The Energy Consumption of Semiconductor Manufacturing: A Major Challenge to the Green Transition
AD |
The Energy Consumption of Semiconductor Manufacturing: A Major Challenge to the Green TransitionThe booming semiconductor industry is consuming vast amounts of energy, posing a significant challenge to global green transition efforts. As reported by Spain's El Pas, the electricity demand for semiconductor manufacturing is continuously climbing, and meeting the surging demand for microprocessors could severely hinder the achievement of green transition goals
The Energy Consumption of Semiconductor Manufacturing: A Major Challenge to the Green Transition
The booming semiconductor industry is consuming vast amounts of energy, posing a significant challenge to global green transition efforts. As reported by Spain's El Pas, the electricity demand for semiconductor manufacturing is continuously climbing, and meeting the surging demand for microprocessors could severely hinder the achievement of green transition goals. This increasing energy consumption is not only evident across all stages of semiconductor manufacturing but is particularly concentrated in extreme ultraviolet lithography (EUV) machines, crucial for advanced chip production. These highly complex and precise machines, powering cutting-edge technologies like artificial intelligence and data centers, are significant energy consumers, veritable "energy hogs."
TechSpot, a US technology news website, points out that EUV lithography machines are essential for producing smaller, more powerful microchips, but their power consumption is staggering and projected to increase significantly in the coming years. Current-generation EUV machines consume up to 1170 kilowatts, while next-generation high-numerical-aperture EUV machines are expected to consume 1400 kilowatts. This escalating power consumption directly impacts the overall energy consumption of the global semiconductor industry.
TechInsights predicts that by 2030, the annual electricity consumption of global fabs equipped with EUV lithography machines could exceed 54,000 gigawatt-hours a figure surpassing the annual electricity consumption of countries like Singapore or Greece. This illustrates the massive energy footprint of semiconductor manufacturing and the immense pressure it places on the global energy system.
A decade ago, McKinsey, a US consulting firm, warned that a typical semiconductor manufacturing plant consumes as much electricity as approximately 50,000 households annually, exceeding even the combined energy consumption of automobile manufacturing plants and refineries. This warning is now becoming a stark reality, and the situation is increasingly dire.
Countries with a long history of semiconductor manufacturing are facing increasingly severe energy consumption problems. In South Korea, for example, tech giant Samsung Electronics operates six semiconductor manufacturing plants that consumed 3% of South Korea's total annual energy in 2021. To maintain its competitiveness in the global chip manufacturing market, Samsung plans to further expand its deployment of EUV lithography machines, which will pose an even greater challenge to South Korea's energy system, which remains heavily reliant on traditional fossil fuels like coal and natural gas. According to the Asian Development Bank, as of 2018, approximately 80% of South Korea's energy supply originated from fossil fuels.
In fact, the semiconductor chip manufacturing process demands enormous amounts of electricity and water, a necessity intrinsically linked to the extremely high precision and strict control requirements of the process. The World Economic Forum website notes that this heavy reliance on water is becoming a critical vulnerability for the rapidly growing global chip industry.
In the face of these growing energy and environmental challenges, researchers are actively exploring sustainable chip manufacturing technologies. These innovative approaches include harnessing light for information processing and exploring the potential of quantum states, aiming to significantly improve efficiency while drastically reducing energy consumption and environmental impact. For example, Canon plans to enter the lithography machine market currently dominated by ASML (ASML Holding N.V.) using nanoimprint lithography technology, intending to offer a more efficient and energy-saving alternative.
Other industry players, such as Intel, are also actively promoting the greening and sustainability of their operations. Intel's facilities in Arizona, New Mexico, and Oregon have convenient access to green energy, and data shows that Intel's renewable energy supply reached 80% in 2021. However, even companies like Intel, which are actively promoting sustainable development, cannot entirely escape the trend of continuously increasing energy consumption. Overall power consumption continues to rise significantly as manufacturing technology advances.
With the continued surge in demand for lithography machines, ASML will increase its EUV lithography machine shipments by 30% this year, which will undoubtedly further exacerbate energy consumption pressures. Masaro Wakasugi, an analyst at Bloomberg Intelligence, warns, "We must recognize the urgency of the current high energy consumption situation in the semiconductor industry and act immediately, otherwise we will bear the consequences 20 years from now." His warning highlights the need for the semiconductor industry to prioritize energy efficiency and sustainable development in its future development, otherwise it will face enormous environmental and economic risks. High energy consumption not only exacerbates climate change but also has immeasurable negative impacts on the industry's long-term development. Therefore, developing more energy-efficient manufacturing processes, exploring alternative energy sources, and optimizing energy use efficiency will all become unavoidable key issues in the future development of the semiconductor industry. Only by actively addressing this challenge can the sustainable development of the semiconductor industry be ensured and contribute to the global green transition. This requires the joint efforts of governments, businesses, and research institutions to establish stricter environmental standards, increase R&D investment, promote technological innovation, and jointly explore a sustainable development path that balances industrial development and environmental protection.
