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WO2014090124A1 - Clavier à touches mobiles et procédé d'entrée appliquant un clavier à touches mobiles - Google Patents

Clavier à touches mobiles et procédé d'entrée appliquant un clavier à touches mobiles Download PDF

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Publication number
WO2014090124A1
WO2014090124A1 PCT/CN2013/088877 CN2013088877W WO2014090124A1 WO 2014090124 A1 WO2014090124 A1 WO 2014090124A1 CN 2013088877 W CN2013088877 W CN 2013088877W WO 2014090124 A1 WO2014090124 A1 WO 2014090124A1
Authority
WO
WIPO (PCT)
Prior art keywords
keyboard
moving plane
button
mouse
key
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Ceased
Application number
PCT/CN2013/088877
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English (en)
Chinese (zh)
Inventor
胡华
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
RUI HUA HONG TECHONLOGY Co Ltd CHONGQING
Original Assignee
RUI HUA HONG TECHONLOGY Co Ltd CHONGQING
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Priority claimed from CN 201220682233 external-priority patent/CN202975981U/zh
Priority claimed from CN201310445461.5A external-priority patent/CN103513776A/zh
Application filed by RUI HUA HONG TECHONLOGY Co Ltd CHONGQING filed Critical RUI HUA HONG TECHONLOGY Co Ltd CHONGQING
Publication of WO2014090124A1 publication Critical patent/WO2014090124A1/fr
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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Classifications

    • GPHYSICS
    • G06COMPUTING OR CALCULATING; COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/02Input arrangements using manually operated switches, e.g. using keyboards or dials
    • G06F3/023Arrangements for converting discrete items of information into a coded form, e.g. arrangements for interpreting keyboard generated codes as alphanumeric codes, operand codes or instruction codes
    • GPHYSICS
    • G06COMPUTING OR CALCULATING; COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/02Input arrangements using manually operated switches, e.g. using keyboards or dials
    • G06F3/023Arrangements for converting discrete items of information into a coded form, e.g. arrangements for interpreting keyboard generated codes as alphanumeric codes, operand codes or instruction codes
    • G06F3/0233Character input methods
    • G06F3/0234Character input methods using switches operable in different directions

