Abstract:
An optical information medium having an ink-accepting layer that may secure a high-gloss printed surface similar to print image quality of print image on photographic paper is provided. The optical disk is constituted by sequentially laminating concavo-convex information pits, a recording layer, a reflective layer, a protective layer, a second printing layer, and an ink-accepting layer on a transparent substrate made of synthetic resin such as polycarbonate. In the formation of the ink-accepting layer, the following proportions of the following constituents in percent by weight are milled to prepare an ink for printing: 5 to 15% urethane acrylate; 70 to 80% water-soluble monomer; 5 to 15% water-soluble monomer soluble resin; 5 to 15% photopolymerization initiator; 5 to 15% dyestuff fixing agent; and
Abstract:
An optical information medium having an ink-accepting layer that may secure a high-gloss printed surface similar to print image quality of print image on photographic paper is provided. The optical disk is constituted by sequentially laminating concavo-convex information pits, a recording layer, a reflective layer, a protective layer, a second printing layer, and an ink-accepting layer on a transparent substrate made of synthetic resin such as polycarbonate. In the formation of the ink-accepting layer, the following proportions of the following constituents in percent by weight are milled to prepare an ink for printing: 5 to 15% urethane acrylate; 70 to 80% water-soluble monomer; 5 to 15% water-soluble monomer soluble resin; 5 to 15% photopolymerization initiator; 5 to 15% dyestuff fixing agent; and
Abstract:
An optical information medium having an ink-accepting layer that may secure a high-gloss printed surface similar to print image quality of print image on photographic paper is provided. The optical disk 1 is constituted by sequentially laminating concavo-convex information pits 3, a recording layer 4, a reflective layer 5, a protective layer 6, a second printing layer 7, and an ink-accepting layer 8 on a transparent substrate 2 made of synthetic resin such as polycarbonate. In the formation of the ink-accepting layer 8, the following proportions of the following constituents in percent by weight are milled to prepare an ink for printing: 5 to 15% urethane acrylate; 70 to 80% water-soluble monomer; 5 to 15% water-soluble monomer soluble resin; 5 to 15% photopolymerization initiator; 5 to 15% dyestuff fixing agent; and
Abstract:
A storage case is comprised of a case main body, a cover, a rotating means and a tilt means. The case main body has a bottom plate, the front plate, a back plate, a right plate and a left plate which are arranged so that the front, back, right and left plates surround four sides of the bottom plate. The cover is installed to the case main body so as to open and close an opening of the case main body. The rotating means swingably and slidably connects the cover with the case main body. The rotating means has a rotation shaft installed to the cover and a bearing portion installed to the case main body. The bearing portion is formed into an elongate groove extending in a vertical direction of the case main body. The front plate is tilted forward by the tilt means.
Abstract:
To provide a new shutter open/close mechanism suitable for use with a cartridge body (6) whose front end is formed in an arbitrary shape for easily knowing a correct direction of insertion in a recorder/player, a guide recess (36) to support a shutter plate (25) movably is formed on a main side of the cartridge body (6) to be oblique relative to the width of the cartridge body (6). The shutter open/close mechanism (26) includes a guide member (31) supporting the shutter plate (25) and movably engaged in the guide recess (36), an operating member (32) to move the guide member (31), a transmission member (33) connecting the guide member (31) and operating member (32) to each other to transmit an operating force from the operating member (32) to the guide member (31), and support surfaces (37) formed on the cartridge body (6) to support the operating member (32) movably. The transmission member (33) is pivotably connected to the guide and operating members (31) and (32).
Abstract:
To provide a new shutter open/close mechanism (26) suitable for use with a cartridge body whose front end is formed in an arbitrary shape for easily knowing a correct direction of insertion in a recorder/player, a guide recess (36) to support a shutter plate (25) movably is formed on a main side of the cartridge body (6) to be oblique relative to the width of the cartridge body (6). The shutter open/close mechanism (26) includes a guide member (31) supporting the shutter plate (25) and movably engaged in the guide recess (36), an operating member (32) to move the guide member (31), a transmission member (33) connecting the guide member (31) and operating member (32) to each other to transmit an operating force from the operating member (32) to the guide member (31), and support surfaces (37) formed on the cartridge body (6) to support the operating member (32) movably. The shutter open/close mechanism 26 further includes a shutter locking mechanism 38 disposed at the lateral side of the cartridge body (6) to lock the shutter plate (25) against movement.
Abstract:
To easily know a correct direction of insertion into a recorder/player and assure a large width of an access opening through which the optical head approaches an optical disc, a disc cartridge is provided which includes an access opening (21) formed in a cartridge body (6) and through which a part of the recording area of an optical disc (5), extending between lead-in and lead-out areas, is exposed outside for data read and write, a pair of shutter members (25), (26) provided movably towards and away from each other to open and close the access opening (21); and a shutter open/close mechanism (27) having a pair of guide recesses (36a) and (36b) formed in a main side the of the cartridge body (6) obliquely in relation to the width of the cartridge body (6) to support the pair of shutter members (25) and (26), respectively, to be movable.
Abstract:
A disc cartridge can effectively prevent dirt particles from entering the cartridge main body and improve the reliability of the operation of signal recording/reproduction on the disc-shaped recording medium. The disc cartridge comprises a cartridge main body 6 and a shutter member 35 having an upper shutter section 41 and a lower shutter section 42 adapted to openably close the recording/reproduction opening 17 and the drive opening 18 arranged outside the cartridge main body 6. A shutter cover 50 is arranged on the main surface of the cartridge main body 6 to cover the area of displacement of the lower shutter section 42. The shutter cover 50 is provided with an opening 51 slightly smaller than the lower shutter section 42 of the shutter member 35 at a position corresponding to the recording/reproduction opening 17 and the drive opening 18.
Abstract:
The invention provides a DMOS transistor in which a leakage current is decreased and the source-drain breakdown voltage of the transistor in the off state is enhanced when a body layer is formed by oblique ion implantation. After a photoresist layer 18 is formed, using the photoresist layer 18 and a gate electrode 14 as a mask, first ion implantation is performed toward a first corner portion 14C1 on the inside of the gate electrode 14 in a first direction shown by an arrow A′. A first body layer 17A′ is formed by this first ion implantation. The first body layer 17A′ is formed so as to extend from the first corner portion 14C1 to under the gate electrode 14, and the P-type impurity concentration of the body layer 17A′ in the first corner portion 14C1 is higher than that of a conventional transistor.
Abstract:
A coil is formed by coaxially winding a second winding so as to be in intimate contact with an outer circumferential portion of a first winding wound about a winding shaft axis. In the first winding, one side of a winding wire is wound from an inner circumferential side to an outer circumferential side, the other side of the winding wire is drawn forth from the inner circumferential side to the outer circumferential side, while crossing the one side of the winding wire, and a thickness in a direction of the winding shaft axis in crossing portions of the one side of the winding wire and the other side of the winding wire is equal to a thickness in other portions.