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Brazil’s Black Silicon Valley could be an epicenter of innovation in Latin America

Paulo Rogério Nunes
Contributor

Paulo is the co-founder of Vale do Dendê (Dende Valley) and AFAR Ventures, a global diversity and inclusion creative and consulting agency that identifies opportunities for multinational brands, corporations and investors in emerging markets.

Tara Sabre Collier
Contributor

Tara Sabre Collier is an early-stage impact investor with more than 15 years of experience at the intersection of economic development, social entrepreneurship and impact investment. She is a Visiting Fellow of Oxford University where she teaches and writes about impact investing, diversity and equity.

Over the last five years, Brazil has witnessed a startup boom.

The main startups hubs in the country have traditionally been São Paulo and Belo Horizonte, but now a new wave of cities are building their own thriving local startup ecosystems, including Recife with Porto Digital hub and Florianópolis with Acate. More recently, a “Black Silicon Valley” is beginning to take shape in Salvador da Bahia.

While finance and media are typically concentrated in São Paulo and Rio de Janeiro, Salvador, a city of three million in the state of Bahia, is considered one of Brazil’s cultural capitals.

With an 84% Afro-Brazilian population, there are deep, rich and visible roots of Africa in the city’s history, music, cuisine and culture. The state of Bahia is almost the size of France and has 15 million people. Bahia’s creative legacy is quite clear, given that almost all the big Brazilian cultural patrimonies have their roots here, from samba and capoeira to various regional delicacies.

Many people are unaware that Brazil has the largest Black population in any country outside of Africa. Like counterparts in the U.S. and across the Americas, Afro-Brazilians have long struggled for socio-economic equity. As with counterparts in the United States, Brazil’s Black founders have less access to capital.

According to research by professor Marcelo Paixão for the Inter-American Development Bank, Afro-Brazilians are three times more likely to have their credit denied than their white counterparts. Afro-Brazilians also have over twice the poverty rates of white Brazilians and only a handful of Afro-Brazilians have held legislative positions, despite comprising more than 50% of the population. Not to mention, they make up less than 5% of the top level of the top 500 companies. Compared with countries like the United States or the United Kingdom, the racial funding gap is even more stark as more than 50% of  Brazil’s population is classified as Afro-Brazilian.

Bahia could be an epicenter of innovation in Latin America

Salvador (Bahia’s capital) is the natural birthplace of Brazil’s Black Silicon Valley, which largely centers around a local ecosystem hub, Vale do Dendê.

Vale do Dendê coordinates with local startups, investors and government agencies to support entrepreneurship and innovation and runs startup acceleration programs specifically focusing on supporting Afro-Brazilian founders. The Vale do Dendê Accelerator organization has already been in the spotlight at international and national publications because of its innovative work in bringing startup and tech education from mainstream to traditionally underserved communities.

In almost three years, the accelerator has supported 90 companies directly that cut across various industries, with high representation from the creative and social impact sectors. Almost all of the companies have achieved double-digit growth and various companies have gone on to raise further funding or corporate backing. One of the first portfolio companies, TrazFavela, a delivery app that focuses on linking customers and goods from traditionally marginalized communities, was supported by the accelerator in 2019. Despite the lockdown, the business grew 230% between the period of March and May after incubation and recently signed an agreement for further support and investment from Google Brasil.

There is a clear recognition of the business case for Afro-Brazilian businesses. Another company supported in the beginning with mentoring by Vale do Dendê is Diaspora Black (which focuses on Black culture in the tourism sectors). It attracted backing from Facebook Brasil and grew 770% in 2020.

The same is true for AfroSaúde, a health tech company focused on low-income communities with a new service to prevent COVID-19 in favelas (urban slums, which incidentally have high Black representation). The app now has more than 1,000 Black health professionals on its platform, creating jobs while addressing a health crisis that had been tremendously racialized.

We’re at the brink of a renaissance here in Bahia

Despite Brazil’s challenging economic situation, large national and global companies and investors are taking notice of this startup boom. Major IT company Qintess has come on board as a major sponsor to help Salvador become the leading Black tech hub in Latin America.

The company announced an investment of around 10 million reais (nearly $2 million USD) over the next five years in Black startups, including a collaboration with Vale do Dendê to train around 2,000 people in tech and accelerate more than 500 startups led by Black founders. Also, in September, Google launched a 5 million reais (around $1 million USD) Black Founders Fund with the support of Vale do Dendê to boost the Afro-Brazilian startup ecosystem.

There is no doubt that the new wave of innovation will come from the emerging markets, and the African Diaspora can play an important role. With the world’s largest African diaspora population in the hemisphere, Brazil can be a major leader on this. Vale do Dendê is keen to build partnerships to make Brazil and Latin America a more representative startup and creative economy ecosystem.