Disclaimer: The content of this article is sourced from the internet. The copyright of the text, images, and other materials belongs to the original author. The platform reprints the materials for the purpose of conveying more information. The content of the article is for reference and learning only, and should not be used for commercial purposes. If it infringes on your legitimate rights and interests, please contact us promptly and we will handle it as soon as possible! We respect copyright and are committed to protecting it. Thank you for sharing.(Email:[email protected])
Mobile advertising space rental |
Tag: The Energy Consumption of Semiconductor Manufacturing Major Challenge to
December 6, 2024: Top Ten News on China's Scientific and Technological Innovation and Industrial Development
NextThe Dark Side of "Buy Now, Pay Later": Hidden Charges, Consumer Traps, and a Crisis of Trust
Guess you like
-
Meta's Orion AR Glasses: Innovative External Computing Unit Design and the Lightweighting ChallengeDetail
2025-03-08 10:12:18 1
-
Microsoft Doubles Down on AI R&D, Developing Internal Reasoning Models to Challenge OpenAIDetail
2025-03-08 10:08:58 1
-
Didi's "Her D Power": A Tribute to Millions of Women Drivers, Illuminating Their Path to DreamsDetail
2025-03-07 11:46:16 1
-
China's Government Work Report First Mentions "AI+ Action": Kuaishou's Kuailing AI Leads Globally, Empowering Thousands of IndustriesDetail
2025-03-07 11:42:07 1
-
China Mobile's Open Gateway Solution Wins GSMA Global Mobile Award: Open Capabilities Drive 5G CommercializationDetail
2025-03-07 10:08:41 11
-
The China Banking and Insurance Regulatory Commission (CBIRC) Launches Pilot Program for M&A Loans to Tech Firms in 18 Cities to Support the Construction of a Strong Technological NationDetail
2025-03-06 10:35:01 21
-
Elon Musk's Attempt to Halt OpenAI's Commercialization Fails: Court Rejects Injunction Request, Legal Battle ContinuesDetail
2025-03-06 10:30:50 11
-
Huawei Cloud Barcelona Summit: AI-Native Strategy Accelerates Global Intelligent Transformation Across IndustriesDetail
2025-03-05 20:34:57 21
-
The 3,000P Supercomputing Center in Shijingshan District, Beijing, Launches, Ushering in a New Era of Intelligent Computing Power in North ChinaDetail
2025-03-05 20:34:07 11
-
Visionox Revolutionizes AMOLED Technology at MWC2025, Leading the Future of DisplaysDetail
2025-03-05 20:14:56 11
-
The Third Session of the Fourteenth National People's Congress (NPC): Mengniu's Seven Proposals to Foster a More Resilient Dairy Industry Chain and Ensure National Dairy SecurityDetail
2025-03-05 17:55:12 1
- Detail
-
The Booming Electric Vehicle Charging Pile Market: Government Policies and Corporate Innovation Drive Rapid GrowthDetail
2025-03-05 11:11:50 1
-
Huawei at MWC25 Barcelona: Accelerating the Intelligent World and Leading Industry Digital TransformationDetail
2025-03-04 13:47:08 11
-
HarmonyOS NEXT Empowers Major Updates to Hongmeng Zhixing and AITO Apps, Delivering a New Smart Travel ExperienceDetail
2025-03-04 11:45:45 21
-
Starkey Meizu's AI-Powered Ecosystem Shines at MWC2025, Accelerating Global ExpansionDetail
2025-03-04 11:25:18 31
-
Geely and Qianli Technology Usher in the "AI+Auto" Era: The Launch of the Qianli Haohan Intelligent Driving System Marks a New Stage in the Popularization of Advanced Intelligent Driving TechnologyDetail
2025-03-04 11:19:28 1
- Detail
-
360 and Huawei Deepen Collaboration: Ascend Cloud Empowers Nano AI, Forging a Self-Reliant Chinese AI EcosystemDetail
2025-03-04 08:58:30 1
-
Huawei's HarmonyOS Native Ecosystem: Thriving and Shaping the Future of Smart LivingDetail
2025-03-03 18:25:28 21