In this thesis, we have worked on the problem of implementing dynamic control plans in a high-mix semiconductor environment. We focused on the trade-off between yield and cycle time, the minimization of the number of controls without added value, and the optimization of the use of inspection capacity. We started our works by formalizing and generalizing the problem through a literature review. Then, we proposed three main solutions to industrially implement dynamic control plan policies. The first solution we proposed is based on an indicator that enables a very large amount of data to be handled and several risk types assessed with little CPU. The second solution is based on smart sampling algorithms we developed to enable the dynamic sele...
In the past several decades, significant amount of resources have been spent by many manufactures fo...
For sub-90nm technologies, the complexity of the structures is so important that the control of the ...
In the context of Industry 4.0 and the More than Moore’s paradigm, delivery precision and short cycl...
Dans cette thèse, nous avons travaillé sur le problème de la mise œuvre des plans de contrôle dynami...
Dans cette thèse, nous avons travaillé sur le problème de la mise œuvre des plans de contrôle dynami...
International audienceIn a globally competitive environment, sustaining high yield with a minimum nu...
International audienceWorldwide competition, the move to ever smaller geometries in manufacturing pr...
International audienceIn a worldwide environment, sustaining high yield with a minimum number of qua...
In semiconductor manufacturing, several types of controls are required to ensure the quality of fina...
L'industrie des semi-conducteurs est caractérisée par une production de forte variabilité et de faib...
International audienceIn order to minimize yield losses due to excursions, when a process or a tool ...
Search for methods to control & reduce variability & management efforts along with associated risk e...
In today's connected societies, computers, sensors, data centers, automotive electronics and portabl...
In this study, we consider the problem of production planning in the semiconductor industry characte...
International audienceIn order to optimize the number of controls in semiconductor manufacturing, a ...
In the past several decades, significant amount of resources have been spent by many manufactures fo...
For sub-90nm technologies, the complexity of the structures is so important that the control of the ...
In the context of Industry 4.0 and the More than Moore’s paradigm, delivery precision and short cycl...
Dans cette thèse, nous avons travaillé sur le problème de la mise œuvre des plans de contrôle dynami...
Dans cette thèse, nous avons travaillé sur le problème de la mise œuvre des plans de contrôle dynami...
International audienceIn a globally competitive environment, sustaining high yield with a minimum nu...
International audienceWorldwide competition, the move to ever smaller geometries in manufacturing pr...
International audienceIn a worldwide environment, sustaining high yield with a minimum number of qua...
In semiconductor manufacturing, several types of controls are required to ensure the quality of fina...
L'industrie des semi-conducteurs est caractérisée par une production de forte variabilité et de faib...
International audienceIn order to minimize yield losses due to excursions, when a process or a tool ...
Search for methods to control & reduce variability & management efforts along with associated risk e...
In today's connected societies, computers, sensors, data centers, automotive electronics and portabl...
In this study, we consider the problem of production planning in the semiconductor industry characte...
International audienceIn order to optimize the number of controls in semiconductor manufacturing, a ...
In the past several decades, significant amount of resources have been spent by many manufactures fo...
For sub-90nm technologies, the complexity of the structures is so important that the control of the ...
In the context of Industry 4.0 and the More than Moore’s paradigm, delivery precision and short cycl...