Electronic pen and method executed by electronic pen
The processor for electronic pens addresses the issue of unintended side switch activation by determining pen contact and invalidating switch information during drawing, thus preventing interruptions to the drawing process.
Patent Information
- Application Number
- JP2025024081
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2025-02-18
- Publication Date
- 2025-05-09
- Estimated Expiration
- 2041-05-31
AI Technical Summary
The side switch on electronic pens can be accidentally activated during writing, leading to unintended functions such as left-clicking or right-clicking, which interrupts the drawing process.
A processor and method that control the input of an electronic pen by determining whether the pen tip is in contact with a panel and invalidating switch information when it is, preventing the activation of side switch functions during drawing.
Prevents the drawing process from being interrupted by ensuring that side switch functions are not activated when the pen tip is in contact with the panel, aligning with the user's intentions.
Smart Images

Figure 2025072649000001_ABST
Abstract
Description
[Technical Field]
[0001] The present invention relates to a processor for controlling input by an electronic pen and a computer-implemented method for use with an electronic pen. [Background technology]
[0002] Electronic pens having switches such as a side switch and a tail switch are known. Patent Document 1 discloses an example of this type of electronic pen. The document describes the use of a side switch to achieve functions similar to the left and right clicks of a mouse. [Prior art documents] [Patent documents]
[0003] [Patent Document 1] Patent Publication No. 2021-033542 Summary of the Invention [Problem to be solved by the invention]
[0004] The side switch of an electronic pen is usually located where the index finger of a user holding the electronic pen would touch it. This is done to make it easier to press while holding the electronic pen. However, since this switch does not exist on traditional stationery such as ballpoint pens or pencils, users who are not accustomed to electronic pens may accidentally touch the side switch while writing. This can cause functions such as left-clicking or right-clicking to be activated, resulting in the sudden selection of a stroke line while writing and the interruption of the drawing process. Therefore, an improvement was needed.
[0005] Therefore, one object of the present invention is to provide a processor and method that can prevent drawing processing from being interrupted against the user's intention. [Means for solving the problem]
[0006] The processor according to the present invention is a processor for controlling input by an electronic pen, which includes a side switch provided on the side and a contact information acquisition unit that acquires contact information indicating whether the tip of the electronic pen is in contact with a panel, and acquires switch information indicating the pressed state of the side switch, determines whether the tip of the pen is in contact with the panel based on the contact information, outputs the switch information if it determines that the tip of the pen is not in contact with the panel, and invalidates the value of the switch information if it determines that the tip of the pen is in contact with the panel.
[0007] The method according to the present invention is a method executed by a computer used together with an electronic pen, and includes the steps of: executing a setting tool by the computer to set a case in which the value of switch information indicating the pressed state of a side switch provided on the side of the electronic pen is invalid; and invalidating the value of the switch information by the computer when the tip of the electronic pen is in contact with a panel and the setting tool is set to invalidate the value of the switch information when the tip of the electronic pen is in contact with the panel. [Effects of the Invention]
[0008] According to the present invention, the function corresponding to the side switch is not activated while the pen tip is in contact with the panel during drawing, thereby preventing the drawing process from being interrupted against the user's intention. [Brief explanation of the drawings]
[0009] [Figure 1] FIG. 1( a ) is a diagram showing the configuration of a position detection system 1 according to a first embodiment of the present invention, and FIG. 1( b ) is a diagram showing the internal configuration of an electronic pen 2 . [Figure 2] 10 is a diagram showing a property screen of the electronic device 3 displayed on the display 32 by the device driver 34. FIG. [Figure 3] 3 is a process flow diagram showing a setting process executed by a device driver 34 included in the position detection system 1 according to the first embodiment of the present invention. FIG. [Figure 4] 3 is a processing flow diagram showing pen input processing executed by a device driver 34 included in the position detection system 1 according to the first embodiment of the present invention. FIG. [Figure 5] FIG. 10 is a process flow diagram showing a pen input process executed by a touch controller 31 included in a position detection system 1 according to a second embodiment of the present invention. [Figure 6] FIG. 11 is a process flow diagram showing pen input processing executed by a processor 26 of an electronic pen 2 included in a position detection system 1 according to a third embodiment of the present invention. DETAILED DESCRIPTION OF THE INVENTION
[0010] Hereinafter, preferred embodiments of the present invention will be described in detail with reference to the accompanying drawings.
