WO2020147047A1 - 写字板、显示终端及写字板与显示终端适配的方法 - Google Patents
写字板、显示终端及写字板与显示终端适配的方法 Download PDFInfo
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- WO2020147047A1 WO2020147047A1 PCT/CN2019/072041 CN2019072041W WO2020147047A1 WO 2020147047 A1 WO2020147047 A1 WO 2020147047A1 CN 2019072041 W CN2019072041 W CN 2019072041W WO 2020147047 A1 WO2020147047 A1 WO 2020147047A1
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- display terminal
- ratio
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- point
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- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F1/00—Details not covered by groups G06F3/00 - G06F13/00 and G06F21/00
- G06F1/16—Constructional details or arrangements
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04M—TELEPHONIC COMMUNICATION
- H04M1/00—Substation equipment, e.g. for use by subscribers
- H04M1/02—Constructional features of telephone sets
Definitions
- the present disclosure relates to the technical field of tablet, and more specifically, to a tablet, a display terminal, and a method for adapting the tablet to the display terminal.
- the current writing boards on the market have a fixed aspect ratio, they can only display a fixed size and a fixed direction when displaying on the screen.
- the aspect ratio and the writing board can only be set at the beginning when displaying. Once the aspect ratio and orientation of the writing board are determined, in the subsequent writing process, it cannot be adjusted adaptively according to the needs, which greatly reduces the user experience.
- the technical problem to be solved by the present disclosure is to provide a tablet, a display terminal, and a method for adapting the tablet to the display terminal in view of the above-mentioned defects in the prior art.
- a writing board which includes a flexible touch portion and a storage device for storing the flexible touch portion; the storage device includes a device for detecting that the flexible touch portion extends out of the storage device The position detection module generates a corresponding detection signal, and the detection signal includes the extension length and the fixed width of the flexible touch portion.
- the position detection module includes detection points arranged at the inner edge of the storage device
- the detection point is used to detect the extension length and generate the detection signal.
- a touch point detection module connected to the flexible touch portion, configured to detect touch operations on the flexible touch portion and generate coordinate information corresponding to the touch point.
- a display terminal is also provided, the display terminal cooperates with the aforementioned tablet to display the contacts of the tablet, and the display terminal includes:
- the receiving module is used to receive detection signals and coordinate information of the contacts.
- the detection signals include the extension length and the fixed width of the flexible touch part of the tablet; the touch on the flexible touch part of the tablet Operation to generate the contact;
- a coordinate mapping module configured to determine the mapping point coordinates of the contact in the display terminal according to the detection signal and the length and width of the display terminal;
- the controller is used to display the touch point on the mapping point coordinates.
- the ratio of the length to the width of the display terminal is greater than or equal to 1, and the coordinate mapping module is configured to:
- the ratio of the width of the display terminal to the fixed width is the first horizontal ratio;
- the ratio of the length of the display terminal to the extended length is the first vertical ratio
- the abscissa of the coordinates of the mapping point is the product of the abscissa of the contact point and the first horizontal ratio;
- the ordinate of the mapping point is the product of the ordinate of the contact point and the first vertical ratio ;
- the ratio of the width of the display terminal to the extension length is the second horizontal ratio; the ratio of the length of the display terminal to the fixed width is the second vertical ratio;
- the abscissa of the coordinates of the mapping point is the product of the ordinate of the contact point and the second horizontal ratio; the ordinate of the mapping point coordinates is the product of the abscissa of the contact point and the second longitudinal ratio .
- a display terminal including: a processor and a memory;
- the memory is used to store program instructions
- the processor is configured to execute program instructions stored in the memory to:
- the detection signal includes the extension length and a fixed width of the flexible touch portion of the tablet; a touch operation on the flexible touch portion of the tablet generates the contact;
- the touch point is displayed on the mapping point coordinates.
- the processor is further configured to:
- the ratio of the width of the display terminal to the fixed width is the first horizontal ratio;
- the ratio of the length of the display terminal to the extended length is the first vertical ratio
- the abscissa of the coordinates of the mapping point is the product of the abscissa of the contact point and the first horizontal ratio;
- the ordinate of the mapping point is the product of the ordinate of the contact point and the first vertical ratio ;
- the ratio of the width of the display terminal to the extension length is the second horizontal ratio; the ratio of the length of the display terminal to the fixed width is the second vertical ratio;
- the abscissa of the coordinates of the mapping point is the product of the ordinate of the contact point and the second horizontal ratio; the ordinate of the mapping point coordinates is the product of the abscissa of the contact point and the second longitudinal ratio .
- the detection signal includes the extension length and a fixed width of the flexible touch portion of the tablet; a touch operation on the flexible touch portion of the tablet generates the contact;
- the touch point is displayed on the mapping point coordinates.
- the processor is further configured to:
- the ratio of the width of the display terminal to the fixed width is the first horizontal ratio;
- the ratio of the length of the display terminal to the extended length is the first vertical ratio
- the abscissa of the coordinates of the mapping point is the product of the abscissa of the contact point and the first horizontal ratio;
- the ordinate of the mapping point is the product of the ordinate of the contact point and the first vertical ratio ;
- the ratio of the width of the display terminal to the extension length is the second horizontal ratio; the ratio of the length of the display terminal to the fixed width is the second vertical ratio;
- the abscissa of the coordinates of the mapping point is the product of the ordinate of the contact point and the second horizontal ratio; the ordinate of the mapping point coordinates is the product of the abscissa of the contact point and the second longitudinal ratio .
- a method for adapting a tablet to a display terminal is also provided.
- the tablet is the aforementioned tablet
- the display terminal is the aforementioned display terminal, including:
- the writing board detects the length of the flexible touch portion extending out of the storage device and the touch operation on the flexible touch portion, generates corresponding detection signals and coordinate information of the contacts, and sends the detection signal and the The coordinate information of the contact;
- the detection signal includes the extension length and the fixed width of the flexible touch portion and the coordinate information of the contact;
- the display terminal receives the detection signal and the coordinate information of the contact
- the display terminal determines the mapping point coordinates of the touch point in the display terminal according to the detection signal and the length and width of the display terminal itself, and displays the touch point on the mapping point coordinates.
- the ratio of the length to the width of the display terminal is greater than or equal to 1, and the method further includes:
- the ratio of the width of the display terminal to the fixed width is the first horizontal ratio;
- the ratio of the length of the display terminal to the extended length is the first vertical ratio
- the abscissa of the coordinates of the mapping point is the product of the abscissa of the contact point and the first horizontal ratio;
- the ordinate of the mapping point is the product of the ordinate of the contact point and the first vertical ratio ;
- the ratio of the width of the display terminal to the extension length is the second horizontal ratio; the ratio of the length of the display terminal to the fixed width is the second vertical ratio;
- the abscissa of the coordinates of the mapping point is the product of the ordinate of the contact point and the second horizontal ratio; the ordinate of the mapping point coordinates is the product of the abscissa of the contact point and the second longitudinal ratio .
- the writing board of the present disclosure can flexibly adjust the size of the writing interface of the writing board according to the user's needs, that is, the aspect ratio of the writing surface of the writing board can be flexibly adjusted, and at the same time, the flexible touch portion can be extended out of the storage device.
- the fixed width and the coordinate information of the touch point generated by the touch operation on the flexible touch part are sent to the display terminal, and the display terminal automatically determines the mapping point coordinates on the display terminal according to the extension length and the fixed width to display the touch point
- the display terminal can be adapted to the display terminal and the writing board, and the writing information of the writing board can be displayed in real time, so as to optimize the display terminal screen when the user is using the real-time mode of the writing board. Effect, enhance product competitiveness.
- FIG. 1 is a schematic diagram of a flexible touch-control part of a writing tablet extending out of a storage device according to an embodiment of the present disclosure
- FIG. 2 is a schematic diagram of a retractable storage device for a flexible touch portion of a tablet provided by an embodiment of the present disclosure
- FIG. 3 is a functional block diagram of a display terminal provided by an embodiment of the present disclosure.
- FIG. 4 is a schematic structural diagram of a display terminal according to an embodiment of the present disclosure.
- FIG. 5 is a schematic diagram of an adapted display of a tablet and a terminal provided by an implementation of the present disclosure
- FIG. 6 is a schematic diagram of a tablet and terminal adapted display provided by an embodiment of the present disclosure.
- FIG. 7 is a schematic flowchart of a method for adapting display between a tablet and a terminal according to an embodiment of the present disclosure.
- an embodiment of the present disclosure provides a writing pad 100, the writing pad 100 includes a flexible touch portion 102, and a storage device 101 that stores the flexible touch portion 102 therein; the storage device 101 includes a A position detection module that detects the length of the flexible touch portion 102 extending out of the storage device 101 and generates a corresponding detection signal.
- the detection signal includes the extension length and the fixed width of the flexible touch portion 102.
- the extension length of the flexible touch portion 102 is the real-time length of the flexible touch portion 102 extending out of the storage device 101, and since the flexible touch portion 102 extends out of the storage device 101 or retracts the storage device 101, The width of the flexible touch portion 102 is fixed. Therefore, the protruding length of the detection signal detected by the position detection module during the movement of the flexible touch portion 102 is a continuous and changing value, and the width is Fixed value.
- FIG. 1 shows a schematic diagram when the flexible touch portion 102 of the tablet 100 of the embodiment of the present disclosure is drawn out of the storage device 101
- FIG. 2 shows the flexible touch portion 102 of the tablet 100 of the embodiment of the present disclosure is fully retracted
- a schematic diagram of the storage device 101 As shown in FIG.
- the flexible touch portion 102 of the tablet 100 of the embodiment of the present disclosure can change the length of the flexible touch portion 102 extending out of the storage device 101 according to the user's usage requirements, that is, the aspect ratio of the flexible touch portion 102 extending out of the storage device 101 It can be arbitrarily changed according to the user's needs, and the real-time length of the flexible touch portion 102 extending out of the storage device 101 can be detected in real time, that is, after the user adjusts the aspect ratio of the flexible touch portion 102, the width and height of itself can be detected in real time Then, the corresponding detection signal is generated, and the generated detection signal is sent to the display terminal 200 in real time, so that the aspect ratio of the flexible touch portion 102 can be obtained in real time.
