A mathematical programming approach for optimizing control plans in semiconductor manufacturing
نویسندگان
چکیده
In a globally competitive environment, sustaining high yield with a minimum number of quality controls is key for manufacturing plants to remain competitive. In modern semiconductor manufacturing facilities, with the moves to ever smaller geometries and the variety among products to be run concurrently, designing efficient control plans is becoming increasingly complex. Since a 100% of inspection is neither feasible nor interesting because of the cost and reliability of each control, dynamically identifying the right product to inspect is one of the keys to achieve high yield and reduce the cycle time. However, when control parameters are overor under-estimated, a dynamic sampling static sampling strategy can lead to poor results. In this paper we propose an integer linear programming approach to optimize the use of inspection capacity through dynamic sampling. The goal is to determine two key parameters (called warning limit and inhibit limit) that are related to the resulting level of risk and the available inspection capacity. The model has been implemented on a commercial solver and tested using actual industrial data. Results show that the overall risk can be strongly reduced without any additional capacity. & 2014 Elsevier B.V. All rights reserved.
منابع مشابه
Design of single-sampling inspection-plan approach by mathematical programming and linear assignment method
This study proposes a new approach for single-sampling plan by determining sample size and acceptance number. The proposed approach is based on a two-step methodology. In the first step: quality management step, different single sampling inspection plans were generated by running an optimization model for different possible acceptance numbers. While, in the second step: Multi-Attribute Decision...
متن کاملA Fuzzy Goal Programming Approach for Optimizing Non-normal Fuzzy Multiple Response Problems
In most manufacturing processes, each product may contain a variety of quality characteristics which are of the interest to be optimized simultaneously through determination of the optimum setting of controllable factors. Although, classic experimental design presents some solutions for this regard, in a fuzzy environment, and in cases where the response data follow non-normal distributions, th...
متن کاملSolving a new mathematical model for cellular manufacturing system: A fuzzy goal programming approach
A fuzzy goal programming-based approach is used to solve a proposed multi-objective linear programming model and simultaneously handle two important problems in cellular manufacturing systems, viz. cell formation and layout design. Considerations of intra-cell layout, the intra-cell material handling can be calculated exactly. The advantages of the proposed model are considering machining cos...
متن کاملManufacturing Cell Configuration Considering Worker Interest Concept Applying a Bi-Objective Programming Approach
Generally, human resources play an important role in manufacturing systems as they can affect the work environment. One of the most important factors affecting the human resources is being an interactional interest among the workers in the workshops. If the workers in a manufacturing cell have the highest surface of the interactional interest level, it causes a significant raise in coordination...
متن کاملTowards Supply Chain Planning Integration: Uncertainty Analysis Using Fuzzy Mathematical Programming Approach in a Plastic Forming Company
Affected by globalization and increased complexity, supply chain managers have learned about the importance of Sales and Operations Planning (S&OP). However, in large scale supply chains, S&OP has received little attention, by both academics and practitioners. The purpose of this manuscript is to investigate the advantages of S&OP process using a mathematical modeling approach in a large scale ...
متن کامل