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As it closes in on Arm, Nvidia announces UK supercomputer dedicated to medical research

As Nvidia continues to work through its deal to acquire Arm from SoftBank for $40 billion, the computing giant is making another big move to lay out its commitment to investing in U.K. technology. Today the company announced plans to develop Cambridge-1, a new £40 million AI supercomputer that will be used for research in the health industry in the country, the first supercomputer built by Nvidia specifically for external research access, it said.

Nvidia said it is already working with GSK, AstraZeneca, London hospitals Guy’s and St Thomas’ NHS Foundation Trust, King’s College London and Oxford Nanopore to use the Cambridge-1. The supercomputer is due to come online by the end of the year and will be the company’s second supercomputer in the country. The first is already in development at the company’s AI Center of Excellence in Cambridge, and the plan is to add more supercomputers over time.

The growing role of AI has underscored an interesting crossroads in medical research. On one hand, leading researchers all acknowledge the role it will be playing in their work. On the other, none of them (nor their institutions) have the resources to meet that demand on their own. That’s driving them all to get involved much more deeply with big tech companies like Google, Microsoft and, in this case, Nvidia, to carry out work.

Alongside the supercomputer news, Nvidia is making a second announcement in the area of healthcare in the U.K.: it has inked a partnership with GSK, which has established an AI hub in London, to build AI-based computational processes that will be used in drug vaccine and discovery — an especially timely piece of news, given that we are in a global health pandemic and all drug makers and researchers are on the hunt to understand more about, and build vaccines for, COVID-19.

The news is coinciding with Nvidia’s industry event, the GPU Technology Conference.

“Tackling the world’s most pressing challenges in healthcare requires massively powerful computing resources to harness the capabilities of AI,” said Jensen Huang, founder and CEO of Nvidia, in his keynote at the event. “The Cambridge-1 supercomputer will serve as a hub of innovation for the U.K., and further the groundbreaking work being done by the nation’s researchers in critical healthcare and drug discovery.”

The company plans to dedicate Cambridge-1 resources in four areas, it said: industry research, in particular joint research on projects that exceed the resources of any single institution; university granted compute time; health-focused AI startups; and education for future AI practitioners. It’s already building specific applications in areas, like the drug discovery work it’s doing with GSK, that will be run on the machine.

The Cambridge-1 will be built on Nvidia’s DGX SuperPOD system, which can process 400 petaflops of AI performance and 8 petaflops of Linpack performance. Nvidia said this will rank it as the 29th fastest supercomputer in the world.

“Number 29” doesn’t sound very groundbreaking, but there are other reasons why the announcement is significant.

For starters, it underscores how the supercomputing market — while still not a mass-market enterprise — is increasingly developing more focus around specific areas of research and industries. In this case, it underscores how health research has become more complex, and how applications of artificial intelligence have both spurred that complexity but, in the case of building stronger computing power, also provides a better route — some might say one of the only viable routes in the most complex of cases — to medical breakthroughs and discoveries.

It’s also notable that the effort is being forged in the U.K. Nvidia’s deal to buy Arm has seen some resistance in the market — with one group leading a campaign to stop the sale and take Arm independent — but this latest announcement underscores that the company is already involved pretty deeply in the U.K. market, bolstering Nvidia’s case to double down even further. (Yes, chip reference designs and building supercomputers are different enterprises, but the argument for Nvidia is one of commitment and presence.)

“AI and machine learning are like a new microscope that will help scientists to see things that they couldn’t see otherwise,” said Dr. Hal Barron, chief scientific officer and president, R&D, GSK, in a statement. “NVIDIA’s investment in computing, combined with the power of deep learning, will enable solutions to some of the life sciences industry’s greatest challenges and help us continue to deliver transformational medicines and vaccines to patients. Together with GSK’s new AI lab in London, I am delighted that these advanced technologies will now be available to help the U.K.’s outstanding scientists.”

“The use of big data, supercomputing and artificial intelligence have the potential to transform research and development; from target identification through clinical research and all the way to the launch of new medicines,” added James Weatherall, PhD, head of Data Science and AI, AstraZeneca, in his statement.

“Recent advances in AI have seen increasingly powerful models being used for complex tasks such as image recognition and natural language understanding,” said Sebastien Ourselin, head, School of Biomedical Engineering & Imaging Sciences at King’s College London. “These models have achieved previously unimaginable performance by using an unprecedented scale of computational power, amassing millions of GPU hours per model. Through this partnership, for the first time, such a scale of computational power will be available to healthcare research – it will be truly transformational for patient health and treatment pathways.”

Dr. Ian Abbs, chief executive & chief medical director of Guy’s and St Thomas’ NHS Foundation Trust Officer, said: “If AI is to be deployed at scale for patient care, then accuracy, robustness and safety are of paramount importance. We need to ensure AI researchers have access to the largest and most comprehensive datasets that the NHS has to offer, our clinical expertise, and the required computational infrastructure to make sense of the data. This approach is not only necessary, but also the only ethical way to deliver AI in healthcare – more advanced AI means better care for our patients.”