Definitions

  • the present invention relates to the field of keyboard input technology, and in particular to a key shift type keyboard and an input method for applying a key shift type keyboard. Background technique
  • the main input of the keyboard is uppercase and lowercase English characters, Arabic numerals, control symbols and so on.
  • the current keyboard refers to the typewriter keyboard invented in the 21st century, and the buttons are arranged on the keyboard substrate in a certain manner. Since the keyboard keys are arranged in a plane, it is necessary to arrange so many buttons, and the required area is also inevitably large, which leads to three problems that cannot be solved by the long-term existence of the keyboard:
  • the keyboard volume can not be reduced, it is not convenient to carry.
  • the present invention proposes a new key-shifting keyboard and an input method for applying a key-shifting keyboard. Summary of the invention
  • the technical problem to be solved by the present invention is to provide a key-shifting keyboard and an input method for applying a key-shifting keyboard, which are used for solving technical problems such as excessive button pressing, inconvenient operation, and need to insert a mouse for solving a common keyboard.
  • a key-shifting keyboard comprising a keyboard substrate, at least one moving plane and a plurality of buttons;
  • the moving plane is mounted on the keyboard substrate through the slide rails, and realizes different orientation movements under the constraint of the slide rails;
  • the plurality of buttons are fixedly mounted on the moving plane for moving the corresponding button to different positions through the moving plane, and pressing the button corresponds to outputting different characters.
  • the invention has the beneficial effects that the present invention provides a key-shifting character keyboard, which can not only input all the various letters and symbols required by the current keyboard, but also effectively reduce the number of keyboard keys and reduce the keyboard volume, especially When the main letters and symbols are input, the finger is basically fixed on the button and does not move, thereby improving the typing efficiency.
  • its design principle can be widely applied to automobiles, airplanes, and various home appliances and self-control equipment products, so that few keys can be arranged on a small control panel, but all characters can be input, even on a tablet.
  • the principle of the present invention is applied to the virtual keyboard, and the problem that the virtual keyboard covers most of the screen can also be solved.
  • the present invention can also be improved as follows.
  • the keyboard is provided with two moving planes symmetrically arranged on the left and right sides of the keyboard substrate; the two moving planes are fixedly mounted with five buttons distributed in a five-finger shape, and the keys are
  • the arrangement is adapted to the arrangement of the QWERTY keyboard for the input of all common letters, numbers, symbols and control characters in the QWERTY keyboard.
  • the palm rests are arranged on the two moving planes according to the position of the button and the shape of the palm.
  • a positioning post is mounted on each moving plane, and the positioning post is slidably positioned on the sliding rail for moving the moving plane to achieve different orientations under the constraint of the sliding rail.
  • keyboard substrate is further provided with display means for displaying input characters corresponding to the respective buttons when the moving plane is in different orientations.
  • the beneficial effects of adopting the above further solution are as follows: by distinguishing different positions of the button movement, a plurality of characters share one button, thereby causing the character buttons of the original QWERTY keyboard to be arranged in a line, thereby reducing the number of keyboard keys and reducing the number of keyboard keys. Keyboard volume.
  • the whole invention also takes into account the traditional keyboard input habits, which is conducive to popularization and application.
  • the palm rest By setting the palm rest, the fatigue problem of the traditional keyboard wrist suspension is solved, thereby improving the typing efficiency; the positioning column can make the hand clear I feel the different positions where the moving plane is located.
  • the display device is set to prompt for input characters, which solves the problem of inconvenience caused by the finger being always on the button and covering the button.
  • the sliding rail is a m-shaped sliding rail
  • the moving plane realizes upper, lower, left, right, left oblique upper, left oblique lower, right oblique upper and right under the constraint of the rice-shaped sliding rail
  • the movement of the eight directions is oblique.
  • the keyboard is provided with two moving planes symmetrically arranged on the left and right sides of the keyboard substrate, and the two moving planes are fixedly mounted with five buttons distributed in a five-finger shape, and each
  • the keyboard substrate is further provided with an enter key and a case switch button.
  • the moving plane is an octagonal shape, and the octagonal sides represent eight positions of upper, lower, left, right, left oblique upper, left oblique lower, right oblique upper, and right oblique, respectively, according to their positions, and
