Euclid TechLabs
Euclid TechLabs (and sibling Euclid Beamlabs) is a Gaithersburg, MD-based R&D firm founded in 2003 that designs and sells accelerator components, ultrafast electron microscopy (TEM) upgrades, and HPHT/CVD diamond materials to US and international national laboratories, universities, and medical institutions.
- Company typePrivate
- Founded2003
- HeadquartersGaithersburg, United States
- Headcount11–50
- GTM typeB2B
- OfferingHardware or Manufacturing
What Euclid TechLabs does
Euclid TechLabs (operating alongside its sibling Euclid Beamlabs) is a Gaithersburg-headquartered R&D and instrumentation company founded in 2003 that designs, fabricates, and sells advanced accelerator components, ultrafast electron microscopy upgrades, and high-end diamond materials. Its technical core spans superconducting RF (SRF) and beam physics, dielectric accelerator structures, ferroelectric RF components, and HPHT/MPE CVD diamond growth, with demonstrated "firsts" including the world's first conduction-cooled SRF photogun (first beam December 2025) and the first traveling wave demonstration in an SRF cavity at Fermilab. Principal products include the UltraFast Pulser (UFP) TEM retrofit module that delivers picosecond stroboscopic imaging without lasers or photocathodes, an HDR electronic brachytherapy system targeting Ir-192 replacement, traveling wave SRF cavities, beam position monitors, pulsed solenoid lenses, ferroelectric fast reactive tuners (FE-FRT), and high-purity single-crystal diamonds for X-ray optics, quantum, and radiation-hardened electronics applications. The firm holds registered US patents covering its brazeless compact accelerator architecture, MgTi-oxide conductive ceramics, BST ferroelectric tuner materials, and the UFP trademark.
Revenue is generated through four streams: sale of specialized scientific instruments (UFP systems, compact accelerators, SRF components, BPMs, diamond materials), custom engineering consulting and bespoke electromagnetic/RF designs, SBIR-funded R&D from DOE, NIH, NASA, DOD, and NCI, and direct contracts including an IDIQ with CERN. The go-to-market is consultative direct enterprise field sales complemented by deep conference participation (IPAC, LINAC, MRS, EMC, M&M, FCC Week, TTC), academic seminars, and an OEM-embedded factory-installation channel through JEOL USA. Customer concentration skews toward US Department of Energy national laboratories (Argonne, Fermilab, Brookhaven, SLAC, Jefferson Lab), international laboratories (CERN, KEK, HZB), and a growing base of research universities (TU Wien, CalTech, Penn State, Arizona State) and medical institutions (Northwestern Proton Center, Hines VA Hospital). Operations are run from Beltsville, MD headquarters and an expanding Bolingbrook, IL manufacturing facility (ISO Class 7 clean room, ceramics manufacturing, UHV welding). Leadership comprises a small bench of PhD physicists with deep tenure at Argonne and Fermilab, including President/CEO Dr. Alexei Kanareykin (active since 1991 with ANL and Fermilab) and CTO Chunguang Jing (seven US patents).
Euclid TechLabs firmographics
Firmographics- Name
- Euclid TechLabs
- Legal name
- Euclid Techlabs LLC
- Website
- https://euclidtechlabs.com
- Company type
- Private
- Founded year
- 2003
- Operating status
- Operating
- Headcount range
- 11–50 employees
- Short description
- Euclid TechLabs (and sibling Euclid Beamlabs) is a Gaithersburg, MD-based R&D firm founded in 2003 that designs and sells accelerator components, ultrafast electron microscopy (TEM) upgrades, and HPHT/CVD diamond materials to US and international national laboratories, universities, and medical institutions.
