The present invention relates to a multidirectional expansion cursor partitioned by radial-typed selection keys and a method of implementing the same. And more particularly, the present invention relates to a multidirectional expansion cursor having an excellent user immediacy and a user friendly environment in which a user can quickly, conveniently, and accurately select a desired specific object by only closely placing a cursor on the specific object without effort of exactly placing the cursor on the specific object displayed on a display screen and then indicate desired contents or execute the object, and a method of implementing the same.
With a development of an OS environment from DOS to Window, a user interface on a display screen has emerged as a significantly important element. That is, an environment is generally used in which a use can easily grasp details of corresponding contents through arrangements of objects such as various kinds and types of contents in an unspecific location of the display screen, and also easily access the corresponding contents by using a mouse.
Further, a user interface, which can be visually displayed and conveniently selected, is more important in a portable terminal having the relatively small number of keys of a keypad in comparison with a PC or a notebook.
However, in order to select specific contents displayed on a display screen in a current electronic device, a user should perform an operation while exactly placing a mouse cursor, an optical sensor typed pointer, or an input tool such as a joystick or a finger on the contents or an object. However, for example, when the user desires to move a cursor, it is difficult to precisely move the cursor. Further, when the user moves the cursor by using his/her finger, it is difficult to accurately select only an intended content in a case where a plurality of contents are closely positioned to each other since a size of an indication such as an icon indicating a content is smaller than a size of a person's finger. Particularly, smooth selection and control are not easy in a mobile device in comparison with a selection and a control performed by using a mouse in a game, a web, and an office work. That is, it is difficult to precisely control a mouse pointer and it is very difficult to accurately select and control a small button and a line displayed on a screen by using a finger and control. Accordingly, a user should repeatedly perform the above different procedures many times due to a wrong selection, so that there are problems in that fatigue of the user is increased and it is difficult to quickly and accurately make a control in comparison with a control performed by using a mouse of a desktop PC in a game, a web, and an office work.
Further, a conventional cursor functions as a tool simply for selecting contents. That is, the cursor is used as a tool by which a user move the cursor to place it on contents and the user can select the specific contents so that intention of the user may be identified. Accordingly, the cursor is used only for a selection purpose except a case where an additional function is selected by using left and right buttons of a mouse. Further, even in a case where the additional function is selected by using left and right buttons of the mouse, the user should additionally perform one selection procedure after selecting one button from left and right buttons. As a result, a quick and accurate input is highly limited.
The present invention has been made to provide a multidirectional expansion cursor and a method of implementing the multidirectional expansion cursor which has excellent user immediacy and can quickly and accurately select an intended object among one or more objects only by closely placing the cursor on a specific object even in a limited size of a screen.
The present invention has also been made to provide a multidirectional expansion cursor and a method of implementing the multidirectional expansion cursor which can performs various functional instructions in a display screen through an input display unit connected to the cursor.
The present invention has also been made to provide a multidirectional expansion cursor and a method of implementing the multidirectional expansion cursor which can arrange a plurality of randomly arranged objects to identify them and, after an input of a search word, arrange objects corresponding to the search word according to an intended standard to use the objects.
The present invention has also been made to provide a multidirectional expansion cursor and a method of implementing the multidirectional expansion cursor which can 3-dimensionally arrange a lot of objects to easily and quickly identify contents of the objects.
In order to achieve the foregoing and/or other aspects of the present invention, there is provided a method of implementing a multidirectional expansion cursor, the method including: generating an expansion cursor displayed on a display screen to be moved according to an input control of a user, and partitioned by a plurality of selection keys; making one or more objects selectable on the display screen correspond to the selection keys and displaying them on the display screen; and selecting the selection key corresponding to an intended object in order to execute the intended object among the one or more objects.
There is provided a multidirectional expansion cursor, which is displayed on a display screen and can be moved according to an input control of a user, the multidirectional expansion cursor including: a plurality of selection keys, wherein the selection keys are displayed on the display screen such that the selection keys correspond to one or more object selectable on the display screen, and, when an object corresponding to an intended object among the one or more objects is selected by an input control of a user, the intended object is executed.
