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Microsoft will soon launch a dedicated device for game streaming, the company announced today. It’s also working with a number of TV manufacturers to build the Xbox experience right into their internet-connected screens and Microsoft plans to bring cloud gaming to the PC Xbox app later this year, too, with a focus on play-before-you-buy scenarios.
It’s unclear what these new game streaming devices will look like. Microsoft didn’t provide any further details. But chances are we’re talking about either a Chromecast-like streaming stick or a small Apple TV-like box. So far, we also don’t know which TV manufacturers it will partner with.
It’s no secret that Microsoft is bullish about cloud gaming. With Xbox Game Pass Ultimate, it’s already making it possible for its subscribers to play more than 100 console games on Android, streamed from the Azure cloud, for example. In a few weeks, it’ll open cloud gaming in the browser on Edge, Chrome and Safari, to all Xbox Game Pass Ultimate subscribers (it’s currently in limited beta). And it is bringing Game Pass Ultimate to Australia, Brazil, Mexico and Japan later this year, too.
In many ways, Microsoft is unbundling gaming from the hardware — similar to what Google is trying with Stadia (an effort that, so far, has fallen flat for Google) and Amazon with Luna. The major advantage Microsoft has here is a large library of popular games, something that’s mostly missing on competing services, with the exception of Nvidia’s GeForce Now platform — though that one has a different business model since its focus is not on a subscription but on allowing you to play the games you buy in third-party stores like Steam or the Epic store.
What Microsoft clearly wants to do is expand the overall Xbox ecosystem, even if that means it sells fewer dedicated high-powered consoles. The company likens this to the music industry’s transition to cloud-powered services backed by all-you-can-eat subscription models.
“We believe that games, that interactive entertainment, aren’t really about hardware and software. It’s not about pixels. It’s about people. Games bring people together,” said Microsoft’s Xbox head Phil Spencer. “Games build bridges and forge bonds, generating mutual empathy among people all over the world. Joy and community — that’s why we’re here.”
It’s worth noting that Microsoft says it’s not doing away with dedicated hardware, though, and is already working on the next generation of its console hardware — but don’t expect a new Xbox console anytime soon.
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Farmers and food businesses, like restaurants, deal with the same issue: a fragmented supply chain. Secai Marche wants to streamline agricultural logistics, making fulfillment more cost-efficient and enabling food businesses to bundle products from different farmers into the same order. The company is headquartered in Japan, with operations in Malaysia, and plans to expand into Singapore, Thailand and Indonesia. This week, it announced 150 million JPY (about $1.4 million USD) in pre-Series A funding from Rakuten Ventures and Beyond Next Ventures to build a B2B logistics platform for farmers that sell to restaurants, hotels and other F&B (food and beverage) businesses.
This round brings Secai Marche’s total raised to about $3 million. The capital will be used to expand its fulfillment infrastructure, including a network of warehouses and cold chain logistics, hire more people for its engineering team and sales and marketing.
Secai Marche was founded in 2018 by Ami Sugiyama and Shusaku Hayakawa, and currently serves 130 farmers and more than 300 F&B businesses. Before launching the startup, Sugiyama spent four years working in Southeast Asia, including managing restaurants and cafes in Malaysia. During that time, she started to import green tea from Japan, intending to sell it directly to customers in Malaysia. But she realized supply chain inefficiencies not only made it hard to meet demand, but also ensure quality for all kinds of ingredients.
Meanwhile, Hayakawa was operating a farm in Japan and working on agriculture control systems that predicted weather and crop growth to help farmers maintain consistent quality.
Both Sugiyama and Hayakawa ended up at consulting firm Deloitte, researching how to create a more efficient supply chain for Japanese agricultural exports to Singaporean F&B businesses. Policies implemented by Prime Minister Yoshihide Suga’s administration aim to increase Japanese agricultural exports from 922.3 billion JPY (about $8.5 billion) in 2020 to 2 trillion JPY (about $18.5 billion) by 2025, and 5 trillion JPY (about $46.1 billion) in 2030.
