Abstract:
The main object of the present invention is to provide a color filter for a transflective type color liquid crystal display which is easily produced and capable of displaying the same color tone with both of a reflecting light and a transmitting light, and shows light scattering in a reflective light region. In order to attain the above mentioned object, the present invention provides a color filter for transflective type color liquid crystal display comprising a transparent substrate and a reflective light coloring layer and a transmissive light coloring layer formed on the transparent substrate, wherein, a convex-concave is formed on a surface of a liquid crystal layer side of the reflective light coloring layer, and an average thickness of the reflective light coloring layer is formed to be thinner than the thickness of the transmissive light coloring layer, and a refractive index difference between the reflective light coloring layer and a layer in contact with the surface of the convex-concave formed side of the reflective light coloring layer, is 0.1 or more. Further, a main object of the present invention is to provide a color filter for transflective type liquid crystal display comprising a transparent membrane pattern region obtained by laminating: a transparent substrate; a transparent membrane pattern layer comprising a transparent membrane formed in a pattern on the transparent substrate; and a coloring layer formed so as to cover the transparent membrane pattern layer.
Abstract:
A photoelectric transforming connector for optical fibers capable of application to a compact mobile apparatus such as a mobile phone comprises: a plug having a first light emitting portion for transmitting a light signal and/or a first light receiving portion for receiving a light signal through an optical fiber; an MID having a second light receiving portion facing the first light emitting portion and transforming the light signal from the first light emitting portion to an electric signal and/or a second light emitting portion facing the first light receiving portion and transforming an electric signal to a light signal and transmitting it to the first light receiving portion; and a shell to which the plug and the MID are attached. The shell has a bottom plate to which the plug and the MID are attached in a manner so that the first light emitting portion faces the second light receiving portion and/or the first light receiving portion faces the second light emitting portion, and a plurality of elastic pieces provided for standing up toward top face side from four side of the bottom plate and contacting the plug and the MID. Thereby, the plug can be attached to and detached from the bottom plate of the shell in a vertical direction.
Abstract:
An endoscope processor comprising a touch-panel input unit, a mechanical switch unit, and a controller, is provided. The endoscope processor controls an endoscope system. The touch-panel input unit comprises a touch-panel monitor. A command to carry out a function of the endoscope system is input via a command-input display displayed on the touch-panel monitor. The mechanical switch unit is manipulated to carry out at least one function among a light-switching function, a pump-switching function, and a white-balance-start switching function. The controller carries out a function corresponding to the command input via the touch-panel input unit or the mechanical switch unit.
Abstract:
This connector assembly comprises a header 1 to which a plurality of coaxial cables 3 are connectable and a socket 2 configured to be mounted on a printed board 4. The header 1 can be detachably coupled to the socket 2. The header 1 has a first terminal array 12 to which the coaxial cables 3 are electrically connectable. The socket 2 has a second terminal array 21 which makes contact with the first terminal array 12 when the header 1 is coupled to the socket 2. The first terminal array has a plurality of first terminals each having a wire terminal 120 for connection with each conductive wire of the cables and a contact 122 for contact with the second terminal array. The feature of the present invention resides in that the wire terminals 120 are arranged in a line, and the contacts 122 of the first terminal array are arranged in two rows in a staggered configuration, and a pitch of the contacts 122 of each row is larger than a pitch of the wire terminals 120.
Abstract:
A diffusing sheet, a surface light source unit, and a transmission type display that can attain uniform illumination so that the brightness of light on the display screen appears uniform regardless of the position from which the display screen is observed. The diffusing sheet includes, on its light-emerging side surface, a diffusion lens array having a plurality of unit lenses, each unit lens being in a shape equivalent to a part of an elliptic cylinder having an elliptical cross section. The surface light source unit includes the diffusing sheet and a convergent sheet 12 that has a plurality of unit lenses 121 having almost trapezoidal cross sections, formed on one surface thereof. It is possible to attain uniform illumination by diffusing light from cathode ray tubes in the surface light source unit, and, at the same time, to converge the light serving as backlight to enhance optical efficiency.
Abstract:
An endoscope system comprises an electric scope, an input apparatus, a processing unit, and a computer. The electric scope has an imaging device. The input apparatus is used for inputting information of a patient. The processing unit outputs first electric signals which are obtained by the imaging device, and second electric signals which are obtained by the input apparatus, as image signals for peripheral devices. The computer is connected to the processing unit. The processing unit separately outputs first image signals corresponding to the first electric signals, and second image signals corresponding to the second electric signals, to the computer.
Abstract:
This connector assembly comprises a header 1 to which a plurality of coaxial cables 3 are connectable and a socket 2 configured to be mounted on a printed board 4. The header 1 can be detachable coupled to the socket 2. The header 1 has a first terminal array 12 to which the coaxial cables 3 are electrically connectable. The socket 2 has a second terminal array 21 which makes contact with the first terminal array 12 when the header 1 is coupled to the socket 2. The first terminal array has a plurality of first terminals each having a wire terminal 120 for connection with each conductive wire of the cables and a contact 122 for contact with the second terminal array. The feature of the present invention resides in that the wire terminals 120 are arranged in a line, and the contacts 122 of the first terminal array are arranged in two rows in a staggered configuration, and a pitch of the contacts 122 of each row is larger than a pitch of the wire terminals 120.
Abstract:
In a connector with a component built-in, a base member is formed of three-dimensional formation circuit substrate, and has a fitting portion that is to be fitted to a connector of counterpart. Terminals electrically connected to a wiring pattern on a mother board, contacts electrically connected to contacts of the connector of counterpart, and a conductive pattern electrically connected to the electronic component are formed on a surface of the base member. Thus, the conductive pattern can easily be modified depending on application, and it is possible to provide complicated wirings. Furthermore, since the electronic component is mounted on the base member, it is possible to make the connector embed a lot of electronic components, and degrees of freedom of design are increased. Still furthermore, the electronic component can be connected by reflow soldering, so that mounting workability of the electronic component is increased.
Abstract:
An endoscope system comprises an electric scope, an input apparatus, a processing unit, and a computer. The electric scope has an imaging device. The input apparatus is used for inputting information of a patient. The processing unit outputs first electric signals which are obtained by the imaging device, and second electric signals which are obtained by the input apparatus, as image signals for peripheral devices. The computer is connected to the processing unit. The processing unit separately outputs first image signals corresponding to the first electric signals, and second image signals corresponding to the second electric signals, to the computer.
Abstract:
The color filter of the present invention is particularly suitable for a color liquid crystal display (1). Colored pixels (8, 9 and 10) each made of a transparent resin material having a pigment dispersed therein are formed on a transparent substrate (6). The color filter has a protective film (11) formed over the colored pixels by curing a coating film of a photopolymerizable resin composition containing at least a photopolymerizable acrylate oligomer and a multifunctional photopolymerizable acrylate monomer having at least two functional groups in one molecule. The color filter is superior in both heat resistance and light resistance and also excellent in display quality.