--- title: 'Staff/Sr Staff Electro-Optic Link Codesign Engineer at Lightmatter' canonical: 'https://feeny.ai/job/staff-sr-staff-electro-optic-link-codesign-engineer-lightmatter-boston-4ddybajp6gbf' type: 'job' last_seen: '2026-09-11' --- # Staff/Sr Staff Electro-Optic Link Codesign Engineer at Lightmatter - **Company:** Lightmatter - **Location:** Boston, MA / Mountain View, CA / Toronto, Canada - **Compensation:** $180k–$260k - **Posted:** 2026-08-25 - **Last confirmed live:** 2026-09-11 - **Apply:** https://boards.greenhouse.io/lightmatter/jobs/5398173008?gh_jid=5398173008 ## Job description Lightmatter is leading the revolution in AI data center infrastructure, enabling the next giant leaps in human progress. The company invented the world’s first 3D-stacked photonics engine, Passage™, capable of connecting thousands to millions of processors at the speed of light in extreme-scale data centers for the most advanced AI and HPC workloads. Lightmatter raised $400 million in its Series D round, reaching a valuation of $4.4 billion. We will continue to accelerate the development of data center photonics and grow every department at Lightmatter! If you're passionate about tackling complex challenges, making an impact, and being an expert in your craft, join our team of brilliant scientists, engineers, and accomplished industry leaders. Lightmatter is (re)inventing the future of computing with light! We are seeking a Sr. Staff Engineer, Photonic Link Co-Design to join our Laser Systems Architecture & Engineering team. This is one of the most technically demanding roles at Lightmatter: you will own the end-to-end simulation, co-design, and laboratory verification of photonic-electronic links in Passage™ — from photonic device modeling through to full transceiver channel characterization in silicon. You will build and maintain the high-fidelity simulation infrastructure that links optical device performance to system-level BER and link margin, drive co-design between photonic and analog circuit teams, and close the loop between simulation and lab measurement on every tape-out. This role sits at the center of how Lightmatter ensures Passage links meet performance at every process corner — and is the technical anchor for photonic-electronic integration quality. The right candidate is equally fluent in photonic simulation environments and at a high-speed electro-optic lab bench, and has the seniority to drive architecture decisions with data. ## Responsibilities - Develop, own, and continuously improve electro-optic  link simulation models covering photonic device, propagation, and channel BER — from electron to photon to electron. - Build multi-physics models that combine  optical propagation (VPI Photonics, Lumerical INTERCONNECT / FDTD, sax), analog circuit behavior (Cadence Virtuoso / Spectre, Verilog-A)) into a coherent link analysis framework. - Execute comprehensive corner analysis, Monte Carlo variation sweeps, and process-voltage-temperature (PVT) studies to bound link margin; generate actionable specification tightening recommendations for device and circuit teams. - Work closely with analog circuit designers to co-optimize transmitter driver and receiver front-end for the photonic device interface; drive joint simulation across the optical-electrical boundary. - Contribute to  photonic link budgets end-to-end: optical power, modulation efficiency, receiver sensitivity, noise floor, and SNR/OSNR margins. - Contribute to simulation-to-silicon closure methodology for Passage optical links; author test protocols, define measurement sequences, and iterate link models against measured data across process splits and device corners. - Identify and diagnose root causes of link performance gaps — distinguishing photonic, electrical, and integration origins — and drive corrective design actions. - Author and review photonic link architectural specifications, co-design interface requirements, and design-entry criteria for photonic and circuit teams. - Contribute to Passage product-level link planning: propose photonic and electronic co-design opportunities to improve link margin, power efficiency, or yield. Requirements: - PhD in Electrical Engineering, Applied Physics, Physics, or a closely related photonics/optics discipline and 5+ years of experience; or MS + 8 years of directly relevant industry experience at a photonic IC, transceiver, or optical interconnect company. - Deep expertise in photonic device physics and system-level optical link design: silicon photonic modulators, Ge photodetectors, passive WDM components, optical amplifiers, and coherent or intensity-modulated link topologies. - Hands-on proficiency with photonic simulation: VPI Photonics, Lumerical FDTD / INTERCONNECT, or equivalent optical propagation and circuit co-simulation tools. - Experience with analog and mixed-signal simulation: Cadence Virtuoso / Spectre, Verilog-A behavioral