Picosun portion of intensive quantum technology enhancement venture

Picosun portion of intensive quantum technology enhancement venture

HELSINKI, Jan. 18, 2022 /PRNewswire/ — Picosun can take part as an industrial companion in QuTI, a recently launched extensive investigation task aiming to acquire new factors, production and tests methods that are needed in quantum technology. Quantum technologies has obtained curiosity in a huge array of industries on a large scale. The extraordinary performance enhancements it features allow for example potent computing and advantages in communications, health care, sensors, imaging and measurement applications.

The QuTI undertaking is coordinated by VTT Technical Investigation Centre of Finland, and it has a complete price range of around 10 million euros. Other industrial partners of the consortium involve Bluefors, Afore, IQM, Rockley Photonics, CSC, Quantastica, Saab and Vexlum. The research companions are VTT, Aalto University and the College of Tampere.

“Quantum engineering is a multidisciplinary and promptly advancing industry. The QuTI consortium offers an great beginning issue for strengthening the worldwide competitiveness of Finnish know-how and field in this speedy-expanding area,” suggests QuTI project’s coordinator, Study Professor Mika Prunnila from VTT.

“Quantum technology has currently taken the move from study laboratories to industrial applications. We search ahead in supporting this development trend even further and being section of developing a globally aggressive industrial ecosystem in Finland close to this technology,” states Dr. Jani Kivioja, CTO of Picosun Group.

“Atomic Layer Deposition, or ALD, is the advanced thin movie coating system for ultra-thin, highly uniform and conformal material layers that allows the electronic answers of nowadays. It will also engage in a very important job in potential innovations and in the quantum computing, interaction and sensing units that will be produced in the QuTI undertaking”, carries on Jussi Rautee, CEO of Picosun Group.

Additional details:
Jani Kivioja
CTO, Picosun Team
Tel: +358 46 922 8804
E mail: [email protected]

www.picosun.com

Picosun delivers the most sophisticated ALD (Atomic Layer Deposition) slender film coating alternatives for world-wide industries. Picosun’s ALD methods enable technological leap into the long run, with transform-important generation processes and unmatched, revolutionary know-how in the area – relationship again to the invention of the know-how itself. Nowadays, PICOSUN® ALD tools are in each day manufacturing use in quite a few major industries all over the globe. Picosun is based in Finland, with subsidiaries in Germany, Usa, Singapore, Japan, South Korea, China mainland and Taiwan, workplaces in India and France, and a globe-vast sales and assistance community. Visit www.picosun.com.

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Picosun portion of intensive quantum technology enhancement venture

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Oyo wins overall greatest condition in digital technology advancement

Oyo wins overall greatest condition in digital technology advancement

Oyo Point out has set a report as it cleared all the award groups at the ninth frequent assembly of the Nationwide Council on Communications and Digital Financial state (NCCDE), held not long ago at the NAUWA occasion centre, Asokoro, Abuja.

Oyo Point out emerged the Finest Condition in Electronic Engineering Human Funds Progress, Finest Condition in Electronic Technology Infrastructure Progress, runner up in E-federal government Implementation and Overall Finest State in Electronic Engineering Development at the 9th common meeting of the Nationwide Council on Communications and Digital Economy (NCCDE).

The 9th typical meeting of the Countrywide Council on Communications and Electronic Economic system (NCCDE) with the concept Utilising Electronic Know-how to Accelerate Economic Recovery in a Submit COVID-19 Era and Outside of was chaired by the Minister for Communications and Digital Financial state, Professor Isa Ali Ibrahim Pantami.”

The programme experienced in attendance heads of various parastatals less than the Ministry of Communications and Digital Economic climate, who involve the Director-Normal, National Details Technological know-how Growth Agency (NITDA), Kashifu Inuwa Taking care of Director, Galaxy Backbone, Professor Muhammed Bello Abubakar Managing Director, NigComSat, Ms Abimbola Alale representative of the Government Vice President of Nigerian Interaction Fee, Submit Learn General of NIPOST, Dr Ismail Adewusi Minister of FCT, Mallam Mohammed Musa Bello Commissioners of Science and Engineering and heads of ICT agencies from the 36 states of Nigeria amongst many others.

In the course of the overview session, all states introduced their ICT roadmap in front of judges and all the participants below 3 categories—Digital Know-how Human Ability Growth, Electronic Engineering Infrastructure improvement and E-governance Implementation.

