Wireless Power Magnetics Architect
2 days ago
California United States, California
Apple
Full-time
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Imagine what you could do here. At Apple, new ideas have a way of becoming extraordinary products, services, and customer experiences very quickly. Bring passion and dedication to your job and there"s no telling what you could accomplish. Dynamic, intelligent people and inspiring, innovative technologies are the norm here. The people who work here have reinvented entire industries with all Apple Hardware products. The same passion for innovation that goes into our products also applies to our practices strengthening our commitment to leave the world better than we found it. Join us to help deliver the next groundbreaking Apple product. Do you love working on challenges that no one has solved yet? As a member of our dynamic group, you will have the unique and rewarding opportunity to craft upcoming products that will delight and inspire millions of Apple’s customers every single day.
This is an opportunity to participate in a multifaceted and outstanding engineering group at one of the world’s leading companies. Candidates will have the opportunity to work on highly technical topics related to some of Apple’s latest products in power technology. In particular, the role includes participation in the design, simulation, testing and analysis of current and future wireless power products. The role requires broad knowledge of finite element analysis (FEA) modeling (using commercial tools) of the magnetic field. The candidate should have basic knowledge of the physics of magnetic materials, Maxwell’s equations, and finite element analysis. This is a unique opportunity in designing inductive power links with mass production intent. Candidates with a creative attitude and who are eager to undertake new challenges will find this role especially fulfilling.
Drive new techniques in simulation and measurement for improved efficiency and accuracy\\nElectromagnetic analysis of various geometrical structures (FEA)\\nAid in risk assessments and co-existence analysis\\nRigorously document designs and key parameters \\nUse of analytic tools (such as Excel, Mathcad, Matlab) for basic sizing, weight, system performance\\nUse of specialized thermal simulation software\\nAnalysis and verification of designs with Finite Element Analysis (e.g. COMSOL Multiphysics)\\nWork with cross-functional team such as electrical engineers, mechanical designers and material scientists\\nExperimental validation of designs via measurement of key parameters and correlation to simulation and analytic predictions\\nParticipate in material selection through experimental/theoretical investigations, working with external vendors, and other cross-functional teams to find optimized solutions
Background in electromagnetics and a sound facility with Maxwell’s equations\\nExperience with COMSOL and/or Maxwell FEA simulation tools\\nFamiliarity in creating multi-physics models to help predict electrical performance as it relates to wireless charging\\nMinimum requirement of a bachelors degree
Familiarity with common lab equipment and measurement techniques including network analyzers, LCR meter, power supply/amplifiers, oscilloscopes, etc.\\nExperience in creating mathematical, computational, and numerical models for reduced order and more complex thermal analysis \\nFamiliarity with statistical analysis of design perturbations\\nExperience with transformer theory and modeling\\nUnderstanding of physics of magnetic materials\\nWorking knowledge in heat transfer \\nM.
S. + 3 yrs experience or Ph.
D. (preferred) in material science or power electronics (ECE) program, or related area (e.g. engineering physics)
This is an opportunity to participate in a multifaceted and outstanding engineering group at one of the world’s leading companies. Candidates will have the opportunity to work on highly technical topics related to some of Apple’s latest products in power technology. In particular, the role includes participation in the design, simulation, testing and analysis of current and future wireless power products. The role requires broad knowledge of finite element analysis (FEA) modeling (using commercial tools) of the magnetic field. The candidate should have basic knowledge of the physics of magnetic materials, Maxwell’s equations, and finite element analysis. This is a unique opportunity in designing inductive power links with mass production intent. Candidates with a creative attitude and who are eager to undertake new challenges will find this role especially fulfilling.
Drive new techniques in simulation and measurement for improved efficiency and accuracy\\nElectromagnetic analysis of various geometrical structures (FEA)\\nAid in risk assessments and co-existence analysis\\nRigorously document designs and key parameters \\nUse of analytic tools (such as Excel, Mathcad, Matlab) for basic sizing, weight, system performance\\nUse of specialized thermal simulation software\\nAnalysis and verification of designs with Finite Element Analysis (e.g. COMSOL Multiphysics)\\nWork with cross-functional team such as electrical engineers, mechanical designers and material scientists\\nExperimental validation of designs via measurement of key parameters and correlation to simulation and analytic predictions\\nParticipate in material selection through experimental/theoretical investigations, working with external vendors, and other cross-functional teams to find optimized solutions
Background in electromagnetics and a sound facility with Maxwell’s equations\\nExperience with COMSOL and/or Maxwell FEA simulation tools\\nFamiliarity in creating multi-physics models to help predict electrical performance as it relates to wireless charging\\nMinimum requirement of a bachelors degree
Familiarity with common lab equipment and measurement techniques including network analyzers, LCR meter, power supply/amplifiers, oscilloscopes, etc.\\nExperience in creating mathematical, computational, and numerical models for reduced order and more complex thermal analysis \\nFamiliarity with statistical analysis of design perturbations\\nExperience with transformer theory and modeling\\nUnderstanding of physics of magnetic materials\\nWorking knowledge in heat transfer \\nM.
S. + 3 yrs experience or Ph.
D. (preferred) in material science or power electronics (ECE) program, or related area (e.g. engineering physics)