Veeco
{{Short description|American manufacturing company}}
{{Infobox company
| name = Veeco Instruments Inc.
| logo = Veeco company logo.png
| type = Public
| traded_as = {{ubl|{{NASDAQ|VECO}}|S&P 600 component}}
| founded = {{Start date and age|1945}}
| founders = {{ubl|Frank Raible|Al Nerken}}
| location = Plainview, New York, U.S.
| key_people = {{ubl|Bill Miller (CEO) | John Kiernan (CFO)}}
| industry = Manufacturing
| revenue = {{nowrap|{{increase}} {{US$|583 million|link=yes}} (2021)}}
| operating_income = {{increase}} {{US$|57 million}} (2021)
| net_income = {{increase}} {{US$|26 million}} (2021)
| assets = {{increase}} {{US$|899 million}} (2021)
| equity = {{increase}} {{US$|438 million}} (2021)
| num_employees = 1,091 (December 2021)
| subsid = Ultratech
| homepage = {{URL|www.veeco.com}}
| footnotes = {{cite web |url=https://www.sec.gov/ix?doc=/Archives/edgar/data/103145/000155837022001461/veco-20211231x10k.htm |title=Veeco Instruments Inc. 2021 Annual Report (Form 10-K) |date=18 February 2022 |publisher=U.S. Securities and Exchange Commission}}
}}
Veeco Instruments Inc. is a global capital equipment supplier, headquartered in the U.S., that designs and builds processing systems used in semiconductor and compound semiconductor manufacturing, data storage and scientific markets for applications such as advanced packaging, photonics, power electronics and display technologies.
Veeco's processing system capabilities include laser annealing, photolithography, ion beam etch and deposition, metal organic chemical vapor deposition (MOCVD), wet wafer processing, molecular beam epitaxy (MBE), atomic layer deposition (ALD), physical vapor deposition (PVD), dicing and lapping, and gas and vapor delivery.
These technologies are used to enable artificial intelligence, virtual and augmented reality, high performance computing, autonomous vehicles, 5G wireless communication networks and cloud storage.{{Cite web |date=2020-01-14 |title=Big Growth Areas: Connectivity, AI, Reliability |url=https://semiengineering.com/big-growth-areas-connectivity-ai-reliability/ |access-date=2022-05-13 |website=Semiconductor Engineering |language=en-US}}
History
File:VEECO LEAK DETECTOR, VACUUM PUMP SYSTEMS - DPLA - 38b71a47baf068924a023e47832bf261.jpg
Veeco was incorporated in 1945 by two scientists, Frank Raible and Al Nerken, who created the helium leak detector. The company's name "Veeco" stood for Vacuum Electronic Equipment Company. In the 1960s, the original Veeco merged with Lambda, a manufacturer of power supplies, and in the late 1980s, was purchased by British company Unitech.
In 1990, Edward H. Braun, then COO of Veeco, and a group of senior company executives purchased Veeco's instrument business from Unitech in a management buyout. The company again used the Veeco Instruments trade name and completed an initial public offering on the Nasdaq National Market in 1994 (NASDAQ: VECO). The IPO netted the company $27.5 million.{{Cite web|date=June 9, 2020|title=Veeco Instruments Inc. History|url=http://www.fundinguniverse.com/company-histories/veeco-instruments-inc-history/|access-date=June 9, 2020|website=Funding Universe}}
Since going public in 1994, Veeco has completed more than a dozen acquisitions. The company purchased Ion Tech Inc. in 1999 and entered the optical coating market.{{Cite web|title=Veeco will merge with Ion Tech and OptiMag|url=https://optics.org/article/8368|access-date=2020-06-09|website=optics.org}}
In 2001, Veeco purchased Applied EPI, its present-day Molecular Beam Epitaxy group that currently maintains a leadership position in MBE technology worldwide.{{Cite news|date=September 7, 2001|title=Veeco will buy Applied Epi for $132 million to offer epi tools for compound devices|work=EE Times|url=https://www.eetimes.com/veeco-will-buy-applied-epi-for-132-million-to-offer-epi-tools-for-compound-devices/#|access-date=June 9, 2020}}
In 2003, Veeco purchased Emcore, paving the way for its unique metal organic chemical vapor deposition technologies in the advanced LED, Vertical-cavity surface-emitting laser (VCSEL) and photonics markets.{{Cite web|title=Emcore sells TurboDisc business to Veeco - News|url=https://compoundsemiconductor.net/article/83115-emcore-sells-turbodisc-business-to-veeco.html|access-date=2020-06-09|website=Compound Semiconductor|language=en}}
From 2007 to 2018, Veeco invested heavily in ALD research, publishing numerous papers on the topic.
