Faraday Future Partners With MIVOLT (M&I Materials) to Announce a Unique Fully Submerged Battery Cooling System

  • Faraday Future to Utilize Fully Submerged Battery Cooling Technology in the All-new FF 91 Luxury EV
  • Faraday Future and MIVOLT Recently Collaborated on a Joint Industry Discussion That Took an In-depth Look at EV Battery Technology Using Submerged Cooling
  • Faraday Future’s Battery Technology Will Give the Upcoming FF 91 a Projected Range of up to 378 Miles*


Faraday Future (FF), a California-based global shared intelligent mobility ecosystem company, today announced that it is partnering with MIVOLT on a fully submerged battery cooling system for the FF 91 luxury EV. MIVOLT will provide FF with advanced dielectric coolant materials that will support FF’s existing patented liquid cell submerged onboard cooling system, which includes a self-contained and fail-safe architecture battery pack design.

FF and MIVOLT recently collaborated on “Going Further,” a live, joint webcast that took an in-depth look at EV battery technology using submerged cooling. Experts from both companies –

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ETRI, DGIST develop new electrode structure for all-solid-state secondary battery


IMAGE: ETRI researchers are looking at a new type of electrode structure for all-solid-state secondary battery.
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Credit: Electronics and Telecommunications Research Institute(ETRI)

South Korean researchers have developed a new type of electrode structure for all-solid-state secondary batteries. If this technology is adopted, the energy density of the batteries could increase significantly when compared to existing technologies, contributing tremendously to the development of high-performance secondary batteries.

A joint research team from Electronics and Telecommunications Research Institute (ETRI) and Daegu Gyeongbuk Institute of Science and Technology (DGIST) announced that it had designed a new electrode structure for all-solid-state secondary batteries after identifying the mechanism of facile lithium-ion diffusion between active materials. The achievement received international recognition when the results were published by the ACS Energy Letters, an international online academic journal specializing in the energy sector which is run by the American Chemical Society (ACS)*.

Unlike primary cells

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Your next Android smartphone will have even faster 5G, better battery life, thanks to Qualcomm


Qualcomm’s Snapdragon 888 will be in 5G devices in the first quarter of 2021.


The chip that will power most high-end 5G phones next year is here: the Qualcomm Snapdragon 888. And for the first time in its ultra high-end lineup, Qualcomm has integrated its 5G modem on the same chip as the brains, AI and other processor features, likely giving 5G phones a boost in battery life. 

Smartphones need a lot of components to operate, but two key parts that make a phone a phone are the application processor that acts as the brains of a device and a modem that connects it to a mobile network. The first 5G devices needed standalone modems that worked alongside the main computing processor. That was because 5G technology was so new, it was too difficult to combine it with the brains. 

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Tesla Proudly Showcases Latest Cell and Battery Pack Tech While… Recruiting

Ever since the California-based electric vehicle manufacturer introduced its next-generation, in-house developed, battery cell – the 4680 – the world has been holding its breath to see if it’s real or not. Chances are the company has settled the mystery, right in front of everybody. They showcased the new cell and pack designs on the very page they’re using to recruit new talent.

Even though many still question the sanity of one top manager (a.k.a. Elon Musk), we can’t help but appreciate the strokes of genius the Tesla team manage to achieve. Seriously, what about presenting what is probably the first virtual footage of its all-new 4680 on the recruiting page of the official website?

Tesla has decided to make the “Join the Cell Team” call for good reason, as it’s looking forward to putting into action their newly introduced 4680 battery cells – named after their physical

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Smartphone Li-Ion Battery Global Market Insights (2020 to 2025) – Analysis and Forecasts

Dublin, Nov. 27, 2020 (GLOBE NEWSWIRE) — The “Smartphone Li-Ion Battery Global Market Insights 2020, Analysis and Forecast to 2025, by Manufacturers, Regions, Technology, Product Type” report has been added to ResearchAndMarkets.com’s offering.

This report describes the global market size of Smartphone Li-Ion Battery from 2015 to 2019 and its CAGR from 2015 to 2019, and also forecasts its market size to the end of 2025 and its CAGR from 2020 to 2025.

For the geography segment, regional supply, demand, major players, price is presented from 2015 to 2025.

This report covers the following regions:

  • North America
  • South America
  • Asia & Pacific
  • Europe
  • MEA

The key countries for each region are also included such as the United States, China, Japan, India, Korea, ASEAN, Germany, France, UK, Italy, Spain, CIS, and Brazil etc.

For the competitor segment, the report includes global key players of Smartphone Li-Ion Battery as well as some

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Global Printable Battery Market Latest Industry Size, Emerging Technologies, Future Demands and Latest Industry Growth Opportunities Forecast 2026

The MarketWatch News Department was not involved in the creation of this content.

