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Phd In Analog Chip Design Jobs in Chicago, IL (NOW HIRING)

Work with the DFT and Chip Architects to define DFT strategy, methodologies, and implementation ... Implement DFT features in RTL for digital and analog blocks to the defined architecture & plan

Jr. ASIC Design Engineer

Batavia, IL · On-site

$70K - $93K/yr

Performing a leading role in Analog and RF ASIC design projects, while being able to contribute individually to major design tasks. * Developing design specifications for ASICs based on theoretical ...

In this role, you will oversee and optimize the entire design flow, including synthesis, place-and ... Ensure careful planning around analog routing with keepouts, shielding, spacing, and grid topology ...

... in-class power, area, manufacturability, and design flexibility. You will be implementing, administering, and ensuring accuracy and repeatability of all analog CAD flows. You will work with a cross ...

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Phd In Analog Chip Design information

See Chicago, IL salary details

$79.3K

$191.9K

$209.1K

How much do phd in analog chip design jobs pay per year?

As of Aug 11, 2026, the average yearly pay for phd in analog chip design in Chicago, IL is $191,853.00, according to ZipRecruiter salary data. Most workers in this role earn between $208,100.00 and $208,100.00 per year, depending on experience, location, and employer.

What is the difference between Phd In Analog Chip Design vs Analog IC Design Engineer?

AspectPhd In Analog Chip DesignAnalog IC Design Engineer
Required CredentialsPhD in Electrical Engineering or related fieldBachelor's or Master's in Electrical Engineering or related field
Work EnvironmentResearch labs, academia, or R&D divisions of companiesDesign teams within semiconductor or electronics companies
Industry UsageAcademic research, advanced R&D, or specialized industry rolesProduct development, circuit design, and manufacturing

The main difference is that a Phd In Analog Chip Design typically involves advanced research, theoretical work, and development of new concepts, often in academic or R&D settings. In contrast, an Analog IC Design Engineer focuses on practical circuit design, implementation, and production within industry settings. Both roles require strong knowledge of analog circuits, but the PhD emphasizes research and innovation, while the engineer role emphasizes application and product development.

What are the key skills and qualifications needed to thrive as a PhD in analog chip design?

To thrive as a PhD in Analog Chip Design, you need deep expertise in analog and mixed-signal circuit design, semiconductor physics, and strong mathematical skills, typically supported by a doctorate in electrical engineering or a related field. Familiarity with industry-standard EDA tools such as Cadence, SPICE simulation software, and experience with CMOS process technologies is vital. Strong problem-solving abilities, attention to detail, and effective communication skills help you excel in research, collaboration, and documentation. These skills ensure innovative, reliable chip designs that meet industry standards and drive advancements in electronics.

What is a PhD in analog chip design?

A PhD in Analog Chip Design is a doctoral degree focused on the research, development, and innovation of analog integrated circuits and systems. Students in this program study advanced concepts in analog electronics, including circuit theory, semiconductor device physics, and mixed-signal design. The program typically involves original research that contributes to advancements in areas like low-power design, sensor interfaces, or high-frequency circuits. Graduates are prepared for careers in academia, research institutions, or advanced engineering roles in the semiconductor industry.

What are common challenges faced by professionals with a PhD in analog chip design when transitioning from academia to industry roles?

Professionals with a PhD in Analog Chip Design often encounter challenges such as adapting to fast-paced project timelines, aligning research-driven approaches with practical product development needs, and learning to collaborate closely with multidisciplinary teams including digital engineers, layout designers, and product managers. Unlike academic research, industry roles usually require a strong focus on manufacturability, cost constraints, and adherence to strict design specifications. Building effective communication skills and understanding the broader product lifecycle are key to a smooth transition and career growth.
What cities near Chicago, IL are hiring for Phd In Analog Chip Design jobs? Cities near Chicago, IL with the most Phd In Analog Chip Design job openings:

Principal AI Forward Deployment Engineer

Cadence Design Systems Inc.

Cary, IL

Full-time

Re-posted 17 days ago


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Job description

At Cadence, we hire and develop leaders and innovators who want to make an impact on the world of technology.

Role Summary

Cadence is hiring a Principal AI Forward Deployment Engineer to embed with strategic semiconductor customers and operationalize Cadence's AI and agentic solutions across their end-to-end silicon design flows. This is a senior, customer-facing applied-AI role for an experienced chip-design practitioner who can translate front-end, physical-design, and methodology workflows into concrete, measurable productivity wins powered by flagship LLMs and Cadence AI tooling. You will be the trusted technical lead at the customer who turns 'AI for chip design' from a slideware promise into a deployed, adopted, and ROI-positive reality.

