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- Sherlock_Automated_Design_Analysis abstract "Sherlock Automated Design Analysis™ is a software tool developed by DfR Solutions for analyzing, grading, and certifying the expected reliability of products at the circuit card assembly level. The software is designed for use by design and reliability engineers and managers in the electronics industry. Because of the modularity and broad use of electronics, Sherlock has applicability across industries such as automotive, alternative energy, components, consumer electronics, contract manufacturing, data and telecommunications, industrial/power, medical, military/avionics/space, and portables.Based on the science of Physics of Failure, Sherlock predicts failure mechanism-specific failure rates over time using a combination of finite element method and material properties to capture stress values and first order analytical equations to evaluate damage evolution.Sherlock performs several different types of reliability analysis and provides the useful (constant failure rate) and wear out (increasing failure rate) portions of the life curve for each mechanism-component combination. These individual life curves are then summed to provide a physics-based reliability curve for the overall product. Sherlock also provides design rule checks (DRC) for board-level design (schematic and layout) and an overall reliability score. The reliability scoring, which is provided for the overall products – as well as individual scores and commentary for each area of analysis is used when physics-based quantitative predictions are not possible. The analysis is delivered both in PDF and HTML format. Depending on the types of analysis run and the data entered to create the analysis, reports can run between 20 to over 100 pages in length.The graphical interface allows users to examine results, make iterations, and pre-perform analyses as necessary. The software does not allow the user to make permanent changes to the electronic design. This activity takes place within the original EDA or CAD software. This limitation allows a broader range of users to engage with the software and evaluate design robustness and reliability.Sherlock Automated Design Analysis™ produces the following outputs: A reliability score – benchmarks the risk of the design compared to industry best practices Predicted performance over time – allows product teams to project the product performance over its lifecycle A physical map of reliability issues –identifies the likely points of failure A histogram – groups parts by degree of risk Design recommendations –provide solutions to identified problems for rapid resolutionSherlock incorporates stresses from a variety of environments into its physics-based prediction algorithms, including: Elevated Temperature Thermal Cycling Random Vibration Sinusoidal (Harmonic) Vibration Mechanical ShockElectrical stresses (voltage, current, power)Sherlock Automated Design Analysis™ Version 1.0 launched in April 2011. Sherlock is Java based, web deployable, and uses a modular, open architecture which allows for expansion.".
- Sherlock_Automated_Design_Analysis thumbnail Life_curves.png?width=300.
- Sherlock_Automated_Design_Analysis wikiPageExternalLink software.
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- Sherlock_Automated_Design_Analysis wikiPageRevisionID "561457611".
- Sherlock_Automated_Design_Analysis wikiPageWikiLink Alternative_energy.
- Sherlock_Automated_Design_Analysis wikiPageWikiLink Automotive_industry.
- Sherlock_Automated_Design_Analysis wikiPageWikiLink Avionics.
- Sherlock_Automated_Design_Analysis wikiPageWikiLink Category:Articles_created_via_the_Article_Wizard.
- Sherlock_Automated_Design_Analysis wikiPageWikiLink Category:Computer-aided_engineering_software.
- Sherlock_Automated_Design_Analysis wikiPageWikiLink Computer-aided_design.
- Sherlock_Automated_Design_Analysis wikiPageWikiLink Consumer_electronics.
- Sherlock_Automated_Design_Analysis wikiPageWikiLink Contract_manufacturer.
- Sherlock_Automated_Design_Analysis wikiPageWikiLink Electronic_component.
- Sherlock_Automated_Design_Analysis wikiPageWikiLink Physics_of_failure.
- Sherlock_Automated_Design_Analysis wikiPageWikiLink Power_electronics.
- Sherlock_Automated_Design_Analysis wikiPageWikiLink Printed_circuit_board.
- Sherlock_Automated_Design_Analysis wikiPageWikiLink Reliability_engineering.
- Sherlock_Automated_Design_Analysis wikiPageWikiLink Space_industry.
- Sherlock_Automated_Design_Analysis wikiPageWikiLink Telecommunication.
- Sherlock_Automated_Design_Analysis wikiPageWikiLink File:Life_curves.png.
- Sherlock_Automated_Design_Analysis wikiPageWikiLink File:Sherlock_map_showing_strain_expected_during_impact_across_the_PCBA.png.
- Sherlock_Automated_Design_Analysis wikiPageWikiLinkText "Sherlock Automated Design Analysis".
- Sherlock_Automated_Design_Analysis wikiPageWikiLinkText "software programs".
- Sherlock_Automated_Design_Analysis wikiPageUsesTemplate Template:Notability.
- Sherlock_Automated_Design_Analysis wikiPageUsesTemplate Template:Reflist.
- Sherlock_Automated_Design_Analysis subject Category:Articles_created_via_the_Article_Wizard.
- Sherlock_Automated_Design_Analysis subject Category:Computer-aided_engineering_software.
- Sherlock_Automated_Design_Analysis hypernym Tool.
- Sherlock_Automated_Design_Analysis type Software.
- Sherlock_Automated_Design_Analysis comment "Sherlock Automated Design Analysis™ is a software tool developed by DfR Solutions for analyzing, grading, and certifying the expected reliability of products at the circuit card assembly level. The software is designed for use by design and reliability engineers and managers in the electronics industry.".
- Sherlock_Automated_Design_Analysis label "Sherlock Automated Design Analysis".
- Sherlock_Automated_Design_Analysis sameAs Q7495069.
- Sherlock_Automated_Design_Analysis sameAs m.0hgn8cv.
- Sherlock_Automated_Design_Analysis sameAs Q7495069.
- Sherlock_Automated_Design_Analysis wasDerivedFrom Sherlock_Automated_Design_Analysis?oldid=561457611.
- Sherlock_Automated_Design_Analysis depiction Life_curves.png.
- Sherlock_Automated_Design_Analysis isPrimaryTopicOf Sherlock_Automated_Design_Analysis.