- the electronic device 300 is provided with one or more pressure sensors 350A.
- the pressure sensor 350A is used to sense the pressure signal and can convert the pressure signal into an electrical signal.
- the above-mentioned display screen may be provided with a pressure sensor 350A.
- the pressure sensor 350A can also be arranged on the surface of the electronic device 300, which is different from the position of the display screen.
- the right side frame of the mobile phone 10 is provided with a pressure sensor 110 and a pressure sensor 120.
- the right side frame of the mobile phone 20 is provided with a pressure sensor 210.
- the pressure sensor 350A in the embodiment of the present application may also be a piezoelectric pressure sensor.
- the piezoelectric pressure sensor may be a piezoelectric ceramic sensor. Compared with other pressure sensors, piezoelectric ceramic sensors have higher sensitivity.
- the above-mentioned touch sensor and pressure sensor can work together as a touch button instead of physical buttons (such as a physical volume key or a physical lock screen key, etc.) to provide users with various functions to control the phone (such as turning up the volume) Or lock screen, etc.).
- physical buttons such as a physical volume key or a physical lock screen key, etc.
- the MCU 350E in the sensor unit 350 is connected to various devices in the sensor unit 350 (such as a pressure sensor 350A, a touch sensor 350B, a proximity light sensor 350C, an acceleration sensor 305D, a motor 350F, a gyroscope sensor, etc.).
- the MCU 350E is also connected to the SOC unit 310.
- the MCU 350E may receive the parameters collected by the various sensors described above, process the received parameters, and then send a signal to the SOC unit 310 so that the SOC unit 310 triggers each device of the electronic device 100 to perform corresponding functions.
- the pressure sensor 350A can collect the The pressing pressure of the pressing operation (or called the pressing force).
- the MCU 350E can receive the pressing information collected by the touch sensor 350B and the pressing pressure collected by the pressure sensor 350A; then determine whether the pressing pressure is greater than the pressure threshold of the pressure sensor 350A; if the pressing pressure is greater than the pressure threshold, it can determine that the pressing operation is Effective pressing operation.
- the MCU 350E can trigger the SOC unit 310 to execute the function corresponding to the pressing information in response to the effective pressing operation.
- the above-mentioned pressing information may indicate the operation type and operation position of the pressing operation.
- the MCU 350E can dynamically adjust the pressure threshold of the pressure sensor 350A.
- the MCU 350E can dynamically adjust the pressure threshold of the pressure sensor 350A according to the physical scene and application scene of the electronic device 300, and the operation type of the pressing operation, etc.
- the operation type of the pressing operation is any one of long-press, single-click, double-click, or sliding.
- the acceleration sensor 350D can detect the magnitude of the acceleration of the electronic device 300 in various directions (generally three axes). When the electronic device 300 is stationary, the magnitude and direction of gravity can be detected. It can also be used to identify the posture of electronic devices, and can be used in applications such as horizontal and vertical screen switching, pedometers, and so on. In the embodiment of the present application, the acceleration sensor 350D may be used to collect motion parameters of the electronic device 300 to determine the physical scene of the electronic device 300. For example, as shown in (a) in FIG. 1 or (a) in FIG. 2A, an acceleration sensor is provided in the mobile phone.
- the proximity light sensor 350C may include, for example, a light emitting diode (LED) and a light detector, such as a photodiode.
- the light emitting diode may be an infrared light emitting diode.
- the electronic device 300 emits infrared light to the outside through the light emitting diode.
- the electronic device 300 uses a photodiode to detect infrared reflected light from nearby objects. When sufficient reflected light is detected, it can be determined that there is an object near the electronic device 300.
- the light parameters collected by the proximity light sensor 350C are used to determine the physical scene of the electronic device 300. For example, as shown in (a) in FIG. 1 or (a) in FIG.
- a proximity light sensor is provided in a mobile phone.
- the ambient light sensor is used to sense the brightness of the ambient light.
- the electronic device 300 can adaptively adjust the brightness of the display screen 194 according to the perceived brightness of the ambient light.
- the ambient light sensor can also cooperate with the proximity light sensor 350C to detect whether the electronic device 300 is in a pocket (that is, to determine the physical scene of the electronic device 300) to prevent accidental touch.
- the gyroscope sensor can be used to determine the movement posture of the electronic device 300.
- the air pressure sensor is used to measure air pressure.
- the magnetic sensor includes a Hall sensor.
- Distance sensor used to measure distance.
- the electronic device 300 can measure the distance by infrared or laser.
- Motor 350F can generate vibration notifications.
- the motor 350F can be used for vibrating notification of incoming calls, and can also be used for touch/press vibration feedback.
- touch/press operations for different applications can correspond to different vibration feedback effects.
- Acting on touch/pressing operations in different areas of the display screen the motor 350F can also correspond to different vibration feedback effects.
- Different application scenarios for example: time reminding, receiving information, alarm clock, games, etc.
- the touch/press vibration feedback effect can also support customization.
- the pressing operation acting on the preset area shown in (b) in FIG. 1 or (b) in FIG. 2A can be Corresponding to different vibration feedback effects.
- the pressing operations of different operation types that act on the above-mentioned preset area may also correspond to different vibration feedback effects.
- the electronic device 300 may also include a mobile communication unit.
- the wireless communication function of the electronic device 300 can be implemented by an antenna, a mobile communication unit, a wireless communication unit 380, a modem processor, a baseband processor, and the like.
- the mobile communication unit can provide a wireless communication solution including 2G/3G/4G/5G and the like applied to the electronic device 300.
- the wireless communication unit 380 can provide applications on the electronic device 300 including wireless local area networks (WLAN) (such as wireless fidelity (Wi-Fi) networks), bluetooth (BT), and global navigation satellites.
- WLAN wireless local area networks
- BT wireless fidelity
- GNSS global navigation satellite system
- FM frequency modulation
- FM near field communication technology
- NFC near field communication technology
- infrared technology infrared, IR
- the electronic device 300 can implement a shooting function through an ISP, a camera unit 390, a video codec, a GPU, a display touch unit 340, and an application processor.
- the ISP is used to process the data fed back from the camera unit 390. For example, when taking a picture, the shutter is opened, the light is transmitted to the photosensitive element of the camera through the lens, the light signal is converted into an electrical signal, and the photosensitive element of the camera transmits the electrical signal to the ISP for processing and is converted into an image visible to the naked eye. ISP can also optimize the image noise, brightness, skin tone, and optimize the exposure, color temperature and other parameters of the shooting scene. In some embodiments, the ISP may be provided in the camera unit 390.
- the camera unit 390 may include one or more cameras, such as a front camera and a rear camera.
- the camera is used to capture still images or videos.
- the object generates an optical image through the lens and is projected to the photosensitive element.
- the photosensitive element converts the optical signal into an electrical signal, and then transfers the electrical signal to the ISP to convert it into a digital image signal.