- Ownership category
- akta.pro rank
Euclid TechLabs industry classification
Industry- Product category
- Particle Accelerator Components & Electron Microscopy Instrumentation
- NAICS
- Irradiation Apparatus Manufacturing (334517), Electromedical and Electrotherapeutic Apparatus Manufacturing (334510), Instrument Manufacturing for Measuring and Testing Electricity and Electrical Signals (334515), Semiconductor Machinery Manufacturing (333242), Research and Development in Nanotechnology (541713)
- SIC
- Industrial Instruments For Measurement, Display, And Control (3823), Instruments For Meas & Testing Of Electricity & Elec Signals (3825), Electromedical & Electrotherapeutic Apparatus (3845), X-Ray Apparatus & Tubes & Related Irradiation Apparatus (3844), Optical Instruments & Lenses (3827), Electronic Coils, Transformers & Other Inductors (3677)
- akta.pro primary industry
- RF, Microwave & Wireless ICs (HDAHAAAF)
- akta.pro secondary industries
- Dielectrics & Insulation Materials (Low-k/High-k/Spin-on/Hardmasks) (HDAHAGAJ), Sensor Fusion, Interface ICs & Modules (AFE/Readout/Packaging/Calibration) (HDAHALAO), Microwave & RF Signal Chain ICs (Mixers/Detectors/Attenuators) (HDAHAMAL)
Keywords
Where Euclid TechLabs is headquartered
LocationHeadquarters
- HQ city
- Gaithersburg
- HQ country
- United States
- HQ region
- North America
Offices2 records
Markets served
Euclid TechLabs business model
Business model- GTM type
- B2B
- Offering type
- Hardware or Manufacturing
- Cost components
- Personnel, Technology or R&D, Operations, Infrastructure, Marketing or Sales
Revenue model
- Specialized Scientific Instruments and Hardware: Sale of proprietary hardware products including the UltraFast Pulser (TEM upgrade module), compact accelerators, beamline instrumentation, SRF components, and beam position monitors. Products are sold directly to national labs, universities, and industrial customers.
- Custom Solutions and Engineering Consulting: Out-of-the-box solutions and designs for industry, space, medical and military applications. Custom electron sources, RF sample stages, simulations, and electromagnetic device development services.
- SBIR/Government R&D Grants: Phase I, II, and III SBIR awards from DOE, NIH, DOD, NASA, and other government agencies supporting development and commercialization of technologies. Includes IDIQ contracts with CERN.
- Lab-Grown Diamond Materials: Sale of HPHT and CVD diamond materials and diamond-based applications to research institutions and industry for X-ray optics, quantum computing, defense, and space applications.
Pricing tiers
| Model | Billing | Price |
|---|---|---|
| Other | Multi-year contract | Custom-built scientific instruments with pricing based on configuration, volume, and customer requirements |
Go-to-market motion2 records
Distribution channels3 records
Marketing channels4 records
Euclid TechLabs product offering
Product offeringCore offering
Euclid TechLabs designs, develops, and manufactures advanced scientific instruments and materials for particle accelerators, ultrafast electron microscopy, and X-ray/quantum applications. Its flagship offerings are the UltraFast Pulser (UFP) module that upgrades any TEM into an ultrafast stroboscopic instrument, conduction-cooled superconducting RF photoguns and SRF cavities for compact accelerators, HPHT and CVD lab-grown diamond substrates for X-ray optics, quantum and radiation-hardened electronics, and beamline components such as BPMs, pulsed solenoids, ferroelectric fast reactive tuners, and conductive ceramic RF windows. The company also produces an HDR electronic brachytherapy system for cancer treatment and offers custom engineering and consulting services.
Product overview
Euclid TechLabs offers a portfolio of advanced scientific instruments and materials centered on accelerator physics and electron microscopy technology. The core product lines include the UltraFast Pulser (UFP) module for upgrading commercial TEMs into ultrafast instruments, conduction-cooled SRF photoguns for UEM/UED applications, and HPHT/CVD diamond materials for X-ray optics, quantum computing, and radiation-hardened electronics. These products integrate with supporting components including beam position monitors, pulsed solenoid lenses, ferroelectric fast reactive tuners, and conductive ceramic RF windows. The company also develops HDR electronic brachytherapy systems for cancer treatment. Products are sold to national laboratories (Argonne, Fermilab, Brookhaven, SLAC), universities, and medical institutions globally.
Differentiator
Problem solved
Functional benefit
Products and services
- UltraFast Pulser (UFP) An RF-based, laser-free module that upgrades any transmission electron microscope (TEM) into an ultrafast stroboscopic instrument with 10^-23 m·s space-time resolution, 100-1000X faster data acquisition, and picosecond-level timing. It enables in-situ imaging of dynamic atomic-scale processes across all frequency ranges. Retrofittable across all major commercial TEMs via Euclid's OEM/field relationships.
- Conduction-Cooled SRF Photogun The world's first conduction-cooled superconducting RF photogun, a CW 1.5-cell MeV-scale SRF photogun operating at 1.3 GHz that requires only ~2 W of RF power and a single cryocooler, eliminating liquid-helium infrastructure. Provides ultra-stable electron beams for UEM/UED and compact accelerator applications.
- Traveling Wave SRF Cavities Superconducting RF cavities engineered for traveling-wave operation that achieve up to ~50% higher accelerating gradient than conventional standing-wave SRF cavities, with the first-ever traveling-wave demonstration in an SRF cavity carried out at Fermilab. Designed to shrink collider length and cost for next-generation high-energy physics machines.