In July 2007, Braun, then 68, became chairman of the board of Veeco, with John R. Peeler, 52, joining the company as chief executive officer. Peeler was formerly president of JDSU's Communications Test and Measurement Division{{Cite web |title=John R Peeler, Ultratech Inc: Profile and Biography |url=https://www.bloomberg.com/profile/person/1450639 |access-date=2022-05-13 |website=Bloomberg.com |language=en}}
In 2008, Veeco settled a patent litigation it had brought against Asylum Research Corporation in 2003.{{Cite web|title=StackPath|url=https://www.laserfocusworld.com/test-measurement/test-measurement/article/16563316/asylum-research-settles-patent-dispute-with-veeco|access-date=2020-06-09|website=www.laserfocusworld.com}}
In October 2010, Veeco announced the sale of its metrology business to Bruker Corporation in a cash deal for $229.4 million.{{Cite news|last=LePedus|first=Mark|date=August 16, 2010|title=Veeco sells metrology unit to Bruker|work=EE Times|url=https://www.eetimes.com/veeco-sells-metrology-unit-to-bruker/|access-date=June 9, 2020}}
In May 2012, John Peeler became chairman of the board of Veeco.
In 2014, Veeco purchased Solid State Equipment Co., expanding its portfolio of solvent-based wet etch and clean technologies for semiconductor and compound semiconductor markets.{{Cite web|title=Veeco completes acquisition of Solid State Equipment Holdings LLC {{!}} Semiconductor Digest|url=https://sst.semiconductor-digest.com/2014/12/veeco-completes-acquisition-of-solid-state-equipment-holdings-llc/|access-date=2020-06-09|language=en-US}}
On May 26, 2017, Veeco acquired front-end semiconductor process control equipment manufacturer Ultratech to expand into the advanced packaging market.{{Cite web|last=Robert|first=Castellano|date=February 6, 2017|title=Veeco Is Reinventing Itself, But Why Purchase Ultratech?|url=https://seekingalpha.com/article/4042933-veeco-is-reinventing-why-purchase-ultratech|access-date=June 9, 2020|website=Seeking Alpha}} This added to the portfolio advanced packaging lithography, laser spike annealing and 3D wafer inspection technology used in high volume manufacturing of logic and memory devices. Via the Ultratech purchase, Veeco also acquired Cambridge Nanotech, a Boston-based innovator in atomic layer deposition technology.{{Cite web|last=Sieffert|first=Don|date=December 21, 2012|title=Cambridge NanoTech assets acquired by Calif. semiconductor/ LED firm|url=https://www.bizjournals.com/boston/blog/techflash/2012/12/cambridge-nanotech-assets-acquired.html|access-date=2020-06-10|website=www.bizjournals.com}}
In October 2018, Bill Miller was named CEO.{{Cite web |title=Veeco's president Bill Miller to become CEO as John Peeler transitions to executive chairman; CFO Maheshwari adds COO role |url=http://www.semiconductor-today.com/news_items/2018/sep/veeco_050918.shtml |access-date=2022-05-13 |website=www.semiconductor-today.com}} Miller previously served as president and has led several growth initiatives within Veeco's business units and operations teams worldwide.
In May 2020, changes were made to governance to bring more gender diversity to the board of directors. John Peeler, chairman and former CEO, retired from the board. Richard D’Amore, general partner of North Bridge Venture Partners and previously lead independent director, was appointed as chairman; and Mary Jane Raymond, chief financial officer and treasurer of II-VI Inc., was appointed to the Audit Committee.{{Cite web|title=Veeco announces governance and diversity improvements to board|url=http://www.semiconductor-today.com/news_items/2020/may/veeco-070520.shtml|access-date=2020-06-10|website=www.semiconductor-today.com}}
In 2020, Veeco succeeded in strengthening its profitability by optimizing R&D and extending core technologies into semiconductor and compound semiconductor markets.{{Cite web |title=Veeco returns to positive operating cash flow as it completes restructuring |url=http://www.semiconductor-today.com/news_items/2020/aug/veeco-060820.shtml |access-date=2022-05-13 |website=www.semiconductor-today.com}}
In 2021, Veeco shipped its first LSA101 Laser Spike Annealing System from its facility in San Jose, California facility to a leading semiconductor manufacturer.{{Cite web |title=Evertiq - Veeco ships first system from new manufacturing facility |url=https://evertiq.com/design/51004 |access-date=2022-05-13 |website=evertiq.com |language=en}}
In February 2023, it was announced Veeco had acquired the Lund-headquartered manufacturer of CVD epitaxy systems - which enables advanced SiC applications in the electric vehicle market, Epiluvac AB.
Finances
For the fiscal year 2021, Veeco reported annual revenue of $583 million, 28% growth over 2020, driven by semiconductor and data storage performance. This growth came with profitability driving $87 million in non-GAAP operating income and $1.43 or 66% growth in diluted non-GAAP EPS.
