Get a reply from this employer — a resume and cover letter tailored to exactly what they’re hiring for.
Quantinuum is seeking an Analog Electrical Engineer in Broomfield, CO to lead designs and enhancements for control systems used in our Apollo and Lumos quantum computers. The role focuses on analog/mixed-signal circuitry with ADC/DACs, low-noise techniques, and precision control loops within a fast-paced, cross-functional environment.
You will perform advanced circuit analysis, drive design reviews, mentor junior engineers, and deliver robust hardware for production in an R&D setting that pushes
We are seeking an Analog Electrical Engineer in our Broomfield, CO location. In this role, you will lead designs and enhancements for the control systems for our Apollo and Lumos quantum computers (Quantinuum system roadmap).The ideal candidate will be an Electrical Engineer with a strong understanding of designs utilizing ADC/DACs, amplifiers, passive/active filtering, analog control loops, and low-noise design techniques and measurements. Candidates should expect to be immersed in a fast-paced, multi-functional team-based environment with challenging technical obstacles to overcome where an individual with talent and initiative can stand out and thrive.
All applicants for placement in safety-sensitive positions will be required to submit to a pre-employment drug test.
$135,000 - $182,000 a year
The pay range for this role is $135,000 – $182,000 annually.Actual compensation within this range may vary based on the candidate’s skills, educational background, professional experience, and unique qualifications for the role.
Quantinuum is a leading quantum computing company delivering a full stack platform designed to make quantum computing deployable in real-world environments. With active engagements spanning pharmaceuticals, material science, financial services, government, industrial sectors, and leading academic and research institutions worldwide, we are helping organizations unlock the transformative potential of quantum computing.
Our global team of more than 800 employees includes many of the world's leading scientists, engineers, and researchers, with more than 70% of our technology team holdingadvanced degrees at the Master's or PhD level. Headquartered in Broomfield, Colorado, Quantinuum operatesacross the United States, United Kingdom, Germany, Japan, and Singapore.
By joining Quantinuum, you'll help shape the future of quantum computing, pushing the limits of technology, and making the impossible possible.
We believe our people are our greatest strength and offer a comprehensive rewards package that supports your professional growth, well-being, and long-term success.
Quantinuum is proud to be an equal opportunity employer. We are committed to building an inclusive workplace where all employees and applicants are treated with respect and provided equal opportunities regardless of race, color, religion, sex, sexual orientation, gender identity or expression, national origin, age, disability, veteran status, ancestry, marital status, or any other characteristic protected by applicable law.
Workplace discrimination is illegal. For more information about Quantinuum, please visit our website.
We are committed to making our recruitment process accessible to all. If you require any reasonable adjustments at any stage of the application or interview process, please let us know use the Lets talk contact form.
Applications will be accepted on an ongoing basis, there is no application deadline for this position.
This role exists to design, refine, and integrate high-precision control hardware for specialized electronic systems. Positioned between embedded software engineers, system architects, and physical integration teams, the position acts as a key bridge for low-noise signal processing. Engineers in this discipline translate system specifications into custom analog electronics, ensuring reliable signal conversion and feedback operations. By managing electrical assemblies and feedback loops, this function enables complex hardware platforms to perform precise physical manipulations within sensitive operational environments.
The role contributes to the quantum ecosystem by providing the physical control infrastructure required to manipulate quantum hardware elements. Advanced quantum processors depend on high-precision, low-noise analog circuitry to generate, filter, and modulate control signals accurately. Positioned at the hardware enablement layer, this engineering function ensures that control signals maintain fidelity during high-sensitivity transport operations. Establishing robust electrical control loops supports the overall reliability and stability of physical processing platforms as hardware architectures scale.