  • An octagonal groove for mounting the moving plane is disposed on the keyboard substrate, and a position recognition trip switch with a return spring is mounted on each of the eight sides of the octagonal groove.
  • the moving plane can make more characters share one button due to the movement of 8 directions, the number of buttons is reduced, and the traditional mouse function can be integrated on the keyboard, thereby realizing the mouse and The keyboard is integrated; the position recognition stroke switch and the return spring are used to control the movement of the hand in a small range and clearly feel the different positions of the moving plane.
  • mouse positioning photocells are mounted on any of the m-shaped slide rails, respectively, for identifying upper, lower, left, right, left oblique, left oblique, right oblique and upper in the mouse operation mode.
  • a keyboard/mouse switching button is further disposed on the keyboard substrate for switching between a keyboard operation mode and a mouse operation mode; any two buttons on the moving plane are respectively used as The left mouse button and the right mouse button are used to move the mouse to different positions through the moving plane, and press the corresponding button to display the mouse motion track in different directions.
  • the keyboard is provided with a mouse function, and the external device of the computer is further reduced, and the use is convenient.
  • the slide rail is a linear slide rail, and the moving plane realizes movement of the upper, middle and lower directions under the constraint of the linear slide rail.
  • an elastic return device is further disposed between the linear slide rail and the moving plane.
  • the beneficial effects of using the above further solution are as follows:
  • the design of the linear slide rail is more simple, which reduces the difficulty in keyboard making and operation.
  • the spring return device keeps the movement of the hand within a small range and clearly senses the different positions at which the plane of movement is located.
  • the technical solution of the present invention further includes an input method for applying a key-shifting keyboard, comprising the following steps:
  • the utility model comprises a keyboard substrate, at least one moving plane and a key shifting keyboard of a plurality of buttons, the moving plane is mounted on the keyboard substrate through the sliding rail, and the plurality of buttons are fixedly mounted on the moving plane;
  • the moving plane is pushed, so that the moving plane realizes upper, lower, left, right, left oblique, left oblique, and right oblique under the rice-shaped sliding rail constraint. And the movement of the eight directions in the right oblique direction.
  • the input method further includes the following steps:
  • buttons on the moving plane respectively as the left mouse button and the right mouse button;
  • the mouse operation mode when the mouse operation mode is pressed, the button that is the left mouse button or the right mouse button in the moving plane is pressed, and the mouse motion track in different directions is displayed corresponding to the position of the moving plane.
  • the slide rail is a linear slide rail, the moving plane is pushed, so that the moving plane realizes the movement of the upper, middle and three directions under the constraint of the linear slide rail.
  • the beneficial effects of the above technical solution are as follows:
  • the input method adopts the key-shifting character keyboard designed by the invention, and the finger is basically fixed on the button and does not move. By pushing the moving plane, all the various letters and symbols required by the current keyboard can be input. , typing efficiency is high.
  • the mouse input is combined to realize the integration of the mouse and the keyboard.
  • FIG. 1 is a schematic structural diagram of a key-shifting keyboard according to Embodiment 1 of the present invention.
  • FIG. 2 is a schematic diagram of key position setting of a key shifting keyboard according to Embodiment 1 of the present invention
  • FIG. 3 is a circuit schematic diagram of a key-shifting keyboard according to Embodiment 1 of the present invention.
  • FIG. 4 is a schematic structural diagram of a key-shifting keyboard according to Embodiment 2 of the present invention.
  • FIG. 5 is a circuit schematic diagram of a key-shifting keyboard according to Embodiment 2 of the present invention.
  • FIG. 6 is a schematic diagram of an input method of a key-shifting keyboard according to Embodiment 2 of the present invention.
  • FIG. 7 is a schematic diagram of the operation of the key-shifting keyboard according to the second embodiment of the present invention.
  • a key shifting keyboard is provided in the first embodiment, including a keyboard substrate 1 , at least one moving plane and a plurality of buttons; the moving plane is mounted on the keyboard substrate through the sliding rails, and is in the sliding rail Restricting the movement of different orientations; the plurality of keys are fixedly mounted on the moving plane for moving the corresponding button to different positions through the moving plane, and pressing the button Corresponding output different characters.
  • the slide rail of the first embodiment adopts a linear slide rail, and the moving plane realizes the movement of the upper, middle and lower directions under the constraint of the linear slide rail.
