The complexity of the chip has greatly increased over the years. We are now packing tens of billions of transistors in a chip to meet the growing computing demand in a footprint that is responsible to our environment. The NVIDIA System-On-Chip (SOC) group is looking for a Senior RTL Design Engineer to serve as the technical lead for clocks development on our next-generation networking chips. Clocks are the backbone of the SOC. In this role you will lead the development of the chip's clocking logic — PLL and reference clock integration, clock generation, distribution, muxing and dividers, glitchless switching, clock gating, reset synchronization, and the clock domain crossing infrastructure that every unit on the die depends on.
This is an RTL design and technical leadership role, not a circuit or transistor-level design role. Working from the clock architecture defined with the architecture and micro-architecture teams, you will lead its implementation in RTL, guide other engineers contributing to it, and drive it through to silicon in close partnership with Design Verification and Physical Design (backend). You will also interact regularly with CAD, Package Design, Software, and DFT teams.
What you'll be doing:
Acting as the technical lead for SOC clocks development — leading the implementation of the clocking logic from specification through tape-out and bring-up
Working with the architecture and micro-architecture teams on the SOC clock and reset scheme: collecting clocking requirements from units across the chip, feeding back implementation and timing considerations, and translating the agreed scheme into a verifiable design
Writing and reviewing synthesizable Verilog/SystemVerilog RTL for clock generation, distribution, muxing, division, glitchless switching, gating, and reset synchronization
Leading and mentoring other RTL engineers working on clocking: reviewing designs, setting coding and quality standards, and distributing work across the team
Working hand-in-hand with the Physical Design (backend) team on clock tree implementation, SDC/timing constraints, partitioning, floorplan feedback, trial synthesis, and timing convergence
Partnering with Design Verification on clocking testplans, functional and gate-level debug, and coverage closure
Supporting Software and firmware teams on clock programming sequences, DVFS, and low-power/clock-shutdown flows
Representing clocking implementation in cross-functional design reviews with architecture, PD, DV, DFT, and CAD stakeholders
What we need to see:
B.Sc./M.Sc. in Electrical Engineering or Computer Engineering
8+ years of relevant experience in RTL/logic design, with multiple chips taken to tape-out
Demonstrated technical leadership: leading a design area through implementation and tape-out, mentoring engineers, and coordinating across teams
Expert hands-on RTL design skills in Verilog/SystemVerilog, with strong understanding of how RTL choices affect synthesis results, timing, area, and power
Deep understanding of clocking and reset design: clock gating, clock muxing and dividers, glitchless clock switching, reset synchronization, and clock domain crossing
Proficiency with design quality tooling — lint, CDC/RDC, formal verification, synthesis, and static timing analysis (STA) — including the ability to interpret results and drive fixes back into the RTL
Experience taking a design from architecture and micro-architecture specification through verification, physical implementation, and silicon bring-up
Great teammate with strong communication skills across micro-architecture, DV, backend, DFT, and software teams
Ways to stand out from the crowd:
Prior hands-on experience with SOC-level clocking or reset logic on a taped-out chip
Experience with PLL/clock generator integration and clock tree constraint development with backend teams
Experience with high-speed networking, interconnect, or fabric designs
Background with low-power design techniques (clock gating, DVFS, power domains, UPF)
Experience building automation for RTL integration, chip assembly, or design quality flows
At NVIDIA, you will be immersed in a diverse and encouraging environment where everyone is encouraged to do their best work. Join us and see how you can make a lasting impact on the world.
NVIDIA is committed to fostering a diverse work environment and proud to be an equal opportunity employer. As we highly value diversity in our current and future employees, we do not discriminate (including in our hiring and promotion practices) on the basis of race, religion, color, national origin, gender, gender expression, sexual orientation, age, marital status, veteran status, disability status or any other characteristic protected by law.
Skills Required
- B.Sc. or M.Sc. in Electrical Engineering or Computer Engineering
- 8+ years of relevant RTL/logic design experience with multiple chips taken to tape-out
- Demonstrated technical leadership: leading design area through implementation and tape-out, mentoring engineers, coordinating across teams
- Expert hands-on RTL design skills in Verilog/SystemVerilog with understanding of synthesis, timing, area, and power impacts
- Deep understanding of clocking and reset design: clock gating, muxing/dividers, glitchless switching, reset synchronization, clock domain crossing
- Proficiency with design quality tooling: lint, CDC/RDC, formal verification, synthesis, and static timing analysis (STA)
- Experience driving designs from architecture and micro-architecture through verification, physical implementation, and silicon bring-up
- Strong communication and collaboration skills across micro-architecture, DV, backend, DFT, and software teams
- Prior hands-on experience with SoC-level clocking or reset logic on a taped-out chip
- Experience with PLL/clock generator integration and clock tree constraint development with backend teams
- Experience with high-speed networking, interconnect, or fabric designs
- Background with low-power design techniques (clock gating, DVFS, power domains, UPF)
- Experience building automation for RTL integration, chip assembly, or design quality flows
NVIDIA Compensation & Benefits Highlights
The following summarizes recurring compensation and benefits themes identified from responses generated by popular LLMs to common candidate questions about NVIDIA and has not been reviewed or approved by NVIDIA.
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Equity Value & Accessibility — Equity awards and a discounted ESPP are highlighted as core parts of total compensation, enabling employees to share in the company’s success. Stock-based compensation and the two-year lookback ESPP are consistently described as especially valuable.
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Healthcare Strength — Health coverage is portrayed as robust, with comprehensive medical, dental, and vision options alongside mental health support and on-site care resources. Employer HSA contributions and wellness perks reinforce the depth of the offering.
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Retirement Support — Retirement programs are depicted as strong, featuring a meaningful 401(k) match with Roth options and support for Mega Backdoor Roth contributions. These elements position long-term savings as a notable advantage of the total rewards package.
NVIDIA Insights
What We Do
NVIDIA’s invention of the GPU in 1999 sparked the growth of the PC gaming market, redefined modern computer graphics, and revolutionized parallel computing. More recently, GPU deep learning ignited modern AI — the next era of computing — with the GPU acting as the brain of computers, robots, and self-driving cars that can perceive and understand the world. Today, NVIDIA is increasingly known as “the AI computing company.”