- the detection module of the embodiment of the present disclosure includes detection points arranged at the inner edge of the storage device 101.
- the detection point is used to detect the extension length of the flexible touch portion 102 and generate a corresponding detection signal when the flexible touch portion 102 extends out of the storage device 101. That is, the detection point can be used to detect the extension length of the flexible touch portion 102.
- multiple detection points may be set, and the specific number is determined according to actual product design requirements, as long as the detection of the extension length of the flexible touch portion 102 can be achieved.
- the position detection module of the embodiment of the present disclosure is located at the opening where the storage device 101 receives the flexible touch portion 102.
- the tablet of the embodiment of the present disclosure further includes a touch point detection module connected to the flexible touch portion 102, and the touch point detection module is used to detect touch operations on the flexible touch portion 102 and generate corresponding touches.
- the coordinate information of the point may be a capacitive touch point detection module, including a capacitive touch sensor, which is used to detect a touch on the flexible touch portion 102. Control operation, the function of the touch operation makes the capacitive touch sensor generate the coordinate information of the corresponding touch point according to the change of the capacitive coupling.
- the touch point detection module may also be a resistive touch point detection module.
- the tablet 100 of the embodiment of the present disclosure may further include a display screen connected to the flexible touch portion 102, and the display screen is used to display the contacts generated by the touch operation on the flexible touch portion 102.
- the display screen of the embodiment of the present disclosure includes but is not limited to an OLED display screen.
- the tablet 100 of the embodiment of the present disclosure may further include: a sending module connected to the position detection module and the touch point detection module and used to send the detection signal and the coordinate information of the contact.
- a sending module connected to the position detection module and the touch point detection module and used to send the detection signal and the coordinate information of the contact.
- the control part 102 extends out of the storage device 101 by the extension length and the fixed width, so that it can be determined that the contact point on the flexible touch part 102 is in the display terminal 200 according to the extension length and the fixed width and the length and width of the display terminal 200 itself.
- the contact point is displayed on the mapped coordinates of the display terminal 200, so that the tablet and the display terminal 200 are adapted to display.
- the sending module in the embodiment of the present disclosure may be a wireless communication module, which includes but is not limited to a WIFI communication module, a 2G communication module, a 3G communication module, a 4G communication module, a 5G communication module, and a Bluetooth communication module.
- the tablet 100 and the display terminal 200 may also be connected in a wired manner, so as to transmit the detection signal and the coordinate information of the contact point to the display terminal 200 in real time.
- the tablet 100 of the embodiment of the present disclosure further includes a battery for outputting electric energy, and the battery is a flexible battery.
- the area of the flexible battery may be greater than or equal to the area of the flexible touch screen.
- the tablet 100 can also be provided with a power switch, a power indicator, a communication button, a communication indicator, and the like.
- the power switch is used to receive a power-on instruction or a power-off instruction. For example, long pressing the power switch can control the tablet 100 to be powered on or off.
- the power indicator is used to indicate the power-on state of the tablet 100.
- the power indicator light may be a light emitting diode (LED).
- the power indicator is a two-color LED light that can produce red or green light.
- the power indicator light When the tablet 100 is in working state, the power indicator light emits green light to indicate that the tablet 100 is working normally; when the tablet 100 is in a low battery state, the power indicator light flashes red to indicate that the tablet 100 is low on battery , Prompt the user to charge in time; when the tablet 100 is in the charging state, the power indicator light glows steady red to indicate that the tablet 100 is in the charging state; when the tablet 100 is fully charged, the power indicator turns from red to green Light to indicate the completion of charging of the tablet 100.
- the communication button is used to receive a communication connection instruction or disconnect a communication connection instruction
- the communication indicator is used to indicate the communication connection status of the tablet 100.
- long pressing the communication button can control the wireless communication module to send a communication connection request to the display terminal 200, and at the same time indicate the communication connection status through the communication indicator.
- the communication indicator light can be set to blink during the connection process. When the communication connection is successful, the communication indicator light turns to a steady state, thereby indicating that the tablet 100 and the display terminal 200 are in a normal communication connection state.
- FIG. 3 shows a functional block diagram of a display terminal 200 provided by an embodiment of the present disclosure, and the display terminal 200 can be adapted to display with the aforementioned tablet 100. Specifically, the display terminal 200 cooperates with the aforementioned tablet 100 to display the touch points generated by the touch operation of the flexible touch portion 102 of the tablet 100 on the corresponding position of the display area of the display terminal 200 in real time.
- the display terminal 200 of the embodiment of the present disclosure includes, but is not limited to, a smart phone, a smart watch, and the like.
- the operating system of the display terminal 200 includes but is not limited to Android operating system, iOS operating system, Windows operating system, Linux operating system, etc.
- the display terminal 200 of the embodiment of the present disclosure may include: a receiving module 201, a coordinate mapping module 202, and a controller 203.
- the receiving module 201 is used to receive the detection signal and the coordinate information of the contact.
- the detection signal includes the extension length and the fixed width of the flexible touch portion 102 of the tablet 100; the contact point is generated by the touch operation on the flexible touch portion 102 of the tablet 100.
- the receiving module 201 in the embodiment of the present disclosure may be a wireless communication module, which includes but is not limited to a WIFI communication module, a 2G communication module, a 3G communication module, a 4G communication module, a 5G communication module, and a Bluetooth communication module.
- a wireless communication module which includes but is not limited to a WIFI communication module, a 2G communication module, a 3G communication module, a 4G communication module, a 5G communication module, and a Bluetooth communication module.
- the display terminal 200 and the tablet 100 can also be connected in a wired manner to receive the detection signal output by the tablet 100 and the coordinate information of the contact point in real time.
- the coordinate mapping module 202 is configured to determine the mapping point coordinates of the touch point in the display terminal 200 according to the detection signal and the length and width of the display terminal 200 itself.
- the ratio of the length to the width of the display terminal 200 itself is greater than or equal to 1.
- the coordinate mapping module 202 is specifically used for:
- the ratio of the width of the display terminal 200 to the fixed width is the first horizontal ratio; the ratio of the length of the display terminal 200 to the protruding length is the first Longitudinal scale; the abscissa of the mapping point coordinates is the product of the abscissa of the touch point and the first horizontal scale; the ordinate of the mapping point coordinates is the ordinate of the touch point and the first The product of vertical proportions.
- the ratio of the width of the display terminal 200 to the protruding length is the second horizontal ratio; the ratio of the length of the display terminal 200 to the fixed width is the second Longitudinal ratio; the abscissa of the mapping point coordinates is the product of the ordinate of the contact point and the second lateral ratio; the ordinate of the mapping point coordinates is the abscissa of the contact point and the second The product of vertical proportions.
- the ratio of the length to the width of the display terminal 200 itself is fixed.
- the ratio of the length to the width of the display terminal 200 itself is greater than or equal to 1, the display terminal 200 is displayed in a vertical screen.
- the original coordinate system of the tablet 100 is used as the reference coordinate system, and the touch point generated by the touch operation on the flexible touch portion 102 is A, and the touch point A is on the display terminal 200
- the mapping point is B, where the coordinates of the contact A on the trigger touch unit 102 are (X 0 , Y 0 ), and the mapping point coordinates of the mapping point B on the display terminal 200 are (X 1 , Y 1 );
- the width of the display terminal 200 is N 1 and the length is M 1 ; the total length of the flexible touch portion 102 of the tablet 100 is M 0 , then the extension length of the flexible touch portion 102 is (M 0 -Y 0 ),
- the fixed width of the touch portion 102 is N 0 .
- the ratio of the width N 1 of the display terminal 200 to the fixed width N 0 is the first horizontal ratio
- the length M 1 of the display terminal 200 is proportional to the extension
- the ratio of the length Y 0 is the first longitudinal ratio
- the abscissa of the mapping point B is the product of the abscissa of the contact A and the first horizontal ratio
- the ordinate of the mapping point B is the ordinate of the contact A and the first
- the product of a longitudinal ratio that is, the coordinates of the mapping point B and the coordinates of the touch point A satisfy:
- the extension length of the flexible touch portion 102 of the tablet 100 is greater than the fixed width, and the display terminal 200 is displayed in a vertical screen.
- the coordinates of the mapping point B on the display terminal 200 (X 1 , Y 1 ) and the coordinates (X 0 , Y 0 ) of the contact A on the flexible touch portion 102 satisfy formula (1), therefore, the display terminal 200 obtains the specific coordinate value of the mapping point B according to formula (1) , which is
- the ratio of the width N 1 of the display terminal 200 to the extension length (M 0 -Y 0 ) of the flexible touch portion 102 is the second horizontal ratio
- the display The ratio of the length M 1 of the terminal 200 to the fixed width N 0 is the second vertical ratio
- the abscissa of the mapping point B is the product of the ordinate of the contact A and the second horizontal ratio
- the vertical of the mapping point B The coordinates are the product of the abscissa of the contact A and the second longitudinal scale, that is, the coordinates of the mapping point B and the coordinates of the contact A satisfy:
- the protruding length of the flexible touch portion 102 of the tablet 100 is less than the fixed width, and the display terminal 200 is displayed in a vertical screen.
- the coordinates of the mapping point B on the display terminal 200 ( X 1 , Y 1 ) and the coordinates (X 0 , Y 0 ) of the contact A on the flexible touch portion 102 satisfy formula (2). Therefore, the display terminal 200 obtains the specific coordinates of the mapping point B according to formula (2) Value, ie
- the controller 203 is used to display the touch point on the mapping point coordinates. Specifically, after the coordinate mapping module 202 determines the mapping point coordinates of the touch point on the display terminal 200, the controller 203 displays the touch point on the position corresponding to the display area of the display terminal 200 according to the determined mapping point coordinate.