[0011] 1(a) is a diagram showing the configuration of a position detection system 1 according to a first embodiment of the present invention. As shown in the figure, the position detection system 1 is configured to include an electronic pen 2 and an electronic device 3, which is a position detection device that detects the electronic pen 2.
[0012] The electronic device 3 is a computer having a touch surface 3a, such as a tablet computer or a digitizer. The electronic device 3 includes a sensor 30 arranged directly below the touch surface 3a, a touch controller 31 connected to the sensor 30, a display 32 arranged superimposed on the sensor 30, and a host processor 33 that controls each part of the electronic device 3 including these components.
[0013] The host processor 33 is the central processing unit of the electronic device 3, and is configured to read and execute various programs from a memory (not shown). The programs executed in this manner include the operating system of the electronic device 3 and various applications, including a drawing application. Of these, the drawing application is a program for executing processes of generating digital ink based on the position and data supplied from the touch controller 31 and storing it in memory within the electronic device 3, and rendering the generated digital ink, generating a video signal showing the result, and supplying it to the display 32. The display 32 is a device that displays the video signal supplied from the host processor 33, and is configured, for example, by a liquid crystal display or an organic EL display.
[0014] In addition to the above, the programs executed by the host processor 33 also include a device driver 34 that controls the electronic pen 2 via the touch controller 31. The device driver 34 is a program that constitutes part of the operating system, and serves to mediate communication between the drawing application and the touch controller 31, as well as to accept various user settings related to pen input by executing a setting tool shown in Fig. 2, which will be described later, and to execute processing according to the settings.
[0015] The touch controller 31 is a processor that derives the position of the electronic pen 2 on the touch surface 3a by bidirectionally communicating with the electronic pen 2 via the sensor 30, acquires data from the electronic pen 2, and supplies the derived position and acquired data to a device driver 34 each time. The processor here includes a processing circuit realized by an integrated circuit such as an FPGA (Field Programmable Gate Array). The device driver 34 transfers the supplied position and data to a drawing application. At this time, the device driver 34 also performs processing to change switch information (described below) included in the data supplied from the touch controller 31 when a predetermined condition is met. This point will be described in detail later.
[0016] Communication between the touch controller 31 and the electronic pen 2 is achieved, for example, by an active electrostatic method or an electromagnetic induction method. When using the active electrostatic method, the sensor 30 is configured to include a plurality of x-side linear electrodes each extending in the y direction and arranged at equal intervals in the x direction, and a plurality of y-side linear electrodes each extending in the x direction and arranged at equal intervals in the y direction. On the other hand, when using the electromagnetic induction method, the sensor 30 is configured to include a plurality of x-side loop coils each extending in the y direction, and a plurality of y-side loop coils each extending in the x direction. Hereinafter, a signal transmitted from the touch controller 31 to the electronic pen 2 will be referred to as an uplink signal US, and a signal transmitted from the electronic pen 2 to the touch controller 31 (pen signal) will be referred to as a downlink signal DS.
[0017] The touch controller 31 is configured to transmit an uplink signal US at every predetermined frame period and to receive a downlink signal DS at the interval of the uplink signal US. The uplink signal US serves to inform the electronic pen 2 of the timing that serves as the basis for the transmission and reception schedule of the uplink signal US and the downlink signal DS (i.e., the transmission timing of the downlink signal DS and the reception timing of the next uplink signal US). The electronic pen 2 determines the transmission and reception schedule of the uplink signal US and the downlink signal DS based on the reception timing of the uplink signal US, and transmits the downlink signal DS and receives the next uplink signal US in accordance with the determined transmission and reception schedule. The transmission timing and transmission duration of the downlink signal DS within the interval of the uplink signal US are specified in advance by the communication protocol.
[0018] When communication between the touch controller 31 and the electronic pen 2 is performed using an active electrostatic method, the electronic device 3 may be configured as a so-called “in-cell” position detection device. In this case, one of the multiple x-side linear electrodes and multiple y-side linear electrodes that constitute the sensor 30 also serves as a common electrode (an electrode for supplying a ground potential to each pixel) of the display 32. Therefore, the touch controller 31 cannot transmit an uplink signal US or receive a downlink signal DS using the sensor 30 at the timing for driving the pixels in the display 32. Therefore, the touch controller 31 is configured to obtain the timing for driving the pixels in the display 32 from the host processor 33, transmit the uplink signal US using a fixed period determined by the pixel drive period as the frame period, set a plurality of time slots, each corresponding to a pixel drive interval, as the transmission interval of the uplink signal US, and receive the downlink signal DS from the electronic pen 2 using the time within each time slot.