- ISP outputs digital image signals to DSP for processing.
- DSP converts digital image signals into standard RGB, YUV and other formats of image signals.
- the storage unit 320 may be used to store computer executable program code, the executable program code including instructions.
- the storage unit 320 may be integrated in the SOC unit 310 for implementation. Alternatively, as shown in FIG. 3, the storage unit 320 may be a device independent of the SOC unit 310.
- the processor in the SOC unit 310 executes various functional applications and data processing of the electronic device 300 by running instructions stored in the storage unit 320. For example, in the embodiment of the present application, the processor may execute instructions stored in the storage unit 320, and the storage unit 320 may include a storage program area and a storage data area.
- the storage program area can store an operating system, at least one application program (such as a sound playback function, an image playback function, etc.) required by at least one function.
- the storage data area can store data (such as audio data, phone book, etc.) created during the use of the electronic device 300.
- the storage unit 320 may include a high-speed random access memory, and may also include a non-volatile memory, such as at least one magnetic disk storage device, a flash memory device, a universal flash storage (UFS), and the like.
- the electronic device 300 may implement audio functions through the audio input/output unit 360 and an application processor.
- the audio input/output unit 360 may include: an audio module, a speaker, a receiver, a microphone and a headphone interface, and so on.
- the audio module is used to convert digital audio information into analog audio signal output, and also used to convert analog audio input into digital audio signal.
- Loudspeakers also called “speakers”, are used to convert audio electrical signals into sound signals.
- the receiver also known as the "handset”, is used to convert audio electrical signals into sound signals.
- Microphone also known as "microphone” or “microphone” is used to convert sound signals into electrical signals.
- the headphone jack is used to connect wired headphones.
- the components in the electronic device 300 include but are not limited to the above-mentioned components.
- the electronic device 300 may also include an indicator (such as an indicator light), a subscriber identification module (SIM) card interface, and the like.
- the above indicator is used to indicate the charging status, notification or unreceived call, etc. Detailed descriptions of other components of the electronic device 300 will not be repeated here in the embodiment of the present application.
- the methods in the following embodiments can all be implemented in the electronic device 300 having the above-mentioned hardware structure.
- the above-mentioned electronic device 300 is a mobile phone as an example to describe the method of the embodiment of the present application.
- the embodiment of the present application provides an electronic device interaction method, which can be applied to an electronic device provided with a touch sensor and one or more pressure sensors.
- the touch sensor and one or more pressure sensors can be arranged on the surface of the electronic device.
- the touch sensor and one or more pressure sensors may be arranged on the side of the electronic device (such as the left side frame or the right side frame).
- the electronic device can use the touch effect of the touch sensor and the piezoelectric effect of the one or more pressure sensors to detect the pressing operation input by the user, so as to realize the related functions of the physical button such as locking the screen and adjusting the volume.
- the above-mentioned electronic device is the mobile phone 20 shown in (a) of FIG. 2A as an example to describe the method of the embodiment of the present application.
- the preset area 201 and the preset area 202 of the mobile phone 20 are provided with touch sensors, and the boundary between the preset area 201 and the preset area 202 is provided with Pressure sensor 210.
- the preset area where the pressure sensor 210 is located may include a preset area 201 and a preset area 202.
- the same touch sensor (referred to as touch sensor Y) is taken as an example in which the touch sensors provided on the preset area 201 and the preset area 202 are used to describe the method of the example of the present application.
- the interaction method of the electronic device provided in the embodiment of the present application may include S401-S406.
- the mobile phone 20 collects pressing information of the first pressing operation through the touch sensor Y.
- the pressing information indicates the operation type and operation position of the first pressing operation.
- the above-mentioned operation type may be any one of a single-click operation, a double-click operation, a long-press operation, or a sliding operation.
- the above-mentioned operation position is the position where the first pressing operation acts on the mobile phone 20.
- the mobile phone 20 collects the pressing pressure of the first pressing operation through the pressure sensor 210.
- the touch sensor Y can collect the pressing information of the first pressing operation
- the pressure sensor 210 can collect The pressing pressure of the first pressing operation.
- the pressing pressure of the first pressing operation may be 43 g.
- the pressure sensor 210 in the embodiment of the present application may be a piezoelectric ceramic sensor. Compared with other pressure sensors, the piezoelectric ceramic sensor has higher sensitivity; therefore, even if the pressing pressure of the first pressing operation is small, the pressure sensor 210 can collect the pressing pressure. In this way, it is easy for the user to accidentally touch the touch button.
- the mobile phone 20 can dynamically adjust the pressure threshold of the pressure sensor 210 according to the scene (including the application scene and/or the physical scene) where the mobile phone 20 is located. Specifically, after S401 and S402, the method in the embodiment of the present application may include S403-S406.
- the MCU obtains scene information of the mobile phone 20.
- the scene information is used to indicate the application scene and/or physical scene in which the mobile phone 20 is located.
- the MCU may obtain the scene information of the mobile phone 20 in response to the touch sensor Y detecting the first pressing operation, and/or the pressure sensor 210 detecting the first pressing operation.
- the MCU may determine the application scenario in which the mobile phone 20 is located according to the applications that the mobile phone 20 runs in the foreground. For example, suppose that when the pressure sensor 210 detects the aforementioned first pressing operation, the mobile phone 20 runs a video application in the foreground; then, the application scene in which the mobile phone 20 is located is a video scene. For another example, suppose that when the pressure sensor 210 detects the aforementioned first pressing operation, the mobile phone 20 runs a game application in the foreground; then, the application scene in which the mobile phone 20 is located is a game scene. For another example, suppose that when the pressure sensor 210 detects the aforementioned first pressing operation, the mobile phone 20 runs a phone application in the foreground; then, the application scene in which the mobile phone 20 is located is a phone scene.
- the MCU can determine the physical scene of the mobile phone 20 based on data collected by one or more devices such as the camera, proximity light sensor, acceleration sensor, and ambient light sensor of the mobile phone 20.
- the aforementioned physical scene may include one or more scenes such as a driving scene, a running scene, a static scene, or a pocket scene.
- the MCU in response to the aforementioned first pressing operation, can activate one or more devices such as the aforementioned camera, proximity light sensor, acceleration sensor, and ambient light sensor to collect data for determining the physical scene of the mobile phone 20.
- the aforementioned proximity light sensor, acceleration sensor, and ambient light sensor can be activated to collect corresponding data when the mobile phone 20 is turned on; in response to the first pressing operation, the MCU can collect data according to the proximity light sensor, acceleration sensor, and ambient light sensor. Data to determine the physical scene in which the mobile phone 20 is located.
- the aforementioned camera is activated by the MCU in response to the aforementioned first pressing operation.
- the MCU can detect whether the mobile phone 20 is in a pocket and whether it is in a pocket scene according to the above-mentioned proximity light sensor and data collected by the proximity light sensor.