Veeco had cash flow from operations of $68 million, a 58% increase over 2020.{{Cite web |last=Inc |first=Veeco Instruments |date=2022-02-16 |title=Veeco Reports Fourth Quarter and Fiscal Year 2021 Financial Results |url=https://www.globenewswire.com/news-release/2022/02/16/2386606/0/en/Veeco-Reports-Fourth-Quarter-and-Fiscal-Year-2021-Financial-Results.html |access-date=2022-05-13 |website=GlobeNewswire News Room |language=en}}{{Cite web |title=VECO {{!}} Veeco Instruments Inc. Annual Cash Flow - WSJ |url=https://www.wsj.com/market-data/quotes/VECO/financials/annual/cash-flow |access-date=2022-05-13 |website=www.wsj.com}}
class="wikitable"
!Year !Revenue in million US$ !Gross profit in million US$ |
2021
|583 |242 |
2020
|454 |194 |
2019
|419 |158 |
2018
|542 |194 |
2017
|476 |176 |
2016
|332 |133 |
2015
|447 |177 |
2014
|393 |135 |
2013
|332 |103 |
2012
|516 |215 |
2011
|979 |474 |
2010
|931 |449 |
2009
|282 |114 |
2008
|315 |123 |
2007
|402 |158 |
Markets
Veeco specializes in thin film process equipment for major technology market sectors,{{Cite web |title=Veeco Instruments Inc. - AnnualReports.com |url=https://www.annualreports.com/Company/veeco-instruments-inc |access-date=2022-05-13 |website=www.annualreports.com}} including:
- Semiconductor
- Compound semiconductor
- Data storage
- Scientific
- Advanced packaging
- MEMS and RF filters
Veeco systems are used for advanced materials deposition processes, cleaning and surface preparation, as well as the removal of critical materials. High tech manufacturers that purchase Veeco systems produce devices in high volumes. They also use them to develop next-generation products with the intent of making them more efficient, more cost effective and more advanced.{{Cite web |title=Veeco Instruments Inc. - AnnualReports.com |url=https://www.annualreports.com/Company/veeco-instruments-inc |access-date=2020-06-10 |website=www.annualreports.com}}
Products
Front end of line (FEOL) semiconductor systems include:
- Laser spike annealing systems for precision doping of materials at a controlled temperature
- Ion beam etch tools used in spin torque transfer magnetic random access memory ("STT-MRAM") applications. STT-MRAM has many benefits over traditional random access memory such as its non-volatility, speed, endurance and power consumption.{{Cite journal|last1=Zhang|first1=Li|last2=Zhao|first2=Weisheng|last3=Zhuang|first3=Yiqi|last4=Bao|first4=Junlin|last5=Wang|first5=Gefei|last6=Tang|first6=Hualian|last7=Li|first7=Cong|last8=Xu|first8=Beilei|date=November 14, 2013|title=A 16 Kb Spin-Transfer Torque Random Access Memory With Self-Enable Switching and Precharge Sensing Schemes|journal=IEEE Transactions on Magnetics|volume=50|issue=4|pages=1–7|doi=10.1109/TMAG.2013.2291222|issn=1941-0069|doi-access=free}}
- Atomic layer deposition (ALD) tools for semiconductor, solar and medical devices applications. Veeco is one of the key players in the global ALD market.{{Cite web|last=LLP|first=Fior Market Research|date=2020-01-29|title=Global Atomic Layer Deposition (ALD) Market is Expected to Reach USD 9.51 Billion by 2025 : Fior Markets|url=http://www.globenewswire.com/news-release/2020/01/29/1976956/0/en/Global-Atomic-Layer-Deposition-ALD-Market-is-Expected-to-Reach-USD-9-51-Billion-by-2025-Fior-Markets.html|access-date=2020-06-10|website=GlobeNewswire News Room}}
Advanced packaging systems include:
- Lithography tools used for copper pillar, fan-out wafer-level packaging (FOWLP) through-silicon via (TSV) and silicon interposer applications
- Wet etch tools for under-bump metallization and redistribution layer applications
- Wet-solvent-based surface preparation tools for photoresist and dry film removal, flux cleaning, particle removal and TSV clean applications
Systems used in the manufacturing of MEMS devices and RF filters include:
- Wet etch tools for etching thin films on substrates and sometimes the substrates themselves.{{Cite web|title=Etching Processes|url=https://www.mems-exchange.org/MEMS/processes/etch.html|access-date=June 9, 2020|website=MNX - MEMS and Nanotechnology Exchange}}
- Single-wafer wet clean systems that use a soak-and-spray approach for metal lift-off. This is used in MEMS and compound semiconductor applications. This tool was part of the SSEC acquisition.{{Cite web|title=SSEC unveils single wafer wet processing tools for MEMS - News|url=https://siliconsemiconductor.net/article/77796/SSEC_unveils_single_wafer_wet_processing_tools_for_MEMS|access-date=2020-06-10|website=Silicon Semiconductor|language=en}}
- MBE and ion beam etch tools used to perform ion beam lithography in the manufacture of electroacoustic filters such as bulk acoustic wave ("BAW") and surface acoustic wave ("SAW") RF filters.
