Vertical motion axis for imaging optical head
A translation stage may include a first plate and a second plate moveable with respect to the first plate along a vertical direction. The stage may also include one or more magnetic counterbalances opposing the weight of the second plate, where at least one of the one or more magnetic counterbalances comprises a tunable magnetic counterbalance. A tunable magnetic counterbalance may include a first portion including one or more magnets and a second portion including one or more ferromagnetic materials, where the one or more ferromagnetic materials at least partially surround the one or more magnets in a horizontal plane. The counterbalance force may be adjustable by controlling at least one of a relative rotation angle between the first and second portions in the horizontal plane or a length of the gap along at least one direction. The stage may also include an actuator to position the second plate.
1 . A translation stage comprising:
a first plate;
a second plate, wherein the second plate is moveable with respect to the first plate along a vertical direction associated with a weight of the second plate;
one or more magnetic counterbalances coupled to the first and second plates and providing a counterbalance force to the second plate in the vertical direction opposing the weight of the second plate, wherein at least one of the one or more magnetic counterbalances comprises a tunable magnetic counterbalance, wherein the tunable magnetic counterbalance comprises:
a first portion including a rod including one or more magnets, wherein the first portion is attached to one of the first plate or the second plate; and
a second portion including a ferromagnetic sleeve formed from one or more ferromagnetic materials and at least partially surrounding the one or more magnets of the rod, wherein the second portion is attached to a different one of the first plate or the second plate than the first portion, wherein the one or more ferromagnetic materials of the ferromagnetic sleeve at least partially surround the one or more magnets in a horizontal plane orthogonal to the vertical direction, wherein the first and second portions are separated by a gap, wherein the counterbalance force is adjustable by controlling at least one of a relative rotation angle between the first and second portions in the horizontal plane or a length of the gap along at least one direction, wherein the ferromagnetic sleeve includes a slit configured to weaken magnetic field flow;
a motorized actuator mechanically coupled to at least one of the first portion or the second portion and configured to adjust the relative rotation angle between the first and second portions in the horizontal plane, wherein the actuator is operatively connected to a controller configured to execute program instructions to automatically tune the counterbalance force;
an actuator configured to position the second plate with respect to the first plate along the vertical direction; and
an encoder, wherein the encoder is configured to measure a relative position of the second plate and provide feedback to the actuator.
2 . The translation stage of claim 1 , wherein at least one of the one or more magnets has a magnetic polarization direction at least partially in the horizontal plane, wherein the one or more ferromagnetic materials are distributed with at least one slit in the horizontal plane, wherein the counterbalance force is adjustable by controlling the relative rotation angle between the first and second portions in the horizontal plane.
3 . The translation stage of claim 2 , wherein the one or more magnets comprise:
a single magnet with the magnetic polarization direction at least partially in the horizontal plane.
4 . The translation stage of claim 3 , wherein the single magnet is shaped as a rod with a long axis along the vertical direction.
5 . The translation stage of claim 4 , wherein the rod has a circular cross section in the horizontal plane.
6 . The translation stage of claim 4 , wherein the rod has a rectangular cross section in the horizontal plane.
7 . The translation stage of claim 3 , wherein the one or more ferromagnetic materials comprise:
a single ferromagnetic material shaped as a portion of a ring in the horizontal plane.
8 . The translation stage of claim 1 , wherein the tunable magnetic counterbalance further includes one or more additional actuators connected to at least one of the first or second portions to adjust the length of the gap in the at least one direction.
9 . The translation stage of claim 8 , wherein the one or more ferromagnetic materials comprises:
two or more ferromagnetic materials, wherein the one or more additional actuators adjust a gap distance between at least one of the two or more ferromagnetic materials and at least one of the one or more magnets.
10 . The translation stage of claim 1 , further comprising:
one or more guides to constrain motion between the first and second plates to the vertical direction.
11 . The translation stage of claim 1 , wherein the first portion includes one or more additional ferromagnetic materials, wherein the one or more ferromagnetic materials and the one or more additional ferromagnetic materials at least partially surround the one or more magnets.
12 . The translation stage of claim 1 , wherein the actuator comprises a linear direct drive actuator.
13 . A system comprising:
a first plate;
a second plate, wherein the second plate is moveable with respect to the first plate along a vertical direction associated with a weight of the second plate, wherein the second plate is configured to connect to one or more objects;
one or more magnetic counterbalances coupled to the first and second plates and providing a counterbalance force to the second plate in the vertical direction opposing the weight of the second plate, wherein at least one of the one or more magnetic counterbalances comprises a tunable magnetic counterbalance, wherein the tunable magnetic counterbalance comprises:
a first portion including a rod including one or more magnets, the first portion attached to one of the first plate or the second plate; and
a second portion including a ferromagnetic sleeve formed from one or more ferromagnetic materials and at least partially surrounding the one or more magnets of the rod, the second portion attached to a different one of the first plate or the second plate than the first portion, wherein the one or more ferromagnetic materials of the ferromagnetic sleeve at least partially surround the one or more magnets in a horizontal plane orthogonal to the vertical direction, wherein the first and second portions are separated by a gap, wherein the counterbalance force is adjustable by controlling at least one of a relative rotation angle between the first and second portions in the horizontal plane or a length of the gap along at least one direction, wherein the ferromagnetic sleeve includes a slit configured to weaken magnetic field flow;
a motorized actuator mechanically coupled to at least one of the first portion or the second portion and configured to adjust the relative rotation angle between the first and second portions in the horizontal plane, wherein the actuator is configured to automatically tune the counterbalance force;
a translation stage for positioning a sample in at least the horizontal plane;
an actuator configured to position the second plate with respect to the first plate along the vertical direction;
an encoder, wherein the encoder is configured to measure a relative position of the second plate; and
a controller communicatively coupled to the tunable magnetic counterbalance, the controller including one or more processors configured to execute program instructions causing the one or more processors to:
receive a relative position of the second plate; and
provide feedback to the motorized actuator and the actuator via one or more drive signals.