  • the input characters corresponding to the plurality of keys are changed according to the moving plane to different positions, and the specific changes are as follows: the moving plane can slide on the linear slide to a preset position, and when sliding to each preset position, The sliding varistor 2 (or multi-contact switch) driven by the moving plane sends a corresponding signal to the keyboard chip, and the signal triggered by the single button is also sent to the keyboard chip, and the keyboard chip combines two signals according to a preset program. The character to be entered.
  • the embodiment is provided with two moving planes symmetrically arranged on the left and right sides of the keyboard substrate 1, which are a left-hand moving plane 3-1 and a right-hand moving plane 3, respectively.
  • the corresponding linear slide rail is also divided into a left linear slide rail 4-1 and a right linear slide rail 4-2, and two positioning planes are respectively mounted with positioning pillars capable of positioning and sliding on the linear slide rails,
  • the positioning post is used to cause the moving plane to achieve different orientation movements under the constraints of the corresponding sliding rail.
  • the two moving planes are fixedly mounted with five buttons distributed in a five-finger shape.
  • the five buttons LK1 to LK5 of the left-hand moving plane are collectively referred to as a left-hand composite button, and the five buttons RK1 to RK5 of the right-hand moving plane are combined. It is called a right-hand composite button, and the arrangement of each button is adapted to the arrangement of the QWERTY keyboard.
  • the position of the corresponding button and the shape of the palm are respectively provided with a left palm rest 5-1 and a right palm rest 5-2.
  • each button moves with the movement of the moving plane, and there are three different positions, so that each button can be arranged to arrange three different characters, even if the three characters share a single button, the QWERTY keyboard is used.
  • the 3 rows of character buttons become 1 row, reducing the number of buttons.
  • a elastic returning device is arranged between the linear sliding rail and the moving plane, so that the user can sense the sliding direction of the moving plane, and it is easy to know the position where the moving plane is now, and also facilitate the user to leave the moving plane after the palm of the hand again. You can find the position when using this key-shifting keyboard.
  • the elastic returning device can be a returning spring 6 , that is, the middle spring 6 is mounted on the four corners of the left and right moving planes, and the back spring is connected to the keyboard substrate 1 so that the left hand moving plane and the right hand moving plane can be returned in time.
  • the left and right palms are respectively attached to the left palm rest 5-1 and the right palm rest 5-2, and the moving plane is moved up and down by the palm rest. Due to the pulling force of the returning spring 6, the left and right hands can clearly feel " The upper, middle and lower "three different positions, and the finger can basically be fixed on the button on each moving plane, the wrist has to rely on and not dangling.
  • the keyboard substrate of this embodiment is further provided with a display device corresponding to the position of the moving plane, which is a left-hand display device 7-1 and a right hand respectively.
  • the display device 7-2 is configured to prompt the user to distinguish different positions to which the moving plane slides.
  • the display device can mechanically or electronically prompt the user to move the position where the plane is now swiped, or send the position information to the display for display.
  • the face-shift keyboard also has a case, number, symbol switch button, and the composite button position arrangement is arranged. When the Caps Lock, Num Lock, Symbol Lock toggle buttons are off, the composite button is used for 26 lowercase English letters.
  • the first embodiment since the arrangement of the "QWERTY" keyboard keys has been formed, the first embodiment does not intend to change the original keyboard key arrangement, and the lowercase English alphabet key table formed by the position of the keys and the moving plane can be arranged as Table 1 shows:
  • the above three tables completely arrange all the letters, numbers and symbols on the existing keyboard, and can be input by the left and right hand composite buttons.
  • other control keys (such as arrow keys, enter keys, delete keys, cancel keys, etc.) are arranged on the keyboard and keyboard substrate. See Figure 2 for details.
  • the keyboard of the first embodiment has a total of 32 buttons, which can fully realize all the functions of the currently popular computer 101 keyboard, which can greatly reduce the keyboard area.
  • FIG. 3 is a circuit schematic diagram of the left-hand composite button of the keyboard, and the principle of the right-hand composite button circuit is the same. From the circuit diagram, it can be seen that when any left-hand composite button is pressed, because the left-hand moving plane position is different, the sliding varistor is driven to generate different resistances (or drive the multi-contact switch), and the corresponding signal is sent to the keyboard chip, a single button The signal triggered after being pressed is sent to the keyboard chip, and the keyboard chip combines two signals according to a preset program to determine the character to be input.
