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Global Wide-Bandgap Power (WBG) Semiconductor Devices Research Business Report 2024-2030: Rising Adoption of Power Supplies and UPS Systems in Data Centers to Fuel Demand

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DUBLIN, Feb. 23, 2024 /PRNewswire/ — The “Wide-Bandgap Power (WBG) Semiconductor Devices – Global Strategic Business Report” report has been added to  ResearchAndMarkets.com’s offering.

Global Wide-Bandgap Power (WBG) Semiconductor Devices Market to Reach $10.9 Billion by 2030

The global market for Wide-Bandgap Power (WBG) Semiconductor Devices estimated at US$1.4 Billion in the year 2022, is projected to reach a revised size of US$10.9 Billion by 2030, growing at a CAGR of 29.4% over the analysis period 2022-2030. Silicon Carbide (SiC), one of the segments analyzed in the report, is projected to record a 29.4% CAGR and reach US$6.3 Billion by the end of the analysis period. Growth in the Gallium Nitride (gan) segment is estimated at 31.4% CAGR for the next 8-year period.

The global semiconductor industry is experiencing a paradigm shift with the emergence of wide-bandgap (WBG) semiconductors, poised to surpass silicon and become fundamental to various sectors such as power, lighting, RF, and optoelectronics. However, the sector faced challenges due to the COVID-19 pandemic, highlighting risks associated with value chain modularity. Despite this, wide-bandgap materials are gaining traction, driven by their superior properties and diverse applications.

WBG semiconductor devices represent a new frontier in power electronics, leveraging materials like silicon carbide (SiC) and gallium nitride (GaN). These materials offer significant advantages over traditional silicon, including higher efficiency, faster switching speeds, and improved thermal performance. As a result, they find applications in power converters, electric vehicles, renewable energy systems, and more.

In terms of market outlook, developed regions lead the adoption of WBG semiconductor devices, driven by advanced research infrastructure and robust demand from industries like automotive and telecommunications. However, developing economies are expected to spearhead future growth, propelled by increasing investments in infrastructure and a growing emphasis on energy efficiency and sustainability.

Competition in the WBG semiconductor market is intense, with strong, active players worldwide vying for market share. Recent market activity indicates a flurry of developments, including strategic partnerships, product launches, and investments in research and development. As the industry continues to evolve, WBG semiconductors are poised to play a pivotal role in shaping the future of electronics and powering the transition towards a more efficient and sustainable world.

The U.S. Market is Estimated at $405.6 Million, While China is Forecast to Grow at 38.9% CAGR

The Wide-Bandgap Power (WBG) Semiconductor Devices market in the U.S. is estimated at US$405.6 Million in the year 2022. China, the world’s second largest economy, is forecast to reach a projected market size of US$3.2 Billion by the year 2030 trailing a CAGR of 38.9% over the analysis period 2022 to 2030. Among the other noteworthy geographic markets are Japan and Canada, each forecast to grow at 21% and 25.4% respectively over the 2022-2030 period. Within Europe, Germany is forecast to grow at approximately 24.8% CAGR.

MARKET TRENDS & DRIVERS

Wide-Bandgap Devices: A Workhorse for Diverse Spectrum of ApplicationsPromising Outlook for Wide Bandgap Devices from Automotive IndustryGrowing Demand for EVs and HEVs to Drive Market GainsGrowing Vehicle Electrification Expands the Opportunity for the MarketRising Adoption of Power Supplies and UPS Systems in Data Centers to Fuel Need for WBG Semiconductor DevicesShift towards Renewable Energy Sources to Propel MarketTargets for Electricity Production from Renewable Energy Sources in Select CountriesWide-Bandgap Semiconductors to Supercharge Renewable Energy RevolutionIncreasing Use of PV Inverters in Solar Power Plants Augurs Well for the MarketRapid Industrialization Spurs Demand for Industrial Motor Drives, Stimulating Market GrowthSignificance of WBG Power Semiconductor Devices in Railway Traction SystemsWBG Semiconductors Enhance Efficiency of Power DevicesApplications of GaN & SiCWide-Bandgap Semiconductor Devices: Powering the Power Converter EcosystemPower Semiconductors Built on GaN & SiCWBG Semiconductors Expand Power Efficiency Horizons for Consumer SectorCeramic to Push Wide-Bandgap Device Performance for New ApplicationsGrowing Focus on Power Electronics Drives Uptake of SiCRising Demand for Wide-Bandgap Materials Bodes WellTechnology Advancements in Wide Bandgap Semiconductor Devices to Shape Future Growth TrendsNew Material Technologies, SiC and GaN, to Shape the Future of Power ElectronicsDesign Engineers Race to Characterize Wide-Bandgap SemiconductorsChallenges Confronting WBG Power Semiconductor Devices MarketThermal Metrology Challenges with WBG Devices

