TEMPERATURE-INDIFFERENT LENS MODULE WITH DEPTH-PERCEPTION FUNCTION AND ELECTRONIC DEVICE USING THE SAME
20200137273 ยท 2020-04-30
Inventors
- SHENG-JIE DING (Shenzhen, CN)
- SHIN-WEN CHEN (Tu-Cheng, TW)
- JING-WEI LI (Shenzhen, CN)
- JIAN-CHAO SONG (Shenzhen, CN)
Cpc classification
H04N23/54
ELECTRICITY
H04N23/57
ELECTRICITY
H05K2201/10257
ELECTRICITY
H05K2203/167
ELECTRICITY
H05K2201/066
ELECTRICITY
H05K2201/09063
ELECTRICITY
H04N23/55
ELECTRICITY
H04N23/10
ELECTRICITY
H05K2201/10121
ELECTRICITY
International classification
Abstract
A depth-perceiving lens module with enhanced heat-dissipating properties comprises a circuit board, an infrared emitter, and an infrared receiver. The circuit board is provided with at least one positioning hole. The infrared emitter is detachably disposed on a side of the circuit board and electrically connected to the circuit board, the infrared emitter comprises a mounting body and an emitting body. The mounting body wraps at least part of the emitting body, at least part of the mounting body is disposed in the positioning hole and fixed to the circuit board. The infrared receiver is detachably disposed on one side of the circuit board and electrically connected to the circuit board, to receive the reflection of the infrared light from the light emitter.
Claims
1. A lens module, comprising: a circuit board defining at least one positioning hole; a light emitter detachably disposed on and electrically connected to the circuit board, wherein the light emitter comprises a mounting body and an emitting body, the emitting body emits light, the mounting body wraps at least part of the emitting body, the at least part of the mounting body is disposed in the positioning hole and fixed to the circuit board; and a light receiver detachably disposed on and electrically connected to the circuit board, wherein the light receiver receives the reflected light emitted by the light emitter.
2. The lens module of claim 1, wherein the mounting body comprises at least one positioning post, the positioning post matches the positioning hole, and the positioning post is detachable fixed in the positioning hole.
3. The lens module of claim 2, wherein the mounting body comprises at least one through hole, the through hole penetrates through the mounting body, and the emitting body is received in the through hole.
4. The lens module of claim 3, wherein the mounting body comprises a main body portion, the through hole penetrates through the main body portion, and the positioning post is connected to the main body portion.
5. The lens module of claim 4, wherein the body portion is a hollow column structure.
6. The lens module of claim 4, wherein the main body portion is a hollow column structure with some hollow grooves in the structure, and the main body portion comprises a plurality of hollow grooves.
7. The lens module of claim 4, wherein the main body portion comprises a plurality of heat dissipating pins, and the plurality of heat dissipating pins is located at a side of the main body portion away from the through hole, the plurality of heat dissipating pins is spaced apart from each other.
8. The lens module of claim 1, wherein the mounting body is made of metal or metal oxide.
9. The lens module of claim 1, wherein the lens module further comprises at least one RGB camera, the RGB camera is electrically connected to the circuit board.
10. An electronic device comprising: a body; and a lens module disposed in the body, the lens module comprising: a circuit board defining at least one positioning hole; a light emitter detachably disposed on and electrically connected to the circuit board, wherein the light emitter comprises a mounting body and an emitting body, the emitting body emits light, the mounting body wraps at least part of the emitting body, the at least part of the mounting body is disposed in the positioning hole and fixed to the circuit board; and a light receiver detachably disposed on and electrically connected to the circuit board, wherein the light receiver receives the reflected light emitted by the light emitter.
11. The electronic device of claim 10, wherein the mounting body comprises at least one positioning post, the positioning post matches the positioning hole, and the positioning post is detachable fixed in the positioning hole.
12. The electronic device of claim 11, wherein the mounting body comprises at least one through hole, the through hole penetrates through the mounting body, and the emitting body is received in the through hole.
13. The electronic device of claim 12, wherein the mounting body comprises a main body portion, the through hole penetrates through the main body portion, and the positioning post is connected to the main body portion.
14. The electronic device of claim 13, wherein the body portion is a hollow column structure.
15. The electronic device of claim 13, wherein the main body portion is a hollow column structure with some hollow grooves in the structure, and the main body portion comprises a plurality of hollow grooves.
16. The electronic device of claim 13, wherein the main body portion comprises a plurality of heat dissipating pins, and the plurality of heat dissipating pins is located at a side of the main body portion away from the through hole, the plurality of heat dissipating pins is spaced apart from each other.
17. The electronic device of claim 10, wherein the mounting body is made of metal or metal oxide.
18. The electronic device of claim 10, wherein the lens module further comprises at least one RGB camera, the RGB camera is electrically connected to the circuit board.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0004] Implementations of the present disclosure will now be described, by way of embodiments only, with reference to the attached figures.