  • the second embodiment provides a key-shifting keyboard, comprising a keyboard substrate 1, at least one moving plane and a plurality of buttons; the moving plane is mounted on the keyboard substrate through the meter-shaped rail, and The movement of the upper, lower, left, right, left oblique, left oblique, right oblique, and right oblique directions is realized under the constraint of the m-shaped sliding rail; the plurality of keys are fixedly mounted on the moving plane , used to move the corresponding button to different positions through the moving plane, and press the button to output different characters.
  • the embodiment is provided with two moving planes symmetrically arranged on the left and right sides of the keyboard substrate, respectively being a left-hand moving plane 3-1 and a right-hand moving plane 3-2, corresponding to the meter-shaped sliding.
  • the rail is also divided into a left-mi-shaped slide rail 8-1 and a right-mi-shaped slide rail 8-2, and the left positioning post 9-1 capable of positioning and sliding on the m-shaped slide rail is respectively mounted on the two moving planes.
  • a right positioning post 9-2 the two positioning posts are used to make the moving plane achieve upper, lower, left, right, left oblique, left oblique, right oblique under the constraint of the corresponding m-shaped sliding rail And the movement of the eight directions in the right oblique direction.
  • the two moving planes are fixedly mounted with five buttons distributed in a five-finger shape.
  • the five buttons LK1 to LK5 of the left-hand moving plane are collectively referred to as a left-hand composite button, and the five buttons RK1 to RK5 of the right-hand moving plane are combined. It is called a right-hand composite button, and the position of the corresponding button and the shape of the palm are respectively provided with a left palm rest 5-1 and a right palm rest 5-2.
  • the structure of the left-hand moving plane and the right-hand moving plane are exactly the same as the working principle.
  • the following is a detailed description of the left-hand moving plane as an example.
  • the moving plane is an octagonal shape, and the octagonal sides respectively represent eight positions of upper, lower, left, right, left oblique upper, left oblique lower, right oblique upper, and right oblique lower according to their positions, and the keyboard
  • An octagonal groove for mounting the moving plane is disposed on the substrate, and a position recognition switch with a return spring is mounted on each of the eight sides of the octagonal groove, as shown in FIG. 4, LSI to LS8
  • the travel switch is identified for the eight left-hand positions of the left shift plane, and RS1 to RS8 are the eight right-hand position recognition travel switches of the right shift plane.
  • the keyboard substrate is further provided with a left-hand display device 7-1 and a right-hand display device 7-2, which are connected to the corresponding position recognition travel switch, Enter characters at the prompt button.
  • the position recognition travel switch Since the position recognition travel switch has its own return spring, it can play the role of the return spring.
  • the 8 position recognition travel switch is applied with no external force, so that the left hand movement plane is in the "medium” position. , you can enter 5 different characters separately.
  • the left hand When the left hand is pressed on the left palm rest
  • the left hand movement plane When pushing the left hand movement plane to move in any of eight directions of "up, down, left, right, left oblique, left oblique downward, right oblique upward, right oblique downward”, the left hand position recognition stroke switch in the corresponding direction has One must be connected.
  • the voltage input to the keyboard chip due to the position recognition of the stroke switch, the circuit changes, the voltage also changes, the keyboard circuit can output another difference. "The other 5 different characters in the position.
  • there are two commonly used fixed keys on the keyboard base namely the case switch button 10 (CapsLK button) and the enter button 11 (Enter button).
  • the keyboard substrate is further provided with a keyboard/mouse switching button 12 for switching between the keyboard operation mode and the mouse operation mode.
  • the working principle in the mouse operation mode is as follows: Eight pairs of mouse positioning photocells 13 are mounted on any of the above-mentioned m-shaped slide rails for respectively identifying the upper, lower, left, right, and left oblique directions in the mouse operation mode.
  • buttons are respectively selected as the left mouse button and the right mouse button, used to move the button through the moving plane to Different positions, and pressing the corresponding button, correspondingly display the mouse movement track in different directions; when the moving plane drives the corresponding positioning column to move to different orientations, the mouse positioning photocell in a certain direction is blocked, and the keyboard chip is pressed after pressing the button This position can be identified, giving the motion positioning of the mouse.
  • Figure 5 is a schematic diagram of the key-shifting keyboard.
  • the left-hand composite button and the right-hand composite button are connected in series with their identification resistors (Rl, R2 ⁇ R10), and then connected in parallel to form 10 different resistance values for identification. Which of the composite buttons is pressed.
  • the left-hand position recognition travel switch and the right-hand position recognition travel switch are also connected in series with the identification resistors (Rl l, R12, ... R28) and then connected in parallel, and 18 different resistance value determination trip switches are also triggered.
