Abstract:
An interactive display projection system, includes a pointing device which determines a location on the projected display indicated by the pointing device using a combination of a location signal in the display captured by the pointing device and optical mouse circuitry to determine motion of the pointing device when the pointing device is close to the projected display. In another embodiment, the pointing device also includes an inertial sensor and associated circuitry which detects linear accelerations and rotational rates to determine motion and orientation of the pointing device, which are also used to determine the location on the projected display indicated by the pointing device.
Abstract:
In described examples, a first TIR or RTIR element is arranged to introduce at least red light to a first spatial light modulator for modulation thereof, and a second TIR or RTIR element is arranged to introduce at least green light to a second spatial light modulator for modulation thereof. At least one of the first and second TIR or RTIR elements is arranged to introduce blue light to at least one of the first and second spatial light modulators, respectively, for modulation thereof: time-sequentially apart from the first spatial light modulator's modulation of the introduced red light, to an extent the blue light is so introduced to the first spatial light modulator; and time-sequentially apart from the second spatial light modulator's modulation of the introduced green light, to an extent the blue light is so introduced to the second spatial light modulator.
Abstract:
An interactive display projection system, includes a pointing device which determines a location on the projected display indicated by the pointing device using a combination of a location signal in the display captured by the pointing device and optical mouse circuitry to determine motion of the pointing device when the pointing device is close to the projected display. In another embodiment, the pointing device also includes an inertial sensor and associated circuitry which detects linear accelerations and rotational rates to determine motion and orientation of the pointing device, which are also used to determine the location on the projected display indicated by the pointing device.
Abstract:
A solid state illumination system is provided for image projection. Red, green and blue light is generated using a blue laser light source and phosphor emissions. The red, green and blue light is passed by TIR or TRIR elements of red, green and blue light channels of an X-cube prism structure for separate modulation by different spatial light modulators. The modulated red, green and blue light is passed by the TIR or TRIR elements into the X-cube and combined into a combined modulated RGB image forming light stream for image formation via projection optics onto a target imaging surface.
Abstract:
A system includes an LED assembly including a first LED, the first LED configured to produce first light having a first color, a second LED adjacent the first quadrant, the second LED configured to produce second light having a second color, a third LED adjacent the second quadrant, the third LED configured to produce third light having a third color, and a fourth LED adjacent the third quadrant and the first quadrant, the fourth LED configured to produce fourth light having the third color. The system includes a reflective element having a first surface and a second surface, the first surface configured to reflect the first light towards a homogenizing element and to reflect the second light towards the homogenizing element, and the second surface configured to reflect the third light towards the homogenizing element and to reflect the fourth towards the homogenizing element.
Abstract:
In described examples, a projector includes a light source to produce first light of a first color. The projector also includes a phosphor to selectively receive the first light and produce second light of a second color in response to the first light. The projector also includes a dichroic mirror to pass a portion of the second light to produce a third light of a third color. The dichroic mirror reflects a portion of the second light as fourth light of a fourth color.
Abstract:
In described examples, a projector includes a light source to produce first light of a first color. The projector also includes a phosphor to selectively receive the first light and produce second light of a second color in response to the first light. The projector also includes a dichroic mirror to pass a portion of the second light to produce a third light of a third color. The dichroic mirror reflects a portion of the second light as fourth light of a fourth color.
Abstract:
In described examples, a first TIR or RTIR element is arranged to introduce at least red light to a first spatial light modulator for modulation thereof, and a second TIR or RTIR element is arranged to introduce at least green light to a second spatial light modulator for modulation thereof. At least one of the first and second TIR or RTIR elements is arranged to introduce blue light to at least one of the first and second spatial light modulators, respectively, for modulation thereof: time-sequentially apart from the first spatial light modulator's modulation of the introduced red light, to an extent the blue light is so introduced to the first spatial light modulator; and time-sequentially apart from the second spatial light modulator's modulation of the introduced green light, to an extent the blue light is so introduced to the second spatial light modulator.
Abstract:
An imaging system using a spatial light modulator has first color laser light directed by a dichroic element to a rotating member. The rotating member includes phosphor segments that respond to illumination by the first color light to emit second and third color light along a first path to the dichroic element for output, and a light transmitting segment that passes the first color through the rotating member along a second path to the dichroic element for output. In a 3D imaging mode, the first color laser light includes light of two wavelengths, and the phosphor segments include segments that emit second and third color light each of two wavelengths. The output light is directed to a second rotating member that selectively transmits one wavelength of each color while blocking the other wavelength of each color.
Abstract:
An imaging system using a spatial light modulator has first color laser light directed by a dichroic element to a rotating member. The rotating member includes phosphor segments that respond to illumination by the first color light to emit second and third color light along a first path to the dichroic element for output, and a light transmitting segment that passes the first color through the rotating member along a second path to the dichroic element for output. In a 3D imaging mode, the first color laser light includes light of two wavelengths, and the phosphor segments include segments that emit second and third color light each of two wavelengths. The output light is directed to a second rotating member that selectively transmit one wavelength of each color while blocking the other wavelength of each color.