According to the present invention, an intended object among one or more objects is quickly and accurately selected only by closely placing the cursor on a specific object. As a result, there is an effect in that a quick and accurate selection operation may be performed without accurately placing the cursor on the intended object.
Further, according to the present invention, various functional instructions may be performed in a display screen through a basic cursor or an expansion cursor, so that there is an advantage in that it is possible to easily perform inputs of data including a text and inputs of various instructions through a close selection even in a narrow input space.
Moreover, according to the present invention, there is an effect in that a user arranges a plurality of randomly disposed objects to identify them, and, after an input of a search word, arranges objects corresponding to the search word according to an intended standard to use the objects, so that the user can easily select a desired object.
Furthermore, according to the present invention, there is an advantage in that a user 3-dimensionally arranges a lot of objects, so that the user can easily and quickly identify contents of the objects.
The objects, features and advantages of the present invention will be more apparent from the following detailed description in conjunction with the accompanying drawings, in which:
Hereinafter, the embodiment of the present invention will be described in detail with reference to the accompanying drawings so that those skilled in the art may easily perform the present invention. In the drawings, in order to clearly describe the present invention, parts that are not related to description are omitted and similar elements are denoted by similar reference numerals throughout the specification.
Throughout the specification, when an element is referred to as “being included”, unless there is anything particularly written to the contrary, it means that other elements are not excluded but may be further included. In addition, the terms of ‘. . . module’ and ‘. . . unit’ written in the specification mean units for processing at least one function or operation and may be realized by hardware, software, or a combination of hardware and software.
First, the electronic device implemented by the present invention is enough if it includes a display screen 10, and an input means 20 for allowing a plurality of inputs for a plurality of selections and a movement of a basic cursor 31 operated on the display screen 10. That is, the electronic device may be a portable terminal having a type shown in
The multidirectional expansion cursor according to the present invention may be displayed on the display screen 10 to move according to an input control of a user and has a plurality of selection keys 33. The selection keys 33 are displayed on the display screen 10 such that the selection keys correspond to one or more objects 40 selectable on the display screen 10. When the selection key 33 corresponding to an intended object 40 among the one or more objects is selected by an input control of a user, the intended object 40 is executed.
A method according to the present invention is initiated at a step of generating the basic cursor 31 displayed on the display screen 10 to move, and an expansion cursor 30, which is connected to the basic cursor 31 to move together with the basic cursor 31 and includes the plurality of selection keys 33: 33a and 33b. Here, the “expansion cursor” is not a cursor, which is generally used, like the basic cursor, and refers to a type of a cursor, which can be expanded according to a predetermined condition such as a system environment setting of a user and make each of plural objects displayed on the screen correspond to the selection key.
Further, in embodiments of the present invention, there is an example in which the expansion cursor includes the basic cursor. However, the basic cursor may be omitted according to a deactivation option selection of a user, and the basic cursor may be located in the center of the expansion cursors (see
As described above, the basic cursor 31 performs a similar operation and function as the cursor 31 commonly used. However, an end of the basic cursor 31 is integratively connected to the expansion cursor 30 as shown in
In addition, the expansion cursor 30 is formed in a circular shape as shown
Meanwhile, one or more objects may be displayed on the display screen 10 (see
Furthermore, the object may be a graphic indication object such as various types and sizes of windows displayed on the display screen.
Next, when the expansion cursor 30 shown in
Further, when the objects 40 adjacent to the expansion cursor 30 is distributed as much as the same number of selection keys 33, each selection key 33 of the expansion cursor 30 may be connected to each object 40.