[0019] To briefly explain the configurations of the uplink signal US and the downlink signal DS, the uplink signal US is a signal modulated by a command indicating an instruction to the electronic pen 2, and is composed of a pulse wave (rectangular wave) obtained by spreading each transmission bit with a predetermined chip sequence (spread code). On the other hand, the downlink signal DS is a signal including a position signal for causing the touch controller 31 to detect the position of the electronic pen 2, and a data signal modulated by data to be transmitted to the touch controller 31. The data transmitted by the data signal includes normal data transmitted periodically for drawing, such as pen pressure values (touch information) or switch information (described later), and response data transmitted in response to commands. However, transmission of the position signal is not essential, and the touch controller 31 can also detect the position of the electronic pen 2 from the data signal.
[0020] 1(b) is a diagram showing the internal configuration of the electronic pen 2. As shown in the figure, the electronic pen 2 is configured to have a core body 21, a pen tip electrode 22, a pressure sensor 23, side switches 24a and 24b, a battery 25, and a processor 26. The core body 21 is a member that forms the pen shaft of the electronic pen 2. The tip of the core body 21 forms the pen tip of the electronic pen 2, and the end abuts against the pressure sensor 23. The pen tip electrode 22 is a conductor provided at the pen tip, and is electrically connected to the processor 26.
[0021] The pressure sensor 23 is a sensor that detects the pressure applied to the tip of the core body 21. The pressure detected by the pressure sensor 23 is supplied to the processor 26 as, for example, a 12-bit writing pressure value. The writing pressure value has the property that it is 0 when the pen tip of the electronic pen 2 is in contact with a panel such as the touch surface 3a (hereinafter referred to as "in contact"), and is 0 or greater when the pen tip of the electronic pen 2 is not in contact with a panel such as the touch surface 3a (hereinafter referred to as "in hover"). Therefore, the writing pressure value functions as contact information that indicates whether or not the pen tip of the electronic pen 2 is in contact with a panel such as the touch surface 3a. The pressure sensor 23 also functions as a contact information acquisition unit that acquires contact information.
[0022] The side switches 24a and 24b are each a push button switch provided on the side of the electronic pen 2 and configured to be turned on and off by a user. The operation states (on and off states) of the side switches 24a and 24b are supplied to the processor 26 as, for example, 2-bit switch information.
[0023] The processor 26 is an integrated circuit that operates using power supplied from the battery 25, and is responsible for executing various processes including receiving the uplink signal US and generating and transmitting the downlink signal DS. Specifically, the processor 26 receives the uplink signal US by detecting changes in the potential of the pen tip electrode 22, generates the downlink signal DS based on the received uplink signal US, and transmits the downlink signal DS by changing the potential of the pen tip electrode 22 based on the generated downlink signal DS. The processes performed by the processor 26 based on the uplink signal US also include determining the above-mentioned transmission and reception schedule using the reception timing of the uplink signal US as a reference time.
[0024] The processor 26 is configured to be able to set various data from the touch controller 31 via the uplink signal US. This data includes, for example, the attribute BrushColor, which determines the drawing color when a drawing application renders digital ink. In the third embodiment described below, this function is used to set the settings of a setting tool 46b described below in the processor 26.
[0025] 2 is a diagram showing a property screen of the electronic device 3 displayed on the display 32 by the device driver 34. The device driver 34 is configured to launch this property screen in response to a user instruction received by the electronic device 3 via an input device such as the electronic pen 2.
[0026] As shown in FIG. 2, the property screen includes an application selection box 40 and a setting content selection tab 41. The application selection box 40 is a box for selecting an application that uses the settings on this property screen. FIG. 2 shows an example in which all applications use the same settings. The setting content selection tab 41 is a tab for selecting one of multiple setting screens included in the property screen. FIG. 2 shows a state in which a setting screen 42 related to the electronic pen 2 is selected.
[0027] The setting screen 42 includes an illustration 43 of the electronic pen 2 and combo boxes 45a and 45b. The illustration 43 also includes illustrations 44a and 44b of the side switches 24a and 24b. The combo boxes 45a and 45b are provided corresponding to the side switches 24a and 24b, and are configured to allow selection of a function to be activated in response to pressing the corresponding side switch. Because the functions that can be selected in the combo boxes 45a and 45b are the same, the following description will focus on the combo box 45a.
