WO2013125848A1 - Touch screen device integrated with display panel or backlight unit and having antenna pattern - Google Patents
Touch screen device integrated with display panel or backlight unit and having antenna pattern Download PDFInfo
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- WO2013125848A1 WO2013125848A1 PCT/KR2013/001332 KR2013001332W WO2013125848A1 WO 2013125848 A1 WO2013125848 A1 WO 2013125848A1 KR 2013001332 W KR2013001332 W KR 2013001332W WO 2013125848 A1 WO2013125848 A1 WO 2013125848A1
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- line
- antenna
- electronic pen
- backlight unit
- antennas
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- G—PHYSICS
- G02—OPTICS
- G02F—OPTICAL DEVICES OR ARRANGEMENTS FOR THE CONTROL OF LIGHT BY MODIFICATION OF THE OPTICAL PROPERTIES OF THE MEDIA OF THE ELEMENTS INVOLVED THEREIN; NON-LINEAR OPTICS; FREQUENCY-CHANGING OF LIGHT; OPTICAL LOGIC ELEMENTS; OPTICAL ANALOGUE/DIGITAL CONVERTERS
- G02F1/00—Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics
- G02F1/01—Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour
- G02F1/13—Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour based on liquid crystals, e.g. single liquid crystal display cells
- G02F1/133—Constructional arrangements; Operation of liquid crystal cells; Circuit arrangements
- G02F1/1333—Constructional arrangements; Manufacturing methods
- G02F1/1335—Structural association of cells with optical devices, e.g. polarisers or reflectors
- G02F1/1336—Illuminating devices
- G02F1/133602—Direct backlight
- G02F1/133605—Direct backlight including specially adapted reflectors
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- G—PHYSICS
- G06—COMPUTING; CALCULATING OR COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F3/00—Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
- G06F3/01—Input arrangements or combined input and output arrangements for interaction between user and computer
- G06F3/03—Arrangements for converting the position or the displacement of a member into a coded form
- G06F3/041—Digitisers, e.g. for touch screens or touch pads, characterised by the transducing means
- G06F3/0412—Digitisers structurally integrated in a display
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- G—PHYSICS
- G06—COMPUTING; CALCULATING OR COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F3/00—Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
- G06F3/01—Input arrangements or combined input and output arrangements for interaction between user and computer
- G06F3/03—Arrangements for converting the position or the displacement of a member into a coded form
- G06F3/041—Digitisers, e.g. for touch screens or touch pads, characterised by the transducing means
- G06F3/046—Digitisers, e.g. for touch screens or touch pads, characterised by the transducing means by electromagnetic means
-
- G—PHYSICS
- G06—COMPUTING; CALCULATING OR COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F2203/00—Indexing scheme relating to G06F3/00 - G06F3/048
- G06F2203/041—Indexing scheme relating to G06F3/041 - G06F3/045
- G06F2203/04103—Manufacturing, i.e. details related to manufacturing processes specially suited for touch sensitive devices
Definitions
- the present invention relates to a touch screen device, and more particularly, to a touch screen device that operates by forming an antenna pattern for sensing a user's manipulation on a part of a display panel or a part of a panel constituting a backlight unit.
- the touch screen is disposed on a display panel, such as an LCD or LED panel, and a front surface (front facing surface on which an image is displayed) or a rear surface of the display panel, and a conductive antenna for sensing the approach or contact of an electronic pen manipulated by a user. And a position sensing circuit configured to sense a position of the electronic pen by sensing an electromagnetic change generated in the antenna pattern.
- a display panel such as an LCD or LED panel
- a front surface (front facing surface on which an image is displayed) or a rear surface of the display panel and a conductive antenna for sensing the approach or contact of an electronic pen manipulated by a user.
- a position sensing circuit configured to sense a position of the electronic pen by sensing an electromagnetic change generated in the antenna pattern.
- the antenna substrate has a structure in which antennas formed in a loop or mesh pattern are stacked in several layers through an insulating layer.
- the antenna substrate overlapping the multilayer antenna pattern is inevitably thickened, it acts as a factor for thickening the overall thickness of the touch screen.
- Korean Patent Laid-Open No. 2008-86829 (hereinafter referred to as reference) can be referred to.
- the present invention has been made to solve the above-mentioned problems, and is intended not to significantly increase the overall thickness of the touch screen by improving an antenna structure for detecting a user's manipulation, particularly the position of the electronic pen.
- the display unit is arranged in the light transmission control element is controlled by the input image signal, and disposed behind the display unit and forward through the display unit
- a display panel including a backlight unit emitting light It is formed by printing a conductive material on one surface of the backlight unit, one side is connected to each other and the other side is separated from each other to form a parallel comb-like shape with each other, the one side connected to each other on one side of the one surface of the backlight unit
- a plurality of first line antennas disposed on the other side of the backlight unit and extending to edges of the other side of the one surface of the backlight unit; It is formed on a separate substrate from the display panel, and is configured to be connected to the other side of the first line antenna extending to the other side of the backlight unit, the other two outermost of the plurality of first line antennas
- a first line selection circuit configured to connect each other to a ground while forming a loop structure, and select one of the plurality of first line antennas and set the
- the plurality of first line antennas may be formed on the reflective sheet of the backlight unit, and the plurality of first line antenna patterns may be formed on the rear surface of the reflective surface of the reflective sheet.
- the tablet may include a plurality of second line antennas having the same shape as the plurality of first line antennas and arranged in a direction crossing the first line antennas, and an outermost line of the plurality of second line antennas.
- a second line selection circuit connecting the antennas to each other to form a loop structure and connecting the antennas to ground, and selecting one of the plurality of second line antennas and setting the second output to be insulated from the loop structure
- the coordinate sensing circuit may further include determining the position of the electronic pen using the induced voltages appearing at the first output and the second output, and determining the plurality of first line antennas and the plurality of second lines.
- the antenna may include the reflective sheet, the plurality of first line antennas printed and formed on the reflective sheet, an insulating layer covering the plurality of first line antennas, and an image. And a laminated structure having the order of the plurality of second line antennas printed and formed on the insulating layer.
- the electronic pen includes a resonant circuit having a predetermined resonant frequency
- the tablet is formed to surround the plurality of first line antennas in an insulated state and prints a conductive material on any surface of the backlight unit.
- a power supply driver for applying an AC power having a waveform corresponding to the resonance frequency of the electronic pen to the power coil formed by the power coil.
- a plurality of light emitting elements whose operation is controlled by an input image signal is arranged on the front surface to display an image forward; It is formed by printing a conductive material on the back of the display panel, one side is connected to each other to form a parallel comb shape with each other and the other side is separated from each other, the one side connected to each other is disposed on one side of the display panel and separated from each other.
- the other side of the display panel is formed on a plurality of first line antennas extending to the other side edge of the display panel and the display panel, the first line antenna extending to the other side of the display panel It is configured to be connected to the other side, and the other two of the outermost of the plurality of first line antennas connected to each other to form a loop structure and connected to the ground, and the other side of the plurality of first line antennas by selecting A first output configured as a first output in an insulated state from the loop structure A coordinate sensing circuit for determining the position of the electronic pen with
- the touch screen according to the present invention having the above-described configuration increases the thickness of the panel for implementing the touch screen by efficiently adding an additional substrate to the structure of the general display panel and efficiently using the internal space of the display panel. Do not increase.
- the antenna pattern can be implemented by a simple process and by a minimal stacked structure, the manufacturing is simple and the cost is reduced.
- 1 is a view for explaining the basic principle of detecting the position of the electronic pen using a loop antenna and a line antenna.
- FIG. 2 is a diagram for explaining waveforms of voltages appearing in various parts of a tablet in a structure using a line antenna and a loop antenna as shown in FIG. 1.
- FIG 3 is a view for explaining the structure and operation that can more accurately detect the position of the electronic pen using a loop antenna and a plurality of line antennas.
- FIG. 4 is a view for explaining the schematic structure of the tablet for detecting the structure of the electronic pen and the position of the electronic pen.
- FIG. 5 is a view schematically showing the configuration of a tablet according to the present invention.
- FIG. 6 is an enlarged view for explaining a method of configuring a circuit pattern in the tablet according to the present invention.
- FIG. 7 is a view briefly illustrating a structure of a backlight unit for a general LCD display panel.
- FIG. 8 is a view for explaining various methods of forming an antenna pattern on a base substrate in the tablet according to the present invention.
- FIG. 9 is a view for explaining a method of forming an antenna pattern by a screen printing method.
- FIG. 10 is a diagram illustrating a backlight unit configured using a reflector plate having an antenna pattern in the tablet according to the present invention.
- FIG. 11 is a view showing a form in which the antenna pattern according to the present invention is applied to the surface of the OLED display panel.
- FIG. 1 is a view for explaining the basic principle of detecting the position of the electronic pen having a resonant circuit using a loop antenna and a line antenna.
- the line antenna 20 is arranged in a direction crossing the loop shape of the loop antenna 10 in a state where one end of the loop antenna 10 having a closed loop shape is connected to one side of the loop antenna 10. It is.
- the other end of the line antenna 20 is connected to the input of the amplifier 17.
- the other input of the amplifier 17 is connected to the loop antenna 10.
- the amplifier 17 is, for example, a differential amplifier and outputs a potential difference Vout obtained by subtracting the potential of the loop antenna 10 from the potential of the line antenna 20.
- Vout a potential difference obtained by subtracting the potential of the loop antenna 10 from the potential of the line antenna 20.
- FIG. 1A illustrates a state where the electronic pen P including the inductor and the AC power source is located at the point 1.
- an electromagnetic force is generated from the inductor L as the AC power source pulsates.
- the line antenna 20 and the loop antenna 10 generate induced current by the electromagnetic force from the electronic pen P.
- FIG. 1 (b) shows the potential difference Vout output from the amplifier 17 when the electronic pen P is located at the 1, 2, and 3 points on the antenna structure as shown in FIG.
- the induced current flowing in the line arrow direction occurs in the line antenna 20.
- the generated induction current causes not only the flow of the current like a solid line but also the flow of the induced current in the form of a dotted line.
- the amplifier 17 outputs, for example, a potential difference in the negative direction (indicated by a down arrow in the figure).
- the electronic pen P is located at the point 2, that is, directly above the line antenna 20, the induced currents do not cancel each other in the line antenna 20, and the potential difference does not appear in the amplifier 17. .
- the distance between the electronic pen and the line antenna may be determined by using the magnitude of the output potential difference Vout.
- FIG. 2 is a diagram illustrating a structure in which a line antenna and a loop antenna as shown in FIG. 1 are used, and may be operated by wirelessly supplying energy from an external source without using a consumable power source such as a battery to drive a resonance circuit.
- the power coil 30 is disposed in a form surrounding the outside of the loop antenna 10, and the power coil 30 is connected to the electronic pen from the power supply driver (PWD) 32.
- the oscillating AC power is supplied at the resonance frequency f0 of the resonance circuit built in P).
- the power coil 30 outputs an electromagnetic force by vibrating electric power supplied from the power supply driver 32, and an induced current is generated in the resonance circuit of the electronic pen P by this electromagnetic force.
- the induced current in the electronic pen P charges energy by the capacity of the built-in resonant circuit (including at least the inductor and capacitor). Thereafter, even when the power supply from the power supply driver 32 to the power coil 30 is stopped, the electronic pen P may continue resonance for a predetermined time by energy charged in the resonance circuit.
- the resonant circuit of the electronic pen P resonates while the power supply to the power coil 30 is stopped, the induced current as described in FIG. 1 is generated in the line antenna 20 on the tablet side, and the amplifier At 17, the potential difference Vout between the line antenna and the loop antenna is output.
- the power coil driving by the power supply driver 32 is controlled and the potential difference output from the amplifier 17 is used in a section in which power is not supplied to the power coil 30 through the power supply driver 32.
- the position of the electronic pen P can be detected.
- FIG. 2 (b) is a voltage waveform measured at a point 1, which is a control signal (power oscillating at the resonant frequency f0 in the power coil 30) for driving the power supply driver 32.
- a section for supplying the power of the resonant frequency and a section for not supplying power it is possible to configure a section for supplying energy to the electronic pen and a section for sensing the position of the electronic pen by allowing the electronic pen to self-resonate.
- the several rising pulses shown in the figures are exemplary and may, in practical implementations, consist of frequencies from several Hz to several MHz or more.
- FIG. 2 (c) is a voltage waveform appearing in the power coil 30. Even when the power supply driver 32 supplies square wave power having a resonance frequency, the power coil 30 slowly rises due to the counter electromotive force. It can be seen that. At this time, the electromagnetic force will be output from the power coil 30 in a direction perpendicular to the ground. On the other hand, since the power coil 30 has no charge storage element (for example, capacitance) coupled to the power coil to form a resonant circuit, when the power supply is stopped in the power supply driver 32, the voltage waveform is abruptly stopped. do.
- charge storage element for example, capacitance
- FIG. 2 (d) is a voltage waveform measured at point 3, which is a waveform of a voltage caused by an induced current induced in the resonant circuit of the electronic pen P by the electromagnetic force output from the power coil 30.
- energy is charged by its capacity, and even if the output of the electromagnetic force is stopped in the power coil 30, the resonance is continued for a predetermined time by the energy charged in the resonant circuit.
- FIG. 2 (e) shows that current is induced to the line antenna 20 and the loop antenna 10 by the resonant circuit of the electronic pen that continues to resonate even after the power supply driver 32 stops supplying power.
- the waveform of the voltage output from the amplifier 17 at the point 4 is shown.
- the voltage is sampled (H) at any time point T of the waveform of the potential difference output from the amplifier 17 (a voltage as shown in FIG. 1 (b) is obtained), and the line antenna is obtained by using the sampled value.
- the position of the electronic pen P with respect to 20 is determined.
- each of the plurality of line antennas 20 is traversed in a loop form parallel to each other in the state that is electrically connected to the loop antenna 10, the other ends are comb teeth connected to the input of the multiplexer 15.
- the line antennas 20 should not be connected to the loop antenna 10 except that one end is connected to the loop antenna 10. That is, the other ends of the loop antennas 20 are insulated from the loop antenna 10.
- the multiplexer 15 is connected to the input of the amplifier 17, the output, it is possible to select the other end of any one line antenna according to the selection signal input from the external (for example, MCU).
- the external for example, MCU.
- the power coil and the power supply driver are not shown in FIG. 3, so refer to FIG. 4
- the multiplexer 15 is controlled to move the plurality of line antennas 20 from 1 to 5.
- the potential difference Vout in the form as shown in FIG. 3 (b) can be obtained.