- the MCU can determine that the mobile phone 20 is in a driving scene or a running scene according to the motion acceleration of the mobile phone 20 collected by the acceleration sensor. Wherein, when the mobile phone 20 is in a driving scene and a running scene, the motion acceleration of the mobile phone 20 is different.
- S404 The MCU determines a pressure threshold according to the scene information of the mobile phone 20.
- the mobile phone 20 may set different pressure thresholds for the pressure sensor 210 for different scenarios.
- Table 1 shows a table of correspondence between a scenario and a pressure threshold provided in an embodiment of the present application.
- the pressure threshold may be divided into multiple levels, such as the four levels shown in Table 1.
- the pressure threshold of each level corresponds to a different pressure value.
- the four-stage pressure threshold shown in Table 1 is greater than the third-stage pressure threshold
- the third-stage pressure threshold is greater than the second-stage pressure threshold
- the second-stage pressure threshold is greater than the first-stage pressure threshold.
- the first-stage pressure threshold shown in Table 1 may be 35g
- the second-stage pressure threshold may be 40g
- the third-stage pressure threshold may be 50g
- the fourth-stage pressure threshold may be 60g.
- the pressure threshold includes but is not limited to the foregoing four-level pressure threshold
- the value of the four-level pressure threshold includes, but is not limited to, the pressure value in the foregoing example.
- the above-mentioned first pressure threshold is a first-level pressure threshold
- the above-mentioned first pressure threshold is a first-level pressure threshold
- the above-mentioned first pressure threshold is a first-level pressure threshold
- the pressure threshold of the pressure sensor 210 is a three-level pressure threshold
- the above-mentioned first pressure threshold is a four-level pressure threshold.
- the corresponding relationship between the above application scenarios and/or physical scenarios and the pressure threshold can be based on the statistics of a large number of mobile phones 20 in different scenarios (application scenarios and/or physical scenarios) during daily use.
- the pressing pressure of 20 is determined.
- the touch-press button of the mobile phone 20 is more likely to be accidentally touched; therefore, a larger pressure threshold can be set for these scenarios.
- the possibility of accidentally touching the preset area 200 of the mobile phone 20 is low; therefore, a smaller pressure threshold can be set for these scenarios.
- the correspondence between the aforementioned application scenarios and/or physical scenarios and the pressure threshold may also be set by the user in the mobile phone 20.
- the mobile phone 20 For the method for the mobile phone 20 to receive the pressure threshold corresponding to each scene set by the user, reference may be made to the related description in the conventional technology, which will not be repeated here in the embodiment of the present application.
- the memory of the mobile phone 20 stores multiple scene information and a pressure threshold corresponding to each scene information.
- the memory of the mobile phone 20 may store the corresponding relationship between the scene shown in Table 1 (that is, the scene indicated by the scene information) and the pressure threshold.
- the pressure threshold is the pressure threshold of the pressure sensor 210 in the scene indicated by the scene information of the electronic device. For example, suppose that the scene information of the mobile phone 20 indicates that the application scene of the mobile phone 20 is an audio scene, and the physical scene is a running scene. Then, the MCU can find that the pressure threshold is the first-level pressure threshold from Table 1 stored in the memory.
- the MCU of the mobile phone 20 determines whether the pressing pressure collected by the pressure sensor 210 is greater than a pressure threshold.
- the MCU may execute S406. For example, if the pressing pressure collected by the pressure sensor 210 (for example, 43g) is greater than the aforementioned pressure threshold (for example, 40g); the mobile phone 20 may execute S406. If the pressing pressure collected by the pressure sensor 210 is less than or equal to the pressure threshold, the MCU may determine that the first pressing operation is a false touch operation, the MCU may ignore the first pressing operation, and the MCU will not respond to the first pressing operation.
- the pressing pressure collected by the pressure sensor 210 for example, 43g
- the aforementioned pressure threshold for example, 40g
- the pressure sensor 210 may periodically (or real-time) collect the pressing pressure, and transmit the collected pressing pressure to the processor (such as the MCU) of the mobile phone 20.
- the processor such as the MCU
- the pressure sensor 210 may transmit a pressing pressure to the MCU; if the pressing pressure is greater than the pressure threshold, the mobile phone 20 can perform a corresponding function.
- the pressure sensor 210 may transmit two pressing pressures to the MCU; if the pressing pressure transmitted at any one time is greater than the pressure threshold, the mobile phone 20 may perform a corresponding function.
- the MCU of the mobile phone 20 can trigger the mobile phone 20 to perform the corresponding function. .
- the mobile phone 20 executes the function corresponding to the aforementioned pressing information.
- the above-mentioned pressing information may be used to determine that the first pressing operation triggers the function executed by the mobile phone 20.
- the above function may be any of the functions of increasing the volume, decreasing the volume, increasing the brightness of the screen, decreasing the brightness of the screen, locking the screen with the power key, taking a photo, or calling out the smart key.
- the operation type and operation position indicated by the aforementioned pressing information are used to determine the function executed by the mobile phone 20 triggered by the first pressing operation.
- pressing operations with the same operation type but different operation positions are used to trigger the mobile phone 20 to perform different functions.
- Pressing operations with the same operation position but different operation types are used to trigger the mobile phone 20 to perform different functions.
- the operation position and operation type of the first pressing operation determine the function executed by the mobile phone 20 triggered by the first pressing operation.
- pressing operations of different operation types trigger functions performed by the mobile phone 20, or pressing operations of different operation types and operating positions trigger functions performed by the mobile phone 20, which can be pre-configured before the mobile phone 20 leaves the factory.
- Mobile phone 20 In one case, pressing operations of different operation types trigger functions performed by the mobile phone 20, or pressing operations of different operation types and operating positions trigger functions performed by the mobile phone 20, which can be pre-configured before the mobile phone 20 leaves the factory. Mobile phone 20.
- pressing operations of different operation types trigger functions executed by the mobile phone 20, or pressing operations of different operation types and operating positions trigger functions executed by the mobile phone 20, which may also be set in the mobile phone 20 by the user.
- the mobile phone 20 receives the user's settings and determines the specific method of pressing operations of different operation types (or pressing operations of different operation types and operating positions) to trigger the functions executed by the mobile phone 20.
- the mobile phone 20 receives the user's settings and determines the specific method of pressing operations of different operation types (or pressing operations of different operation types and operating positions) to trigger the functions executed by the mobile phone 20.
- the MCU may first determine the operation type and operation position of the first pressing operation according to the pressing information of the first touch operation; then, the mobile phone 20 may execute the function corresponding to the operation type and operation position.
- the memory of the mobile phone 20 may store the above-mentioned operation type and the corresponding relationship between the operation position and function.
- Table 2 shows a configuration information table provided by an embodiment of the present application.
- the configuration information table includes the correspondence between operation types, operation positions, and functions.
- the aforementioned position 1 may be the preset area 201
- the position 2 may be the preset area 202.