Systems used for compound semiconductor applications:
Veeco's MOCVD tools are used for the deposition of III-V compound semiconductor materials like indium phosphide (InP), gallium arsenide (GaAs) and gallium nitride (GaN) in a single crystal layer to form a thin film.{{Cite web|date=2020-02-20|title=MOCVD Vendors Eye New Apps|url=https://semiengineering.com/mocvd-vendors-eye-new-apps/|access-date=2020-06-10|website=Semiconductor Engineering|language=en-US}}
It is used for depositing highly uniform arsenide and phosphide ("As/P") films to create amber and red output colors in LEDs.
Emerging applications for MOCVD include mini-LEDs, and micro-LEDS used in LED-backlit displays. It is also expected to enable VCSELs used for facial recognition applications, as well as GaN-based RF and power semiconductor devices.
Systems used for advanced materials research and industrial applications
Veeco MBE systems are used by scientific research organizations and universities as part of materials science discovery.
- At the Nanolab at Eindhoven University of Technology, a Veeco MBE reactor is used to grow epitaxial layers for GaAs-based materials.{{Cite web|title=MBE Veeco GENxplorer|url=https://www.tue.nl/en/research/research-institutes/research-institutes/nanolabtue/list-of-equipment/epitaxy-equipment/mbe-veeco-genxplorer/|access-date=2020-06-10|website=www.tue.nl|language=en}}
- At Tufts University, the Veeco GEN Xplore enables the growth of small bandgap materials.
https://engineering.tufts.edu/epitaxycore/capabilities/molecular-beam-epitaxy
MBE, wet etch and clean systems are also used to manufacture high power lasers and infrared sensors.
IBD, IBE, PVD, and lapping and dicing tools are used in data storage applications such as hard disk drives. IBD tools deposit thin layers of advanced materials on various substrates to alter how light is reflected and transmitted.{{Cite web |url=https://www.annualreports.com/HostedData/AnnualReports/PDF/NASDAQ_VECO_2019.PDF |title=Archived copy |access-date=2021-01-12 |archive-date=2020-06-10 |archive-url=https://web.archive.org/web/20200610004452/http://www.annualreports.com/HostedData/AnnualReports/PDF/NASDAQ_VECO_2019.PDF |url-status=dead }}
Technology breakthroughs
Veeco has invested in ALD research and supports an ALD science research team, which has published numerous papers on the topic between 2007 and 2018.{{Cite web|title=ALD Research Archives|url=https://www.veeco.com/technologies-and-products/ald-research/|access-date=2020-06-10|website=Veeco|language=en-US}}
For solar cell applications, in 2010, Veeco MOCVD developed a tool that increased cell growth rates resulting in higher throughput without compromising performance.{{Cite book|last1=Schmieder|first1=Ken|last2=Haughn|first2=Chelsea|last3=Pulwin|first3=Ziggy|last4=Dyer|first4=Devon|last5=Mutitu|first5=James|last6=Doty|first6=Matt|last7=Ebert|first7=Chris|last8=Barnett|first8=Allen|title=2011 37th IEEE Photovoltaic Specialists Conference |chapter=Analysis of high growth rate MOCVD structures by solar cell device measurements |date=April 19, 2012|chapter-url=https://ieeexplore.ieee.org/document/6186013|pages=000542–000545|doi=10.1109/PVSC.2011.6186013|isbn=978-1-4244-9965-6|s2cid=8736464}}
Facilities
Headquartered in Plainview, New York, Veeco has 15 locations in 11 countries, including:{{cn|date=July 2022}}
- Somerset, NJ
- Horsham, PA
- Waltham, MA
- San Jose, CA
- St. Paul, MN
- Munich, Germany
- Shanghai, China
- Tokyo, Japan
- Seoul, Korea
- Hsinchu, Taiwan
- Bangkok, Thailand
- Laguna, Philippines
- Singapore
- Penang, Malaysia
- Lund, Sweden
References
{{Reflist}}
External links
- {{Official website|http://www.veeco.com/}}
{{Finance links
| name = Veeco Instruments Inc.
| google = VECO:NASDAQ
| yahoo = VECO
| bloomberg = VECO:US
| symbol = VECO
| sec_cik = 103145
| reuters = VECO.N
}}
{{Authority control}}
Category:Technology companies established in 1945
Category:Companies listed on the Nasdaq