In addition, the selection key 33 of the expansion cursor 30 shown in
As shown in
Meanwhile, when the selection keys 33 and the objects 40 are connected to each other in the expansion cursor 30, the basic cursor 31 is omitted from a first state shown in
As described above, when the object 40 and the selection key 33 displayed on the display screen 10 are connected to each other, a user can access and identify details corresponding to the object by selecting the selection key 33 connected to the specific object 40. For example, as shown in
Meanwhile, when a game is executed, if the expansion cursor 30 is moved within a predetermined distance from the character 41, the selection key 33 of the expansion cursor 30 is expanded and the selection key 33 is connected to the character 41 within a predetermined distance. More specifically, as shown in
Further, various instructions for the character which may be performed by a direct selection of a shortcut key or a general cursor may be indicated in neighbor selection keys 33a. In
At this time, a movement of the expansion cursor 30 and a selection of the selection keys 33 are performed by an input means 20. That is, the input means 20 may include a general input means such as a keyboard and a keypad, and may include an input device (hereinafter, referred to as an “input device 1”), which is a filed invention (patent application no. 2007-0045255) in advance by the same inventor as this application. The input device 1 may be provided integratively with a portable terminal as shown in
Further, the input device 1 includes an input unit 21, a first detector (not shown), a second detector (not shown), and a controller (not shown). More specifically, the input unit 21 is arranged adjacent to the display screen 10, a first direction input and a second direction input are configured to be performed independently or simultaneously. The first direction input allows a movement to one among a plurality of instruction locations D1, D2, D3 . . . radially spaced apart from each other based on a reference location S, and the second direction input refers to pressing one of the above instruction locations.
Further, the first detector is configured to detect the first direction input, and the second detector is configured to detect the second direction input.
In addition, when the first direction input is performed, the controller extracts first data corresponding to the first direction input of the instruction locations from a memory (not shown) and then inputs the data. When the second direction input is performed, the controller extracts second data corresponding to the second direction input of the instruction locations from a memory (not shown) and then inputs the data.
At this time, the plurality of instruction locations are configured to correspond to the plurality of selection keys 33 and have numbers corresponding to the number of a plurality of selection keys 33. When the first direction input or the second direction input for the input unit is performed, the controller determines that the selection key 33 corresponding to an instruction location where the direction input is performed is selected, and performs a selection instruction of an object 40 corresponding to the selection key 33.
Further, since the first direction input and the second direction input are independently or simultaneously performed for the plurality of instruction locations, if only one of the first direction input and the second direction input is performed in order to select a selection key 33 corresponding to each of the instruction locations, it may be processed as if the selection key 33 has been selected.
Alternatively, a selection for the selection key 33 is performed by only the second direction input, and the first direction input may be used for a movement of the expansion cursor 30.
Further, when the selection key 33 and the object 40 are not connected to each other, the second direction input may be used to input separate data. For example, when the expansion cursor 30 is in a state as shown in
Further, alphabets or Korean alphabets are arranged in the selection keys 33 and a character input is normally performed by the first direction input and the second direction input. The first direction input and the second direction input may be used for a movement of the expansion cursor 30 and a selection of the selection keys 33 by selecting the central selection key 33 or a separate key.
The input device 1 may include a central input unit (not shown) for selecting the central selection key 33 on the input unit.
Meanwhile, as shown in
More specifically, the input device 2 includes a detection input unit 23 for detecting the first direction input and the second direction input, and a controller for extracting first data corresponding to the first direction input of the instruction location from the memory and inputting the data when the first direction input is performed and extracting the second data corresponding to the second direction input of the instruction location from the memory and inputting the data when the second direction input is performed.
The first direction input contactly moves to one of a plurality of instruction locations radially spaced apart from each other based on the reference location and is arranged on the display screen 10, and the second direction input pressurizes one of the instruction locations are independently performed.
At this time, the plurality of instruction locations are generated to correspond to the plurality of selection keys 33 and have numbers corresponding to the number of a plurality of selection keys 33. When the first direction input and the second direction input are performed by the detection input unit 23, the controller determines that the selection key 33 corresponding to an instruction location where the direction input is performed is selected, and performs a selection instruction of an object 40 corresponding to the selection key 33.
Further, in the input device 2, since the reference location is configured to correspond to a location corresponding to the selection key 33 disposed in the center of the selection keys 33, the reference location may be changed according to a location of the expansion cursor 30.
Furthermore, the detection input unit 23 may be configured to have only a touch screen, or may be used together with a touch screen such as a pressure sensor and a tactile sensor for increasing the detection performance for a movement and pressurization of a finger.
In addition, when a user moves his/her finger on the display screen such as a touch screen while touching the expansion cursor 30 shown in
Further, usage examples of the aforementioned input device 1 may be applied to other inputs through the input device 2 without any change.
