Product Validation Engineer at Allegro MicroSystems, LLC
Prague, Prague, Czechia -
Full Time


Start Date

Immediate

Expiry Date

19 Sep, 26

Salary

0.0

Posted On

21 Jun, 26

Experience

0 year(s) or above

Remote Job

Yes

Telecommute

Yes

Sponsor Visa

No

Skills

Python, LabVIEW, C++, Analog Circuits, Digital Circuits, Semiconductor Validation, Bench Testing, PCB Design, Hardware Troubleshooting, Data Analysis, Automated Control Scripts, DFT

Industry

Semiconductors

Description
The Allegro team is united by a clear purpose—advancing technologies that make the world safer, more efficient, and more sustainable. With over 30 years of experience in semiconductor innovation, we bring that purpose to life across every part of the business—from breakthrough product development and customer success to how we show up for each other and the communities we serve. The Opportunity Allegro MicroSystems is seeking a motivated and technically curious Product Validation Engineer to join our global validation team. In this role, you will be responsible for verifying that our innovative semiconductor products meet the highest standards of performance and reliability. You will work within an interdisciplinary environment, collaborating with Design and Test Engineering to execute automated validation plans. This is an ideal role for an engineer who thrives on solving technical puzzles, has a passion for lab automation, and is eager to grow their expertise in complex IC architectures. What You Will Do Develop and execute efficient automated control scripts for bench equipment (oscilloscopes, power supplies, DAQs) to validate Allegro’s Power and Sensor ICs. Write and implement clean, optimized test code (typically in Python, LabVIEW, or C++) to characterize new silicon performance against datasheet specifications. Perform detailed analysis of validation data, identifying trends or anomalies and providing clear, data-driven recommendations to the design team. Assist in the creation of comprehensive evaluation plans for new products, ensuring all critical circuit blocks are thoroughly tested. Design and assemble hardware test setups, including custom PCB load boards and interface circuitry required for high-performance validation Participate in technical reviews and "Design for Test" (DFT) discussions, contributing your insights from the bench to help improve future product generations. Develop a solid understanding of standard circuit blocks (regulators, amplifiers, oscillators) and begin exploring more complex system-level architectures. What You Will Need Bachelor’s degree in Electrical Engineering (BSEE) or a related field. Related experience in semiconductor validation, bench testing, or electronics design. (Recent graduates with strong internship experience in lab automation are encouraged to apply). Foundational knowledge of analog and digital circuits. Experience with lab equipment and at least one programming/scripting language (Python is highly preferred at Allegro). A self-directed learner with a "consultative" approach; you don't just report a failure—you investigate why it happened and suggest potential causes. Ability to troubleshoot hardware and software issues on the bench with a logical, step-by-step methodology. Strong written and verbal communication skills for documenting test results and collaborating with global engineering team Why Allegro? Join Allegro and become part of a team where your contributions truly matter. We foster a culture of Real Innovation, empowering you to push boundaries, develop cutting-edge solutions, and drive continuous improvement. Your work will create a Real Impact by solving complex real-world challenges that fuel our success and shape the future of technology. You’ll experience Real Connection, collaborating with talented colleagues around the globe in an environment built on trust, respect, and a shared purpose. Join us—and help build what’s next. Allegro MicroSystems (NASDAQ: ALGM) is a global leader in sensing and power semiconductor solutions, committed to driving e-mobility, clean energy, automation, and robotics forward. Through Real Innovation, we're developing intelligent technologies that move the world toward a safer, more sustainable, and autonomous future. Our acquisition of Crocus Technology further strengthens our leadership in magnetic sensing, bringing cutting-edge TMR technology to our world-class portfolio. At Allegro, your work creates Real Impact. Our advanced magnetic position and current sensors, power management ICs, brushless motor drivers, and LED lighting drivers are at the heart of critical systems worldwide. From extending the range of electric vehicles and enabling smarter factories to powering efficient data centers and enhancing autonomous driving, our solutions touch lives every day. If you're driving a car, using cloud services, or receiving a package, you're interacting with Allegro's technology in action. We believe in Real Connection. With a diverse team of over 4,400 employees across 17 countries and headquartered in Manchester, NH (USA), Allegro fosters a truly global and collaborative environment. Our engineering, manufacturing, and support teams worldwide are united by a shared mission, working together with trust, respect, and purpose. We encourage you to think differently, take informed risks, and build what's next. Our dedication to pioneering solutions is reflected in our extensive portfolio of over 1,400 worldwide patents. Allegro is not just building technology; we're building careers where your contributions matter, your growth is valued, and you can make a lasting difference. Our unwavering commitment to excellence is underscored by our IATF16949:2016 and ISO14001:2015 certifications and the quality awards we've received globally. Join us and help shape the future – where your innovation, impact, and connection will drive what's next!
Responsibilities
Develop and execute automated control scripts to validate Power and Sensor ICs against datasheet specifications. Design hardware test setups and collaborate with Design and Test Engineering to improve future product generations.
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