Seche Marche’s goal is to make it easier for farmers to sell their crops to F&B businesses domestically or overseas.
“We found that not only farmers in Japan, but also all farmers in Southeast Asia have the same problem in terms of the current supply chain,” Sugiyama told TechCrunch. “So we left Deloitte and started our own business to connect not only farmers in Japan, but farmers in all Asian countries.”
Secai Marche’s logistics management tech is what differentiates it from other wholesaler platforms. It uses an AI-based algorithm to predict demand based on consumption trends, seasonal products and farmer recommendations, said Hayakawa. Secai Marche runs its own warehouse network, but mostly relies on third-party logistics providers for fulfillment, and its platform assigns orders to the most efficient transportation method.
This allows F&B businesses to consolidate orders from farmers, so they can order smaller batches from different places without spending more money. About 30% of Secai Marche’s products are shipped to other countries, while the rest are sold domestically.
Secai Marche is reaching out to farmers who want to increase their customer base. About 30% of its products currently come from Japanese farms, 50% from Malaysia and the rest from other ASEAN countries. Sugiyama and Hayakawa said the COVID-19 pandemic affected Secai Marche’s expansion plans because it originally planned to enter Singapore this year, but had to slow down since they were unable to travel and meet with farmers.
On the other hand, many farmers have started selling directly to consumers through social media like Instagram or Facebook, and have approached Secai Marche for help with fulfillment, logistics, repacking and quality control.
Correction: Funding amount corrected to say $1.4 million instead of $1 million.
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The University of Tokyo Edge Capital Partners (UTEC), a deep-tech investment firm, announced the first close of its fifth fund, which is expected to total 30 billion JPY (or about $275 million USD) by June 2021. UTEC currently has about $780 million in total assets under management, and says this makes it one of the largest venture capital funds focused on science and tech in Japan, and one of the largest deep-tech funds in Asia.
UTEC is an independent firm that works closely with universities. It is associated with The University of Tokyo (UTokyo), where it has a partnership with its Technology Licensing Office (TLO) to spin off and invest in companies that originated as research projects. It has also worked with researchers from Waseda University, Kyoto University, Stanford, UC Berkeley, Carnegie Mellon, Cambridge University, the National University of Singapore and the Indian Institute of Technology, among other institutions.
Broadly speaking, UTEC focuses on three areas: healthcare and life sciences, information technology and physical sciences and engineering. More specifically, it is looking for tech that addresses some of the most important issues in Japan, including an aging population, labor shortage and the digitization of legacy industries.
“UTEC 5 will allow us to provide more funds from seed/early to pre-IPO/M&A stages in Japan and worldwide, on a wider scale and in a more consistent manner,” said managing partner and president Tomotaka Goji in a statement. “I believe this will further help our startups expand to address the global issues of humankind.”
The firm also partners with other funds, including Arch Venture Partners and Blume Ventures, to find investment opportunities around the world.
UTEC’s portfolio already includes more than 80 Japanese startups and 30 startups from other places, including the United States, India, Southeast Asia and Europe. So far, 25 of its investments have exited. Thirteen went public and now have an aggregated market cap of about $15 billion, and 12 were through mergers and acquisitions.
Some of its exits include 908 Devices, a mass spectrometry company that went public on Nasdaq last year; Fyusion, a computer vision startup acquired by Cox Automotive; and Phyzios, which was acquired by Google in 2013.
About half of UTEC’s portfolio are university spin-offs. For companies that originated in academic research, UTEC supports their commercialization by helping hire crucial talent, including executive positions, business development and go-to-market strategies. The firm’s first check size is about $500,000 to $5 million, and it also usually provides follow-on capital.
“We typically double-down on our investment in subsequent funding rounds of the company and can invest up to about $23 million per company over its lifecycle,” UTEC principal Kiran Mysore, who leads their global AI investments, told TechCrunch.
UTEC’s other investments include personal mobility robotics company BionicM, which started at UTokyo and spatial intelligence solution developer Locix, spun-off from UC Berkeley. The firm also helps startups collaborate with academic institutions. For example, Indian biotech Bugworks collaborates with the Tokyo Institute of Technology and Japanese industrial robotics startup Mujin now works with Carnegie Mellon.
