Patent classifications
H02K37/24
STEP ACTUATOR
Disclosed is a step actuator. The step actuator includes a housing; a stator installed in the housing; a rotor positioned radially inward from the stator, the rotor rotating and protruding from one side of the housing; a bearing installed at one side of the housing so as to be coupled with the rotor; a bearing cover coupled with one side of the housing to restrain movement of the bearing; a screw member coupled with the rotor to linearly move according to rotation of the rotor; and a mounting member coupled to the bearing cover to support the screw member.
CANNED MOTOR DEVICE
A canned motor device includes a fixed seat, a motor unit, and a heat-dissipation cover. The heat-dissipation cover is mounted to the fixed seat and has an inner surface facing and positioned relative to the fixed seat, an outer surface opposite to the inner surface, a protrusion opposite to the inner surface, a mounting groove indenting from the inner surface and having a large-diameter section and a small-diameter section, and a plurality of heat-dissipation fins protruding from the outer surface and surrounding the protrusion. A case body of the motor unit is partially sleeved to a large-diameter section, and a closed end of the cylindrical portion is sleeved to the small-diameter section.
Driving module, restoration method and imaging device
A driving module including a circuit board, a rotating member rotatably disposed on the circuit board, and a power source mechanically linked to the rotating member and electrically connected to the control circuit is provided. The circuit board has a control circuit, a first conductive portion, and a plurality of second conductive portions. The first conductive portion and the second conductive portions are electrically connected to the control circuit respectively. The rotating member has a first abutment and a second abutment electrically connected to each other. The power source is controlled by the control circuit to rotate the rotating member relative to the circuit board. The first abutment constantly abuts the first conductive portion, and the second conductive portions are on a rotating path of the second abutment. A restoration method and an imaging device are also provided.
Driving module, restoration method and imaging device
A driving module including a circuit board, a rotating member rotatably disposed on the circuit board, and a power source mechanically linked to the rotating member and electrically connected to the control circuit is provided. The circuit board has a control circuit, a first conductive portion, and a plurality of second conductive portions. The first conductive portion and the second conductive portions are electrically connected to the control circuit respectively. The rotating member has a first abutment and a second abutment electrically connected to each other. The power source is controlled by the control circuit to rotate the rotating member relative to the circuit board. The first abutment constantly abuts the first conductive portion, and the second conductive portions are on a rotating path of the second abutment. A restoration method and an imaging device are also provided.
INDICATOR INSTRUMENT FOR VEHICLE
An indicator instrument for a vehicle includes a rotational indicator that indicates a vehicle state parameter, and a stepper motor that rotates the rotational indicator. The stepper motor includes an output gear, a reduction mechanism, a motor casing housing the output gear and the reduction mechanism. The output gear includes an output shaft rotatable together with the rotational indicator, and a last-stage gear extending radially outward from the output shaft. The reduction mechanism includes a reduction gear engaged with the last-stage gear. The rotational indicator includes a rotational shaft press-fitted to a specified portion of the output shaft in the motor casing. The specified portion is displaced from the last-stage gear in an axial direction of the output shaft.
INDICATOR INSTRUMENT FOR VEHICLE
An indicator instrument for a vehicle includes a rotational indicator that indicates a vehicle state parameter, and a stepper motor that rotates the rotational indicator. The stepper motor includes an output gear, a reduction mechanism, a motor casing housing the output gear and the reduction mechanism. The output gear includes an output shaft rotatable together with the rotational indicator, and a last-stage gear extending radially outward from the output shaft. The reduction mechanism includes a reduction gear engaged with the last-stage gear. The rotational indicator includes a rotational shaft press-fitted to a specified portion of the output shaft in the motor casing. The specified portion is displaced from the last-stage gear in an axial direction of the output shaft.
Step actuator
Disclosed is a step actuator. The step actuator includes a housing; a stator installed in the housing; a rotor positioned radially inward from the stator, the rotor rotating and protruding from one side of the housing; a bearing installed at one side of the housing so as to be coupled with the rotor; a bearing cover coupled with one side of the housing to restrain movement of the bearing; a screw member coupled with the rotor to linearly move according to rotation of the rotor; and a mounting member coupled to the bearing cover to support the screw member.
Geared motor
Provided is a geared motor with which a large torque can be obtained without an increase in size. In this geared motor (1), an output member (8) having a helical groove (83) formed in an outer circumferential section is provided between a first plate part (31) and a second plate part (32) of a frame (3), and the rotation of a motor pinion (55) fixed to a rotary shaft (50) is reduced in speed by transmission gears of a reduction gear mechanism (9) and is transmitted to a gear part (85) of the output member (8). Thus, a large torque can be output, even when the gear part (85) of the output member (8) is made smaller than the outer diameter of the section (84) provided with the helical groove (83). Also, even when a gear cover (7) is provided, a lateral plate part (72) of the gear cover (7) covering the outer circumferential section of the gear part (85) of the output member (8) is located close to the rotation center axis of the output member (8). Thus, it is possible to prevent the geared motor (1) from being increased in size by the gear cover (7).
Geared motor
Provided is a geared motor with which a large torque can be obtained without an increase in size. In this geared motor (1), an output member (8) having a helical groove (83) formed in an outer circumferential section is provided between a first plate part (31) and a second plate part (32) of a frame (3), and the rotation of a motor pinion (55) fixed to a rotary shaft (50) is reduced in speed by transmission gears of a reduction gear mechanism (9) and is transmitted to a gear part (85) of the output member (8). Thus, a large torque can be output, even when the gear part (85) of the output member (8) is made smaller than the outer diameter of the section (84) provided with the helical groove (83). Also, even when a gear cover (7) is provided, a lateral plate part (72) of the gear cover (7) covering the outer circumferential section of the gear part (85) of the output member (8) is located close to the rotation center axis of the output member (8). Thus, it is possible to prevent the geared motor (1) from being increased in size by the gear cover (7).
Lens control device and lens control method
A lens control device that moves a lens in an optical axis direction comprises a stepping motor that drives the lens, a position detection circuit that detects position of the lens in an optical axis direction, a memory that stores data relating to a relationship between rotational position of the stepping motor and detected position of the position detection circuit, and a controller that designates rotational position of the stepping motor based on target information that is input, determines a virtual target rotational position based on a target position corresponding to detected position of the position detection circuit corresponding to the target information that has been input, and, based on the virtual target rotational position, searches for a rotational position that corresponds to the target position, within a range of given rotational positions of the data.