“Compact AI has enabled real-time sequencing in the palm of your hand, and AI supercomputers are enabling new scientific discoveries in large-scale genomic data sets,” added Gordon Sanghera, CEO, Oxford Nanopore Technologies. “These complementary innovations in data analysis support a wealth of impactful science in the U.K., and critically, support our goal of bringing genomic analysis to anyone, anywhere.”

 

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Coinbase lets you withdraw funds to your debit card

Cryptocurrency exchange Coinbase is adding a new way to withdraw funds from your Coinbase account. If you’ve added a compatible debit card to your account, you can transfer USD, EUR or GBP to your bank account nearly instantly.

There are some drawbacks, and the main one is that you’ll pay a lot of fees. In the U.S., Coinbase deducts 1.5% from the transaction, or a minimum $0.55 if it’s a small transaction. In the U.K. and Europe, you pay 2% in fees or a minimum fee of £0.45/€0.52, respectively.

You also need to have a compatible card. Not all debit cards support incoming transfers. You need to have a Visa card that supports Visa Fast Funds. In the U.S., you can also use a Mastercard card with Mastercard Send.

It’s hard to know whether your bank or card issuer support those features. The best way to figure it out is probably by adding your card to Coinbase and seeing what Coinbase says.

Coinbase isn’t removing other withdrawal methods. For instance, if you’re looking for a cheaper way to withdraw your funds in Europe, a SEPA bank transfer costs €0.15 per transfer. And Coinbase supports instant SEPA transfers if your bank has enabled that.

The company also lets you link your PayPal account with your Coinbase account. Your funds should hit your PayPal account within a few seconds, and there are no fees on Coinbase’s side.

As you can see, there are many ways to move money from your bank account to your Coinbase account. Some of them are slower than others, some of them are more expensive than others. Crypto-to-crypto transactions are a bit simpler by comparison, as you only need your recipient’s wallet address to send tokens.

Image Credits: Coinbase

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Microsoft launches new Cortana features for business users

Cortana may have failed as a virtual assistant for consumers, but Microsoft is still betting on it (or at least its brand) for business use cases, now that it has rebranded it as a “personal productivity assistant” as part of Microsoft 365. Today, at its Ignite conference, Microsoft launched and announced a number of new Cortana services for business users.

These include the general availability of Cortana for the new Microsoft Teams displays the company is launching in partnership with a number of hardware vendors. You can think of these as dedicated smart displays for Teams that are somewhat akin to Google Assistant-enabled smart displays, for example — but with the sole focus on meetings. These days, it’s hard to enable a device like this without support for a voice assistant, so there you go. It’ll be available in September in English in the U.S. and will then roll out to Australia, Canada, the U.K. and India in the coming months.

In addition to these Teams devices, which Microsoft is not necessarily positioning for meeting rooms but as sidekicks to a regular laptop or desktop, Cortana will also soon come to Teams Rooms devices. Once we go back to offices and meeting rooms, after all, few people will want to touch a shared piece of hardware, so a touchless experience is a must.

For a while now, Microsoft has also been teasing more email-centric Cortana services. Play My Emails, a service that reads you your email out aloud and that’s already available in the U.S. on iOS and Android, is coming to Australia, Canada, the U.K. and India in the coming months. But more importantly, later this month, Outlook for iOS users will be able to interact with their inbox by voice, initiate calls to email senders and play emails from specific senders.

Cortana can now also send you daily briefing emails if you are a Microsoft 365 Enterprise user. This feature is now generally available and will get better meeting preparation, integration with Microsoft To Do and other new features in the coming months.

And if you’re using Cortana on Windows 10, this chat-based app now lets you compose emails, for example (at least if you speak English and are in the U.S.). And if you so desire, you can now use a wake word to launch it.

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London VCs launch joint initiative to expand funding opportunities for underrepresented founders

A group of U.K.-based VCs have come together to create a new virtual pitching event designed to address the problems with the current startup ecosystem that can lead to inequalities and “warm intros” made only between privileged classes and ethnicities.

Held on the 30th of September, “Access All” will be a new virtual event geared toward founders from underrepresented groups.

Participating founders will be invited to pitch their startups to a number of London’s leading VCs and companies, including Downing Ventures, Playfair Capital, SpeedInvest and SoftBank, as well as Microsoft, Amazon, Accenture and O2.

The joint initiative has been put together by Floww, Force Over Mass and Wayra UK, with the mission to create more opportunity for BAME founders, based on merit, reducing bias and addressing the problems of the “the old boys network” of venture capital deal flow.

According to some figures, startups with all-male founding teams raise 91% of the venture capital in the U.K., but the stats around ethnic minority founders are harder to find. In the U.S. for example, 0.02% of venture capital is allocated to Black female founders.

Martijn de Wever, CEO and founder of Floww, which is coordinating the event, said: “With Access All, we rallied together in the startup community because we believe that the system needs change. Black, Asian and other ethnic minority founders, need to have fair access.”

