IP Library Granted Patent US 8,851,713
Granted Patent B2
US 8,851,713 · App. 13/241,138 · Granted Oct 7, 2014

Lens member and optical unit using said lens member

Inventors: Yasuaki Kayanuma (Fujiyoshida, JP); Junji Miyashita (Fujiyoshida, JP)
Assignees: Citizen Electronics Co., Ltd.; Citizen Holdings Co., Ltd.
F21V5/04F21K9/00F21S48/215G02B19/0028F21S48/236G02B3/08F21Y2105/001F21V5/045F21S48/2212F21Y2101/02G02B19/0061F21L4/00F21V7/0091
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 8,851,713
App. No.
13/241,138
Granted
Oct 7, 2014
Kind
B2
Abstract

A lens member includes a central axis, a light-incident side including a Fresnel-lens surface provided with a plurality of annular prisms concentrically arranged with respect to the central axis, and a light-exit surface opposite to the light-incident side. The Fresnel-lens surface further includes an annular lens portion that is concentrically arranged with respect to the central axis and that is extended to be longer and wider than the plurality of annular prisms. Provided is an optical unit in which a light source and a lens member are combined, and parts are disposed in a space provided in an outer periphery of the annular lens portion.

Claims (65)

1. A lens member comprising:

a central axis;

a light-incident side including a Fresnel-lens surface provided with a plurality of annular prisms that are concentrically arranged with respect to the central axis; and

a light-exit surface opposite to the light-incident side;

the Fresnel-lens surface further including an annular lens portion that is concentrically arranged with respect to the central axis, and that is extended to be longer than the plurality of annular prisms in a direction of the central axis and wider than a total width of at least two annular prisms of the plurality of annular prisms in a direction perpendicular to the central axis.

2. The lens member according to claim 1 ;

wherein the annular lens portion is positioned at an outer peripheral portion of the Fresnel-lens surface.

3. The lens member according to claim 1 ;

wherein the annular lens portion includes an annular inner surface and an annular outer surface that is positioned outside the annular inner surface; and

wherein the annular inner surface and the annular outer surface are in contact with each other to form a common lower edge and make an acute angle at the common lower edge.

4. The lens member according to claim 1 ;

wherein the annular inner surface and the annular outer surface are inclined surfaces having respective angles with respect to the central axis.

5. The lens member according to claim 1 ;

wherein the annular lens portion includes an annular inner surface, an annular outer surface that is positioned outside of the annular inner surface, and an annular inclined surface connecting a lower end of the annular inner surface and a lower end of the annular outer surface of the annular lens portion.

6. The lens member according to claim 5 ;

wherein the annular inner surface and the annular outer surface of the annular lens are extended parallel to the central axis and below the light-incident side.

7. The lens member according to claim 5 ;

wherein the annular inner surface and the annular outer surface of the annular lens portion are extended parallel to the central axis toward below the light-incident side; and

wherein the annular inner surface is extended to be longer than the annular outer surface.

8. The lens member according to claim 1 ;

wherein the annular lens portion is provided between the central axis and an outer peripheral edge portion of the Fresnel-lens surface and includes an annular inner surface and an annular outer surface that is positioned outside of the annular inner surface; and

wherein some of the plurality of annular prisms are positioned outside of the annular outer surface of the annular lens portion.

9. The lens member according to claim 1 ;

wherein the annular lens portion is provided at an outer peripheral edge portion of the Fresnel-lens surface and includes an annular inner surface and an annular outer surface that is positioned outside of the annular inner surface; and

wherein the lens portion receives light through the annular inner surface and reflects the light at the annular outer surface toward the light-exit surface.

10. The lens member according to claim 1 ;

wherein the light-exit surface includes a flat surface.

11. The lens member according to claim 10 ;

wherein the flat surface includes a plurality of convex portions that are provided on the light-exit surface at an annular position above the annular lens portion.

12. The lens member according to claim 1 ;

wherein the plurality of annular prisms of the Fresnel-lens surface have a continuous surface continuously formed by a concave-shaped surface and a raised surface that is disposed on the central axis and in the center of the concave-shaped surface.

