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Senior Microfabrication Engineer Jobs in Colorado

Senior Microfabrication Engineer information

What does a senior microfabrication engineer do?

A Senior Microfabrication Engineer is responsible for developing and optimizing processes to create micro-scale structures and devices, often used in semiconductors, MEMS, or nanotechnology applications. They design experiments, troubleshoot fabrication issues, and work with advanced equipment such as photolithography, etching, and deposition systems. Additionally, they may lead project teams, mentor junior engineers, and collaborate with researchers to bring innovative microfabrication solutions from concept to production. Their work is crucial in advancing technology in fields like electronics, medical devices, and sensors.

What are the key skills and qualifications needed to thrive as a senior microfabrication engineer?

To thrive as a Senior Microfabrication Engineer, you need deep expertise in semiconductor processing, cleanroom protocols, and a relevant engineering or physics degree, often at the master's or Ph.D. level. Mastery of tools like photolithography systems, etching equipment, and familiarity with CAD and statistical analysis software, as well as relevant certifications in cleanroom operations, are typically required. Strong problem-solving, attention to detail, and effective collaboration skills help drive innovation and troubleshoot complex fabrication challenges. These competencies are crucial for ensuring high-precision device fabrication, process optimization, and team success in advanced manufacturing environments.

What are some common challenges faced by senior microfabrication engineers in managing cleanroom operations?

Senior Microfabrication Engineers often encounter challenges related to maintaining stringent cleanroom standards while coordinating complex fabrication processes. Managing contamination risks, ensuring equipment calibration, and troubleshooting process deviations are everyday aspects of the role. Additionally, balancing multiple project timelines and effectively communicating with cross-functional teams, such as process engineers and quality assurance, are crucial for successful device fabrication. Staying updated with advancements in microfabrication techniques also helps in optimizing workflows and addressing technical issues efficiently.

What is the difference between Senior Microfabrication Engineer vs Process Engineer?

AspectSenior Microfabrication EngineerProcess Engineer
CredentialsBachelor's/Master's in Microengineering, Materials Science, or related fieldsBachelor's/Master's in Chemical, Mechanical, or Industrial Engineering
Work EnvironmentCleanroom fabrication facilities, R&D labsManufacturing plants, production lines
Industry UsageSemiconductor, MEMS, nanotechnology industriesSemiconductor, electronics manufacturing
Common Search/ComparisonYesYes

The Senior Microfabrication Engineer focuses on designing and developing microfabrication processes and equipment, often working in R&D and cleanroom environments. In contrast, Process Engineers optimize and oversee manufacturing processes to ensure efficiency and quality in production. While both roles require technical expertise in fabrication, the Senior Microfabrication Engineer is more involved in process development and innovation, whereas the Process Engineer emphasizes process control and manufacturing efficiency.

What are popular job titles related to Senior Microfabrication Engineer jobs in Colorado?

For Senior Microfabrication Engineer jobs in Colorado, the most frequently searched job titles are:

Senior Analog & Mixed-Signal Engineer (Precision Timing)

Mesa Quantum Systems

Boulder, CO • On-site

$150K - $230K/yr

Full-time

Re-posted 26 days ago


Key responsibilities

  • Own the development of the precision analog front-end, including photodetector signal conditioning, low-noise amplification, and lock-in detection.

  • Design and validate control electronics such as microwave synthesis chain, PLL, VCO, and laser current and thermal control electronics.

  • Build characterization protocols, test fixtures, and automation to validate clock performance against specified targets.


Job description

About Mesa Quantum

Mesa Quantum is building the manufacturing backbone of the quantum economy. We specialize in chip-scale quantum devices, starting with clocks and sensors, that unlock resilient Position, Navigation, and Timing (PNT) for defense, telecom, space, and critical infrastructure. Our team combines world-class expertise in AMO physics, photonics, microfabrication, and engineering to transform breakthrough science into scalable, deployable technology. Backed by top-tier deep-tech investors and the U.S. Department of Defense, MesaQuantum is rapidly scaling and actively recruiting exceptional innovators who want to build the future of quantum technology from the ground up.