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DETAILED DESCRIPTION
[0015] It will be appreciated that for simplicity and clarity of illustration, where appropriate, reference numerals have been repeated among the different figures to indicate corresponding or analogous components. In addition, numerous specific details are set forth in order to provide a thorough understanding of the embodiments described herein. However, it will be understood by those of ordinary skill in the art that the embodiments described herein can be practiced without these specific details. In other instances, methods, procedures, and components have not been described in detail so as not to obscure the related relevant feature being described. Also, the description is not to be considered as limiting the scope of the embodiments described herein. The drawings are not necessarily to scale and the proportions of certain parts may be exaggerated to better illustrate details and features of the present disclosure.
[0016] The term comprising, when utilized, means including, but not necessarily limited to; it specifically indicates open-ended inclusion or membership in the so-described combination, group, series, and the like.
First Embodiment
[0017] With reference to
[0018] With reference to
[0019] The circuit board 110 may be a flexible circuit board, a rigid circuit board, or a rigid-flexible circuit board. The circuit board 110 may also be a single layer circuit board, a double layer circuit board, or a multilayer circuit board. The circuit board 110 includes a plurality of conductive wires (not shown). The light emitter 120, the light receiver 150, and the RGB camera 160 are disposed on and electrically connected to the conductive wires, and communicate with other electronic components through the conductive wires.
[0020] With reference to
[0021] The light receiver 150 receives the light reflected from the object. The light receiver 150 converts the received light into an electrical signal and transmits the electrical signal to a central processing unit (not shown). The central processing unit analyzes the electrical signal. In one embodiment, the number of the light receivers 150 may be two. The two light receivers 150 are located at opposite sides of the light emitter 120. The light receiver 150 may be an infrared camera, and the light receiver 150 may sense and receive infrared light.
[0022] The RGB camera 160 can be a conventional camera with acquisition and imaging functions. When the RGB camera 160 detects a human face, the RGB camera 160 wakes up the light emitter 120 and the light receiver 150.
Second Embodiment
[0023] With reference to
[0024] With reference to
[0025] The circuit board 210 may be a flexible circuit board, a rigid circuit board, or a rigid-flexible circuit board. The circuit board 110 may also be a single layer circuit board, a double layer circuit board, or a multilayer circuit board. The circuit board 210 includes a plurality of conductive wires (not shown). The light emitter 220, the light receiver 250, and the RGB camera 260 are disposed on and electrically connected to the conductive wires, and communicate with other electronic components through the conductive wires.
[0026] With reference to
[0027] The light receiver 250 receives the light that from the object. The light receiver 250 converts the received light into an electrical signal and transmits the electrical signal to a central processing unit (not shown). The central processing unit analyzes the electrical signal. In one embodiment, the number of the light receivers 250 may be two. The two light receivers 250 are located at opposite sides of the light emitter 220. The light receiver 250 may be an infrared camera, and the light receiver 250 may sense and receive infrared light.
[0028] The RGB camera 260 can be a conventional camera with acquisition and imaging functions. When the RGB camera 260 detects a human face, the RGB camera 260 wakes up the light emitter 220 and the light receiver 250.
Third Embodiment
[0029] With reference to
[0030] With reference to
[0031] The circuit board 310 may be a flexible circuit board, a rigid circuit board, or a rigid-flexible combination circuit board. The circuit board 110 may also be a single layer circuit board, a double layer circuit board, or a multilayer circuit board. The circuit board 310 includes a plurality of conductive wires (not shown). The light emitter 320, the light receiver 350, and the RGB camera 360 are disposed on and electrically connected to the conductive wires of the circuit board 310 wires, and communicate with other electronic components through the conductive wires.
[0032] With reference to
[0033] The light receiver 350 receives the reflection of the light that emitted by the light emitter 320. The light receiver 350 converts the received light into an electrical signal and transmits the electrical signal to a central processing unit (not shown). The central processing unit analyzes the electrical signal. In one embodiment, the number of the light receivers 350 may be two. The two light receivers 350 are located at opposite sides of the light emitter 320. The light receiver 350 may be an infrared camera, and the light receiver 350 may sense and receive infrared light.
[0034] The RGB camera 360 can be a conventional camera with acquisition and imaging functions. When the RGB camera 360 detects a human face, the RGB camera 360 wakes up the light emitter 320 and the light receiver 350.
[0035] The lens module of the first to third embodiments enhances the heat dissipation capability of the light emitter by setting the mounting body of the wrapping emitting body. The quality is improved. At least part of the mounting body is disposed in the positioning hole and fixed to the circuit board, thereby enhancing the fixing strength of the light emitter and the circuit board, thereby increasing the robustness.
[0036]
[0037] The embodiments shown and described above are only examples. Therefore, many commonly-known features and details are neither shown nor described. Even though numerous characteristics and advantages of the present technology have been set forth in the foregoing description, together with details of the structure and function of the present disclosure, the disclosure is illustrative only, and changes may be made in the detail, including in matters of shape, size, and arrangement of the parts within the principles of the present disclosure, up to and including the full extent established by the broad general meaning of the terms used in the claims. It will therefore be appreciated that the embodiments described above may be modified within the scope of the claims.