- HDR Electronic Brachytherapy System An ultra-compact electronic high-dose-rate (HDR) brachytherapy device delivering up to 1 Gy/min using a 1,200 keV electron beam and a 3.2 mm diameter applicator, intended as an isotope-free alternative to Ir-192 for prostate, breast, gynecological, and skin cancer treatment. Developed with medical physics collaborators at Northwestern Proton Center and Hines Veterans Affairs Hospital.
- HPHT Lab-Grown Diamonds High-pressure, high-temperature lab-grown single-crystal diamond plates engineered as high-crystallinity, dislocation-free substrates for X-ray and UV optics, with customized doping available for detectors, radiation-hardened electronics, and quantum information and sensing applications. Sold to research and industrial customers from Euclid's U.S.-based diamond growth facility.
- MPE CVD Lab-Grown Diamonds High-quality single-crystal epitaxial CVD diamond (microwave plasma-enhanced CVD) with near-theoretical crystallinity and nitrogen defects below 1 ppb, intended for 3D diamond detectors, beam-monitor sensors in high-energy physics, X-ray optics, quantum applications, electronic devices, and particle detectors.
- Ferroelectric Fast Reactive Tuner (FE-FRT) A non-mechanical RF cavity frequency tuner built on Euclid's patented BST ferroelectric material (with Mg-based additives). Demonstrated response times around 600 ns and proven on SRF cavities at CERN, where it enabled power reduction from 22.2 MW to 2.96 MW (≈87%) for HL-LHC microphonics suppression and transient detuning control.
- Beam Position Monitors (BPM) Ultra-compact in-flange beam position monitors with high sensitivity, large dynamic range, full electronic readouts, UHV compatibility, and customizable flange sizes for precision electron-beam position monitoring in compact accelerator and UEM beamlines.
- Pulsed Solenoid Lenses with Flux Concentrator Compact pulsed solenoid lenses using a flux concentrator that deliver up to 2 Tesla field strength with 10^-5 stability while reducing weight and size by ~100X compared with conventional DC solenoid lenses, enabling compact MeV UEM systems.
- Dielectric Loaded Accelerator (DLA) Pencil-sized compact electron accelerator structure built around high-permittivity dielectric materials, intended for portable MeV-range applications such as mobile radiotherapy, airport/cargo inspection, materials characterization, sterilization, and radiation-driven chemistry.
- Ultra-Compact Portable Accelerator System An integrated ultra-compact MeV electron source combining a Dielectric Loaded Accelerator (DLA) with an Ultra-Nano Crystalline Diamond Field Emission (UNCD-FE) cathode delivering 10 mA per pulse, packaged into a portable, briefcase-sized accelerator for mobile radiotherapy, field inspection, and OEM integration.
- RF Photoinjectors (1.5-cell / 2.3-cell / SRF) RF photoinjector product family including a high-gradient 1.5-cell S-band photoinjector (up to 100 MV/m), a high-repetition-rate 2.3-cell photoinjector (1 kHz), and continuous-wave SRF photoinjectors, sold to accelerator facilities and OEM partners.
- Conductive Ceramic RF Windows RF windows and couplers fabricated from Euclid's patented MgTi-oxide conductive ceramic with ~1000X better conductivity than alumina and tunable conductivity over 10^-9 to 10^-12 S/m, eliminating surface charging and multipacting to enable higher power and frequency operation.
- Beam Halo Monitors Diamond-based beam halo monitors and variable-aperture 2D beam halo monitors for high-energy beam diagnostics, sold as drop-in diagnostics on accelerator beamlines.
- Custom Accelerator and RF Engineering Services Custom out-of-the-box engineering and consulting services covering broadband RF sample stages for electron microscopes, customized electron sources for imaging lines, electromagnetic device design, and simulations for industry, space, medical and military clients. Services are sold through direct technical engagement.
Quantifiable outcome
- UltraFast Pulser delivers 100-1000X faster data acquisition in TEM experiments, turning experiments that took days into minutes
- +4 more outcomes
Companies that use Euclid TechLabs
Customer profileNamed customers12 records
Segments5 records
Ideal customer profiles4 records
Euclid TechLabs technology and API
TechnologyTechnology focussed Yes
API detail
- Has API
- No
- API docs
- API detail
Core technology
AI maturity
App detail
Feature10 records
Euclid TechLabs partnerships and signals
Strategic signalPartnerships
18 partnerships are on record, tiered major, core and minor.
- SLAC National Accelerator LaboratorymajorSupporting Argonne APS team, Euclid delivered final Station B chamber to SLAC on Dec 11, 2025, completing all four stations (6 fully equipped chambers) for CBXFEL experiment at LCLS beamline.