The Role

We are hiring a Senior Analog & Mixed-Signal Engineer to lead the development of the precision control electronics at the core of our chip-scale atomic clock platform. You will own the analog front-end, signal conditioning, and control loop architecture that takes our physics package from benchtop validation to fielded product, partnering with our AMO physics, photonics, RF, and systems teams.

This is a hands-on senior role. You are expected to personally execute the bulk of the analog circuit design work, from schematic capture and simulation through bench bring-up and characterization. We are looking for an engineer who is genuinely passionate about designing circuits, takes pride in elegant analog topology, and would rather be at the bench than in front of slides. The work spans precision analog, mixed-signal PCB design, and RF synthesis, with frequent interfacing to the embedded and digital teams. Reports to the CTO.

This is a full-time, on-site position in Boulder, CO.

Key Responsibilities
  • Own the precision analog front-end: photodetector signal conditioning, low-noise transimpedance and instrumentation amplification, and lock-in detection for weak atomic signal recovery
  • Architect and deliver successive generations of the control electronics, driving size, power, and noise improvements at each iteration
  • Design and validate the microwave synthesis chain that drives atomic interrogation, including PLL and VCO architecture, phase noise optimization, and reference distribution
  • Implement precision VCSEL current drive and thermal control electronics for the laser and physics package
  • Build characterization protocols, test fixtures, and automation to validate clock performance against Allan deviation, phase noise, and holdover targets
  • Drive Design for Manufacturability and Design for Test with PCB houses and contract manufacturers as we scale toward high-volume production
  • Mentor junior engineers and act as the senior technical voice in hardware design reviews

Requirements

Required Skills & Experience
  • 10+ years of analog and mixed-signal hardware design, including at least one product taken from prototype through volume production
  • Deep expertise in low-noise precision analog: signal conditioning, low-noise amplifiers, ADC/DAC interfacing, and rigorous noise budgeting
  • Mixed-signal PCB design: multi-layer stack-ups with sensitive analog, RF, and digital domains on a single board; controlled impedance; thermal management; debug experience under signal integrity constraints
  • RF circuit design through GHz, with hands-on experience in low phase noise frequency synthesis, PLLs, and VCOs
  • Strong SPICE simulation and circuit analysis skills, including noise, stability, and tolerance analysis
  • Hands-on proficiency with oscilloscopes, spectrum and phase noise analyzers, network analyzers, source measure units, and signal generators
  • Scripting experience for instrument control, characterization, and data analysis
  • Experience using Git or similar version-control systems within a hardware development environment
Strongly Preferred
  • Chip-scale atomic clocks, rubidium or cesium oscillators, OCXOs, or other precision frequency references
  • Optoelectronics: VCSEL drive design, photodetector readout, laser frequency locking
  • Embedded firmware in C/C++ on ARM Cortex-M class microcontrollers
  • FPGA development in Verilog or SystemVerilog, including real-time DSP IP (lock-in detection, PID, digital filtering)
  • Mixed-signal ASIC familiarity, particularly mixed-signal block specification, verification, or characterization
  • Hardware design under hard size and power budgets (low SWAP-C)
  • Production partnerships with contract manufacturers and PCB houses, including DFM and DFT contribution
  • Defense, aerospace, or space-qualified hardware experience
  • Familiarity with atomic physics or other quantum sensing modalities
Eligibility

Due to U.S. Department of Defense funding requirements, applicants must be U.S. persons (U.S. citizens or lawful permanent residents). The ability to obtain and maintain a U.S. security clearance may be required for certain projects.

Benefits

What We Offer
  • Competitive base salary in the range of $150K to $230K, commensurate with experience, skills, qualifications, and education. Most candidates who meet the minimum qualifications will be hired within the middle portion of the range; placement above the midpoint requires demonstrated expertise significantly beyond the role's minimum requirements, and offers at the top of the range are atypical
  • Meaningful equity in a deep-tech company at the inflection point between prototype and product
  • Comprehensive benefits package
  • Direct ownership of a critical subsystem with measurable impact on a product that matters to U.S. national security
  • A team that includes deep AMO physics, RF, photonics, and microfabrication expertise
  • Boulder location with access to Colorado's strongest tech and outdoor communities