- the MCU determines that the operation type of the first pressing operation is a click operation, and the operation position is position 1. Then, the MCU can query Table 2 to determine that the first pressing operation is used to trigger the mobile phone 20 to increase the volume. In response to the first pressing operation, the MCU can trigger the mobile phone 20 to increase the volume.
- the embodiment of the present application combines the hardware architecture of the mobile phone 20 shown in FIG. 3 to describe a specific method for the MCU (MCU 350E shown in FIG. 3) to trigger the mobile phone 20 to execute the function indicated by the pressing information.
- the method for the MCU 350E to trigger the mobile phone 20 to execute the function corresponding to the pressing information may include: the MCU 350E shown in FIG. 3 determines the function corresponding to the pressing information; and the MCU 350E sends to the SOC unit 310 for instructing the mobile phone 20 to execute the function.
- a function request or instruction is used to request or instruct the SOC unit 310 to trigger one or more devices of the mobile phone 20 to perform the function.
- the method for the MCU 350E to trigger the mobile phone 20 to execute the function corresponding to the pressing information may include: the MCU 350E shown in FIG. 3 sends the pressing information to the SOC unit 310; the SOC unit 310 determines the function corresponding to the pressing information; SOC The unit 310 triggers one or more devices of the mobile phone 20 to perform this function.
- the pressure thresholds used by the mobile phone 20 to determine whether the pressing pressure of the first pressing operation is greater than the pressure threshold are different.
- the mobile phone 20 can dynamically adjust the pressure threshold of the pressure sensor 210 according to the scene in which the mobile phone 20 is located. For example, the pressure threshold of the pressure sensor 210 in a scene prone to false touches is greater than the pressure threshold of the pressure sensor 210 in a scene where false touches are not prone to occur.
- the mobile phone 20 will respond to the first pressing operation to perform the corresponding function only when the pressing pressure of the first pressing operation is greater than the pressure threshold; therefore, in scenarios where false touches are prone to occur, a larger pressure threshold is used.
- the possibility of accidental touches can be reduced, so that the performance of preventing accidental touches of the mobile phone 20 can be improved.
- using a smaller pressure threshold can improve the sensitivity of the mobile phone 20 in responding to the user's pressing operation on the preset area.
- the mobile phone 20 responds to the user's pressing operation in the preset area 201 or the preset area 202 to execute the function triggered by the pressing operation. If the position of the pressing operation received by the mobile phone 20 is not within the preset area 201 and the preset area 202, then the mobile phone 20 will not respond to the pressing operation.
- the mobile phone 20 may execute S501.
- the foregoing S406 shown in FIG. 4 may include S502-S504.
- S501 The MCU determines whether the operation position indicated by the pressing information is within the preset area 201 or the preset area 202.
- the MCU may execute S502. If the position of the first pressing operation is not in the preset area 201 and not in the preset area 202, the MCU can determine that the first pressing operation is a false touch operation, and the MCU will not respond to the first pressing operation, nor will it trigger The mobile phone 20 performs the corresponding function.
- the first pressing operation may act on the preset area 201 or the preset area 202.
- the pressing operation acting on the preset area 201 and the pressing operation acting on the preset area 202 can trigger the mobile phone 20 to perform different functions.
- the position 1 shown in Table 2 is the preset area 201 shown in (b) of FIG. 2A
- the position 2 is the preset area 202.
- a single click operation in the preset area 201 can trigger the mobile phone 20 to increase the volume
- a single click operation in the preset area 202 can trigger the mobile phone 20 to lower the volume.
- the MCU can determine that the first pressing operation is within the preset area 201 or the preset area 202.
- S502 The MCU determines that the operation position indicated by the pressing information is in the preset area 201 or in the preset area 202.
- the MCU may execute S503; if the operating position of the first pressing operation is within the preset area 202, the MCU may execute S504.
- S503 The mobile phone 20 performs a pressing operation of the type of operation indicated by the pressing information on the function triggered by the preset area 201.
- the mobile phone 20 performs a pressing operation of the type of operation indicated by the pressing information on the function triggered by the preset area 202.
- the preset area 201 may be position 1 in Table 2, and the preset area 202 may be position 2 in Table 2.
- the configuration information table of operation type, operation position and function shown in Table 2 can be replaced with Table 3.
- the MCU determines that the first pressing operation is a single-click operation. Then, after S502, if the MCU determines that the operating position of the first pressing operation is within the preset area 201; from Table 3, it can be seen that the MCU can execute S503 to trigger the mobile phone 20 to increase the volume. After S502, if the MCU determines that the operating position of the first pressing operation is within the preset area 202; from Table 3, it can be seen that the MCU can execute S504 to trigger the mobile phone 20 to lower the volume.
- the mobile phone 20 can judge the pressing by the double determination conditions of "whether the pressing pressure of the pressing operation is greater than the pressure threshold corresponding to the scene of the mobile phone 20" and "whether the pressing operation is within the first preset area” Whether the operation is a valid pressing operation. In this way, effective pressing operations and false touch operations can be more accurately recognized, and false touches to the touch keys of the mobile phone 20 can be effectively reduced, and the false touch prevention performance of the mobile phone 20 can be improved.
- the method for the mobile phone 20 to receive the user's settings and configure the function of the touch button is described here.
- the mobile phone 20 can provide the user with a service of setting the function of touching and pressing the button through the UI.
- the method in the embodiment of the present application may further include S601-S603.
- the method in this embodiment of the present application may further include S601-S603.
- the mobile phone 20 displays a first interface on the display screen.
- the first interface includes a plurality of first options. Each first option corresponds to an operation position and a pressing operation of an operation type.
- the mobile phone 20 can display the above-mentioned first interface in response to a user operation.
- the user operation may be a user's click operation (such as a click operation) on an option used to trigger the mobile phone 20 to display the first interface.
- the setting interface of the mobile phone 20 may include an option for triggering the mobile phone 20 to display the aforementioned first interface.
- the setting interface 701 of the mobile phone 20 includes a "virtual button” option 702 (may also be referred to as a "touch button” option).
- the mobile phone 20 can display the first interface 703 shown in (b) of FIG. 7A.
- the first interface 703 includes multiple first options, such as "virtual button basic function” option 704, "upper virtual button double-click function” option 705, and “lower virtual button double-click function” option 706.
- the "virtual button basic function” option 704 corresponds to the preset area 201 and the preset area 202
- the operation type is a pressing operation of a single click operation.
- the "double-click function on virtual key” option 705 corresponds to the operation position of the preset area 201, and the operation type is a pressing operation of a double-click operation.
- the “double-click function of lower virtual key” option 706 corresponds to the operation position of the preset area 202, and the operation type is a pressing operation of a double-click operation.
- each first option is used to set the function triggered by the pressing operation corresponding to the operation position and operation type of the first option.