Floww’s team of accountants and content writers will work with applicants for free to review their business plans and get them ready to pitch to the participating investors. TechCrunch and Forbes journalists will be joining the panel as judges.

Founders can register here.

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Fairphone’s new flagship, the 3+, costs just €70 as a modular upgrade

Dutch social enterprise, Fairphone, has moved a little closer to the sustainability dream of a circular economy by announcing the launch of a modular upgrade for its flagship smartphone.

The backwards compatible hardware units mean users of last year’s Fairphone 3 only need swap out a few modules to be holding the Fairphone 3+ in their hand instead of buying a whole new device.

Fairphone pulled off a similar feat with an earlier model of its ‘ethical smartphone’ but this time it’s managed to shrink the time it took it to offer ‘plug and play’ upgrade modules for its latest gen device.

“What we’ve been able to do is get that whole idea of plug and play to the consumer within the smartphone business,” says Fairphone co-founder Bas van Abel . “That part is not trivial because you have to imagine that getting everything into that module and being able to put it into the old phone… Not only the hardware has to fit and everything has to connect in the right way in that previous kind of architecture but also the software.

“But we’ve been able to do that, and it took some time but we’ve done it way faster than we were able to do it with the Fairphone 2. So we’re proud of that as well.”

“The most important part is it’s really also a signal towards the industry that it’s possible to do upgrades with your phone and not have to come out with a totally new phone every year,” he adds.

Finding clever ways to extend device longevity is a core plank of Fairphone’s mission. The biggest resource sinkhole associated with smartphone consumption is the annual or biennial upgrade cycle which encourages consumers to swap perfectly functional phones for a shiny new model. Fairphone 3 owners can get its latest kit with a cleaner conscience.

Fairphone is selling the Fairphone 3+ camera modules separately for current Fairphone 3 users — at an initial cost of €70 until the end of September (rising to ~€95 from October).

It is also selling a Fairphone 3+ handset for an RRP of €469, aimed at new to the brand users — opening up pre-sales from today on its website and via partner retailers, with a release date of September 14 across Europe.

Specs wise, the 4G Fairphone 3+ has a 5.7in Full-HD display with an 18:9 aspect ratio and is powered by a Qualcomm Snapdragon 632 chipset. Out of the box it runs Android 10. On board there’s 4GB of RAM and 64GB of ROM, expandable via microSD. The removable battery is 3,000mAh. There’s also Bluetooth 5.0, NFC and a fingerprint scanner.  

van Abel confirms the business will continue to sell last year’s flagship — but at a reduced price of around €400.

The 3+ modules are only backwards compatible one generation of Fairphone which means anyone still using a Fairphone 2 can’t get this plug and play upgrade. The blocker there is the core module, per van Abel, who says not being able to swap the SOC out for an upgraded chipset remains the biggest challenge for modular upgrades that are able to span more than one smartphone generation.

“Our vision is definitely there that you can also eventually replace the core module… where the modem and the processor is,” he says, hazarding that it might be possible “within a couple of years”.

However the wider issue is the component industry still moves so fast it remains way out of step with Fairphone’s goal of longevity. The social enterprise pledges to provide up to five years of support for each device it sells, meaning it needs relevant spare parts to still be available in order that it can offer replacements or else stockpile them itself — a capital intensive process. And one that’s at sharp odds with the blistering upgrade trajectory of processor manufacturers.

From a sustainability and resource perspective, the best option is also for a smartphone user to keep using the same chipset for as long as possible. The maturity of the smartphone market and commoditization of the tech — leading to the more iterative device refreshes we generally see now — also tacitly supports that.

van Abel can point to consumers holding onto a handset for an average of about double the time they did when Fairphone got started. It’s a drift that’s providing uplift to environmentally sensitive brand focused on innovating to produce smartphones with a longer lifespan.

“We’ve done a lifecycle assessment on the Fairphone 3 and what comes out of that we’ve also tested what parts of the phone have what kind of footprint and you also see that almost 80% of the CO2 footprint of the phone is within the making and the production of the SOC,” he says. “So that means that if you really want to look at it from a sustainability perspective it really makes sense to keep that part of the phone just as long as possible. Because most of the harm on nature is on that part. So even replacing that part — being able to swap that part — it’s great but it’s kind of a shame that we throw away a lot of stuff and modules and components in the phone.”

“Recycling in the phone business at the moment is plain stupid,” he adds. “How it’s done is you collect the phones and they put them in an oven — they burn them. And then they get the minerals out… You can still reuse the minerals but there’s nothing smart about that. Nothing really has been reused so all the capacitors, the glass of the screen… So it does make sense at a certain point to being also able to swap the processor like you were able to do with the computers in the old days.”

When we reviewed the Fairphone 3 last year we were impressed by how normal the Android device felt — belying its modular, deconstructable interior and all the years of effort Fairphone has ploughed into scrutinising and reworking supply chains to be able to stand up its bold claim of a phone that “dares to be fair”.