[0028] When the user clicks or taps on the combo box 45a, the illustrated list box 46 is displayed. The list box 46 displays a list 46a of functions to be assigned to the side switch 24a and a setting tool 46b for setting cases in which the value of the switch information is invalid. Of these, the function selected in the list 46a is displayed in the combo box 45a.
[0029] The setting tool 46b has four options: "Depends on the application," "Disabled," "Disabled only when drawing contacts," and "Standard setting." Of these, "Standard setting" is an option for performing processing to disable switch information in accordance with the standard setting of the device driver 34. The standard setting of the device driver 34 is either "Depends on the application," "Disabled," or "Disabled only when drawing contacts," and is written in advance to the device driver 34.
[0030] "Follow the application" is an option that leaves it up to the application without invalidating the switch information in the device driver 34. When this option is selected, the device driver 34 outputs the switch information included in the data supplied from the touch controller 31 to the application without processing it in any way.
[0031] "Disable" is an option for always invalidating the value of the switch information in the device driver 34. When this option is selected, the device driver 34 always invalidates the value of the switch information included in the data supplied from the touch controller 31. Note that the specific process for invalidating the value of the switch information is not particularly limited as long as it results in a state equivalent to when the side switch 24a is not pressed. For example, if the switch information is configured so that the value is 1 when the side switch 24a is pressed and 0 when the side switch 24a is not pressed, the value of the switch information may be forcibly rewritten to 0 and output to an application. Alternatively, the switch information may not be output to an application. Furthermore, when the device driver 34 performs a process for generating an event corresponding to the function assigned to the side switch 24a, the value of the switch information can also be invalidated by not generating the event.
[0032] "Invalidate only when drawing contact" is an option for invalidating the value of the switch information when the electronic pen 2 is in the above-described contact state. When this option is selected, the device driver 34 first refers to the contact information (pen pressure value) included in the data supplied from the touch controller 31 and determines whether the electronic pen 2 is in contact or hover state. Then, only when it is determined that the electronic pen 2 is in contact, the device driver 34 invalidates the value of the switch information. The specific process for invalidating the value of the switch information is the same as in the case of "invalid." When it is determined that the electronic pen 2 is in hover, the device driver 34 outputs the switch information included in the data supplied from the touch controller 31 to the application without any processing.
[0033] 3 and 4 are processing flow diagrams showing processing executed by the device driver 34 included in the position detection system 1 according to this embodiment. Fig. 3 shows processing for setting cases in which the value of switch information is invalid (hereinafter referred to as "setting processing"), and Fig. 4 shows processing for pen input using the electronic pen 2 (hereinafter referred to as "pen input processing").
[0034] 3, the device driver 34 displays the property screen shown in FIG. 2 in response to a user instruction (step S10). As described above, this property screen includes a setting tool 46b for setting cases in which the value of the switch information is invalid. When the user presses the enter button on the displayed property screen (step S11), the device driver 34 stores the setting content and supplies the application, touch controller 31, and electronic pen 2 with the information required by each of them (step S12), thereby ending the processing. In this embodiment, the setting content of the setting tool 46b does not need to be included in the information supplied to other devices or processing units in step S12.
[0035] 4, the device driver 34 first receives the position of the electronic pen 2 and data transmitted by the electronic pen 2 from the touch controller 31 (step S20). The data thus received includes the above-mentioned contact information and switch information.
[0036] Next, the device driver 34 executes the processes of steps S22 to S25 for each of the side switches 24a, 24b of the electronic pen 2 (step S21). Specifically, the device driver 34 first determines whether the corresponding side switch has been set to "disabled" in the setting tool 46b (step S22). The result of this determination is positive if "disabled" is set in the setting tool 46b, or if "standard setting" is set in the setting tool 46b and the standard setting of the device driver 34 is "disabled," and negative otherwise.
[0037] If the device driver 34 obtains a negative determination result in step S22, it next determines whether "disabled only when drawing contact" has been set in the setting tool 46b (step S23). The result of this determination is positive if "disabled only when drawing contact" has been set in the setting tool 46b, or if "standard setting" has been set in the setting tool 46b and the standard setting of the device driver 34 is "disabled only when drawing contact", and is negative in other cases. If the device driver 34 obtains a positive determination result in step S23, it further references the contact information received in step S20 and determines whether the state of the electronic pen 2 is in contact (step S24).
