Abstract:
A liquid crystal display device including an LCD panel modulating light transmissivities of plural pixels disposed in a matrix form on the basis of respective gradation data; an illumination device for irradiating light to the respective pixels while a ratio (duty ratio) of a lighting time in one frame period is changed; and a display data conversion part for calculating respective lightnesses and a lightness histogram from the respective gradation data, determining a threshold lightness from the lightness histogram on the basis of a previously determined ratio of pixels to be saturated in brightness, processing the respective gradation data on the basis of the threshold lightness to output them to the LCD panel, and outputting duty ratio data to change the duty ratio to the illumination device.
Abstract:
Provided is an illuminating device wherein generation of luminance deterioration and luminance nonuniformity is suppressed. An illuminating device (10) is provided with an LED (6) stored inside a storing space (10a), a power supply substrate (8) arranged outside the storing space (10a), and an FPC (7). The FPC (7) extends along a side section (1c) of a case member (1) so that the connecting terminal (7c) is away from the LED (6), and in such state, the connecting terminal (7c) is extracted to the outside from the inside of the storing space (10a).
Abstract:
The invention provides transition metal complex compounds, high-activity olefin oligomerization catalysts containing the compounds, and olefin oligomerization processes using the catalysts.A transition metal complex compound [A] according to the invention is represented by Formula (I) or Formula (I′) below. An olefin oligomerization catalyst includes the transition metal complex compound [A]. In an olefin oligomerization process of the invention, an olefin is oligomerized in the presence of the catalyst.
Abstract:
An illuminating device achieves higher brightness by improving the utilization efficiency of light from a light source in an illuminating device for emitting plane-shaped light. The backlight device includes a light guide member, and LED units facing side surfaces of the light guide member, and propagates light that is emitted by the LEDs and made incident to the side surfaces in the light guide member so as to emit plane-shaped light from a first main surface of the light guide member. The backlight device includes an insulating reflective member placed outside a second main surface of the light guide member facing the first main surface, and a metal reflective sheet laminated on the insulating reflective sheet on the side opposite to the light guide member.
Abstract:
In a backlight device, among a plurality of light emitting diodes, light amounts thereof are measured in advance, and they are classified as any one of two or more light amount ranks according to the measurement results. In each of an upper region and a lower region of the light emitting diodes that are set on an upper side and lower side of a light guide plate, respectively, the light emitting diodes that are classified as having the same light amount rank are disposed.
Abstract:
A backlight unit and a liquid crystal display device improve uniformity of a luminance and a color of a display surface. The backlight unit includes a light source device and a circuit board, the light source device including a first board and a plurality of point light sources connected in series, the plurality of point light sources being arranged on the first board, and the circuit board including a second board, a driving circuit for the plurality of point light sources, and a variable resistance device, the driving circuit for the plurality of point light sources and the variable resistance device being arranged on the second board, wherein a resistance adjusting element of the variable resistance device is exposed to an outside, and at least one point light source arranged on an end side among the plurality of point light sources is connected in parallel to the variable resistance device.
Abstract:
To provide a backlight device with which a color hue and a color purity of a display panel can be improved while suppressing the lowering of the brightness of the display panel. A backlight device (20) comprises a pseudo white LED (21), a light guide plate (22), and a dichroic filter (25) which reflects a light with a predetermined wavelength among the light emitted from the pseudo white LED at a predetermined ratio. The dichroic filter is configured so that the light reflectance changes when the incident angle of the light is changed and a tilt angle to a light emitting surface (21e) of the pseudo white LED can be adjusted.
Abstract:
A backlight unit that realizes stabilization of lighting operation in the event of carrying out lighting operation at low luminance. The backlight unit is backlight unit (10) comprising a light source composed of multiple light emitting diode groups (4a, 4b, 31a, 31b, 31c, 31d) each including a given number of serially connected light emitting diodes (4,31); and lighting circuit (20, 40) for lighting the light source in accordance with a light control signal. The lighting circuit has at least multiple drive circuit portions (21a, 21b, 41a, 41b, 41c, 41d) respectively connected to the multiple light emitting diode groups, and in accordance with a light control signal, allows all the light emitting diodes included in each of the multiple light emitting diode groups to emit light, or allows only light emitting diodes included in light emitting diode group(s) selected from among the multiple light emitting diode groups to emit light.
Abstract:
A backlight device (2) that emits illumination light toward the exterior includes a white light-emitting diode (4) that emits white light, and a LED lighting circuit (lighting control section) (12) configured to be capable of controlling a lighting drive of the light-emitting diode (4) by using PWM dimming. The LED lighting circuit (12) adjusts a color tone of the illumination light by modifying ON time of a duty ratio by PWM dimming and a value of supply current to be supplied to the light-emitting diode (4).
Abstract:
A method of processing a substrate subjected to an exposure process includes the steps of: transporting a substrate subjected to the exposure process to a cleaning processing part and performing a cleaning process in said cleaning processing part on said substrate subjected to the exposure process. The method also includes the steps of transporting said substrate subjected to the cleaning process from said cleaning processing part to a heating processing part and performing a heating process in said heating processing part on said substrate subjected to the cleaning process. A first interprocess time interval between the instant at which the exposure process of a substrate is completed and the instant at which the heating process of the substrate is started is made approximately constant, and a second interprocess time interval between the instant at which the cleaning process of the substrate is completed and the instant at which the heating process of the substrate is started is made approximately constant.