This invention relates generally to inputting information in mobile devices. More particularly, the invention relates to input means for use in a mobile device that overcomes the need to incorporate touch screen activation methods and apparatus.
Users have become accustomed to the conveniences that mobile devices such as global positioning system (GPS) receivers, mobile telephones, personal digital assistants (PDAs), eBook readers, and laptops, have to offer. Technology has made it possible to outfit the present generation of such devices with rollable displays.
Despite the advantages, rollable displays presently do not include touch input options because of the potential damage that may occur. Conventional displays, by contrast, offer a number of standard solutions for incorporating touch activation capabilities. One method utilized in conventional displays is the use of an additional touch activation sheet that is placed in front of the display. This is not a feasible solution for a rollable display because the touch activation sheet typically contains two substrates which does not allow the display to remain rollable.
One solution for incorporating touch activation capabilities without utilizing a touch activation sheet is found in the InkLink™ by Seiko which employs acoustical and optical receivers for determining the exact location of a stylus by relying on a time difference between the reception of optical and acoustical pulses. This is not a feasible solution for a rollable display because the additional electronics and corresponding electrical, optical or acoustical field over the display increase the power consumption of the device.
Therefore a need exists to provide input means in a rollable display which overcomes the disadvantages discussed above.
The present invention addresses the above-noted and other deficiencies of the prior art by providing, in a mobile display device, horizontal and vertical selection means for selecting an area to be activated on a viewing portion of the display device. The area to be activated on the viewing portion is defined by an independently selectable horizontal and vertical input region (x-y coordinates) on the viewing portion of the mobile display device.
The horizontal and vertical selection means of the invention advantageously overcome the need for a user to select vertical and horizontal regions (x-y coordinates) via touch screen activation methods and apparatus, as described above. A further advantage of the invention is that a user is not required to make direct contact with the viewing portion of the device to select the vertical and horizontal regions (x-y coordinates) which minimizes potential damage to the viewing portion.
The vertical selection means for selecting a vertical input region (y-coordinate) may comprise, in various embodiments, button selection means, slider control means and touch screen activation means. The selected vertical input region is then detected by vertical detection means.
In one embodiment, the vertical selection means for selecting a vertical input region on the viewing portion comprises a slider control on a front surface of a housing of the device for selecting a vertical input point on a device display.
In one embodiment, the vertical selection means for selecting a vertical position on the viewing portion comprises a non-transparent touch-activation embedded in a housing of the device for selecting a vertical input point on a device display.
In one embodiment, the vertical selection means for selecting a vertical input region on the viewing portion comprises a transparent touch-activation area pivotally coupled to a housing of the device for selecting a vertical input point on a device display.
In one embodiment, the vertical selection means for selecting a vertical input region on the viewing portion comprises a plurality of buttons on a front surface of a housing of the device for selecting a vertical input point on a device display.
In one embodiment, the vertical selection means for selecting a vertical input region on the viewing portion comprises a transparent touch-activation area embedded in a housing of the device for selecting a vertical input point on a device display.
The horizontal selection means for selecting a horizontal input region (x-coordinate) preferably comprises a user rolling out the device in the horizontal direction to a desired horizontal position which is then detected by horizontal detection means.
In one embodiment, the horizontal detection means comprises measuring the resistance of a variable resistance element that is attached to a rolling mechanism which stores the viewing portion (i.e., display) and calculating the horizontal input position based on the measured resistance.
In one embodiment, the horizontal detection means comprises horizontal sensing means for sensing the number of turns of the rolling mechanism and calculation means for calculating the user selected rolled out horizontal position based on the number of turns.
According to one aspect of the present invention, a method for selecting a horizontal and a vertical input position on a mobile device display comprises:
It is noted that there is no restriction on the order in which a user selects the vertical and horizontal input regions for activating an area of the viewing portion. In accordance with a preferred mode of operation, both the user selected horizontal and vertical input regions are processed substantially simultaneously by the device. In this manner, device power and CPU cycles may be optimized.
The foregoing and other features and advantages of the invention will become further apparent from the following detailed description of the presently preferred embodiment, read in conjunction with the accompanying drawings. The detailed description and drawings are merely illustrative of the invention rather than limiting, the scope of the invention being defined by the appended claims and equivalents thereof.
a is a view in the extended configuration of a rollable display device including a user interface on a second housing of the device, wherein the user interface comprises a plurality of buttons in accordance with one embodiment of the present invention;
b is a view of the rollable display device of
a is a view in a fully extended configuration of a rollable display device including a slider control for selecting a vertical input position, in accordance with one embodiment of the present invention;
b is a view of the rollable display device of
a is a view in a fully extended configuration of a rollable display device including a non-transparent user interface for selecting a vertical input position, in accordance with one embodiment of the present invention;
b is a view of the rollable display device of
a is a view in the fully extended configuration of a rollable display device including a user interface on a second housing of the device comprising a pivotally coupled touch-active transparent area, in accordance with one embodiment of the present invention;
b is a view of the rollable display device of
c is a view in the closed configuration of a rollable display device of
a is a view in the fully extended configuration of a rollable display device including a user interface on a second housing of the device comprising an integrated touch-active transparent area, in accordance with one embodiment of the present invention;
b is a view of the rollable display device of
c is a view in the closed configuration of a rollable display device of
Embodiments of the invention are discussed below with reference to
While the described embodiments describe the device 30 shown in
While the described embodiment describe the display 39 as a viewing portion 39, the display can be any flexible, partially flexible, rollable or partially rollable display able to display graphical information, such as an electorphoretic display, electronic paper, OLED displays, polyLED displays, LC displays, electrowetting displays, rotating ball displays, direct drive displays, segmented displays, passive-matrix displays or active-matrix displays or the like.
