Abstract:
A vehicle mirror actuator includes an actuator housing, a first motor, and a second motor. The second motor is provided in the actuator housing and configured to adjust a mirror angle in a second direction of a mirror. The first motor is provided in the actuator housing between the second motor and the mirror and configured to adjust a mirror angle in a first direction of the mirror.
Abstract:
A vehicle mirror actuator includes an actuator housing, a first motor, and a second motor. The second motor is provided in the actuator housing and configured to adjust a mirror angle in a second direction of a mirror. The first motor is provided in the actuator housing between the second motor and the mirror and configured to adjust a mirror angle in a first direction of the mirror.
Abstract:
In a mirror for an automobile, the adoption of resin mirror body to a mirror plate can decrease the weight of the mirror body, and the mirror plate is fixed onto a mirror holder through the welding. Therefore, this eliminates the usage of both-sided adhesive tape or adhesive agent, makes assembly processes less complicated, and thus the reduction in production cost is achieved. Furthermore, since the mirror plate can be fixed onto the mirror holder firmly and strongly even when the mirror plate is not pressed strongly to the mirror holder, excessive load on the mirror holder or the mirror plate becomes avoided. In addition, at the time of the production stage, some dimensional variation in the edge part of the mirror holder or the peripheral edge of the mirror plate becomes easily acceptable.
Abstract:
An applicator which includes a rear barrel 1; an ink occlusion element 10 accommodated in rear barrel 1; an ink occlusion element receiver 20 opposing the front end part of ink occlusion element 10; a see-through front barrel 30 fitted to the opening of rear barrel 1, a detection tube 40 inserted in front barrel 30 for flowing ink from ink occlusion element 10; a joint core 50 supported by detection tube 40 and flowing out ink from ink occlusion element 10; and a pen core 60 supported by detection tube 40 and disposed on the opposite side of joint core 50 with a detection space 63 from joint core 50. Detection tube 40, joint core 50 and pen core 60 are formed into an integral structure. It is possible to exactly grasp the ink end state in a visual manner, based on the presence/absence of ink in detection space 63 of detection tube 40.
Abstract:
An aspect of the present invention is to provide a mirror surface angle adjusting device in which an assembly error between first housing (A1) and second housing (A2) does not affect the assembly accuracy of worm wheels (A71) badly, and which can be assembled by simple and prompt processes. The mirror surface angle adjusting device according to the aspect is characterized in that the worm wheels (A71) contained in the actuator (A) are held by the second housing (A2) in such a way that the worm wheels are not detached along their respective central axes and rotate around the respective central axes. This mirror surface angle adjusting device can be assembled by simple and prompt processes. In addition, even if there is any assembly error between the first housing (A1) and the second housing (A2), this error does not affects the assembly accuracy of the worm wheels (A71) badly.
Abstract:
A mirror surface adjustment actuator according to the present invention includes a housing front member for accommodating a dual axis motor as a driving part, a worm gear as an extending/contracting part, or the like; a mirror holder on which a side mirror is fixed; and a housing rear member for supporting the mirror holder which is freely inclinable. The dual axis motor includes a motor body, two rotary axes, and three male terminals. A method for manufacturing the mirror surface control actuator is also provided.
Abstract:
Provided is a relay connector 100 for establishing connection between motors each having a pair of motor terminals provided to a back plate, and for supplying power supplied from external terminals to the respective motor terminals. The relay connector 100 includes: a motor connecting surface 120 having a first relay terminal 140 that connects to the motor terminals of each motor; an external connector connecting surface 130 that is continuous to the motor connecting surface 120 and has in its bonding surface a second relay terminal 150 that connects to L-shaped terminals 220; and a housing 110 having the motor connecting surface 120 and the external connector connecting surface 130 in its end surfaces. The first relay terminal 140 and the second relay terminal 150 are electrically connected with each other within the housing 110.
Abstract:
A refill for a correction pen is constructed of a molded article of a polyamide resin obtained from monomers having an aromatic ring or a naphthene ring, a molded article of a blend of two or more kinds of polyamide resins, or a molded article having a multi-layered structure of two or more layers whose innermost layer in contact with the correction fluid is constituted of a polyamide resin. The applying part of a refill unit mounted on a ballpoint type applicator having a pressurizing mechanism in linkage with clicking action is formed by press fitting the rear end of a ballpoint pen tip having a rotatable ball to the attachment portion at the front end of an ink reservoir and a metal tube is squeezed to cover the outer periphery of the attachment portion at the front end of the ink reservoir to which the tip is fitted.
Abstract:
An aspect of the present invention is to provide a mirror surface angle adjusting device in which an assembly error between first housing (A1) and second housing (A2) does not affect the assembly accuracy of worm wheels (A71) badly, and which can be assembled by simple and prompt processes. The mirror surface angle adjusting device according to the aspect is characterized in that the worm wheels (A71) contained in the actuator (A) are held by the second housing (A2) in such a way that the worm wheels are not detached along their respective central axes and rotate around the respective central axes. This mirror surface angle adjusting device can be assembled by simple and prompt processes. In addition, even if there is any assembly error between the first housing (A1) and the second housing (A2), this error does not affects the assembly accuracy of the worm wheels (A71) badly.
Abstract:
To improve a force by which a base holds an inner mirror, a base 4 keeping a base inner 6 for holding an inner mirror 2 is constituted by a first base 30 bonded to a front window 3 and a second base 40 clasped by the base inner 6; the second base 40 comprises a recessed mating part 43 where the first base 30 is fitted, and wider parts 41a, 41b abutting against side faces 33a, 33b of the first base 30 and extending outward from the side faces 33a, 33b of the first base 30; when the first base 30 is fitted into the mating part 43 of the second base 40, the mating width of the base 4 mating with the base inner 46 can be expanded by the width of the wider parts 41a, 41b of the second base 40, whereby the force by which the base 4 holds the inner mirror 2 can be improved even if the first base 30 is commoditized.