modeling, or Keysight ADS for electrical-optical co-simulation. - Demonstrated experience developing and executing optical link budgets, corner analyses, and simulation-to-measurement closure workflows. - Demonstrated high-speed lab skills: vector network analyzers (VNA) / S-parameter characterization, optical spectrum analyzers, high-bandwidth real-time oscilloscopes, BER test sets, optical modulation analyzers (OMA), and optical power meters. - Proficiency in Python for simulation scripting, measurement automation, and statistical post-processing. - Excellent written and verbal communication; able to drive architecture and specification discussions with device and circuit teams. - Familiarity with SERDES architecture: equalization topologies (FFE, DFE, CTLE), CDR, and mixed-signal PHY co-design for high-speed interfaces. ## Preferred Qualifications - Silicon photonics tape-out and post-silicon characterization experience; familiarity with PDK-level device models and extracted simulation vs. measurement correlation. - Exposure to co-packaged optics (CPO), near-package optics (NPO), or optical I/O chiplet integration challenges. - Signal processing knowledge: DSP for optical communications, forward error correction (FEC), or PAM-4 / NRZ / coherent modulation format trade-offs and simulation. - Experience with Monte Carlo and statistical design methodologies in the context of photonic-electronic system co-design. We offer competitive compensation. The base salary range for this role determined based on location, experience, educational background, and market data. Salary Range: total compensation goes beyond base salary, it also includes a new hire equity grant, annual performance-based equity, and other rewards that recognize your impact and contribution. $180,000—$260,000 USD ## Benefits - Comprehensive Health Care Plan (Medical, Dental & Vision) - Retirement Savings Matching Program - Life Insurance (Basic, Voluntary & AD&D) - Generous Time Off (Vacation, Sick & Public Holidays) - Paid Family Leave - Short Term & Long Term Disability - Training & Development - Commuter Benefits - Flexible, hybrid workplace model - Equity grants (applicable to full-time employees) Benefits eligibility may vary depending on your employment status and location. Lightmatter recruits, employs, trains, compensates, and promotes regardless of race, religion, color, national origin, sex, disability, age, veteran status, and other protected status as required by applicable law. Export Control Candidates should have capacity to comply with the federally mandated requirements of U.S. export control laws. ## About Lightmatter ## Company Overview - **One-liner**: Lightmatter builds photonic interconnects and computing infrastructure to eliminate bandwidth bottlenecks in AI and high-performance computing, enabling the next era of AI scaling. - **Entity Type**: Private (Series D, $850M total funding) - **Headquarters**: Mountain View, California, USA - **Founded**: 2017 - **Founders**: Nicholas Harris, PhD (CEO), Darius Bunandar, PhD (Head of Machine Learning), and a third co-founder (Chief Scientist) ## Core Business - **Primary industry**: Silicon Photonics / AI Infrastructure / Semiconductor - **Target customers**: Hyperscale data center operators, AI labs (training frontier models), cloud service providers, and enterprise AI teams - **Mission or purpose**: To make computers keep getting better by using light instead of electricity for data movement, solving the fundamental bandwidth bottleneck that limits AI scaling. ## Products & Services - **Passage™ Platform**: A family of 3D-stacked silicon photonics interconnects (NPO, OBO, 2D/3D CPO, 3D interposers) that provide "Edgeless I/O"—unlimited bandwidth scaling for AI supercomputers. Key variants include: - **Passage M1000 EVK**: Rack-level 3D photonic interposer delivering 114 Tbps across a 4,000 mm² footprint. - **Passage L200**: Designed for frontier-scale training, supporting 32–64 Tbps aggregate bandwidth via co-packaged optics (112G PAM4). - **Passage L20**: Accelerates optics integration with 12.8 Tbps aggregate bandwidth and 4x pluggable density. - **Passage EVK100**: High-bandwidth bidirectional link at 3.2 Tbps per fiber, 1.9 pJ/bit. - **Passage EVK50**: 16-wavelength bidirectional link at 800 Gbps per fiber, 2.6 pJ/bit. - **Guide® Light Engines**: Very Large Scale Photonics technology—a universal light source (hundreds of lasers and photonics components on a single chip) designed to power co-packaged optics across the entire photonics industry. ## Market Standing - **Valuation**: $4.4 billion (as of October 2024) - **Key Metric**: $850M total funding raised - **Notable Investors/Partners**: TSMC, GlobalFoundries, Tower Semiconductor (manufacturing partners); Amkor, ASE (packaging partners); NVIDIA (joined NVLink Fusion ecosystem); standards bodies including Ultra Ethernet, UALink, JEDEC, OIF, IEEE, OCP, and the Advanced