FOCUS ON SELECT PLAYERS (Total 49 Featured)

ExaganGaN Systems, Inc.GeneSiC Semiconductor, Inc.Microsemi CorporationMonolith SemiconductorQorvo, Inc.STMicroelectronics NVTexas Instruments, Inc.United Silicon Carbide, Inc.

For more information about this report visit https://www.researchandmarkets.com/r/a882u9

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Elvis Birthday Celebration tour kicks off at the Miniaci Performing Arts Center January 5th

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This January 8th would have been the King’s Birthday. Gone but never forgotten, his image, music, films and memories live on as a testament to his true effect and influence on his generation and future generations to come. Keeping the memory alive at countless venues throughout the country, Chris MacDonald lovingly shares the magic of the “King of Rock-n-Roll” with his full production tribute Memories of Elvis Rockin Birthday Bash

FORT LAUDERDALE, Fla., Dec. 26, 2024 /PRNewswire-PRWeb/ — Elvis Presley Birthday Celebration Florida Tour kicks off at the Miniaci Performing Arts Center at Nova Southeastern University Davie Campus on January 5th with Chris MacDonald’s Memories of Elvis Rockin Birthday Bash, a multi-media full production tribute celebrating the life and music of the King of Rock-n-Roll.

“Adding to the authenticity of his tribute, Chris has the honor of being the only tribute artist hired by Elvis Presley Enterprises to perform at Graceland’s Heartbreak Hotel.”

This January 8th would have been the King’s Birthday. Gone but never forgotten, his image, music, films and memories live on as a testament to his true effect and influence on his generation and future generations to come. The original American Rock-n-Roll Idol who influenced the Beatles, The Rolling Stones and anyone that has ever picked up a guitar or a microphone since, continues to engage our love affair with his all American story of a shy poor and humble country boy that became the King of Rock-n-Roll. Elvis Presley, recognized by TIME magazine as the “Artist of the 20th Century,” has sold more records than any other artist or group in the history of modern music. Even after death, his image and music continue to be loved and celebrated throughout the world. With the critically acclaimed big screen biopic “Elvis” by director Baz Luhrmann starring Austin Butler as Elvis and Tom Hanks as Colonel Tom Parker, Elvis’s music and charisma are once again in the spotlight for a whole new generation and there’s no sign of the King leaving the building of Rock-n-Roll icon status.

Keeping the memory alive at countless venues throughout the country, Chris MacDonald lovingly shares the magic of the “King of Rock-n-Roll” with his full production tribute Memories of Elvis. Chris’s show is not an overdone impersonation. It is a natural heartfelt tribute to a legendary performer and music icon. With his dynamic production band, Chris MacDonald draws his audience in with the look, sounds, and nuances that made Elvis the King of Rock-n- Roll!

Adding to the authenticity of his tribute, Chris MacDonald has the honor of being the only tribute artist hired by Elvis Presley Enterprises to perform at Graceland’s Heartbreak Hotel. An energetic and experienced entertainer, MacDonald has also starred in the famous “Legends in Concert” stage productions and has performed in Branson, MO, and Las Vegas, NV. Chris has also performed in Concert with Elvis Presley’s original back up group The Jordanaires and D.J. Fontana Elvis original drummer “The Beat Behind The King” at the famous Seminole Hard Rock Live Concert Venue in Hollywood Florida and other venues throughout the country.

