AN INTERNALLY ALIGNED CAMERA AND A MANUFACTURING METHOD THEREOF
20230009451 · 2023-01-12
Assignee
Inventors
Cpc classification
H04N23/55
ELECTRICITY
B60R11/04
PERFORMING OPERATIONS; TRANSPORTING
H04N23/54
ELECTRICITY
H04N23/57
ELECTRICITY
International classification
Abstract
The invention provides an internally aligned camera device comprising a front housing assembly, a first printed circuit board (PCB), a second PCB and a flexible PCB, a PCB retention cage and a rear housing assembly. The front housing assembly comprises lens elements for forming an image on an image sensor operably coupled to the first PCB, said image sensor optically aligned with said front housing assembly comprising said lens elements. The second PCB is electrically coupled to said first PCB using a flexible PCB, where the second PCB folded over said first circuit board. The PCB retention cage retains the second PCB in position. The rear housing assembly comprises a metal shield which clamps down the second PCB and said PCB retention cage in position. Further, said front housing assembly is centrally aligned and attached with said rear housing assembly. A method of manufacturing the camera device is also described.
Claims
1. An internally aligned camera device for use in a vehicle, comprising: a front housing assembly comprising lens elements; a first printed circuit board comprising an image sensor, said image sensor optically aligned with said front housing assembly, said first printed circuit board attached to said front housing assembly by a first fastening means; a second printed circuit board electrically coupled to said first printed circuit board using a flexible printed circuit board, wherein said second printed circuit board folded over said first circuit board; a printed circuit board retention cage retaining the second printed circuit board in position using one or more retaining clips; and a rear housing assembly comprising a metal shield comprising one or more spring features, wherein said one or more spring features clamps down the second printed circuit board and said printed circuit board retention cage in position, wherein said front housing assembly is centrally aligned with said rear housing assembly and wherein said front housing assembly and said rear housing assembly is attached using a second fastening means.
2. The device of claim 1, wherein said first fastening means comprises laser soldering said first printed circuit board with one or more solder studs of said front housing assembly.
3. The device of claim 1, wherein said second fastening means comprises laser welding.
4. The device of claim 1, wherein said second printed circuit board comprises a leaf spring connector for electrically coupling said second printed circuit board to an external connector on the rear housing assembly.
5. The device of claim 1, wherein said spring features of said metal shield electrically couples said second printed circuit board and said printed circuit board retention cage to said metal shield.
6. The device of claim 1, wherein walls of said printed circuit board retention cage encloses said first printed circuit board and said second printed circuit board along the edges of said first printed circuit board and said second printed circuit board.
7. A method for manufacturing an internally aligned camera device, comprising: optically aligning an image sensor mounted on a first printed circuit board with a front housing assembly comprising lens elements, said first printed circuit board electrically coupled to a second printed circuit board through a flexible printed circuit board; fastening said first printed circuit board to said front housing assembly using a first fastening means to constrain said first printed circuit board after said optical alignment of said image sensor with said front housing assembly; placing a printed circuit board retention cage on said front housing assembly; folding said second printed circuit board over said first printed circuit board and fastening said second printed circuit board to said printed circuit board retention cage using a second fastening means; soldering a leaf spring connector on said second printed circuit board; assembling a rear housing assembly with said front housing assembly, said rear housing assembly comprising a metal shield, said metal shield comprising spring features wherein while assembling said spring features of said metal shield clamps down said second printed circuit board and said printed circuit board retention cage in position using said spring features and wherein while assembling said rear housing assembly is centrally aligned with said front housing assembly; and fastening said rear housing assembly with said front housing assembly in said centrally aligned position using a third fastening means.
8. The method of claim 7, wherein said first fastening means comprises laser soldering said first printed circuit board with one or more solder studs of said front housing assembly.
9. The method of claim 7, wherein said second fastening means comprises retaining clips on the printed circuit board retention cage, wherein said retaining clips are released to prevent the second printed circuit board to spring back to the unfolded position.
10. The method of claim 7, wherein said third fastening means comprises laser welding.
11. The method of claim 7, wherein said assembling of a rear housing assembly with said front housing assembly electrically couples said leaf spring connector to an external connector on the rear housing assembly.