- the display terminal 200 and the tablet 100 are adapted to display. It can be seen from the foregoing that when the protruding length of the flexible touch portion 102 is greater than or equal to the fixed width, the mapping coordinates of the mapping point B meets the formula (1), and the coordinate mapping module 202 calculates the mapping point coordinates of the mapping point B as The controller 203 displays the contact A on the display terminal 200 according to the calculated coordinates of the mapping point. Location.
- mapping coordinates of the mapping point B meets the formula (2), and then the coordinate mapping module 202 calculates the mapping point coordinates of the mapping point B as The controller 203 displays the contact A on the display terminal 200 according to the calculated coordinates of the mapping point. Location.
- FIG. 4 it is a schematic structural diagram of a display terminal 200 according to an embodiment of the present disclosure.
- the display terminal 200 cooperates with the aforementioned tablet 100 to display the contacts on the flexible touch portion 102 of the tablet 100.
- the display terminal 200 of the embodiment of the present disclosure includes, but is not limited to, a smart phone, a smart watch, and the like.
- the operating system of the display terminal 200 includes but is not limited to Android operating system, iOS operating system, Windows operating system, Linux operating system, etc.
- the display terminal 200 can cooperate with the aforementioned tablet 100 to display the contacts on the tablet 100 at the corresponding position of the display terminal 200, so as to realize the adaptive display of the display terminal 200 and the tablet 100 .
- the display terminal 200 in FIG. 4 is only an example, and should not bring any limitation to the function and scope of use of the embodiment of the present invention.
- the display terminal 200 includes a processor 401 and a memory 402, and the memory 402 is used to store program instructions.
- the memory 402 may be a read only memory 402 (ROM) and/or a random access memory 402 (RAM).
- the processor 401 is configured to execute program instructions stored in the memory 402 to perform the following actions:
- the detection signal includes the extension length and a fixed width of the flexible touch portion of the tablet; a touch operation on the flexible touch portion of the tablet generates the contact;
- the touch point is displayed on the mapping point coordinates.
- the ratio of the length to the width of the display terminal 200 is greater than or equal to 1, and the processor 401 is further configured to:
- the ratio of the width of the display terminal 200 to the fixed width is the first horizontal ratio; the ratio of the length of the display terminal 200 to the protruding length is the first Longitudinal scale; the abscissa of the mapping point coordinates is the product of the abscissa of the touch point and the first horizontal scale; the ordinate of the mapping point coordinates is the ordinate of the touch point and the first The product of vertical proportions.
- the ratio of the width of the display terminal 200 to the protruding length is the second horizontal ratio; the ratio of the length of the display terminal 200 to the fixed width is the second Longitudinal ratio; the abscissa of the mapping point coordinates is the product of the ordinate of the contact point and the second lateral ratio; the ordinate of the mapping point coordinates is the abscissa of the contact point and the second The product of vertical proportions.
- the processor 401 can read the program stored in the read-only memory 402 or access the program in the random access memory 402 to perform various appropriate actions and processing.
- the processor 401 and the memory 402 are connected to each other through a bus.
- the embodiment of the present disclosure also provides a readable storage medium on which a computer program is stored.
- a computer program is stored on the readable storage medium.
- the detection signal includes the extension length and a fixed width of the flexible touch portion of the tablet; a touch operation on the flexible touch portion of the tablet generates the contact;
- the touch point is displayed on the mapping point coordinates.
- the ratio of the length to the width of the display terminal 200 is greater than or equal to 1, and the processor 401 is further configured to:
- the ratio of the width of the display terminal 200 to the fixed width is the first horizontal ratio; the ratio of the length of the display terminal 200 to the protruding length is the first Longitudinal scale; the abscissa of the mapping point coordinates is the product of the abscissa of the touch point and the first horizontal scale; the ordinate of the mapping point coordinates is the ordinate of the touch point and the first The product of vertical proportions.
- the ratio of the width of the display terminal 200 to the protruding length is the second horizontal ratio; the ratio of the length of the display terminal 200 to the fixed width is the second Longitudinal ratio; the abscissa of the mapping point coordinates is the product of the ordinate of the contact point and the second lateral ratio; the ordinate of the mapping point coordinates is the abscissa of the contact point and the second The product of vertical proportions.
- the readable storage media include, but are not limited to, magnetic disks, hard disks, random access memory 402 (RAM), read-only memory 402 (ROM), erasable programmable read-only memory 402 (EPROM or flash memory), optical fiber , Portable compact disk read-only memory 402 (CD-ROM), 402 optical storage, 402 magnetic storage, or any combination of the above devices.
- the readable storage medium may be the readable storage medium included in the display terminal 200 described above, or may be a readable storage medium that exists independently and is not installed in the display terminal 200.
- the computer program stored in the readable storage medium may be one or more programs.
- the display terminal 200 provided by the embodiment of the present disclosure can cooperate with the tablet 100 to display the contacts on the tablet 100 on the display terminal 200 in real time, so as to realize the adaptive display between the display terminal 200 and the tablet 100.
- the process of adapting the tablet 100 and the display terminal 200 includes: turning on the power switch of the tablet 100, and establishing a connection channel with the display terminal 200 through the sending module of the tablet 100, and connecting the tablet 100 to the display terminal 200 After the terminal 200 is successfully connected, the communication indicator of the tablet 100 changes from a blinking state to a steady state.
- the position detection module detects the extension length of the flexible touch portion 101 extending from the storage device 101 and A corresponding detection signal is generated, and at the same time the detection signal is sent to the display terminal 200 through the sending module.
- the detection signal includes the extension length and the fixed width of the flexible touch portion.
- the receiving module 201 of the display terminal 200 communicates with the sending module of the tablet 100, and receives the detection signal sent by the sending module, and then transmits the received detection signal to the coordinate mapping module 202, and the coordinate mapping module 202 displays and displays according to the detection signal
- the length and width of the terminal 200 itself determine the mapping point coordinates of the touch point in the display terminal 200. Specifically, the ratio of the length to the width of the display terminal 200 itself is greater than or equal to 1.
- the coordinate mapping module 202 is specifically used for:
- the ratio of the width of the display terminal 200 to the fixed width is the first horizontal ratio; the ratio of the length of the display terminal 200 to the protruding length is the first Longitudinal scale; the abscissa of the mapping point coordinates is the product of the abscissa of the touch point and the first horizontal scale; the ordinate of the mapping point coordinates is the ordinate of the touch point and the first The product of vertical proportions.
- the extension length of the flexible touch portion 102 of the tablet 100 is greater than the fixed width, and the display terminal 200 is displayed in a vertical screen.
- the coordinates of the mapping point B on the display terminal 200 (X 1 , Y 1 ) and the coordinates (X 0 , Y 0 ) of the contact A on the flexible touch portion 102 satisfy formula (1), therefore, the display terminal 200 obtains the specific coordinate value of the mapping point B according to formula (1) , which is
- the ratio of the width of the display terminal 200 to the protruding length is the second horizontal ratio; the ratio of the length of the display terminal 200 to the fixed width is the second Longitudinal ratio; the abscissa of the mapping point coordinates is the product of the ordinate of the contact point and the second lateral ratio; the ordinate of the mapping point coordinates is the abscissa of the contact point and the second The product of vertical proportions.
- the protruding length of the flexible touch portion 102 of the tablet 100 is less than the fixed width, and the display terminal 200 is displayed in a vertical screen.
- the coordinates of the mapping point B on the display terminal 200 ( X 1 , Y 1 ) and the coordinates (X 0 , Y 0 ) of the contact A on the flexible touch portion 102 satisfy formula (2). Therefore, the display terminal 200 obtains the specific coordinates of the mapping point B according to formula (2) Value, ie
- the touch point detection module connected to the flexible touch portion 102 detects the touch operation on the flexible touch portion 102 and generates a corresponding touch.
- the coordinate information of the point is sent to the display terminal 200 through the sending module; the receiving module 201 of the display terminal 200 receives the coordinate information of the contact, and sends the received coordinate information of the contact to the controller 203.
- the controller 203 The mapping point coordinates determined by the mapping module 202 display the touch points on the mapping point coordinates, as shown in FIG. 5 and FIG. 6, so as to realize the adaptive display of the display terminal 200 and the tablet 100.
- an embodiment of the present disclosure provides a method for adapting display between a tablet and a display terminal 200, and the method can be applied to the aforementioned tablet and display terminal 200.
- the tablet 100 includes a flexible touch portion 102 and a storage device 101 in which the flexible touch portion 102 is stored.
- the method for adapting display between the tablet and the terminal includes the following steps:
- Step S701 The writing board detects the length of the flexible touch portion extending out of the storage device and the touch operation on the flexible touch portion, generates corresponding detection signals and coordinate information of the contacts, and sends the detection signals and The coordinate information of the touch point.
- the detection signal includes the extension length and the fixed width of the flexible touch portion and the coordinate information of the contact.
- Step S702 The display terminal 200 receives the detection signal and the coordinate information of the touch point.
- Step S703 The display terminal 200 determines the mapping point coordinates of the touch point in the display terminal 200 according to the detection signal and the length and width of the display terminal itself, and displays the touch point in the mapping point coordinates .
- the ratio of the length to the width of the display terminal 200 is greater than or equal to 1, and the method for adapting display between the tablet and the terminal in the embodiment of the present disclosure further includes:
- the ratio of the width of the display terminal 200 to the fixed width is the first horizontal ratio; the ratio of the length of the display terminal 200 to the protruding length is the first Longitudinal scale; the abscissa of the mapping point coordinates is the product of the abscissa of the touch point and the first horizontal scale; the ordinate of the mapping point coordinates is the ordinate of the touch point and the first The product of vertical proportions.
- the ratio of the width of the display terminal 200 to the protruding length is the second horizontal ratio; the ratio of the length of the display terminal 200 to the fixed width is the second Longitudinal ratio; the abscissa of the mapping point coordinates is the product of the ordinate of the contact point and the second lateral ratio; the ordinate of the mapping point coordinates is the abscissa of the contact point and the second The product of vertical proportions.
- FIG. 5 is a schematic diagram of an embodiment of a method for adapting display between a tablet and a terminal according to the present disclosure.