With this newly updated production, the show will include costume changes and songs representing the different stages of Elvis’s incredible career including the 1950′s, the Movies, the 1968 Comeback and the 1970′s White Fringe Vegas Concerts. It’s all a part of this fun loving tribute to one of the greatest entertainers of all time.

Get “All shook up” and celebrate the life and music of the King of Rock-n-Roll with Chris MacDonald’s Memories of Elvis Rockin Birthday Bash.

Florida Tour Dates:

January 5, 2025 2pm (Sunday)

Rose and Alfred Miniaci Performing Arts Center

Nova Southeastern University

3100 Ray Ferrero Junior Boulevard,

Davie, FL 33314

Box Office: 954-462-0222

https://www.miniacipac.com/events/detail/chris-macdonalds-memories-of-elvis-rockin-birthday-bash-2025

 

January 16, 2025 7:30 pm (Thursday)

Barbara B Mann Performing Arts Hall

Southwestern State College

13350 FSW Parkway, Fort Myers, FL 33919

Box Office: 800-440-7469 • 239-481-4849

https://www.bbmannpah.com/events/detail/chris-macdonalds-memories-of-elvis-2025-fort-myers

 

January 18, 2025 7:30 pm (Saturday)

Sunrise Theatre

117 S 2nd Street, Fort Pierce, FL 34950

Box office: 772-461-4775

https://www.sunrisetheatre.com/shows/memories-of-elvis-rockin-birthday-bash/

Media Contact

Donna Oz, CME Inc, 1 954341-6005, info@chrismacdonaldselvis.com, https://www.elvispresleystory.com/

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SOURCE CME Inc; CME Inc

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VIVOTEK Wins Double Honors for Its Commitment to Sustainability

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TAIPEI, Dec. 26, 2024 /PRNewswire/ — VIVOTEK (3454-TW), the global leading security solution provider, has once again demonstrated its outstanding commitment to sustainability. Participating for the first time in the 17th Taiwan Corporate Sustainability Awards (TCSA), VIVOTEK emerged victorious, earning the Sustainability Report Award for the Information, Communication, and Broadcasting Industry and the Taiwan Corporate Sustainability Excellence Award. These recognitions showcase VIVOTEK’s remarkable success in corporate governance, environmental protection, and social responsibility, affirming its dedication to sustainable growth.

Pioneering Sustainability with Dual Recognition

“For over seven years, VIVOTEK has independently published sustainability reports, actively driving and disclosing our internal sustainability initiatives.” said Allen Hsieh, VIVOTEK’s Spokesperson and Director of the Global Marketing Division. “These awards not only recognize our integrity and efforts in presenting operational performance, environmental data, and social impact but also serve as a strong motivation for us to continue advancing on the path of sustainable development.”

Driving Sustainability through AI Innovation

VIVOTEK delivers advanced AI-powered security solutions built on cutting-edge AI and edge computing technologies. Beyond innovation, the company drives green initiatives, reduces its carbon footprint, and fosters a sustainable, supportive workplace.

Committed to social responsibility, VIVOTEK leads the security industry’s sustainability efforts through its ‘Safety Map’ initiative. For four years, employees have formed security teams to enhance safety in neighborhoods, care centers, and schools with on-site assessments and improvement plans.

In 2024, VIVOTEK will expand its efforts to Hualien’s Dacheng Village, where it will help improve local safety environments and support cultural preservation and tourism revitalization. These actions reflect its dedication to sustainability, community well-being, and lasting societal contributions.

Security Sustainability as a Foundation for Social Impact

VIVOTEK proudly received two prestigious honors at the Taiwan Corporate Sustainability Awards, highlighting its dedication to sustainable practices. These accolades inspire the company to deepen its internal efforts and mark the start of an exciting new chapter.

Building on this achievement, VIVOTEK aims to strengthen its mission of becoming the world’s most trusted smart security brand. By aligning with global market needs and fostering collaboration with customers, partners, and employees, VIVOTEK is committed to shaping a sustainable future founded on mutual trust and shared success.

To learn more about VIVOTEK’s sustainability initiatives, please refer to the 2023 Sustainability Report.

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SOURCE VIVOTEK Inc.

