Generic shape quality verification process for a mark and read system

    公开(公告)号:US10740582B1

    公开(公告)日:2020-08-11

    申请号:US16253994

    申请日:2019-01-22

    Abstract: A generic shape quality verification process that allows the generalization of Association for Automatic Identification and Mobility (AIM) Direct Part Mark (DPM)/International Organization for Standardization (ISO)/International Engineering Consortium (IEC) (ISO/IEC) 29158 quality metrics for a generic shape marked or marked with a generic technique, wherein the AIM-DPM/ISO-IEC 29158 quality metrics, e.g., Cell Contrast, Cell Modulation, Grid Non Uniformity, Axial Non Uniformity, Fixed Pattern Damage, Unused Error Correction, and Print Growth are generalized to permit verification of a generic shape, are generalized to permit verification of a generic shape, where the process in accordance with the invention consists of the following three steps, i.e., (i) configuration, (ii) calibration and iii) work such that based on computed AIM-DPM/ISO-IEC 29158 metrics, it is possible to verify whether quality of the printed layout is acceptable.

    Generic Shape Quality Verification Process for a Mark and Read System

    公开(公告)号:US20200234017A1

    公开(公告)日:2020-07-23

    申请号:US16253994

    申请日:2019-01-22

    Abstract: A generic shape quality verification process that allows the generalization of Association for Automatic Identification and Mobility (AIM) Direct Part Mark (DPM)/International Organization for Standardization (ISO)/International Engineering Consortium (IEC) (ISO/IEC) 29158 quality metrics for a generic shape marked or marked with a generic technique, wherein the AIM-DPM/ISO-IEC 29158 quality metrics, e.g., Cell Contrast, Cell Modulation, Grid Non Uniformity, Axial Non Uniformity, Fixed Pattern Damage, Unused Error Correction, and Print Growth are generalized to permit verification of a generic shape, are generalized to permit verification of a generic shape, where the process in accordance with the invention consists of the following three steps, i.e., (i) configuration, (ii) calibration and iii) work such that based on computed AIM-DPM/ISO-IEC 29158 metrics, it is possible to verify whether quality of the printed layout is acceptable.

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