- the electronic pen P is positioned to the left of the selected line antenna 3, so that the negative potential difference Vout may be output from the amplifier 17.
- the operation of detecting the potential difference by selecting the line antennas 20 one by one is expressed as 'scan'.
- the scanning method may be sequentially performed from the line antenna at one end to the line antenna at the other end as described above, and the position of the electronic pen can be more quickly determined by selecting the line antenna disposed at an arbitrary position in various ways. It may be implemented to detect. In addition, if the position of the electronic pen is identified while scanning some line antennas without scanning all the line antennas, the scan of the remaining line antennas may be terminated.
- FIG. 4 the schematic structure of the tablet for detecting the structure of the electronic pen and the position of the electronic pen will be described.
- a plurality of X-axis line antennas 20X arranged in a longitudinal direction (Y-axis direction) and arranged in parallel in the vertical direction (X-axis direction) and in the X-axis direction
- the structure of the Y-axis line antennas 20Y which are arranged long and arranged in parallel in the Y-axis direction, can be seen (in this case, the X-axis line antennas and the Y-axis line antennas are insulated from each other).
- the X-axis position and the Y-axis position of the electronic pen can be detected by the X-axis line antennas 20X and Y-axis line antennas 20Y, respectively.
- two-dimensional coordinates of the electronic pen can be calculated. It becomes possible.
- the area (the area indicated by the dotted line) where the X-axis line antennas 20X and the Y-axis line antennas 20Y are formed becomes an electronic pen detection area A in which the position of the electronic pen P can be detected.
- the power coil 30 is disposed to surround the X axis line antennas 20X and the Y axis line antennas 20Y. Thus, it is possible to supply energy to the electronic pen by electromagnetic force.
- One ends of the X-axis line antennas 20Y are connected to the loop antenna 10 and the other ends are connected as inputs to the multiplexer 15.
- the output of the multiplexer 15 is connected to one input of the amplifier 17.
- one ends of the Y-axis line antennas 20Y are also connected to the loop antenna 10, the other ends are connected to the input of the multiplexer 25, and the output of the multiplexer 25 is an input of the amplifier 17. .
- the loop antenna to which the X-axis line antennas are connected and the loop antenna to which the Y-axis line antennas are connected may share a single loop antenna as shown in FIG. 4, but may be independently configured.
- the amplifier 17 inputs the potential of either the outputs of the multiplexers 15 and 25 and the loop antennas (the loop antennas remain at the same potential), and outputs the potential difference between them.
- the output potential difference is input to the MCU 18.
- the MCU 18 sends a selection signal to the multiplexers 15 and 25 to select the other end of either line antenna (one of the X-axis line antennas and the Y-axis line antennas), thereby providing a voltage from the selected other end. This is input to the amplifier 17. Then, the control unit scans the other line antennas by changing the selection signal and continuously outputs the input signal. The potential difference output from the amplifier 17 is input whenever one line antenna is selected, and the electronic pen P for the selected line antenna is input. Detect the positional relationship. When all or part of the line antennas are scanned, the coordinates of the electronic pen P are calculated using the detected positional relationships.
- the MCU 18 may generate a control signal according to the resonance frequency of the electronic pen to control the operation of the power supply driver 32.
- the electronic pen detecting region A in which the antenna patterns for detecting the position of the electronic pen and the power coil are formed may include a driving circuit region including the multiplexers 15 and 25, the amplifier 17, and the MCU 18. It can be separated from, and formed on a separate substrate.
- FIG. 4 (b) shows a schematic configuration of the electronic pen.
- the electronic pen P has a resonant circuit including at least an inductor L and a capacitor C, and is caused by an induced current generated in the inductor L when the resonant circuit is located in an electromagnetic field in which electromagnetic force is applied.
- the capacitor C causes resonance while charging and discharging. This resonance phenomenon persists for a predetermined time according to the time constant of the resonance circuit even after the electromagnetic force is removed.
- the electronic pen may be provided with circuit elements that operate using the generated induced current. These circuit elements allow digital communication between the electronic pen and the MCU 18 of the tablet by generating on / off of the electromagnetic force emitted from the electronic pen or variation of the resonant frequency.
- FIG. 5 is a view schematically showing the configuration of a tablet according to the present invention, which implements an electronic pen sensing region with an improved structure.
- the electronic pen sensing region A is configured using three circuit patterns. That is, the first circuit pattern 111 having the pattern of the X-axis line antenna 20X and the pattern of the X-axis loop antenna 10A, the pattern of the Y-axis line antenna 20Y, and the Y-axis loop antenna 10B.
- the second circuit pattern 112 having a pattern of and the third circuit pattern 113 of the power coil 30 are the same.
- each circuit pattern may be formed on a predetermined base substrate by a simple printing process such as pattern printing or nano-imprinting technique or gravure offset technique.
- Each of the circuit patterns 111, 112, and 113 is formed by forming a first circuit pattern 111 on one base substrate, applying an insulating material thereon, and forming a second circuit pattern 112 again thereon. It may be formed (see Fig. 8 (a)). Alternatively, each circuit pattern may be independently formed on a separate substrate, and the electronic pen sensing region may be configured by overlapping respective substrates on which the circuit pattern is formed (not shown).
- the X-axis loop antenna 10A formed in this circuit pattern 111 does not form a complete loop and is open to the outside at the end of the first circuit pattern 111. Further, although each line antenna 20X is also connected to the X-axis loop antenna 10A at one end, the other side of the line antennas 20X is parallel to the pattern of the loop antenna 10A without intersecting with the loop antenna 10A.
- the circuit pattern 111 flows outward from the end (that is, the corner portion of the base substrate).
- the pattern of the loop antenna and the pattern of the plurality of line antennas may be formed so as not to cross each other in the first circuit pattern 111.
- at least the antenna pattern of the first circuit pattern 111 can be manufactured in a simple manner by printing a conductive material in one layer.
- the loop shape of the X-axis loop antenna 10A is completed in combination with the driving substrate 120 on which the driving circuit is mounted. That is, the conductive substrate 10E is formed on the driving substrate 120, which is the remaining portion of the pattern for closing the open portion of the X-axis loop antenna 10A to form a complete loop (see FIG. 6).
- intersection and insulation of the X-axis loop antenna 10A and the X-axis line antenna 20X is also made at the conductive pattern portion of the drive substrate 120. That is, the other ends of the X-axis line antennas 20X extend to the first extension patterns 20XE of the driving substrate, and the extension patterns are disposed to cross the conductive patterns 10E in an insulated state.
- the first extension patterns 20XE of the X-axis line antennas crossing the conductive pattern 10E are connected to an input of a multiplexer mounted on the driving substrate 120.
- the thick solid line is a conductive pattern 10E that is part of the loop antenna pattern, and is disposed insulated from the first extension patterns 20XE that are part of the relatively thin line antenna pattern.
- the substrate on which the first circuit pattern 111 constituting the electronic pen sensing region A is printed, and the driving substrate 120 on which the multiplexers 15 and 25, the amplifier 17, the MCU 18, and the like are mounted are mutually different. It is preferred to consist of separate substrates.
- the antenna structure according to the exemplary embodiment of the present invention is completed when the first circuit pattern 111 and the driving substrate 120 are coupled to each other.
- the conductive pattern 10E of the X-axis loop antenna 10A is connected to a circuit pattern having a common potential (pattern shown by a thick solid line) on the driving substrate 120 to become a common potential (or ground).
- the second circuit pattern 112 on which the Y-axis line antenna 20Y and the Y-axis loop antenna 10B are formed is also configured similarly to the first circuit pattern 111. That is, the Y-axis loop antenna 10B has a form flowing out of the substrate from one side of the second circuit pattern 112, and the other ends of the Y-axis line antenna 20Y are also Y-axis loop antenna 10B. The pattern is flowing out to the outside in parallel with the pattern of.
- an open portion of the Y-axis loop antenna 10B of the second circuit pattern 112 is formed on the driving substrate 120 (the X-axis loop).
- the driving substrate 120 the X-axis loop.
- the plurality of Y-axis line antennas 20Y cross each other in an insulated state with the conductive pattern 10E forming the remaining portion of the Y-axis loop antenna 10B in the insulating portion S and multiplexer. Connected to the input of (25).
- the power coil 30 is formed to have a size that can surround the outside of the electronic pen detection area (A), it may be formed on the substrate on which each loop antenna or line antenna is formed by printing or the like (for example, For example, see FIG. 8 (b)).
- the number of windings and the thickness of the conductive wire must be controlled, so that the pattern of the power coil 30 is formed on a separate coil substrate (not shown) by printing or the like.
- the inner part of the loop form of the coil 30 that is, the structure which penetrated the board
- a configuration in which coils are formed by winding conducting wires and arranged separately without forming a power coil on a predetermined substrate may be used.
- Both ends of the power coil 30 are connected to a power supply driver 32 that may be provided on the driving substrate 120.
- the remaining portions of the line antenna and the loop antenna are disposed, and they are insulated from each other to form the insulation region S. Achieve.
- the amplifier 17 receives the multiplexers 15 and 25 for selecting any one of the other ends of the plurality of line antennas, and the output of the multiplexers and the potential of the loop antenna (ie, the common potential).
- the MCU 18 which calculates the coordinates of the electronic pen P by the output of the amplifier.
- the power supply driver 32 for driving the power coil 30 by receiving power from the outside may be arranged.
- the power supply driver 32 may provide a common potential for each loop antenna.
- the type of components mounted on the driving substrate 120 and their arrangement may be variously set.
- the antenna pattern when manufacturing the substrate on which the electronic pen sensing region is formed, the antenna pattern can be formed by printing a single layer on the surface of the insulating material, so that the process is performed. It is simple and can reduce manufacturing cost.
- the thickness of the substrate constituting the electronic pen sensing region may be thin, it is possible to minimize the thickness of the product when implementing the tablet.
- the backlight unit 50 is an edge light type and includes a lamp 51, a lamp cover 52, a light guide plate 53, a diffusion sheet 58, and a prism sheet 55, 56. And a protective sheet 58.
- the lamp 51 is formed in the shape of an elongated rod along the side of the light guide plate 53, and is formed of a cold cathode fluorescent lamp (CCFL) or an LED.
- CCFL cold cathode fluorescent lamp
- the lamp cover 52 is for reflecting light emitted from the lamp 51 in all directions toward the light guide plate 53 to face in one direction.
- the light guide plate 53 evenly distributes and radiates light rays incident from one side of the light guide plate 53 to the entire surface of the light guide plate 53 so that the entire light guide plate acts as a surface light source.
- the light guide plate 53 may be made of various materials capable of uniformly scattering light rays passing through the inside in various directions, and a plurality of refractive means (for example, micro lenses, etc.) may be mixed.
- the diffusion sheet 58 makes the light emitted evenly scattered in the light guide plate 53 more uniform.
- the prism sheet 58 is provided with a plurality of vertical and horizontal flat prisms, respectively, and allows the light incident from the light guide plate 53 to have a constant direction toward the front.
- the protective sheet 58 prevents damage to the backlight unit surface when the backlight unit 50 contacts another substrate such as an LCD panel.
- a reflective sheet 58 is disposed on the rear surface of the light guide plate 53, which reflects the light beam toward the rear surface of the light guide plate 53 forward to prevent the loss of light and to maintain the brightness toward the front side. It is to improve.
- the reflective sheet 58 is mainly a white opaque polyester film or a coating of an organic or inorganic material on such a film.
- the base substrate may be any one of the substrates constituting the backlight unit of the LCD panel, or an LED-formed substrate of a self-luminous display panel such as an OLED panel.
- each of the circuit patterns 111 and 112 can be formed by a simple printing method on the same plane of a predetermined substrate.
- FIG. 8A shows that the X-axis antenna pattern 111 is formed on the base substrate 110 by screen printing, and the formed X-axis antenna pattern 111 is covered with an insulating material (S1), and the Y-axis is formed thereon.
- the antenna pattern 112 is formed by screen printing, and the formed pattern is again covered with an insulating material (S2), thereby showing a structure in which the electronic pen sensing region is formed.
- Figure 8 (b) to configure the electronic pen detection area in the structure as shown in Figure 8 (a), and to surround the line antenna and the loop antenna in the circumferential portion of the base substrate also by the method of screen printing, etc. Show the formed form.
- the power coil 30 may be formed by forming one layer of the power coil pattern and then covering the insulating material S3 and forming another layer of the power coil pattern.
- FIG. 9 is a view illustrating a method of forming an antenna pattern on one side of a reflecting plate of a backlight unit serving as a base substrate by screen printing, and showing a state of printing a conductive material on the substrate by using a screen printing roller.
- the antenna pattern for realizing the function of the touch screen can be simply completed by simply printing the conductive material using the screen.
- the touch screen device having the antenna pattern integrated in the backlight unit 50 according to the present invention forms an antenna pattern for sensing the position of the electronic pen P on the surface of the reflective sheet 58.
- the internal space and structure of the display panel can be efficiently used without affecting the display operation.
- the antenna pattern in the uniaxial direction can be configured by printing one layer using the reflective sheet 58 as the base substrate 110.
- the insulating layer S1 is stacked and another antenna pattern is formed in another axial direction, an antenna pattern capable of measuring two-dimensional coordinates of the electronic pen P may be easily implemented. It becomes possible.
- the antenna pattern is preferably formed on the rear surface (downward in the drawing) of the reflective sheet 58, so that the antenna pattern does not affect the reflection of light.
- the antenna pattern is formed on the back side of the reflective sheet 58, the transparency according to the thickness of the antenna pattern does not affect the display operation at all.
- the base substrate 110 becomes the reflective sheet 58, and the lower portion of the figure corresponds to the front surface from which light is emitted, and the upper portion of the figure corresponds to the rear surface of the reflective sheet 58. . Therefore, a reflective material for reflecting light incident from the bottom may be applied to the outside of the bottom surface or the inside of the top surface of the base substrate 110.
- the antenna patterns can be protected by a shield.
- the shield may use the insulation layer described with reference to FIG. 8 as it is, or may be formed by attaching or applying a separate film.
- the light guide plate and the display panel are coupled to the reflective surface side of the reflective sheet 58 configured as described above, thereby completing a touch screen.
- a touch screen device having an antenna pattern integrated into the display panel according to the present invention which is applied to another type of display panel, in particular, an apparatus which emits light by itself and performs a display operation, with reference to FIG. 10.
- an apparatus which emits light by itself and performs a display operation
- the display panel 60 is schematically illustrated in a single layer.
- the upper part of the drawing corresponds to the front side where the image is displayed.
- the antenna pattern for sensing the electronic pen P is formed in multiple ways by printing or the like. According to this configuration, a touch screen integrated with a tablet capable of detecting the electronic pen P can be manufactured without adding a separate substrate for the antenna pattern.
