Department of Electrical Engineering, Stanford University
- Company typePrivate
- Founded1885
- HeadquartersStanford, United States
- Headcount—
- GTM typeB2C
- OfferingServices
Department of Electrical Engineering, Stanford University firmographics
Firmographics- Name
- Department of Electrical Engineering, Stanford University
- Legal name
- Department of Electrical Engineering, Stanford University
- Website
- https://ee.stanford.edu
- Company type
- Private
- Founded year
- 1885
- Operating status
- Operating
- Ownership category
- akta.pro rank
Department of Electrical Engineering, Stanford University industry classification
Industry- Product category
- Higher Education — Electrical Engineering
- NAICS
- Engineering Services (541330)
- SIC
- Services-Commercial Physical & Biological Research (8731)
- akta.pro primary industry
- Engineering & Technology Institutes (Comprehensive) (EDAHAEAA)
- akta.pro secondary industries
- Technical Universities with Specialized Engineering Domains (EDAHAEAI), Technical Universities with Computing, Data & AI Focus (EDAHAEAK)
Keywords
Where Department of Electrical Engineering, Stanford University is headquartered
LocationHeadquarters
- HQ city
- Stanford
- HQ country
- United States
- HQ region
- North America
Offices1 record
Markets served
Department of Electrical Engineering, Stanford University business model
Business model- GTM type
- B2C
- Offering type
- Services
- Cost components
- Personnel, Technology or R&D, Infrastructure, Operations
Revenue model
- Government research grants: Federal funding from agencies including NSF, DOE, DARPA, ONR, and industry partnerships for semiconductor research through CHIPS and Science Act
- Tuition and fees: Revenue from student tuition for various degree programs including BS, MS, PhD, and part-time/HCP options
- Industry partnerships and licensing: Research partnerships with technology companies including semiconductor industry collaborations through NSTC membership
- Endowment and donations: Gifts and donations from alumni and supporters through Stanford's development office
Go-to-market motion1 record
Distribution channels4 records
Marketing channels9 records
Department of Electrical Engineering, Stanford University product offering
Product offeringCore offering
The Department of Electrical Engineering at Stanford University delivers undergraduate, graduate, and doctoral academic programs in electrical engineering, alongside operating advanced research laboratories in photonics, quantum science, AI/ML, nanoelectronics, semiconductors, robotics, and computational imaging. It supports students through programs including the Research Experience for Undergraduates summer research internship, Maker lab64 prototyping facility, and the Stanford Nanofabrication Facility, while producing peer-reviewed research, patents, and technology licensed to industry.
Product overview
The Department of Electrical Engineering at Stanford University is an academic department offering undergraduate and graduate degree programs (BS, MS, PhD, Coterminal, Joint Degrees, Part-Time MS, and Non-Degree options). The department operates research laboratories, maker facilities (lab64), and the Stanford Nanofabrication Facility (SNF). It provides research experiences for undergraduates (REU) and conducts advanced research spanning photonics, quantum science, AI/ML, semiconductors, and nanoelectronics. This is a single unified academic department, not a platform-plus-modules software product architecture.
Differentiator
Problem solved
Functional benefit
Products and services
- Electrical Engineering Degree Programs Academic degree programs in electrical engineering including the Bachelor of Science (BS), Master of Science (MS — full-time, Coterminal, Joint Degree, and Part-Time/HCP), Doctor of Philosophy (PhD), and Non-Degree course enrollment pathways. Designed for prospective undergraduate students, working professionals, and research-oriented graduate applicants.
- Research Experience for Undergraduates (REU) A summer research internship program that places Stanford undergraduates with EE faculty and research groups on advanced research projects, providing hands-on research experience as a complement to classroom learning.
- Maker lab64 A student maker space and workshop facility that supports hands-on learning, prototyping, and project-based coursework for Stanford EE students.
- Stanford Nanofabrication Facility (SNF) A state-of-the-art shared nanofabrication facility supporting research and chip manufacturing across bio-electronics, semiconductors, and quantum computing, accessible to Stanford researchers and partners.
