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Mixed Signal Verification Engineer Jobs (NOW HIRING)

* Design and architect mixed-signal verification environments, including Real Number Model (RNM) and ... Mentor and lead junior verification engineers, defining best practices and establishing ...

$100K - $122K/yr

Mixed Signal Design Verification Engineer****Position Summary**Integrated Circuit Solutions (ICS) Group is seeking a highly motivated **Mixed Signal Design Verification Engineer** with a strong ...

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Mixed Signal Verification Engineer information

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$142.6K

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How much do mixed signal verification engineer jobs pay per year?

As of Sep 11, 2026, the average yearly pay for mixed signal verification engineer in the United States is $142,619.00, according to ZipRecruiter salary data. Most workers in this role earn between $136,000.00 and $136,000.00 per year, depending on experience, location, and employer.

What is a mixed signal verification engineer?

Mixed Signal Verification Engineers are professionals who test and validate integrated circuits (ICs) that contain both analog and digital components, ensuring they function correctly together. They develop verification plans, create simulation environments, and use specialized tools to identify and resolve design issues before manufacturing. Their work is critical in industries like consumer electronics, automotive, and communications, where mixed signal chips are widely used. Mixed Signal Verification Engineers often collaborate with design, analog, and digital teams to ensure comprehensive verification coverage.

What skills and qualifications are needed to be a mixed signal verification engineer?

To thrive as a Mixed Signal Verification Engineer, you need a strong background in electrical engineering, solid understanding of both analog and digital circuits, and experience in verification methodologies such as UVM or SystemVerilog. Familiarity with EDA tools like Cadence, Mentor Graphics, and SPICE simulators, along with knowledge of scripting languages (e.g., Python, Perl), is typically required. Strong analytical thinking, attention to detail, and effective communication skills help you identify design issues and collaborate with cross-functional teams. These skills are crucial for ensuring the reliability and performance of complex integrated circuits in demanding applications.

How does a mixed signal verification engineer collaborate with design and analog teams during verification?

Mixed Signal Verification Engineers work closely with both digital and analog design teams to ensure seamless integration and accurate functionality of mixed-signal circuits. They often participate in regular design reviews, clarify interface requirements, and coordinate on testbench development. Effective communication is key, as they must translate complex analog behaviors into digital verification environments and address issues that may arise during simulation or silicon validation. This collaborative approach not only streamlines the verification process but also helps in identifying and resolving system-level issues early.

What cities are hiring for Mixed Signal Verification Engineer jobs?

Cities with the most Mixed Signal Verification Engineer job openings:

What states have the most Mixed Signal Verification Engineer jobs?

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What are popular job titles related to Mixed Signal Verification Engineer jobs?

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Infographic showing various Mixed Signal Verification Engineer job openings in the United States as of September 2026, with employment types broken down into 1% Internship, 87% Full Time, 9% Part Time, and 3% Contract. Highlights an 86% Physical, 4% Hybrid, and 10% Remote job distribution, with an average salary of $142,619 per year, or $68.6 per hour.

Senior Mixed-Signal Verification Engineer -Power Management ICs

San Jose, CA • On-site

Other

Re-posted 26 days ago


Job description

Senior Mixed-Signal Verification Engineer - Power Management ICs

What You’ll Do

  • Develop and execute mixed-signal verification plans for high-current IVR designs.
  • Build and maintain analog behavioral models (Verilog-A / SystemVerilog real-number modeling) for power stages, integrated inductors, PDN, and analog blocks.
  • Perform analog-digital co-simulation using industry-standard tools (Cadence Xcelium + Spectre, Synopsys VCS + FineSim/CustomSim, or AMS Designer).
  • Create testbenches for key performance metrics: transient response (load steps), loop stability, efficiency, ripple, over-current / over-voltage protection, and startup/shutdown sequences.
  • Run regressions across PVT corners, Monte-Carlo analysis, and corner-case scenarios.
  • Debug mixed-signal issues at both transistor-level and behavioral-level.
  • Collaborate closely with analog designers, digital designers, and system engineers to close verification coverage.
  • Develop automated verification scripts and improve verification methodology for faster turnaround.
  • Support post-silicon validation by correlating simulation results with lab measurements.

