US 11,940,664 B2
Lens unit, projection optical system, and projector that accurately keep a thickness of a jointed lens at a desired value
Hirotaka Yanagisawa, Azumino (JP)
Assigned to SEIKO EPSON CORPORATION, Tokyo (JP)
Filed by SEIKO EPSON CORPORATION, Tokyo (JP)
Filed on Dec. 18, 2020, as Appl. No. 17/127,141.
Claims priority of application No. 2019-228979 (JP), filed on Dec. 19, 2019.
Prior Publication US 2021/0191092 A1, Jun. 24, 2021
Int. Cl. G02B 7/02 (2021.01); G02B 13/16 (2006.01); G03B 21/28 (2006.01)
CPC G02B 7/026 (2013.01) [G02B 7/021 (2013.01); G02B 7/022 (2013.01); G02B 7/023 (2013.01); G02B 7/025 (2013.01); G02B 13/16 (2013.01); G03B 21/28 (2013.01)] 8 Claims
OG exemplary drawing
 
1. A lens unit comprising:
a jointed lens having a first optical member, a second optical member disposed on an optical axis of the first optical member, and a jointing member having a light transmissive property and disposed between the first optical member and the second optical member; and
a holding mechanism configured to hold the first optical member and the second optical member, wherein:
the holding mechanism holds the first and second optical members so that a distance along an optical axis direction of the optical axis between a first lateral surface at an opposite side to a second optical member side in the first optical member and a second lateral surface at an opposite side to a first optical member side in the second optical member becomes a preset distance,
the jointing member adheres to the first optical member and the second optical member so that the distance becomes the preset distance,
the holding mechanism holds the first and second optical members by placing a first protrusion that extends in a radial direction that is perpendicular to the optical axis against the first lateral surface and a second protrusion that extends in the radial direction that is perpendicular to the optical axis against the second lateral surface,
the first lateral surface and the second lateral surface are surfaces by which light passes,
a longitudinal direction of the first protrusion and the second protrusion is perpendicular to the optical axis,
the holding mechanism includes
a ring-like member disposed at an outer side in a radial direction of the first optical member and the second optical member,
a first spring disposed between the first optical member and the ring-like member, and
a second spring disposed between the second optical member and the ring-like member,
the ring-like member has a first positioning surface which the first optical member makes contact with, and a second positioning surface which the second optical member makes contact with,
the first optical member has a first reference surface configured to make contact with the first positioning surface,
the second optical member has a second reference surface configured to make contact with the second positioning surface,
the first spring presses the first optical member toward the ring-like member to thereby make the first reference surface make contact with the first positioning surface, and
the second spring presses the second optical member toward the ring-like member to thereby make the second reference surface make contact with the second positioning surface.