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Solution for AKKON AOI

Solution for AKKON AOI

 

Using infrared and differential interferometry techniques, a line scan camera is used to optically image the Bump area on the COG and FOG of the liquid crystal panel. The images are analyzed using traditional image algorithms and AI deep learning algorithms to ultimately confirm whether the target detection object is qualified. Used to detect the indentation of ACF conductive particles and bonding foreign objects on the COG and FOG parts of the LCD panel bonding section, including the quantity, distribution, indentation strength, offset, and various foreign objects of the conductive particles.

 


 

Solution Features
  • Differential interference microscopy imaging

    DIC differential interference fiber imaging - clearer and stronger stereoscopic effect.

  • Fast laser autofocus

    Laser autofocus can solve the problem of warping of the measured object.

  • High speed motion stable workbench

    The I-shaped seismic scanning mechanism and marble seismic platform ensure smooth operation.

     

  • AI deep learning re evaluation

    Using AI artificial intelligence systems based on deep learning for re evaluation, reducing false alarm rates and improving detection accuracy.

Recommended solution
AKKON AOI + Foreign object inspection machine

The ACF conductive particle indentation+foreign object inspection machine is used to detect the ACF conductive particle indentation and bonding foreign objects on the COG and FOG parts of the bonding section of the LCD panel, including the number, distribution, indentation strength, deviation, and various foreign objects of the conductive particles. Its core technology is the use of infrared and differential interferometry techniques, using a line scan camera to optically image the bump area on the COG and FOG of the liquid crystal panel. The image is analyzed using traditional image algorithms and AI deep learning algorithms to ultimately confirm whether the target detection object is qualified.

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