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Headquartered in San Francisco and Tokyo, Scrum Ventures is known for its accelerator programs focused on sports, food and smart-city tech. Today it announced the launch of a new incubator program that will help startups form business partnerships with Japanese corporations.
Called Scrum Studio, it will be spun out as an independent entity from Scrum Ventures, and headed by Masami Takahashi, who was previously strategy officer and general manager for WeWork Japan. Before that, he led Uber’s operations in Japan.
Takahashi told TechCrunch that Scrum Studio is currently focused on the startups in its current accelerator programs (Sports Tech Tokyo, SmartCityX and Food Tech Studio), but plans to launch new programs in the future that also center on specific verticals. Through Scrum Studio, startups will be able to establish subsidiaries in Japan, or form joint ventures with Japanese companies.
Scrum already has more than 50 Japanese corporate partners, including Aioi Nissay Dowa Insurance, energy company Idemitsu Kosan Co and East Japan Railway Company for Smart City X, and Fuji Oil Holdings, Nissin Food Holdings and ITO EN for Food Tech Studio.
“We are looking to work with startups and technology that can help solve some of the challenges that our society faces today,” Takahashi said in an email. “These include, but are not limited to, sustainability, health, safety, waste reduction, and efficiency of cities and their people.”
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A little over 13 years ago, Shai Agassi, a promising software executive who was in line to succeed the chief executive at SAP, then one of the world’s mightiest software companies, left the company he’d devoted the bulk of his professional career to and started a business called Better Place.
That startup promised to revolutionize the nascent electric vehicle market and make range anxiety a thing of the past. The company’s pitch? A network of automated battery swapping stations that would replace spent batteries with freshly charged ones.
Agassi’s company would go on to raise nearly $1 billion (back when that was considered a large sum of money) from some of the world’s top venture capital and growth equity firms. By 2013 it would be bankrupt and one of the many casualties of the first wave of cleantech investing.
Now serial entrepreneurs John de Souza and Khaled Hassounah are reviving the battery swapping business model with a startup called Ample and an approach that they say solves some of the problems that Better Place could never address at a time when the adoption of electric vehicles is creating a far larger addressable market.
In 2013, there were 220,000 electric vehicles on roads, according to data from Statista, a number which had grown to 4.8 million by 2019.
Ample has actually raised approximately $70 million from investors, including Shell Ventures, the Spanish energy company Repsol and the Moore Strategic Ventures, a venture firm that is the privately held investment firm of Louis M. Bacon, founder of the multibillion-dollar hedge fund, Moore Capital Management. That includes a $34 million investment first reported back in 2018, and a later round from investors including Japan’s energy and metals company, Eneos Holdings that closed recently.
“We had a lot of people that either said, I somehow was involved in that and was suffering from PTSD,” said de Souza, of the similarities between his business and Better Place. “The people who weren’t involved read up about it and then ran away.”
For Ample, the difference is in the modularization of the battery pack and how that changes the relationship with the automakers that would use the technology.
“The approach we’ve taken… is to modularize the battery and then we have an adapter plate that is the structural element of the battery that has the same shape of the battery, same bolt pattern and same software interface. Even though we provide the same battery system… it’s the same as replacing the tire,” said Hassounah, Ample’s co-founder and chief executive. “Effectively we’re giving them the plate. We don’t modify the car whatsoever. You either put a fixed battery system or an Ample battery plate. We’re able to work with the OEMS where you can make the battery swappable for the use cases where this makes a lot of sense. Without really changing the same vehicle.”
Ample’s currently working with five different OEMs and has validated its approach to battery swapping with nine different car models. One of those OEMs also brings back memories of Better Place.
It’s clear that the company has a deal with Nissan for the Leaf thanks to the other partnership that Ample has announced with Uber. Ample’s founders declined to comment on any OEM relationships.