Now, with the launch of the Fairphone 3+ modules, last year’s handset is getting a boost to its camera hardware — with a 48MP main lens and a 16MP front-facing lens offered as replacements to last year’s 12MP and 8MP units via the new modules (the main and front modules can be purchased separately or as an upgrade bundle).

On the surface that looks like a huge step up in hardware but it’s down to the camera module using the Samsung GM1 sensor — which uses tiny pixels of 0.8-micro to deliver light sensitivity equal to 1.6-micro pixels.

So it’s actually a software technique to eke more out of the hardware, with a trade off in that it entails some compression of picture quality. A Fairphone spokeswoman confirmed the main lens’ “effective output” is still 12MP. “This is common practice in the industry with phones such as the Samsung S5KGM1, Samsung Galaxy A90 5G, Nokia 7.2 and the Sony IMX363,” she added.

As we noted in our review of the Fairphone 3 last September, the 2019 flagship took a fairly standard snap — with photo quality closer to acceptable, than stand out. The performance gap vs the premium end of the smartphone market was noticeable, even as Fairphone had substantially bested performance vs its earlier handsets.

The company looks keen to further shrink the photo quality gap. Now it touts “significantly” improved photo and video quality via the 3+ upgrade — which it says supports “sharper selfies and clearer video calls”.

It’s also done work to optimize the software, noting support for enhanced object tracking, faster autofocus and image stabilization “for more reliable shots”, as well as “louder, crisper sound” on the audio front, per its press release.

A focus on boosting photo and video performance makes sense given how central the camera has become for smartphone users — feeding into the rise of trendy social video sharing apps like TikTok.

Successfully convincing consumers to hold onto their existing handset for longer means paying attention to such app trends to make sure hardware and software are keeping up with how people are using their phones.

For buyers of the Fairphone 3+ handset there’s another improvement: It boasts 40% recycled plastics — up from just 9% in last year’s model. Fairphone says the volume of recycled plastics is now equivalent to a 33cl plastic drinking bottle — so that’s one piece of plastic waste prevented from ending up in the sea (for now).

While some might wonder if there’s a subtle contradiction in a sustainable smartphone brand launching a new model only a year after unboxing last year’s flagship, van Abel says expanding the portfolio in important — as part of the overall mission to grow demand for ethical smartphones.

That demand is in turn needed to build momentum for the kind of industry-wide shift required for a wholesale upgrade to a circular economy. And the potential of offering devices as a services.

“We want to sell as many phones as possible — because our mission is to show that there is a demand for ethical phones,” he tells TechCrunch. “So the more phones we sell the more we can show that the demand is really there. But that also makes a problem in terms of longevity so we have another KPI where we say we want people to use our phone as long as possible — so we measure how long people actually use our phones and that’s improving every year as well. So a sales person at Fairphone they get a very hard kind of assignment because they have to sell as many phones as possible but they can’t approach people that already have them.”

“We’re challenging ourselves to disconnect the business model from these resources as much as possible but because we take that challenge in the core of our business I think we’re also ahead of where the industry needs to move towards,” he adds.

“Nobody can neglect the fact that we’re running out of resources and it’s getting harder and harder to get these resources. Look at cobalt, for example. Lithium ion batteries. There’s a run on cobalt. It’s gone like 10x, 20x the price it used to be — because we have this energy transition that we need all kinds of batteries for. So even sustainability needs these resources that you can’t get purely from recycling. So we know that this has to change. Even for geopolitical reasons I think that what we’re doing forces us to be ahead of the game.”

Demand for Fairphones has been building steadily over the past decade and the social enterprise is now “almost” at profitability, per van Abel. “We’ve sold over 200k phones — of which 60k were Fairphone 1s. We’ve sold over 100k Fairphone 2s. And last year we sold almost 50k Fairphone 3s and this year we’re aiming for over 100k Fairphone 3+,” he says.

“We’ve never had a portfolio. Now we actually have a portfolio of two phones, Fairphone 3 and 3+, because we’re going to sell the 3 as well at a lower price with the older modules — the previous modules — and the 3+ with the new modules. So that we also have a price point for people that don’t need the newest camera improvements.”

Fairphone remains very much a European project — one that’s perfectly positioned to benefit from a pan-EU push towards sustainability and a circular economy in the coming years. (A ‘right to repair’ Commission proposal for mobiles certainly looks helpful.)

For now, the biggest market for Fairphones is still Germany, per van Abel. While he says its focus for sales of the new portfolio is to push for more growth in Germany, with France, Holland and the UK its other main markets of continued focus. “We’re aiming more also at Scandinavia,” he adds.

“The danger of a commoditizing industry is where you get a lot of easy, cheap access to all these technologies and you see it moving towards two sides: The high end and the really low end stuff. But I hope that customers will also value the companies themselves, and the brands and what they stand for. Whereas [iPhone maker] Apple stands for design; they have a premium to it — you buy something more than just the phone. And I think Fairphone has that as well.