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Abstract
The present invention relates to a touch screen device integrated with a backlight unit and having an antenna pattern, the touch screen device comprising: a display panel comprising a display unit the operation of which is controlled by a video signal being inputted and which has a light transmission control element disposed therein, and a backlight unit which is disposed in the rear of the display unit and emits light frontward through the display unit; a plurality of first line antennas; and a tablet comprising a first line selection circuit for selecting and setting, as a first output, a side of one of the plurality of first line antennas with the selected side insulated from a loop structure, and a coordinate detection circuit for detecting the position of an electronic pen by using an induced voltage from the first output when the electronic pen is in proximity thereto. The plurality of first line antennas are formed by printing a conductive material on a surface, a reflective sheet in particular, of the backlight unit.
Description
본 발명은 터치 스크린 장치에 관한 것으로서, 더욱 상세하게는 디스플레이 패널의 일부 또는 백라이트 유닛을 구성하는 패널의 일부에 사용자의 조작을 감지하기 위한 안테나 패턴을 형성하여 동작하는 터치 스크린 장치에 관한 것이다. The present invention relates to a touch screen device, and more particularly, to a touch screen device that operates by forming an antenna pattern for sensing a user's manipulation on a part of a display panel or a part of a panel constituting a backlight unit.
터치 스크린은, LCD 또는 LED 패널과 같은 디스플레이 패널과, 디스플레이 패널의 전방 표면(영상이 표시되는 전방을 향하는 면) 또는 뒷면에 배치되어 사용자가 조작하는 전자펜의 접근 또는 접촉을 감지하기 위한 전도성 안테나 패턴이 형성된 안테나 기판과, 안테나 패턴에 발생한 전자기적 변화를 감지하여 전자펜의 위치를 감지하는 위치 감지 회로를 포함하여 이루어진다. The touch screen is disposed on a display panel, such as an LCD or LED panel, and a front surface (front facing surface on which an image is displayed) or a rear surface of the display panel, and a conductive antenna for sensing the approach or contact of an electronic pen manipulated by a user. And a position sensing circuit configured to sense a position of the electronic pen by sensing an electromagnetic change generated in the antenna pattern.
기존의 터치 스크린에 있어서, 안테나 기판은, 루프 형태 또는 메쉬 형태의 패턴으로 이루어진 안테나들이 절연층을 개재하여 여러 층으로 중첩된 구조로 이루어진다. 이렇게, 다층의 안테나 패턴이 중첩된 안테나 기판은 두꺼워질 수밖에 없으므로, 터치 스크린의 전체 두께를 두껍게 하는 요인으로 작용하였다. In a conventional touch screen, the antenna substrate has a structure in which antennas formed in a loop or mesh pattern are stacked in several layers through an insulating layer. Thus, since the antenna substrate overlapping the multilayer antenna pattern is inevitably thickened, it acts as a factor for thickening the overall thickness of the touch screen.
이러한 기존의 터치 스크린에 있어서의 안테나 기판의 일례로서, 한국공개특허 2008-86829호(이하, 참고 문헌)를 참고할 수 있다. 상기 참고 문헌에서는, 전자펜의 위치를 어느 한 축 방향에 대하여 감지하기 위한 루프 코일의 구조가, 적어도 3개의 루프 코일을 서로 절연시킨 상태로 중첩시킨 형태로 구성된다. 따라서, X축 및 Y축 방향으로의 좌표를 측정하고자 하고, 또한, 하나의 안테나 기판에 안테나 패턴을 전도성 소재와 절연 시트를 이용하여 구성한다고 할 때, 최소 12층(= 6층×2축)의 적층 구조를 가지므로, 기판의 두께가 상당히 두꺼워질 수밖에 없다.As an example of an antenna substrate in such a conventional touch screen, Korean Patent Laid-Open No. 2008-86829 (hereinafter referred to as reference) can be referred to. In the above reference, the structure of the loop coil for detecting the position of the electronic pen in any one axial direction is configured in such a manner that at least three loop coils are insulated from each other. Therefore, assuming that the coordinates in the X-axis and Y-axis directions are to be measured, and that the antenna pattern is configured by using a conductive material and an insulating sheet on one antenna substrate, at least 12 layers (= 6 layers × 2 axes) Since it has a laminated structure, the thickness of the substrate is inevitably thickened.
본 발명은 상술한 문제점을 해결하기 위한 것으로서, 사용자의 조작, 특히 전자펜의 위치를 감지하기 위한 안테나 구조를 개선함으로써 터치 스크린의 전체적인 두께를 크게 증가시키지 않도록 하고자 한다. SUMMARY OF THE INVENTION The present invention has been made to solve the above-mentioned problems, and is intended not to significantly increase the overall thickness of the touch screen by improving an antenna structure for detecting a user's manipulation, particularly the position of the electronic pen.
또한, 안테나를 형성함에 있어서 적층 구조를 최소화시켜 제작을 용이하게 하고자 한다. In addition, to form an antenna to minimize the laminated structure to facilitate the manufacture.
상술한 바와 같은 목적을 달성하기 위한 본 발명은, 입력되는 영상 신호에 의해 동작이 제어되는 광투과 제어 소자가 배열되어 있는 디스플레이 유닛, 및 상기 디스플레이 유닛의 후방에 배치되어 상기 디스플레이 유닛을 통해 전방으로 광을 방출하는 백라이트 유닛을 포함하는 디스플레이 패널과; 상기 백라이트 유닛의 일표면에 전도성 물질을 인쇄함으로써 형성되며, 서로 나란한 빗살 모양을 이루도록 일측은 서로 연결되어 있고 타측은 서로 분리되어 있으며, 상기 서로 연결된 일측은 상기 백라이트 유닛의 상기 일표면의 일측변에 배치되고 상기 서로 분리된 타측은 상기 백라이트 유닛의 상기 일표면의 타측면의 모서리까지 연장되어 있는 복수의 제1 라인 안테나와; 상기 디스플레이 패널과는 별도의 기판에 형성되며, 상기 백라이트 유닛의 상기 타측변까지 연장된 상기 제1 라인 안테나의 타측과 접속되도록 구성되며, 상기 복수의 제1 라인 안테나 중 가장 바깥쪽의 2개의 타측들을 서로 연결하여 루프 구조를 구성하면서 접지에 연결시키고, 상기 복수의 제1 라인 안테나 중 어느 하나의 타측을 선택하여 상기 루프 구조와는 절연된 상태로 제1 출력으로 설정하는 제1 라인 선택 회로와, 및 교류 전자기력을 출력하는 전자펜이 접근한 경우, 상기 제1 출력에서 나타나는 유도 전압을 이용하여, 상기 선택된 제1 라인 안테나를 기준으로 상기 전자펜의 위치를 판정하는 좌표 감지 회로를 포함하는 타블렛으로 구성되는 백라이트 유닛에 일체화된 안테나 패턴을 갖는 터치 스크린 장치를 제공한다. The present invention for achieving the object as described above, the display unit is arranged in the light transmission control element is controlled by the input image signal, and disposed behind the display unit and forward through the display unit A display panel including a backlight unit emitting light; It is formed by printing a conductive material on one surface of the backlight unit, one side is connected to each other and the other side is separated from each other to form a parallel comb-like shape with each other, the one side connected to each other on one side of the one surface of the backlight unit A plurality of first line antennas disposed on the other side of the backlight unit and extending to edges of the other side of the one surface of the backlight unit; It is formed on a separate substrate from the display panel, and is configured to be connected to the other side of the first line antenna extending to the other side of the backlight unit, the other two outermost of the plurality of first line antennas A first line selection circuit configured to connect each other to a ground while forming a loop structure, and select one of the plurality of first line antennas and set the first output to be insulated from the loop structure; And a coordinate sensing circuit configured to determine a position of the electronic pen based on the selected first line antenna by using an induced voltage appearing at the first output when the electronic pen outputting an alternating electromagnetic force approaches. Provided is a touch screen device having an antenna pattern integrated into a backlight unit.
또한, 상기 복수의 제1 라인 안테나는 상기 백라이트 유닛의 반사 시트에 형성되며, 더욱, 상기 복수의 제1 라인 안테나 패턴은, 상기 반사 시트의 반사면의 뒷면에 형성된다.The plurality of first line antennas may be formed on the reflective sheet of the backlight unit, and the plurality of first line antenna patterns may be formed on the rear surface of the reflective surface of the reflective sheet.
한편, 상기 타블렛은, 상기 복수의 제1 라인 안테나와 동일 형상이면서 상기 제1 라인 안테나와는 교차하는 방향으로 배열된 복수의 제2 라인 안테나, 및 상기 복수의 제2 라인 안테나의 가장 바깥쪽 라인 안테나들을 서로 연결하여 루프 구조를 구성하면서 접지에 연결시키고, 상기 복수의 제2 라인 안테나 중 어느 하나의 타측을 선택하여 상기 루프 구조와는 절연된 상태로 제2 출력으로 설정하는 제2 라인 선택 회로를 더 포함하고, 상기 좌표 감지 회로는, 상기 제1 출력 및 상기 제2 출력에서 나타나는 유도 전압을 이용하여 상기 전자펜의 위치를 판정하고, 상기 복수의 제1 라인 안테나와 상기 복수의 제2 라인 안테나는, 상기 반사 시트, 상기 반사 시트에 인쇄되어 형성된 상기 복수의 제1 라인 안테나, 상기 복수의 제1 라인 안테나를 덮는 절연층, 및 상기 절연층 상에 인쇄되어 형성된 상기 복수의 제2 라인 안테나의 순서를 갖는 적층 구조로써 형성되는 것을 특징으로 한다.The tablet may include a plurality of second line antennas having the same shape as the plurality of first line antennas and arranged in a direction crossing the first line antennas, and an outermost line of the plurality of second line antennas. A second line selection circuit connecting the antennas to each other to form a loop structure and connecting the antennas to ground, and selecting one of the plurality of second line antennas and setting the second output to be insulated from the loop structure The coordinate sensing circuit may further include determining the position of the electronic pen using the induced voltages appearing at the first output and the second output, and determining the plurality of first line antennas and the plurality of second lines. The antenna may include the reflective sheet, the plurality of first line antennas printed and formed on the reflective sheet, an insulating layer covering the plurality of first line antennas, and an image. And a laminated structure having the order of the plurality of second line antennas printed and formed on the insulating layer.
또한, 상기 전자펜은 소정의 공진 주파수를 갖는 공진 회로를 포함하고, 상기 타블렛은, 상기 복수의 제1 라인 안테나를 절연된 상태로 둘러싸도록 형성되며 상기 백라이트 유닛의 임의의 표면에 전도성 물질을 인쇄함으로써 형성된 파워 코일, 및 상기 파워 코일에 상기 전자펜의 공진 주파수에 대응하는 파형을 갖는 교류 전력을 인가하는 전력 공급 드라이버를 더 포함하는 것을 특징으로 한다.In addition, the electronic pen includes a resonant circuit having a predetermined resonant frequency, and the tablet is formed to surround the plurality of first line antennas in an insulated state and prints a conductive material on any surface of the backlight unit. And a power supply driver for applying an AC power having a waveform corresponding to the resonance frequency of the electronic pen to the power coil formed by the power coil.
상술한 목적을 달성하기 위한 본 발명의 또다른 예에서는, 입력되는 영상 신호에 의해 동작이 제어되는 복수의 발광 소자가 앞면에 배열되어 전방으로 영상을 디스플레이하는 디스플레이 패널; 상기 디스플레이 패널의 뒷면에 전도성 물질을 인쇄함으로써 형성되며, 서로 나란한 빗살 모양을 이루도록 일측은 서로 연결되어 있고 타측은 서로 분리되어 있으며, 상기 서로 연결된 일측은 상기 디스플레이 패널의 일측변에 배치되고 상기 서로 분리된 타측은 상기 디스플레이 패널의 타측변 모서리까지 연장되어 있는 복수의 제1 라인 안테나와, 상기 디스플레이 패널과는 별도의 기판에 형성되며, 상기 디스플레이 패널의 상기 타측변까지 연장된 상기 제1 라인 안테나의 타측과 접속되도록 구성되며, 상기 복수의 제1 라인 안테나 중 가장 바깥쪽 2개의 타측들을 서로 연결하여 루프 구조를 구성하면서 접지에 연결시키고, 상기 복수의 제1 라인 안테나 중 어느 하나의 타측을 선택하여 상기 루프 구조와는 절연된 상태로 제1 출력으로 설정하는 제1 라인 선택 회로와, 및 교류 전자기력을 출력하는 전자펜이 접근한 경우, 상기 제1 출력에서 나타나는 유도 전압을 이용하여, 상기 선택된 제1 라인 안테나를 기준으로 상기 전자펜의 위치를 판정하는 좌표 감지 회로를 포함하는 타블렛으로 구성되는 디스플레이 패널에 일체화된 안테나 패턴을 갖는 터치 스크린 장치를 제공한다.In another embodiment of the present invention for achieving the above object, a plurality of light emitting elements whose operation is controlled by an input image signal is arranged on the front surface to display an image forward; It is formed by printing a conductive material on the back of the display panel, one side is connected to each other to form a parallel comb shape with each other and the other side is separated from each other, the one side connected to each other is disposed on one side of the display panel and separated from each other The other side of the display panel is formed on a plurality of first line antennas extending to the other side edge of the display panel and the display panel, the first line antenna extending to the other side of the display panel It is configured to be connected to the other side, and the other two of the outermost of the plurality of first line antennas connected to each other to form a loop structure and connected to the ground, and the other side of the plurality of first line antennas by selecting A first output configured as a first output in an insulated state from the loop structure A coordinate sensing circuit for determining the position of the electronic pen with respect to the selected first line antenna by using an in-selection circuit and an electronic pen that outputs an alternating electromagnetic force, using an induced voltage appearing at the first output. It provides a touch screen device having an antenna pattern integrated into the display panel consisting of a tablet comprising a.
상술한 바와 같은 구성으로 이루어진 본 발명에 따른 터치 스크린은, 일반적인 디스플레이 패널의 구조에 추가적인 기판을 더하지 않고 또한 디스플레이 패널의 내부 공간을 효율적으로 이용함으로써, 터치 스크린을 구현하기 위한 패널의 두께를 크게 증가시키지 않는다. The touch screen according to the present invention having the above-described configuration increases the thickness of the panel for implementing the touch screen by efficiently adding an additional substrate to the structure of the general display panel and efficiently using the internal space of the display panel. Do not increase.