Quantifiable outcome
- Physics World Top 10 Breakthrough of 2024 - Tiny titanium:sapphire laser on chip
- +3 more outcomes
Companies that use Department of Electrical Engineering, Stanford University
Customer profileNamed customers4 records
Segments4 records
Ideal customer profiles4 records
Department of Electrical Engineering, Stanford University technology and API
TechnologyTechnology focussed Yes
API detail
- Has API
- No
- API docs
- API detail
Core technology
AI maturity
App detail
Feature8 records
Department of Electrical Engineering, Stanford University partnerships and signals
Strategic signalPartnerships
Eight partnerships are on record, tiered core and minor.
- Q-NEXT Quantum Center (DOE/Argonne National Laboratory)coreStanford researchers supported through Q-NEXT quantum research center led by DOE's Argonne National Laboratory. Jelena Vučković's team achieved milestone on tin-vacancy center qubits in diamond.
- Eliza LabscorePartnership between Stanford's Future of Digital Currency Initiative (FDCI) and Eliza Labs to explore how autonomous AI agents will transform digital currency systems. Professors Dan Boneh and David Mazières co-lead the research, combining FDCI's infrastructure with Eliza Labs' autonomous agent development expertise.
- National Semiconductor Technology Center (NSTC)coreStanford joined NSTC as an academic institution conducting semiconductor-related research. The NSTC is a consortium from academia, industry, government, and nonprofits administering the CHIPS and Science Act's $52 billion semiconductor R&D program. H.-S. Philip Wong leads Stanford's semiconductor research efforts.
- Princeton EngineeringminorCollaborative research with Princeton Engineering on LLM compression algorithm CALDERA. Andrea Goldsmith (now Princeton) and Mert Pilanci (Stanford) co-authored research enabling efficient local use of AI on devices.
- NASA Johnson Space CenterminorKrishna Shenoy's team collaborates with NASA Johnson Space Center on brain-computer interfaces for communication assistive technology.
- SLAC National Accelerator LaboratorycoreQ-FARM (Quantum Fundamentals, Architecture and Machines) initiative brings together researchers from Stanford and SLAC to develop quantum technology hardware and software. Led by Jelena Vučković.
- Northwest AI HubminorH.-S. Philip Wong leads Stanford's involvement in Northwest AI Hub, opening opportunities for community college students to gain hands-on laboratory and manufacturing experience.
- TeslaminorBattery Systems course (EE/CEE 292X) combines Tesla industry research with student creativity for innovative learning.
Scale indicators10 records
Recent moves6 records
Expansion highlights6 records
Department of Electrical Engineering, Stanford University competitors and assessment
Company assessmentDirect peers
- MIT Department of Electrical Engineering and Computer Science (EECS): MIT's flagship EE/CS academic unit offering BS, MS, PhD programs with research strengths that overlap directly with Stanford EE across AI, semiconductors, photonics, and quantum computing — Stanford EE's most direct domestic comparator.
- UC Berkeley Department of Electrical Engineering and Computer Sciences: Berkeley EECS is the closest peer on the West Coast in EE research scope, offering identical degree levels and competing for the same faculty talent, federal grants, and graduate student pool in AI/ML, communications, and nanoelectronics.
- Caltech Department of Electrical Engineering: Caltech EE is a smaller but elite EE research department competing with Stanford on quantum information, photonics, and applied physics research, and recruiting from the same top-tier graduate applicant pool.
- Princeton Department of Electrical and Computer Engineering: Princeton ECE offers BS, MS, PhD programs with overlapping strengths in information theory, wireless systems, and quantum — and competes with Stanford for senior faculty moves (e.g., Andrea Goldsmith recently moved from Stanford to Princeton).
- Georgia Tech School of Electrical and Computer Engineering: Georgia Tech ECE is a large-volume EE program with strong research in semiconductors, robotics, and wireless — a direct peer in scale and federal-funding capture, and a competitor in the CHIPS Act/NSTC research ecosystem.
- Carnegie Mellon Department of Electrical and Computer Engineering: CMU ECE competes head-to-head with Stanford EE for graduate admissions, computing hardware faculty, and AI/ML systems research funding — a direct peer on program structure and research portfolio overlap.
