The MathWorks, Inc.
Cambridge, Cambridgeshire
Job Summary MathWorks has a hybrid work model that enables staff members to split their time between office and home. The hybrid model provides the advantage of having both in-person time with colleagues and flexible at-home life optimizations. Learn More: Do you enjoy making complex physical behavior easier for other engineers to model and trust? Join the Simscape Electrical team at MathWorks. We build the physical modeling libraries, analysis utilities, and examples that engineers worldwide rely on to study electrical networks, from microgrids and renewable plants to utility-scale grids. Our components are used for everything from load flow and harmonic studies through to detailed electromagnetic transient analysis. Take a look at Simscape Electrical. At MathWorks, modeling engineers are members of multidisciplinary product teams that include documentation content developers, quality engineers, technical marketing specialists, and usability professionals, all with a common goal: to develop high-quality engineering design tools that meet the needs of customers ranging from students to experienced professional engineers. This team is based in Cambridge, UK, and works closely with colleagues in the United States and India. MathWorks nurtures growth, appreciates inclusivity, encourages initiative, values teamwork, shares success, and rewards excellence. Responsibilities You will contribute to product planning, design, development, and testing for the power system components in Simscape Electrical. You will work with a multi-national, cross-functional team, taking responsibility for technical work. Develop and verify mathematical models of electrical machines, transformers, transmission lines, and cables, including frequency-dependent and magnetic domain effects. Support components across phasor-mode and electromagnetic transient simulation, including initialization to steady state. Create analysis utilities and apps for studies such as load flow, harmonics, and fault analysis. Build reference examples on benchmark networks and on applications such as microgrids and renewable plants. Model inverter-based resources and their interaction with network dynamics and protection. Validate models against reference data or benchmark studies. Present modeling approaches and design proposals to colleagues in design reviews. Qualifications A bachelor's degree and 6 years of professional work experience (or a master's degree and 3 years of professional work experience, or a PhD degree, or equivalent experience) is required. Additional Qualifications Required We are looking for most of the following, gained through industry, research, or applied project work: Modeling power system components such as generators, transformers, or transmission and distribution networks. Power system studies such as load flow, fault analysis, harmonics, or dynamic and transient analysis. Phasor-based or electromagnetic transient simulation, and the engineering questions each approach supports. Translating physical power system behavior into simulation-ready, parameterized models. Plusses None of the following is required; experience of any would strengthen an application: Protection concepts such as overcurrent or distance relay coordination. Grid-forming and grid-following converter, machine, or microgrid controls. Renewable integration, inverter-based resources, or converter-dominated grids. Utility, ISO/RTO, or consultancy workflows such as planning, operations, interconnection, or protection studies. MATLAB and Simulink for modeling, analysis, or automation. Simscape Electrical models and workflows. Building documented, reusable components used by a broad engineering community.
Job Summary MathWorks has a hybrid work model that enables staff members to split their time between office and home. The hybrid model provides the advantage of having both in-person time with colleagues and flexible at-home life optimizations. Learn More: Do you enjoy making complex physical behavior easier for other engineers to model and trust? Join the Simscape Electrical team at MathWorks. We build the physical modeling libraries, analysis utilities, and examples that engineers worldwide rely on to study electrical networks, from microgrids and renewable plants to utility-scale grids. Our components are used for everything from load flow and harmonic studies through to detailed electromagnetic transient analysis. Take a look at Simscape Electrical. At MathWorks, modeling engineers are members of multidisciplinary product teams that include documentation content developers, quality engineers, technical marketing specialists, and usability professionals, all with a common goal: to develop high-quality engineering design tools that meet the needs of customers ranging from students to experienced professional engineers. This team is based in Cambridge, UK, and works closely with colleagues in the United States and India. MathWorks nurtures growth, appreciates inclusivity, encourages initiative, values teamwork, shares success, and rewards excellence. Responsibilities You will contribute to product planning, design, development, and testing for the power system components in Simscape Electrical. You will work with a multi-national, cross-functional team, taking responsibility for technical work. Develop and verify mathematical models of electrical machines, transformers, transmission lines, and cables, including frequency-dependent and magnetic domain effects. Support components across phasor-mode and electromagnetic transient simulation, including initialization to steady state. Create analysis utilities and apps for studies such as load flow, harmonics, and fault analysis. Build reference examples on benchmark networks and on applications such as microgrids and renewable plants. Model inverter-based resources and their interaction with network dynamics and protection. Validate models against reference data or benchmark studies. Present modeling approaches and design proposals to colleagues in design reviews. Qualifications A bachelor's degree and 6 years of professional work experience (or a master's degree and 3 years of professional work experience, or a PhD degree, or equivalent experience) is required. Additional Qualifications Required We are looking for most of the following, gained through industry, research, or applied project work: Modeling power system components such as generators, transformers, or transmission and distribution networks. Power system studies such as load flow, fault analysis, harmonics, or dynamic and transient analysis. Phasor-based or electromagnetic transient simulation, and the engineering questions each approach supports. Translating physical power system behavior into simulation-ready, parameterized models. Plusses None of the following is required; experience of any would strengthen an application: Protection concepts such as overcurrent or distance relay coordination. Grid-forming and grid-following converter, machine, or microgrid controls. Renewable integration, inverter-based resources, or converter-dominated grids. Utility, ISO/RTO, or consultancy workflows such as planning, operations, interconnection, or protection studies. MATLAB and Simulink for modeling, analysis, or automation. Simscape Electrical models and workflows. Building documented, reusable components used by a broad engineering community.
The MathWorks, Inc.
