Abstract:
Provided is a liquid crystal display device including a liquid crystal cell having a liquid crystal layer between two glass substrates, a front-side polarizing plate provided on a front side of the liquid crystal cell, a rear polarizer provided on a rear side of the liquid crystal cell, and a backlight provided on a rear side of the rear polarizer, in which the front-side polarizing plate has a first protective film, a polarizer, and a second protective film in this order from a surface side opposite to the liquid crystal cell, the first protective film in the front-side polarizing plate is a film including a polyester resin or a polycarbonate resin as a main component, an Re of the first protective film is 3000 nm or higher, an equilibrium moisture content of the second protective film at 25° C. and a relative humidity of 60% is in a range of 1% to 3%, and in the second protective film, a contractile force in a direction orthogonal to an absorption axis of the polarizer is 1.3 times or higher a contractile force in a direction parallel to the absorption axis of the polarizer which is capable of suppressing luminance unevenness at the four corners of the panel when a backlight is turned on after the liquid crystal display device has been stored in a hot and humid environment.
Abstract:
A display device has a display panel; a first holding member holding a plurality of sides of the display panel from a front surface side; a first shock-absorbing member disposed between the front surface side of the display panel and the first holding member, at least at a side of a lower end section of the display panel; a second holding member holding the plurality of the sides from the rear surface side; a second shock-absorbing member disposed between the rear surface side of the display panel and the second holding member, at least at the side of the lower end section of the display panel; and a supporting member supporting a portion of the lower end section. The force against the display panel from the first shock-absorbing member and the second shock-absorbing member is smaller in the vicinity of the supporting member than in other portions.
Abstract:
A bottom sash of a display module is provided. The bottom sash includes a bead part formed by depressing some portions of the bottom sash toward a rear side, and a reinforcing panel attached to a front surface of the bottom sash and spaced apart from the bead part.
Abstract:
Provided is a set of polarizing plates comprising a front-plate-integrated polarizing plate to be disposed at a viewing side of a liquid crystal cell and a back-side polarizing plate to be disposed at a back-side of the cell. The front-plate-integrated polarizing plate includes a front-side polarizing plate and a front plate having a Young's modulus of 2 GPa or more. An amount of shrinkage observed in the front-side polarizing plate in an absorption axis direction after the front-side polarizing plate is stuck to a glass substrate and heated at 85° C. for 500 hours is taken as X, and an amount of shrinkage observed in the back-side polarizing plate in an absorption axis direction after the back-side polarizing plate is stuck to a glass substrate and heated at 85° C. for 500 hours is taken as Y, the amount of shrinkage X being smaller than the amount of shrinkage Y.
Abstract:
A display substrate, a preparing method thereof, and a display device are disclosed; the display substrate comprises a display region, a non-display region, and a transparent support enhancement layer, the support enhancement layer is disposed at least in a region corresponding to the display region. The display substrate is not easy to be damaged by pressure, and can efficiently avoid a phenomenon of display defects of a display device.
Abstract:
A display panel manufacturing method is provided. A display function unit is provided on a surface of a first substrate. Sealing material is provided in a region on the surface of the first substrate that is surrounding the display function unit. Resin is then placed in an inside region of the sealing material over the surface of the first substrate. A total volume amount of the resin placed is greater than a volume capacity of an open space surrounded by the sealing material above the surface of the first substrate. A second substrate is bonded with the first substrate via the sealing material to provide a closed space with the resin being provided in the closed space.
Abstract:
An object of the present invention is to provide a polarizing plate which is not easily curled by a change in environment, and an image display device and a liquid crystal display device including the polarizing plate. The polarizing plate of the present invention is a polarizing plate including a polarizer, a protective film, and a peeling film in this order, a modulus of elasticity of the peeling film is 2.0 GPa or more, and a thickness P [μm] of the polarizer, a thickness Q [μm] of the protective film, and a thickness T [μm] of the peeling film satisfy the following equation (A). T≧(2.8×P−1.2×Q)+50 Equation (A)
Abstract:
A three-dimensional image display apparatus includes: an image output unit that outputs image light that has a particular polarization, the image output unit having: a retaining substrate including a transparent glass; an optical element retained by the retaining substrate; and a resin polarizing plate pasted with a first adhesive layer on a side of the retaining substrate opposite to a side where the optical element is retained; and a retarder that is pasted onto the polarizing plate with a second adhesive layer and has: a transparent resin base; and a plurality of phase retarding parts that are provided on the resin base and output the image light as mutually differently polarized light, the image light having been incident on the plurality of phase retarding parts, wherein the second adhesive layer is as hard as or harder than the first adhesive layer.
Abstract:
Provided is a display apparatus in which a deflection of an optical sheet as well as a slit due to vibration and impact are suppressed while a flaw in a member being in contact with the optical sheet is suppressed, uniform surface luminance and preferable image quality are attained, and thus the occurrence of a defect is suppressed.A display module in a TV receiver includes a display panel, an optical sheet group, a light guide plate, a chassis, a panel holding member and a bezel. At the middle part of the lower side portion of the optical sheet group, a latch hole is formed. At a portion of the bottom part of the chassis, which is opposed to the latch hole, is provided with a projecting part formed to have a cylindrical main body and a latch projection continuously formed from the main body with a cylindrical shape having a diameter smaller than that of the main body. The optical sheet group is supported at its lower side portion by a side part on the lower side of the chassis in the state where the latch projection is inserted into the latch hole to position the optical sheet group.
Abstract:
In a surface illuminant device provided with a light source for emitting light, a nonwoven fabric configured as a diffusion member for diffusing the light, and an optical sheet disposed on at least one of the back side and the front side of the nonwoven fabric, both the nonwoven fabric and the optical sheet are at least fixed with a fixing part in the area of one edge side of the nonwoven fabric in a first direction along the surface direction, and for one fixing part, a part of the area is fixed in a direction along at least one edge.