또한, 간단한 공정에 의하여 및 최소의 적층 구조에 의하여 안테나 패턴을 구현할 수 있으므로, 제작이 간단하고 비용이 절감된다. In addition, since the antenna pattern can be implemented by a simple process and by a minimal stacked structure, the manufacturing is simple and the cost is reduced.
도 1은 루프 안테나와 라인 안테나를 이용하여 전자펜의 위치를 감지하는 기본 원리를 설명하기 위한 도면이다. 1 is a view for explaining the basic principle of detecting the position of the electronic pen using a loop antenna and a line antenna.
도 2는, 도 1에 도시된 바와 같은 라인 안테나와 루프 안테나를 이용하는 구조에 있어서, 타블렛의 각부에서 나타나는 전압의 파형을 설명하는 도면이다. FIG. 2 is a diagram for explaining waveforms of voltages appearing in various parts of a tablet in a structure using a line antenna and a loop antenna as shown in FIG. 1.
도 3은 루프 안테나와 복수의 라인 안테나를 이용하여 전자펜의 위치를 더욱 정확하게 감지할 수 있는 구조 및 동작을 설명하는 도면이다. 3 is a view for explaining the structure and operation that can more accurately detect the position of the electronic pen using a loop antenna and a plurality of line antennas.
도 4는, 전자펜의 구조와 전자펜의 위치를 검출하기 위한 타블렛의 개략적인 구조를 설명하는 도면이다.4 is a view for explaining the schematic structure of the tablet for detecting the structure of the electronic pen and the position of the electronic pen.
도 5는, 본 발명에 따른 타블렛의 구성을 개략적으로 보여주는 도면이다. 5 is a view schematically showing the configuration of a tablet according to the present invention.
도 6은 본 발명에 따른 타블렛에 있어서 회로 패턴의 구성 방법을 설명하기 위한 확대도이다. 6 is an enlarged view for explaining a method of configuring a circuit pattern in the tablet according to the present invention.
도 7은 일반적인 LCD 디스플레이 패널을 위한 백라이트 유닛의 구조를 간략하게 보여주는 도면이다. 7 is a view briefly illustrating a structure of a backlight unit for a general LCD display panel.
도 8은 본 발명에 따른 타블렛에 있어서, 베이스 기판에 안테나 패턴을 형성하는 다양한 방법을 설명하기 위한 도면이다. 8 is a view for explaining various methods of forming an antenna pattern on a base substrate in the tablet according to the present invention.
도 9는, 스크린 인쇄 방식에 의해 안테나 패턴을 형성하는 방법을 설명하는 도면이다. 9 is a view for explaining a method of forming an antenna pattern by a screen printing method.
도 10은 본 발명에 따른 타블렛에 있어서, 안테나 패턴이 형성된 반사판을 이용하여 구성된 백라이트 유닛을 설명하는 도면이다. 10 is a diagram illustrating a backlight unit configured using a reflector plate having an antenna pattern in the tablet according to the present invention.
도 11은 OLED 디스플레이 패널의 표면에 본 발명에 따른 안테나 패턴을 적용한 형태를 보여주는 도면이다. 11 is a view showing a form in which the antenna pattern according to the present invention is applied to the surface of the OLED display panel.
먼저, 본 발명에서 이용하는 타블렛에서의 전자펜 감지 원리 및 이 원리를 이용한 본 발명에 따른 유연하고 투명한 감지 영역을 갖는 타블렛의 구조와 동작을 설명한다.First, the structure and operation of an electronic pen sensing principle in a tablet used in the present invention and a tablet having a flexible and transparent sensing area according to the present invention using the principle will be described.
도 1은 루프 안테나와 라인 안테나를 이용하여 공진 회로를 갖는 전자펜의 위치를 감지하는 기본 원리를 설명하기 위한 도면이다. 먼저, 도 1(a)을 참조하여 타블렛에서 전자펜(P)을 감지하기 위한 안테나들의 구조를 설명한다. 도면에는, 폐루프 형태로 구성된 루프 안테나(10)와, 루프 안테나(10)의 일측에 일단이 접속되어 있는 상태에서 루프 안테나(10)의 루프 형태를 가로지르는 방향으로 라인 안테나(20)가 배치되어 있다. 라인 안테나(20)의 타단은 증폭기(17)의 입력에 연결되어 있다. 증폭기(17)의 다른 입력은 루프 안테나(10)에 연결된다. 증폭기(17)는 예를 들면, 차동 증폭기로서, 라인 안테나(20)의 전위로부터 루프 안테나(10)의 전위를 차감하여 증폭한 전위차(Vout)를 출력한다. 이러한 안테나 구성에서는, 라인 안테나(20)의 패턴이 루프 안테나(10)의 패턴을 교차하여 지나가는 지점이 생기게 되는데, 이 지점에서는 라인 안테나(20)와 루프 안테나(10)가 서로 절연되어야만 한다. 1 is a view for explaining the basic principle of detecting the position of the electronic pen having a resonant circuit using a loop antenna and a line antenna. First, a structure of antennas for detecting the electronic pen P in a tablet will be described with reference to FIG. 1A. In the figure, the line antenna 20 is arranged in a direction crossing the loop shape of the loop antenna 10 in a state where one end of the loop antenna 10 having a closed loop shape is connected to one side of the loop antenna 10. It is. The other end of the line antenna 20 is connected to the input of the amplifier 17. The other input of the amplifier 17 is connected to the loop antenna 10. The amplifier 17 is, for example, a differential amplifier and outputs a potential difference Vout obtained by subtracting the potential of the loop antenna 10 from the potential of the line antenna 20. In such an antenna configuration, there is a point where the pattern of the line antenna 20 crosses the pattern of the loop antenna 10, at which point the line antenna 20 and the loop antenna 10 must be insulated from each other.
한편, 도 1(a)은 인덕터와 교류 전원을 포함하는 전자펜(P)이 ① 지점에 위치하고 있는 상태를 나타내고 있다. 전자펜(P)에서는 교류 전원이 맥동함에 따라서 인덕터(L)로부터 전자기력이 발생하게 된다. 라인 안테나(20)와 루프 안테나(10)는 이러한 전자펜(P)으로부터의 전자기력에 의해 유도 전류를 발생한다. Meanwhile, FIG. 1A illustrates a state where the electronic pen P including the inductor and the AC power source is located at the point ①. In the electronic pen P, an electromagnetic force is generated from the inductor L as the AC power source pulsates. The line antenna 20 and the loop antenna 10 generate induced current by the electromagnetic force from the electronic pen P.
도 1(b)은 전자펜(P)이 도 1(a)과 같은 안테나 구조상에서 ① 지점, ② 지점, 및 ③ 지점에 위치할 때에 증폭기(17)에서 출력되는 전위차(Vout)를 보여준다. 먼저, 전자펜이 도 1(a)에서와 같이 루프 안테나(10)의 루프 형태 내의 ① 지점에 위치한다면, 라인 안테나(20)에는 실선 화살표 방향으로 흐르는 유도 전류가 발생한다. 한편, 발생한 유도 전류는 실선과 같은 전류의 흐름뿐만 아니라 점선과 같은 형태의 유도 전류의 흐름도 유발한다. 이와 같은 유도 전류가 발생하게 되면, 증폭기(17)에서는, 예를 들면, 음의 방향의 전위차를 출력하게 된다(도면에서는 아래쪽 화살표로 표시).FIG. 1 (b) shows the potential difference Vout output from the amplifier 17 when the electronic pen P is located at the ①, ②, and ③ points on the antenna structure as shown in FIG. First, if the electronic pen is located at the point ① within the loop shape of the loop antenna 10 as shown in FIG. 1 (a), the induced current flowing in the line arrow direction occurs in the line antenna 20. On the other hand, the generated induction current causes not only the flow of the current like a solid line but also the flow of the induced current in the form of a dotted line. When such an induced current is generated, the amplifier 17 outputs, for example, a potential difference in the negative direction (indicated by a down arrow in the figure).
한편, 전자펜(P)이 ③ 지점에 위치하게 된다면, 라인 안테나(20)에서는 앞서와 반대 방향으로의 유도 전류가 발생할 것이며, 증폭기(17)에서는 양의 전위차를 출력할 것이다.On the other hand, if the electronic pen P is located at the point ③, the induced current in the opposite direction will occur in the line antenna 20, the amplifier 17 will output a positive potential difference.
그리고, 전자펜(P)이 ② 지점, 즉, 라인 안테나(20)의 바로 위에 위치하게 된다면, 라인 안테나(20)에는 유도 전류가 서로 상쇄되어 발생하지 않으며, 증폭기(17)에서는 전위차가 나타나지 않는다. And, if the electronic pen P is located at the point ②, that is, directly above the line antenna 20, the induced currents do not cancel each other in the line antenna 20, and the potential difference does not appear in the amplifier 17. .
이와 같은 안테나 구조에 의하면, 루프 안테나(10)의 루프 형태 내부에서 전자펜(P)이 라인 안테나의 우측에 위치하는지 또는 좌측에 위치하는지, 또는 라인 안테나 상에 위치하는지를 감지할 수 있게 된다.According to such an antenna structure, it is possible to detect whether the electronic pen P is located on the right side or the left side of the line antenna or on the line antenna in the loop form of the loop antenna 10.
또한, 출력되는 전위차(Vout)의 크기를 이용하면 전자펜과 라인 안테나와의 거리도 판단할 수 있다. In addition, the distance between the electronic pen and the line antenna may be determined by using the magnitude of the output potential difference Vout.
한편, 위의 설명은, 전자펜(P)에서 출력하는 전자기력의 방향이 일정한 경우를 가정한 것이다. 하지만, 전자펜에서 발생하는 전자기력의 방향은 실제로는 교류 전원의 맥동에 따라 전환된다. 따라서, 증폭기(17)에서 출력되는 전위차 역시 교류 전원의 맥동 주파수에 맞추어 진동할 것이다. 이에 대해서는 도 2를 참조하여 후술한다. On the other hand, the above description, it is assumed that the direction of the electromagnetic force output from the electronic pen (P) is constant. However, the direction of the electromagnetic force generated in the electronic pen is actually switched according to the pulsation of the AC power source. Therefore, the potential difference output from the amplifier 17 will also oscillate in accordance with the pulsation frequency of the AC power supply. This will be described later with reference to FIG. 2.
도 2는, 도 1에 도시된 바와 같은 라인 안테나와 루프 안테나를 이용하는 구조에 있어서, 공진 회로를 구동시키기 위하여 건전지와 같은 소모성 전원을 이용하지 않고 외부로부터 에너지를 무선으로 공급받아 동작할 수 있는 전자펜 및 이러한 전자펜과 타블렛의 동작시 각부에서 나타나는 전압의 파형을 설명하기 위한 도면이다. FIG. 2 is a diagram illustrating a structure in which a line antenna and a loop antenna as shown in FIG. 1 are used, and may be operated by wirelessly supplying energy from an external source without using a consumable power source such as a battery to drive a resonance circuit. A diagram for explaining the waveform of the voltage appearing in each part during operation of the pen and the electronic pen and the tablet.
도 2(a)를 참조하면, 루프 안테나(10)의 외곽을 둘러싸는 형태로 파워 코일(30)이 배치되어 있고, 파워 코일(30)은 전력 공급 드라이버(PWD)(32)로부터 전자펜(P)에 내장된 공진 회로의 공진 주파수(f0)로 맥동하는 교류 전력을 공급받는다. Referring to FIG. 2 (a), the power coil 30 is disposed in a form surrounding the outside of the loop antenna 10, and the power coil 30 is connected to the electronic pen from the power supply driver (PWD) 32. The oscillating AC power is supplied at the resonance frequency f0 of the resonance circuit built in P).
이때, 파워 코일(30)에서는 전력 공급 드라이버(32)로부터 공급되는 진동하는 전력에 의해 전자기력을 출력하고, 전자펜(P)의 공진 회로에는 이 전자기력에 의하여 유도 전류가 발생한다. 전자펜(P)에서의 유도 전류는 내장된 공진 회로(적어도 인덕터와 커패시터를 포함)의 용량만큼 에너지를 충전한다. 이후, 전력 공급 드라이버(32)에서 파워 코일(30)로의 전력 공급을 중단하여도, 전자펜(P)은 공진 회로에 충전된 에너지에 의해 일정 시간 동안 공진을 계속할 수 있다. At this time, the power coil 30 outputs an electromagnetic force by vibrating electric power supplied from the power supply driver 32, and an induced current is generated in the resonance circuit of the electronic pen P by this electromagnetic force. The induced current in the electronic pen P charges energy by the capacity of the built-in resonant circuit (including at least the inductor and capacitor). Thereafter, even when the power supply from the power supply driver 32 to the power coil 30 is stopped, the electronic pen P may continue resonance for a predetermined time by energy charged in the resonance circuit.
한편, 파워 코일(30)로의 전력 공급이 중단된 상태에서 전자펜(P)의 공진 회로가 공진하면, 타블렛측의 라인 안테나(20)에는 도 1에서 설명한 바와 같은 유도 전류가 발생하게 되고, 증폭기(17)에서는 라인 안테나와 루프 안테나 사이의 전위차(Vout)가 출력된다. On the other hand, if the resonant circuit of the electronic pen P resonates while the power supply to the power coil 30 is stopped, the induced current as described in FIG. 1 is generated in the line antenna 20 on the tablet side, and the amplifier At 17, the potential difference Vout between the line antenna and the loop antenna is output.
이와 같이, 전력 공급 드라이버(32)에 의한 파워 코일 구동을 제어하는 동시에, 전력 공급 드라이버(32)를 통해 파워 코일(30)로 전력을 공급하지 않는 구간에서 증폭기(17)로부터 출력되는 전위차를 이용함으로써, 전자펜(P)의 위치를 검출할 수 있게 된다. In this manner, the power coil driving by the power supply driver 32 is controlled and the potential difference output from the amplifier 17 is used in a section in which power is not supplied to the power coil 30 through the power supply driver 32. Thus, the position of the electronic pen P can be detected.
도 2(b)는, ①지점에서 측정되는 전압 파형으로서, 전력 공급 드라이버(32)를 구동시키기 위한 제어 신호(파워 코일(30)에 공진 주파수(f0)로 진동하는 전력)이다. 이때, 공진 주파수의 전력을 공급하는 구간과 전력을 공급하지 않는 구간을 설정함으로써, 전자펜에 에너지를 공급하는 구간과 전자펜이 자체 공진하도록 하여 전자펜의 위치를 감지하는 구간을 구성할 수 있다. 도면에 도시된 몇 개의 상승하는 펄스는 예시적인 것으로서, 실제의 구현에서는 수 Hz로부터 수 MHz까지 또는 그 이상의 주파수로도 구성될 수 있다. FIG. 2 (b) is a voltage waveform measured at a point 1, which is a control signal (power oscillating at the resonant frequency f0 in the power coil 30) for driving the power supply driver 32. At this time, by setting a section for supplying the power of the resonant frequency and a section for not supplying power, it is possible to configure a section for supplying energy to the electronic pen and a section for sensing the position of the electronic pen by allowing the electronic pen to self-resonate. . The several rising pulses shown in the figures are exemplary and may, in practical implementations, consist of frequencies from several Hz to several MHz or more.