- the "virtual button basic function” option 704 is used to set the function triggered by a single click operation on the preset area 201 and the preset area 202
- " "Upper virtual button double-click function” option 705 is used to set the function to be triggered by a double-click operation acting on the preset area 201
- “lower virtual button double-click function” option 706 is used to set the function triggered by a double-click operation acting on the preset area 202 .
- the mobile phone 20 may display a drop-down menu (or called a notification bar) in response to a sliding operation input by the user down the top of the display screen.
- the drop-down menu includes the aforementioned options for triggering the mobile phone 20 to display the first interface.
- the mobile phone 20 displays a home screen (Home Screen).
- the mobile phone 20 can display the pull-down menu 709 shown in (b) in FIG. 7B.
- the drop-down menu 709 includes a “virtual button” option 710 (also referred to as a “touch button” option), a “WLAN” option, a “Bluetooth” option, and a “mobile data” option.
- the “virtual button” option 710 is used to trigger the mobile phone 20 to display the first interface.
- the mobile phone 20 may display the first interface 703 shown in (b) of FIG. 7A.
- the name of the option used to trigger the mobile phone 20 to display the first interface includes, but is not limited to, the “virtual key” option.
- the option may also be referred to as the “key function” option, which is not limited in the embodiment of the present application.
- the mobile phone 20 In response to the user's selection operation of the second option among the multiple first options, the mobile phone 20 displays a second interface on the display screen.
- the second interface includes a plurality of third options. Each third option corresponds to a function triggered by the pressing operation.
- the second option is the first option selected by the user among the multiple first options.
- the user's selection operation of the above-mentioned second option may be any operation such as a single-click operation, a double-click operation, or a long-press operation.
- the mobile phone 20 configures the pressing operation corresponding to the second option to trigger the function corresponding to the fourth option.
- the fourth option is the third option selected by the user among the plurality of third options.
- the user's selection operation of the fourth option may be any operation such as a single-click operation, a double-click operation, or a long-press operation.
- the display screen of the mobile phone 20 may display the display shown in FIG. 7C.
- the second interface 711 includes a “voice assistant” option, a “snapshot” option, a “screenshot” option, and a “screen recording” option.
- the processor of the mobile phone 20 may configure a double-click operation on the preset area 201 to trigger the mobile phone 20 to start the voice assistant.
- the processor of the mobile phone 20 may configure a double-tap operation on the preset area 201 to trigger the mobile phone 20 to turn on the camera. To acquire images.
- the processor of the mobile phone 20 may configure a double-click operation on the preset area 201 to trigger the mobile phone 20 to start recording What the display shows.
- the display screen of the mobile phone 20 may display the second option shown in FIG. 7D Two interface 712.
- the second interface 712 includes a "volume adjustment” option and a "brightness adjustment” option.
- the processor of the mobile phone 20 can be configured to act on the preset area 201 and the preset area 202. The operation is used to trigger the mobile phone 20 to adjust the volume.
- the processor of the mobile phone 20 can automatically configure the single-click operation on the preset area 201 to increase the volume, and configure the single-click operation on the preset area 202 to lower the volume.
- the processor of the mobile phone 20 can automatically configure the single-click operation acting on the preset area 201 to increase the display. Screen brightness, a single click operation on the preset area 202 is used to decrease the brightness of the display screen.
- the mobile phone 20 can execute S601-S603 to configure functions triggered by pressing operations of different operating positions and operating types. Then, the processor of the mobile phone 20 can store the configuration information table shown in Table 2 or Table 3 in the memory, so that when the MCU of the mobile phone 20 executes S406, it can query the function indicated by the pressing information from the configuration information table. And trigger the mobile phone 20 to perform this function.
- the above-mentioned electronic device is the mobile phone 10 shown in (a) in FIG. 1 as an example to describe the method of the embodiment of the present application.
- the preset area 101 (referred to as the first preset area) of the mobile phone 10 is provided with a touch sensor and a pressure sensor 110, and the preset area 102 (referred to as A touch sensor and a pressure sensor 120 are provided for the second preset area).
- the same touch sensor (referred to as the touch sensor X) is taken as an example in which the touch sensors provided on the preset area 101 and the preset area 102 are used to describe the method of the example of the present application.
- the interaction method of the electronic device provided in the embodiment of the present application may include S801-S807.
- the mobile phone 10 collects the pressing information of the first pressing operation through the touch sensor X.
- the pressing information indicates the operation type and operation position of the first pressing operation.
- the mobile phone 10 collects the pressing pressure of the first pressing operation through the pressure sensor 110.
- S803 The mobile phone 10 collects the pressing pressure of the first pressing operation through the pressure sensor 120.
- the touch sensor X can collect the pressing information of the first pressing operation
- the pressure sensor 110 and the pressure sensor All 120 may be able to collect the pressing pressure of the first pressing operation.
- the magnitude of the pressing pressure collected by the pressure sensor 110 and the pressure sensor 120 may be different.
- the pressure sensor 110 is disposed in the preset area 101, and the pressure sensor 120 is disposed in the preset area 102.
- the operating position of the first pressing operation may be close to the position where the pressure sensor 110 is located, or may be close to the position where the pressure sensor 120 is located.
- the operating position of the first pressing operation may be in the preset area 101 or in the preset area 102. Therefore, the magnitude of the pressing pressure collected by the pressure sensor 110 and the pressure sensor 120 may be different.
- the MCU obtains scene information of the mobile phone 10.
- the scene information is used to indicate the application scene and/or physical scene in which the mobile phone 10 is located.
- the MCU determines the pressure threshold according to the scene information of the mobile phone 10 (that is, the first scene information).
- the MCU determines whether the pressing pressure collected by the pressure sensor 110 and the pressing pressure collected by the pressure sensor 120 are greater than a pressure threshold.
- the MCU may execute S807. For example, if the pressing pressure (such as 43g) collected by the pressure sensor 110 is greater than the aforementioned pressure threshold (such as 40g), the pressing pressure (such as 39g) collected by the pressure sensor 120 is less than the aforementioned pressure threshold (such as 40g); the mobile phone 10 may execute S807. Alternatively, if the pressing pressure (such as 43g) collected by the pressure sensor 110 is greater than the aforementioned pressure threshold (such as 40g), the pressing pressure (such as 42g) collected by the pressure sensor 120 is also greater than the pressure threshold (such as 40g); the mobile phone 10 may execute S807.
- the MCU can determine that the first pressing operation is a false touch operation, and the MCU can ignore the first pressing operation, and the MCU will not respond to the first pressing operating.
- the mobile phone 10 executes the function corresponding to the aforementioned pressing information.
- the mobile phone 10 will respond to the first pressing operation to perform the corresponding function only when the pressing pressure of the first pressing operation is greater than the pressure threshold; therefore, in scenarios where false touches are prone to occur, a higher pressure is used.
- the threshold can reduce the possibility of false touches, thereby improving the performance of preventing false touches of the mobile phone 10.