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WiMi Develops a Quantum Technology-Based Random Access Memory Architecture

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BEIJING, Dec. 26, 2024 /PRNewswire/ — WiMi Hologram Cloud Inc. (NASDAQ: WiMi) (“WiMi” or the “Company”), a leading global Hologram Augmented Reality (“AR”) Technology provider, today announced the development of a Quantum Technology-Based Random Access Memory Architecture, known as QRAM. This architecture successfully implements fundamental logical operations such as AND, OR, NOT, and NOR gates in quantum logic gates by combining key basic operations in quantum computing, such as the CNOT gate, V gate, and V+ gate. Quantum Random Access Memory (QRAM) is a memory architecture specifically designed for quantum computing environments, with the core goal of enabling efficient reading and writing of information while maintaining the state of the quantum system. The design of QRAM is not only intended to leverage the parallel processing capabilities of quantum computing but also to utilize quantum properties such as superposition and entanglement to significantly enhance computational efficiency.

In WiMi’s QRAM architecture, the quantum CNOT gate, V gate, and V+ gate serve as the fundamental operation units. Each quantum operation is equivalent to certain logical operations in classical computing, but simultaneously leverages the properties of quantum states to achieve efficient computation.

CNOT Gate (Controlled-NOT Gate): The CNOT gate is a crucial operation in quantum computing, used to control the relationship between two quantum bits (qubits). In classical computing, this is similar to the function of an XOR gate, but in the quantum environment, it allows qubits to exist in a superposition of states, enabling the simultaneous processing of multiple states.

V Gate and V+ Gate: The V gate and V+ gate are quantum gates used to implement more complex logic. The operations of these two gates are similar to the AND and OR gates in classical computing. However, their advantage lies in the ability to process multiple potential outcomes in the quantum system simultaneously, without the need to evaluate each possibility separately.

By combining these fundamental quantum gates, basic operations in quantum logic such as AND, OR, NOT, and NOR can be successfully implemented. This provides the necessary support for designing complex quantum circuits, while being more flexible and efficient compared to classical logic gates.

One of the major advantages of the QRAM architecture is its full utilization of the properties of quantum superposition and quantum entanglement. In classical computing, memory read and write operations are linear and must be performed sequentially. However, in quantum computing, because qubits can exist in multiple states (superposition), parallel read and write operations can be performed simultaneously. This ability significantly enhances computational efficiency, especially when handling large-scale datasets or complex computational tasks.

Additionally, quantum entanglement enables the correlation between multiple qubits without the need for direct communication, further improving the speed of data transfer and computation. Memory operations with entangled qubits are much faster and more efficient than traditional memory operations, opening up new possibilities for parallel computing.

In WiMi’s QRAM architecture, the entire design logic includes several key steps and technical nodes, such as quantum state-based random access, the introduction of quantum error correction mechanisms, and seamless integration with quantum computers.

The core feature of QRAM is its ability to perform random access within a quantum system. Traditional computer RAM achieves reading and writing to memory units through address buses, data buses, and other components, whereas QRAM accomplishes this process through the states of quantum bits (qubits). By utilizing quantum superposition, multiple addresses can be accessed simultaneously in a single operation. This means that in a QRAM system, data can be accessed in parallel across multiple addresses, greatly improving the efficiency of data operations.

To achieve this, WiMi has designed a system based on CNOT gates, V gates, and V+ gates. These quantum gates allow flexible control over memory access processes while maintaining the quantum state of the system and ensuring the efficient transmission of qubits in an entangled state. Through this system, QRAM not only enables high-speed data reading and writing, but also ensures the reliability and accuracy of information processing.

Furthermore, error correction is crucial in any quantum computing system. Due to the fragile nature of qubit states, even small external disturbances can cause computational errors. Therefore, WiMi’s QRAM architecture incorporates a quantum error correction mechanism to ensure that the qubit states are accurately preserved and transmitted during data reading and writing. This includes an error correction method based on quantum entanglement, where redundant entangled qubits are introduced to detect and correct potential errors. This method not only effectively reduces the impact of external noise on the system but also ensures the stability of data during multiple read operations.

