Folded camera lens systems
US-2015253647-A1 · Sep 10, 2015 · US
US2019121103A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2019121103-A1 |
| Application number | US-201715559039-A |
| Country | US |
| Kind code | A1 |
| Filing date | Apr 25, 2017 |
| Priority date | May 30, 2016 |
| Publication date | Apr 25, 2019 |
| Grant date | — |
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Actuators for rotating or tilting an optical element, for example an optical path folding element, comprising a voice coil motor (VCM) and a curved ball-guided mechanism operative to create a rotation or tilt movement of the optical element around a rotation axis upon actuation by the VCM. In some embodiments, an actuator includes two, first and second VCMs, and two curved ball-guided mechanisms operative to create rotation or tilt around respective first and second rotation axes.
Opening claim text (preview).
1 . An actuator for rotating or tilting an optical element, comprising: a) a first voice coil motor (VCM); and b) a first curved ball-guided mechanism operative to create a rotation or tilt movement of the optical element around a first rotation axis upon actuation by the VCM. 2 . The actuator of claim 1 , wherein the first VCM includes a coil mechanically coupled to a static base and a fixed magnet mechanically coupled to a holder for holding the optical element, and wherein the rotation or tilt movement is created by a current passing through the coil. 3 . The actuator of claim 2 , further comprising a ferromagnetic yoke attached to the static base and used to pull the fixed magnet in order to prevent the first curved ball-guided mechanism from coming apart. 4 . The actuator of claim 1 , wherein the first ball-guided mechanism includes a pair of grooves having a plurality of balls located therebetween, wherein at least one of the grooves in the pair has a curvature defined by a radius that starts at a center of curvature which lies on the rotation axis. 5 . The actuator of claim 1 , wherein the optical element includes an optical path folding element (OPFE) that folds light from a first optical axis to a second optical axis. 6 . The actuator of claim 5 , wherein the first rotation axis includes an axis perpendicular to both the first optical axis and the second optical axis. 7 . The actuator of claim 5 , wherein the first rotation axis includes an axis combining the second optical axis and an axis perpendicular to both the first optical axis and the second optical axis. 8 . The actuator of claim 5 , wherein the first curved ball-guided mechanism is positioned below the OPFE. 9 . The actuator of claim 5 , wherein the fixed magnet and the coil are positioned below the OPFE. 10 . The actuator of claim 5 , wherein the fixed magnet and the coil are positioned on a side of the OPFE in a plane parallel to a plane that includes both the first axis and the second optical axis. 11 . The actuator of claim 2 , further comprising a position sensor for measuring an angle of the optical element relative to the static base. 12 . The actuator of claim 11 , wherein the position sensor is a Hall bar position sensor operative to measure the magnetic field of the fixed magnet. 13 . The actuator of claim 1 , further comprising: c) a second VCM; and d) a second curved ball-guided mechanism operative to create a rotation or tilt movement of the optical element around a second rotation axis upon actuation by the second VCM, wherein the first rotation axis and the second rotation axis are not parallel. 14 . The actuator of claim 13 , wherein the first rotation axis and the second rotation axis are substantially orthogonal to each other. 15 . The actuator of claim 13 , wherein the first VCM includes a first coil mechanically coupled to a static base and a first fixed magnet mechanically coupled to a holder for holding the optical element, wherein the second VCM includes a second coil mechanically coupled to a static base and a second fixed magnet mechanically coupled to a holder for holding the optical element, and wherein the first rotation or tilt movement and the second rotation or tilt movement are created by a combination of currents passing through the first coil and the second coil. 16 . The actuator of claim 15 , wherein the first and second magnets are unified as a single magnet. 17 . The actuator of claim 16 , further comprising a ferromagnetic yoke attached to the static base and used to pull the fixed magnet in order to prevent the first curved ball-guided mechanism and the second curved ball-guided mechanism from coming apart. 18 . The actuator of claim 13 , wherein the optical element includes an optical path folding element (OPFE) that folds light from a first optical axis to a second optical axis. 19 . The actuator of claim 18 , wherein the first rotation axis includes an axis perpendicular to both the first optical axis and the second optical axis, and the second rotation axis includes an axis parallel to either the first optical axis or the second optical axis 20 . The actuator of claim 13 , further comprising a first position sensor and a second position sensor, wherein a combination of two position measurements allows determination of the position of the optical element holder relative to the static base with respect to both the first rotation axis and the second rotation axis. 21 . The actuator of claim 4 , wherein the center of curvature resides inside the optical element. 22 . The actuator of claim 4 , wherein the center of curvature resides outside the optical element. 23 . The actuator of claim 5 , wherein the OPFE includes a prism. 24 . The actuator of claim 5 , wherein the OPFE includes a mirror. 25 . A camera comprising an actuator according to claim 1 . 26 . The camera of claim 25 , wherein the rotation or tilt movement is for allowing optical image stabilization. 27 . The camera of claim 25 , wherein the rotation or tilt movement is for allowing extended field of view scanning.
based on additional sensors, e.g. acceleration sensors · CPC title
Mounting of pick-up tubes, electronic image sensors, deviation or focusing coils · CPC title
Optical parts specially adapted for electronic image sensors; Mounting thereof · CPC title
performed by mechanical compensation · CPC title
Control of means for changing angle of the field of view, e.g. optical zoom objectives or electronic zooming · CPC title
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