In one embodiment shown in
In accordance with the embodiments described herein, to select a horizontal input position or region on the viewing portion 39, a user rolls out the rollable display device 30 by extending the second housing 34 to a desired horizontal position (e.g., see “d1” in
In one embodiment, the horizontal detection means may comprise a meter, having a variable resistance that is attached to a rolling mechanism integrated into the second housing 34 of the rollable display device 30 for rolling up the viewing portion 39. The meter attached to the rolling mechanism makes instantaneous resistance measurements for determining the horizontal input position. A processor (not shown) in the device 30 computes the horizontal distance from the resistance measurement as one input. In one embodiment, the first housing 32 of the rollable display device 30 is a base housing that encloses electronic circuitry including the processor for performing, inter alia, the computing operations for determining the horizontal and vertical input positions.
In accordance with one embodiment, the horizontal detection means for detecting the horizontal position or region may be performed via optical detection means by optically sensing the number of rotations of the device 30 as it is rolled out to an extended or semi-extended horizontal position.
In yet another embodiment, the horizontal detection means for detecting the horizontal position or region may be performed via electronic detection means by electronically sensing the number of rotations of the device 30 as it is rolled out to an extended or semi-extended position. Optical and electronic sensing means for performing the described functions are well known in the art and will therefore not be further discussed.
In the embodiment illustrated in
In operation, for the exemplary embodiment illustrated in
Table I. illustrates, by way of example, an internally stored device table corresponding to the exemplary device 30 shown in
Another exemplary embodiment of a rollable display device 30 according to the present invention is illustrated in
Another exemplary embodiment of a rollable display device 30 according to the present invention is illustrated in
a schematically illustrates the device 30 in a completely extended (rolled out) configuration including the transparent touch activation area 47 shown embedded in the second housing 34.
b schematically illustrates the device 30 in a partially extended (rolled out) configuration including the transparent touch activation area 47.
In operation, horizontal and vertical input signals are generated by the device 30 in response to the user selecting a vertical input region or area via the touch activation area 47. That is, upon determining that a user has actively selected a vertical input area or region, a controller in the device 30 receives and processes a vertical input signal generated by the touch activation area and similarly processes a horizontal input signal generated by horizontal detection means, described above. The two signals are processed substantially simultaneously to activate a particular area of the viewing portion 39 defined by the combined user selected vertical and horizontal regions (i.e., x-y coordinates).
Another exemplary embodiment of a rollable display device 30 according to the present invention is illustrated in
a and 4b schematically illustrates the device 30 in a completely extended configuration including the transparent touch activation area 55 shown pivotally coupled to the second housing 38.
The pivotal coupling allows the touch screen activation area 55 to cover or uncover the right side of the viewing portion 39, as shown in
c schematically illustrates the device 30 including the transparent touch activation area 55 in a completely rolled in configuration with the touch screen activation area 55 is shown covering the entire exposed portion of the viewing portion 39. In this configuration, it would be advantageous to eliminate the need for opening the device 30 for selecting vertical coordinates on a portion of the viewing portion 39 while the device 30 is in the closed position.
Another exemplary embodiment of a rollable display device 30 according to the present invention is schematically illustrated in
Another exemplary embodiment of a rollable display device 30 according to the present invention is schematically illustrated in
The present embodiment may utilize vertical input selection means (not shown) in accordance with those described hereinabove. Specifically, the single housing 38 of the present embodiment may utilize one of a plurality of input buttons, a slider control, a non-transparent touch activation area, a transparent touch activation area pivotally coupled to the single housing 38 or a transparent touch activation area embedded within the single housing 38.
Although this invention has been described with reference to particular embodiments, it will be appreciated that many variations will be resorted to without departing from the spirit and scope of this invention as set forth in the appended claims. The scope of the invention is indicated in the appended claims, and all changes that come within the meaning and range of equivalents are intended to be embraced therein. The specification and drawings are accordingly to be regarded in an illustrative manner and are not intended to limit the scope of the appended claims.
In interpreting the appended claims, it should be understood that:
Filing Document | Filing Date | Country | Kind | 371c Date |
---|---|---|---|---|
PCT/NL2007/050281 | 6/14/2007 | WO | 00 | 9/28/2009 |
Number | Date | Country | |
---|---|---|---|
60804677 | Jun 2006 | US |