- using a smaller pressure threshold can improve the sensitivity of the mobile phone 10 in responding to the user's pressing operation on the preset area.
- the mobile phone 10 responds to the user's pressing operation in the preset area 101 or the preset area 102 before performing the function triggered by the pressing operation. If the position of the pressing operation received by the mobile phone 10 is not within the preset area 101 and the preset area 102, the mobile phone 10 will not respond to the pressing operation.
- the mobile phone 10 may execute S901.
- the above S807 shown in FIG. 8 may include S902-S904.
- S901 The MCU determines whether the operation position indicated by the pressing information is within the preset area 101 or the preset area 102.
- the MCU may execute S902. If the operating position of the first pressing operation is not within the preset area 101 and not within the preset area 102, the MCU can determine that the first pressing operation is a false touch operation, and the MCU will not respond to the first pressing operation, nor will it The mobile phone 10 is triggered to execute the corresponding function.
- S902 The MCU determines that the operation position indicated by the pressing information is within the preset area 101 or within the preset area 102.
- the above S902 may be replaced with: the MCU determines that the operating position of the first pressing operation is within the preset area 101 or within the preset area 102 according to the magnitude of the pressing pressure collected by the pressure sensor 110 and the pressure sensor 120.
- the pressure sensor 110 is arranged in the preset area 101; and the pressure sensor 120 is arranged in the preset area 102. Therefore, if the first pressing operation acts on the preset area 101, the pressing pressure collected by the pressure sensor 110 is larger than the pressing pressure collected by the pressure sensor 120; if the first pressing operation acts on the preset area 102, Compared with the pressing pressure collected by the pressure sensor 110, the pressing pressure collected by the pressure sensor 120 is larger.
- the MCU can determine that the operating position of the first pressing operation is within the preset area 101; if the pressing pressure collected by the pressure sensor 120 is greater than the pressing pressure collected by the pressure sensor 110 With the pressing pressure, the MCU can determine that the operating position of the first pressing operation is within the preset area 102.
- the mobile phone 10 may perform S903; if the operating position of the first pressing operation is in the preset area 102, the mobile phone 10 may perform S904.
- the mobile phone 10 performs a pressing operation of the type of operation indicated by the pressing information on the function triggered by the preset area 101.
- S904 The mobile phone 10 performs a pressing operation of the type of operation indicated by the pressing information on the function triggered by the preset area 102.
- the mobile phone 10 can determine whether the pressing operation is greater than the pressure threshold corresponding to the scene of the mobile phone 10, and whether the pressing operation is within the preset area. It is an effective pressing operation. In this way, effective pressing operations and false touch operations can be more accurately recognized, and false touches to the touch keys of the mobile phone 10 can be effectively reduced, and the false touch prevention performance of the mobile phone 10 can be improved.
- the distance between the operating position of the pressing operation and the position where the pressure sensor 210 is located will affect the magnitude of the pressing pressure collected by the pressure sensor 210.
- the pressing pressure of the pressing operation remains unchanged, the smaller the distance between the operating position of the pressing operation and the position where the pressure sensor 210 is located, the greater the pressing pressure collected by the pressure sensor 210; the operating position of the pressing operation and the pressure sensor 210 The greater the distance of the location, the smaller the pressing pressure collected by the pressure sensor 210.
- the mobile phone may also set different pressure thresholds for different operating positions. Specifically, in the same scene (such as an application scene and/or a physical scene), when the operation position of the first pressing operation is different, the pressure threshold used when the mobile phone judges the pressing pressure of the first pressing operation may be different.
- the aforementioned memory stores multiple scene information, and the pressure threshold of the pressure sensor in the scene indicated by each scene information, which may be specifically: multiple scene information stored in the memory, and each scene information
- the pressure threshold of the pressure sensor for pressing operations of different types of operations may include: the MCU queries the memory for the pressure threshold corresponding to the operation type indicated by the pressing information under the scene indicated by the scene information.
- the pressure threshold of the pressure sensor of the mobile phone may be different for pressing operations of different operation types. That is to say, in the embodiment of the present application, when the mobile phone dynamically adjusts the pressure threshold of the pressure sensor, not only the scene in which the mobile phone is located can be referred to, but also the operation type of the pressing operation can be referred to. Among them, the mobile phone dynamically adjusts the pressure threshold of the pressure sensor according to the scene of the mobile phone and the operation type of the pressing operation, which can improve the sensitivity of the mobile phone in response to the pressing operation and provide users with an operating experience that is more in line with the user's operating habits.
- the above-mentioned electronic device (such as a mobile phone) includes a hardware structure and/or software module corresponding to each function.
- the embodiments of the present application can be implemented in the form of hardware or a combination of hardware and computer software. Whether a certain function is executed by hardware or computer software-driven hardware depends on the specific application and design constraint conditions of the technical solution. Professionals and technicians can use different methods for each specific application to implement the described functions, but such implementation should not be considered as going beyond the scope of the embodiments of the present application.
- the embodiments of the present application can divide the above-mentioned electronic devices (such as mobile phones) into functional modules according to the above-mentioned method examples.
- each functional module can be divided corresponding to each function, or two or more functions can be integrated into one processing module.
- the above-mentioned integrated modules can be implemented in the form of hardware or software function modules. It should be noted that the division of modules in the embodiments of the present application is illustrative, and is only a logical function division, and there may be other division methods in actual implementation.
- FIG. 10 shows a schematic diagram of a possible structure of the electronic device (such as a mobile phone) involved in the foregoing embodiment.
- the electronic device 1000 may include: a scene recognition module 1001, a threshold parameter decision module 1002, a user configuration module 1003, a press recognition module 1004, and a trigger module 1005.
- the scene recognition module 1001 is used to support the execution of the electronic device 1000: to identify the scene of the electronic device 1000 (such as an application scene and/or a physical scene).
- the scene recognition module 1001 is used to support the electronic device 1000 to execute S403 and S804 in the foregoing method embodiment, and/or other processes used in the technology described herein.
- the function of the scene recognition module 1001 may be implemented by the MCU of the above-mentioned mobile phone, and one or more devices such as a camera, a proximity light sensor, an acceleration sensor, and an ambient light sensor.
- the user configuration module 1003 is used to support the execution of the electronic device 1000: configure the functions to be executed by the mobile phone triggered by pressing operations of different operation types acting on the preset area (that is, the corresponding relationship between the operation type and the function); the configuration acts on different positions of the preset area The pressing operation triggers the function performed by the mobile phone (that is, the corresponding relationship between the position and the function).
- the user configuration module 1003 is used to support the electronic device 1000 to execute: configure the pressure threshold of the pressure sensor in multiple scenarios; wherein, the pressure threshold of the pressure sensor may be different in different scenarios.
- the user configuration module 1003 is used to support the electronic device 1000 to execute S601-S603 in the foregoing method embodiment, and/or other processes used in the technology described herein.