- the detection module detects the extension length of the flexible touch portion 102, and generates a corresponding detection signal, which is sent to The terminal 200 is displayed.
- the touch point detection module detects the touch operation on the flexible touch portion 102 and generates the coordinate information of the corresponding touch point, which is sent to the display terminal 200 through the sending module.
- the receiving module 201 of the display terminal 200 receives the detection signal and the coordinate information of the contact sent by the sending module and transmits it to the coordinate mapping module 202.
- the coordinate mapping module 202 displays the detection signal and the length and width of the display terminal 200 in the display terminal 200.
- the mapping point coordinates of the touch points generated by the touch operation generated by the touch operation on the flexible touch portion 102 are determined. Specifically, as shown in FIG. 5, the ratio of the length to the width of the display terminal 200 itself is greater than or equal to 1. When the extended length of the flexible touch portion 102 is greater than the fixed width, the ratio of the width to the width of the display terminal 200 is the first horizontal ratio; the ratio of the length of the display terminal 200 to the extended length is the first vertical ratio
- the abscissa of the mapping point coordinates is the product of the abscissa of the contact point and the first horizontal ratio; the ordinate of the mapping point coordinates is the ordinate of the contact point and the first longitudinal ratio The product of.
- the original coordinate system of the tablet 100 is taken as the reference coordinate system, and the touch point generated by the touch operation provided on the flexible touch portion 102 is A, and the touch point A
- the mapping point on the display terminal 200 is B, where the coordinates of the contact A on the trigger touch unit 102 are (X 0 , Y 0 ), and the mapping point coordinates of the mapping point B on the display terminal 200 are (X 1 , Y 1 ); the width of the display terminal 200 is N 1 , and the length is M 1 ; the total length of the flexible touch portion 102 of the tablet 100 is M 0 , then the extension length of the flexible touch portion 102 is (M 0 -Y 0 ), the fixed width of the flexible touch portion 102 is N 0 .
- the ratio of the width N 1 of the display terminal 200 to the fixed width N 0 is the first horizontal ratio
- the length M 1 of the display terminal 200 is proportional to the extension
- the ratio of the length Y 0 is the first longitudinal ratio
- the abscissa of the mapping point B is the product of the abscissa of the contact A and the first horizontal ratio
- the ordinate of the mapping point B is the ordinate of the contact A and the first
- the product of a longitudinal ratio that is, the coordinates of the mapping point B and the coordinates of the touch point A satisfy:
- the extension length of the flexible touch portion 102 of the tablet 100 is greater than the fixed width, and the display terminal 200 is displayed in a vertical screen.
- the coordinates of the mapping point B on the display terminal 200 (X 1 , Y 1 ) and the coordinates (X 0 , Y 0 ) of the contact A on the flexible touch portion 102 satisfy formula (1), therefore, the display terminal 200 obtains the specific coordinate value of the mapping point B according to formula (1) , which is After determining the coordinates of the mapping point in the display terminal 200, the controller 203 of the display terminal 200 will display the touch points generated on the flexible touch unit 102 on the coordinates of the mapping point.
- the display terminal 200 and the tablet 100 are adapted to display.
- the ratio of the width of the display terminal 200 to the protruding length is the second horizontal ratio; the ratio of the length of the display terminal 200 to the fixed width is the second Longitudinal ratio; the abscissa of the mapping point coordinates is the product of the ordinate of the contact point and the second lateral ratio; the ordinate of the mapping point coordinates is the abscissa of the contact point and the second The product of vertical proportions.
- the original coordinate system of the tablet 100 is used as the reference coordinate system
- the touch point generated by the touch operation provided on the flexible touch portion 102 is A
- the The mapping point of the contact A on the display terminal 200 is B, wherein the coordinates of the contact A on the trigger touch unit 102 are (X 0 , Y 0 ), and the mapping point coordinates of the mapping point B on the display terminal 200 Is (X 1 , Y 1 );
- the width of the display terminal 200 is N 1 and the length is M 1 ;
- the total length of the flexible touch portion 102 of the tablet 100 is M 0 , then the extension length of the flexible touch portion 102 is (M 0 -Y 0 ), the fixed width of the flexible touch portion 102 is N 0 .
- the ratio of the width N 1 of the display terminal 200 to the extension length (M 0 -Y 0 ) of the flexible touch portion 102 is the second horizontal ratio