“We have a compelling story. Especially you see the group of conscious consuming growing within every report I read. You see it growing steadily each year. So people do take more notice of what they actually buy.”

Funding wise, the social enterprise is comfortably positioned with the debt, equity and growth financing it raised a few years back from impact investors. Though van Abel moots the possibility of taking in more funding to put towards marketing and help it keep scaling.

“But at the moment we’re good,” he adds. “The impact investors are very patient. It goes with the mission of the company. I think people really are part of Fairphone — participate in this company because they believe not only in the cash return but also in the impact.”

He also notes that Fairphone is also doing separate financing for some related initiatives in the supply chain which are required to underpin its claim of fair and ethical electronics.

“A good example of that is the fair cobalt alliance that we’ve just set up,” he says. “We’re really proud of that. We have set up a great consortium with mining companies, with refineries, with big companies like Signify, that are part of that supply chain of cobalt. It’s partly funded, as well, by the Dutch government. So we have more of a broker position — and that is the nice thing about being a social enterprise. You sometimes can be in between the non-profit and the for-profit sector. You can bridge easily those two worlds.”

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CarbonChain is using AI to determine the emissions profile of the world’s biggest polluters

It was the Australian bush fire that finally did it.

For 12 years Adam Hearne had worked at companies that represented some of the world’s largest sources of greenhouse gas emissions. First at Rio Tinto, one of the largest industrial miners, and then at Amazon, where he handled inbound delivery operations across the EU, Hearne was involved in ensuring that things flowed smoothly for companies whose operations spew millions of tons of carbon dioxide into the environment.

Amazon’s business alone was responsible for emitting 51.17 million metric tons of carbon dioxide last year — the equivalent of 13 coal-burning power plants, according to a report from the company.

Then, Hearne’s home country burned.

In 2019 wildfires erupted that engulfed more than 46 million acres of land, destroyed over 9,000 buildings, and killed over 400 people and untold numbers of animals — driving some species to the brink of extinction.

Hearne, along with an old friend from his business school rugby days (Roheet Shah) and computer science and machine learning experts from Imperial College of London (Yuri Oparin and Jeremiah Smith), launched CarbonChain that year. The company, now poised to graduate from the latest Y Combinator cohort, is pitching a service that can accurately account for emissions from the commodities industry — which is responsible for 50% of the world’s greenhouse gas emissions.

The company’s services are coming at the right time. Countries around the globe are poised to adopt much more stringent regulations around carbon dioxide and greenhouse gas emissions. The European Union is slowly working toward passage of sweeping new regulations on climate change that are mirrored in the region’s local economies. Even petrostates like Russia are poised to enact new climate regulations (at least according to Russian officials).

What’s missing in all of this are ways for companies to accurately track their emissions and technologies that can adequately monitor how well emissions offsets are working.

CarbonChain tackles this problem by going to the sectors that are responsible for the largest percentage of greenhouse gas emissions, Hearne said.

“The world needs hard accounting and hard numbers of what commodities companies are producing,” said Hearne in a July interview.

To ensure that emissions reductions and regulations are working, regulators need to go after oil and gas and commodities and minerals producers, according to Hearne. “Those sectors are uniform and carbon intensive and that’s how you quantify them,” he said.

CarbonChain has built models for every single asset in the supply chain for these industries, according to Hearne. The company has created digital twins of every piece of equipment used in heavy industry. If CarbonChain can’t get the information about the equipment from the companies that use it, they go to the engineering firms that built the equipment or facility for the company.

“In order to get a number that doesn’t get laughed out of the room we have to go down to the aluminum smelter that has a power station right next to it,” said Hearne. “Ninety percent of its footprint is its electrical usage.”

According to Hearne, CarbonChain’s system is so precise that it can tell users how much carbon emissions are embedded in a cup of coffee or a glass of wine (which is two pounds of carbon dioxide for imported wine, by the way).

CarbonChain is already selling its services to commodities producers and carbon traders who are operating in existing carbon trading schemes.

So far, the company has received roughly $500,000 from the U.K. government and an investment from one of its (undisclosed) commodities customers.

But CarbonChain’s technology seems to have the most rigorous methodology of any of the companies that’s purporting to do emissions monitoring. Other startups purporting to provide carbon emissions data for companies include Persefoni, which raised $3.5 million for its solution, and another Y Combinator graduate, SINAI Technologies.

If the company can actually measure the embedded emissions of materials down to a single piece of rebar, it could have huge consequences for industry broadly.

The company also slots nicely into the trend of entrepreneurs with deep industry experience building vertical solutions based on the collection of massive data sets using machine learning.

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Buildots raises $16M to bring computer vision to construction management

Buildots, a Tel Aviv and London-based startup that is using computer vision to modernize the construction management industry, today announced that it has raised $16 million in total funding. This includes a $3 million seed round that was previously unreported and a $13 million Series A round, both led by TLV Partners. Other investors include Innogy Ventures, Tidhar Construction Group, Ziv Aviram (co-founder of Mobileye & OrCam), Magma Ventures head Zvika Limon, serial entrepreneurs Benny Schnaider and  Avigdor Willenz, as well as Tidhar chairman Gil Geva.

