Reliability Stress Analysis for Electronic Equipment. TR1100

Reliability Stress Analysis for Electronic Equipment. TR1100 PDF Author: Radio Corporation of America. Defense Electronic Products
Publisher:
ISBN:
Category : Electronic apparatus and appliances
Languages : en
Pages : 196

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Book Description

Reliability Stress Analysis for Electronic Equipment. TR1100

Reliability Stress Analysis for Electronic Equipment. TR1100 PDF Author: Radio Corporation of America. Defense Electronic Products
Publisher:
ISBN:
Category : Electronic apparatus and appliances
Languages : en
Pages : 196

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Book Description


Defense Standardization and Specification Program, Policies, Procedures, and Instructions

Defense Standardization and Specification Program, Policies, Procedures, and Instructions PDF Author: Radio Corporation of America
Publisher:
ISBN:
Category : Electronic apparatus and appliances
Languages : en
Pages : 304

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The Monte Carlo Simulation Method for System Reliability and Risk Analysis

The Monte Carlo Simulation Method for System Reliability and Risk Analysis PDF Author: Enrico Zio
Publisher: Springer Science & Business Media
ISBN: 1447145887
Category : Technology & Engineering
Languages : en
Pages : 204

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Book Description
Monte Carlo simulation is one of the best tools for performing realistic analysis of complex systems as it allows most of the limiting assumptions on system behavior to be relaxed. The Monte Carlo Simulation Method for System Reliability and Risk Analysis comprehensively illustrates the Monte Carlo simulation method and its application to reliability and system engineering. Readers are given a sound understanding of the fundamentals of Monte Carlo sampling and simulation and its application for realistic system modeling. Whilst many of the topics rely on a high-level understanding of calculus, probability and statistics, simple academic examples will be provided in support to the explanation of the theoretical foundations to facilitate comprehension of the subject matter. Case studies will be introduced to provide the practical value of the most advanced techniques. This detailed approach makes The Monte Carlo Simulation Method for System Reliability and Risk Analysis a key reference for senior undergraduate and graduate students as well as researchers and practitioners. It provides a powerful tool for all those involved in system analysis for reliability, maintenance and risk evaluations.

Materials Research in the Navy

Materials Research in the Navy PDF Author: United States. Office of Naval Research
Publisher:
ISBN:
Category : Materials
Languages : en
Pages : 394

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Reliability Abstracts and Technical Reviews

Reliability Abstracts and Technical Reviews PDF Author:
Publisher:
ISBN:
Category : Reliability (Engineering)
Languages : en
Pages : 704

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Reliability and Maintainability Training Handbook

Reliability and Maintainability Training Handbook PDF Author: United States Navy Department. Bureau of Ships. Navy
Publisher:
ISBN:
Category :
Languages : en
Pages : 876

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APAE

APAE PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 374

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SM-1 (APPR-1) Research and Development Program, Task XI

SM-1 (APPR-1) Research and Development Program, Task XI PDF Author: R. E. May
Publisher:
ISBN:
Category : Nuclear power plants
Languages : en
Pages : 376

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Book Description


Failure Analysis

Failure Analysis PDF Author: Marius Bazu
Publisher: John Wiley & Sons
ISBN: 1119990009
Category : Technology & Engineering
Languages : en
Pages : 372

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Book Description
Failure analysis is the preferred method to investigate product or process reliability and to ensure optimum performance of electrical components and systems. The physics-of-failure approach is the only internationally accepted solution for continuously improving the reliability of materials, devices and processes. The models have been developed from the physical and chemical phenomena that are responsible for degradation or failure of electronic components and materials and now replace popular distribution models for failure mechanisms such as Weibull or lognormal. Reliability engineers need practical orientation around the complex procedures involved in failure analysis. This guide acts as a tool for all advanced techniques, their benefits and vital aspects of their use in a reliability programme. Using twelve complex case studies, the authors explain why failure analysis should be used with electronic components, when implementation is appropriate and methods for its successful use. Inside you will find detailed coverage on: a synergistic approach to failure modes and mechanisms, along with reliability physics and the failure analysis of materials, emphasizing the vital importance of cooperation between a product development team involved the reasons why failure analysis is an important tool for improving yield and reliability by corrective actions the design stage, highlighting the ‘concurrent engineering' approach and DfR (Design for Reliability) failure analysis during fabrication, covering reliability monitoring, process monitors and package reliability reliability resting after fabrication, including reliability assessment at this stage and corrective actions a large variety of methods, such as electrical methods, thermal methods, optical methods, electron microscopy, mechanical methods, X-Ray methods, spectroscopic, acoustical, and laser methods new challenges in reliability testing, such as its use in microsystems and nanostructures This practical yet comprehensive reference is useful for manufacturers and engineers involved in the design, fabrication and testing of electronic components, devices, ICs and electronic systems, as well as for users of components in complex systems wanting to discover the roots of the reliability flaws for their products.

Executing Design for Reliability Within the Product Life Cycle

Executing Design for Reliability Within the Product Life Cycle PDF Author: Ali Jamnia
Publisher: CRC Press
ISBN: 1351165712
Category : Technology & Engineering
Languages : en
Pages : 381

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Book Description
At an early stage of the development, the design teams should ask questions such as, "How reliable will my product be?" "How reliable should my product be?" And, "How frequently does the product need to be repaired / maintained?" To answer these questions, the design team needs to develop an understanding of how and why their products fails; then, make only those changes to improve reliability while remaining within cost budget. The body of available literature may be separated into three distinct categories: "theory" of reliability and its associated calculations; reliability analysis of test or field data – provided the data is well behaved; and, finally, establishing and managing organizational reliability activities. The problem remains that when design engineers face the question of design for reliability, they are often at a loss. What is missing in the reliability literature is a set of practical steps without the need to turn to heavy statistics. Executing Design for Reliability Within the Product Life Cycle provides a basic approach to conducting reliability-related streamlined engineering activities, balancing analysis with a high-level view of reliability within product design and development. This approach empowers design engineers with a practical understanding of reliability and its role in the design process, and helps design team members assigned to reliability roles and responsibilities to understand how to deploy and utilize reliability tools. The authors draw on their experience to show how these tools and processes are integrated within the design and development cycle to assure reliability, and also to verify and demonstrate this reliability to colleagues and customers.