It’s clear that Ample is working with Nissan because Nissan is the company that inked a deal with Uber earlier this year on zero-emission mobility. And Uber is the first company to use Ample’s robotic charging stations at a few locations in the Bay Area, the company said. This work with Nissan echoes Better Place’s one partnership with Renault, another arm of the automaker, which proved to be the biggest deal for the older, doomed, battery swapping startup.
Ample says it only takes weeks to set up one of its charging pods at a facility and that the company’s charging drivers on energy delivered per mile. “We achieve economics that are 10% to 20% cheaper than gas. We are profitable on day one,” said Hassounah.
Uber is the first step. Ample is focused on fleets first and is in talks with multiple, undisclosed municipalities to get their cars added to the system. So far, Ample has done thousands of swaps, according to Hassounah, with just Uber drivers alone.
The cars can also be charged at traditional charging facilities, Hassounah said, and the company’s billing system knows the split between the amount of energy it delivers versus another charging outlet, Hassounah said.
“So far, in the use cases that we have, for ridesharing it’s individual drivers who pay,” said de Souza. With the five fleets that Ample expects to deploy with later this year the company expects to have the fleet managers and owners pay for charging.
Some of the inspiration for Ample came from Hassounah’s earlier experience working at One Laptop per Child, where he was forced to rethink assumptions about how the laptops would be used, the founder said.
“Initially I worked on the keyboard display and then quickly realized the challenge was in the field and developed a framework for creating infrastructure,” Hassounah said.
The problem was the initial design of the system did not take into account lack of access to power for laptops at children’s homes. So the initiative developed a charging unit for swapping batteries. Children would use their laptops over the course of the day and take them home, and when they needed a fresh charge, they would swap out the batteries.
“There are fleets that need this exact solution,” said de Souza. But there are advantages for individual car owners as well, he said. “The experience for the owner of a vehicle is after time the battery degrades. With ours as we put new batteries in the car can go further and further over time.”
Right now, OEMs are sending cars without batteries and Ample is just installing their charging system, said Hassounah, but as the number of vehicles using the system rises above 1,000, the company expects to send their plates to manufacturers, who can then have Ample install their own packs.
Currently, Ample only supports level one and level two charging, but won’t offer fast charging options for the car makers it works with — likely because that option would cannibalize the company’s business and potentially obviate the need for its swapping technology.
At issue is the time it takes to charge a car. Fast chargers still take between 20 and 30 minutes to charge up, but advances in technologies should drive that figure down. Even if fast charging ultimately becomes a better option, Ample’s founders say they view their business as an additive step to faster electric vehicle adoption.
“When you’re moving 1 billion cars, you need everything… We have so many cars we need to put on the road,” Hassounah said. “We think we need all solutions to solve the problem. As you think of fleet applications you need a solution that can match gas in charge and not speed. Fast charging is not available in mass. The challenge will not be can the battery be charged in five minutes. The cost of building chargers that can deliver that amount of power is prohibitive.”
Looking beyond charging, Ample sees opportunities in the grid power market as well, the two founders said.
“Time shift is built into our economics… that’s another way we can help,” said de Souza. “We use that as grid storage… we can do demand charge and now that the federal mandate is there to feed into the grid we can help stabilize the grid by feeding back energy. We don’t have a lot of stations to make a significant impact. As we scale up this year we will.”
Currently the company is operating at a storage capacity of tens of megawatts per hour, according to Hassounah.
“We can use the side storage to accelerate the development of swapping stations,” de Souza said. “You don’t have to invest an insane amount of money to put them in. We can finance the batteries in multiple ways as well as utilize other sources of financing.”
Ample co-founders John de Souza and Khaled Hassounah. Image Credit: Ample
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The U.S.-based oil major Chevron is doubling down on its investment in geothermal power by investing in a Swedish developer of low-temperature geothermal and heat power projects called Baseload Capital.
Oil companies are under pressure to find new lines of business as the world prepares for a massive shift to renewable energy resources to power all aspects of industry in the face of mounting climate-related disasters caused by greenhouse gas emissions warming the temperature on the planet.
