IP Library Granted Patent US 11,359,937
Granted Patent B2
US 11,359,937 · App. 17/013,561 · Granted Jun 14, 2022

Optical-path folding-element with an extended two degree of freedom rotation range

Inventors: Itay Yedid (Karme Yosef, IL); Ephraim Goldenberg (Ashdod, IL); Gil Bachar (Tel Aviv, IL); Gal Barak (Tel Aviv, IL); Yiftah Kowal (Rehovot, IL)
Assignee: Corephotonics Ltd.
G01D5/145G01P13/00G02B7/18G02B7/1827G02B13/0065G03B17/17H01F7/02H04N5/2257H04N5/2258H04N5/2259H04N5/23238H04N5/23296H04N5/2254
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Quick Facts
Patent No.
US 11,359,937
App. No.
17/013,561
Filed
Sep 5, 2020
Granted
Jun 14, 2022
Kind
B2
Art Unit
2852
USPC
324/207.2
Abstract

The present disclosure is of a sensing mechanism for sensing rotation movement around a rotation axis, including: a magnet; and a magnetic sensor configured to detect a magnetic flux of the magnet and to determine a relative shift between the magnet and the magnetic sensor based on change in the detected magnetic flux, wherein the magnet is shaped such that a cross section of the magnet has a width that increases from a point substantially at a center of the magnet towards each end of the magnet, thereby increasing a range of detectable change in the magnetic flux and increasing a corresponding detectable range of the relative shift between the magnet and the magnetic sensor.

Claims (11)

1. A sensing mechanism for sensing rotation movement around a rotation (X) axis, wherein the X axis is substantially perpendicular to the Z axis and wherein a Y axis is orthogonal to the X and Z axes, comprising:

a) a magnet; and

b) a magnetic sensor configured to detect a magnetic flux of the magnet and to determine a relative shift between the magnet and the magnetic sensor based on change in the detected magnetic flux as the magnet rotates around the X axis with a trajectory having an arc projection in a Y-Z plane,

wherein the magnet is shaped such that a cross section of the magnet in a plane defined by the X and the Y axes has a width that increases from a point substantially at a center of the magnet towards each end of the magnet, thereby increasing a range of detectable change in the magnetic flux and increasing a corresponding detectable range of the relative shift between the magnet and the magnetic sensor.

2. The sensing mechanism of claim 1 , wherein the detectible range of the relative shift between the magnet and the magnetic sensor is more than 0.8 mm.

3. The sensing mechanism of claim 1 , wherein the detectible range of relative shift between the magnet and the magnetic sensor is more than 1.0 mm.

4. The sensing mechanism of claim 1 , wherein the detectible range of relative shift between the magnet and the magnetic sensor is more than 2.0 mm.

5. The sensing mechanism of claim 1 , wherein the magnetic sensor is a Hall bar sensor.

6. The sensing mechanism of claim 2 , wherein the magnetic sensor is a Hall bar sensor.

7. The sensing mechanism of claim 3 , wherein the magnetic sensor is a Hall bar sensor.

8. The sensing mechanism of claim 4 , wherein the magnetic sensor is a Hall bar sensor.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 7, 2022
From: YEDID, ITAY; GOLDENBERG, EPHRAIM; BACHAR, GIL; BARAK, GAL; KOWAL, YIFTAH
To: COREPHOTONICS LTD.
Reel/Frame 060430/0592 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 2, 2022
From: YEDID, ITAY; GOLDENBERG, EPHRAIM; BACHAR, GIL; BARAK, GAL; KOWAL, YIFTAH
To: COREPHOTONICS LTD.
Reel/Frame 060393/0286 →
Continuity (4)
Continuation 16615310
Provisional Application 62661158 · Apr 23, 2018
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