WiMi’s QRAM design is intended to seamlessly integrate with quantum computers. Since quantum computing operations depend on the superposition and entanglement states of qubits, the QRAM system demonstrates high compatibility when interfacing with a quantum processing unit (QPU). The design ensures smooth transmission of qubits between memory and processor during data access, thereby significantly improving computational efficiency.

By utilizing the V gate, V+ gate, and CNOT gate, WiMi’s QRAM system can quickly execute quantum logic operations and, when handling complex computational tasks, can read and write data at near-real-time speeds. This makes QRAM a key component in large-scale quantum computing applications.

The successful development of QRAM technology has had a revolutionary impact across multiple fields. As a critical component of quantum computers, QRAM will significantly enhance the overall performance of quantum computing systems. Its efficient parallel data access capabilities make it especially well-suited for handling large-scale computational tasks such as molecular simulations, climate modeling, and complex optimization problems. By significantly reducing computation time, QRAM will play an indispensable role in the future of high-performance quantum computing.

Another important application of QRAM is in quantum communication and quantum encryption. By leveraging quantum entanglement, QRAM can enable high-speed data transmission while ensuring data security. The non-locality of quantum entanglement guarantees that data cannot be intercepted during transmission, providing a solid foundation for future quantum encryption technologies.

With the development of quantum computing, the field of quantum machine learning has also gradually emerged. QRAM’s efficient data access capabilities make it highly suitable for handling large-scale datasets, enabling model training to be completed in a shorter time. This will significantly advance the development of quantum artificial intelligence, allowing complex machine learning tasks to be solved quickly on quantum computers.

As quantum technology continues to evolve, QRAM, as a core technology, will provide crucial support for the future of quantum computing. WiMi is committed to continuing the development of QRAM technology, continually optimizing its performance, reducing implementation costs, and expanding its applications across various industries.

The successful development of QRAM technology marks an important step in the advancement of quantum computing. As quantum computers progress and quantum technologies mature, QRAM will become an indispensable core component of quantum computing systems. With the ongoing optimization and promotion of this technology, QRAM is expected to bring disruptive innovations across multiple fields and lay a solid foundation for the arrival of the quantum era.

About WiMi Hologram Cloud

WiMi Hologram Cloud, Inc. (NASDAQ:WiMi) is a holographic cloud comprehensive technical solution provider that focuses on professional areas including holographic AR automotive HUD software, 3D holographic pulse LiDAR, head-mounted light field holographic equipment, holographic semiconductor, holographic cloud software, holographic car navigation and others. Its services and holographic AR technologies include holographic AR automotive application, 3D holographic pulse LiDAR technology, holographic vision semiconductor technology, holographic software development, holographic AR advertising technology, holographic AR entertainment technology, holographic ARSDK payment, interactive holographic communication and other holographic AR technologies.

Safe Harbor Statements

This press release contains “forward-looking statements” within the Private Securities Litigation Reform Act of 1995. These forward-looking statements can be identified by terminology such as “will,” “expects,” “anticipates,” “future,” “intends,” “plans,” “believes,” “estimates,” and similar statements. Statements that are not historical facts, including statements about the Company’s beliefs and expectations, are forward-looking statements. Among other things, the business outlook and quotations from management in this press release and the Company’s strategic and operational plans contain forward−looking statements. The Company may also make written or oral forward−looking statements in its periodic reports to the US Securities and Exchange Commission (“SEC”) on Forms 20−F and 6−K, in its annual report to shareholders, in press releases, and other written materials, and in oral statements made by its officers, directors or employees to third parties. Forward-looking statements involve inherent risks and uncertainties. Several factors could cause actual results to differ materially from those contained in any forward−looking statement, including but not limited to the following: the Company’s goals and strategies; the Company’s future business development, financial condition, and results of operations; the expected growth of the AR holographic industry; and the Company’s expectations regarding demand for and market acceptance of its products and services.

Further information regarding these and other risks is included in the Company’s annual report on Form 20-F and the current report on Form 6-K and other documents filed with the SEC. All information provided in this press release is as of the date of this press release. The Company does not undertake any obligation to update any forward-looking statement except as required under applicable laws.

 

 

 

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SOURCE WiMi Hologram Cloud Inc.

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