- the function of the user configuration module 1003 can be implemented by the MCU and display screen of the above-mentioned mobile phone.
- the threshold parameter decision module 1002 is used to support the execution of the electronic device 1000: according to the scene recognized by the scene recognition module 1001 and the pressure threshold of the pressure sensor in multiple scenes configured by the user configuration module 1003, the pressure threshold of the pressure sensor in the scene is determined.
- the threshold parameter decision module 1002 is used to support the electronic device 1000 to execute S404 and S805 in the foregoing method embodiment, and/or other processes used in the technology described herein.
- the function of the threshold parameter decision module 1002 can be implemented by the MCU of the above-mentioned mobile phone or the like.
- the pressing recognition module 1004 is used to support the electronic device 1000 to perform: collecting pressing information of pressing operations (such as the position of the pressing operation on the preset area and the operation type of the pressing operation); collecting the pressing pressure of the pressing operation; judging whether the pressing pressure is described above It is greater than the pressure threshold determined by the threshold parameter decision module 1002; it is determined whether the pressing operation is applied to the preset area of the preset area.
- the press recognition module 1004 is used to support the electronic device 1000 to execute S401, S402, S405, S501, S801, S802, S803, S806, S901, and/or other processes used in the technology described herein.
- the function of the pressing recognition module 1004 may be implemented by the MCU of the mobile phone, the pressure sensor and the touch sensor of the preset area, and so on.
- the trigger module 1005 is used to support the execution of the electronic device 1000: according to the judgment result of the press recognition module 1004, trigger the mobile phone to perform the function triggered by the press operation.
- the trigger module 1005 is used to support the electronic device 1000 to execute S406, S502, S503, S504, S807, S902, S903, S904 in the foregoing method embodiment, and/or other processes used in the technology described herein.
- the function of the trigger module 1005 may be implemented by the MCU and SOC unit of the mobile phone described above.
- FIG. 11 which combined with the schematic structural diagram of the electronic device shown in FIG. 10, shows a principle block diagram of an electronic device interaction method provided by an embodiment of the present application.
- the user configuration module 1003 can configure functions to be executed by the mobile phone triggered by pressing operations of different operation types acting on the preset area through the UI interface displayed by the mobile phone (that is, the corresponding relationship between the operation type and the function).
- the user configuration module 1003 can also configure the functions to be executed by the mobile phone triggered by pressing operations on different positions of the preset area (that is, the corresponding relationship between the position and the function) through the UI interface displayed by the mobile phone.
- the above-mentioned corresponding relationship configured by the user configuration module 1003 may be stored in the function configuration table 1130 shown in FIG. 11.
- the pressing recognition module 1004 can execute 1140 shown in FIG. 11 to obtain the pressing pressure of the first pressing operation; of course, the pressing recognition module 1004 can also execute 1141 To obtain the pressing information of the first pressing operation.
- the scene recognition module 1001 can determine the application scenario in which the electronic device is located according to the application running in the foreground of the electronic device (that is, the type of foreground application) ( That is, execute 1110 shown in FIG. 11); it is also possible to determine the physical scene in which the electronic device is located based on the data collected by devices such as proximity sensors and acceleration sensors (ie execute 1111 shown in FIG. 11). Then, the scene recognition module 1001 can indicate the application scene and the physical scene in which the electronic device is located to the threshold parameter decision module 1002.
- the application scenarios in the embodiments of the present application can be divided into: application scenarios with audio streams and application scenarios without audio streams.
- the determination of the application scenario 1110 is not only determined by the type of foreground application running on the electronic device, but also determined by whether there is an audio stream currently on the electronic device.
- different pressure thresholds can be set.
- the threshold parameter decision module 1002 can execute 1120 shown in FIG. 11 according to the application scene and physical scene indicated by the scene recognition module 1001 to determine the pressure threshold in the scene (such as the application scene and the physical scene). Among them, in different scenarios, the pressure threshold of the pressure sensor may be different.
- the user configuration module 1003 may also configure the pressure threshold of the pressure sensor in multiple scenarios.
- the function configuration table 1130 shown in FIG. 11 may also include correspondences between multiple scenarios and pressure thresholds.
- the threshold parameter decision module 1002 can query the pressure threshold of the pressure sensor in the above scenario from the user configuration module 1003.
- the pressing recognition module 1004 can execute 1142 shown in FIG. 11 to determine whether the pressing pressure (that is, the pressing pressure of the first pressing operation) is greater than the pressure threshold (that is, the pressure threshold determined by the threshold parameter decision module 1002). If the pressing pressure is greater than the pressure threshold, the trigger module 1005 may perform the function indicated by the pressing information.
- the pressing recognition module 1004 may execute 1143 to determine whether the first pressing operation acts on the preset area. If the first pressing operation acts on the preset area, it indicates that the first pressing operation is a valid pressing operation.
- the trigger module 1005 can respond to the first pressing operation and the function indicated by the pressing information.
- the trigger module 1005 may execute 1151 to query the function configuration table 1130 saved by the user configuration module 1003, and determine the function indicated by the above-mentioned pressing information. Then, the trigger module 1005 can execute 1152 to trigger the queried function.
- the preset area of the electronic device may include one or more preset areas.
- the preset area may include multiple preset areas (as shown in FIG. 11, the preset area 1 and the preset area 2), the functions triggered by the first pressing operation on different preset areas may be different.
- the preset area 1 shown in FIG. 11 may be the preset area 101 shown in FIG. 1, and the preset area 2 shown in FIG. 11 may be the preset area 102 shown in (b) of FIG. 1.
- the preset area 1 shown in FIG. 11 may be the preset area 201 shown in (b) of FIG. 2A, and the preset area 2 shown in FIG. 11 may be the preset area shown in (b) of FIG. 2A.
- Set area 202 may be the preset area 101 shown in FIG. 1, and the preset area 2 shown in FIG. 11 may be the preset area 102 shown in (b) of FIG. 1.
- the preset area 1 shown in FIG. 11 may be the preset area 201 shown in (b) of FIG. 2A
- the first pressing operation acting on the preset area 1 is used to trigger the electronic device to perform function 1; the first pressing operation acting on the preset area 2 is used to trigger the electronic device to perform the function.
- the pressing recognition module 1004 executes 1143, it is determined that the first pressing operation is applied to the preset area 1.
- the trigger module 1005 executes 1151, and the function 1 can be queried from the function configuration table; the trigger module 1005 executes 1152, the electronic device can be triggered to perform function 1.
- the pressing recognition module 1004 executes 1143, it is determined that the first pressing operation acts on the preset area 2; then, the trigger module 1005 executes 1151, and the function 2 can be queried from the function configuration table; the trigger module 1005 executes 1152, then the electronic The equipment performs function 2.
- the electronic device may include a pressure sensor, a touch sensor, a memory, and a processor.
- the pressure sensor, touch sensor, memory and processor are coupled.