- Helmholtz-Zentrum Berlin (HZB)coreHost of first-ever FE-FRT Workshop 2025; Euclid is ferroelectric material supplier for HZB's FE-FRT development for BESSY III photon source; collaboration on fast SRF cavity tuning technologies.
- Vienna University of Technology (TU Wien)coreEuclid is working with TU Wien and JEOL to install UFP system at USTEM user facility, creating the first ultrafast electron microscope (UEM) in Austria. Part of the AQUTEM quantum imaging project led by Prof. P. Haslinger.
- Arizona State UniversityminorCollaborating on advanced photocathode theory development with Northern Illinois University, Cornell University, Lawrence Berkeley National Laboratory, and Euclid Beamlabs to improve performance of x-ray FELs and electron sources.
- WD Lab Grown DiamondsminorUS-based consortium (WD Lab Grown Diamonds, Euclid Beamlabs, Advanced Diamond) with Argonne National Laboratory to create domestic ecosystem for diffraction-grade diamond materials for X-ray optics, funded by DoE ARDAP.
- Advanced DiamondminorPart of US-based diamond consortium (with WD Lab Grown Diamonds and Euclid Beamlabs) to establish domestic supply chain for diffraction-grade diamond materials for accelerator X-ray optics.
- JEOL USA LtdcoreClose working relationship established across all major EM industry leaders to enable UFP retrofitted across all major TEMs. Working directly with JEOL to install UFP system in JEOL factory on JEM-ARM200F NEOARM as part of TU Wien AQUTEM project.
- FermilabcoreFive-year collaboration developing the world's first conduction-cooled SRF photogun; first-ever demonstration of traveling wave in SRF cavity at Fermilab's facilities; TTC conference collaboration.
- Argonne National LaboratorycoreCollaboration on SRF photogun development and CBXFEL project; Argonne Wakefield Accelerator (AWA) used for electronic brachytherapy testing; diamond material characterization; support for APS team delivering CBXFEL hardware to SLAC.
- Brookhaven National Laboratory (BNL)coreLong-standing collaboration on UFP technology development, ultrafast electron diffraction beamline, SRF photogun development, MeV UEM system for BNL user facility, and photocathode research.
- NISTcorePhase III commercialization awards with NIST for UFP technology; UFP launched at NIST; collaborative publication in Review of Scientific Instruments.
- CERNcoreIDIQ contract to develop nonlinear components for tuning RF cavities; FE-FRT proof-of-principle successfully tested on SRF cavity at CERN for microphonics suppression; FE-FRT development for LHC injection scenarios; Euclid is ferroelectric material supplier for CERN FE-FRT programs.
- Jefferson Laboratory (Jefferson Lab)coreFE-FRT development for SRF cavity applications; RF window testing at high power test stand (80kW CW); collaboration on SRF coupler development with Euclid's conductive ceramic materials.
- Northwestern Proton CenterminorMedical physics collaboration for HDR electronic brachytherapy device development and testing of working prototypes.
- Hines Veterans Affairs HospitalminorRadiation Oncology collaboration with Euclid for HDR electronic brachytherapy device development and testing.
- CalTech / Chan Zuckerberg Initiative (CZI)minorCollaboration under CZI on ultrafast TEM technologies for unprecedented dose control with low-to-no radiation damage, enabling extended sample lifetime and precise timing for 3D tomographic imaging.
- Northern Illinois UniversityminorCollaborating with Arizona State University, Cornell, LBNL, and Euclid Beamlabs on photocathode theory extension and spectral range demonstration for advanced electron sources.
- Rensselaer Polytechnic Institute (RPI)minorNASA Phase II SBIR collaboration with Euclid Beamlabs for development of radiation-tolerant high-power diamond transistor technology for space applications.
Scale indicators4 records
Recent moves8 records
Expansion highlights7 records
Euclid TechLabs competitors and assessment
Company assessmentDirect peers
- RadiaBeam Technologies: Small US-based accelerator technology company developing RF-based accelerator components, beam diagnostics, and compact accelerator systems for national labs and industry — closest direct peer in scale, product mix, and customer base to Euclid TechLabs.
- Element Six: World-leading synthetic diamond manufacturer (De Beers subsidiary) producing CVD and HPHT diamonds for industrial, quantum, and scientific applications — directly comparable to Euclid's diamond materials business at much greater scale.
- National Electrostatics Corp (NEC): Long-established US manufacturer of particle accelerators (Pelletron tandem accelerators) and ion beam systems for research, medical, and industrial applications — comparable niche accelerator vendor serving national labs and universities.
