Abstract:
A fluid supply pipe is inserted through a motor supporting member, a spin motor, a rotating shaft, and a plate supporting member. A first flange is integrally formed in the vicinity of a curved portion of a straight portion, extending in the vertical direction, of the fluid supply pipe. The first flange is fixed to a motor supporting member. Thus, the fluid supply pipe is fixed to the spin motor through the motor supporting member. The fluid supply pipe has a configuration in which a gas supply pipe made of resin and a plurality of cleaning liquid supply pipes made of resin are accommodated inside a guide pipe made of stainless. Inside the guide pipe, the one gas supply pipe is surrounded by the plurality of cleaning liquid supply pipes.
Abstract:
A backlight device (100) includes: a case (1); a plurality of LED modules (2) provided in series on a bottom portion (1a) of the case (1); a reflective sheet (3); a diffusing plate (4); and an optical sheet (5). At the bottom portion (1a) of the case (1), four recessed portions (10) are formed in a horizontal direction of a display screen, and each of the LED modules 2 is fixed thereon with screws (11). At opposite ends of the recessed portion (10), opening portions (10a) and (10b) each having a lid member (13) are formed, thus making it possible to remove the LED modules (2) without disassembling the backlight device (100).
Abstract:
Provided is an illuminating device wherein replacement of a light source is facilitated and generation of luminance nonuniformity is suppressed. An illuminating device (10) is provided with a light source module (5) which is attached to a bottom section (1a) from a rear surface side of a case member (1). On a prescribed section on the bottom section (1a), a through hole (1b) is formed, and a prescribed section of the through hole protrudes to the side of a storing space (10a). An LED (6) is arranged to face a light incoming surface (3a) of a light guide plate (3) by having the LED (6) protrude to the side of the storing space (10a) through the through hole (1b).
Abstract:
A housing (HG) for a backlight unit (49) includes a bottom section (22), a wall section (23) and a side section (VP), and the side section (VP) is at least a part of a first groove (DH1) which sandwiches a mounting substrate (11).
Abstract:
A side light type backlight having a light source including a plurality of LEDs, and a light guide plate. Opposing end surfaces of the light guide plate are light incidence surfaces at which the plurality of LEDs are arranged. Wherein a plurality of rows of the LEDs are arranged in a direction of a thickness of the light guide plate. Under a first option, each row of LEDs is arranged in a longitudinal direction of the light incidence surface of the light guide plate, and electrically connected to one another in series. Under a second option, each row of LEDs is arranged in a longitudinal direction of the light incidence surface of the light guide plate, with N number of the LEDs being electrically connected in series in which the LEDs adjacent to each other belong to different rows.
Abstract:
A light source device, a backlight unit, and a liquid crystal display device are each capable of improving uniformity of a luminance and a color of a display surface. The light source device includes a board; a plurality of point light sources arranged on a surface of the board and connected in series; and a variable resistor, wherein the variable resistor is disposed on the surface on which the plurality of point light sources are arranged of the board; 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 resistor; and the board has a through-hole in a region where a variable resistor is located.
Abstract:
A backlight unit that while attaining cost reduction, realizes inhibiting of a light quantity decrease in the vicinity of an end portion of light guide plate and achieving of an enhancement of light utilization efficiency. Backlight unit (10, 30, 40, 50) comprises light guide plate (3) provided inside frame (1, 41, 51) and, provided inside the frame, multiple light emitting diodes (4) disposed with given spacings between adjacent diodes so as to be opposite to light incident surface (3a) of the light guide plate. Further, in an area opposite to end portion (3g) of the light incident surface of the light guide plate, there is not disposed any light emitting diode but provided reflection surface (1f, 41g, 31a, 57a) capable of reflecting the light outgoing from the light emitting diodes toward the light incident surface of the light guide plate.
Abstract:
A printer of the present invention prohibits print-media replacement or operations of the printer, when executing a profile creation mode of creating profile data that is used for color conversion processing performed on image data that is to be printed by a print unit.
Abstract:
A side light type backlight includes a light source including a plurality of LEDs, and a light guide plate. One of the end surfaces of the light guide plate is a light incidence surface at which a plurality of R-LEDs, a plurality of G-LEDs and a plurality of B-LEDs are arranged. LEDs satisfy the relationship of: a distribution range of light emitted from G-LEDs
Abstract:
In a light emitting device, a substrate on which LEDs are arranged in line is used as a light source used for the sidelight of an illuminating apparatus serving as a backlight of sidelight type. The frame of the LED includes a first portion, a second portion, and a third portion. The second and third portions are arranged on both sides of the first portion. The length of the longest part of the first portion in a first direction d1 in which the LEDs are arranged is larger than the length of the longest part of each of the second portion and the third portion. Each of the second portion and the third portion has a part having a length in the first direction d1 shorter than the length a1 of the longest part of the first portion in the first direction d1. Each of the total length b1 of the part of the second portion in which an electrode is disposed and the electrode in the first direction d1 and the total length c1 of the part of the third portion in which the electrode is disposed and the electrode in the first direction d1 is shorter than the length a1.