Abstract:
An optical element holder comprises a placement face on which an optical element is placed, the placement face obtained using one face of a sheet of metal; a positioning wall used for positioning the optical element placed on the placement face, the positioning wall being a stepped portion obtained by folding of the sheet of metal; and a spring section, which is a portion obtained by further folding of part of the portion folded over in order to obtain the positioning wall.
Abstract:
There is provided an optical pickup apparatus in which the assembling workability such as chucking of an LD holder by an adjusting jig and spreading of adhesive can be improved. In the optical pickup apparatus, multiple fitting portions (boss portions) 1d formed on one of a side wall surface 1a of a slide base 1 and an LD holder 10 are fitted loosely into respective multiple fitted portions (hole portions) 10b formed in the other one so that an adjustment space 12 required for adjustment of a laser diode 6 is ensured between each fitting portion and fitted portion. This allows the LD holder 10 to be fixed temporarily to the side wall surface 1a of the slide base 1 with the laser diode 6 being adjustable freely, resulting in an improvement in the assembling workability such as chucking of the holder by the adjusting jig and spreading of adhesive.
Abstract:
A pair of left and right pressing pieces and to press down the front part of the upward moving drive chassis are provided so as to protrude from the front part of the casing integrally therewith, the left side pressing piece of both the corresponding pressing pieces and is formed so as to be resiliently displaced with a protruding portion erected at the tip end thereof, and the inner side of the corresponding protruding portion is made into an inclined pressing plane which is inclined in the left direction at a prescribed angle so that it is turned downward so as to be widened outwardly, the front part side edge of the upward moving drive chassis is formed so as to be resiliently brought into contact with the inclined pressing plane thereof.
Abstract:
The optical element adjustment structure is provided with a rotating side including an optical element to be rotationally adjusted, and a non-rotating side where the rotationally adjusted optical element is securely arranged. The rotating side includes a tapered distal end section, and a contact section provided in an end section on a side opposite the distal end section and adapted to be contacted by an adjustment jig. The non-rotating side includes a recessed section for engaging the distal end section. The adjustment jig contacting the contact section is moved, whereby the rotating side rotates, the distal end section engaged in the recessed section being used as a fulcrum, and the optical element is rotationally adjusted.
Abstract:
An optical pickup with improved vibration resistance and heat dissipation is mounted astride a main shaft 101 and a secondary shaft 102. The travel of the optical pickup is adapted to be guided by the main shaft, where a secondary bearing part 3 adapted to slide relative to the secondary shaft 102 includes an overlapping sliding face 32 and an auxiliary overlapping face 36, and a clearance δ is formed between the auxiliary overlapping face 36 and the secondary shaft 102 to improve ease of assembly. A control element 41 is mounted on a printed circuit board 4 mounted on a base member 1, and the control element is overlapped with a radiator plate 5. The radiator plate 5 is provided with a pressing piece 54, and the pressing piece 54 is brought into elastic contact with the secondary shaft 102 to reliably bring the overlapping sliding face 32 into elastic contact with the secondary shaft 102.
Abstract:
There is provided an optical pickup apparatus in which the assembling workability such as chucking of an LD holder by an adjusting jig and spreading of adhesive can be improved. In the optical pickup apparatus, multiple fitting portions (boss portions) 1d formed on one of a side wall surface 1a of a slide base 1 and an LD holder 10 are fitted loosely into respective multiple fitted portions (hole portions) 10b formed in the other one so that an adjustment space 12 required for adjustment of a laser diode 6 is ensured between each fitting portion and fitted portion. This allows the LD holder 10 to be fixed temporarily to the side wall surface 1a of the slide base 1 with the laser diode 6 being adjustable freely, resulting in an improvement in the assembling workability such as chucking of the holder by the adjusting jig and spreading of adhesive.
Abstract:
A disk apparatus includes a chassis fixed to an apparatus body, a drive unit being ascendable or descendable with respect to the chassis through a plurality of gears by driving a motor, a pickup unit provided with an optical pickup that is movable by driving the motor, a cam slider arranged on the chassis and being movable in a direction, and a plate trigger provided with an inclined cam groove and being movable in the direction through cam engagement with the pickup unit and causes the drive unit to ascend or descend through cam engagement with the cam slider. The plate trigger and the cam slider move integrally in mesh with the gears coupled with the motor respectively. The tip of the tooth of the gear to be in mesh with a triangular tooth formed in the plate trigger is made sharp.
Abstract:
A laser holder is used for holding a semiconductor laser, and is obtained by working of a metal sheet. The laser holder is provided with a step formed by folding of a metal sheet; and a positioning holding section capable of holding the semiconductor laser in a positioned state using the step, the positioning holding section provided on the metal sheet.
Abstract:
In the case of connecting a flexible substrate to a counterpart substrate by soldering, the area of a dead space on the counterpart substrate due to being covered with the flexible substrate is reduced to reduce the outside dimension of the counterpart substrate. Solder lands 61 and 62 on the flexible substrate 5 are soldered to solder lands 21 and 22 on the counterpart substrate 1. The flexible substrate 5 is divided into two branching pieces 71 and 72 by an incision 7 or a slit 8 formed in such a manner as to extend from an intermediate part in the arrangement direction R of circuit patterns to the leading end of the flexible substrate. The space between the solder lands 61 and 62 on the respective pieces 71 and 72 is made equal to the space between the two spaced-apart solder lands 21 and 22 on the counterpart substrate 1 by placing the pieces 71 and 72 formed by dividing the flexible substrate 5 on one another.
Abstract:
In an optical head according to the present invention, an act base on which an objective lens is arranged is formed in a rectangular shape with through holes formed in four corners thereof. A base on which a collimating lens is arranged has projections to engage with the through holes in correspondence with the through holes when the act base is arranged. With the through holes of the act base engaged with the projections of the base, an adhesive is injected to the through holes to thereby fix the act base to the base. This improves the accuracy in bonding between the base and the act base, and permits laser light of a more stable intensity accordingly to be irradiated to the optical disc, thus permitting suppressing failure involved in data recording or reading.