도 2(c)는 파워 코일(30)에서 나타나는 전압 파형으로서, 전력 공급 드라이버(32)에서 공진 주파수의 구형파 전력을 공급하더라도, 파워 코일(30)에서는 역기전력 현상에 의하여 완만하게 상승하는 사인파의 형태로 나타나는 것을 알 수 있다. 이때, 파워 코일(30)에서는 지면(紙面)에 수직하는 방향으로 전자기력이 출력될 것이다. 한편, 파워 코일(30)에는 파워 코일과 결합되어 공진 회로를 구성하기 위한 전하 저장 소자(예를 들면, 커패시턴스)가 없으므로, 전력 공급 드라이버(32)에서 전력 공급이 중단되면 전압 파형이 급격하게 중단된다. FIG. 2 (c) is a voltage waveform appearing in the power coil 30. Even when the power supply driver 32 supplies square wave power having a resonance frequency, the power coil 30 slowly rises due to the counter electromotive force. It can be seen that. At this time, the electromagnetic force will be output from the power coil 30 in a direction perpendicular to the ground. On the other hand, since the power coil 30 has no charge storage element (for example, capacitance) coupled to the power coil to form a resonant circuit, when the power supply is stopped in the power supply driver 32, the voltage waveform is abruptly stopped. do.
도 2(d)는 ③지점에서 측정되는 전압 파형으로서, 파워 코일(30)에서 출력되는 전자기력에 의해 전자펜(P)의 공진 회로에 유도되는 유도 전류에 의한 전압의 파형이다. 전자펜(P)의 공진 회로에서는 자체 용량만큼 에너지가 충전되고, 파워 코일(30)에서 전자기력의 출력이 중단되더라도 공진 회로 내에 충전된 에너지에 의해 소정의 시간 동안 공진을 계속한다. FIG. 2 (d) is a voltage waveform measured at point 3, which is a waveform of a voltage caused by an induced current induced in the resonant circuit of the electronic pen P by the electromagnetic force output from the power coil 30. In the resonant circuit of the electronic pen P, energy is charged by its capacity, and even if the output of the electromagnetic force is stopped in the power coil 30, the resonance is continued for a predetermined time by the energy charged in the resonant circuit.
도 2(e)는, 전력 공급 드라이버(32)에서 전력 공급이 중단된 후에도 계속 공진하는 전자펜의 공진 회로에 의해 라인 안테나(20) 및 루프 안테나(10)에 전류가 유도되고 이 유도 전류에 의해 라인 안테나(20)와 루프 안테나(10) 사이에서 발생하게 되는 전위차의 파형으로서, ④지점인 증폭기(17)에서 출력하는 전압의 파형을 보여준다. 이렇게 증폭기(17)에서 출력되는 전위차의 파형 중 임의의 시점(T)에서 전압을 샘플링(H)하고(도 1(b)의 형태와 같은 전압이 얻어짐), 샘플링된 값을 이용하여 라인 안테나(20)에 대한 전자펜(P)의 위치를 판정한다. FIG. 2 (e) shows that current is induced to the line antenna 20 and the loop antenna 10 by the resonant circuit of the electronic pen that continues to resonate even after the power supply driver 32 stops supplying power. As a waveform of the potential difference generated between the line antenna 20 and the loop antenna 10, the waveform of the voltage output from the amplifier 17 at the point ④ is shown. In this way, the voltage is sampled (H) at any time point T of the waveform of the potential difference output from the amplifier 17 (a voltage as shown in FIG. 1 (b) is obtained), and the line antenna is obtained by using the sampled value. The position of the electronic pen P with respect to 20 is determined.
도 3은 루프 안테나(10)와 복수의 라인 안테나(20)를 이용하여 전자펜(P)의 위치를 더욱 정확하게 감지할 수 있는 구조 및 동작을 설명하는 도면이다. 여기에서, 복수의 라인 안테나(20) 각각은, 일측단들은 루프 안테나(10)에 전기적으로 접속된 상태로 서로 평행하게 루프 형태를 가로지르고 있으며, 타단들은 멀티플렉서(15)의 입력에 연결되는 빗살 모양의 구조이다. 라인 안테나들(20)은 일단이 루프 안테나(10)에 접속되어 있다는 것을 제외하고는, 루프 안테나(10)와 접속되어서는 안된다. 즉, 루프 안테나들(20)의 타단들은 루프 안테나(10)와 절연된 상태이다.3 is a view for explaining the structure and operation of the position of the electronic pen P more accurately by using the loop antenna 10 and the plurality of line antennas 20. Here, each of the plurality of line antennas 20, the one end is traversed in a loop form parallel to each other in the state that is electrically connected to the loop antenna 10, the other ends are comb teeth connected to the input of the multiplexer 15. The structure of the shape. The line antennas 20 should not be connected to the loop antenna 10 except that one end is connected to the loop antenna 10. That is, the other ends of the loop antennas 20 are insulated from the loop antenna 10.
한편, 멀티플렉서(15)는 출력이 증폭기(17)의 입력에 연결되고, 외부(예를 들면, MCU)로부터 입력되는 선택 신호에 따라서 어느 하나의 라인 안테나의 타단을 선택할 수 있다. (파워 코일 및 전력 공급 드라이버는 도 3에서는 도시가 생략되었으므로, 도 4를 참조한다)On the other hand, the multiplexer 15 is connected to the input of the amplifier 17, the output, it is possible to select the other end of any one line antenna according to the selection signal input from the external (for example, MCU). (The power coil and the power supply driver are not shown in FIG. 3, so refer to FIG. 4)
이러한 안테나 구조에서, 예를 들어 도 3(a)에 도시된 바와 같은 위치에 전자펜(P)이 위치하는 상태에서, 멀티플렉서(15)를 제어하여 복수의 라인 안테나(20)를 ①로부터 ⑤의 방향으로 순차적으로 선택하게 되면, 도 3(b)과 같은 형태의 전위차(Vout)를 얻을 수 있다. In such an antenna structure, for example, in the state where the electronic pen P is located at a position as shown in FIG. 3 (a), the multiplexer 15 is controlled to move the plurality of line antennas 20 from ① to ⑤. When sequentially selected in the direction, the potential difference Vout in the form as shown in FIG. 3 (b) can be obtained.
즉, 라인 안테나 ①이 선택되었다면, 전자펜(P)이 라인 안테나 ①의 우측 가까이에 위치하고 있으므로, 증폭기(17)에서는 예를 들면 양의 전위차가 출력될 수 있다. That is, if the line antenna 1 is selected, since the electronic pen P is located near the right side of the line antenna 1, a positive potential difference can be output from the amplifier 17, for example.
이어서, 라인 안테나 ②가 선택되었다면, 전자펜(P)이 라인 안테나 ②상에 위치하므로, 증폭기(17)에서는 전위차가 출력되지 않는다.Subsequently, if the line antenna 2 is selected, since the electronic pen P is positioned on the line antenna 2, the potential difference is not output from the amplifier 17.
다음으로, 라인 안테나 ③이 선택되면, 전자펜(P)이 선택된 라인 안테나 ③의 좌측에 위치하게 되어, 증폭기(17)에서는 음의 전위차(Vout)가 출력될 수 있다. Next, when the line antenna ③ is selected, the electronic pen P is positioned to the left of the selected line antenna ③, so that the negative potential difference Vout may be output from the amplifier 17.
이후에, 라인 안테나 ④ 또는 ⑤가 선택되면, 역시 라인 안테나의 좌측에 전자펜(P)이 존재하는 형태가 되므로 음의 전위차가 출력되는데, 라인 안테나 ④ 또는 ⑤는 전자펜으로부터의 거리가 상대적으로 멀기 때문에, 라인 안테나 ③을 선택했을 때 출력되는 전위차보다 작은 전위차가 출력된다. After that, when the line antenna ④ or ⑤ is selected, a negative potential difference is output since the electronic pen P is also present on the left side of the line antenna, and the line antenna ④ or ⑤ has a relatively long distance from the electronic pen. Since it is far, the potential difference smaller than the potential difference output when the line antenna (3) is selected is output.
이와 같이 모든 라인 안테나들에서 전위차를 획득하면, 도 3(b)과 같은 도면을 얻을 수 있으며, 전자펜(P)의 위치는 전위차의 크기가 역전되는 곳, 즉, 라인 안테나 ②의 위치로 판정할 수 있다. 한편, 전자펜(P)이 라인 안테나 상에 위치하지 않고 라인 안테나들의 사이에 존재하더라도, 전자펜(P)에 인접한 양쪽의 라인 안테나에서는 서로 역전되는 형태로 전위차가 나타나게 될 것이므로, 전자펜의 위치를 판정하는 데에는 문제가 없다.In this way, if the potential difference is obtained from all the line antennas, a diagram as shown in FIG. 3 (b) can be obtained, and the position of the electronic pen P is determined as the position where the magnitude of the potential difference is reversed, that is, the position of the line antenna ②. can do. On the other hand, even if the electronic pen P is not located on the line antenna but is present between the line antennas, since the potential difference will appear in the form of inversion in both line antennas adjacent to the electronic pen P, the position of the electronic pen There is no problem in determining.
이렇게 라인 안테나들(20)을 하나씩 선택하여 전위차를 탐지하는 동작을 '스캔한다'고 표현한다. 한편, 스캔의 방식은, 위와 같이 한쪽 끝의 라인 안테나로부터 다른쪽 끝의 라인 안테나까지 순차적으로 행해질 수도 있으며, 임의의 위치에 배치된 라인 안테나를 다양한 방식으로 선택함으로써 더욱 신속하게 전자펜의 위치를 검출하도록 구현할 수도 있다. 또한, 모든 라인 안테나들을 스캔하지 않고, 일부의 라인 안테나를 스캔하는 중에 전자펜의 위치가 식별되었다면, 나머지의 라인 안테나의 스캔을 종료할 수도 있다.The operation of detecting the potential difference by selecting the line antennas 20 one by one is expressed as 'scan'. On the other hand, the scanning method may be sequentially performed from the line antenna at one end to the line antenna at the other end as described above, and the position of the electronic pen can be more quickly determined by selecting the line antenna disposed at an arbitrary position in various ways. It may be implemented to detect. In addition, if the position of the electronic pen is identified while scanning some line antennas without scanning all the line antennas, the scan of the remaining line antennas may be terminated.
다음, 도 4를 참조하여, 전자펜의 구조와 전자펜의 위치를 검출하기 위한 타블렛의 개략적인 구조를 설명한다. 먼저, 도 4(a)를 참조하면, 세로 방향(Y축 방향)으로 길게 배치되며 세로 방향(X축 방향)으로 나란하게 복수 개 배열된 X축 라인 안테나들(20X)과, X축 방향으로 길게 배치되며 Y축 방향으로 나란하게 복수 개 배열된 Y축 라인 안테나들(20Y)의 구조를 볼 수 있다(이때, X축 라인 안테나들과 Y축 라인 안테나들의 각각은 서로 절연되어 있다). 이렇게 X축 라인 안테나들(20X)과 Y축 라인 안테나들(20Y)에 의하여 각각 전자펜의 X축 위치 및 Y축 위치를 검출할 수 있게 되며, 결과적으로는 전자펜의 2차원 좌표를 산출할 수 있게 된다. Next, referring to FIG. 4, the schematic structure of the tablet for detecting the structure of the electronic pen and the position of the electronic pen will be described. First, referring to FIG. 4 (a), a plurality of X-axis line antennas 20X arranged in a longitudinal direction (Y-axis direction) and arranged in parallel in the vertical direction (X-axis direction) and in the X-axis direction The structure of the Y-axis line antennas 20Y, which are arranged long and arranged in parallel in the Y-axis direction, can be seen (in this case, the X-axis line antennas and the Y-axis line antennas are insulated from each other). In this way, the X-axis position and the Y-axis position of the electronic pen can be detected by the X-axis line antennas 20X and Y-axis line antennas 20Y, respectively. As a result, two-dimensional coordinates of the electronic pen can be calculated. It becomes possible.
이때, X축 라인 안테나들(20X)과 Y축 라인 안테나들(20Y)이 형성된 영역(점선으로 표시된 영역)은 전자펜(P)의 위치가 검출될 수 있는 전자펜 감지 영역(A)이 된다. At this time, the area (the area indicated by the dotted line) where the X-axis line antennas 20X and the Y-axis line antennas 20Y are formed becomes an electronic pen detection area A in which the position of the electronic pen P can be detected. .
전자펜 감지 영역(A)의 외부측(전자펜 감지 영역의 외부측)에는 X축 라인 안테나들(20X)과 Y축 라인 안테나들(20Y)을 둘러싸는 형태로 파워 코일(30)이 배치되어 있어서, 전자펜에 전자기력에 의하여 에너지를 공급할 수 있게 된다. On the outer side of the electronic pen detecting region A (outer side of the electronic pen detecting region), the power coil 30 is disposed to surround the X axis line antennas 20X and the Y axis line antennas 20Y. Thus, it is possible to supply energy to the electronic pen by electromagnetic force.
X축 라인 안테나들(20Y)의 일단들은 루프 안테나(10)에 접속되며, 타단들은 멀티플렉서(15)에 입력으로서 연결된다. 멀티플렉서(15)의 출력은 증폭기(17)의 하나의 입력에 연결된다.One ends of the X-axis line antennas 20Y are connected to the loop antenna 10 and the other ends are connected as inputs to the multiplexer 15. The output of the multiplexer 15 is connected to one input of the amplifier 17.
또한, Y축 라인 안테나들(20Y)의 일단들도 루프 안테나(10)에 접속되며, 타단들은 멀티플렉서(25)의 입력으로 연결되고, 멀티플렉서(25)의 출력은 증폭기(17)의 입력이 된다. In addition, one ends of the Y-axis line antennas 20Y are also connected to the loop antenna 10, the other ends are connected to the input of the multiplexer 25, and the output of the multiplexer 25 is an input of the amplifier 17. .