- the display terminal The ratio of the length M 1 of 200 to the fixed width N 0 is the second vertical ratio
- the abscissa of the mapping point B is the product of the ordinate of the contact A and the second horizontal ratio
- the ordinate of the mapping point B It is the product of the abscissa of the contact A and the second longitudinal scale, that is, the coordinates of the mapping point B and the coordinates of the contact A satisfy:
- the protruding length of the flexible touch portion 102 of the tablet 100 is less than the fixed width, and the display terminal 200 is displayed in a vertical screen.
- the coordinates of the mapping point B on the display terminal 200 ( X 1 , Y 1 ) and the coordinates (X 0 , Y 0 ) of the contact A on the flexible touch portion 102 satisfy formula (2). Therefore, the display terminal 200 obtains the specific coordinates of the mapping point B according to formula (2) Value, ie After determining the coordinates of the mapping point in the display terminal 200, the controller 203 of the display terminal 200 will display the touch points generated on the flexible touch unit 102 on the coordinates of the mapping point.
- the display terminal 200 and the tablet 100 are adapted to display.
- the method for adapting the display of the writing pad and the terminal of the present disclosure can flexibly adjust the size of the writing interface of the writing pad 100 according to the user's needs, that is, the aspect ratio of the writing surface of the writing pad 100 can be flexibly adjusted, and the writing surface of the writing pad 100 can be flexibly adjusted.
- the extension length, width and the coordinate information of the contact are transmitted to the display terminal 200 in real time, and the display terminal 200 adaptively adjusts its display effect according to the dynamic change information of the tablet 100 (that is, according to the detection signal and the display terminal 200’s own Length and width, dynamically determine the coordinates of the mapping point of the contact in the display terminal 200, so as to dynamically adjust the display position following the change of the tablet), so as to achieve the effect of the display terminal 200 and the tablet 100 adapting to display, and
- the touch information of the tablet 100 is displayed in real time, which optimizes the effect that the display screen of the display terminal 200 matches the display of the tablet 100 when the user uses the tablet 100 in the real-time mode, and enhances product competitiveness.
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Abstract
公开一种写字板、显示终端及写字板与显示终端适配的方法,该写字板包括柔性触控部、以及将所述柔性触控部收纳在其中的收纳装置;所述收纳装置包括用于检测所述柔性触控部伸出所述收纳装置的长度并生成相应的检测信号的位置检测模块,所述检测信号包括所述柔性触控部的伸出长度和固定宽度。该写字板可以根据用户的使用需求灵活调整写字板书写界面的大小,还可以将柔性触控部的检测信号和触点的坐标信息实时传送给显示终端,同时显示终端将触点在显示区域的对应位置实时显示,实现写字板与显示终端的适配显示,达到优化用户在使用写字板实时模式状态下,显示终端适配显示的效果。
Description
本公开涉及写字板技术领域,更具体地说,涉及写字板、显示终端及写字板与显示终端适配的方法。
传统的写字板都是固定宽高比,在用户使用时即使是柔性的写字板也需要把整个写字板拿出来才可以进行书写,这给用户的使用带来极大的不便。
由于目前市面上写字板都是具有固定宽高比的,在屏幕显示时也只能是展示固定的大小以及固定的方向,显示时只能在一开始就设定好宽高比,以及写字板的朝向,一旦确定了写字板的宽高比及朝向后,在后续的书写过程中,则无法根据需求进行适应性调整,大大降低了用户的使用体验。
随着电子终端设备的日益普及以及人们对电子终端设备的便携性的迫切需求,柔性电子终端,尤其是柔性手持终端已经成为了一种市场趋势。以写字板为例,可以利用柔性显示技术,将写字板以抽拉的形式使其兼具便携性和大尺寸。然而,在使用过程中,写字板与显示终端的适配显示问题,一直未得到有效的解决。
发明内容
本公开要解决的技术问题在于,针对现有技术的上述缺陷,提供一种写字板、显示终端及写字板与显示终端适配的方法。
一方面,提供一种写字板,包括柔性触控部、以及将所述柔性触控部收纳在其中的收纳装置;所述收纳装置包括用于检测所述柔性触控部伸出所述收纳装置的长度并生成相应的检测信号的位置检测模块,所述检测信号包括所述柔性触控部的伸出长度和固定宽度。
进一步地,所述位置检测模块包括设置在所述收纳装置内边缘的检测点;
所述检测点用于检测所述伸出长度并生成所述检测信号。
进一步地,还包括与所述柔性触控部连接的触控点检测模块,用于检测所述柔性触控部上的触控操作并生成对应触点的坐标信息。
另一方面,还提供一种显示终端,所述显示终端与前述的写字板配合以显示所述写字板的触点,所述显示终端包括:
接收模块,用于接收检测信号和触点的坐标信息,所述检测信号包括所述写字板的柔性触控部的伸出长度和固定宽度;所述写字板的柔性触控部上的触控操作产生所述触点;
坐标映射模块,用于根据所述检测信号及显示终端自身的长度和宽度,在所述显示终端中确定所述触点的映射点坐标;
控制器,用于将所述触点显示于所述映射点坐标。
进一步地,所述显示终端的长度和宽度的比值大于等于1,所述坐标映射模块用于:
当所述伸出长度大于或等于固定宽度,所述显示终端的宽度与所述固定宽度的比例为第一横向比例;所述显示终端的长度与所述伸出长度的比例为第一纵向比例;所述映射点坐标的横坐标为所述触点的横坐标与所述第一横向比例的乘积;所述映射点纵坐标为所述触点的纵坐标与所述第一纵向比例的乘积;
当所述伸出长度小于固定宽度,所述显示终端的宽度与所述伸出长度的比例为第二横向比例;所述显示终端的长度与所述固定宽度的比例为第二纵向比例;所述映射点坐标的横坐标为所述触点的纵坐标与所述第二横向比例的乘积;所述映射点坐标的纵坐标为所述触点的横坐标与所述第二纵向比例的乘积。
另一方面,还提供一种显示终端,包括:处理器和存储器;
所述存储器,用于存储程序指令;
所述处理器,用于执行所述存储器所存储的程序指令以:
接收检测信号和触点的坐标信息,所述检测信号包括写字板的柔性触控部的伸出长度和固定宽度;所述写字板的柔性触控部上的触控操作产生所述触点;
根据所述检测信号及显示终端自身的长度和宽度,在所述显示终端中确定所述触点的映射点坐标;
将所述触点显示于所述映射点坐标。
进一步地,所述显示终端的长度和宽度的比值大于等于1,所述处理器还用于:
当所述伸出长度大于或等于固定宽度,所述显示终端的宽度与所述固定宽度的比例为第一横向比例;所述显示终端的长度与所述伸出长度的比例为第一纵向比例;所述映射点坐标的横坐标为所述触点的横坐标与所述第一横向比例的乘积;所述映射点纵坐标为所述触点的纵坐标与所述第一纵向比例的乘积;
当所述伸出长度小于固定宽度,所述显示终端的宽度与所述伸出长度的比例为第二横向比例;所述显示终端的长度与所述固定宽度的比例为第二纵 向比例;所述映射点坐标的横坐标为所述触点的纵坐标与所述第二横向比例的乘积;所述映射点坐标的纵坐标为所述触点的横坐标与所述第二纵向比例的乘积。
另一方面,还提供一种可读存储介质,其上存储有计算机程序,所述计算机程序被处理器执行时实现以下步骤:
接收检测信号和触点的坐标信息,所述检测信号包括写字板的柔性触控部的伸出长度和固定宽度;所述写字板的柔性触控部上的触控操作产生所述触点;
根据所述检测信号及显示终端自身的长度和宽度,在所述显示终端中确定所述触点的映射点坐标;
将所述触点显示于所述映射点坐标。
进一步地,所述显示终端的长度和宽度的比值大于等于1,所述处理器还用于:
当所述伸出长度大于或等于固定宽度,所述显示终端的宽度与所述固定宽度的比例为第一横向比例;所述显示终端的长度与所述伸出长度的比例为第一纵向比例;所述映射点坐标的横坐标为所述触点的横坐标与所述第一横向比例的乘积;所述映射点纵坐标为所述触点的纵坐标与所述第一纵向比例的乘积;
当所述伸出长度小于固定宽度,所述显示终端的宽度与所述伸出长度的比例为第二横向比例;所述显示终端的长度与所述固定宽度的比例为第二纵向比例;所述映射点坐标的横坐标为所述触点的纵坐标与所述第二横向比例的乘积;所述映射点坐标的纵坐标为所述触点的横坐标与所述第二纵向比例的乘积。
另一方面,还提供一种写字板与显示终端适配的方法,所述写字板为前述的写字板,所述显示终端为前述的显示终端,包括:
