Prognostics implementation methods for electronics
Jie Gu, Nikhil Vichare, Terry A. Tracy, MICHAEL G. PECHT
Abstract
Jie Gu, Nikhil Vichare, Terry A. Tracy, MICHAEL G. PECHT
Abstract
Prognostics is a method that enables monitoring the state of reliability of a product in real time, and therefore can be used to provide advance warning of a failure, to minimize unscheduled maintenance, to provide condition-based maintenance, and to help in product design and development. This paper identifies six levels of prognostics implementation for electronics, from on-chip packaging to complete systems of systems. An approach is then presented for selecting the implementation levels to cost-effectively optimize coverage. The process of selecting the prognostic approach and its implementation at various levels in electronics is enabled using failure modes, mechanisms, and effects analysis.
OpenAlex reports 55 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
Prognostics is a method that enables monitoring the state of reliability of a product in real time, and therefore can be used to provide advance warning of a failure, to minimize unscheduled maintenance, to provide condition-based maintenance, and to help in product design and development. This paper identifies six levels of prognostics implementation for electronics, from on-chip packaging to complete systems of systems. An approach is then presented for selecting the implementation levels to cost-effectively optimize coverage. The process of selecting the prognostic approach and its implementation at various levels in electronics is enabled using failure modes, mechanisms, and effects analysis.
Key concepts: Prognostics, Reliability engineering, Reliability (semiconductor), Electronics, Process (computing), Computer science, Maintenance engineering, Product (mathematics)