14 . The system of claim 13 , wherein the one or more processors are further configured to execute program instructions causing the one or more processors to direct, via one or more additional drive signals, the at least one tunable magnetic counterbalance to adjust the counterbalance force to be equal to a combined weight of the second plate and the one or more objects.
15 . The system of claim 13 , wherein positioning the second plate with respect to the first plate along the vertical direction positions at least one of the one or more objects on the second plate with respect to the sample.
16 . The system of claim 13 , further comprising:
a sensor to measure at least one of position of the sample along the vertical direction or a distance in the vertical direction between the sample and the at least one of the one or more objects on the second plate, wherein the one or more processors are further configured to execute program instructions causing the one or more processors to maintain, via the one or more drive signals sent to the actuator, the selected distance in the vertical direction between the sample and the one of the one or more objects on the second plate.
17 . The system of claim 13 , wherein at least one of the one or more magnets has a magnetic polarization direction at least partially in the horizontal plane, wherein the one or more ferromagnetic materials are distributed with at least one slit in the horizontal plane, wherein the counterbalance force is adjustable by controlling the relative rotation angle between the first and second portions in the horizontal plane.
18 . The system of claim 17 , wherein the one or more magnets comprise:
a single magnet with the magnetic polarization direction at least partially in the horizontal plane.
19 . The system of claim 18 , wherein the single magnet is shaped as a rod with a long axis along the vertical direction.
20 . The system of claim 19 , wherein the rod has a circular cross section in the horizontal plane.
21 . The system of claim 19 , wherein the rod has a rectangular cross section in the horizontal plane.
22 . The system of claim 18 , wherein the one or more ferromagnetic materials comprise:
a single ferromagnetic material shaped as a portion of a ring in the horizontal plane.
23 . The system of claim 13 , wherein the tunable magnetic counterbalance further includes one or more additional actuators connected to at least one of the first or second portions to adjust the length of the gap in the at least one direction.
24 . The system of claim 23 , wherein the one or more ferromagnetic materials comprises:
two or more ferromagnetic materials, wherein the one or more additional actuators adjust a gap distance between at least one of the two or more ferromagnetic materials and at least one of the one or more magnets.
25 . The system of claim 13 , further comprising:
one or more guides to constrain motion between the first and second plates to the vertical direction.
26 . The system of claim 13 , wherein the one or more objects connected to the second plate include a lens, wherein the selected distance in the vertical direction between the sample and the one of the one or more objects on the second plate corresponds to a distance between the sample and the lens.
27 . The system of claim 26 , wherein the one or more objects further include a detector configured to image at least a portion of the sample through the lens.
28 . The system of claim 27 , wherein the one or more objects further include an illumination source to illuminate the at least the portion of the sample.
29 . The system of claim 27 , wherein the system comprises a metrology system.
30 . The system of claim 27 , wherein the system comprises an imaging system.
31 . The system of claim 26 , wherein the one or more objects further include a photomask, wherein the photomask and the lens are arranged to project an image of the photomask on the sample.
32 . A method comprising:
placing a sample at a selected distance in a vertical direction from one of one or more objects, wherein the object is connected to a translation stage, wherein the translation stage comprises:
a first plate;
a second plate, wherein the second plate is moveable with respect to the first plate along the vertical direction, wherein the vertical direction is associated with a weight of the second plate, wherein the one or more objects are connected to the second plate;
one or more magnetic counterbalances coupled to the first and second plates and providing a counterbalance force to the second plate in the vertical direction opposing the weight of the second plate, wherein at least one of the one or more magnetic counterbalances comprises a tunable magnetic counterbalance, wherein the tunable magnetic counterbalance comprises:
a first portion including a rod including one or more magnets, the first portion attached to one of the first plate or the second plate; and
a second portion including a ferromagnetic sleeve formed from one or more ferromagnetic materials and at least partially surrounding the one or more magnets of the rod, the second portion attached to a different one of the first plate or the second plate than the first portion, wherein the one or more ferromagnetic materials of the ferromagnetic sleeve at least partially surround the one or more magnets in a horizontal plane orthogonal to the vertical direction, wherein the first and second portions are separated by a gap, wherein the counterbalance force is adjustable by controlling at least one of a relative rotation angle between the first and second portions in the horizontal plane or a size of the gap along at least one direction wherein the ferromagnetic sleeve includes a slit configured to weaken magnetic field flow;
a motorized actuator mechanically coupled to at least one of the first portion or the second portion and configured to adjust the relative rotation angle between the first and second portions in the horizontal plane, wherein the actuator is operatively connected to a controller configured to execute program instructions to automatically tune the counterbalance force; and
an actuator configured to position the second plate with respect to the first plate along the vertical direction; and
an encoder, wherein the encoder is configured to measure a relative position of the second plate and provide feedback to the actuator;
adjusting the counterbalance force to be equal to a combined weight of the second plate and the one or more objects;
generating measurements of at least one of position of the sample along the vertical direction or a distance in the vertical direction between the sample and the at least one of the one or more objects on the second plate; and
maintaining, via the actuator, the selected distance in the vertical direction between the sample and the one of one or more objects based on the measurements.
33 . The method of claim 32 , wherein maintaining, via the actuator, the selected distance in the vertical direction between the sample and the one of one or more objects based on the measurements comprises:
maintaining, via the actuator, the selected distance in the vertical direction between the sample and the one of one or more objects based on the measurements as the sample is translated in the horizontal plane.