The present application relates generally to a method and apparatus for providing user input.
Many electronic devices on the market today such as mobile phones include embedded digital camera technology. A digital camera embedded on an electronic device along with image processing and gesture recognition technology may enable recognition of a user's hand or finger gestures. Providing alternative data input techniques utilizing digital cameras on electronic devices may provide for a more robust user interface.
Various aspects of examples of the invention are set out in the claims. According to a first aspect of the present invention, an apparatus comprises an elongated body portion having an interior chamber and a tapered end; a transparent dome housing accommodated by the tapered end; a light source housed within the transparent dome housing and capable of emitting light through the transparent dome housing to an external receiver; a battery housed within the interior chamber and electrically coupled with the light source; and a surface detection mechanism coupled with the transparent dome housing and electrically coupled with the light source and the battery, the surface detection mechanism capable of at least one of activating the light source when the apparatus contacts a surface and deactivating the light source when the apparatus does not contact the surface.
According to a second aspect of the present invention, an apparatus comprises a circular body portion having an interior chamber and capable of being worn on a finger of a user; a light source coupled with the circular body portion capable of emitting light to an external receiver; a battery housed within the interior chamber and electrically coupled with the light source; and a surface detection mechanism coupled with the circular body portion and electrically coupled with the light source and the battery, the surface detection mechanism capable of at least one of activating the light source when the apparatus contacts a surface and deactivating the light source when the apparatus does not contact the surface.
According to a third aspect of the present invention, an apparatus comprises a first and second circular body portions having at least one interior chamber and capable of being worn on two fingers of a user; a light source coupled with at least one of the first and second circular body portions capable of emitting light to an external receiver; a battery housed within the interior chamber and electrically coupled with the light source; and at least one surface detection mechanism coupled with at least one of the first and second circular body portions and electrically coupled with the light source and the battery, the at least one surface detection mechanism capable of at least one of activating the light source when the apparatus contacts a surface and deactivating the light source when the apparatus does not contact the surface.
According to a fourth aspect of the present invention, a method comprises activating a surface detection mechanism by making contact with a writing surface, the surface detection mechanism being coupled with a circular body portion and electrically coupled with a light source and a battery, the activation causing the light source to emit light.
For a more complete understanding of example embodiments of the present invention, reference is now made to the following descriptions taken in connection with the accompanying drawings in which:
a is a diagram of a tapered end of an apparatus having an elongated body portion according to an example embodiment of the invention;
b is a sectional diagram of a film switch according to an example embodiment of the invention;
An example embodiment of the present invention and its potential advantages are understood by referring to
In an embodiment, apparatus 110 comprises a body portion such as elongated body portion 118, a dome housing 112 and a surface detection mechanism such as surface detection mechanism 225 as shown in
In an embodiment, when apparatus 110 makes contact with a surface such as surface 114, surface detection mechanism 114 causes the light source to emit light. Light such as the light 116 as depicted in
In an embodiment, apparatus 110 operates as a computer mouse. In an embodiment, a computer mouse is a hand-operated electronic device that controls the coordinates of a cursor on a screen of another electronic device such as electronic device 120.
In an embodiment, apparatus 200 further comprises a light source 220 housed within the dome housing. The light source 220 may be of any type including but not limited to a light emitting diode, other electroluminescent materials such as liquid crystal, and/or the like. In an embodiment, the light source 220 is capable of emitting light through the transparent dome housing to an external receiver such as a digital camera. In an embodiment, the light source 220 is able to emit light of at least one color including but not limited to red, green and blue.
In an embodiment, apparatus 200 further comprises a battery such as battery 210 housed within interior chamber 213 and electrically coupled with light source 220. Battery 210 may have any capacity sufficient to power light source 220.
In an embodiment, apparatus 200 further comprises a surface detection mechanism such as surface detection mechanism 225 coupled with the transparent dome housing. In an embodiment, surface detection mechanism is electrically coupled with light source 220 and battery 210. In an embodiment, the surface detection mechanism is capable of activating the light source when the apparatus is in contact with a surface such as writing surface 114 of
In an embodiment, apparatus 200 further comprises a switch such as switch 235 coupled with elongated body portion 205. Switch 235 may be any type of switch including but not limited to a toggle switch. Further, in an embodiment, switch 235 is electrically coupled with battery 210, light source 220 and surface detection mechanism 225 with wires such as wires 213. However, any conducting material may be used. In an embodiment, switch 235 is configured to cause light source 220 to emit a particular color of light when switch 235 is in at least one position and apparatus 200 makes contact with a surface. In an embodiment, light source 220 is a multicolored light emitting diode configured to emit a different color for each position of switch 235 when apparatus 200 makes contact with a writing surface.