Photonics Coalition. - **Growth Signals**: First-mover in category-defining photonic interconnects; multiple generations of production-ready technology (not vaporware); reference platforms in customer hands; 100,000+ GPU cluster capability; world-first 16-wavelength bidirectional optical DWDM link on standard single-mode fiber (8x leap in bandwidth density); partnerships with top foundries ensure high-volume manufacturing. ## Competitive Advantages - **Edgeless I/O architecture**: Eliminates the physical chip-perimeter constraint that limits electrical interconnects, enabling bandwidth to scale without bound. - **Fundamentally better physics**: Photons travel without resistive loss, cross paths without interference, and carry multiple signals on a single fiber—far more efficient than electrons. - **Deep vertical integration**: From photonic chip design to light engines (Guide) to complete interconnect platforms (Passage), with proprietary 3D stacking technology. - **Decade-scale roadmap**: Continued bandwidth scaling (114 Tbps today, 1+ Pbps tomorrow) with production-ready silicon validated at scale. - **Ecosystem lock-in**: Standards body leadership and partnerships with NVIDIA, TSMC, and hyperscalers create high switching costs. ## Strategic Focus - **Scale AI infrastructure**: Enable 100,000+ GPU clusters for trillion-parameter models, solving the interconnect bottleneck that currently strands hundreds of millions in compute capacity. - **Productize photonics**: Move from reference platforms to volume production across Passage and Guide families, targeting both training and inference workloads. - **Expand ecosystem**: Deepen partnerships with hyperscalers, AI labs, and chipmakers (e.g., NVIDIA NVLink Fusion) to make photonic interconnects the default for next-gen data centers. - **Hire across all functions**: Actively growing engineering, research, sales, and operations teams to scale the company. ## Why Work Here - **Mission-driven impact**: Work at the intersection of photonics, AI, and semiconductor engineering to solve the most critical bottleneck in AI—data movement. Your work directly enables frontier models and trillion-parameter training. - **World-class team**: Colleagues from MIT, Caltech, Stanford, and UC Berkeley; published in Nature, Science, ISSCC, ISCA; 100+ patents; team members contributed to black hole simulation software for the Academy Award-winning movie *Interstellar*. - **Cutting-edge technology**: Not research, not vaporware—multiple generations of production-ready photonic chips in customer hands, with a decade-scale roadmap. - **Locations**: Mountain View, CA (HQ); Boston, MA; Hsinchu, Taiwan; Toronto, Canada. - **Benefits**: 401(k), generous vacation policy and holidays, commuter benefits, happy hours, and a strong learning culture (peer-to-peer knowledge sharing across electronics, photonics, machine learning, and more). - **Culture**: "We are one Lightmatter"—collaborative, cross-disciplinary, and focused on solving hard problems at scale. ## Sources 1. [lightmatter.co/about](https://lightmatter.co/about/) 2. [lightmatter.co](https://lightmatter.co/) 3. [lightmatter.co/people/careers](https://lightmatter.co/people/careers/) 4. [lightmatter.co/people](https://lightmatter.co/people/) 5. [linkedin.com/company/lightmatter](https://www.linkedin.com/company/lightmatter) ## Other roles at Lightmatter - [Sr Staff/Principal Laser Design Engineer](https://feeny.ai/job/sr-staff-principal-laser-design-engineer-lightmatter-toronto-ggzwe7cse995) — Toronto, Canada - [Sr Staff/Principal Laser Design Engineer](https://feeny.ai/job/sr-staff-principal-laser-design-engineer-lightmatter-boston-kb2s272z0dqa) — Boston, MA / Mountain View, CA - [Photonics Characterization Intern & New Grad](https://feeny.ai/job/photonics-characterization-intern-new-grad-lightmatter-boston-ctktrnqyp6j3) — Boston, MA - [Electro-Optic Link Hardware Engineer](https://feeny.ai/job/electro-optic-link-hardware-engineer-lightmatter-boston-datxb52a2c2k) — Boston, MA / Mountain View, CA - [Principal Hardware Systems Technical Lead](https://feeny.ai/job/principal-hardware-systems-technical-lead-lightmatter-mountain-view-s2s15x7ed12e) — Mountain View, CA - [Senior Account Manager](https://feeny.ai/job/senior-account-manager-lightmatter-mountain-view-zcefyvftztp2) — Mountain View, CA - [Staff /Sr Staff Laser Module & Systems Characterization Engineer](https://feeny.ai/job/staff-sr-staff-laser-module-systems-characterization-engineer-lightmatter-1wcg5m40jtae) — Mountain View, CA - [Package Layout Engineer](https://feeny.ai/job/package-layout-engineer-lightmatter-mountain-view-7jbh4w7py93p) — Mountain View, CA - [Signal Integrity Engineer](https://feeny.ai/job/signal-integrity-engineer-lightmatter-mountain-view-ayx6663v9ev9) — Mountain View, CA - [Power Integrity Engineer](https://feeny.ai/job/power-integrity-engineer-lightmatter-mountain-view-vzjq87yvgcn3) — Mountain View, CA