The idea behind Buildots is pretty straightforward. The team is using hardhat-mounted 360-degree cameras to allow project managers at construction sites to get an overview of the state of a project and whether it remains on schedule. The company’s software creates a digital twin of the construction site, using the architectural plans and schedule as its basis, and then uses computer vision to compare what the plans say to the reality that its tools are seeing. With this, Buildots can immediately detect when there’s a power outlet missing in a room or whether there’s a sink that still needs to be installed in a kitchen, for example.

“Buildots have been able to solve a challenge that for many seemed unconquerable, delivering huge potential for changing the way we complete our projects,” said Tidhar’s Geva in a statement. “The combination of an ambitious vision, great team and strong execution abilities quickly led us from being a customer to joining as an investor to take part in their journey.”

The company was co-founded in 2018 by Roy Danon, Aviv Leibovici and Yakir Sundry. Like so many Israeli startups, the founders met during their time in the Israeli Defense Forces, where they graduated from the Talpiot unit.

“At some point, like many of our friends, we had the urge to do something together — to build a company, to start something from scratch,” said Danon, the company’s CEO. “For us, we like getting our hands dirty. We saw most of our friends going into the most standard industries like cloud and cyber and storage and things that obviously people like us feel more comfortable in, but for some reason we had like a bug that said, ‘we want to do something that is a bit harder, that has a bigger impact on the world.’ ”

So the team started looking into how it could bring technology to traditional industries like agriculture, finance and medicine, but then settled upon construction thanks to a chance meeting with a construction company. For the first six months, the team mostly did research in both Israel and London to understand where it could provide value.

Danon argues that the construction industry is essentially a manufacturing industry, but with very outdated control and process management systems that still often relies on Excel to track progress.

Image Credits: Buildots

Construction sites obviously pose their own problems. There’s often no Wi-Fi, for example, so contractors generally still have to upload their videos manually to Buildots’ servers. They are also three dimensional, so the team had to develop systems to understand on what floor a video was taken, for example, and for large indoor spaces, GPS won’t work either.

The teams tells me that before the COVID-19 lockdowns, it was mostly focused on Israel and the U.K., but the pandemic actually accelerated its push into other geographies. It just started work on a large project in Poland and is scheduled to work on another one in Japan next month.

Because the construction industry is very project-driven, sales often start with getting one project manager on board. That project manager also usually owns the budget for the project, so they can often also sign the check, Danon noted. And once that works out, then the general contractor often wants to talk to the company about a larger enterprise deal.

As for the funding, the company’s Series A round came together just before the lockdowns started. The company managed to bring together an interesting mix of investors from both the construction and technology industries.

Now, the plan is to scale the company, which currently has 35 employees, and figure out even more ways to use the data the service collects and make it useful for its users. “We have a long journey to turn all the data we have into supporting all the workflows on a construction site,” said Danon. “There are so many more things to do and so many more roles to support.”

Image Credits: Buildots

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Plum raises $10M for its ‘smart’ money management app

Plum, the London and Athens-based fintech that offers a “smart” money management app to help you improve your “financial resilience,” has raised a further $10 million in funding as it gears up for European expansion.

The new round is led by Japan’s Global Brain and the European Bank for Reconstruction and Development, which has participated in previous Plum funding rounds.

In addition, the company has received further funding from early backer VentureFriends, matched by the U.K. taxpayer via the U.K. government’s Future Fund scheme. Plum has raised $19.3 million in total since being founded by Victor Trokoudes (an early TransferWise employee) and Alex Michael in 2016.

Launched in the U.K. the following year, Plum is one of a number of fintech startups that is vying to become a user’s financial hub or control centre, in a way that goes far beyond the first generation of personal finance manager apps and bank account aggregators.

You link the app to your bank account and gain access to a range of functionality, including savings, investments and analysis of your utility bills to help you make better purchasing decisions. Like similar apps, Plum’s “artificial intelligence” also deems what you can afford to save by analysing your bank transactions. It then puts money away each month in the form of round-ups and/or regular savings.

You can open an ISA investment account and invest based on themes, such as only in “ethical companies” or technology. Another related feature is “Splitter,” which, as the name suggests, lets you split your automatic savings between Plum savings pots and investments, selecting the percentage amounts to go into each pot, from 0-100%.

In a call with Trokoudes, he talked me through a few recent Plum updates that he says bring it much closer to fulfilling its financial control centre mission and being a candidate to replace your individual banking apps.

Crucially, you can now link all of your accounts to Plum, whereas previously Plum only let you access a single linked bank account. This gives you “full visibility” of your saving, spending and investments all in a single app.

On the roadmap is also the ability to make payments via Open Banking — and Trokoudes doesn’t rule out a Plum card in the future as a complementary feature with additional benefits, not a core offering, unlike numerous competitors.

