IP Library › Granted Patent US 9,247,115
Granted Patent B2
US 9,247,115 · App. 14/318,340 · Granted Jan 26, 2016

Imager module for a camera, camera and method for manufacturing the imager module

Inventor: Werner Steinberger (Immenstadt, DE)
Assignee: ROBERT BOSCH GMBH
H04N5/2253H04N5/2252H04N5/2254H04N5/2257Y10T29/49004
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Quick Facts
Patent No.
US 9,247,115
App. No.
14/318,340
Granted
Jan 26, 2016
Kind
B2
Abstract

An imager module for a camera includes: at least one objective holder; an image sensor mounted on the objective holder; and an objective accommodated in a tube area of the objective holder. Multiple contact areas are formed between an outer surface of the objective and the cylindrical inner surface of the tube area of the objective holder by frictional engagement. For this purpose, a first clamping plane is formed in the tube area, and a second clamping plane is formed which is offset from the first clamping plane along a longitudinal axis of the tube area, multiple first contact areas being formed in the first clamping plane, and multiple second contact areas being formed in the second clamping plane and situated distributed around the longitudinal axis in a circumferential direction.

Claims (27)

1. An imager module for a camera, comprising:

an objective holder having a tube area;

an image sensor mounted on the objective holder; and

an objective accommodated in the tube area of the objective holder;

wherein multiple contact areas are formed between an outer surface of the objective and the inner surface of the tube area of the objective holder by frictional engagement, wherein a first clamping plane is formed in the tube area, and wherein a second clamping plane is formed which is offset from the first clamping plane along a longitudinal axis of the tube area, and wherein the multiple contact areas include (i) multiple first contact areas formed in the first clamping plane, and (ii) multiple second contact areas formed in the second clamping plane and distributed around the longitudinal axis in a circumferential direction, and wherein in each of the first and second clamping planes, one of the inner surface of the tube area or the outer surface of the objective has radially protruding contact elevations, and the other one of inner surface of the tube area or the outer surface of the objective has wedge areas whose radius changes in the circumferential direction, for forming the frictional engagement during a relative rotation of the objective in the tube area.

2. The imager module as recited in claim 1 , wherein three contact areas are formed distributed in the circumferential direction in each of the two clamping planes.

3. The imager module as recited in claim 2 , wherein the multiple first and second contact areas are formed in the respective first and second clamping planes at the identical angular position, and each second contact area is situated behind a corresponding first contact area of the first clamping plane in the direction of the longitudinal axis.

4. The imager module as recited in claim 2 , wherein a space which is free of contact areas is provided between the first and second clamping planes.

5. The imager module as recited in claim 1 , wherein, in a starting angular position, the contact elevations are disengaged from the wedge areas for a contact-free insertion process, the inner surface of the tube area in the first and second clamping planes in the angular areas between the wedge areas having an inside radius which is greater than an outside radius of the contact elevations.

6. The imager module as recited in claim 1 , wherein the wedge areas each have a monotonically changing radius in the circumferential direction, in the form of a logarithmic spiral.

7. The imager module as recited in claim 1 , wherein the contact elevations are formed on the outer surface of the objective, and the wedge areas are formed on the inner surface of the tube area.

8. The imager module as recited in claim 7 , wherein the contact elevations have one of a flat tip or a tip extending at a decreasing slope.

9. The imager module as recited in claim 7 , wherein an adhesive material for at least one of sealing and integral fixation is introduced into a radial gap between the inner surface of the objective holder and the outer surface of the objective.

10. A camera, comprising:

a camera housing; and

an imager module at least partially provided in the camera housing, the imager module including:

an objective holder having a tube area;

an image sensor mounted on the objective holder; and

an objective accommodated in the tube area of the objective holder;

wherein multiple contact areas are formed between an outer surface of the objective and the inner surface of the tube area of the objective holder by frictional engagement, wherein a first clamping plane is formed in the tube area, and wherein a second clamping plane is formed which is offset from the first clamping plane along a longitudinal axis of the tube area, and wherein the multiple contact areas include (i) multiple first contact areas formed in the first clamping plane, and (ii) multiple second contact areas formed in the second clamping plane and distributed around the longitudinal axis in a circumferential direction, and wherein in each of the first and second clamping planes, one of the inner surface of the tube area or the outer surface of the objective has radially protruding contact elevations, and the other one of inner surface of the tube area or the outer surface of the objective has wedge areas whose radius changes in the circumferential direction, for forming the frictional engagement during a relative rotation of the objective in the tube area.

11. A method for manufacturing an imager module, comprising:

providing (i) an objective holder including a tube area having an inner surface, (ii) an image sensor mounted on the objective holder, and (iii) an objective having an outer surface;

inserting the objective into the tube area in the direction of a longitudinal axis of the tube area;

focusing by longitudinally adjusting the objective in the tube area while evaluating image signals of the image sensor for ascertaining a longitudinal position;

performing a relative rotation of the objective in the tube area to form frictionally engaged contact areas between the outer surface of the objective and the inner surface of the objective holder in two clamping planes which are spaced apart along the longitudinal axis of the tube area; and

at least one of sealing and final fixing by introducing an adhesive material into a radial gap between the outer surface of the objective and the inner surface of the tube area;

wherein a first clamping plane is formed in the tube area, and wherein a second clamping plane is formed which is offset from the first clamping plane along a longitudinal axis of the tube area, and wherein the multiple contact areas include (i) multiple first contact areas formed in the first clamping plane, and (ii) multiple second contact areas formed in the second clamping plane and distributed around the longitudinal axis in a circumferential direction, and wherein in each of the first and second clamping planes, one of the inner surface of the tube area or the outer surface of the objective has radially protruding contact elevations, and the other one of inner surface of the tube area or the outer surface of the objective has wedge areas whose radius changes in the circumferential direction, for forming the frictional engagement during a relative rotation of the objective in the tube area.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 16, 2014
From: STEINBERGER, WERNER
To: ROBERT BOSCH GMBH
Reel/Frame 033745/0318 →
Priority Claims (1)
DE 10 2013 212 748 · Jun 28, 2013 · national
Continuity (1)
Related Publication 20150002737A1 · Jan 1, 2015