13. A lens member comprising:

a central axis;

a light-incident side including a Fresnel-lens surface provided with a plurality of annular prisms concentrically arranged with respect to the central axis on a continuous surface continuously formed by a concave-shaped surface and a raised surface that is disposed on the central axis and in the center of the concave-shaped surface; and

a light-exit surface opposite to the light-incident side ;

the Fresnel-lens surface further including an annular lens portion that is concentrically arranged with respect to the central axis, and that is extended to be longer than the plurality of annular prisms in a direction of the central axis and wider than a total width of at least two annular prisms of the plurality of annular prisms in a direction perpendicular to the central axis; and

the annular lens portion being extended longer below the light-incident side than the raised surface at the central axis.

14. An optical unit comprising;

the lens member of claim 1 ;

a light source including a light-emitting surface smaller than the Fresnel-lens surface of the lens member; and

at least one parts disposed below the light-incident side of the lens member and disposed outside of the light source and the annular lens portion in a direction perpendicular to the central axis.

15. An optical unit comprising;

the lens member of claim 13 ;

a substrate disposed below the light-incident side of the lens member;

a light source including a light-emitting surface smaller than the Fresnel-lens surface of the lens member and disposed on the substrate; and

at least one parts disposed on the substrate below the light-incident side of the lens member and disposed outside of the light source and the annular lens portion in a direction perpendicular to the central axis.

16. The optical unit according to claim 14 ,

wherein the at least one parts is disposed below the plurality of annular prisms that are positioned in a direction perpendicular to the central axis outside of the annular lens portion.

17. The optical unit according to claim 15 ,

wherein the at least one parts is positioned below the plurality of annular prisms that are positioned in a direction perpendicular to the central axis outside of the annular lens portion.

18. The optical unit comprising:

a lens member comprising a central axis, a light-incident side including a Fresnel-lens surface provided with a plurality of annular prisms that are concentrically arranged with respect to the central axis, and a light-exit surface opposite to the light-incident side, the Fresnel-lens surface further including an annular lens portion that is concentrically arranged with respect to the central axis and that is extended to be longer and wider than the plurality of annular prisms;

a substrate disposed below the light-incident side of the lens member;

a light source including a light-emitting surface and provided on the substrate;

a frame supporting an outer peripheral portion of the lens member with the central axis of the lens member and a center of the light-emitting surface of the light source being coincident with each other; and

at least one parts provided on the substrate within the frame below the light-incident side of the lens member;

the light-emitting surface of the light source being smaller than the Fresnel-lens surface of the lens member and positioned inside the annular inner surface of the annular lens portion in a direction perpendicular to the central axis; and

the at least one parts being positioned outside of the annular lens portion in the direction perpendicular to the central axis.

19. The optical unit according to claim 15 further comprising:

a frame supporting an outer peripheral portion of the lens member with the central axis of the lens member and a center of the light-emitting surface of the light source being coincident with each other.

20. The lens member according to claim 1 , wherein the annular lens portion includes an annular inner surface and an annular outer surface that is positioned outside the annular inner surface, and

wherein a chamfer is provided between the annular inner surface and the annular outer surface.

21. The optical unit according to claim 18 ,

wherein the annular lens portion of the lens member includes an annular inner surface and an annular outer surface that is positioned outside the annular inner surface, and

wherein a chamfer is provided between the annular inner surface and the annular outer surface of the annular lens portion of the lens member.

Assignments (2)
CHANGE OF NAME Recorded May 22, 2017
From: CITIZEN HOLDINGS CO. LTD.
To: CITIZEN WATCH CO., LTD.
Reel/Frame 042527/0306 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 6, 2014
From: KAYANUMA, YASUAKI; MIYASHITA, JUNJI
To: CITIZEN ELECTRONICS CO., LTD.; CITIZEN HOLDINGS CO., LTD.
Reel/Frame 033046/0718 →
Priority Claims (1)
JP 2010-220089 · Sep 29, 2010 · national
Continuity (1)
Related Publication 20120075870A1 · Mar 29, 2012