IP Library Granted Patent US 7,079,328
Granted Patent B2
US 7,079,328 · App. 10/738,011 · Granted Jul 18, 2006

Path-bending zoom optical system

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 7,079,328
App. No.
10/738,011
Granted
Jul 18, 2006
Kind
B2
Abstract

A zoom optical system includes, in order from the object side, a first lens unit with negative refracting power, a second lens unit with positive refracting power, and a lens unit with negative refracting power. When the magnification of the zoom lens is changed in the range from a wide-angle position to a telephoto position, at least, the second lens unit is moved along the optical axis, and the first lens unit includes a path-bending element for bending the optical path. The path-bending element includes at least one reflecting surface for bending the optical path, an entrance surface, and an exit surface, and at least one of the entrance surface and the exit surface is configured as a curved surface rotationally symmetrical with respect to the optical axis. Whereby, a slim design of the optical system can be achieved.

Claims (46)

1. A zoom optical system comprising, in order from an object side:

a first lens unit with negative refracting power;

a second lens unit with positive refracting power; and

another lens unit with negative refracting power,

wherein when a magnification of the zoom optical system is changed in a range from a wide-angle position to a telephoto position, at least the second lens unit is moved along an optical axis,

wherein the first lens unit includes a path-bending element for bending an optical path, and

wherein the zoom optical system satisfies the following condition:

−5< f 1/√( fW×fT )<−0.2

where f 1 is a focal length of the first lens unit, fW is a focal length of an entire system under a condition where an infinite object point is in focus at the wide-angle position, and fT is a focal length of the entire system under a condition where the infinite object point is in focus at the telephoto position.

2. A zoom optical system according to claim 1 , satisfying the following condition:

0.2 <M 3 /M 2<2.0

where M 2 is a range of movement of the second lens unit and M 3 is a range of movement of the another lens unit with negative refracting power.

3. A zoom optical system comprising, in order from an object side:

a first lens unit with negative refracting power;

a second lens unit with positive refracting power; and

a lens unit with negative refracting power,

wherein when a magnification of the zoom optical system is changed in a range from a wide-angle position to a telephoto position, at least the second lens unit is moved along an optical axis,

wherein the first lens unit includes a path-bending element for bending an optical path, and

wherein the first lens unit includes moving lens components and satisfies the following condition:

−5 <f 1/√( fW×fT )<−0.2

where f 1 is a focal length of the first lens unit, fW is a focal length of an entire system under a condition where an infinite object point is in focus at the wide-angle position, and fT is a focal length of the entire system under a condition where the infinite object point is in focus at the telephoto position, and f 1 is defined by:

f 1=√( f 1 W×f 1 T )

where f 1 W is a focal length of the first lens unit at the wide-angle position and f 1 T is a focal length of the first lens unit at the telephoto position.

4. A zoom optical system comprising, in order from an object side:

a first lens unit with negative refracting power;

a second lens unit with positive refracting power; and

a lens unit with negative refracting power,

wherein when a magnification of the zoom optical system is changed in a range from a wide-angle position to a telephoto position, at least the second lens unit is moved along an optical axis,

wherein the first lens unit includes a path-bending element for bending an optical path, and

wherein a lens unit located at a most image-side position is provided and satisfies the following condition:

0.3 <f 4/√( fW×fT )<4

where f 4 is a focal length of the lens unit located at a most image-side position, fW is a focal length of an entire system under a condition where an infinite object point is in focus at the wide-angle position, and fT is a focal length of the entire system under a condition where the infinite object point is in focus at the telephoto position.

5. An information processor comprising:

a zoom optical system according to any one of claims 1 , 3 and 4 ;

an electronic image sensor located at a position of an image formed by the zoom optical system;

a processing device for processing an electronic signal;

an input section for inputting information;

a display element displaying an output from the processing device; and

a recording medium recording the output from the processing device.

6. An information processor according to claim 5 , wherein the zoom optical system is housed in a periphery of the display element or of the input section.

7. A telephone comprising:

a zoom optical system, according to any one of claims 1 , 3 and 4 ;

an electronic image sensor located at a position of an image formed by the zoom optical system;

an input section for inputting information;

a processing device for processing an electronic signal; and

an antenna for transmitting and receiving the electronic signal.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 23, 2021
From: OLYMPUS CORPORATION
To: OM DIGITAL SOLUTIONS CORPORATION
Reel/Frame 058199/0738 →
CHANGE OF ADDRESS Recorded Jun 27, 2016
From: OLYMPUS CORPORATION
To: OLYMPUS CORPORATION
Reel/Frame 039344/0502 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 18, 2003
From: KUBA, KEIICHI
To: OLYMPUS CORPORATION
Reel/Frame 014823/0138 →