- the electronic device may also include devices such as a camera, a proximity light sensor, and an acceleration sensor.
- the aforementioned pressure sensor may be a piezoelectric pressure sensor.
- the piezoelectric pressure sensor includes a piezoelectric ceramic sensor.
- the above-mentioned processor may include the MCU and SOC unit shown in FIG. 3.
- the aforementioned memory is used to store computer program code, and the computer program code includes computer instructions.
- the processor executes the computer instructions
- the electronic device can execute various functions or steps executed by the mobile phone in the foregoing method embodiments.
- the structure of the electronic device can refer to the structure of the electronic device 300 shown in FIG. 3.
- the chip system includes at least one processor 1201 and at least one interface circuit 1202.
- the processor 1201 and the interface circuit 1202 may be interconnected by wires.
- the interface circuit 1202 can be used to receive signals from other devices (such as the memory of an electronic device).
- the interface circuit 1202 may be used to send signals to other devices (such as the processor 1201).
- the interface circuit 1202 can read instructions stored in the memory, and send the instructions to the processor 1201.
- an electronic device such as the electronic device 300 shown in FIG.
- the chip system may also include other discrete devices, which are not specifically limited in the embodiment of the present application.
- An embodiment of the present application also provides a computer storage medium, which includes computer instructions.
- the computer instructions run on the above-mentioned electronic device (electronic device 300 as shown in FIG. 3), the electronic device is caused to execute the above-mentioned Each function or step performed by the mobile phone in the method embodiment.
- the embodiments of the present application also provide a computer program product, which when the computer program product runs on a computer, causes the computer to execute each function or step performed by the mobile phone in the above method embodiment.
- the disclosed device and method may be implemented in other ways.
- the device embodiments described above are merely illustrative.
- the division of the modules or units is only a logical function division. In actual implementation, there may be other division methods, for example, multiple units or components may be divided. It can be combined or integrated into another device, or some features can be omitted or not implemented.
- the displayed or discussed mutual coupling or direct coupling or communication connection may be indirect coupling or communication connection through some interfaces, devices or units, and may be in electrical, mechanical or other forms.
- the units described as separate parts may or may not be physically separate.
- the parts displayed as units may be one physical unit or multiple physical units, that is, they may be located in one place, or they may be distributed to multiple different places. . Some or all of the units may be selected according to actual needs to achieve the objectives of the solutions of the embodiments.
- the functional units in the various embodiments of the present application may be integrated into one processing unit, or each unit may exist alone physically, or two or more units may be integrated into one unit.
- the above-mentioned integrated unit can be implemented in the form of hardware or software functional unit.
- the integrated unit is implemented in the form of a software functional unit and sold or used as an independent product, it can be stored in a readable storage medium.
- the technical solutions of the embodiments of the present application are essentially or the part that contributes to the prior art, or all or part of the technical solutions can be embodied in the form of a software product, and the software product is stored in a storage medium. It includes several instructions to make a device (may be a single-chip microcomputer, a chip, etc.) or a processor (processor) execute all or part of the steps of the methods described in the various embodiments of the present application.
- the foregoing storage media include: U disk, mobile hard disk, read only memory (read only memory, ROM), random access memory (random access memory, RAM), magnetic disk or optical disk and other media that can store program codes.
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Abstract
Les modes de réalisation de la présente demande concernent un procédé d'interaction pour un dispositif électronique, et un dispositif électronique, qui se rapportent au domaine technique de la commande tactile et au domaine technique de la prévention du toucher erroné, et peuvent améliorer les performances de prévention de toucher erroné d'un dispositif électronique. Un dispositif électronique est pourvu d'un capteur tactile et d'un ou plusieurs capteurs de pression. Le procédé consiste : à collecter, par un dispositif électronique, par l'intermédiaire d'un capteur tactile, des informations de pression d'une première opération de pression, les informations de pression indiquant un type de fonctionnement et une position de fonctionnement de la première opération de pression ; à collecter, par le dispositif électronique, une pression de la première opération de pression à travers un ou plusieurs capteurs de pression ; en réponse à la première opération de pression, à acquérir, par un processeur du dispositif électronique, des premières informations de scène du dispositif électronique, les premières informations de scène indiquant une scène d'application et/ou une scène physique où se trouve le dispositif électronique ; à déterminer, par le processeur, un seuil de pression en fonction des premières informations de scène ; et si la pression collectée par un premier capteur de pression dans le ou les capteurs de pression est supérieure au seuil de pression, à exécuter, par le processeur, une fonction correspondant aux informations de pression.
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN201910960454.6A CN112738332A (zh) | 2019-10-10 | 2019-10-10 | 一种电子设备的交互方法及电子设备 |
| CN201910960454.6 | 2019-10-10 |
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| Publication Number | Publication Date |
|---|---|
| WO2021068630A1 true WO2021068630A1 (fr) | 2021-04-15 |
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| PCT/CN2020/107146 Ceased WO2021068630A1 (fr) | 2019-10-10 | 2020-08-05 | Procédé d'interaction pour dispositif électronique et dispositif électronique |
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| CN (1) | CN112738332A (fr) |
| WO (1) | WO2021068630A1 (fr) |
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| CN116027915A (zh) * | 2021-10-26 | 2023-04-28 | 北京小米移动软件有限公司 | 终端、终端控制方法、终端控制装置及存储介质 |
| CN119597195A (zh) * | 2023-07-21 | 2025-03-11 | 华为技术有限公司 | 一种交互的方法以及电子设备 |
| CN120686968A (zh) * | 2024-03-20 | 2025-09-23 | 华为技术有限公司 | 按键操作方法及相关装置 |
| CN121277585A (zh) * | 2024-06-29 | 2026-01-06 | 荣耀终端股份有限公司 | 操作响应方法、终端设备及存储介质 |
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| CN104991700B (zh) * | 2015-06-29 | 2018-05-29 | 福建省合茂网络科技有限公司 | 一种移动终端应用切换的方法及移动终端 |
| CN105653099B (zh) * | 2016-03-01 | 2019-06-11 | 宇龙计算机通信科技(深圳)有限公司 | 一种反馈触摸屏按压力度的方法及装置 |
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| US20170255269A1 (en) * | 2015-11-09 | 2017-09-07 | Shenzhen Huiding Technology Co., Ltd. | Method, system for implementing operation of mobile terminal according to touching signal and mobile terminal |
| CN105446646A (zh) * | 2015-12-11 | 2016-03-30 | 小米科技有限责任公司 | 基于虚拟键盘的内容输入方法、装置及触控设备 |
| CN109144391A (zh) * | 2018-08-22 | 2019-01-04 | 三星电子(中国)研发中心 | 电子设备的控制方法和电子设备 |
| CN109782944A (zh) * | 2018-12-11 | 2019-05-21 | 华为技术有限公司 | 一种触摸屏的响应方法及电子设备 |
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