  • the sliding varistor or the multi-contact switch connected thereto is driven, and the corresponding information is sent to the keyboard chip, and the signal triggered by the single button is also sent to the keyboard chip, the keyboard
  • the chip pair determines the two sets of signals received according to a preset program, and can output different 90 characters correspondingly.
  • the left-hand display device also displays different input characters represented by the five left-hand composite buttons at the current position because the position recognition travel switch at different positions is turned on, which is convenient for input.
  • the keyboard chip recognizes the input signal as Mouse mode.
  • the mouse positioning photocell is blocked by the up, down, left and right orientations, and different identification resistors are respectively connected in series.
  • the keyboard chip recognizes the orientation through a specific Rom/Ram program, and inputs a computer and other devices for the mouse. Target positioning. At this time, press the RK2, RK3, and RK4 keys on the right hand movement plane.
  • the keyboard chip processes the left, middle, and right buttons of the mouse and inputs them to a computer or the like.
  • buttons arranged in the original plane are moved, and the buttons are pushed up and down and left and right by the palm or the fingers.
  • Each button has “up, down, down, left, right, left oblique, right oblique, left oblique, Right obliquely below”
  • 9 different characters you can arrange 9 different characters on one button, so that 9 characters can be combined and used one button. For example, when a button is in the "medium” position, the character “B” can be entered after pressing; when pushed to the "up” position, the character “A” can be entered after pressing; when pushed to "below” " When you press the position, you can enter the character "C” after pressing it.
  • buttons on the QWERTY keyboard can be turned into a row.
  • the characters are entered. It can be distinguished by different positions such as left, right, oblique, and oblique.
  • These 10 buttons can be used to input all common characters.
  • it is necessary to arrange a return spring on the moving plane, so that when the hand moves the moving plane, the button can be clearly perceived in different positions of "up, down, down" for convenient input.
  • the mouse operation mode since the moving plane has 8 orientations of motion, it is the same as the keyboard operation mode, and the left and right mouse movements of the mouse can be realized by the buttons.
  • the input method of the transmission is compressed.
  • the input method of the key-shifting keyboard is used in the embodiment, which includes the following steps: pushing the moving plane to make the moving plane Under the constraint of the m-shaped slide rail, the movement of the upper, lower, left, right, left oblique, left oblique, right oblique and right oblique directions is realized; when the corresponding button moves to different positions with the moving plane, Press this button to output different characters.
  • the keyboard/mouse switching key is pressed, and then the left mouse button and the right mouse button in the moving plane are pressed, and the mouse motion track corresponding to the different directions is displayed corresponding to the position of the moving plane. .
  • the case switch button CapsLK button
  • the enter button Enter button
  • the finger When the character is input by using the key-shifting keyboard described in the second embodiment, the finger is always on the button, and a palm rest is used to push the button to move, so that when the keyboard is input, the finger is not moved to find the button. Greatly improve character input efficiency and reduce hand fatigue. Because the finger is always on the button when inputting, it is easy to get used to it, and it can achieve "blind" without professional training. In addition, since the finger is always on the button and the button is covered, a display device is also provided for prompting the input of characters, one way is displayed on the computer screen by software, and the other is One way is through hardware display (such as liquid crystal display strip) on other parts of the keyboard surface.
  • hardware display such as liquid crystal display strip
  • the key shift keyboard arranges LK1, LK2, LK 3, LK4, LK5, RK RK2, RK 3, RK4, RK5 for a total of 10 mobile buttons (the right and left hands of the corresponding person) and two fixed buttons. CapsLK (case switching button), Ent er (Enter).
  • the typing keys of the present invention are arranged as follows:
  • the present invention does not intend to change the original keyboard key arrangement.
  • the basic idea is to arrange the basic English alphabet typing keys in "upper, middle, Under the "three main moving directions, the lowercase English alphabet key table formed by the position of the button and the moving plane can be arranged as shown in Table 4:
  • the above key arrangement completely completes all the letters, numbers and symbols on the existing keyboard, and can be input by 10 composite buttons.
  • the Enter key (Ent er) is a commonly used button, which is arranged in other positions on the keyboard.
  • the key-shifting keyboard has a total of 12 buttons, which fully realizes all the functions of the popular computer 01 keyboard, greatly reducing the keyboard area.

