Abstract:
The present invention discloses a manufacturing method of an Optically Compensated Bend (OCB) liquid crystal panel, which comprises: an arranging step S1 for alternately arranging a plurality of thin-film transistor (TFT) substrates and a plurality of color filter (CF) substrates, the TFT substrates and the CF substrates are coated with optical alignment material; a light irradiating step S2 for using an ultraviolet (UV) light source to irradiate the TFT substrates and the CF substrates so that alignment films of predetermined alignment directions are formed by the optical alignment material on the TFT substrates and the CF substrates; and an attaching step S3 for attaching each of the TFT substrates and an adjacent one of the CF substrates in such a way that an alignment direction of the TFT substrate is the same as that of the corresponding CF substrate and filling an OCB liquid crystal layer therebetween to form a plurality of OCB liquid crystal panels. For the OCB liquid crystal panel of the present invention, the TFT substrates and the CF substrates are optically aligned in a contactless way, the efficiency of each irradiation is high, which is favorable for mass production.
Abstract:
The present invention discloses a manufacturing method of an Optically Compensated Bend (OCB) liquid crystal panel, which comprises: an arranging step S1 for alternately arranging a plurality of thin-film transistor (TFT) substrates and a plurality of color filter (CF) substrates, the TFT substrates and the CF substrates are coated with optical alignment material; a light irradiating step S2 for using an ultraviolet (UV) light source to irradiate the TFT substrates and the CF substrates so that alignment films of predetermined alignment directions are formed by the optical alignment material on the TFT substrates and the CF substrates; and an attaching step S3 for attaching each of the TFT substrates and an adjacent one of the CF substrates in such a way that an alignment direction of the TFT substrate is the same as that of the corresponding CF substrate and filling an OCB liquid crystal layer therebetween to form a plurality of OCB liquid crystal panels. For the OCB liquid crystal panel of the present invention, the TFT substrates and the CF substrates are optically aligned in a contactless way, the efficiency of each irradiation is high, which is favorable for mass production.
Abstract:
The present invention discloses a panel transferring apparatus. The panel transferring apparatus includes a panel supporting mechanism for supporting a panel. The panel supporting mechanism includes a plurality of primary supports spaced apart from each other; and a plurality of secondary supports disposed on the primary supports and extending lateral to the primary supports. The primary supports and the secondary supports cooperate to support the panel. The present invention further discloses a panel supporting mechanism. A contact area between the panel supporting mechanism and the panel is increased by disposing the plurality of secondary supports on the plurality of primary supports. Thereby, flexure of the panel is lessened, the production cost is lowered and the production cycle is shortened.
Abstract:
The present invention discloses a panel transferring apparatus. The panel transferring apparatus comprises a panel supporting mechanism for supporting a panel. The panel supporting mechanism comprises a plurality of primary supports spaced apart from each other; and a plurality of secondary supports disposed on the primary supports and extending lateral to the primary supports, wherein the primary supports and the secondary supports cooperate to support the panel. The present invention further discloses a panel supporting mechanism. With the aforesaid arrangement of the panel transferring apparatus and the panel supporting mechanism thereof of the present invention, a contact area between the panel supporting mechanism and the panel is increased by disposing the plurality of secondary supports on the plurality of primary supports. Thereby, flexure of the panel is lessened, the production cost is lowered and the production cycle is shortened.
Abstract:
A liquid crystal display (LCD) panel, a color filter (CF) and a manufacturing method thereof are disclosed in the present disclosure. The CF comprises a transparent substrate, a black matrix, first CF units, second CF units and a conductive layer. The transparent substrate comprises an active area and a dummy area. The first CF units in the active area have a trapezoidal cross section, and the second CF units in the dummy area have an inverted trapezoidal cross section. The conductive layer covers the active area continuously but covers the dummy area discontinuously; and thus, the active area can perform normal electrical conduction functions while an insulating effect can be achieved in the dummy area. In this way, even if conductive particles are present in the dummy area during the assembling process of the CF and a TFT, the discontinuous conductive layer in the dummy area can still prevent occurrence of abnormal conditions that the CF and the TFT are at the same voltage level. Thereby, abnormal short-circuits occurring when the CF and the TFT are assembled together can be prevented to improve the product quality.
Abstract:
A manufacturing method for a color filter substrate is disclosed in the present disclosure, which comprises the following steps of: providing a substrate; providing a photoreactive layer that covers the substrate; providing a photomask disposed above the photoreactive layer; and providing light rays of different frequency bands for irradiating the photoreactive layer through the photomask so as to form color resist regions and black matrix regions on the photoreactive layer respectively. A photomask and a photoreactive layer for preparing a color resist layer on a color filter substrate are also provided in the present disclosure. Thereby, the present disclosure can advantageously shorten the production cycle, and improve the aperture ratio and the contrast ratio.
Abstract:
A liquid crystal display (LCD) panel, a color filter (CF) and a manufacturing method thereof are disclosed in the present disclosure. The CF comprises a transparent substrate, a black matrix, first CF units, second CF units and a conductive layer. The transparent substrate comprises an active area and a dummy area. The first CF units in the active area have a trapezoidal cross section, and the second CF units in the dummy area have an inverted trapezoidal cross section. The conductive layer covers the active area continuously but covers the dummy area discontinuously; and thus, the active area can perform normal electrical conduction functions while an insulating effect can be achieved in the dummy area. In this way, even if conductive particles are present in the dummy area during the assembling process of the CF and a TFT, the discontinuous conductive layer in the dummy area can still prevent occurrence of abnormal conditions that the CF and the TFT are at the same voltage level. Thereby, abnormal short-circuits occurring when the CF and the TFT are assembled together can be prevented to improve the product quality.
Abstract:
A liquid crystal display including a first substrate, a second substrate and a non-transparent sealant is provided. The second substrate is disposed opposite to the first substrate, and the non-transparent sealant is cured on the peripheral surface of the second substrate. The non-transparent sealant is adhered to the first substrate while the first substrate and the second substrate are assembled together. The inspector can easily determine whether the plastering of sealant is complete or breakage occurs. Meanwhile, the low-temperature vacuum bubble occurs can be reduced during the display panel manufacturing process