Why This Role Exists

  • Customers are racing to apply LLMs and agentic AI to RTL, verification, implementation, and signoff - but they need a partner who deeply understands *both* their tape-out flows and how to wield modern AI systems.
  • This role owns the last mile: taking Cadence AI products (AgentStack, BU Super-Agents, Cadence.AI / JEDAI platform, Cerebrus, Verisium, Allegro X AI, etc.) and making them work inside the customer's actual methodology, PDKs, compute fabric, and security boundaries.
  • Success here directly accelerates customer tape-outs, expands Cadence AI footprint, and feeds product roadmaps with real-world signal.

What You Will Do

  • Customer-Embedded Deployment. Lead end-to-end deployment of Cadence AI / LLM-powered solutions into the customer's silicon design flows - from RTL design and verification through synthesis, place-and-route, timing, power, signoff, and packaging.
  • Applied AI for Chip Design. Architect and tune agentic workflows, prompt strategies, RAG pipelines, and tool-calling patterns on top of flagship LLMs (Claude, GPT, Gemini, Llama, Qwen, etc.) to automate real EDA tasks - debug triage, constraint authoring, ECO loops, PD recipe tuning, methodology Q&A, log/report summarization, and design-review copilots.
  • Methodology & Flow Integration. Map customer methodology (FE design, DV, PD, CAD, signoff) onto Cadence AI building blocks; identify the highest-ROI insertion points; build reference flows the customer's CAD/methodology team can own long-term.
  • Productivity & ROI Ownership. Define and report KPIs - cycle-time reduction, engineer-hours saved, iteration count, first-pass success, license/compute efficiency. Own the story from pilot to production rollout across BUs and sites.
  • Trusted Technical Advisor. Be the senior technical face to customer fellows, methodology leads, and design-team principals. Run design reviews, technical readouts, and joint roadmaps. Translate customer pain into actionable feedback for Cadence R&D and AI platform teams.
  • AI Systems Enablement (plus). Where needed, guide customer IT/InfoSec on secure LLM access patterns, on-prem vs. gateway deployment, model routing, prompt/response logging, data-egress controls, and GPU/inference capacity planning.
  • Knowledge Multiplier. Capture playbooks, reference designs, and 'golden prompts' so every deployment compounds. Mentor field AEs, FAEs, and customer champions.

Must-Have Qualifications

  • BS/MS/PhD in EE, ECE, CS, or related discipline.
  • 10+ years of hands-on semiconductor / chip design experience in one or more of: front-end design (RTL, micro-architecture, DV), physical design / implementation (synthesis, P&R, timing, power, signoff), CAD / methodology / flow development, or design execution / project technical leadership on production tape-outs.
  • Deep, practitioner-level fluency with industry EDA flows and pain points - you have personally shipped silicon and know where the cycle-time and engineer-time really go.
  • Demonstrated ability to apply LLMs / AI tools to get real engineering work done (e.g., agent-based debug, code/RTL generation assist, scripted automation, copilots, RAG over design docs/logs). Doesn't have to be your title - has to be your reflex.
  • Excellent customer-facing communication: equally credible with a staff RTL engineer, a PD methodology lead, and a CAD / design-enablement leader.
  • Bias to action, ownership, and shipping. Comfortable being the single throat-to-choke for a customer-facing AI deployment.
  • Based in or willing to relocate to Portland, OR; able to be on-site at customer locations as the engagement requires.

Nice-to-Have / Bonus

  • Prior experience as a Cadence / Synopsys / Siemens EDA customer power user, AE, or methodology architect.
  • Hands-on with at least one agentic framework (Claude Code, Cursor, LangGraph, AutoGen, custom MCP/tool-calling stacks) applied to engineering workflows.
  • Experience standing up secure enterprise LLM access (gateways, model routing, key management, audit logging) for engineering orgs.
  • Familiarity with GPU/inference infrastructure, vLLM/TGI/Triton, fine-tuning / LoRA / SLM workflows, and evaluation harnesses for code/EDA tasks.
  • Background in low-power, high-performance, AI/ML, networking, automotive, or HPC silicon programs.
  • Public artifacts - papers, talks, OSS, or internal champions - showing applied AI in EDA/silicon contexts.
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