Joining Chevron in the investment was the ubiquitous billionaire-backed clean energy investment firm Breakthrough Energy Ventures and a Swedish investment group called Gullspang Invest AB.
The investment into Baseload follows closely on the heels of another commitment that Chevron made to the geothermal technology developer Eavor and a recent Breakthrough Energy Ventures investment in the Google-affiliated company, Dandelion Energy (a spinout from Google’s parent company’s moonshot technology development business unit, called X).
Dandelion and Eavor are just two examples of a groundswell of startups working to leverage the knowledge from the oil and gas industry to tap geothermal resources for applications ranging from baseload energy to home heating and cooling.
They’re joined by businesses like Fervo Energy, GreenFire Energy and Sage Geosystems, who’re all leveraging heat to generate power.
As Chevron noted in its press release, heat power is an affordable form of renewable energy that can be harnessed from either geothermal resources or waste heat.
The investments in Baseload and Eavor are financed by CTV’s Core Venture fund, which identifies companies with technology that can add efficiencies to Chevron’s core business in operational enhancement, digitalization and lower-carbon operations, the company said in a statement.
Together the two businesses are planning pilot projects to test technology and could look to current Baseload operations in Japan, Taiwan, Iceland or the United States to develop projects.
Financial terms of the deal were undisclosed.
“In August, we announced that we were looking for a new strategic investor to help us accelerate deployment in our key markets,” said Baseload’s Chief Executive Officer Alexander Helling. “We couldn’t have asked for a better one. Chevron complements our group of owners and adds expertise in drilling, engineering, exploration and more. These assets are expected to accelerate our ability to deploy heat power and strengthen our way of working.”
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Tokyo-based SODA, which runs sneaker reselling platform SNKRDUNK, has raised a $22 million Series B led by SoftBank Ventures Asia. Investors also included basepartners, Colopl Next, THE GUILD and other strategic partners. Part of the funding will be used to expand into other Asian countries. Most of SNKRDUNK’s transactions are within Japan now, but it plans to become a cross-border marketplace.
Along with SODA’s $3 million Series A last year, this brings the startup’s total funding to $25 million.
While the COVID-19 pandemic was initially expected to put a damper on the sneaker resell market, C2C marketplaces have actually seen their business increase. For example, StockX, one of the biggest sneaker resell platforms in the world (which hit a valuation of $2.8 billion after its recent Series E), said May and June 2020 were its biggest months for sales ever.
SNKRDUNK’s sales also grew last year, and in December 2020, it recorded a 3,000% year-over-year increase in monthly gross merchandise value. Chief executive officer Yuta Uchiyama told TechCrunch this was because demand for sneakers remained high, while more people also started buying things online.
Launched in 2018, SNKRDUNK now has 2.5 million monthly users, which it says makes it the largest C2C sneaker marketplace in Japan. The Series B will allow it to speed up the pace of its international expansion, add more categories and expand its authentication facilities.
Like StockX and GOAT, SNKRDUNK’s user fees cover authentication holds before sneakers are sent to buyers. The company partners with FAKE BUSTERS, an authentication service based in Japan, to check sneakers before they are sent to buyers.
In addition to its marketplace, SNKRDUNK also runs a sneaker news site and an online community.
SODA plans to work with other companies in SoftBank Venture Asia’s portfolio that develop AI-based tech to help automate its operations, including logistics, payment, customer service and counterfeit inspection.
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TMYTEK recently raised a Series A+ round of about $10 million for products that make it easier to test 5G millimeter wave equipment. So far, the company’s clients include KDDI, NTT DoCoMo and research institutions. But the Taiwanese startup has aspirations to sell its own base stations, too, competing with well-established players like Nokia, Ericsson, Samsung and Huawei. TMYTEK plans to use its expertise, gleaned from helping other researchers develop 5G infrastructure, to create what its chief executive officer describes as a “complete 5G industrial chain.”
Its latest funding round was led by TMYTEK’s manufacturing partner Inventec, one of the largest OEMs in Taiwan, and brings the startup’s total funding so far to $13.3 million. Other investors included Taisic Materials, ITEQ, Tamagawa Electronics and Taiwan’s National Development Fund. TMYTEK also recently took part in SparkLabs Taipei’s accelerator program.