[0038] If a positive determination result is obtained in step S22 or if it is determined in step S24 that contact is in progress, the device driver 34 determines to invalidate the value of the corresponding switch information (step S25) and then moves the process to the next side switch. On the other hand, if a negative determination result is obtained in step S23 or if it is determined in step S24 that contact is not in progress, the device driver 34 moves the process to the next side switch without making the determination in step S25.
[0039] After executing steps S22 to S25 for all side switches 24a, 24b, the device driver 34 outputs the position and data received in step S20 to the application (step S26) and returns to step S20. However, if there is any switch information whose value has been determined to be invalid in step S25, the device driver 34 executes processing to invalidate the value of that switch information in step S26. The specific content of this processing is as described above. That is, the device driver 34 may forcibly rewrite the value of the switch information to an invalid value, may not output the switch information, or may not generate an event corresponding to the function assigned to the side switch.
[0040] As described above, according to the position detection system 1 of this embodiment, the value of the switch information is invalidated by user setting while the pen tip of the electronic pen 2 is in contact with the panel during drawing, and therefore the function corresponding to the side switches 24a and 24b is not activated. This makes it possible to prevent the drawing process being executed by an application from being interrupted against the user's intention.
[0041] 5 is a processing flow diagram showing pen input processing executed by touch controller 31 included in position detection system 1 according to the second embodiment of the present invention. Position detection system 1 according to this embodiment differs from position detection system 1 according to the first embodiment in that the processing for invalidating the value of switch information is performed by touch controller 31 rather than device driver 34, but is otherwise similar to position detection system 1 according to the first embodiment. Below, the processing executed in position detection system 1 according to this embodiment will be described, focusing on the differences from position detection system 1 according to the first embodiment.
[0042] 3, the setting contents of the setting tool 46b are supplied from the device driver 34 to the touch controller 31. The touch controller 31 stores the setting contents thus supplied and uses them when processing pen input.
[0043] 5, the touch controller 31 first transmits an uplink signal US via the sensor 30 shown in FIG. 1 (step S30), and then receives a downlink signal DS transmitted by the electronic pen 2 via the sensor 30 (step S31). Next, the touch controller 31 derives the position of the electronic pen 2 within the touch surface 3a based on the reception strength of the downlink signal DS (specifically, the above-mentioned position signal) at each of the linear electrodes or loop coils that make up the sensor 30 (step S32), and acquires the data transmitted by the pen by demodulating the downlink signal DS (step S33).
[0044] After executing step S33, the touch controller 31 executes the processing of steps S35 to S38 for each side switch 24a, 24b of the electronic pen 2 (step S34). The specific content of this processing is the same as the processing of steps S22 to S25 shown in FIG. 4. After executing the processing of steps S35 to S38 for all side switches 24a, 24b, the touch controller 31 outputs the position derived in step S32 and the data acquired in step S33 to the device driver 34 (step S39) and returns the processing to step S30. However, if there is switch information whose value has been determined to be invalid in step S38, the touch controller 31 executes processing to invalidate the value of that switch information in step S39 by the same processing as in FIG. 4. This makes it possible to invalidate the value of the switch information in accordance with the user's settings in the setting tool 46b.
[0045] As described above, with the position detection system 1 according to this embodiment, the value of the switch information is invalidated by user setting while the pen tip of the electronic pen 2 is in contact with the panel during drawing, and therefore the function corresponding to the side switches 24a and 24b is not activated. This makes it possible to prevent the drawing process being executed by an application from being interrupted against the user's will.
[0046] 6 is a processing flow diagram showing pen input processing executed by processor 26 of electronic pen 2 included in position detection system 1 according to the third embodiment of the present invention. Position detection system 1 according to this embodiment differs from position detection system 1 according to the first embodiment in that the processing for invalidating the value of switch information is performed by processor 26 of electronic pen 2 rather than by device driver 34, but is otherwise similar to position detection system 1 according to the first embodiment. Below, the processing executed in position detection system 1 according to this embodiment will be described, focusing on the differences from position detection system 1 according to the first embodiment.
[0047] 3, the device driver 34 supplies the setting contents of the setting tool 46b to the electronic pen 2 via the touch controller 31. The processor 26 of the electronic pen 2 stores the setting contents thus supplied and uses them during pen input processing.
[0048] 6, the processor 26 first receives the uplink signal US via the pen tip electrode 22 shown in FIG. 1(b) (step S40). This reception is realized when the pen tip electrode 22 approaches the sensor 30 while the processor 26 is performing a receiving operation continuously or intermittently.
