IP Library › Granted Patent US 7,283,312
Granted Patent B2
US 7,283,312 · App. 11/411,658 · Granted Oct 16, 2007

Fisheye lens unit

Assignee: Elmo Company, Limited
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Quick Facts
Patent No.
US 7,283,312
App. No.
11/411,658
Granted
Oct 16, 2007
Kind
B2
Abstract

To provide a technique to constitute a fisheye lens unit with a small number of lenses. A fisheye lens unit uses a predetermined projection method, wherein a variation for the predetermined projection method is not less than the variation for an equidistant projection method, the variation being expressed by an increment of an image height in relation to an increment of an incident angle at a predetermined incident angle. The fisheye lens unit includes: a first lens group provided on an object side; a second lens group provided on an image side; and an aperture stop provided between the first lens group and the second lens group. The first lens group consists of three or four lenses, the second lens group consists of two or three lenses including a final lens provided on the furthest image side of the second lens group, and the final lens is an aspheric lens that has an aspheric shape on at least one of two surfaces of the aspheric lens.

Claims (34)

1. A fisheye lens unit that uses a predetermined projection method, wherein a variation for the predetermined projection method is not less than the variation for an equidistant projection method, the variation being expressed by an increment of an image height in relation to an increment of an incident angle at a predetermined incident angle, the fisheye lens unit comprising:

a first lens group provided on an object side;

a second lens group provided on an image side; and

an aperture stop provided between the first lens group and the second lens group,

wherein the first lens group consists of three or four lenses,

the second lens group consists of two or three lenses including a final lens provided on the furthest image side of the second lens group, and

the final lens is an aspheric lens that has an aspheric shape on each of two surfaces of the aspheric lens.

2. A fisheye lens unit that uses a predetermined projection method, wherein a variation for the predetermined projection method is not less than the variation for an equidistant projection method, the variation being expressed by an increment of an image height in relation to an increment of an incident angle at a predetermined incident angle, the fisheye lens unit comprising:

a first lens group provided on an object side;

a second lens group provided on an image side; and

an aperture stop provided between the first lens group and the second lens group,

wherein the first lens group consists of three or four lenses,

the second lens group consists of two or three lenses including a final lens provided on the furthest image side of the second lens group, and

the final lens is an aspheric lens that has an aspheric shape on at least one of two surfaces of the aspheric lens,

and wherein a condition of 1.5<H 1 /2Y<2.5 is satisfied, H 1 being an effective radius of a object side surface of a first lens provided on the furthest object side of the first lens group, and 2Y being a diameter of an image circle formed on an image surface by the fisheye lens unit.

3. A fisheye lens unit that uses a predetermined projection method, wherein a variation for the predetermined projection method is not less than the variation for an equidistant projection method, the variation being expressed by an increment of an image height in relation to an increment of an incident angle at a predetermined incident angle, the fisheye lens unit comprising:

a first lens group provided on an object side;

a second lens group provided on an image side; and

an aperture stop provided between the first lens group and the second lens group,

wherein the first lens group consists of three or four lenses,

the second lens group consists of two or three lenses including a final lens provided on the furthest image side of the second lens group, and

the final lens is an aspheric lens that has an aspheric shape on at least one of two surfaces of the aspheric lens,

and wherein a condition of 0.25<H 1 /R 1 <0.5 is satisfied, H 1 being an effective radius of a object side surface of a first lens provided on the furthest object side of the first lens group, and R 1 being a radius of curvature of the object side surface of the first lens.

4. A fisheye lens unit that uses a predetermined projection method, wherein a variation for the predetermined projection method is not less than the variation for an equidistant projection method, the variation being expressed by an increment of an image height in relation to an increment of an incident angle at a predetermined incident angle, the fisheye lens unit comprising:

a first lens group provided on an object side;

a second lens group provided on an image side; and

an aperture stop provided between the first lens group and the second lens group,

wherein the first lens group consists of three or four lenses,

the second lens group consists of two or three lenses including a final lens provided on the furthest image side of the second lens group, and

the final lens is an aspheric lens that has an aspheric shape on at least one of two surfaces of the aspheric lens,

and wherein a condition of 6.0<ΣD/2Y<8.0 is satisfied, ΣD being a distance on an optical axis between a object side surface of a first lens provided on the furthest object side of the first lens group and an image surface, and 2Y being a diameter of an image circle formed on the image surface by the fisheye lens unit.

5. An imaging apparatus comprising:

the fisheye lens unit in accordance with claim 1 ; and

an imaging device.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 25, 2006
From: KAWADA, MAYUMI
To: ELMO COMPANY, LIMITED
Reel/Frame 017809/0254 →
Priority Claims (1)
JP 2005-363503 · Dec 16, 2005 · national
Continuity (1)
Related Publication 20070139793A1 · Jun 21, 2007