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Lightyear seeks a Power Electronics Engineer to drive hands-on design of efficient converters, leveraging wide bandgap semiconductors and magnetics. You will define PV port configurations, work with stakeholders, and iterate prototypes at high speed toward scalable production.
You will balance simulation and lab work, ensure mass manufacturability, and collaborate across functions to reduce cost and complexity for our customers, contributing to sustainable mobility and solar vehicle charging
At Lightyear we are working on a family of power converters to convert solar energy from PV panels on vehicles to their batteries. The converter range consists of LV variants, HV variants and a multi-port variant that is able to convert energy from multiple solar panels to both LV and HV batteries. By intelligently combining several functions, this topology allows for a reduction in component count and improvement in efficiency.
As a Power Electronics Engineer, your role is pivotal. Your primary focus is the hands‑on design of power electronics, with deep expertise in wide bandgap semiconductors and magnetics, while not shying away from tackling analog and digital electronics design. This is not a research‑only role; your work spans the full lifecycle. You will perform topology research, define the optimal number of PV ports and power and voltage ratings, with stakeholders, and develop concepts. Crucially, you will build, test, and iterate on prototypes at high speed to deliver final products.
You must be excellent at both simulation and practical lab work seamlessly switching between the two. We do not value endless time in simulations if it can be verified with a quick prototype, nor do we value prototyping without understanding the underlying physics. We create designs that are built for scale; if it only works in the lab, it isn’t working. You will ensure our solutions are rigorously optimized for mass manufacturability, low cost, reliable, and high performance, directly reducing complexity and cost for our customers.
Your day is dynamic, balancing deep‑dive design work with high‑speed prototyping in the lab. There are no endless planning meetings or administrative loops here; you are empowered to just go. You might start your morning running simulations to validate a new topology concept or optimizing a magnetics design. By midday, you are at the bench, soldering a modified prototype board to verify your latest iteration. You might also jump into a call with a critical supplier to secure components that keep our supply chain moving. You are constantly toggling between simulation, physical testing, and real‑world supply chain considerations, ensuring your theoretical models align with production reality.
When you hit a snag, whether it’s unexpected thermal behavior or a control loop instability, you don’t just move on; you investigate. You pull out the oscilloscope and power analyzer to understand the physics behind the behavior. If the prototype falls short, you analyze the data, consult with cross‑functional experts to refine the concept, and quickly implement a fix.
Crucially, you always keep mass manufacturability in mind. Whether you are defining PV port architectures or selecting components, you are asking, ‘Can we build this at scale at the right cost?’ By the end of the day, you have either validated a design, gained critical insight through a quick prototype, or moved a concept one step closer to production‑ready hardware.
In order to succeed in the dynamic world of Lightyear; pro‑activity, professionalism, communication and adaptability are crucial. We are looking for someone with an ambitious attitude who learns from the past but who is especially open to transforming new developments or ideas into the ‘tried and tested’ of the future!
In addition to a challenging role we also offer:
Lightyear Layer is at the forefront of sustainable mobility, offering innovative solutions that help businesses reduce CO₂ emissions and enhance operational efficiency. Our Vehicle Integrated Photovoltaics (VIPV) platform provides grid‑independent, solar‑powered solutions that maximize energy yield and efficiency, driving a greener future.