여기에서, X축 라인 안테나들이 접속되는 루프 안테나와 Y축 라인 안테나들이 접속되는 루프 안테나는, 도 4에서와 같이 하나의 루프 안테나를 공용할 수 있으나 독립적으로 각각 구성될 수도 있다.Here, the loop antenna to which the X-axis line antennas are connected and the loop antenna to which the Y-axis line antennas are connected may share a single loop antenna as shown in FIG. 4, but may be independently configured.
증폭기(17)는 멀티플렉서들(15 및 25)의 출력들과 루프 안테나들 중 어느 하나의 전위를 입력으로 하고(루프 안테나들은 동일한 전위로 유지된다), 양자의 전위차를 출력한다. 출력되는 전위차는 MCU(18)에 입력된다.The amplifier 17 inputs the potential of either the outputs of the multiplexers 15 and 25 and the loop antennas (the loop antennas remain at the same potential), and outputs the potential difference between them. The output potential difference is input to the MCU 18.
MCU(18)는 멀티플렉서들(15 및 25)에 선택 신호를 전송하여 어느 하나의 라인 안테나(X축 라인 안테나들 및 Y축 라인 안테나들 중 하나)의 타단을 선택하도록 함으로써, 선택된 타단으로부터의 전압이 증폭기(17)에 입력되게 한다. 그리고 선택 신호를 변경하여 계속 출력함으로써 다른 라인 안테나들을 스캔하도록 제어하고, 어느 하나의 라인 안테나가 선택될 때마다 증폭기(17)로부터 출력되는 전위차들을 입력받아 선택된 라인 안테나에 대한 전자펜(P)의 위치 관계를 감지한다. 전체 또는 일부의 라인 안테나들이 스캔되면 감지된 위치 관계들을 이용하여 전자펜(P)의 좌표를 산출한다. The MCU 18 sends a selection signal to the multiplexers 15 and 25 to select the other end of either line antenna (one of the X-axis line antennas and the Y-axis line antennas), thereby providing a voltage from the selected other end. This is input to the amplifier 17. Then, the control unit scans the other line antennas by changing the selection signal and continuously outputs the input signal. The potential difference output from the amplifier 17 is input whenever one line antenna is selected, and the electronic pen P for the selected line antenna is input. Detect the positional relationship. When all or part of the line antennas are scanned, the coordinates of the electronic pen P are calculated using the detected positional relationships.
또한, MCU(18)는 전자펜의 공진 주파수에 따른 제어 신호를 생성하여 전력 공급 드라이버(32)의 동작을 제어할 수 있다. In addition, the MCU 18 may generate a control signal according to the resonance frequency of the electronic pen to control the operation of the power supply driver 32.
여기에서, 전자펜의 위치를 감지하기 위한 안테나 패턴들 및 파워 코일이 형성된 전자펜 감지 영역(A)은, 멀티플렉서(15, 25), 증폭기(17) 및 MCU(18)를 포함하는 구동 회로 영역과 별도로 구분될 수 있으며, 별도의 기판에 형성된다. Here, the electronic pen detecting region A in which the antenna patterns for detecting the position of the electronic pen and the power coil are formed may include a driving circuit region including the multiplexers 15 and 25, the amplifier 17, and the MCU 18. It can be separated from, and formed on a separate substrate.
다음, 도 4(b)는 전자펜의 개략적인 구성을 보여준다. 전자펜(P)은, 적어도 인덕터(L)와 커패시터(C)를 포함하는 공진 회로를 구비하고, 공진 회로가 전자기력이 작용하는 전자기장 내에 위치할 때 인덕터(L)에 발생하게 되는 유도 전류에 의하여 커패시터(C)가 충전 및 방전하면서 공진 현상을 일으킨다. 이러한 공진 현상은 전자기력이 제거된 후에도 공진 회로의 시정수에 따라 소정의 시간 동안 지속된다. Next, Figure 4 (b) shows a schematic configuration of the electronic pen. The electronic pen P has a resonant circuit including at least an inductor L and a capacitor C, and is caused by an induced current generated in the inductor L when the resonant circuit is located in an electromagnetic field in which electromagnetic force is applied. The capacitor C causes resonance while charging and discharging. This resonance phenomenon persists for a predetermined time according to the time constant of the resonance circuit even after the electromagnetic force is removed.
또한, 전자펜에는 생성된 유도 전류를 이용하여 동작하는 회로 소자들이 배치될 수도 있다. 이 회로 소자들에 의하여, 전자펜에서 방출하는 전자기력의 온오프 또는 공진 주파수의 변동을 발생시킴으로써, 전자펜과 타블렛의 MCU(18)간의 디지털 통신이 가능하다.In addition, the electronic pen may be provided with circuit elements that operate using the generated induced current. These circuit elements allow digital communication between the electronic pen and the MCU 18 of the tablet by generating on / off of the electromagnetic force emitted from the electronic pen or variation of the resonant frequency.
이하에서는, 상술한 바와 같은 구조의 타블렛을 이용함에 있어서, 전자펜 감지 영역을 구성하기 위한 회로 패턴을 더욱 간단한 제조 공정으로 저렴하게 구현할 수 있는 방법을 설명한다. Hereinafter, a method of inexpensively implementing a circuit pattern for configuring an electronic pen sensing region in a simpler manufacturing process in using the tablet having the structure described above will be described.
도 5는, 개선된 구조로 전자펜 감지 영역을 구현한, 본 발명에 따른 타블렛의 구성을 개략적으로 보여주는 도면이다. 5 is a view schematically showing the configuration of a tablet according to the present invention, which implements an electronic pen sensing region with an improved structure.
도 5를 참조하면, 전자펜 감지 영역(A)은 3개의 회로 패턴을 이용하여 구성된다. 즉, X축 라인 안테나(20X)의 패턴과 X축 루프 안테나(10A)의 패턴을 구비하는 제1 회로 패턴(111)과, Y축 라인 안테나(20Y)의 패턴과 Y축 루프 안테나(10B)의 패턴을 구비하는 제2 회로 패턴(112)과, 파워 코일(30)의 제3 회로 패턴(113)이 그것이다. Referring to FIG. 5, the electronic pen sensing region A is configured using three circuit patterns. That is, the first circuit pattern 111 having the pattern of the X-axis line antenna 20X and the pattern of the X-axis loop antenna 10A, the pattern of the Y-axis line antenna 20Y, and the Y-axis loop antenna 10B. The second circuit pattern 112 having a pattern of and the third circuit pattern 113 of the power coil 30 are the same.
한편, 각 회로 패턴들은 소정의 베이스 기판에 패턴 인쇄 또는 나노-임프린팅 기술 또는 그라비아 오프셋 기술 등의 간단한 인쇄 공정에 의해 형성될 수 있다. Meanwhile, each circuit pattern may be formed on a predetermined base substrate by a simple printing process such as pattern printing or nano-imprinting technique or gravure offset technique.
각 회로 패턴(111, 112, 113)은 하나의 베이스 기판에 제1 회로 패턴(111)을 형성하고 그 위에 절연성 재질을 도포하고 그 위에 다시 제2 회로 패턴(112)을 형성하는 등의 방식으로 형성될 수 있다(도 8(a) 참조). 또는, 각 회로 패턴을 개별적인 기판에 독립적으로 형성하고, 회로 패턴이 형성된 각 기판들을 중첩시켜 전자펜 감지 영역을 구성할 수도 있다(도시하지 않음). Each of the circuit patterns 111, 112, and 113 is formed by forming a first circuit pattern 111 on one base substrate, applying an insulating material thereon, and forming a second circuit pattern 112 again thereon. It may be formed (see Fig. 8 (a)). Alternatively, each circuit pattern may be independently formed on a separate substrate, and the electronic pen sensing region may be configured by overlapping respective substrates on which the circuit pattern is formed (not shown).
먼저, X축 라인 안테나와 X축 루프 안테나를 구비한 제1 회로 패턴(111)의 구조를 설명한다. 이 회로 패턴(111)에 형성되는 X축 루프 안테나(10A)는 완전한 루프를 구성하고 있지 않으며, 제1 회로 패턴(111)의 단부에서 외부로 개방되어 있다. 또한, 각 라인 안테나들(20X)도 일단은 X축 루프 안테나(10A)에 접속된 상태이지만, 타측은 루프 안테나(10A)와 교차하지 않으면서 루프 안테나(10A)의 패턴과 나란하게, 제1 회로 패턴(111)의 상기 단부(즉, 베이스 기판의 모서리 부분)에서 외부로 흘러나가는 형태를 하고 있다. First, the structure of the first circuit pattern 111 including the X-axis line antenna and the X-axis loop antenna will be described. The X-axis loop antenna 10A formed in this circuit pattern 111 does not form a complete loop and is open to the outside at the end of the first circuit pattern 111. Further, although each line antenna 20X is also connected to the X-axis loop antenna 10A at one end, the other side of the line antennas 20X is parallel to the pattern of the loop antenna 10A without intersecting with the loop antenna 10A. The circuit pattern 111 flows outward from the end (that is, the corner portion of the base substrate).
이러한 형태로 구성한다면, 루프 안테나의 패턴과 복수의 라인 안테나의 패턴이 제1 회로 패턴(111) 내에서는 서로 교차되지 않도록 형성될 수 있다. 그리하여, 적어도 제1 회로 패턴(111)의 안테나 패턴은, 전도성 재질을 1층으로 인쇄하는 간단한 방식으로 제조될 수 있다. In this configuration, the pattern of the loop antenna and the pattern of the plurality of line antennas may be formed so as not to cross each other in the first circuit pattern 111. Thus, at least the antenna pattern of the first circuit pattern 111 can be manufactured in a simple manner by printing a conductive material in one layer.
한편, X축 루프 안테나(10A)의 루프 형태는 구동 회로가 탑재된 구동 기판(120)과 결합하여 완성된다. 즉, 구동 기판(120)에는 X축 루프 안테나(10A)의 개방된 부분을 폐쇄하여 완전한 루프로 만들기 위한 패턴의 나머지 부분인 전도성 패턴(10E)이 형성되어 있다(도 6 참조). On the other hand, the loop shape of the X-axis loop antenna 10A is completed in combination with the driving substrate 120 on which the driving circuit is mounted. That is, the conductive substrate 10E is formed on the driving substrate 120, which is the remaining portion of the pattern for closing the open portion of the X-axis loop antenna 10A to form a complete loop (see FIG. 6).
더욱, X축 루프 안테나(10A)와 X축 라인 안테나(20X)의 교차 및 절연도 구동 기판(120)의 전도성 패턴 부분에서 이루어진다. 즉, X축 라인 안테나들(20X)의 타단은 구동 기판의 제1 연장 패턴들(20XE)까지 연장되어 있으며, 이 연장 패턴들이 전도성 패턴(10E)과 절연된 상태로 교차하도록 배치되어 있다. 전도성 패턴(10E)을 교차한 X축 라인 안테나들의 제1 연장 패턴들(20XE)은 구동 기판(120)에 실장된 멀티플렉서의 입력으로 연결된다. 도 6에서 굵은 실선은 루프 안테나 패턴의 일부인 전도성 패턴(10E)으로서 상대적으로 가늘은 실선의 라인 안테나 패턴의 일부인 제1 연장 패턴들(20XE)과는 절연된 상태로 배치된다. Further, the intersection and insulation of the X-axis loop antenna 10A and the X-axis line antenna 20X is also made at the conductive pattern portion of the drive substrate 120. That is, the other ends of the X-axis line antennas 20X extend to the first extension patterns 20XE of the driving substrate, and the extension patterns are disposed to cross the conductive patterns 10E in an insulated state. The first extension patterns 20XE of the X-axis line antennas crossing the conductive pattern 10E are connected to an input of a multiplexer mounted on the driving substrate 120. In FIG. 6, the thick solid line is a conductive pattern 10E that is part of the loop antenna pattern, and is disposed insulated from the first extension patterns 20XE that are part of the relatively thin line antenna pattern.
전자펜 감지 영역(A)을 구성하는 제1 회로 패턴(111)이 인쇄되는 기판과, 멀티플렉서(15, 25), 증폭기(17), MCU(18) 등이 실장되는 구동 기판(120)은 서로 개별적인 기판으로 구성되는 것이 바람직하다.The substrate on which the first circuit pattern 111 constituting the electronic pen sensing region A is printed, and the driving substrate 120 on which the multiplexers 15 and 25, the amplifier 17, the MCU 18, and the like are mounted are mutually different. It is preferred to consist of separate substrates.
이와 같이, 본 발명의 일 실시예에 따른 안테나 구조는 제1 회로 패턴(111)과 구동 기판(120)이 서로 결합되었을 때 완성된다. As described above, the antenna structure according to the exemplary embodiment of the present invention is completed when the first circuit pattern 111 and the driving substrate 120 are coupled to each other.
X축 루프 안테나(10A)의 전도성 패턴(10E)은 구동 기판(120)에서 공통 전위를 띠는 회로 패턴(굵은 실선으로 도시된 패턴)과 접속되어 공통 전위(또는, 접지)로 된다. The conductive pattern 10E of the X-axis loop antenna 10A is connected to a circuit pattern having a common potential (pattern shown by a thick solid line) on the driving substrate 120 to become a common potential (or ground).
Y축 라인 안테나(20Y)와 Y축 루프 안테나(10B)가 형성되는 제2 회로 패턴(112)도 제1 회로 패턴(111)과 유사하게 구성된다. 즉, Y축 루프 안테나(10B)는 제2 회로 패턴(112)의 어느 한쪽변에서 기판의 외부로 흘러나가는 형태를 나타내며, Y축 라인 안테나(20Y)의 타단들도 Y축 루프 안테나(10B)의 패턴과 나란하게 외부로 흘러나가는 형태를 보이고 있다. The second circuit pattern 112 on which the Y-axis line antenna 20Y and the Y-axis loop antenna 10B are formed is also configured similarly to the first circuit pattern 111. That is, the Y-axis loop antenna 10B has a form flowing out of the substrate from one side of the second circuit pattern 112, and the other ends of the Y-axis line antenna 20Y are also Y-axis loop antenna 10B. The pattern is flowing out to the outside in parallel with the pattern of.
제2 회로 패턴(112)이 구동 기판(120)과 결합되면, 제2 회로 패턴(112)의 Y축 루프 안테나(10B)의 개방된 부분이 구동 기판(120)에 형성된 전도성 패턴(X축 루프 안테나와 연결된 전도성 패턴과 일체화되어 동일 전위로 구성될 수 있음)과 결합되어 완전한 폐루프 형태를 갖는 루프 안테나가 완성된다. 또한, 구동 기판(120)에서는 복수의 Y축 라인 안테나들(20Y)이 절연 부분(S)에서 Y축 루프 안테나(10B)의 나머지 부분을 이루는 전도성 패턴(10E)과 절연된 상태로 교차하여 멀티플렉서(25)의 입력에 접속된다. When the second circuit pattern 112 is coupled to the driving substrate 120, an open portion of the Y-axis loop antenna 10B of the second circuit pattern 112 is formed on the driving substrate 120 (the X-axis loop). Integrated with a conductive pattern connected to the antenna, which can be configured to the same potential) to form a loop antenna with a fully closed loop shape. In addition, in the driving substrate 120, the plurality of Y-axis line antennas 20Y cross each other in an insulated state with the conductive pattern 10E forming the remaining portion of the Y-axis loop antenna 10B in the insulating portion S and multiplexer. Connected to the input of (25).