Nov 27, 2020 (The Expresswire) —
The global “Printable Battery Market” is expected to rise with an impressive CAGR and generate the highest revenue by 2026. Fortune Business Insights™ in its latest report published this information. The report is titled “Printable Battery Market Size, Industry Share and Forecast 2026”. The report discusses research objectives, research scope, methodology, timeline and challenges during the entire forecast period.

The report evaluates the important characteristics of the market based on present industry scenarios, market demands and business strategies. Also, the research report separates the industry based on the Printable Battery Market share, types, applications, growth factor, key players and regions.

Key Industry Development:

Report Highlights:

  • A comprehensive overview of the Biogas Market
  • Significant factors boosting, restricting, challenging and providing an opportunity to the market
  • Key insights and major industry developments
  • Significant
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Battery Technology Market Size to accrue $ 88970 million by 2025

The MarketWatch News Department was not involved in the creation of this content.

Nov 27, 2020 (Market Insight Reports) —
Selbyville, Delaware Market Study Report adds 2020-2025 Global Battery Technology report that offers an exhaustive coverage of the industry with brief analysis, data charts, figures, statistics that help take business decisions, company profiles and more.

According to this study, over the next five years the Battery Technology market will register a 7.1% CAGR in terms of revenue, the global market size will reach $ 88970 million by 2025, from $ 67740 million in 2019. In particular, this report presents the global revenue market share of key companies in Battery Technology business, shared in Chapter 3.

Request a sample Report of Battery Technology Market at: https://www.marketstudyreport.com/request-a-sample/2450000?utm_source=Marketwatch.com&utm_medium=AN

How the report provides an insight for new entrants & stakeholders wishing to invest in the industry:

  • The Battery Technology market report elaborates meticulously
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Lithium Iron Phosphate (LiFePO4) Battery Market outlook, Future Scope, Demands and Projected Industry Growths to 2026

The MarketWatch News Department was not involved in the creation of this content.

Nov 25, 2020 (Market Insight Reports) —
Selbyville, Delaware. The Lithium Iron Phosphate (LiFePO4) Battery Market report upholds the future market predictions related to Lithium Iron Phosphate (LiFePO4) Battery market size, revenue, production, Consumption, gross margin and other substantial factors. It also examines the role of the prominent Lithium Iron Phosphate (LiFePO4) Battery market players involved in the industry including their corporate overview. While emphasizing the key driving factors for Lithium Iron Phosphate (LiFePO4) Battery market, the report also offers a full study of the future trends and developments of the market.

The global Lithium Iron Phosphate (LiFePO4) Battery market is anticipated to reach USD 34.5 billion by 2026, according to a new research published by The marker research report. In 2017, the automotive segment dominated the global market, in terms of revenue. Asia-Pacific is expected to

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China Carbon Developed Latest Carbon-Based Battery Component Product for Mass Production to Expand Alongside EV & Energy Storage Industries

SHANGHAI, CHINA / ACCESSWIRE / November 25, 2020 / China Carbon Graphite Group, Inc. (OTC PINK:CHGI). (“China Carbon” or the “Company”) today announces its subsidiary research and development team, Royal Elite New Energy Science and Technology (Shanghai) Co., Ltd. (“Roycarbon”), together with its manufacturing partner have fully developed their newest carbon-based product. The component product is certified for mass production and qualified as a battery component for grid-scale energy storage systems. China Carbon’s latest product is forecasted to be incorporated in energy solution assemblies of its partners, of which including a most anticipated player in the upcoming energy storage industry that offers further applications in industrial, commercial, as well as residential markets.

The company is also expected to scale up its graphite powder production for prospective increasing demands of EV lithium-ion battery. With the addition of on-going energy storage projects, China Carbon extends its expertise on carbon and

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Ambri Inks Agreement With TerraScale’s Energos Reno Project To Deploy Proprietary Liquid Metal Battery Technology

CULVER CITY, Calif. and MARLBOROUGH, Mass., Nov. 24, 2020 /PRNewswire/ — TerraScale, a clean infrastructure design and development firm committed to transforming and modernizing digital infrastructure, today announced that it has signed an agreement with Ambri, to deploy its proprietary Liquid Metal Battery technology. As part of the agreement, TerraScale and its data center development partners will integrate an Ambri energy storage system for its Energos Reno project. The project will include the development of a data center that will capitalize on the site’s renewable energy infrastructure. The reduced carbon operations are of strong interest to TerraScale’s data center future tenants including large commercial and government data users, as sustainable data center demands continue to rise.

Together with its partners, TerraScale’s Energos Reno Project intends to deploy green data center technologies that are based on proprietary, high-performance energy production and data computing processes. Energos Reno is a 3,700

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