The Particular Assistant to the Oyo State Governor on ICT & E-governance, Mr Bayo Akande though presenting on behalf of Oyo Condition, highlighted the state’s accomplishment in each class. For Digital Know-how Human Ability Growth he pointed out that OYSG experienced partnered with Oracle Academy to practice pc science lecturers in all point out-owned educational facilities on programming languages foundations.

“The condition is also partnering with Tech4Dev to organise digital techniques coaching for men and women in rural clusters, persons residing with disabilities and other disadvantaged groups, as perfectly as the NDPR and electronic skills coaching which was organised for all civil servants in the condition.

He added that the Oyo State Govt has also drafted a framework that would assure all civil servants are educated annually on latest tech traits and standard electronic techniques for productive do the job practices among other initiatives. At the stop of this session, Oyo Point out emerged the Greatest Condition in the Digital Know-how Human Potential Enhancement group.

Akande highlighted some of state’s accomplishment in the space of ICT infrastructure progress, mentioning the Harmonised Fibre Infrastructure coverage which the condition plans to employ in the upcoming number of months to give space for zero tariff on appropriate of way.

He also spoke about the Oyo Point out Infrastructure Management and Handle Agency (OYSIMCA) which he oversees as the Common Supervisor, which is a 1-prevent store for all

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Advanced Technological innovation Improvement Center hires fiscal technology qualified

Advanced Technological innovation Improvement Center hires fiscal technology qualified

New retain the services of is part of ATDC’s outreach to Georgia startups in FinTech initiative.

Michelangelo Ho is the financial technology expert who is joining the Advanced Technology Development Center to lead its FinTech accelerator initiative. Ho will work with FinTech startups in Georgia and help guide their growth and development.

Michelangelo Ho is the economical technological know-how qualified who is signing up for the Superior Technological know-how Growth Middle to direct its FinTech accelerator initiative. Ho will do the job with FinTech startups in Georgia and support tutorial their expansion and development.

The Advanced Technology Development Middle (ATDC) has named Michelangelo Ho its fiscal technologies catalyst, and he will lead the agency’s work to emphasis on Ga-primarily based startups in that sector.

Ho is predicted to start out on April 20, and the announcement of his hiring is the first major move in ATDC’s economic engineering accelerator initiative.

In March 2015, Worldpay, a global payments technological innovation and services corporation, gave $1 million to the Georgia Institute of Technological know-how to make a financial technologies accelerator at ATDC. The present, which will totally fund the accelerator for the next a few years, identified as for the selecting of a FinTech specialist to mentor startups.

ATDC, a application of Tech’s Organization Innovation Institute, is a statewide technological innovation startup incubator and is charged with assisting business people construct and start prosperous companies. It is one of the oldest college-based incubators in the state.

“The FinTech startups in Ga are truly underserved, so this is a excellent option for us at ATDC and it’s a exceptional challenge for me,” Ho said.

The concentrate on money technological innovation is strategically critical to Georgia mainly because the state is a leader in the room. Certainly, the American Transaction Processors Coalition states more than 70 % of all U.S. payments are processed in Ga and far more than 60 percent of the industry’s companies connect with metro Atlanta property.

That’s led to the development of a sizable quantity of FinTech startups in Georgia and increased desire from entrepreneurs who want to launch their have companies in the sector, Ho reported.

“From my point of view, it is a excellent possibility and that prospect is large simply because of the quantity of startups out there that ATDC has a prospect to support and accelerate.”

Ho, who has deep practical experience in FinTech, has been concerned with a range of progressive providers and tasks in the sector, which includes Service provider Client Trade (MCX)/CurrentC, Google Wallet, and Isis/SoftCard.

An entrepreneur himself who founded two businesses, GoSpring and Veritas Merchandise Group, Ho led innovation and method endeavours at Initial Data Corp. and as a consultant for AT&T, among the many others. As a mentor at ATDC for the past a few decades, he has encouraged a amount of business owners and startups.

A Tech graduate, he retains a Learn of Management Government MBA from the Institute, and bachelor’s and master’s levels in electrical engineering from Mercer College.

