About Etched
Etched is building hardware for frontier intelligence. We co-design chips, racks, software, and manufacturing to deliver best-in-class throughput and latency across both prefill and decode workloads. Our first products are heavily focused on inference. Backed by hundreds of millions from top-tier investors and staffed by leading engineers, Etched is redefining the infrastructure layer for the fastest growing industry in history.
Job Summary
Etched is building a new category of AI hardware: frontier inference clusters. As a Physical Design Engineer, you will own block-level implementation from synthesis through GDSII sign-off. You will drive Block-level & Subsystem PPA Optimization, and collaborate closely with RTL designers to provide actionable feedback, ensuring we iterate at unprecedented speeds to bring our products to market.
Key Responsibilities
Own block-level and/or subsystem physical design end to end, including floorplanning, synthesis, placement, clock tree synthesis, and routing through GDSII.
Drive block-level timing closure across all corners and modes, including constraint development, STA debug, and functional and timing ECO implementation.
Close block-level signoff across EM, IR drop, RC extraction and correlation, and physical verification (DRC, LVS, antenna).
Generate abstracts, views, and timing budgets for clean hierarchical integration of your blocks into the top level.
Collaborate with RTL Designers and provide Physical Design feedback to improve PPA.
Continuously improve the PPA of owned blocks and contribute learnings back into the shared RTL-to-GDSII flow.
Supervise physical design work outsourced to 3rd party services and be accountable for the quality and closure of delivered blocks.
You may be a good fit if you have
5-10+ years of previous experience with PD
Tools, flow, and design methodology from RTL synthesis to GDSII sign-off
Experience with back-end design and timing closure on advanced process nodes (5nm and below)
Experience with Cadence (Innovus, Genus) or Synopsys (Fusion Compiler) automated RTL-to-GDSII flows
Experience with sign-off tools (PrimeTime, Tempus, Voltus, etc.)
Experience with UPF-based low power design methodology, power verification, synthesis, scan insertion/ATPG, formal verification, floorplanning, placement, CTS, routing, IR drop, and EM/antenna analysis
Scripting ability in Tcl, Python, or Perl for flow automation and debug
Deeply creative and able to think from first principles
Strong candidates may also have experience with
Familiarity with modern ML and LLM model architectures
Ability to program with Python or another scripting language
Familiarity with AI tools for programming/coding
Startup experience or comfort working in fast-paced environments
Benefits
Medical, dental, and vision packages with generous premium coverage
$500 per month credit for waiving medical benefits
Housing subsidy of $2k per month for those living within walking distance of the office
Relocation support for those moving to San Jose (Santana Row)
Various wellness benefits covering fitness, mental health, and more
Daily lunch and dinner in our office
Unlimited compute budget subject to ROI justification
How we’re different
Etched believes in the Bitter Lesson. We are the first inference-focused frontier AI system, betting early on transformer and transformer-like architectures and on increasing model sizes. Our addressable market is the entirety of inference, unlike many of our competitors.
We are a fully in-person team in San Jose (Santana Row), and greatly value engineering skills. We do not have boundaries between engineering and research, and we expect all of our technical staff to contribute to both and work across disciplines as needed.
Skills Required
- 5-10+ years of physical design (PD) experience
- Experience with RTL-to-GDSII flows and design methodology from synthesis to GDSII sign-off
- Back-end design and timing closure on advanced process nodes (5nm and below)
- Experience with Cadence Innovus or Genus, or Synopsys Fusion Compiler automated flows
- Experience with sign-off tools such as PrimeTime, Tempus, Voltus
- UPF-based low-power design methodology and power verification
- Timing closure skills: constraint development, STA debug, timing ECO implementation
- Signoff and physical verification skills: EM, IR drop, RC extraction/correlation, DRC, LVS, antenna analysis
- Experience with synthesis, scan insertion/ATPG, and formal verification
- Floorplanning, placement, clock tree synthesis (CTS), and routing experience
- Scripting ability for flow automation and debug (Tcl, Python, or Perl)
- Ability to provide physical design feedback to RTL teams and improve PPA
- Familiarity with modern ML and LLM model architectures
- Familiarity with AI tools for programming/coding
- Startup experience or comfort working in fast-paced environments
Etched Compensation & Benefits Highlights
The following summarizes recurring compensation and benefits themes identified from responses generated by popular LLMs to common candidate questions about Etched and has not been reviewed or approved by Etched.
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Equity Value & Accessibility — Equity growth is described as strong and significant equity is part of the package. High total compensation for technical roles reinforces the equity-led upside.
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Healthcare Strength — Medical, dental, and vision coverage include generous premium support, indicating robust core healthcare. This reduces employee cost exposure for essential coverage.
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Wellbeing & Lifestyle Benefits — Daily lunch and dinner, a housing subsidy for those living near the office, relocation support, and wellness perks are highlighted. These offerings lower day-to-day living costs and support practical wellbeing.
Etched Insights
What We Do
By burning the transformer architecture into our chips, we’re creating the world’s most powerful servers for transformer inference.
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