Cadence sits at the intersection of semiconductor innovation and high-performance computing. Through Design for AI, our EDA technologies enable the advanced silicon platforms powering modern AI infrastructure. Through AI for Design, we integrate machine learning, data-driven optimization, and intelligent automation into our industry-leading implementation flows to transform how chips are designed.
As part of the Innovus R&D team, you will build high-performance software engines and algorithms behind next-generation physical synthesis, helping push the boundaries of performance, power, area (PPA), timing closure, and design productivity at scale.
Role OverviewWe are looking for a Senior / Staff Software Engineer to contribute to the design and development of next-generation physical synthesis and optimization engines within Innovus.
In this hands-on engineering role, you will solve challenging computational problems at the intersection of advanced graph/spatial algorithms, high-performance C++, parallel and distributed computing, and large-scale numerical optimization. Your work will operate at semiconductor scale—where algorithmic efficiency, memory footprint, and multi-core scalability directly impact the ability to design billions of transistors on advanced process nodes.
Key ResponsibilitiesCore Engine & Algorithm Development- Design, implement, unit-test, and optimize high-performance C++ engines for physical synthesis, placement, and timing-driven optimization.
- Develop advanced graph algorithms, spatial data structures, and continuous/combinatorial optimization techniques for massive-scale physical design workloads.
- Identify and eliminate CPU bottlenecks, memory footprint overhead, and algorithmic scaling limits in production C++ codebases.
- Translate research concepts and mathematical formulations into robust, maintainable, production-quality software.
- Implement multi-threaded and distributed algorithms for computationally intensive implementation engines.
- Scale physical design workloads across multi-core systems and compute clusters while minimizing synchronization overhead and memory bandwidth constraints.
- Apply modern profiling and benchmarking tools to maximize CPU utilization, cache efficiency, and execution throughput.
- Develop physical design optimization modules addressing timing, power, performance, area (PPA), and congestion.
- Work directly with large-scale layout and netlist data to build practical, highly scalable optimization strategies.
- Collaborate with R&D colleagues to integrate data-driven and AI-assisted optimization heuristics into core synthesis flows.
- Education: Master’s or Ph.D. in Computer Science, Electrical Engineering, Computer Engineering, or a related quantitative field (or equivalent hands-on industry experience).
- C++ Expertise: Strong hands-on experience developing high-performance, production-quality C++ (C++17/20) in Linux environments.
- Core Fundamentals: Solid foundation in data structures, graph algorithms, computational geometry, memory management, and software architecture.
- Concurrent Programming: Practical experience with multithreaded or concurrent programming and low-level performance profiling.
- Problem Solving: Proven ability to analyze, debug, and optimize complex algorithmic bottlenecks in large-scale software systems.
- EDA / Physical Design: Prior experience developing EDA tools, with specific knowledge in physical synthesis, global/detail placement, static timing analysis (STA), routing, or timing closure.
- AI & Machine Learning: Exposure to applying machine learning, deep learning, reinforcement learning, or data-driven heuristics to software optimization problems.
- Scripting & Tooling: Proficiency with Python, Tcl, or shell scripting for benchmarking and workflow automation.
- HPC & Acceleration: Experience with SIMD vectorization, GPU/CUDA acceleration, or large-scale distributed compute frameworks.
This role is ideal for a hands-on developer who loves tackling hard algorithmic and systems-level problems at massive scale. Whether your background is rooted deeply in EDA or high-performance systems C++, you will directly write the foundational software engines that power the next generation of global silicon innovation.
Build the engines. Scale the algorithms. Shape the future of chip implementation.
The annual salary range for California is $161,000 to $299,000. You may also be eligible to receive incentive compensation: bonus, equity, and benefits. Sales positions generally offer a competitive On Target Earnings (OTE) incentive compensation structure. Please note that the salary range is a guideline and compensation may vary based on factors such as qualifications, skill level, competencies and work location. Our benefits programs include: paid vacation and paid holidays, 401(k) plan with employer match, employee stock purchase plan, a variety of medical, dental and vision plan options, and more.
We’re doing work that matters. Help us solve what others can’t.Skills Required
- Master's or Ph.D. in Computer Science, Electrical Engineering, Computer Engineering, or a related quantitative field, or equivalent hands-on industry experience
- Strong hands-on experience developing high-performance, production-quality C++ in Linux environments
- Proficiency with C++17 or C++20
- Strong foundation in data structures, graph algorithms, computational geometry, memory management, and software architecture
- Practical experience with multithreaded or concurrent programming
- Experience with low-level performance profiling
- Ability to analyze, debug, and optimize complex algorithmic bottlenecks in large-scale software systems
- Experience developing EDA tools or knowledge of physical synthesis, placement, static timing analysis, routing, or timing closure
- Exposure to machine learning, deep learning, reinforcement learning, or data-driven heuristics for software optimization
- Proficiency with Python, Tcl, or shell scripting for benchmarking and workflow automation
- Experience with SIMD vectorization, GPU/CUDA acceleration, or large-scale distributed computing frameworks
Cadence Design Systems Compensation & Benefits Highlights
The following summarizes recurring compensation and benefits themes identified from responses generated by popular LLMs to common candidate questions about Cadence Design Systems and has not been reviewed or approved by Cadence Design Systems.
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Equity Value & Accessibility — A discounted ESPP with a lookback feature and equity included in total compensation make ownership broadly accessible and potentially meaningful. Structured compensation at an industry leader adds predictability to equity participation.
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Healthcare Strength — Medical, dental, and vision coverage are described as solid, with mental‑health/EAP and fertility support enhancing the offering. The breadth across core care and family‑building needs strengthens the healthcare package.
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Leave & Time Off Breadth — Global Recharge Days, volunteer time off, and companywide breaks indicate a comprehensive time‑off framework. In addition, many salaried roles are described as having flexible or generous PTO policies.
Cadence Design Systems Insights
What We Do
Cadence enables electronic systems and semiconductor companies to create the innovative end products that are transforming the way people live, work and play. Cadence® software, hardware and IP are used by customers to deliver products to market faster. The company's Intelligent System Design strategy helps customers develop differentiated products—from chips to boards to intelligent systems—in mobile, consumer, cloud, data center, automotive, aerospace, IoT, industrial and other market segments. Cadence is listed as one of Fortune Magazine's 100 Best Companies to Work For.









