Abstract:
To suppress a decrease in the contrast caused by the reflection on the interface to the air layer without decreasing the quality of display. A reflection-type liquid crystal display device includes a light guide plate having a polarizing element stuck or adhered thereto on the side facing a reflection-type liquid crystal display panel and arranged maintaining a predetermined gap relative to the reflection-type liquid crystal display panel. The display device further includes a source of light arranged on an end surface side of the light guide plate, and a member having a light-diffusing function and interposed between the polarizing element and the light guide plate.
Abstract:
A roulette-shaped big monopoly unit 12 is disposed at the center of a casing 10, and a triangular pointer 14 for pointing a partition of the annular board 13 is disposed at the summit of the big monopoly unit 12. The players playing in the satellites 20 satisfy prescribed conditions to thereby to play in a big monopoly game using the big monopoly unit 12. In the big monopoly game, the players sequentially revolve the annular board 12. The game is advanced in accordance with contents of a partition pointed by the pointer 14 which is common among all the players when the revolving annular board 13 stops. The game can be played closely related among the satellites.
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:
An illumination device includes a light source section with white LEDs on a side of a light guide plate. The white LED includes a first white LED and a second white LED, and they emit light of different chromaticities. In a chromaticity diagram, a white color area is divided into two subareas by a dividing line passing through a target chromaticity; light emitted by the first white LED falls within a first subarea, and light emitted by the second white LED falls within a second subarea. By individually controlling the light emission of the first white LED and the second white LED, it is possible to emanate a desired white light from the light guide plate.
Abstract:
The invention provides a surface illuminator capable of achieving high display quality by employing an array of discrete light sources constituted by a plurality of LEDs and a liquid crystal display having the same. The surface illuminator includes an LED module which is a plurality of LEDs alternately and discretely provided along a light entrance surface and a color irregularity correcting resistor which is connected in parallel with a predetermined LED at an end of the LED module and which provides a bypass for a current supplied to the LED.
Abstract:
An illumination device that can reduce variations in brightness is provided. This illumination device (10) includes a light source module (5) and a chassis (1) provided with an accommodation space (10a). A light guide plate placement portion (1a) and a light source placement portion (1b) are provided in the accommodation space (10a). The light source placement portion (1b) has a placement surface (1c), the placement surface (1c) is formed such that the placement surface (1c) is raised with respect to the light source placement portion (1b) and the light source module (5) is placed on the placement surface (1c).
Abstract:
Disclosed is a backlight unit (49) wherein a flexible pressing piece (PP) provided to a top housing unit (25) presses a mounted substrate (11) against a bottom housing unit (21) which also serves as a heat dissipating unit.
Abstract:
A substrate processing apparatus comprises an interface block. An exposure device is arranged adjacent to the interface block. The interface block comprises first and second cleaning/drying processing units. A substrate W is subjected to cleaning and drying processing before exposure processing in the first cleaning/drying processing unit, while being subjected to cleaning and drying processing after the exposure processing in the second cleaning/drying processing unit.
Abstract:
A light source module (1) is constituted by forming lines (13a, 13b) on a mounting substrate (11) and a connection substrate (12) integrally formed of a flexible material, and mounting a first connector (15), a second connector (16), and a plurality of LEDs (18) on the substrates. The connection substrate of one of adjoining light source modules is connected with the first connector (15) of the other light source module, thereby connecting a plurality of light source modules (1) linearly. In the light source module (1) at the end, terminals (14a, 14b) of the connection substrate (12) are connected with the second connector (16) while being reversed, thereby interconnecting two lines (13a, 14b). A plurality of light source modules (1) can thereby be connected without using a separate component such as a wire harness.
Abstract:
A substrate processing apparatus comprises an indexer block, an anti-reflection film processing block, a resist film processing block, a development processing block, a resist cover film processing block, a resist cover film removal block, and an interface block. An exposure device is arranged adjacent to the interface block. The interface block includes a substrate replacement group. The substrate replacement group has a stack of three cleaning/drying processing units. The cleaning/drying processing unit subjects the substrate after exposure processing to cleaning and drying processing.