Broad incumbents
- Communications & Power Industries (CPI): Established manufacturer of RF/microwave power sources, microwave tubes, and accelerator subsystems for scientific, medical, and industrial markets — broadly overlaps Euclid's RF technology stack as part of a much larger portfolio.
- Thales Group: Through its microwave & imaging sub-systems business, Thales supplies RF sources, electron guns, and accelerator components to major physics labs including CERN — a much larger incumbent serving the same accelerator customer set.
- Thermo Fisher Scientific: One of the two dominant global TEM manufacturers (alongside JEOL) whose installed base represents Euclid's UFP retrofit opportunity; competes indirectly as the platform provider whose instruments Euclid upgrades.
- JEOL: Global TEM manufacturer and Euclid's OEM installation partner for the UltraFast Pulser; overlaps Euclid as the underlying instrument maker whose microscopes Euclid retrofits into ultrafast systems.
- Varian Medical Systems (Siemens Healthineers): Dominant manufacturer of HDR brachytherapy afterloaders and radiation oncology systems; represents the established commercial competitor Euclid's electronic brachytherapy device would need to displace in healthcare.
- Elekta: Major radiation therapy and brachytherapy equipment vendor with established clinical channels in cancer treatment centers — the other incumbent Euclid's brachytherapy system must compete against for clinical adoption.
- Bruker: Manufacturer of electron microscopes and scientific instruments whose installed TEM base represents another retrofit opportunity for Euclid's UltraFast Pulser, while competing at the platform level.
Market position
Strengths5 records
Weaknesses5 records
Competitive moat5 records
Key risks6 records
Key highlights7 records
Customer concentration
Euclid TechLabs social profiles
Digital presenceEuclid TechLabs financial estimates
Financial estimateRevenue estimate
Valuation estimate
Euclid TechLabs leadership team
Management profileNumber of profiles
Profiles4 records
Euclid TechLabs subsidiaries and ownership
Company hierarchySubsidiaries1 record
Euclid TechLabs funding detail
Funding detailFunding overview
Funding rounds1 record
Investors1 record
Funding detail is available on the Subscription and Enterprise plan.Contact sales →
Euclid TechLabs M&A and investment
M&A and investmentM&A
Investments
M&A and investment is available on the Subscription and Enterprise plan.Contact sales →
Frequently asked questions about Euclid TechLabs
What does Euclid TechLabs do?
Euclid TechLabs designs, develops, and manufactures advanced scientific instruments and materials for particle accelerators, ultrafast electron microscopy, and X-ray/quantum applications. Its flagship offerings are the UltraFast Pulser (UFP) module that upgrades any TEM into an ultrafast stroboscopic instrument, conduction-cooled superconducting RF photoguns and SRF cavities for compact accelerators, HPHT and CVD lab-grown diamond substrates for X-ray optics, quantum and radiation-hardened electronics, and beamline components such as BPMs, pulsed solenoids, ferroelectric fast reactive tuners, and conductive ceramic RF windows. The company also produces an HDR electronic brachytherapy system for cancer treatment and offers custom engineering and consulting services.
Is Euclid TechLabs a public or private company?
Euclid TechLabs is a private company. It is classified as unknown and is currently operating.
When was Euclid TechLabs founded?
Euclid TechLabs was founded in 2003. It employs 11 to 50 people.
Where is Euclid TechLabs based?
Euclid TechLabs is headquartered in Gaithersburg, United States, in the North America region.
How does Euclid TechLabs make money?
Four revenue lines are on record. Specialized Scientific Instruments and Hardware is the primary driver. The others are custom Solutions and Engineering Consulting, SBIR/Government R&D Grants and lab-Grown Diamond Materials.
Who are Euclid TechLabs's main competitors?
Direct peers on record are RadiaBeam Technologies, Element Six and National Electrostatics Corp (NEC). Broad incumbents are Communications & Power Industries (CPI), Thales Group, Thermo Fisher Scientific, JEOL, Varian Medical Systems (Siemens Healthineers), Elekta and Bruker.
Does Euclid TechLabs have an API?
No public API is recorded for Euclid TechLabs.
What industry is Euclid TechLabs in?
Euclid TechLabs's product category is Particle Accelerator Components & Electron Microscopy Instrumentation. Its primary akta.pro industry code is HDAHAAAF, RF, Microwave & Wireless ICs, with a secondary code of HDAHAGAJ, Dielectrics & Insulation Materials (Low-k/High-k/Spin-on/Hardmasks). Its NAICS code is 334517 and its SIC code is 3823.