Co-founder and chief executive officer Su-Wei Chang told TechCrunch that it plans to raise a Series B next to develop and commercialize its base stations. To get ready for its base station business, TMYTEK recently joined the O-RAN Alliance, founded by some of the world’s biggest telecoms to create more interoperable mobile networks, in a bid to encourage the development of new technology and faster deployment.
Chang said TMYTEK’s base in Taiwan gives it a strategic advantage. 5G manufacturing is an important part of Taiwan’s economy, with exports reaching record highs during the second half of 2020, thanks in part to demand for 5G-related equipment and technology for smartphones, autonomous vehicles and smart devices.
Chang studied at University of Massachusetts Amherst and when TMYTEK was founded six years ago, he was often asked why he didn’t stay in the United States, where it would have been easier to secure startup funding. But being in Taiwan puts the company closer to many important markets, including Japan, where 30% of its current business comes from, and gives TMYTEK a good foundation to expand into the U.S. and European market, he said.
It has also given the company a supply chain advantage. TMYTEK has manufacturing partners across Asia, including Inventec in Taiwan, and factories in Vietnam and Thailand, in addition to China. Chang said this means TMYTEK was not limited by the COVID-19 pandemic or the U.S.-China trade war.
Before launching TMYTEK in 2014, Chang and co-founder Ethan Lin both worked at Academia Sinica, one of the top research institutions in Taiwan, where they focused on millimeter waves even though at the time most researchers were more interested in the mid-band spectrum.
But as more devices and applications began to crowd the 4G spectrum, mmWave became less niche. With Qualcomm’s launch of next-generation 5G mmWave hardware and chips, and more carriers launching mmWave coverage, mmWave is poised to become mainstream.
Millimeter waves offer powerful signals with wide bandwidth and low latency, but drawbacks include difficulty traveling through obstacles like buildings. It also has a limited range, which is why millimeter waves need more base stations. Beamforming, which directs signals toward a specific device, and antenna array, or multiple antennas that work like a single antenna, are used to extend its coverage.
One of the main challenges for the millimeter wave market, however, is the lack of R&D tools to speed up their development and time to market, resulting in higher costs and slower deployment.
To keep up with market opportunities, TMYTEK transitioned from design and manufacturing projects for clients to offering 5G-focused solutions like the BBox, which stands for “beamforming box.” The BBox was created after a professor at National Taiwan University told Chang that his team was working on antenna design, but didn’t have the resources to work on beamforming technology, too. It lets researchers create 16 beams and control the signal’s amplitude and phase with software, so they can test how it works with antennas and other hardware more quickly. TMYTEK claims the BBox can save researchers and engineers up to 80% in time and cost.
Chang said TMYTEK realized that if researchers at NTU, one of Taiwan’s largest research universities, needed a solution, then other labs did, too. So far, it has delivered 30 sets to companies including KDDI, NTT DoCoMo, Fujitsu, several Fortune 500 companies and research institutions.
While the BBox was created for antenna designers, the company also began exploring solutions to help other designers, including algorithm developers who want to test beam tracking, communicate with base stations and collect data.
TMYTEK vice president Ethan Lin holds the antenna-in-package for its XBeam millimeter wave testing solution (Image Credits: TMYTEK)
For that scenario, TMYTEK created the XBeam, which it describes as a “total solution,” and is meant for the mass production phase, testing modules, smartphones and base stations before they are shipped. Traditional solutions to test modules rely on mechanical rotators, but Chang said this is more suited to the research and development process. The XBeam, which is based on the BBox, electronically scans beams instead. The company claims the XBeam is up to 20 times faster than other testing solutions.
TMYTEK created the XBeam’s prototype in 2019 and launched the commercialized version in November 2020.
The BBox and XBeam will help TMYTEK build its own base station business in two ways, Chang said. First, having its own solutions will allow TMYTEK to test base stations and bring them to market faster. Second, the startup hopes building a reputation on effective research and development tools will help it market its base stations to private and public networks. This is especially important to TMYTEK’s ambitions since their base stations will be up against products from major players like Nokia, Ericsson, Samsung and Huawei.