By Péralte C. Paul

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Desktop Metallic and The University of Toledo Institute of Utilized Engineering Research Companion to Establish Nitinol, Rene and Non-Weldable Nickel-Based Alloys Using Production Technique Technology

Desktop Metallic and The University of Toledo Institute of Utilized Engineering Research Companion to Establish Nitinol, Rene and Non-Weldable Nickel-Based Alloys Using Production Technique Technology

BOSTON, November 19, 2021–(Enterprise WIRE)–Desktop Metallic (NYSE: DM) and The College of Toledo Institute of Utilized Engineering Research nowadays announced a partnership to guidance the development of nickel-titanium (Nitinol) alloys, Rene alloys, and other non-weldable nickel-primarily based, substantial-temperature materials on the Generation SystemTM platform, which leverages patent pending One Go JettingTM (SPJ) technologies developed to achieve the fastest establish speeds in the steel additive production marketplace.

“We are thrilled to associate with The College of Toledo on this disruptive technologies development, opening up a remarkable chance for clinical, aviation, and area programs ” reported Ric Fulop, Founder and CEO of Desktop Metal. “Our Creation System system enables the growth of new resources for binder jet 3D printing that can be applied for at-scale manufacturing. We’re proactively partnering with major analysis universities around the planet to speed up materials improvement and search forward to functioning with The College of Toledo to progress the improvement of Nitinol and other crucial alloys for binder jetting.”

“Our partnership with Desktop Steel will carry a Production System P-1 to our lab and open new horizons in materials and application improvement,” stated Behrang Poorganji, Ph.D., Research Professor and Director of Sophisticated Producing at The College of Toledo Higher education of Engineering. “By combining our metallurgy, software program, chemistry, and style abilities, this partnership will allow for us to go after the improvement of quite a few innovative elements, which include Nitinol, a form memory alloy employed for quite a few clinical programs extremely-higher temperature nickel-based mostly superalloys, these kinds of as Rene alloys, for aerospace conductive materials these kinds of as pure copper for electrification and light-weight elements such as highly developed aluminum alloys for automotive apps. We believe that our collaboration with Desktop Metal will accelerate our education and learning, instruction, and workforce enhancement, which will be crucial to thriving technology adoption in the industry for the long run decades forward of us.”

About Desktop Steel

Desktop Metal, Inc., based in Burlington, Massachusetts, is accelerating the transformation of manufacturing with an expansive portfolio of 3D printing answers, from rapid prototyping to mass manufacturing. Started in 2015 by leaders in superior production, metallurgy, and robotics, the organization is addressing the unmet issues of speed, value, and top quality to make additive producing an critical instrument for engineers and makers close to the entire world. Desktop Metal was chosen as one particular of the world’s 30 most promising Technology Pioneers by the Earth Economic Discussion board, named to MIT Technology Review’s record of 50 Smartest Organizations, and the 2021 winner of Rapid Company’s Innovation by Design Award in supplies. For far more facts, take a look at www.desktopmetal.com.

Forward-searching Statements

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Three OSU teams win federal technology commercialization grants

Three OSU teams win federal technology commercialization grants

Tuesday, November 9, 2021

Media Contact:
Harrison Hill | Exploration Communications Professional | 405-744-5827 | [email protected]

Three research teams at Oklahoma State University have gained Nationwide Science Basis
Partnerships for Innovation Technological know-how Translation grants (NSF PFI-TT) — worth $250,000
every single. 

  • Dr. Kitty Cardwell, Dr. Andres Espindola and workforce — MiFi: Up coming-technology pathogen
    detection device
  • Dr. Stephanie Backlink — Dissemity: Research composing program
  • Dr. Raj Singh — Nanodiamond Method Technologies Development for Thermal Administration
    of Energy Electronics

Daniel Will, executive director for Cowboy Innovation’s Brightest Orange Ventures,
claimed the funding windfall is the consequence of researchers’ groundbreaking jobs and
the support of their schools and OSU’s Cowboy Improvements (CI).

“These grants are awarded for translational exploration and technological know-how growth,”
Will said. “Cowboy Improvements allows identify and use for professional grant funding
that matches OSU technologies at particular development levels. 

“These grants can occur from several places, these kinds of as the National Science Foundation’s
PFI grants, but may possibly also be the Oklahoma Centre for Progression of Science and Technology’s
or numerous federal companies.”

Russell Hopper, senior licensing affiliate for Cowboy Innovations, mentioned the CI group
exists “to help OSU innovators with any grant that entails intellectual house
security, marketing, and licensing.”

1 illustration is Cardwell’s NSF PFI-TT grant, which is going to a partnership involving
OSU College of California, Riverside and the Superb Fruit corporation — which
marketplaces Cuties manufacturer tangerines, amid other issues.