한편, 파워 코일(30)은 전자펜 감지 영역(A)의 외곽을 둘러쌀 수 있는 크기로 형성되며, 각 루프 안테나 또는 라인 안테나가 형성된 기판에 동시에 인쇄 등의 방식으로 형성될 수도 있다(예를 들면, 도 8(b) 참조). 하지만, 전자펜에 대해 더 많은 에너지를 출력하기 위해서는 권선수와 도선의 굵기를 제어해야하므로, 파워 코일(30)의 패턴을 별도의 코일 기판(도시하지 않음)상에 인쇄 등으로 형성하고, 파워 코일(30)의 루프 형태의 안쪽 부분, 즉, 전자펜 감지 영역(A)에 해당하는 부분의 기판을 뚫어낸 구성(전자펜 감지 영역을 구성하는 회로 패턴(111, 112)이 뚫려진 부분 내에 배치될 수 있도록)으로 할 수도 있다. 또는, 파워 코일을 소정의 기판에 형성하지 않고, 도선을 감아서 코일을 구성하여 별도로 배치하는 구성도 가능하다. On the other hand, the power coil 30 is formed to have a size that can surround the outside of the electronic pen detection area (A), it may be formed on the substrate on which each loop antenna or line antenna is formed by printing or the like (for example, For example, see FIG. 8 (b)). However, in order to output more energy to the electronic pen, the number of windings and the thickness of the conductive wire must be controlled, so that the pattern of the power coil 30 is formed on a separate coil substrate (not shown) by printing or the like. In the inner part of the loop form of the coil 30, that is, the structure which penetrated the board | substrate of the part corresponding to the electronic pen detection area | region A (in the part which the circuit patterns 111 and 112 which comprise the electronic pen detection area | region were drilled). To be arranged). Alternatively, a configuration in which coils are formed by winding conducting wires and arranged separately without forming a power coil on a predetermined substrate may be used.
이러한 파워 코일(30)의 양단부는 구동 기판(120)에 구비될 수 있는 전력 공급 드라이버(32)에 연결된다. Both ends of the power coil 30 are connected to a power supply driver 32 that may be provided on the driving substrate 120.
구동 기판(120)에는, 도시된 바와 같이, 라인 안테나와 루프 안테나의 나머지 부분들(즉, 전도성 패턴, 제1 및 제2 연장 패턴)이 배치되어 있으며, 이들은 서로 절연되어 절연 영역(S)을 이룬다. 또한, 구동 기판에는, 복수의 라인 안테나의 타단들 중 어느 하나를 선택하기 위한 멀티플렉서들(15, 25)과, 멀티플렉서들의 출력 및 루프 안테나의 전위(즉, 공통 전위)가 입력되는 증폭기(17)와, 증폭기의 출력에 의하여 전자펜(P)의 좌표를 산출하는 MCU(18)가 구성되어 있다. 또한, 외부로부터 전원을 입력받아서 파워 코일(30)을 구동하는 전력 공급 드라이버(32)도 배치될 수 있다. 전력 공급 드라이버(32)는 각 루프 안테나들에 대하여 공통 전위를 제공할 수도 있다. In the driving substrate 120, as shown, the remaining portions of the line antenna and the loop antenna (ie, the conductive pattern and the first and second extension patterns) are disposed, and they are insulated from each other to form the insulation region S. Achieve. In addition, the amplifier 17 receives the multiplexers 15 and 25 for selecting any one of the other ends of the plurality of line antennas, and the output of the multiplexers and the potential of the loop antenna (ie, the common potential). And the MCU 18 which calculates the coordinates of the electronic pen P by the output of the amplifier. In addition, the power supply driver 32 for driving the power coil 30 by receiving power from the outside may be arranged. The power supply driver 32 may provide a common potential for each loop antenna.
구동 기판(120)에 실장되는 구성 요소들의 종류 및 그들의 배치 형태는 다양하게 설정될 수 있다. The type of components mounted on the driving substrate 120 and their arrangement may be variously set.
상술한 바와 같은 구성으로 이루어지는 안테나 패턴 구조를 갖는 타블렛에 의하면, 전자펜 감지 영역이 형성되는 기판을 제조할 때, 안테나 패턴을 절연성 재질의 표면에 단층으로 인쇄하는 방식으로 구성할 수 있어서, 공정이 간단하며 제조 비용을 절감할 수 있다.According to the tablet having the antenna pattern structure having the above-described configuration, when manufacturing the substrate on which the electronic pen sensing region is formed, the antenna pattern can be formed by printing a single layer on the surface of the insulating material, so that the process is performed. It is simple and can reduce manufacturing cost.
더욱, 전자펜 감지 영역을 이루는 기판의 두께가 얇아질 수 있으므로, 타블렛을 구현할 때 제품의 두께를 최소화할 수 있다.In addition, since the thickness of the substrate constituting the electronic pen sensing region may be thin, it is possible to minimize the thickness of the product when implementing the tablet.
다음, 일반적인 디스플레이 패널, 특히 LCD 디스플레이 패널에 사용되는 백라이트 유닛의 구조를, 도 7을 참조하여 설명한다. 도면을 참조하면, 백라이트 유닛(50)은, 엣지 라이트형으로서, 램프(51)와, 램프 커버(52)와, 도광판(53)과, 확산 시트(58)와, 프리즘 시트(55, 56)와, 보호 시트(58)를 포함하여 이루어진다. Next, a structure of a backlight unit used in a general display panel, particularly an LCD display panel, will be described with reference to FIG. 7. Referring to the drawings, the backlight unit 50 is an edge light type and includes a lamp 51, a lamp cover 52, a light guide plate 53, a diffusion sheet 58, and a prism sheet 55, 56. And a protective sheet 58.
램프(51)는, 도광판(53)의 측면에서 변을 따라 긴 봉 형태로 구성되며, 냉음극 형광 램프(CCFL) 또는 LED 등으로 구성된다. The lamp 51 is formed in the shape of an elongated rod along the side of the light guide plate 53, and is formed of a cold cathode fluorescent lamp (CCFL) or an LED.
램프 커버(52)는, 램프(51)로부터 모든 방향으로 방출되는 광을 도광판(53)을 향하여 한 방향을 향하도록 반사시키기 위한 것이다. The lamp cover 52 is for reflecting light emitted from the lamp 51 in all directions toward the light guide plate 53 to face in one direction.
도광판(53)은, 램프(51)로부터 일측변으로 입사되는 광선을 도광판(53)의 전체면에 대하여 고르게 분산시켜 방출시킴으로써, 도광판 전체가 면광원과 같이 작용하도록 한다. 이를 위하여, 도광판(53)은 내부를 통과하는 광선을 다양한 방향으로 고르게 산란시킬 수 있는 다양한 재질로 이루어질 수 있으며, 복수의 굴절 수단(예를 들면, 마이크로 렌즈 등)이 혼입될 수도 있다. The light guide plate 53 evenly distributes and radiates light rays incident from one side of the light guide plate 53 to the entire surface of the light guide plate 53 so that the entire light guide plate acts as a surface light source. To this end, the light guide plate 53 may be made of various materials capable of uniformly scattering light rays passing through the inside in various directions, and a plurality of refractive means (for example, micro lenses, etc.) may be mixed.
확산 시트(58)는 도광판(53)에서 고르게 산란되어 방출되는 광을 더욱 균일하게 한다.The diffusion sheet 58 makes the light emitted evenly scattered in the light guide plate 53 more uniform.
프리즘 시트(58)는 수직 및 수평 평태의 복수의 프리즘을 각각 구비하고 있으며, 도광판(53)으로부터 입사되는 광을 전방을 향하여 일정한 방향성을 갖도록 한다. The prism sheet 58 is provided with a plurality of vertical and horizontal flat prisms, respectively, and allows the light incident from the light guide plate 53 to have a constant direction toward the front.
보호 시트(58)는, 백라이트 유닛(50)이 LCD 패널과 같은 또다른 기판에 접촉할 때의 백라이트 유닛 표면의 손상을 방지한다. The protective sheet 58 prevents damage to the backlight unit surface when the backlight unit 50 contacts another substrate such as an LCD panel.
한편, 도광판(53)의 뒷면에는 반사 시트(58)가 배치되는데, 이는 램프(51)로부터의 광선이 도광판(53)의 뒷면을 향하는 광선을 전방으로 반사시킴으로써 광의 소실을 막고 전방쪽으로의 휘도를 향상시키기 위한 것이다. 반사 시트(58)는 주로 백색 불투명 폴리에스테르 필름 또는 이러한 필름에 유기 또는 무기 재질을 코팅한 것이 주로 사용된다. On the other hand, a reflective sheet 58 is disposed on the rear surface of the light guide plate 53, which reflects the light beam toward the rear surface of the light guide plate 53 forward to prevent the loss of light and to maintain the brightness toward the front side. It is to improve. The reflective sheet 58 is mainly a white opaque polyester film or a coating of an organic or inorganic material on such a film.
이어서, 도 8을 참조하여, 본 발명에 따른 타블렛에 있어서, 베이스 기판(안테나 기판)에 안테나 패턴을 형성하는 방법을 설명한다. 여기에서, 베이스 기판은, LCD 패널의 백라이트 유닛을 구성하는 어느 하나의 기판, 또는 OLED 패널과 같은 자체 발광 디스플레이 패널의 LED 형성된 기판일 수 있다. Next, with reference to FIG. 8, the method of forming an antenna pattern in a base substrate (antenna substrate) in the tablet which concerns on this invention is demonstrated. Here, the base substrate may be any one of the substrates constituting the backlight unit of the LCD panel, or an LED-formed substrate of a self-luminous display panel such as an OLED panel.
본 발명에 따른 상술한 안테나 패턴을 이용함으로써, 회로 패턴(111, 112)의 각각은 소정 기판의 동일 평면에 간단한 인쇄 방식으로 형성될 수 있다. 도 8(a)은, 베이스 기판(110)에 X축 안테나 패턴(111)을 스크린 인쇄 등에 의해 형성하고, 형성된 X축 안테나 패턴(111)을 절연성 재질로 피복(S1)하고, 그 위에 Y축 안테나 패턴(112)을 스크린 인쇄 등에 의해 형성하고, 형성된 패턴을 다시 절연성 재질로 피복(S2)함으로써 전자펜 감지 영역을 형성한 구조를 보여주고 있다. By using the above-described antenna pattern according to the present invention, each of the circuit patterns 111 and 112 can be formed by a simple printing method on the same plane of a predetermined substrate. FIG. 8A shows that the X-axis antenna pattern 111 is formed on the base substrate 110 by screen printing, and the formed X-axis antenna pattern 111 is covered with an insulating material (S1), and the Y-axis is formed thereon. The antenna pattern 112 is formed by screen printing, and the formed pattern is again covered with an insulating material (S2), thereby showing a structure in which the electronic pen sensing region is formed.
한편, 도 8(b)은, 도 8(a)과 같은 구조로 전자펜 감지 영역을 구성하고, 베이스 기판의 둘레 부분에서 라인 안테나 및 루프 안테나를 둘러싸도록 역시 스크린 인쇄 등의 방법으로 파워 코일을 형성한 형태를 보여준다. 이때, 한 층의 파워 코일 패턴을 형성한 후 절연성 재질로 피복(S3)하고 다시 또 한 층의 파워 코일 패턴을 형성함으로써 복층의 파워 코일(30)을 형성할 수도 있다. On the other hand, Figure 8 (b), to configure the electronic pen detection area in the structure as shown in Figure 8 (a), and to surround the line antenna and the loop antenna in the circumferential portion of the base substrate also by the method of screen printing, etc. Show the formed form. In this case, the power coil 30 may be formed by forming one layer of the power coil pattern and then covering the insulating material S3 and forming another layer of the power coil pattern.
도 9는, 베이스 기판이 되는 백라이트 유닛의 반사판의 일측면에 스크린 인쇄 방식으로 안테나 패턴을 형성하는 방법을 설명하는 도면으로서, 기판에 스크린 인쇄용 롤러를 이용하여 전도성 물질을 인쇄하는 모습을 보여주고 있다. 이와 같이, 본 발명에서는, 스크린을 이용하여 전도성 물질을 간단히 인쇄하는 것만으로도 터치 스크린의 기능을 실현하는 안테나 패턴이 간단하게 완성될 수 있다. FIG. 9 is a view illustrating a method of forming an antenna pattern on one side of a reflecting plate of a backlight unit serving as a base substrate by screen printing, and showing a state of printing a conductive material on the substrate by using a screen printing roller. . As described above, in the present invention, the antenna pattern for realizing the function of the touch screen can be simply completed by simply printing the conductive material using the screen.
이와 같이, 본 발명에 따른, 백라이트 유닛(50)에 일체화된 안테나 패턴을 갖는 터치 스크린 장치는, 전자펜(P)의 위치를 감지하기 위한 안테나 패턴을 반사 시트(58)의 표면에 형성함으로써, 디스플레이 동작에 어떠한 영향을 미치지 않으면서 디스플레이 패널의 내부 공간 및 구조를 효율적으로 이용할 수 있도록 한다. As described above, the touch screen device having the antenna pattern integrated in the backlight unit 50 according to the present invention forms an antenna pattern for sensing the position of the electronic pen P on the surface of the reflective sheet 58. The internal space and structure of the display panel can be efficiently used without affecting the display operation.
즉, 본 발명의 상술한 바와 같은 안테나 패턴을 이용하면, 반사 시트(58)를 베이스 기판(110)으로 하여 1층의 인쇄에 의해 1축 방향의 안테나 패턴을 구성할 수 있다. 여기에, 도 8에 도시된 바와 같이, 절연층(S1)을 적층하고, 다시 다른 축 방향의 안테나 패턴을 구성한다면, 전자펜(P)의 2차원 좌표를 측정할 수 있는 안테나 패턴을 손쉽게 구현할 수 있게 된다. That is, when the antenna pattern as described above of the present invention is used, the antenna pattern in the uniaxial direction can be configured by printing one layer using the reflective sheet 58 as the base substrate 110. Here, as shown in FIG. 8, if the insulating layer S1 is stacked and another antenna pattern is formed in another axial direction, an antenna pattern capable of measuring two-dimensional coordinates of the electronic pen P may be easily implemented. It becomes possible.
