IMAGING OPTICAL SYSTEM
The invention relates to an imaging optical system with a tunable optical component, which comprises a first optical surface, a second optical surface and a deformable internal space between the first optical surface and the second optical surface, which internal space is filled with a transparent liquid, and wherein an optical property of the tunable optical component is adjustable by altering a shape of the internal space, and with a first folding element which is mechanically coupled to the tunable optical component such that a relative displacement between the first folding element and the tunable optical component causes a change of the optical property of the tunable optical component and with a second folding element that is arranged in series with the tunable optical component and the first folding element within an optical path of the imaging optical system.
1 . Imaging optical system ( 1 ) with
a tunable optical component ( 5 ), which comprises a first optical surface ( 9 ), a second optical surface ( 10 ) and a deformable internal space ( 11 ) between the first optical surface ( 9 ) and the second optical surface ( 10 ), which internal space ( 11 ) is filled with a transparent liquid ( 12 ), and wherein an optical property of the tunable optical component ( 5 ) is adjustable by altering a shape of the internal space ( 11 ), and with
a first folding element ( 6 ), which is mechanically coupled to the tunable optical component ( 5 ) such that a relative displacement between the first folding element ( 6 ) and the tunable optical component ( 5 ) causes a change of the optical property of the tunable optical component ( 5 ) and with
a second folding element ( 7 ) that is arranged in series with the tunable optical component ( 5 ) and the first folding element ( 6 ) within an optical path ( 4 ) of the imaging optical system ( 1 ).
2 . Imaging optical system ( 1 ) according to claim 1 ,
with an image sensor ( 8 ) that is arranged within the optical path ( 4 ), wherein the tunable optical component ( 5 ) and the image sensor ( 8 ) are essentially arranged parallel to each other and wherein the optical path ( 4 ) is preferably folded by essentially 180 °.
3 . Imaging optical system ( 1 ) according to claim 1 ,
wherein the first folding element ( 6 ) is moveably mounted with respect to the tunable optical component ( 5 ),
with an actuator ( 15 ) comprising a magnet ( 22 ) and a coil ( 21 ), wherein the magnet ( 22 ) is mechanically coupled to the tunable optical element ( 5 ) and the coil ( 21 ) is mechanically coupled to the first folding element ( 6 )
and wherein the coil ( 21 ) and the magnet ( 22 ) interact such that an electric current in the coil ( 21 ) causes a relative displacement between the first folding element ( 6 ) and the tunable optical component ( 5 ) in order to change the optical property of the tunable optical component ( 5 ).
4 . Imaging optical system ( 1 ) according to claim 3 ,
with a lens shaping element ( 14 ) that comprises a circumferential edge, which at least partially extends around the optical path ( 4 ) and is designed to interact with the first optical surface ( 9 ) of the tunable optical component ( 5 ),
and with a transparent element ( 13 ), particularly a glass window, that is essentially flat and is attached to the second optical surface ( 10 ) of the tunable component ( 5 ) and the first folding element ( 6 ) and wherein
the lens shaping element ( 14 ) is mechanically coupled to the magnet ( 22 ) and the transparent element ( 13 ) is mechanically coupled to the coil ( 21 ), such that
the electric current causes a displacement of the transparent element ( 13 ) with respect to the lens shaping element ( 14 ) in order to change the optical property of the tunable optical component ( 5 ).
5 . Imaging optical system according ( 1 ) to claim 4 ,
wherein the first optical surface ( 9 ) and the second optical surface ( 1 ) each are deformable membranes.
6 . Imaging optical system according to claim 4 ,
wherein the coil ( 21 ) is arranged on a coil carrier ( 23 ) and the magnet ( 22 ) is arranged on a magnet carrier ( 24 ) and wherein
an elastic bearing element ( 25 ) is mechanically coupled to the coil carrier ( 23 ) and the magnet carrier ( 24 ).
7 . Imaging optical system ( 1 ) according to claim 6 ,
wherein the elastic bearing element ( 25 ) is an essentially flat spring.
8 . Imaging optical system ( 1 ) according to claim 6 ,
wherein the elastic bearing element ( 25 ) defines a linear axis ( 16 ) of motion for the relative displacement between the tunable optical component ( 5 ) and the first folding element ( 6 ).
9 . Imaging optical system ( 1 ) according to claim 8 ,
wherein the coil carrier ( 23 ) is surrounded by the magnet carrier ( 24 ) in a plane on at least two, preferably three, sides, and wherein the first folding element ( 6 ) is surrounded by the coil carrier ( 23 ) in the plane on the two, preferably three, sides.
10 . Imaging optical system ( 1 ) according to claim 3 ,
wherein the coil ( 21 ) is arranged on a printed circuit board, preferably a folded printed circuit board that comprises an electrical connector.
11 . Imaging optical system ( 1 ) according to claim 1 ,
wherein the first folding element ( 6 ) and/or the second folding element ( 7 ) is a rigid prism or a mirror.
12 . Imaging optical system according ( 1 ) to claim 1
wherein the second folding element ( 7 ) is moveably mounted with respect to the tunable optical component ( 5 ) and the second folding element ( 6 ),
and wherein a second actuator ( 17 ) is designed to move the second folding element ( 7 ) with respect to the tunable optical component ( 5 ) and the second folding element ( 7 ),
and wherein the second actuator ( 17 ) is designed to tilt the second folding element ( 8 ′ 7 ).
13 . Imaging optical system ( 1 ) according to claim 12 ,
wherein a displacement of the first folding element ( 6 ) with respect to the tunable optical component ( 5 ) causes a change of a focal plane of the tunable optical component, such that the adjustable optical property is an optical power of the imaging optical system ( 1 ), and wherein a movement of the second folding element ( 7 ) causes an image stabilisation of the imaging optical system 1 .
14 . Imaging optical system ( 1 ) according to claim 1 ,
wherein a depth of the imaging system ( 1 ) is not larger than 7.2 mm.
15 . Imaging optical system ( 1 ) according to claim 2 ,
wherein the imaging sensor ( 8 ) has a width of at least 6 mm.