What We’re Looking For

  • 5+ years of hands-on experience in mixed-signal verification of power management ICs or analog/mixed-signal SoCs.
  • Strong proficiency in mixed-signal simulation flows :
  • Real Number Modeling (RNM) and Verilog-A behavioral modeling
  • Solid understanding of power converter topologies (buck, multi-phase, 3-level buck, switched-capacitor converters).
  • Good knowledge of digital control concepts for power converters (PID controllers, DPWM, digital feedback loops).
  • Experience with MATLAB/Simulink for system-level modeling and testbench reference generation.
  • Proficiency in SystemVerilog and UVM for digital/mixed-signal testbenches.
  • Familiarity with Cadence Virtuoso, Spectre, or Synopsys CustomSim for analog simulation.
  • Understanding of analog non-idealities (quantization effects, loop delay, sensor offsets, PDN resonances, inductor non-linearities).
  • BSEE / MSEE with 8+ years relevant experience.

Nice to Have

  • Experience verifying high-frequency IVRs, PoL regulators, or high-current power delivery systems.
  • Experience with SIMPLIS, PLECS, or Simulink for system-level power electronics validation.
  • Familiarity with digital PID controller verification and fixed-point arithmetic effects.
  • Exposure to advanced packaging and on-die inductor modeling.
  • Scripting skills in Python, Perl, or Tcl for automation.

About TylSemi, Inc.

The AI infrastructure market is exploding. Every hyperscaler, every cloud provider, every AI company is building custom silicon. But they all face the same problem: how do you connect hundreds of chips, deliver clean power at scale, and move terabits of data without melting the package?

That’s what we solve. TylSemi builds the chiplet infrastructure IP — the IO, power delivery, and interconnect building blocks — that makes AI/HPC systems actually work at scale.

This isn't a nice-to-have. It's the critical path.

Why Now The Market Window

The semiconductor industry is going through its biggest architectural shift in 40 years:

• Moore's Law is dead. 2nm and beyond delivers marginal performance gains. The future is chiplets, not monolithic dies.

• Custom silicon is now mainstream. Google, Microsoft, Amazon, Meta, OpenAI — they're all designing their own ASICs. The $50B custom silicon market is growing 30% annually.

• IO and power are the bottleneck. Solve hard problems and provide something which is a category in itself.

Translation: We're entering the market at exactly the moment when every major AI/HPC player needs what we're building, and their alternatives are disappearing.

Culture & Team: How We Work No Politics, No Bureaucracy

There are no layers, no approval chains, no corporate theater.

• If you have an idea, we test it. If it works, we ship it.

• No endless meetings, no PowerPoint presentations to convince middle management.

Remote-Friendly, Global Team

• US team: Bay Area preferred, but we hire the best people regardless of location

• India team: Building a world-class design center in Bangalore

Move Fast, Ship Real Products

We’re not a research project. We have paying customers, committed capital, and aggressive timelines.

This is a company, not a lifestyle business. We're building to win.

What We Value

• Ownership mindset. You're not here to execute someone else’s roadmap. You're here to define it.

• Bias for action. We move fast. Analysis paralysis doesn't fly here.

• Deep technical expertise. This is hard engineering. We need people who've shipped real silicon and debugged real hardware.

• Low ego, high standards. We don't care about titles or politics. We care about results.

The Ask

If you're reading this, you're probably comfortable. You have a good job at a stable company with all the benefits.

We're asking you to walk away from that and bet on us.

Here's why you should:

• The market is real. AI infrastructure spending is $200B+ annually and growing 40% YoY. Every hyperscaler needs what we're building.

• The team has done this before. We've built and exited semiconductor companies at scale. This isn't our first rodeo.

• The traction is de-risked. We have LOIs, strategic investors, and a clear path to revenue.

• The work is consequential. You're not optimizing someone's ad click-through rate. You're building the silicon infrastructure that powers AI.

This is the bet. Join us and build something that matters.

Or stay comfortable. No judgment.

But if you're the kind of person who wants to take the shot, we'd love to talk.

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