a is a diagram of a tapered end of an apparatus such as apparatus 300 having an elongated body portion 305 according to an example embodiment of the invention. In an embodiment, apparatus 300 comprises an elongated body portion 300 and a dome housing such as dome housing 315 coupled with a tapered end of an apparatus such as tapered end 330. In an embodiment, apparatus 300 further comprises a light source such as light source 320 housed within the dome housing. In an embodiment, light source 320 is a light emitting diode. However, light source 320 may be any type of light source, which is capable of emitting light through a transparent dome housing to a receiver such as digital camera 122 of electronic device 120 both of
In an embodiment, apparatus 300 further comprises a battery such as battery 337 for powering the light source. In an embodiment, light source 320 is electrically connected with a battery 337 and surface detection mechanism 325 with wires such as wires 332 and 333. However, any conducting material may connect light source 320 with battery 337 and surface detection mechanism 325.
In an embodiment, a surface detection mechanism is a switch such as a film switch. In an embodiment, surface detection mechanism 325 is film switch 350 of
In an embodiment, the surface detection mechanism is capable of activating the light source when an apparatus makes contact with a surface such as writing surface 114 of
In an embodiment, apparatus 300 is similar to apparatus 200 of
b is a sectional diagram of a film switch 350 according to an example embodiment of the invention. In an embodiment, a film switch such as film switch 350 comprises thin films such as thin films 360a and 360b, which include two opposite inner surfaces 362a and 362b. In an embodiment, the film switch includes at least one pair of touch portions, such as touch portions 352 and 354, which are disposed on the two opposite inner surfaces 362a and 362b of the thin films 360a and 360b. In an embodiment, film switch 350 further includes an insulating layer 365 disposed between the thin films 360a and 360b. In an embodiment, the insulating layer 365 has at least one hole 368 to accommodate the touching of each pair of touch portions. In an embodiment, touch portions 352 and 354 switch to a conducting state when receiving press action, such as when a user presses apparatus 200 of
Apparatus 400 further comprises a battery such as battery 435 for powering the light source. In an embodiment, battery 435 is housed in an interior chamber such as interior chamber 437 of apparatus 400. In an embodiment, light source 420 is electrically coupled with a battery 435 and surface detection mechanism 425 with wires such as wires 450. However, any conducting material may connect light source 420 with battery 435 and surface detection mechanism 425.
In an embodiment, a surface detection mechanism such as surface detection mechanism 425 is coupled with circular body portion 430. In an embodiment, a surface detection mechanism is a switch such as a film switch. In an embodiment, surface detection mechanism 425 is film switch 350 of
In an embodiment, apparatus 400 further comprises a switch such as switch 440 coupled with circular body portion 430. Switch 440 may be any type of switch including but not limited to a toggle switch. Further, in an embodiment, switch 440 is electrically coupled with battery 435, light source 420 and surface detection mechanism 425. In an embodiment, switch 440 is configured to cause light source 420 to emit a particular color of light when switch 440 is in a particular position and apparatus 400 makes contact with a writing surface. In an embodiment, light source 420 is a multicolored light emitting diode configured to emit a different color for each position of switch 440 when apparatus 400 makes contact with a writing surface.
In an embodiment, apparatus 500 further comprises a dome housing such as dome housing 515 coupled with a circular body portion such as circular body portion 530. In an embodiment, the dome housing may be coupled with any of the circular body portions. In an embodiment, apparatus 500 further comprises a light source such as light source 520 coupled with a circular body portion such as circular body portion 530 and housed within the dome housing. In an embodiment, light source 520 is a light emitting diode. However, light source 520 may be any type of light source, which is capable of emitting light to an external receiver such as digital camera 122 on electronic device 120 both of
Apparatus 500 further comprises a battery such as battery 535 for powering the light source. In an embodiment, battery 535 is housed in an interior chamber in either of circular body portions 530 or 531. In an embodiment, light source 520 is electrically coupled with battery 535 and at least one surface detection mechanism such as surface detection mechanisms 525 and 526 with wires such as wires 552. However, any conducting material may connect light source 520 with battery 535 and the at least one surface detection mechanism.