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Theoretical Computer Science (AREA)
  • Human Computer Interaction (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Input From Keyboards Or The Like (AREA)

Abstract

La présente invention concerne un clavier à touches mobiles et un procédé d'entrée appliquant le clavier à touches mobiles. Le clavier à touches mobiles comprend : un substrat de clavier, au moins un plan mobile et plusieurs touches. Le plan mobile est installé sur le substrat de clavier par utilisation d'un rail de coulissement, et se déplace dans différentes directions sous la contrainte du rail de coulissement. Les différentes touches sont installées de manière fixe sur le plan mobile et utilisées pour délivrer de manière correspondante différents caractères après que des touches correspondantes se déplacent vers différentes positions par utilisation du plan mobile et que les touches sont pressées. Au moyen du clavier de caractères à touches mobiles conçu par la présente invention, en raison du fait que les doigts sont essentiellement fixés sur les touches et ne bougent pas, par poussée du plan mobile, toutes les lettres et tous les symboles requis du clavier courant peuvent être entrés, et l'efficacité de frappe est élevée. En même temps, la combinaison d'une entrée de clavier et d'une entrée de souris met en œuvre l'intégration d'une souris et d'un clavier.
PCT/CN2013/088877 2012-12-12 2013-12-09 Clavier à touches mobiles et procédé d'entrée appliquant un clavier à touches mobiles Ceased WO2014090124A1 (fr)

Applications Claiming Priority (4)

Application Number Priority Date Filing Date Title
CN 201220682233 CN202975981U (zh) 2012-12-12 2012-12-12 一种面移式键盘
CN201220682233.0 2012-12-12
CN201310445461.5A CN103513776A (zh) 2013-09-26 2013-09-26 键移式字符输入键盘
CN201310445461.5 2013-09-26

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WO2014090124A1 true WO2014090124A1 (fr) 2014-06-19

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PCT/CN2013/088877 Ceased WO2014090124A1 (fr) 2012-12-12 2013-12-09 Clavier à touches mobiles et procédé d'entrée appliquant un clavier à touches mobiles

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WO (1) WO2014090124A1 (fr)

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CN1529222A (zh) * 2003-10-10 2004-09-15 陈保元 单手转动式多功能计算机键盘装置
CN1599382A (zh) * 2003-09-19 2005-03-23 严晓敏 滑移式键盘
CN1678975A (zh) * 2002-04-04 2005-10-05 艾科斯格米克斯私人有限公司 仿效qwerty型布局和键入的缩减键盘系统
CN101305335A (zh) * 2005-11-10 2008-11-12 吴谊镇 文字输入装置
CN202975981U (zh) * 2012-12-12 2013-06-05 胡华 一种面移式键盘

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1678975A (zh) * 2002-04-04 2005-10-05 艾科斯格米克斯私人有限公司 仿效qwerty型布局和键入的缩减键盘系统
CN1599382A (zh) * 2003-09-19 2005-03-23 严晓敏 滑移式键盘
CN1529222A (zh) * 2003-10-10 2004-09-15 陈保元 单手转动式多功能计算机键盘装置
CN101305335A (zh) * 2005-11-10 2008-11-12 吴谊镇 文字输入装置
CN202975981U (zh) * 2012-12-12 2013-06-05 胡华 一种面移式键盘

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