Camera Module Detection Assembly for Multi-Angle Throughput
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Solution Overview
Problem
The detection efficiency of camera modules in electronic devices, such as mobile phones, during manufacturing is low.
Innovation Solution
A detection device comprising a first detection assembly with a turntable and multiple detection members, and a second detection assembly with a fixing table and detection member, along with a rotation assembly to facilitate sequential and efficient detection of camera modules from different angles and orientations, improving detection efficiency and accuracy.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Productivity
If traditional single-point detection method is used, then device structure is simple, but detection efficiency is low
Solution Approach 1:
The detection device is segmented into multiple detection assemblies (first detection assembly with multiple detection members, second detection assembly), where each assembly performs specific detection functions. This segmentation enables parallel detection of multiple parameters simultaneously, improving detection efficiency while maintaining manageable structural complexity through modular design
Solution Approach 2:
The detection device integrates multiple detection members (first detection members and second detection members) that can detect various parameters of the camera module including optical performance, mechanical properties, and electrical characteristics. This multi-functional approach allows a single device to perform comprehensive detection, improving productivity without requiring multiple separate detection devices
2Measurement precision
If single-angle detection is used, then detection device structure is simple, but detection accuracy is insufficient
Solution Approach 1:
The detection device transitions from single-angle detection to multi-angle detection by arranging detection members at different positions and orientations. The first detection members are arranged in a first direction while the second detection members are arranged in a second direction different from the first, enabling detection from multiple dimensional perspectives. This improves measurement precision by capturing comprehensive spatial information about the camera module
Solution Approach 2:
The detection device incorporates a rotation assembly that can rotate the camera module to different angles during detection. This dynamic adjustment of detection angles allows the same detection members to examine the camera module from multiple orientations, improving detection accuracy without requiring a static complex multi-angle structure
Data Source
AI summary
A detection device and a method for detecting a camera module of a product are provided. The first detection assembly includes a first platform, a turntable, and first detection members. The turntable rotatably is provided with first detection positions. The first detection members are connected to the first platform and surround the turntable. Each first detection position can support the second surface of the product to cause the camera module to face a corresponding first detection member. The turntable rotates the product to cause the camera module to face the next first detection member. The second detection assembly includes a second platform, a fixing table, and a second detection member. The fixing table is provided with a second detection position supporting the first surface of the product to cause the camera module to face the second detection member. The rotation assembly rotates the product detected by the first detection members.