More immediately, Plum is launching interest for savers who use Plum to set money aside but don’t want to invest any or all of it. Paid users are being offered an interest rate of 0.6% for instant access savings and 0.75% for 95 days’ notice. Plum users on its free tier can earn 0.35% interest.

Trokoudes explained that there’s also the option to split a percentage of the money put aside automatically, allocating deposits between the new interest-bearing account and Plum-powered investments.

Meanwhile, armed with fresh capital, Plum plans to launch in Spain and France by the end of 2020. The company claims 1 million registered users in the U.K., and now employs more than 60 people split across London, U.K. and Athens, Greece. Trokoudes tells me it will scale up further to 80 employees by the end of 2020 and is aiming for 5 million users across Europe by the end of 2021.

Adds Naoki Kamimaeda, partner and Europe office representative at Global Brain Corporation: “More users have started using fintech apps and personal financial management apps across the globe, to be more efficient and be better off. Among these fintech apps, Plum has a very unique position and very bold ambition to be a partner of individuals to save more money and manage their financial life in an easier and more effective manner.”

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Higher Steaks brings home the bacon, revealing lab-grown pork belly and bacon strips

In what could be a starting gun for the commercialization of the cell-based meat business, upstart cultivated meat company Higher Steaks said it has managed to produce samples of its first products — bacon strips and pork belly made in a lab from cellular material.

With the revelation, Higher Steaks, a bootstrapped Cambridge, U.K.-based company, leapfrogs into a competitive position with a number of far larger companies that have raised far more capital.

“There’s still a lot of work until it’s commercial,” said Higher Steaks chief executive Benjamina Bollag, “but the revelation of a pork belly product that’s made from 50% cultivated cells and a bacon product which contains 70% meat grown from a cell material in a laboratory is something of a milestone for the industry.”  

The remaining ingredients in Higher Steaks bacon and pork belly are a mixture of plant base, proteins, fats and starches to bind the cellular material together. To achieve this first step on its road to commercialization, Higher Steaks tapped the expertise of an undisclosed chef to formulate the meat into an approximation of the pork belly and bacon.

Higher Steaks head of research and development, Ruth Helen Faram (left) and chief executive Benjamina Bollag (right) Image Credits: Higher Steaks (opens in a new window)

At this stage, the pilot was more to show what Higher Steaks can do rather than what the company will do, said Bollag.

“In the future it will be scaffolding,” said Bollag. “It’s more showing what our meat can do and what we’re working on. In the future it will be with scaffolding.”

A number of companies, including Tantti Laboratories, Matrix Meats and Prellis Biologics, make the kind of biomaterial nano-scale scaffolding that could be used as a frame on which to grow structures equivalent to the fibrous textures of muscle.

The commercial viability of products from companies like Higher Steaks, Memphis Meats, Aleph Farms, Meatable, Integriculture, Mosa Meat and Supermeat depends on more than just companies like Tantti and Matrix, but also on the ability of Thermo Fisher, Future Fields and Merck to bring down the cost of the cell cultures that are required to grow the animal cells.

In all, some 30 cell-based meat startups have launched globally since 2014, and they’re all looking for a slice of the $1.4 trillion meat market.

Meanwhile, demand for pork continues to rise even as supplies have been decimated by an outbreak of African Swine Fever that could have killed as much as 40% of China’s population of pigs in 2019.

“Our mission is to provide meat that is healthy and sustainable without the consumer making any sacrifices on taste,” said Bollag in a statement. “The production of the first ever cultivated bacon and pork belly is proof that new techniques can help meet overwhelming demand for pork products globally.”

Given the highly capitalized competitors that Higher Steaks faces off against, the company is looking for industry partners to help commercialize its technology.

To improve its competitive position, Higher Steaks recently hired Dr. James Clark, the former chief technology officer of PredictImmune.

“I was always quite intrigued by cultured meat production, a mix of both science and food production. In 2013 I watched the first cultured meat burger from Mark Post costing £250,000, cooked on the BBC,” said Clark. “I was approached about joining Higher Steaks earlier this year and was attracted to joining primarily by the science along with the ambition and energy of the Higher Steaks founder Benjamina Bollag . I believe Higher Steaks is a company with a technology to be disruptive in the cultured meat area and at my career stage I was looking for a challenge.”

Brought in to scale the cultivated meat process at Higher Steaks, Clark has led the development of biotech and pharma products at early-stage and publicly traded companies.

“The addition of Dr. James Clark to the team gives Higher Steaks a significant advantage,” said Dr. Ruth Helen Faram, head of R&D. “Cultivated pork belly and bacon have never been demonstrated before and Higher Steaks is the first to develop a prototype containing over 70% cultivated pork muscle, without the use of bovine serum.”

Consumers shouldn’t expect to see Higher Steaks’ pork belly on store shelves or in restaurants anytime soon, Bollag cautioned. “We’re still in the thousands of pounds per kilogram.”

The company does expect to have a larger tasting event later this year.

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