[0049] Upon receiving the uplink signal US, the processor 26 determines a transmission / reception schedule for the uplink signal US and the downlink signal DS based on the reception timing of the uplink signal US (step S41). Next, the processor 26 acquires transmission data including switch information and contact information (step S42) and executes the processes of steps S44 to S47 for each of the side switches 24a and 24b (step S43). The specific content of this process is the same as the process of steps S22 to S25 shown in FIG. 4.
[0050] After executing steps S44 to S47 for all side switches 24a, 24b, processor 26 transmits downlink signals DS via pen tip electrode 22 in accordance with the determined transmission / reception schedule (step S48). However, if there is switch information whose value has been determined to be invalid in step S47, processor 26 executes processing to invalidate the value of that switch information in step S48 using the same processing as in Figures 4 and 5. This makes it possible to invalidate the value of the switch information in accordance with the user's settings in setting tool 46b.
[0051] Next, the processor 26 receives the next uplink signal US according to the determined transmission / reception schedule (step S48), and returns the process to step S41. After this, the processor 26 repeatedly executes the process from step S41.
[0052] As described above, with the position detection system 1 according to this embodiment, the value of the switch information is invalidated by user setting while the pen tip of the electronic pen 2 is in contact with the panel during drawing, and therefore the function corresponding to the side switches 24a and 24b is not activated. This makes it possible to prevent the drawing process being executed by an application from being interrupted against the user's will.
[0053] Although the preferred embodiments of the present invention have been described above, the present invention is not limited to these embodiments, and it goes without saying that the present invention can be embodied in various forms without departing from the spirit of the present invention.
[0054] For example, in the first embodiment, the device driver 34 (host processor 33) performs the process of invalidating the value of the switch information, in the second embodiment the touch controller 31 performs the process of invalidating the value of the switch information, and in the third embodiment the processor 26 in the electronic pen 2 performs the process of invalidating the value of the switch information. However, the process of invalidating the value of the switch information may be performed in any of these other devices or processing units. For example, the process of invalidating the value of the switch information may be performed in an application executed in the host processor 33. In this case, in step S12 of FIG. 3, it is preferable that the device driver 34 supplies the setting contents of the setting tool 46b to the device or processing unit that performs the process of invalidating the value of the switch information. [Explanation of symbols]
[0055] 1. Position detection system 2 Electronic pen 3 Electronic equipment 3a Touch Surface 21 Core body 22 Pen tip electrode 23 Pressure Sensor 24a, 24b Side switch 25 Battery 26 processors 30 sensors 31 Touch Controller 32 Display 33 Host Processor 34 Device Drivers 40 Application Selection Box 41 Setting content selection tab 42 Settings screen 43 Electronic Pen 2 Illustration 44a, 44b Illustration of side switches 24a, 24b 45a,45b Combo box 46 List Box 46a List 46b Configuration Tool DS downlink signal US uplink signal
Claims
1. A side switch on the side, A pressure sensor that detects the pressure applied to the pen tip; a processor that acquires contact information indicating whether the pen tip is in contact with a panel according to a detection result of the pressure sensor; The processor, acquiring switch information indicating an operation state of the side switch; When the contact information is in a first state, output the switch information; When the contact information is a second state different from the first state, the value of the switch information is invalidated. Electronic pen.
2. the first state corresponds to a state in which the pen tip is not in contact with the panel; the second state corresponds to a state in which the pen tip is in contact with the panel; The electronic pen according to claim 1 .
3. the processor outputs the switch information by transmitting a pen signal including the switch information; The electronic pen according to claim 1 .
4. the processor is configured to receive an uplink signal from a touch controller and to transmit the pen signal in response to the received uplink signal; The electronic pen according to claim 3 .
5. the processor transmits a pen signal including the switch information that is an invalid value when the contact information is in the second state. The electronic pen according to claim 1 .
6. When the contact information is in the second state, the processor transmits a pen signal that does not include the switch information. The electronic pen according to claim 1 .
7. A side switch on the side, A pressure sensor that detects the pressure applied to the pen tip; A method performed by an electronic pen comprising: acquiring contact information indicating whether the pen tip is in contact with a panel according to a detection result of the pressure sensor; acquiring switch information indicating an operation state of the side switch; outputting the switch information when the contact information is in a first state, and invalidating a value of the switch information when the contact information is in a second state different from the first state; The method includes:
8. the first state corresponds to a state in which the pen tip is not in contact with the panel; the second state corresponds to a state in which the pen tip is in contact with the panel; The method according to claim 7.
Citation Information
Patent Citations
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