In an embodiment, each of the at least one surface detection mechanism such as surface detection mechanisms 525 and 526 are coupled with a circular body portion. According to
In an embodiment, surface detection mechanisms 525 and 526 are capable of activating the light source 520 when the apparatus is in contact with a surface such as writing surface 114 of
In an embodiment, apparatus 500 further comprises a switch such as switch 540 coupled with circular body portion 530 or 531. Switch 540 may be any type of switch including but not limited to a toggle switch. Further, in an embodiment, switch 540 is electrically coupled with battery 535, light source 520 and each surface detection mechanism. In an embodiment, switch 540 is configured to cause light source 520 to emit a particular color of light when switch 540 is in a particular position and surface detection mechanism 525 makes contact with a writing surface. Further, in an embodiment, switch 540 is configured to cause light source 520 to emit a particular color of light when switch 540 is in a particular position and surface detection mechanism 526 makes contact with a writing surface. In an embodiment, light source 520 is a multicolored light emitting diode configured to emit a different color of light for each position of switch 540.
In an embodiment, when a surface is detected by surface detection mechanism 610, surface detection mechanism 610 causes light source 605 to emit light in a particular color corresponding to a position of switch 612. Further, in an embodiment, when a surface is detected by surface detection mechanism 615, surface detection mechanism 615 causes light source 605 to emit light in a particular color corresponding to a position of switch 612. In an embodiment, apparatus 600 is apparatus 500.
Light such as the light 116 as depicted in
In an embodiment, apparatus 800 further comprises a colorable member such as colorable member 810 capable of displaying at least one color including but not limited to red, blue and green in response to a surface detection mechanism being activated. In an embodiment, colorable member 810 is a colorable film and/or the like. In an embodiment, colorable member 810 covers a portion of the finger tip as shown in
In an embodiment, image processing technology embedded within electronic device 120 of
In an embodiment, apparatus 900 further comprises a surface detection mechanism such as surface detection mechanism 925. In an embodiment, surface detection mechanism 925 is surface detection mechanism 350 of
In an embodiment, colored material 930 is housed in at least one of the base 920 and the neck 915. In an embodiment, apparatus 900 further comprises a material transferring component (not shown) embedded within base 920.
In an embodiment, the material transferring component is an injector powered by a power source such as a battery. In an embodiment, the material transferring component is coupled with a battery such as battery 337 of
In another embodiment, the material transfer component is a mechanical injector, which is capable of transferring colored material 930 using a force from a button press such as when a user activates surface detection mechanism 925. For example, if surface detection mechanism 925 is a button, a force of the button press provided by a user may push colored material 930 into dome housing 910. Further, for example, a release of the button may cause colored material 930 to be suctioned back into at least one of the base 920 and neck 915.
In an embodiment, the material transferring component is capable of transferring colored material 930 from at least one of the neck 915 and the base 920 to the dome housing 910 when surface detection mechanism is activated. In an embodiment, if a surface detection mechanism is a button, the surface detection mechanism is activated when the button is pressed by a user. Further, the material transferring component is capable of transferring colored material 930 from the dome housing 910 to at least one of the neck and the base 920 when surface detection mechanism is deactivated. In an embodiment, if a surface detection mechanism is a button, the surface detection mechanism is deactivated when the button released by a user.
In an embodiment, a surface detection mechanism is activated when a surface detection mechanism contacts a surface such as surface 114 of
In an embodiment, image processing technology embedded within electronic device 120 of
In an embodiment, apparatus 900 has an elongated configuration such as apparatus 200 of
Without in any way limiting the scope, interpretation, or application of the claims appearing below, a technical effect of one or more of the example embodiments disclosed herein is to provide a stable and reliable tracking device such as apparatus 400 of
Embodiments of the present invention may be implemented in software, hardware, application logic or a combination of software, hardware and application logic. The software, application logic and/or hardware may reside on at least one of an apparatus such as apparatus 400 of
If desired, the different functions discussed herein may be performed in a different order and/or concurrently with each other. Furthermore, if desired, one or more of the above-described functions may be optional or may be combined.
Although various aspects of the invention are set out in the independent claims, other aspects of the invention comprise other combinations of features from the described embodiments and/or the dependent claims with the features of the independent claims, and not solely the combinations explicitly set out in the claims.
It is also noted herein that while the above describes example embodiments of the invention, these descriptions should not be viewed in a limiting sense. Rather, there are several variations and modifications which may be made without departing from the scope of the present invention as defined in the appended claims.
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/CN10/00613 | 4/30/2010 | WO | 00 | 10/26/2012 |