Next, a second embodiment of the present invention will be described. In this embodiment, the same reference numeral will be used for the same element as the first embodiment of the present invention.
As shown in
Further, in this embodiment, the expansion cursor 30 is positioned at a location on the map, and each selection key 33 is arranged for buildings adjacent to the location. At this time, in this embodiment, the selection key 33 of the expansion cursor 30 is not connected to the object, which is indicated as the building 42, and the selection keys 33a and 33b are indicated such that the selection keys are overlapped with the building 42 as shown in
Further, a region indication unit 35 is indicated in surroundings of the selection keys 33a and 33b arranged on the map in order to enable the user to accurately recognize the selection keys on the map. That has the same principle in which the selection key and the object are recognized by the connection line.
Meanwhile, this embodiment is used for navigation. That is, when a vehicle 43 is driven, the expansion cursor 30 may be arranged based on a location of the vehicle 43 in the navigation displaying a map on which the location of the vehicle is indicated. At this time, when the vehicle is driven on a road where there is no building, the expansion cursor is arranged on the vehicle. When the vehicle is driven on a road where there is a building, the expansion cursor is expanded and the selection key is arranged on the building.
For example, when the vehicle 43 moves on the map, the selection keys 33a and 33b are arranged on the building 42 positioned within a distance set based on the vehicle 43 as shown in
At this time, the selection keys 33a and 33b with various shapes may be arranged on the building, but it is preferable that the selection keys are arranged in a form by which the user can easily recognize a corresponding relation with the input means. For example, when there are 9 selection keys positioned at the center and the surroundings of the expansion cursor, the selection keys may be arranged on each of the buildings in a matrix form. Accordingly, the user can instinctively grasp that the building positioned at the center corresponds to the central selection key 33b, so that the user can identify information on the building 42 by selecting the central selection key 33b.
Meanwhile, the user desires to identify information on a building positioned within more than a set distance from the current vehicle 43, the user move the expansion cursor 30 on the map by using the input means (in a direction indicated by an arrow in
As described above, the expansion cursor according to this embodiment of the present invention is used to identify information on the building displayed on the map, so that the information on the intended building may be more easily and quickly obtained.
Next, a modification example from this embodiment will be described.
As shown in
Further, a current location of the user is indicated on the map, and the location is determined by an IP address of the user or an input of the user.
At this time, the expansion cursor 30 is basically positioned on the location of the user and the selection keys 33a and 33b are arranged for people positioned within a set distance. In addition, as shown in
Accordingly, when the user desires to identify information on specific people among people having the arranged selection keys 33a and 33b, the user can select the selection keys corresponding to the people. Then, the information on the people may be indicated in a location of the map or an opened separate window.
Further, in an example shown in
Next, a third embodiment of the present invention will be described. In this embodiment, the same reference numeral will be used for the same element as the first embodiment of the present invention.
In this embodiment, when a plurality of objects are randomly arranged on the display screen, if the expansion cursor 30 approaches the objects, the objects are rearranged in a preset form and displayed on the screen.
At this time, when there are 9 selection keys 33 and 10 objects or more positioned within a set distance from the expansion cursor 30, the objects are selected according to an arrangement standard such as an order of a selection frequency, a changed date, or an alphabet (or Korean alphabet), and the selection keys are arranged on the selected object according to the above method.
Further, the objects may be arranged in a matrix form, and the set form refers to the matrix form. Accordingly, each selection key of the expansion cursor is arranged on each object arranged in the matrix form, so that the user can easily select the specific object.
In this embodiment, a plurality of dynamic images 45 including various images are arranged on the display screen 10 as the object, and parts of the dynamic images 45 are arranged in the matrix form according to an movement of the expansion cursor 30 and the selection keys 33a and 33b are arranged on the dynamic images 45.
Further, in this embodiment, it may be configured that only a dynamic image corresponding to a specific keyword among various dynamic images 45 arranged on the display screen 10 is extracted. That is, as shown in
When the user moves the expansion cursor 30 adjacent to the plurality of dynamic images 45, a dynamic image related to a “game” among the dynamic images is arranged in the matrix form and the selection keys 33a and 33b are arranged for the dynamic images as shown in
Next, a modification example from this embodiment will be described.
