Reliable Design of Medical Devices
Autor Richard C. Friesen Limba Engleză Paperback – 31 mar 2017
Reliability engineering is an integral part of the product development process and of problem-solving activities related to manufacturing and field failures. Mirroring the typical product development process, the book is organized into seven parts. After an introduction to the basics of reliability engineering and failures, it takes you through the concept, feasibility, design, verification and validation, design transfer and manufacturing, and field activity phases. Topics covered include Six Sigma for design, human factors, safety and risk analysis, and new techniques such as accelerated life testing (ALT) and highly accelerated life testing (HALT).
What’s New in This Edition
- Updates throughout, reflecting changes in the field
- An updated software development process
- Updated hardware test procedures
- A new layout that follows the product development process
- A list of deliverables needed at the end of each development phase
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Specificații
ISBN-13: 9781138075191
ISBN-10: 1138075191
Pagini: 504
Ilustrații: Approximately 50 equations; 39 Tables, black and white; 80 Illustrations, black and white
Dimensiuni: 156 x 234 x 26 mm
Greutate: 0.61 kg
Ediția:3rd edition
Editura: CRC Press
Colecția CRC Press
Locul publicării:Boca Raton, United States
ISBN-10: 1138075191
Pagini: 504
Ilustrații: Approximately 50 equations; 39 Tables, black and white; 80 Illustrations, black and white
Dimensiuni: 156 x 234 x 26 mm
Greutate: 0.61 kg
Ediția:3rd edition
Editura: CRC Press
Colecția CRC Press
Locul publicării:Boca Raton, United States
Public țintă
Academic, Professional, and Professional Practice & DevelopmentCuprins
The Basics of Reliability: Reliability. The Concept of Failure. The Product Design and Development Process. The Concept Phase: Defining the Device. Safety and Risk Management. Documents and Deliverables. The Feasibility Phase: The FDA. The Medical Devices Directives. Important Medical Device Standards. Human Factors. Requirements Engineering. Liability. Intellectual Property. The Project Team. The Reliability Goal and Plan. Documents and Deliverables. The Design Phase: Hardware Design. Hardware Risk Analysis. Design and Project Metrics. Design for Six Sigma. Software Design. Software Coding. Software Risk Analysis. Software Metrics. Documents and Deliverables. Verification and Validation: The Basis and Types of Testing. Hardware Verification and Validation. Hardware Data Analysis. Software Verification and Validation. Software Data Analysis. Documents and Deliverables. Design Transfer and Manufacturing: Transfer to Manufacturing. Hardware Manufacturing. Software Manufacturing. Configuration Management. Documents and Deliverables. Field Activity: Analysis of Field Data. Monitored Activity. Appendices. Index.
Notă biografică
Richard Fries, PE, CSQE, CRE, is president of ISORel, Inc., a consulting firm located in Fitchburg, Wisconsin. He is a licensed professional engineer in the state of Wisconsin and is certified by the American Society for Quality as a Reliability Engineer and a Software Quality Engineer. Mr. Fries is a member of the IEEE Software Engineering Subcommittee. He was a member of the AAMI Medical Device Software Committee that developed IEC 62304. He was also a member of the AAMI Technical Committee that developed ISO 13485.
Recenzii
"This book focuses on an important topic ... that engineers need to understand in all of its aspects—philosophy, design, and testing and evaluation. They also need to know how they fit in to the larger picture (manufacturing, packaging, etc…). This book provides both an overview of those facets, along with details to implement them. It is thus a valuable resource for students, researchers, and industry [professionals] who wish to develop a product."
—Jon Sensinger, Rehabilitation Institute of Chicago, Illinois, USA
"… my interest is piqued. I think it can be a very interesting and useful resource for engineers and other stakeholders involved in the medical device design and production process."
—Carl Nelson, University of Nebraska-Lincoln, USA
"Don’t let the name fool you– this book is about much more than reliability engineering. While this book opens with a discussion of reliability and failure, it quickly transitions to discussing the entire product development process, from concept through verification, and even includes design transfer and post-market field actions. …There is a lot of wisdom in this book. You can tell that the author has seen a lot of projects and wants the reader to avoid the mistakes that he has encountered."
––Reading Room, Biomedical Instrumentation and Technology, September/October 2013
—Jon Sensinger, Rehabilitation Institute of Chicago, Illinois, USA
"… my interest is piqued. I think it can be a very interesting and useful resource for engineers and other stakeholders involved in the medical device design and production process."
—Carl Nelson, University of Nebraska-Lincoln, USA
"Don’t let the name fool you– this book is about much more than reliability engineering. While this book opens with a discussion of reliability and failure, it quickly transitions to discussing the entire product development process, from concept through verification, and even includes design transfer and post-market field actions. …There is a lot of wisdom in this book. You can tell that the author has seen a lot of projects and wants the reader to avoid the mistakes that he has encountered."
––Reading Room, Biomedical Instrumentation and Technology, September/October 2013
Descriere
Following in the footsteps of the bestselling second edition, this book shows you how to improve reliability in the design of advanced medical devices. The organization of the book now mirrors the typical product development process, from the concept, feasibility, and design phases through to verification and validation, design transfer and manufacturing, and field activity. Updated throughout, it reflects recent changes in the medical device field, including in software development and hardware test procedures. This practical, hands-on book guides you in preparing, designing, and testing medical devices more effectively.