“Our advantage at TMYTEK is that we’re doing the design and we have good partners for manufacturing. Inventec, our investor, is a top five manufacturer in Taiwan,” he said. “And TMYTEK also builds our own testing solution, so our value is that we can provide a total solution to our customers.”
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Boost Biomes, the Y Combinator-backed developer of microbiome-based bio-fungicides and bio-pesticides for agricultural applications, has added $2 million in funding and picked up a new strategic investor in Japan’s Universal Materials Incubator.
To date, Boost Biomes has raised more than $7 million in financing to support the development of new products like its bio-fungicide developed from the microorganisms that live in the soil in a symbiotic relationship with plants.
The work that Boost does is primarily on understanding the interactions between microbes and plants in the soil. “The goal is to be the discovery engine and develop new microbial products for use in food and agriculture,” said Boost chief executive and co-founder Jamie Bacher.
The commitment from Japan’s Universal Materials Incubator expands on a $5 million institutional round led by another strategic partner, Yara International, a global crop nutrition company, and venture investors like Viking Global Investors and Y Combinator.
Boost hopes to tackle issues in agriculture like spoilage, bacterial contamination and pathogen infestations, as well as addressing diseases that can affect plant health directly.
Boost is already working with an undisclosed biomanufacturing partner to develop its bio-fungicide.
“UMI’s decision to invest in Boost comes from our evaluation of their team, technology, and the associated market opportunities. We believe that Boost’s platform generates a unique data set that can be exploited for far superior products with many diverse microbiome applications in food and agriculture,” said Yota Hayama, an investor at UMI, in a statement. “These are critical areas to achieve food security and promote sustainable agriculture. We also expect Boost’s huge potential on other areas where microbiomes are utilized.”
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Ride Vision, an Israeli startup that is building an AI-driven safety system to prevent motorcycle collisions, today announced that it has raised a $7 million Series A round led by crowdsourcing platform OurCrowd. YL Ventures, which typically specializes in cybersecurity startups but also led the company’s $2.5 million seed round in 2018, Mobilion VC and motorcycle mirror manufacturer Metagal also participated in this round. The company has now raised a total of $10 million.
In addition to this new funding round, Ride Vision also today announced a new partnership with automotive parts manufacturer Continental .
“As motorcycle enthusiasts, we at Ride Vision are excited at the prospect of our international launch and our partnership with Continental,” Uri Lavi, CEO and co-founder of Ride Vision, said in today’s announcement. “This moment is a major milestone, as we stride toward our dream of empowering bikers to feel truly safe while they enjoy the ride.”
The general idea here is pretty straightforward and comparable with the blind-spot monitoring system in your car. Using computer vision, Ride Vision’s system, the Ride Vision 1, analyzes the traffic around a rider in real time. It provides forward collision alerts and monitors your blind spot, but it can also tell you when you’re following another rider or car too closely. It can also simply record your ride and, coming soon, it’ll be able to make emergency calls on your behalf when things go awry.
As the company argues, the number of motorcycles (and other motorized two-wheeled vehicles) has only increased during the pandemic, as people started avoiding public transport and looked for relatively affordable alternatives. In Europe, sales of two-wheeled vehicles increased by 30% during the pandemic.
The hardware on the motorcycle itself is pretty straightforward. It includes two wide-angle cameras (one each at the front and rear), as well as alert indicators on the mirrors, as well as the main computing unit. Ride Vision has patents on its human-machine warning interface and vision algorithms.
It’s worth noting that there are some blind-spot monitoring solutions for motorcycles on the market already, including those from Innovv and Senzar. Honda also has patents on similar technologies. These do not provide the kind of 360-degree view that Ride Vision is aiming for.
Ride Vision says its products will be available in Italy, Germany, Austria, Spain, France, Greece, Israel and the U.K. in early 2021, with the U.S., Brazil, Canada, Australia, Japan, India, China and others following later.
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