Cambridge, Cambridgeshire
Job Summary MathWorks has a hybrid work model that enables staff members to split their time between office and home. The hybrid model provides the advantage of having both in-person time with colleagues and flexible at-home life optimizations. Learn More: Do you enjoy turning hands-on circuit design knowledge into tools that other engineers can build on? Join the Simscape Electrical team at MathWorks. We build the physical modeling libraries, analysis utilities, and examples that engineers worldwide use to design power converters, from low-power supplies to gigawatt HVDC. Our components include semiconductor, magnetic, and passive device models, and our work spans designing those models so that they can be easily parameterized from real device data, assembling them into converter topologies, and building the workflows that connect circuit-level design to system-level studies. Take a look at Simscape Electrical. At MathWorks, modeling engineers are members of multidisciplinary product teams that include documentation content developers, quality engineers, technical marketing specialists, and usability professionals, all with a common goal: to develop high-quality engineering design tools that meet the needs of customers ranging from students to experienced professional engineers. This team is based in Cambridge, UK, and works closely with colleagues in the United States and India. MathWorks nurtures growth, appreciates inclusivity, encourages initiative, values teamwork, shares success, and rewards excellence. Responsibilities You will contribute to product planning, design review, development, and testing for the power electronics components in Simscape Electrical. You will work with a multi-national, cross-functional team, taking responsibility for technical work. Develop and verify mathematical models of semiconductor devices, gate drivers, magnetics, and passive components, across a variety of fidelity levels and abstractions. Represent switching and conduction losses, and thermal behavior using Cauer and Foster network representations. Assemble components into pre-defined power modules and examples of common converter topologies, including DC-DC, DC-AC, AC-DC, resonant, and soft-switching. Select and size converter components according to design requirements. Create analysis workflows and apps to help engineers size components, select device ratings, and tune control loops. Validate abstracted models against datasheet data and foundry models. Present modeling approaches and design proposals to colleagues in design reviews. Qualifications A bachelor's degree and 6 years of professional work experience (or a master's degree and 3 years of professional work experience, or a PhD degree, or equivalent experience) is required. Additional Qualifications Required We are looking for most of the following, gained through industry, research, or applied project work: Semiconductor devices and gate-driver interfaces. Filter and magnetics design, and how each shapes converter behavior. Power converter circuit design, including component sizing and design trade-offs. Abstracting real circuits into simulation-ready, parameterized models. Plusses None of the following is required; experience of any would strengthen an application: Hard- and soft-switching techniques, resonant topologies, or switching loss mechanisms. Familiar with power electronic technologies such as wide-bandgap devices (SiC or GaN) and cutting-edge converter topologies. Power factor correction, dual active bridge, or DC-DC converter control. Industrial power electronics applications such as renewables, EV charging, motor drives, energy storage, or aerospace. MATLAB and Simulink for modeling, analysis, or automation. Simscape Electrical, SPICE tools, or other circuit simulation environments. Building documented, reusable components used by a broad engineering community.
Job Summary MathWorks has a hybrid work model that enables staff members to split their time between office and home. The hybrid model provides the advantage of having both in-person time with colleagues and flexible at-home life optimizations. Learn More: Do you enjoy turning hands-on circuit design knowledge into tools that other engineers can build on? Join the Simscape Electrical team at MathWorks. We build the physical modeling libraries, analysis utilities, and examples that engineers worldwide use to design power converters, from low-power supplies to gigawatt HVDC. Our components include semiconductor, magnetic, and passive device models, and our work spans designing those models so that they can be easily parameterized from real device data, assembling them into converter topologies, and building the workflows that connect circuit-level design to system-level studies. Take a look at Simscape Electrical. At MathWorks, modeling engineers are members of multidisciplinary product teams that include documentation content developers, quality engineers, technical marketing specialists, and usability professionals, all with a common goal: to develop high-quality engineering design tools that meet the needs of customers ranging from students to experienced professional engineers. This team is based in Cambridge, UK, and works closely with colleagues in the United States and India. MathWorks nurtures growth, appreciates inclusivity, encourages initiative, values teamwork, shares success, and rewards excellence. Responsibilities You will contribute to product planning, design review, development, and testing for the power electronics components in Simscape Electrical. You will work with a multi-national, cross-functional team, taking responsibility for technical work. Develop and verify mathematical models of semiconductor devices, gate drivers, magnetics, and passive components, across a variety of fidelity levels and abstractions. Represent switching and conduction losses, and thermal behavior using Cauer and Foster network representations. Assemble components into pre-defined power modules and examples of common converter topologies, including DC-DC, DC-AC, AC-DC, resonant, and soft-switching. Select and size converter components according to design requirements. Create analysis workflows and apps to help engineers size components, select device ratings, and tune control loops. Validate abstracted models against datasheet data and foundry models. Present modeling approaches and design proposals to colleagues in design reviews. Qualifications A bachelor's degree and 6 years of professional work experience (or a master's degree and 3 years of professional work experience, or a PhD degree, or equivalent experience) is required. Additional Qualifications Required We are looking for most of the following, gained through industry, research, or applied project work: Semiconductor devices and gate-driver interfaces. Filter and magnetics design, and how each shapes converter behavior. Power converter circuit design, including component sizing and design trade-offs. Abstracting real circuits into simulation-ready, parameterized models. Plusses None of the following is required; experience of any would strengthen an application: Hard- and soft-switching techniques, resonant topologies, or switching loss mechanisms. Familiar with power electronic technologies such as wide-bandgap devices (SiC or GaN) and cutting-edge converter topologies. Power factor correction, dual active bridge, or DC-DC converter control. Industrial power electronics applications such as renewables, EV charging, motor drives, energy storage, or aerospace. MATLAB and Simulink for modeling, analysis, or automation. Simscape Electrical, SPICE tools, or other circuit simulation environments. Building documented, reusable components used by a broad engineering community.