이때, 안테나 패턴은 반사 시트(58)의 뒷면(도면에서 아래쪽 방향)에 형성되는 것이 바람직한데, 이는 안테나 패턴이 광의 반사에 영향을 미치지 않도록 하기 위함이다. 또한, 안테나 패턴을 반사 시트(58)의 뒷면에 형성한다면, 안테나 패턴의 두께에 따른 투명도가 디스플레이 동작에 전혀 영향을 미치지 않게 된다.At this time, the antenna pattern is preferably formed on the rear surface (downward in the drawing) of the reflective sheet 58, so that the antenna pattern does not affect the reflection of light. In addition, if the antenna pattern is formed on the back side of the reflective sheet 58, the transparency according to the thickness of the antenna pattern does not affect the display operation at all.
도 8(a)을 참조하면, 베이스 기판(110)이 반사 시트(58)가 되며, 도면의 아래쪽이 광이 방출되는 앞면에 해당하고, 도면의 윗쪽이 반사 시트(58)의 뒷면에 해당한다. 따라서, 베이스 기판(110)의 아래쪽 표면의 바깥쪽 또는 위쪽 표면의 안쪽에는 아래쪽으로부터 입사되는 빛을 되반사하기 위한 반사 재료가 도포되어 있을 수 있다. Referring to FIG. 8A, the base substrate 110 becomes the reflective sheet 58, and the lower portion of the figure corresponds to the front surface from which light is emitted, and the upper portion of the figure corresponds to the rear surface of the reflective sheet 58. . Therefore, a reflective material for reflecting light incident from the bottom may be applied to the outside of the bottom surface or the inside of the top surface of the base substrate 110.
도 10은 본 발명에 따른 타블렛에 있어서, 반사판을 베이스 기판으로 사용하여 백라이트 유닛을 구성하는 형태를 설명하는 도면이다. It is a figure explaining the form which comprises a backlight unit using the reflecting plate as a base substrate in the tablet which concerns on this invention.
먼저, 안테나 패턴이 형성된 반사 시트(58)에 있어서, 안테나 패턴들은 실드에 의해 보호될 수 있다. 실드는 도 8에서 설명한 절연층을 그대로 이용할 수 있으며, 별도의 필름을 부착하거나 도포하는 방식으로 형성할 수도 있다. First, in the reflective sheet 58 in which the antenna pattern is formed, the antenna patterns can be protected by a shield. The shield may use the insulation layer described with reference to FIG. 8 as it is, or may be formed by attaching or applying a separate film.
한편, 도면에서는, 안테나 패턴을 외부의 구동 회로와 연결시키기 위한 커넥터가 더 도시되어 있다. Meanwhile, in the figure, a connector for connecting the antenna pattern with an external driving circuit is further shown.
이와 같이 구성된 반사 시트(58)의 반사면측에는 도광판 등 및 디스플레이 패널이 결합되어, 터치 스크린이 완성된다. The light guide plate and the display panel are coupled to the reflective surface side of the reflective sheet 58 configured as described above, thereby completing a touch screen.
다음, 또다른 방식의 디스플레이 패널, 특히 OLED 디스플레이 패널과 같이 자체적으로 발광하여 디스플레이 동작을 행하는 장치에 적용된, 본 발명에 따른 디스플레이 패널에 일체화된 안테나 패턴을 갖는 터치 스크린 장치를, 도 10를 참조하여 설명한다. Next, a touch screen device having an antenna pattern integrated into the display panel according to the present invention, which is applied to another type of display panel, in particular, an apparatus which emits light by itself and performs a display operation, with reference to FIG. 10. Explain.
도 11에서는, 디스플레이 패널(60)을 개략적으로 단층으로 도시하였다. 여기에서 도면의 윗쪽은 영상이 표시되는 앞면에 해당한다. 도면의 아래쪽인 디스플레이 패널(60)의 뒷면에는 전자펜(P)의 감지를 위한 안테나 패턴이 인쇄 등의 방식으로 다중 형성되어 있다. 이러한 구성에 의하면, 안테나 패턴을 위한 별도의 기판을 추가하지 않으면서도, 전자펜(P)을 감지할 수 있는 타블렛을 일체화시킨 터치 스크린이 제작 가능하다. In FIG. 11, the display panel 60 is schematically illustrated in a single layer. Here, the upper part of the drawing corresponds to the front side where the image is displayed. On the back of the display panel 60, which is the lower part of the figure, the antenna pattern for sensing the electronic pen P is formed in multiple ways by printing or the like. According to this configuration, a touch screen integrated with a tablet capable of detecting the electronic pen P can be manufactured without adding a separate substrate for the antenna pattern.
Claims (6)
- 입력되는 영상 신호에 의해 동작이 제어되는 광투과 제어 소자가 배열되어 있는 디스플레이 유닛, 및 상기 디스플레이 유닛의 후방에 배치되어 상기 디스플레이 유닛을 통해 전방으로 광을 방출하는 백라이트 유닛을 포함하는 디스플레이 패널과; A display panel including a display unit in which an optical transmission control element whose operation is controlled by an input image signal is arranged, and a backlight unit disposed at the rear of the display unit and emitting light forward through the display unit;상기 백라이트 유닛의 일표면에 전도성 물질을 인쇄함으로써 형성되며, 서로 나란한 빗살 모양을 이루도록 일측은 서로 연결되어 있고 타측은 서로 분리되어 있으며, 상기 서로 연결된 일측은 상기 백라이트 유닛의 상기 일표면의 일측변에 배치되고 상기 서로 분리된 타측은 상기 백라이트 유닛의 상기 일표면의 타측변의 모서리까지 연장되어 있는 복수의 제1 라인 안테나와; It is formed by printing a conductive material on one surface of the backlight unit, one side is connected to each other and the other side is separated from each other to form a parallel comb-like shape with each other, the one side connected to each other on one side of the one surface of the backlight unit A plurality of first line antennas disposed on the other side of the backlight unit and extending to an edge of the other side of the one surface of the backlight unit;상기 디스플레이 패널과는 별도의 기판에 형성되며, 상기 백라이트 유닛의 상기 타측변까지 연장된 상기 제1 라인 안테나의 타측과 접속되도록 구성되며, 상기 복수의 제1 라인 안테나 중 가장 바깥쪽의 2개의 타측들을 서로 연결하여 루프 구조를 구성하면서 접지에 연결시키고, 상기 복수의 제1 라인 안테나 중 어느 하나의 타측을 선택하여 상기 루프 구조와는 절연된 상태로 제1 출력으로 설정하는 제1 라인 선택 회로와, 및 It is formed on a separate substrate from the display panel, and is configured to be connected to the other side of the first line antenna extending to the other side of the backlight unit, the other two outermost of the plurality of first line antennas And a first line selection circuit configured to connect each other to a ground while forming a loop structure, and select one of the plurality of first line antennas to set the first output in an insulated state from the loop structure; , And교류 전자기력을 출력하는 전자펜이 접근한 경우, 상기 제1 출력에서 나타나는 유도 전압을 이용하여, 상기 선택된 제1 라인 안테나를 기준으로 상기 전자펜의 위치를 판정하는 좌표 감지 회로를 포함하는 타블렛으로 구성되는 백라이트 유닛에 일체화된 안테나 패턴을 갖는 터치 스크린 장치.When the electronic pen for outputting the AC electromagnetic force is approached, the tablet including a coordinate sensing circuit for determining the position of the electronic pen with respect to the selected first line antenna using the induced voltage appearing in the first output Touch screen device having an antenna pattern integrated into the backlight unit.
- 제1항에 있어서,The method of claim 1,상기 복수의 제1 라인 안테나는 상기 백라이트 유닛의 반사 시트에 형성되는 것을 특징으로 하는 백라이트 유닛에 일체화된 안테나 패턴을 갖는 터치 스크린 장치.And the plurality of first line antennas are formed on a reflective sheet of the backlight unit.
- 제2항에 있어서,The method of claim 2,상기 복수의 제1 라인 안테나 패턴은, 상기 반사 시트의 반사면의 뒷면에 형성되는 것을 특징으로 하는 백라이트 유닛에 일체화된 안테나 패턴을 갖는 터치 스크린 장치.And the plurality of first line antenna patterns are formed on a rear surface of a reflective surface of the reflective sheet.
- 제2항 또는 제3항에 있어서, The method according to claim 2 or 3,상기 타블렛은, The tablet,상기 복수의 제1 라인 안테나와 동일 형상이면서 상기 제1 라인 안테나와는 교차하는 방향으로 배열된 복수의 제2 라인 안테나, 및 A plurality of second line antennas which have the same shape as the plurality of first line antennas and are arranged in a direction crossing the first line antennas, and상기 복수의 제2 라인 안테나의 가장 바깥쪽 라인 안테나들을 서로 연결하여 루프 구조를 구성하면서 접지에 연결시키고, 상기 복수의 제2 라인 안테나 중 어느 하나의 타측을 선택하여 상기 루프 구조와는 절연된 상태로 제2 출력으로 설정하는 제2 라인 선택 회로를 더 포함하고, The outermost line antennas of the plurality of second line antennas are connected to each other to form a loop structure and connected to ground, and the other side of the plurality of second line antennas is selected to be insulated from the loop structure. A second line selection circuit for setting to a second output,상기 좌표 감지 회로는, 상기 제1 출력 및 상기 제2 출력에서 나타나는 유도 전압을 이용하여 상기 전자펜의 위치를 판정하고, The coordinate sensing circuit is configured to determine the position of the electronic pen using the induced voltage appearing at the first output and the second output,상기 복수의 제1 라인 안테나와 상기 복수의 제2 라인 안테나는, 상기 반사 시트, 상기 반사 시트에 인쇄되어 형성된 상기 복수의 제1 라인 안테나, 상기 복수의 제1 라인 안테나를 덮는 절연층, 및 상기 절연층 상에 인쇄되어 형성된 상기 복수의 제2 라인 안테나의 순서를 갖는 적층 구조로써 형성되는 것을 특징으로 하는 백라이트 유닛에 일체화된 안테나 패턴을 갖는 터치 스크린 장치.The plurality of first line antennas and the plurality of second line antennas may include the reflective sheet, the plurality of first line antennas formed by being printed on the reflective sheet, an insulating layer covering the plurality of first line antennas, and the A touch screen device having an antenna pattern integrated in a backlight unit, characterized in that it is formed as a laminated structure having a sequence of the plurality of second line antennas printed on an insulating layer.
- 제1항에 있어서, The method of claim 1,상기 전자펜은 소정의 공진 주파수를 갖는 공진 회로를 포함하고,The electronic pen includes a resonant circuit having a predetermined resonant frequency,상기 타블렛은, 상기 복수의 제1 라인 안테나를 절연된 상태로 둘러싸도록 형성되며 상기 백라이트 유닛의 임의의 표면에 전도성 물질을 인쇄함으로써 형성된 파워 코일, 및 상기 파워 코일에 상기 전자펜의 공진 주파수에 대응하는 파형을 갖는 교류 전력을 인가하는 전력 공급 드라이버를 더 포함하는 것을 특징으로 하는 백라이트 유닛에 일체화된 안테나 패턴을 갖는 터치 스크린 장치.The tablet may include a power coil formed to surround the plurality of first line antennas in an insulated state and formed by printing a conductive material on an arbitrary surface of the backlight unit, and corresponding to the resonance frequency of the electronic pen on the power coil. The touch screen device having an antenna pattern integrated into the backlight unit, characterized in that it further comprises a power supply driver for applying an AC power having a waveform.
- 입력되는 영상 신호에 의해 동작이 제어되는 복수의 발광 소자가 앞면에 배열되어 전방으로 영상을 디스플레이하는 디스플레이 패널; A display panel in which a plurality of light emitting elements whose operation is controlled by an input image signal is arranged on a front surface to display an image forward;상기 디스플레이 패널의 뒷면에 전도성 물질을 인쇄함으로써 형성되며, 서로 나란한 빗살 모양을 이루도록 일측은 서로 연결되어 있고 타측은 서로 분리되어 있으며, 상기 서로 연결된 일측은 상기 디스플레이 패널의 일측변에 배치되고 상기 서로 분리된 타측은 상기 디스플레이 패널의 타측변 모서리까지 연장되어 있는 복수의 제1 라인 안테나와, It is formed by printing a conductive material on the back of the display panel, one side is connected to each other to form a parallel comb shape with each other and the other side is separated from each other, the one side connected to each other is disposed on one side of the display panel and separated from each other The other side is a plurality of first line antenna extending to the other side edge of the display panel,상기 디스플레이 패널과는 별도의 기판에 형성되며, 상기 디스플레이 패널의 상기 타측변까지 연장된 상기 제1 라인 안테나의 타측과 접속되도록 구성되며, 상기 복수의 제1 라인 안테나 중 가장 바깥쪽 2개의 타측들을 서로 연결하여 루프 구조를 구성하면서 접지에 연결시키고, 상기 복수의 제1 라인 안테나 중 어느 하나의 타측을 선택하여 상기 루프 구조와는 절연된 상태로 제1 출력으로 설정하는 제1 라인 선택 회로와, 및 It is formed on a separate substrate from the display panel, and is configured to be connected to the other side of the first line antenna extending to the other side of the display panel, the other two outermost sides of the plurality of first line antennas A first line select circuit configured to be connected to each other to form a loop structure and to be connected to ground, and to select one of the plurality of first line antennas and to set the first output in an insulated state from the loop structure; And교류 전자기력을 출력하는 전자펜이 접근한 경우, 상기 제1 출력에서 나타나는 유도 전압을 이용하여, 상기 선택된 제1 라인 안테나를 기준으로 상기 전자펜의 위치를 판정하는 좌표 감지 회로를 포함하는 타블렛으로 구성되는 디스플레이 패널에 일체화된 안테나 패턴을 갖는 터치 스크린 장치.When the electronic pen for outputting the AC electromagnetic force is approached, the tablet comprising a coordinate sensing circuit for determining the position of the electronic pen with respect to the selected first line antenna using the induced voltage appearing in the first output Touch screen device having an antenna pattern integrated into the display panel.
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EP4134796A1 (en) * | 2021-08-10 | 2023-02-15 | Samsung Display Co., Ltd. | Display device and a sensing system including the same |
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Also Published As
Publication number | Publication date |
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KR101303875B1 (en) | 2013-09-04 |
KR20130095451A (en) | 2013-08-28 |
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