所述写字板检测柔性触控部伸出收纳装置的长度以及在所述柔性触控部上的触控操作,生成相应的检测信号和触点的坐标信息,并发送所述检测信号和所述触点的坐标信息;所述检测信号包括所述柔性触控部的伸出长度和固定宽度以及触点的坐标信息;
所述显示终端接收所述检测信号和所述触点的坐标信息;
所述显示终端根据所述检测信号以及显示终自身的长度和宽度,在所述显示终端中确定所述触点的映射点坐标,并将所述触点显示于所述映射点坐标。
进一步地,所述显示终端的长度和宽度的比值大于等于1,所述方法还包括:
当所述伸出长度大于或等于固定宽度,所述显示终端的宽度与所述固定宽度的比例为第一横向比例;所述显示终端的长度与所述伸出长度的比例为第一纵向比例;所述映射点坐标的横坐标为所述触点的横坐标与所述第一横向比例的乘积;所述映射点纵坐标为所述触点的纵坐标与所述第一纵向比例的乘积;
当所述伸出长度小于固定宽度,所述显示终端的宽度与所述伸出长度的比例为第二横向比例;所述显示终端的长度与所述固定宽度的比例为第二纵向比例;所述映射点坐标的横坐标为所述触点的纵坐标与所述第二横向比例的乘积;所述映射点坐标的纵坐标为所述触点的横坐标与所述第二纵向比例的乘积。
本公开的写字板可以根据用户的使用需求灵活调整写字板书写界面的大 小,即可以灵活调整写字板书写面的宽高比,同时还可以将柔性触控部伸出收纳装置的伸出长度和固定宽度、以及在柔性触控部的触控操作产生的触点的坐标信息发送给显示终端、由显示终端自动根据伸出长度和固定宽度确定在显示终端的映射点坐标,以将触点显示在映射点坐标上,以达到显示终端与写字板适配显示的效果,并对写字板的书写信息进行实时显示,达到了优化用户在使用写字板实时模式状态下,显示终端屏幕适配显示的效果,提升产品竞争力。
下面将结合附图及实施例对本公开作进一步说明,附图中:
图1是本公开一实施例提供的一种写字板的柔性触控部伸出收纳装置的示意图;
图2是本公开一实施例提供的一种写字板的柔性触控部收回收纳装置的示意图;
图3是本公开一实施例提供的一种显示终端的原理框图;
图4是本公开一实施例提供的一种显示终端的结构示意图;
图5是本公开一实施提供的一种写字板与终端适配显示的示意图;
图6是本公开一实施例提供的一种写字板与终端适配显示的示意图;
图7是本公开一实施例提供的一种写字板与终端适配显示的方法的流程示意图。
下面将结合本公开实施例中的附图,对本公开实施例中的技术方案进行 清楚、完整地描述,显然,所描述的实施例仅仅是本公开一部分实施例,而不是全部的实施例。基于本公开中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本公开保护的范围。
参考图1和图2,本公开实施例提供了一种写字板100,该写字板100包括柔性触控部102、以及将柔性触控部102收纳在其中的收纳装置101;收纳装置101包括用于检测柔性触控部102伸出收纳装置101的长度并生成相应的检测信号的位置检测模块。本公开实施例中,检测信号包括柔性触控部102的伸出长度和固定宽度。可以理解地,柔性触控部102的伸出长度为柔性触控部102伸出收纳装置101的实时长度,而由于在柔性触控部102伸出收纳装置101或者收回收纳装置101的过程中,柔性触控部102的宽度是固定不变的,因此,位置检测模块在柔性触控部102活动过程中所检测到的检测信号中的伸出长度为一个连续的、变化的值,而宽度是固定的值。
其中,图1示出了本公开实施例的写字板100的柔性触控部102抽出收纳装置101时的示意图,图2示出了本公开实施例的写字板100的柔性触控部102全部收回收纳装置101的示意图。如图1所示,本公开实施例的写字板100的柔性触控部102可以根据用户的使用需求改变伸出收纳装置101的长度,即柔性触控部102伸出收纳装置101的宽高比可以根据用户的使用需求任意改变,并且还可以实时检测柔性触控部102伸出收纳装置101的实时长度,即在用户调整柔性触控部102的宽高比后,可以实时检测自身的宽高比,并生成相应的检测信号,并将所生成的检测信号实时发送给显示终端200,从而可以实时地获取柔性触控部102的宽高比。
本公开实施例的检测模块包括设置在收纳装置101内边缘的检测点。检测点用于在柔性触控部102伸出收纳装置101的过程中,检测柔性触控部102 的伸出长度并生成相应的检测信号。即通过检测点可以实现对柔性触控部102伸出长度的检测。可选的,本公开实施例中,检测点可以设置多个,具体数量以实际产品设计需求确定,只要可以达到对柔性触控部102伸出长度的检测即可。
进一步地,本公开实施例的位置检测模块位于收纳装置101收纳柔性触控部102的开口处。
进一步地,本公开实施例的写字板还包括:与柔性触控部102连接的触控点检测模块,该触控点检测模块用于检测柔性触控部102上的触控操作并生成对应触点的坐标信息。在一个具体实施例中,本公开的触控点检测模块可以为电容式触控点检测模块,包括电容式触控传感器,该电容式触控传感器用于检测在柔性触控部102上的触控操作,由触控操作的作用使电容式触控传感器根据电容耦合的变化生成对应触点的坐标信息。当然,可以理解地,在其他一些实施例中,触控点检测模块也可以为电阻式触控点检测模块。
进一步地,本公开实施例的写字板100还可以包括:与柔性触控部102连接的显示屏,该显示屏用于显示在柔性触控部102上的触控操作所产生的触点。可选的,本公开实施列的显示屏包括但不限于OLED显示屏。
进一步地,本公开实施例的写字板100还可以包括:与位置检测模块和触控点检测模块连接、用于发送检测信号和触点的坐标信息的发送模块。通过发送模块可以将写字板位置检测模块检测生成的检测信号和触控点检测模块检测生成的触点的坐标信息实时发送给显示终端200,以使得显示终端200可以实时获得写字板100的柔性触控部102伸出收纳装置101的伸出长度和固定宽度,从而可以根据伸出长度和固定宽度及显示终端200自身的长度和宽度,确定柔性触控部102上的触点在显示终端200中的映射坐标,进而将 该触点显示于显示终端200的映射坐标上,实现写字板与显示终端200适配显示。可选的,本公开实施例的发送模块可以为无线通信模块,该无线通信模块包括但不限于WIFI通信模块、2G通信模块、3G通信模块、4G通信模块、5G通信模块、蓝牙通信模块。当然,可以理解地,在其他一些实施例中,写字板100与显示终端200之间也可以通过有线的方式实现连接,以将检测信号和触点的坐标信息实时传送给显示终端200。
进一步地,本公开实施例的写字板100还包括用于输出电能的电池,电池为柔性电池。可选的,为了获得较大的电池容量,该柔性电池的面积可以大于或等于柔性触摸屏的面积。
本公开实施例中,该写字板100还可以设置电源开关、电源指示灯、通信按键、通信指示灯等。
电源开关用于接收电源开启指令或者电源关闭指令,例如,长按电源开关可以控制写字板100上电或者断电。电源指示灯用于指示写字板100的通电状态。其中,电源指示灯可以为发光二极管(LED)。例如电源指示灯为可以产生红光或绿光的双色LED灯。当写字板100处于工作状态时,电源指示灯发出绿光,以指示写字板100正常工作;当写字板100处于低电量状态时,电源指示灯发出闪烁的红光,以指示写字板100电量不足,提示用户及时充电;当写字板100处于充电状态时,电源指示灯发光稳定的红光,以指示写字板100处于充电状态;当写字板100充电完成时,电源指示灯由红光转为绿光,以指示写字板100充电完成。
通信按键用于接收通信连接指令或者断开通信连接指令,通信指示灯用于指示写字板100的通信连接状态。例如,长按通信按键,可以控制无线通信模块向显示终端200发送通信连接请求,同时通过通信指示灯指示通信连 接状态。具体的,可以设置通信指示灯在连接过程中为闪烁状态,当通信连接成功后,通信指示灯转为常亮状态,进而指示写字板100与显示终端200处于正常的通信连接状态。
参考图3,图3示出了本公开一实施例提供的一种显示终端200的原理框图,该显示终端200可以与前述的写字板100进行适配显示。具体为,该显示终端200与前述的写字板100配合以实时将在写字板100的柔性触控部102的触控操作所产生的触点显示在显示终端200的显示区域的对应位置上。可选的,本公开实施例的显示终端200包括但不限于智能手机、智能手表等。进一步地,该显示终端200的操作系统包括但不限于Android操作系统、iOS操作系统、Windows操作系统、Linux操作系统等。
具体的,如图3所示,本公开实施例的显示终端200可以包括:接收模块201、坐标映射模块202以及控制器203。
本公开实施例中,接收模块201用于接收检测信号和触点的坐标信息。其中,检测信号包括写字板100的柔性触控部102的伸出长度和固定宽度;触点由在写字板100的柔性触控部102的触控操作产生。通过该接收模块201可以实现显示终端200与写字板100的实时通信,并实时接收写字板100输出的检测信号和触点的坐标信息,从而可以实时获得写字板100的柔性触控部102伸出收纳装置101的实时长度,以及在写字板100的柔性触控部102上的触控操作所产生的触点。可选的,本公开实施例的接收模块201可以为无线通信模块,该无线通信模块包括但不限于WIFI通信模块、2G通信模块、3G通信模块、4G通信模块、5G通信模块、蓝牙通信模块。当然,可以理解地,在其他一些实施例中,显示终端200与写字板100之间也可以通过有线的方式实现连接,以实时接收写字板100输出的检测信号和触点的坐标信息。
本公开实施例中,坐标映射模块202用于根据所述检测信号及显示终端200自身的长度和宽度,在所述显示终端200中确定所述触点的映射点坐标。
本公开实施例中,一般地,显示终端200自身的长度和宽度的比值大于等于1。坐标映射模块202具体用于:
当所述伸出长度大于或等于固定宽度,所述显示终端200的宽度与所述固定宽度的比例为第一横向比例;所述显示终端200的长度与所述伸出长度的比例为第一纵向比例;所述映射点坐标的横坐标为所述触点的横坐标与所述第一横向比例的乘积;所述映射点坐标的纵坐标为所述触点的纵坐标与所述第一纵向比例的乘积。
或者,当所述伸出长度小于固定宽度,所述显示终端200的宽度与所述伸出长度的比例为第二横向比例;所述显示终端200的长度与所述固定宽度的比例为第二纵向比例;所述映射点坐标的横坐标为所述触点的纵坐标与所述第二横向比例的乘积;所述映射点坐标的纵坐标为所述触点的横坐标与所述第二纵向比例的乘积。
可以理解地,显示终端200自身的长度和宽度的比例是固定不变的,当显示终端200自身的长度和宽度的比例大于等于1时,显示终端200为竖屏显示。在一个具体实施例中,以写字板100的原坐标系为参考坐标系,设在柔性触控部102上的触控操作所产生的触点为A,该触点A在显示终端200上的映射点为B,其中,该触点A在触发触控部102上的坐标为(X
0,Y
0),映射点B在显示终端200上的映射点坐标为(X
1,Y
1);显示终端200的宽度为N
1,长度为M
1;写字板100的柔性触控部102的总长度为M
0,则柔性触控部102的伸出长度为(M
0-Y
0),柔性触控部102的固定宽度为N
0。则当柔性触控部102的伸出长度大于或等于固定宽度时,显示终端200的宽度N
1与 固定宽度N
0的比例为第一横向比例,显示终端200的长度M
1与所述伸出长度Y
0的比例为第一纵向比例;此时,映射点B的横坐标为触点A的横坐标与第一横向比例的乘积,映射点B的纵坐标为触点A的纵坐标与第一纵向比例的乘积,即映射点B的坐标和触点A的坐标满足:
如图5所示,图5中,写字板100的柔性触控部102的伸出长度大于固定宽度,显示终端200为竖屏显示,此时,显示终端200上的映射点B的坐标(X
1,Y
1)和柔性触控部102上的触点A的坐标(X
0,Y
0)满足(1)式,因此,显示终端200根据(1)式,获得映射点B的具体坐标值,即
或者,当柔性触控部102的伸出长度小于固定宽度时,显示终端200的宽度N
1与柔性触控部102的伸出长度(M
0-Y
0)的比例为第二横向比例,显示终端200的长度M
1与所述固定宽度N