As shown in
Accordingly, the user can select a specific dynamic image corresponding to the selection keys arranged on the top 2-dimensional plane through an input control for the input means, and also select a specific dynamic image among dynamic images arranged on the selection key by activating the selection key on a bottom 2-dimensional plane,
Here, the activation of the selection key is implemented as a type in which a 2-dimensional plane of another layer is relatively pale in comparison with the 2-dimensional plane including the selection key. Alternatively, the activation may be implemented as a type in which the 2-dimensional plane including the selection key is enlarged or moved to an empty space of the display screen and then displayed.
Further, an arrow shown in
In addition, when the object is a dynamic image, a representative image for the dynamic image is indicated as the object.
Moreover, it is apparent to those skilled in the art that the present invention may be applied to other general office applications to be executed and may be easily operated as shown in an example of
Next, a fourth embodiment of the present invention will be described. In this embodiment, the same reference numeral will be used for the same element as the aforementioned embodiments of the present invention.
The input unit 110 refers to an input means for receiving an input of various information or instructions from a user. The input unit 110 moves the expansion cursor such as a mouse pointer or receives an input of an execution instruction from the user to provide the input to controller 150. A keyboard, a directional key, a rotational key, a touch key, a touch screen, a mouse, a keypad of a mobile terminal, and a jog dial as well as the aforementioned input device 1 and input device 2 may be used as the input unit 110.
The output unit 120 outputs general information required for operating the user terminal 100 to a screen, or executes performed results generated by processing instruction input by the user through the controller 150. For example, that corresponds to a sound output, an image output, and an execution or an activation of applications. When a certain application (APP) is executed according to an input of the user, the controller 150 processes the application and the corresponding application may be operated. Particularly, when the user inputs an instruction for activating an expansion cursor module 130 by using the input means, the controller 150 processes the instruction and the expansion cursor 130 is executed.
Further, the display unit 160 displays a performed result generated by operating the expansion cursor module through the controller 150 in order to enable the user to identify the result. A picture tube, LCD, LED, and plasma typed monitor or TV, or a liquid crystal display for a user interface and outputs of various execution instructions of the user may be used as the display unit 160. Further, when an example of the display unit 160 is a touch screen, the touch screen performs a display function of various information pieces and may be used as the input unit.
The storage unit 140 stores a data file generated according to an operating system, a system program, and various applications (APP) required for an operation of the user terminal 100, and an input instruction execution result of the user. Particularly, the storage unit 140 includes the expansion cursor module 130 according to embodiments of the present invention and stores various data and programs required for an operation of the expansion cursor.
The expansion cursor module 130 may be implemented through a program for implementing a function corresponding to the embodiments in the user terminal or through a recording medium in which the program is recorded, and stores and manages various information pieces and data files required for an execution of the multidirectional expansion cursor.
The controller 150 includes an operation module such as a microprocessor, and controls the elements to handle general operations of the user terminal 100. Particularly, the controller 150 controls the expansion cursor module 130 to enable the multidirectional expansion cursor according to embodiments of the present invention to be smoothly operated.
The present invention may be applied to various user terminals. Particularly, when the present invention is applied to a mobile environment, a user can quickly and accurately select an intended object among one or more objects by closely placing a cursor on a specific object even on a screen having a limited size.
While this invention has been particularly shown and described with reference to preferred embodiments thereof, these embodiments are provided so that this disclosure will be thorough and complete, and will fully convey the concept of the invention to those skilled in the art. It will be understood by those skilled in the art that various changes in form and details may be made therein without departing from the spirit and scope of the invention as defined by the appended claims.
Number | Date | Country | Kind |
---|---|---|---|
10-2009-0035360 | Apr 2009 | KR | national |
10-2009-0043250 | May 2009 | KR | national |
10-2009-0095409 | Oct 2009 | KR | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
---|---|---|---|---|
PCT/KR10/02562 | 4/23/2010 | WO | 00 | 10/19/2011 |