A lens barrel includes a lens frame movable in optical axis directions of a lens, a cam barrel rotated around outside the lens frame to move the lens frame in the optical axis directions, a base supporting the cam barrel to be rotatable and to be immovable in axial directions, and a hollow motor inc
A lens barrel includes a lens frame movable in optical axis directions of a lens, a cam barrel rotated around outside the lens frame to move the lens frame in the optical axis directions, a base supporting the cam barrel to be rotatable and to be immovable in axial directions, and a hollow motor including a rotor and a stator and rotating the cam barrel. The stator supported by the base surrounds the rotor provided outside the cam barrel to be movable in the axial directions and rotate integrally with the cam barrel. As the rotor moves in one of the axial directions, a second locking portion of the base engages with a first locking portion of the rotor to prevent rotation of the rotor. A movement mechanism moves the rotor in the axial directions between a locking position and an unlocking position of the first and second locking portions.
대표청구항▼
What is claimed is: 1. A lens barrel comprising: a lens frame configured to hold a lens and provided to be movable in optical axis directions of the lens; a cam barrel provided and rotated around the outer circumference of the lens frame to move the lens frame in the optical axis directions; a base
What is claimed is: 1. A lens barrel comprising: a lens frame configured to hold a lens and provided to be movable in optical axis directions of the lens; a cam barrel provided and rotated around the outer circumference of the lens frame to move the lens frame in the optical axis directions; a base configured to support the cam barrel to be rotatable and to be immovable in axial directions thereof; and a hollow motor configured to rotate the cam barrel; wherein the hollow motor includes a cylindrical rotor provided around the outer circumference of the cam barrel and connected to the cam barrel to be movable in the axial directions of the cam barrel and to rotate integrally with the cam barrel, and a stator provided to surround the outer circumference of the rotor and supported by the base, wherein the rotor is provided with a first locking portion, wherein the base is provided with a second locking portion which, in accordance with the movement of the rotor in one of the axial directions of the cam barrel, engages with the first locking portion and prevents the rotation of the rotor, and wherein a movement mechanism is provided which moves the rotor in the axial directions of the cam barrel between a locking position at which the first locking portion engages with the second locking portion and an unlocking position at which the first locking portion separates from the second locking portion. 2. The lens barrel according to claim 1, wherein the rotor is configured to include a cylindrical member connected to the outer circumferential surface of the cam barrel to be movable in the axial directions and to rotate integrally with the cam barrel, and a rotation magnet attached to the outer circumferential surface of the cylindrical member, and wherein the first locking portion is provided to the cylindrical member. 3. The lens barrel according to claim 2, wherein a portion of the cam barrel away from the first locking portion in one of the axial directions is provided with a stopper which comes into contact with the cylindrical member and prevents the cylindrical member from moving in a direction separating from the second locking portion. 4. The lens barrel according to claim 2, wherein the outer circumferential surface of the cam barrel is provided with a projection extending in the axial directions, wherein the inner circumferential surface of the cylindrical member is provided with an engaging groove which engages with the projection, and wherein, in accordance with the engagement between the projection and the engaging groove, the cylindrical member is connected with the cam barrel to be movable in the axial directions of the cam barrel and to rotate integrally with the cam barrel. 5. The lens barrel according to claim 2, wherein the movement mechanism includes movement magnets respectively provided to both ends in the axial directions of the outer circumferential surface of the cylindrical member, and movement coils supported by the base and provided to face the respective movement magnets. 6. The lens barrel according to claim 2, wherein the movement mechanism includes movement magnets respectively provided to both ends in the axial directions of the outer circumferential surface of the cylindrical member, movement coils supported by the base and provided to face the respective movement magnets, and magnetic members supported by the base and provided to face the side of the respective movement magnets. 7. The lens barrel according to claim 5 or 6, wherein the rotation magnet and the movement magnets are integrally formed. 8. The lens barrel according to claim 1, wherein the base includes a bottom wall extending on a plane perpendicular to the axial directions of the cam barrel, wherein the lens frame and the cam barrel are disposed forward of the bottom wall in one of the axial directions of the cam barrel separating from the bottom wall, wherein the first locking portion is provided to a rear end of the rotor, which is an end portion in the axial directions of the rotor, and wherein the second locking portion is provided to a portion of the bottom wall located rearward of the first locking portion. 9. An imaging apparatus including a lens barrel, the lens barrel comprising: a lens frame configured to hold a lens and provided to be movable in optical axis directions of the lens; a cam barrel provided and rotated around the outer circumference of the lens frame to move the lens frame in the optical axis directions; a base configured to support the cam barrel to be rotatable and to be immovable in axial directions thereof; and a hollow motor configured to rotate the cam barrel; wherein the hollow motor includes a cylindrical rotor provided around the outer circumference of the cam barrel and connected to the cam barrel to be movable in the axial directions of the cam barrel and to rotate integrally with the cam barrel, and a stator provided to surround the outer circumference of the rotor and supported by the base, wherein the rotor is provided with a first locking portion, wherein the base is provided with a second locking portion which, in accordance with the movement of the rotor in one of the axial directions of the cam barrel, engages with the first locking portion and prevents the rotation of the rotor, and wherein a movement mechanism is provided which moves the rotor in the axial directions of the cam barrel between a locking position at which the first locking portion engages with the second locking portion and an unlocking position at which the first locking portion separates from the second locking portion.
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