0的比例为第二纵向比例;此时,映射点B的横坐标为触点A的纵坐标与第二横向比例的乘积,映射点B的纵坐标为触点A的横坐标与第二纵向比例的乘积,即映射点B的坐标和触点A的坐标满足:
如图6所示,图6中,写字板100的柔性触控部102的伸出长度小于固定宽度,而显示终端200为竖屏显示,此时,显示终端200上的映射点B的坐标(X
1,Y
1)和柔性触控部102上的触点A的坐标(X
0,Y
0)满足(2)式,因此,显示终端200根据(2)式,获得映射点B的具体坐标值,即
控制器203,用于将触点显示于映射点坐标。具体的,当坐标映射模块202确定触点在显示终端200上的映射点坐标后,控制器203即根据所确定的映射点坐标将触点显示于显示终端200的显示区域对应的位置上,以实现显示终端200与写字板100的适配显示。由前述可知,当柔性触控部102的伸出长度大于或等于固定宽度时,映射点B的映射坐标满足(1)式,进而由坐标映射模块202计算出映射点B的映射点坐标为
控制器203即根据计算得到的映射点坐标将触点A显示于显示终端200的
的位置处。当柔性触控部102的伸出长度小于固定宽度时,映射点B的映射坐标满足(2)式,进而由坐标映射模块202计算出映射点B的映射点坐标为
控制器203即根据计算得到的映射点坐标将触点A显示于显示终端200的
的位置处。
参考图4,为本公开一实施例提供的一种显示终端200的结构示意图。该显示终端200与前述的写字板100配合以显示在写字板100的柔性触控部102上的触点。可选的,本公开实施例的显示终端200包括但不限于智能手机、 智能手表等。进一步地,该显示终端200的操作系统包括但不限于Android操作系统、iOS操作系统、Windows操作系统、Linux操作系统等。
如图4所示,该显示终端200可与前述的写字板100配合以将在写字板100上的触点显示于显示终端200对应的位置上,实现显示终端200与写字板100的适配显示。图4的显示终端200仅仅是一个示例,不应对本发明实施例的功能和使用范围带来任何限制。
该显示终端200包括处理器401和存储器402,存储器402用于存储程序指令。可选的,存储器402可以为只读存储器402(ROM)和/或随机访问存储器402(RAM)。
处理器401,用于执行存储器402所存储的程序指令以执行以下动作:
接收检测信号和触点的坐标信息,所述检测信号包括写字板的柔性触控部的伸出长度和固定宽度;所述写字板的柔性触控部上的触控操作产生所述触点;
根据所述检测信号及显示终端200自身的长度和宽度,在所述显示终端200中确定所述触点的映射点坐标;
将所述触点显示于所述映射点坐标。
进一步地,显示终端200的长度和宽度的比值大于等于1,处理器401还用于:
当所述伸出长度大于或等于固定宽度,所述显示终端200的宽度与所述固定宽度的比例为第一横向比例;所述显示终端200的长度与所述伸出长度的比例为第一纵向比例;所述映射点坐标的横坐标为所述触点的横坐标与所述第一横向比例的乘积;所述映射点坐标的纵坐标为所述触点的纵坐标与所述第一纵向比例的乘积。
或者,当所述伸出长度小于固定宽度,所述显示终端200的宽度与所述伸出长度的比例为第二横向比例;所述显示终端200的长度与所述固定宽度的比例为第二纵向比例;所述映射点坐标的横坐标为所述触点的纵坐标与所述第二横向比例的乘积;所述映射点坐标的纵坐标为所述触点的横坐标与所述第二纵向比例的乘积。
如图4所示,处理器401可以读取存储在只读存储器402中的程序或者访问随机访问存储器402中的程序而执行各种适当的动作和处理。处理器401与存储器402通过总线彼此相连。
本公开实施例还提供一种可读存储介质,其上存储有计算机程序,所存储的计算机程序被处理器401执行时实现以下步骤:
接收检测信号和触点的坐标信息,所述检测信号包括写字板的柔性触控部的伸出长度和固定宽度;所述写字板的柔性触控部上的触控操作产生所述触点;
根据所述检测信号及显示终端200自身的长度和宽度,在所述显示终端200中确定所述触点的映射点坐标;
将所述触点显示于所述映射点坐标。
进一步地,显示终端200的长度和宽度的比值大于等于1,所述处理器401还用于:
当所述伸出长度大于或等于固定宽度,所述显示终端200的宽度与所述固定宽度的比例为第一横向比例;所述显示终端200的长度与所述伸出长度的比例为第一纵向比例;所述映射点坐标的横坐标为所述触点的横坐标与所述第一横向比例的乘积;所述映射点坐标的纵坐标为所述触点的纵坐标与所述第一纵向比例的乘积。
或者,当所述伸出长度小于固定宽度,所述显示终端200的宽度与所述伸出长度的比例为第二横向比例;所述显示终端200的长度与所述固定宽度的比例为第二纵向比例;所述映射点坐标的横坐标为所述触点的纵坐标与所述第二横向比例的乘积;所述映射点坐标的纵坐标为所述触点的横坐标与所述第二纵向比例的乘积。
本公开实施例提供的可读存储介质包括但不限于磁盘、硬盘、随机访问存储器402(RAM)、只读存储器402(ROM)、可擦除可编程只读存储器402(EPROM或闪存)、光纤、便携式紧凑磁盘只读存储器402(CD-ROM)、光存储器402件、磁存储器402件、或者上述器件的任意组合。
可以理解地,可读存储介质可以是上述显示终端200中所包含的可读存储介质,也可以是独立存在而未安装在显示终端200中的可读存储介质。
进一步地,可读存储介质所存储的计算机程序可以为一个或者多个程序。
本公开实施例提供的显示终端200可以与写字板100配合,以将写字板100上的触点实时显示在显示终端200,实现显示终端200与写字板100的适配显示。
在一个具体实施例中,写字板100与显示终端200的适配过程包括:打开写字板100的电源开关,并通过写字板100发送模块与显示终端200建立连接通道,且在写字板100与显示终端200连接成功后,写字板100的通信指示灯由闪烁状态转为常亮状态。
写字板100与显示终端200连通后,当写字板100的柔性触控部102被用户从收纳装置101中伸出时,位置检测模块检测柔性触控部101伸出收纳装置101的伸出长度并生成相应的检测信号,同时将检测信号通过发送模块发送给显示终端200。其中,检测信号包括柔性触控部的伸出长度和固定宽度。 显示终端200的接收模块201与写字板100的发送模块进行通信,并接收发送模块发送的检测信号,然后将所接收的检测信号传输给坐标映射模块202,由坐标映射模块202根据检测信号及显示终端200自身的长度和宽度,在显示终端200中确定触点的映射点坐标。具体的,显示终端200自身的长度和宽度的比值大于等于1。坐标映射模块202具体用于:
当所述伸出长度大于或等于固定宽度,所述显示终端200的宽度与所述固定宽度的比例为第一横向比例;所述显示终端200的长度与所述伸出长度的比例为第一纵向比例;所述映射点坐标的横坐标为所述触点的横坐标与所述第一横向比例的乘积;所述映射点坐标的纵坐标为所述触点的纵坐标与所述第一纵向比例的乘积。
如图5所示,图5中,写字板100的柔性触控部102的伸出长度大于固定宽度,显示终端200为竖屏显示,此时,显示终端200上的映射点B的坐标(X
1,Y
1)和柔性触控部102上的触点A的坐标(X
0,Y
0)满足(1)式,因此,显示终端200根据(1)式,获得映射点B的具体坐标值,即
或者,当所述伸出长度小于固定宽度,所述显示终端200的宽度与所述伸出长度的比例为第二横向比例;所述显示终端200的长度与所述固定宽度的比例为第二纵向比例;所述映射点坐标的横坐标为所述触点的纵坐标与所述第二横向比例的乘积;所述映射点坐标的纵坐标为所述触点的横坐标与所述第二纵向比例的乘积。
如图6所示,图6中,写字板100的柔性触控部102的伸出长度小于固定宽度,而显示终端200为竖屏显示,此时,显示终端200上的映射点B的 坐标(X
1,Y
1)和柔性触控部102上的触点A的坐标(X
0,Y
0)满足(2)式,因此,显示终端200根据(2)式,获得映射点B的具体坐标值,即
另外,当用户在写字板100的柔性触控部102上执行触控操作时,与柔性触控部102连接的触控点检测模块检测在柔性触控部102上的触控操作并生成对应触点的坐标信息,且通过发送模块发送给显示终端200;显示终端200的接收模块201接收触点的坐标信息,并将所接收的触点的坐标信息发送给控制器203,控制器203根据坐标映射模块202所确定的映射点坐标,将触点显示于映射点坐标上,即如图5和图6所示,从而实现显示终端200与写字板100的适配显示。
参考图7,本公开实施例提供了一种写字板与显示终端200适配显示的方法,该方法可以应用前述的写字板与显示终端200。其中,写字板100包括柔性触控部102、以及将柔性触控部102收纳在其中的收纳装置101。
如图7所示,该写字板与终端适配显示的方法包括以下步骤:
步骤S701、写字板检测柔性触控部伸出收纳装置的长度以及在所述柔性触控部上的触控操作,生成相应的检测信号和触点的坐标信息,并发送所述检测信号和所述触点的坐标信息。检测信号包括所述柔性触控部的伸出长度和固定宽度以及触点的坐标信息。
步骤S702、显示终端200接收所述检测信号和所述触点的坐标信息。
步骤S703、显示终端200根据所述检测信号以及显示终自身的长度和宽度,在所述显示终端200中确定所述触点的映射点坐标,并将所述触点显示于所述映射点坐标。
进一步地,显示终端200的长度和宽度的比值大于等于1,本公开实施例的写字板与终端适配显示的方法还包括:
当所述伸出长度大于或等于固定宽度,所述显示终端200的宽度与所述固定宽度的比例为第一横向比例;所述显示终端200的长度与所述伸出长度的比例为第一纵向比例;所述映射点坐标的横坐标为所述触点的横坐标与所述第一横向比例的乘积;所述映射点坐标的纵坐标为所述触点的纵坐标与所述第一纵向比例的乘积。
或者,当所述伸出长度小于固定宽度,所述显示终端200的宽度与所述伸出长度的比例为第二横向比例;所述显示终端200的长度与所述固定宽度的比例为第二纵向比例;所述映射点坐标的横坐标为所述触点的纵坐标与所述第二横向比例的乘积;所述映射点坐标的纵坐标为所述触点的横坐标与所述第二纵向比例的乘积。
参考图5,图5为本公开的写字板与终端适配显示的方法一实施例的适配示意图。
如图5所示,在写字板100的柔性触控部102伸出收纳装置101的过程中,检测模块检测柔性触控部102的伸出长度,并生成相应的检测信号,通过发送模块发送给显示终端200,同时,触控点检测模块检测在柔性触控部102上的触控操作并生成对应的触点的坐标信息,通过发送模块发送给显示终端200。显示终端200的接收模块201接收发送模块发送的检测信号和触点的坐标信息,并传送给坐标映射模块202,坐标映射模块202根据检测信号和显示终端200自身的长度和宽度,在显示终端200确定在柔性触控部102上的触控操作所产生的触控操作所生成触点的映射点坐标。具体的,如图5所示,显示终端200自身的长度和宽度的比值大于等于1。当柔性触控部102的伸出 长度大于固定宽度时,显示终端200的宽度与宽度的比例为第一横向比例;所述显示终端200的长度与所述伸出长度的比例为第一纵向比例;所述映射点坐标的横坐标为所述触点的横坐标与所述第一横向比例的乘积;所述映射点坐标的纵坐标为所述触点的纵坐标与所述第一纵向比例的乘积。
如图5所示,在一个具体实施例中,以写字板100的原坐标系为参考坐标系,设在柔性触控部102上的触控操作所产生的触点为A,该触点A在显示终端200上的映射点为B,其中,该触点A在触发触控部102上的坐标为(X
0,Y
0),映射点B在显示终端200上的映射点坐标为(X
1,Y
1);显示终端200的宽度为N
1,长度为M
1;写字板100的柔性触控部102的总长度为M
0,则柔性触控部102的伸出长度为(M
0-Y
0),柔性触控部102的固定宽度为N
0。则当柔性触控部102的伸出长度大于或等于固定宽度时,显示终端200的宽度N
1与固定宽度N
0的比例为第一横向比例,显示终端200的长度M
1与所述伸出长度Y
0的比例为第一纵向比例;此时,映射点B的横坐标为触点A的横坐标与第一横向比例的乘积,映射点B的纵坐标为触点A的纵坐标与第一纵向比例的乘积,即映射点B的坐标和触点A的坐标满足:
如图5所示,图5中,写字板100的柔性触控部102的伸出长度大于固定宽度,显示终端200为竖屏显示,此时,显示终端200上的映射点B的坐标(X
1,Y
1)和柔性触控部102上的触点A的坐标(X
0,Y
0)满足(1)式,因此,显示终端200根据(1)式,获得映射点B的具体坐标值,即
在确定在显示终端200中的映射点坐标后,显示终端200的控制器203即将在柔性触控部102上产生的触点显示于映射点坐标
实现显示终端200与写字板100的适配显示。
或者,当所述伸出长度小于固定宽度,所述显示终端200的宽度与所述伸出长度的比例为第二横向比例;所述显示终端200的长度与所述固定宽度的比例为第二纵向比例;所述映射点坐标的横坐标为所述触点的纵坐标与所述第二横向比例的乘积;所述映射点坐标的纵坐标为所述触点的横坐标与所述第二纵向比例的乘积。
在一个具体实施例中,同样地,如图6所示,以写字板100的原坐标系为参考坐标系,设在柔性触控部102上的触控操作所产生的触点为A,该触点A在显示终端200上的映射点为B,其中,该触点A在触发触控部102上的坐标为(X
0,Y
0),映射点B在显示终端200上的映射点坐标为(X
1,Y
1);显示终端200的宽度为N
1,长度为M
1;写字板100的柔性触控部102的总长度为M
0,则柔性触控部102的伸出长度为(M
0-Y
0),柔性触控部102的固定宽度为N
0。则当柔性触控部102的伸出长度小于固定宽度时,显示终端200的宽度N
1与柔性触控部102的伸出长度(M
0-Y
0)的比例为第二横向比例,显示终端200的长度M
1与所述固定宽度N
0的比例为第二纵向比例;此时,映射点B的横坐标为触点A的纵坐标与第二横向比例的乘积,映射点B的纵坐标为触点A的横坐标与第二纵向比例的乘积,即映射点B的坐标和触点A的坐标满足:
如图6所示,图6中,写字板100的柔性触控部102的伸出长度小于固定宽度,而显示终端200为竖屏显示,此时,显示终端200上的映射点B的坐标(X
1,Y
1)和柔性触控部102上的触点A的坐标(X
0,Y
0)满足(2)式,因此,显示终端200根据(2)式,获得映射点B的具体坐标值,即
在确定在显示终端200中的映射点坐标后,显示终端200的控制器203即将在柔性触控部102上产生的触点显示于映射点坐标
实现显示终端200与写字板100的适配显示。
本公开的写字板与终端适配显示的方法,可以根据用户的使用需求灵活调整写字板100书写界面的大小,即可以灵活调整写字板100书写面的宽高比,同时还可以将写字板100的伸出长度、宽度以及触点的坐标信息实时传送给显示终端200,显示终端200根据写字板100的动态变化的信息自适应地调整自身的显示效果(即根据检测信号和显示终端200自身的长度和宽度,动态地确定触点在显示终端200中的映射点坐标,以跟随写字板的变化而动态地调整显示位置),以达到显示终端200与写字板100适配显示的效果,并对写字板100的触控的信息进行实时显示,达到了优化用户在使用写字板100实时模式状态下,显示终端200的显示屏幕与写字板100适配显示的效果,提升产品竞争力。
以上实施例只为说明本公开的技术构思及特点,其目的在于让熟悉此项 技术的人士能够了解本公开的内容并据此实施,并不能限制本公开的保护范围。凡跟本公开权利要求范围所做的均等变化与修饰,均应属于本公开权利要求的涵盖范围。
应当理解的是,对本领域普通技术人员来说,可以根据上述说明加以改进或变换,而所有这些改进和变换都应属于本公开所附权利要求的保护范围。
Claims (14)
- 一种写字板,其特征在于,包括柔性触控部、以及将所述柔性触控部收纳在其中的收纳装置;所述收纳装置包括用于检测所述柔性触控部伸出所述收纳装置的长度并生成相应的检测信号的位置检测模块,所述检测信号包括所述柔性触控部的伸出长度和固定宽度。
- 根据权利要求1所述的写字板,其特征在于,所述位置检测模块包括设置在所述收纳装置内边缘的检测点;所述检测点用于检测所述伸出长度并生成所述检测信号。
- 根据权利要求1所述的写字板,其特征在于,所述位置检测模块位于所述收纳装置收纳所述柔性触控部的开口处。
- 根据权利要求1所述的写字板,其特征在于,还包括与所述柔性触控部连接的触控点检测模块,用于检测所述柔性触控部上的触控操作并生成对应触点的坐标信息。
- 根据权利要求4所述的写字板,其特征在于,还包括与所述位置检测模块和所述触控点检测模块连接、用于发送所述检测信号和所述触点的坐标信息的发送模块。
- 根据权利要求1所述的写字板,其特征在于,还包括用于输出电能的电池,所述电池为柔性电池。
- 一种显示终端,其特征在于,所述显示终端与权利要求1-6中任一项所述的写字板配合以显示所述写字板的触点,所述显示终端包括:接收模块,用于接收检测信号和触点的坐标信息,所述检测信号包括所述写字板的柔性触控部的伸出长度和固定宽度;所述写字板的柔性触控部上 的触控操作产生所述触点;坐标映射模块,用于根据所述检测信号及显示终端自身的长度和宽度,在所述显示终端中确定所述触点的映射点坐标;控制器,用于将所述触点显示于所述映射点坐标。
- 根据权利要求7所述的显示终端,其特征在于,所述显示终端的长度和宽度的比值大于等于1,所述坐标映射模块用于:当所述伸出长度大于或等于固定宽度,所述显示终端的宽度与所述固定宽度的比例为第一横向比例;所述显示终端的长度与所述伸出长度的比例为第一纵向比例;所述映射点坐标的横坐标为所述触点的横坐标与所述第一横向比例的乘积;所述映射点坐标的纵坐标为所述触点的纵坐标与所述第一纵向比例的乘积;当所述伸出长度小于固定宽度,所述显示终端的宽度与所述伸出长度的比例为第二横向比例;所述显示终端的长度与所述固定宽度的比例为第二纵向比例;所述映射点坐标的横坐标为所述触点的纵坐标与所述第二横向比例的乘积;所述映射点坐标的纵坐标为所述触点的横坐标与所述第二纵向比例的乘积。
- 一种显示终端,其特征在于,包括:处理器和存储器;所述存储器,用于存储程序指令;所述处理器,用于执行所述存储器所存储的程序指令以:接收检测信号和触点的坐标信息,所述检测信号包括写字板的柔性触控部的伸出长度和固定宽度;所述写字板的柔性触控部上的触控操作产生所述触点;根据所述检测信号及显示终端自身的长度和宽度,在所述显示终端中确 定所述触点的映射点坐标;将所述触点显示于所述映射点坐标。
- 根据权利要求9所述的显示终端,其特征在于,所述显示终端的长度和宽度的比值大于等于1,所述处理器还用于:当所述伸出长度大于或等于固定宽度,所述显示终端的宽度与所述固定宽度的比例为第一横向比例;所述显示终端的长度与所述伸出长度的比例为第一纵向比例;所述映射点坐标的横坐标为所述触点的横坐标与所述第一横向比例的乘积;所述映射点坐标的纵坐标为所述触点的纵坐标与所述第一纵向比例的乘积;当所述伸出长度小于固定宽度,所述显示终端的宽度与所述伸出长度的比例为第二横向比例;所述显示终端的长度与所述固定宽度的比例为第二纵向比例;所述映射点坐标的横坐标为所述触点的纵坐标与所述第二横向比例的乘积;所述映射点坐标的纵坐标为所述触点的横坐标与所述第二纵向比例的乘积。
- 一种可读存储介质,其上存储有计算机程序,其特征在于,所述计算机程序被处理器执行时实现以下步骤:接收检测信号和触点的坐标信息,所述检测信号包括写字板的柔性触控部的伸出长度和固定宽度;所述写字板的柔性触控部上的触控操作产生所述触点;根据所述检测信号及显示终端自身的长度和宽度,在所述显示终端中确定所述触点的映射点坐标;将所述触点显示于所述映射点坐标。
- 根据权利要求11所述的可读存储介质,其特征在于,所述显示终端的 长度和宽度的比值大于等于1,所述处理器还用于:当所述伸出长度大于或等于固定宽度,所述显示终端的宽度与所述固定宽度的比例为第一横向比例;所述显示终端的长度与所述伸出长度的比例为第一纵向比例;所述映射点坐标的横坐标为所述触点的横坐标与所述第一横向比例的乘积;所述映射点坐标的纵坐标为所述触点的纵坐标与所述第一纵向比例的乘积;当所述伸出长度小于固定宽度,所述显示终端的宽度与所述伸出长度的比例为第二横向比例;所述显示终端的长度与所述固定宽度的比例为第二纵向比例;所述映射点坐标的横坐标为所述触点的纵坐标与所述第二横向比例的乘积;所述映射点坐标的纵坐标为所述触点的横坐标与所述第二纵向比例的乘积。
- 一种写字板与显示终端适配的方法,所述写字板为权利要求1-6任一项所述的写字板,所述显示终端为权利要求7或8所述的显示终端,其特征在于,包括:所述写字板检测柔性触控部伸出收纳装置的长度以及在所述柔性触控部上的触控操作,生成相应的检测信号和触点的坐标信息,并发送所述检测信号和所述触点的坐标信息;所述检测信号包括所述柔性触控部的伸出长度和固定宽度以及触点的坐标信息;所述显示终端接收所述检测信号和所述触点的坐标信息;所述显示终端根据所述检测信号以及显示终自身的长度和宽度,在所述显示终端中确定所述触点的映射点坐标,并将所述触点显示于所述映射点坐标。
- 根据权利要求13所述的写字板与显示终端适配的方法,其特征在于, 所述显示终端的长度和宽度的比值大于等于1,所述方法还包括:当所述伸出长度大于或等于固定宽度,所述显示终端的宽度与所述固定宽度的比例为第一横向比例;所述显示终端的长度与所述伸出长度的比例为第一纵向比例;所述映射点坐标的横坐标为所述触点的横坐标与所述第一横向比例的乘积;所述映射点坐标的纵坐标为所述触点的纵坐标与所述第一纵向比例的乘积;当所述伸出长度小于固定宽度,所述显示终端的宽度与所述伸出长度的比例为第二横向比例;所述显示终端的长度与所述固定宽度的比例为第二纵向比例;所述映射点坐标的横坐标为所述触点的纵坐标与所述第二横向比例的乘积;所述映射点坐标的纵坐标为所述触点的横坐标与所述第二纵向比例的乘积。
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| CN201980073509.XA CN113261262A (zh) | 2019-01-16 | 2019-01-16 | 写字板、显示终端及写字板与显示终端适配的方法 |
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| CN202854776U (zh) * | 2012-09-14 | 2013-04-03 | 东华大学 | 一种基于导电织物的表面电容式柔性触控装置 |
| CN106448465A (zh) * | 2016-10-11 | 2017-02-22 | 上海天马微电子有限公司 | 柔性显示装置 |
| CN108377279A (zh) * | 2018-02-09 | 2018-08-07 | 维沃移动通信有限公司 | 一种移动终端及控制方法 |
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| CN101776970A (zh) * | 2010-02-26 | 2010-07-14 | 华为终端有限公司 | 触控键盘的设置方法及装置 |
| CN106020678A (zh) * | 2016-04-29 | 2016-10-12 | 青岛海信移动通信技术股份有限公司 | 一种在移动设备进行触控操作的方法和装置 |
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| CN202854776U (zh) * | 2012-09-14 | 2013-04-03 | 东华大学 | 一种基于导电织物的表面电容式柔性触控装置 |
| CN106448465A (zh) * | 2016-10-11 | 2017-02-22 | 上海天马微电子有限公司 | 柔性显示装置 |
| CN108377279A (zh) * | 2018-02-09 | 2018-08-07 | 维沃移动通信有限公司 | 一种移动终端及控制方法 |
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