- ETH Zurich Department of Information Technology and Electrical Engineering: ETH Zurich D-ITET is the leading European comparator to Stanford EE in photonic/quantum research, semiconductor devices, and communications — directly comparable on research output, infrastructure, and global faculty recruitment.
- University of Illinois Urbana-Champaign Department of Electrical and Computer Engineering: UIUC ECE is a top-tier U.S. EE program with strong overlap on semiconductor devices, TCAD tools (paralleling Stanford's SUPREM/PISCES legacy), and communications — competing for federal grants and industry-sponsored research.
- UCLA Department of Electrical and Computer Engineering: UCLA ECE is a large West Coast EE department with overlapping strengths in photonics, semiconductor devices, and signal processing — a comparable regional peer competing for the same California industry-partnership opportunities.
Broad incumbents
- Bell Labs Research: Nokia Bell Labs is the historical industrial-research counterpart to top academic EE departments, with Nobel-laureate heritage and deep research strengths in photonics, wireless, and systems — broadly comparable as an EE research institution rather than a direct degree-competition peer.
Market position
Strengths5 records
Weaknesses5 records
Competitive moat5 records
Key risks5 records
Key highlights7 records
Customer concentration
Department of Electrical Engineering, Stanford University social profiles
Digital presenceDepartment of Electrical Engineering, Stanford University financial estimates
Financial estimateRevenue estimate
Valuation estimate
Department of Electrical Engineering, Stanford University leadership team
Management profileNumber of profiles
Profiles3 records
Department of Electrical Engineering, Stanford University funding detail
Funding detailFunding overview
Funding rounds
Investors
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Department of Electrical Engineering, Stanford University M&A and investment
M&A and investmentM&A
Investments
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Frequently asked questions about Department of Electrical Engineering, Stanford University
What does Department of Electrical Engineering, Stanford University do?
The Department of Electrical Engineering at Stanford University delivers undergraduate, graduate, and doctoral academic programs in electrical engineering, alongside operating advanced research laboratories in photonics, quantum science, AI/ML, nanoelectronics, semiconductors, robotics, and computational imaging. It supports students through programs including the Research Experience for Undergraduates summer research internship, Maker lab64 prototyping facility, and the Stanford Nanofabrication Facility, while producing peer-reviewed research, patents, and technology licensed to industry.
Is Department of Electrical Engineering, Stanford University a public or private company?
Department of Electrical Engineering, Stanford University is a private company. It is classified as nonprofit foundation owned and is currently operating.
When was Department of Electrical Engineering, Stanford University founded?
Department of Electrical Engineering, Stanford University was founded in 1885.
Where is Department of Electrical Engineering, Stanford University based?
Department of Electrical Engineering, Stanford University is headquartered in Stanford, United States, in the North America region.
How does Department of Electrical Engineering, Stanford University make money?
Four revenue lines are on record. Government research grants are the primary driver. The others are tuition and fees, industry partnerships and licensing and endowment and donations.
Who are Department of Electrical Engineering, Stanford University's main competitors?
Direct peers on record are MIT Department of Electrical Engineering and Computer Science (EECS), UC Berkeley Department of Electrical Engineering and Computer Sciences, Caltech Department of Electrical Engineering, Princeton Department of Electrical and Computer Engineering, Georgia Tech School of Electrical and Computer Engineering, Carnegie Mellon Department of Electrical and Computer Engineering, ETH Zurich Department of Information Technology and Electrical Engineering, University of Illinois Urbana-Champaign Department of Electrical and Computer Engineering and UCLA Department of Electrical and Computer Engineering. Bell Labs Research is listed as a broad incumbent.
Does Department of Electrical Engineering, Stanford University have an API?
No public API is recorded for Department of Electrical Engineering, Stanford University.
What industry is Department of Electrical Engineering, Stanford University in?
Department of Electrical Engineering, Stanford University's product category is Higher Education — Electrical Engineering. Its primary akta.pro industry code is EDAHAEAA, Engineering & Technology Institutes (Comprehensive), with a secondary code of EDAHAEAI, Technical Universities with Specialized Engineering Domains. Its NAICS code is 541330 and its SIC code is 8731.