IP Library › Granted Patent US 8,345,337
Granted Patent B2
US 8,345,337 · App. 12/916,440 · Granted Jan 1, 2013

Polygon mirror device with discontinuous angles of reflections

Assignee: Asia Optical International Ltd.
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 8,345,337
App. No.
12/916,440
Granted
Jan 1, 2013
Kind
B2
Abstract

Disclosed is a polygon mirror device with discontinuous angles of reflections discontinuously to reflect a light beam from a light source with at least one angle. The polygon mirror device with discontinuous angles of reflections comprises a motor connecting with a base to rotate the base around a rotation axis. The base has an axial end surface to form a reference plane. The reference plane is approximately perpendicular to the rotation axis. A plurality of reflectors is positioned on the reference plane circularly around the rotation axis. The reflectors tilt relative to the reference plane with respective angles to form respective included angles. When the base is rotated around the rotation axis, at least one of the reflectors is moved to a reflecting location for receiving the light beam from the light source and reflects the light beam with an angle of reflection to form an image at a specific place.

Claims (19)

1. A polygon mirror device with discontinuous angles of reflections, reflecting a light beam from a light source, comprising:

a rotation device;

a base, having a rotation axis, connected with the rotation device for rotating base to circle the rotation axis by the rotation device and having an axial end for defining a reference plane approximately perpendicular to the rotation axis; and

a plurality of reflectors, tilted relative to the reference plane with respective angles to form respective included angles and positioned on the reference plane circularly around the rotation axis to selectively move at least one of the reflectors to a reflecting location for receiving the light beam from the light source and reflecting the light beam with an angle of reflection when the rotation device rotates the base around the rotation axis, wherein the rotation device is a stepping motor.

2. The polygon mirror device with discontinuous angles of reflections of claim 1 , wherein the reflectors have a common contour line surrounding the rotation axis at a plane parallel with the reference plane.

3. The polygon mirror device with discontinuous angles of reflections of claim 2 , wherein the contour line is a circle positioned relative to the rotation axis concentrically.

4. The polygon mirror device with discontinuous angles of reflections of claim 2 , wherein the reflecting location is at the contour line to make the contour line as a locus on the base formed by the light beam.

5. The polygon mirror device with discontinuous angles of reflections of claim 1 , wherein the base further comprises a column having at least one axial end surface to form the reference plane.

6. The polygon mirror device with discontinuous angles of reflections of claim 1 , wherein the reflectors rotate to the reflecting location circularly around the rotation axis with the respective included angles relative to the reference plane according to a predetermined procedure.

7. The polygon mirror device with discontinuous angles of reflections of claim 6 , wherein the predetermined procedure is determined by controlling rotation of the rotation device.

8. The polygon mirror device with discontinuous angles of reflections of claim 1 , wherein the stepping motor is connected with the rotation axis of the base by a shaft.

9. The polygon mirror device with discontinuous angles of reflections of claim 1 , wherein each reflector further comprises a sector block defined by two lines extending radically from the rotation axis and a vertex angle determined with the two lines.

10. The polygon mirror device with discontinuous angles of reflections of claim 9 , wherein each reflector composed by the sector blocks has each surface area according to the vertex angle.

11. The polygon mirror device with discontinuous angles of reflections of claim 1 , wherein the reflectors rotate to the reflecting location circularly around the rotation axis according to a predetermined procedure and the predetermined procedure is determined by arrangement of the reflectors around the rotation axis and respective surface areas of the reflectors.

12. The polygon mirror device with discontinuous angles of reflections of claim 1 , wherein the reflectors are monolithic molded on an axial end surface of the base.

13. A polygon mirror device with discontinuous angles of reflections, reflecting a light beam from a light source, comprising:

a rotation device;

a base, having a rotation axis, connected with the rotation device for rotating base to circle the rotation axis by the rotation device and having an axial end for defining a reference plane approximately perpendicular to the rotation axis; and

a plurality of reflectors, tilted relative to the reference plane with respective angles to form respective included angles and positioned on the reference plane circularly around the rotation axis to selectively move at least one of the reflectors to a reflecting location for receiving the light beam from the light source and reflecting the light beam with an angle of reflection when the rotation device rotates the base around the rotation axis, wherein the reflectors are integrated to an axial end surface of the base by an adhesive.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 24, 2012
From: ASIA OPTICAL CO., INC.
To: ASIA OPTICAL INTERNATIONAL LTD.
Reel/Frame 028842/0089 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 29, 2010
From: LIN, HSIN-YUN
To: ASIA OPTICAL CO., INC.
Reel/Frame 025222/0687 →
Priority Claims (1)
TW 98136941 A · Oct 30, 2009 · national
Continuity (1)
Related Publication 20110102872A1 · May 5, 2011