12. The method of claim 7, wherein while assembling said spring features of said metal shield electrically couples said second printed circuit board and said printed circuit board retention cage to said metal shield.
13. The method of claim 7, wherein walls of said printed circuit board retention cage encloses said first printed circuit board along the edges of said first printed circuit board.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0026] The invention will be more clearly understood from the following description of an embodiment thereof, given by way of example only, with reference to the accompanying drawings, in which:—
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DETAILED DESCRIPTION OF THE DRAWINGS
[0040] The present invention relates to an internally aligned camera. More specifically, the present invention relates to an internally aligned camera using a flexible printed circuit board and a printed circuit board retention cage and method of manufacture of said internally aligned camera.
[0041]
[0042] A PCB retention cage 401 is placed on said front housing assembly as shown in
[0043] The second PCB 305 is folded over said first PCB 302 and the second PCB 305 is fastened to the PCB retention cage 401 using a second fastening means.
[0044]
[0045] After the second PCB 305 is folded over, a leaf spring connector 701 is soldered on said second PCB 305.
[0046] A rear housing assembly 801 can be assembled with said front housing assembly 301. The rear housing assembly 801 comprises contact pads 804, a metal shield 802, said metal shield comprising spring features 803.
[0047] While assembling the rear housing assembly 801 with said front housing assembly 301, said rear housing assembly 801 is centrally aligned with said front housing assembly 301.
[0048] Also, while assembling, said spring features 803 of said metal shield further clamps down said second PCB 305 and said PCB retention cage 401 in position using said spring features 803. Further, the assembling of a the rear housing assembly 801 with said front housing assembly 301 electrically couples said leaf spring connector 701 to an external connector on the rear housing assembly 801 via said contact pads 804. Further, while assembling said spring features 803 of said metal shield 802 electrically couples said second PCB 305 and said PCB retention cage 401 to said metal shield 802.
[0049] Finally, the rear housing assembly 801 is fastened with said front housing assembly 301 in said centrally aligned position using a third fastening means. In an embodiment, said third fastening means comprises laser welding the mated portions of the weld interfaces of the rear housing assembly 801 and the front housing assembly 301.
[0050]
[0051] As shown in
[0052] The front housing assembly 301 comprises lens elements for forming an image on an image sensor 1001 operably coupled to the first PCB 302, said image sensor 1001 optically aligned with said front housing assembly 301 comprising said lens elements, and said first PCB 302 is attached to said front housing assembly 301 by a first fastening means. In an embodiment, the first fastening means comprises laser soldering, where said first PCB 302 is laser soldered with one or more of solder studs 303 of said front housing assembly 301.
[0053] The second PCB 305 is electrically coupled to said first PCB 302 using a flexible PCB 304, wherein said second PCB 305 is folded over said first PCB 302. The PCB retention cage 401 retains the second PCB 305 in position using one or more retaining clips. Also, the second PCB 305 comprises a leaf spring connector 701 for electrically coupling said second PCB 305 to an external connector on the rear housing assembly 801.
[0054] The rear housing assembly 801 comprises a metal shield 802 comprising one or more spring features 803, where said one or more spring features 803 clamps down the second PCB 305 and said PCB retention cage 401 in position. As shown in
[0055] Further, said front housing assembly 301 is centrally aligned with said rear housing assembly 801 and where said front housing assembly 301 and said rear housing assembly 801 is attached using a second fastening means. In an embodiment, the second fastening means comprises laser welding.
[0056] In an embodiment, said spring features 803 of said metal shield 802 electrically couples said second PCB 305 and said PCB retention cage 401 to said metal shield 802. Further, the walls of said PCB retention cage 401 encloses said first PCB 302 and said second PCB 305 along the edges of said first PCB 302 and said second PCB.
[0057]
[0058] It will be appreciated that not only does the present invention cures the deficiency of the prior art, in addition, the Faraday's cage formed by the PCB retention cage 401 and the metal shield 802 provides electromagnetic interference shielding to the first PCB 302 and the second PCB 305.
[0059] In the specification the terms “comprise, comprises, comprised and comprising” or any variation thereof and the terms “include, includes, included and including” or any variation thereof are considered to be totally interchangeable and they should all be afforded the widest possible interpretation and vice versa.
[0060] The invention is not limited to the embodiments hereinbefore described but may be varied in both construction and detail.