The crew is targeted on dashing up improvement and generation procedures for new citrus
versions.

“To move new citrus germplasm, i.e. new kinds, into the U.S., it has to go by
a long time of testing to prove independence from about 30 citrus diseases,” Cardwell mentioned. 

Their technological innovation — referred to as MiFi, quick for Microbe Finder — will do just that. 

“Wonderful Fruit would genuinely like for that method to be speedier and extra successful,”
Cardwell reported. “Oklahoma State and the Institute of Biosecurity and Microbial Forensics
have made a following-generation diagnostic engineering that will enable the Citrus
Clonal Safety System at UC Riverside to exam for all pathogens at once in the
exact citrus sample.”

This NSF grant will support creating and screening MiFi pathogen detection probes
for all of the citrus pathogens, Cardwell mentioned. 

“Cowboy Improvements, by its Brightest Orange Ventures, assisted MiFi with money
to develop the initially program as a service platform into a scalable, cloud-based alternative,
so that as the customer foundation grows, the system will, much too,” Cardwell reported. “The Cowboy
Improvements fellas helped as we produced the proposal with market assessment and budgeting.
They have also supported MiFi via mental home safety and advising.

“Additionally, the grant will allow for upgrades to the MiFi graphic user interface
that the scientists use to create and validate the MiFi pathogen-precise probes,
and payment for comprehensive-time professionals to do the growth at OSU and UC Riverside.”

The group also options to share this know-how with other citrus making nations around the world,
all of which have

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AFRL, industry launch revolutionary spacecraft technology > Air Force > Article Display

AFRL, industry launch revolutionary spacecraft technology > Air Force > Article Display


The Air Force Research Laboratory has partnered with ThermAvant Technologies and Maxar Technologies to develop and deploy the next generation of spacecraft thermal control technology.

The groundbreaking technology, Oscillating Heat Pipes (OHPs), provides lightweight and highly-efficient temperature control on higher-power, yet smaller spacecraft. The OHP was recently launched in the second quarter of 2021 on a Maxar-built satellite.

“Maxar adopts the most innovative technologies to benefit our customers’ missions, and we are proud to support the commercial use of oscillating heat pipes developed by the Air Force Research Laboratory and ThermAvant Technologies,” said Chris Johnson, Maxar’s senior vice president of space. “This technology allowed us to provide increased capability to our customers in satisfying their desired performance needs.”

Using OHPs instead of an active thermal management subsystem enables the U.S. Space Force to accomplish its missions at a lower cost.

It should be noted that though the structure of the OHP is static, the fluid oscillates within the microchannels of the structure, causing the heat transfer.

“Oscillating heat pipes have flown in space before, but now OHPs are being relied upon to serve a mission purpose,” said Jon Allison, the thermal thrust lead for the Spacecraft Component Technology Branch of the AFRL Space Vehicles Directorate. “The on-orbit operation of OHPs marks an important milestone in the technology transition.”

Allison’s colleague, Brent Taft, has spent more than a decade leading Air Force OHP research, and said he is ecstatic to see OHPs now being used on real-world spacecraft.

“The success of this transition builds upon AFRL and ThermAvant efforts to develop and validate an oscillating heat pipe operating limits model,” Taft said. “AFRL tested early OHP designs in the Advanced Structurally Embedded Thermal Spreader (ASETS) microgravity aircraft flight campaign in 2012, and the ASETS-II experiment on OTV-5 (aka X-37B) in 2017.”

According to AFRL and their industry partners, OHPs are the future of spacecraft thermal control.

“At AFRL, we are excited to have the first operational OHPs flying in space,” Allison said. “I would like to congratulate our Air Force researchers, our contractor ThermAvant, and the system integrator Maxar for their success and dogged commitment. We look forward to seeing OHPs revolutionize thermal control for the next generation of Space Force satellites.”

Allison explained this circuitous technology development path leading from military service laboratories, to private industry, and then back to the military, is actually a common approach.

“Each organization plays a part in bringing technology to fruition,” he said. “The service lab connects the needs of the warfighter with technological possibilities, providing the seed that ultimately yields a viable product. Industry is motivated to take risks to bring better products to market, and commercial success proves to the Space Force that a new technology is reliable enough to serve the warfighter and the nation.”

The incorporation of the OHPs on an operational satellite is a big step forward. AFRL believes this represents the start of the fourth generation of spacecraft thermal

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