Abstract:
A projection processing device comprises a processor control unit that acquires, in response to acceptance of input information, projection position information associated with the input information, and instructs a projector to emit light or project an image enabling a user to identify a position based on the acquired projection position information.
Abstract:
A projector is provided which includes a first light source device configured to emit light in a first wavelength range, a first wheel having formed thereon a plurality of light source segments configured to emit lights in different wavelength ranges upon receiving light in the first wavelength range, a second wheel having formed thereon a plurality of areas configured to dim light emitted from the first wheel, a display device onto which light emitted from the second wheel is shined to thereby form image light, and a processor configured to control the first light source device, the first wheel and the second wheel in a synchronized fashion, wherein the processor performs a masking process on the image light when either or both of a rotation frequency difference and a phase shift between the first and the second wheels are predetermined thresholds or greater.
Abstract:
In a projection apparatus, the synchronization signal generation unit is configured to output synchronization signals for controlling timing of switching a color of light output from the light source unit, the synchronization signals including a synchronization signal used for turning off one of the first and second light-emitting elements in synchronization with the detection signal, and a synchronization signal used for turning on the other light-emitting element at a next period. The control unit is configured to set an interval during which power supplied to the first and second light-emitting elements of the light source unit is stopped at all periods, based on the synchronization signals.
Abstract:
A display auxiliary device includes a light receiving sensor that receives display light from a display target, and a CPU that determines whether or not a switching display synchronous signal is included in the received display light, shields both a left-eye liquid crystal shutter and a right-eye liquid crystal shutter during a light reception period of time of the switching display synchronous signal based on the switching display synchronous signal, and performs a shutter switching operation of the left-eye liquid crystal shutter for the left-eye image and the right-eye liquid crystal shutter for the right-eye image to be switched and displayed, when the switching display synchronous signal is determined to be included.
Abstract:
A projector of the present invention includes a light source unit including a semiconductor light emitting element and a color wheel and emitting lights in first and second wavelength ranges in time division, a display device receiving light source light to form image light, a projection optical system for projecting the image light onto a projection target, a delay time setting module for shifting a start timing of a color mixing period when the lights in the first and second wavelength ranges are emitted in a mixed fashion in a spoke period of the color wheel during which emissions of the lights in the first and second wavelength ranges are switched over based on an index indicating a brightness of light from the light source unit, and a light source driving module for driving the light source unit based on a setting set by the delay time setting module.
Abstract:
A display apparatus includes a master/slave setting unit configured to execute at least one of setting of a master apparatus which displays a switching-display synchronization signal superposed on an image as a target to be displayed and setting of a slave apparatus which does not display the switching-display synchronization signal, a synchronization-signal superposition unit configured to superpose the switching-display synchronization signal on the image as the target to be displayed, when setting of the master apparatus is executed by the master/slave setting unit, and a display unit configured to display the image on which the switching-display synchronization signal is superposed by the synchronization signal superposition unit.