Global Gallium Nitride Gan Powered Chargers Market
市场规模(十亿美元)
CAGR : %
Forecast Period |
2023 –2030 |
Market Size (Base Year) |
USD 690.40 Million |
Market Size (Forecast Year) |
USD 841.00 Million |
CAGR |
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Major Markets Players |
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>全球氮化镓 (GaN) 充电器市场,按功率输出(25W GaN 充电器、30W GaN 充电器、45W GaN 充电器、60W GaN 充电器、65W GaN 充电器、90W GaN 充电器、100W GaN 充电器)、应用(智能手机和平板电脑、笔记本电脑、自主机器人、工业设备和无线充电)、最终用户(消费电子、IT 和电信、汽车、航空航天和国防等)划分 - 行业趋势和预测到 2030 年。
氮化镓 (GaN) 充电器市场分析和规模
过去几年来,全球氮化镓 (GaN) 充电器市场一直保持稳定增长。消费电子、汽车、航空航天、军事和国防工业的扩张是全球市场增长的主要原因。新型 GaN 应用的出现、射频功率电子器件利用率的提高以及高击穿电压和低能耗等突出特性是推动全球市场增长的关键因素。
Data Bridge Market Research 分析称,2022 年全球氮化镓 (GaN) 供电充电器市场价值为 6.904 亿美元,预计到 2030 年将达到 8.41 亿美元,在 2023-2030 年的预测期内复合年增长率为 5.2%。除了市场价值、增长率、细分市场、地理覆盖范围、市场参与者和市场情景等市场洞察外,Data Bridge Market Research 团队策划的市场报告还包括深入的专家分析、进出口分析、定价分析、生产消费分析和 pestle 分析。
氮化镓 (GaN) 供电充电器市场范围和细分
报告指标 |
细节 |
预测期 |
2023 至 2030 年 |
基准年 |
2022 |
历史岁月 |
2021 (可定制为 2015-2020) |
定量单位 |
收入(百万美元)、销量(单位)、定价(美元) |
涵盖的领域 |
功率输出(25W GaN 充电器、30W GaN 充电器、45W GaN 充电器、60W GaN 充电器、65W GaN 充电器、90W GaN 充电器、100W GaN 充电器)、应用(智能手机 和平板电脑、笔记本电脑、自主机器人、工业设备和无线充电)、最终用户(消费电子、IT 和电信、汽车、航空航天和国防等) |
覆盖国家 |
美国、加拿大、墨西哥、巴西、阿根廷、南美洲其他地区、德国、意大利、英国、法国、西班牙、荷兰、比利时、瑞士、土耳其、俄罗斯、欧洲其他地区、日本、中国、印度、韩国、澳大利亚、新加坡、马来西亚、泰国、印度尼西亚、菲律宾、亚太其他地区、沙特阿拉伯、阿联酋、南非、埃及、以色列、中东和非洲其他地区 |
涵盖的市场参与者 |
Fujitsu (Japan), Toshiba Corporation (Japan), Texas Instruments Incorporated (U.S.), Cree LED (U.S.), Aixtron (Germany), Mitsubishi Chemical Corporation (Japan), Eaton (Ireland), Siemens (Germany), Belkin International, Inc (U.S.), Aukey (China), Gizmochina (China), VisIC Technologies (Israel), Koninklijke Philips N.V. (Netherlands), VINA International Holdings LTD. (U.S.), GaN Systems Inc. (Canada), Epigan NV (Belgium) and Navitas Semiconductor Ltd. (U.S.) |
Market Opportunities |
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Market Definition
GaN (Gallium Nitride) phone chargers, also known as GaN-based chargers or GaN power adapters, are compact and high-performance charging devices specifically designed for charging smartphones and other electronic devices. They utilize Gallium Nitride semiconductor technology, which offers several advantages over traditional silicon-based chargers. Gallium nitride, or GaN, is a material that is beginning to be used in charger semiconductors. But now it has been used in the manufacture of LEDs since the 1990s, and is also a popular material for solar cell arrays on satellites. The most important feature of GaN in chargers is that it produces less heat.
Global Gallium Nitride (GaN) Powered Chargers Market Dynamics
Drivers
- Burgeoning Demand for Gallium Nitride (GaN) Powered Chargers
The demand for quick charging solutions that generate less heat and reduce the likelihood of overcharging is what drives the market for GaN-powered chargers. The increased usage of modern chargers, which include monitoring systems across various end-use industries, is expected to fuel the market for GaN-powered chargers. The demand for fast charging while preserving all power capabilities and safety regulations for the telecommunications sectors has been driving industry expansion.
Furthermore, the integration of the technologies including Internet of Things (IoT), machine learning, artificial intelligence (AI) and others is further estimated to accelerate the overall market expansion during the forecast period. Additionally, the high demand for these chargers across the verticals is also anticipated to drive the market's growth rate. The surge in demand for energy-efficient and fast charging devices will further positively impact the market's growth rate during the forecast period.
Opportunities
- Development of Micro GaN-Powered Chargers
The development of micro GaN-powered chargers that can be incorporated with compact electronics devices is estimated to generate lucrative opportunities for the market, which will further expand the gallium nitride (GaN) powered chargers market's growth rate during the forecast period of 2023-2030. In addition, industry participants are concentrating on research and development operations to advance GaN technology and launch more effective products. To keep or grow their market share in the worldwide market, makers of consumer electronics products are signing long-term contracts with producers of GaN-powered chargers.
- Shift In Emphasis from Si to GaN
The shift in emphasis from Si to GaN due to the improvement in electronic device operating frequency and decrease in component charging time, weight, and cost further offers numerous growth opportunities within the market. The GaN-powered chargers have a broadband gap, high switching frequencies and are relatively small.
Restraints/Challenges
- Prevalence of Local Brands
The low-quality GaN-powered chargers are produced in large quantities due to the prevalence of local brands and the lack of manufacturing norms or regulations. Consequently, the global market for GaN-powered chargers is projected to experience slow growth as a result of this reason over the forecast period of 2023 to 2030.
- Lack of Uniformity and Standards
A significant obstacle is the lack of uniformity in the technology and parts used to produce GaN-powered chargers. GaN-powered charger market expansion is anticipated to be hampered by the lack of clear standards in the marketplace, which result in considerable product and price differentiation which is estimated to be significant challenge for the global gallium nitride (GaN) powered chargers market over the forecast period of 2023 to 2030.
This global gallium nitride (GaN) powered chargers market report provides details of new recent developments, trade regulations, import-export analysis, production analysis, value chain optimization, market share, impact of domestic and localized market players, analyses opportunities in terms of emerging revenue pockets, changes in market regulations, strategic market growth analysis, market size, category market growths, application niches and dominance, product approvals, product launches, geographic expansions, technological innovations in the market. To gain more info on the global gallium nitride (GaN) powered chargers market contact Data Bridge Market Research for an Analyst Brief, our team will help you take an informed market decision to achieve market growth.
Recent Developments
- In January 2021, Dell and Navitas Semiconductor partnered to develop innovative charging technologies based on GaN. Both businesses have joined together to create fresh applications for gallium nitride (GaN)
- 2020 年 9 月,三星电子与 Verizon 签订合同,成为其在美国的首家客户,以扩大室内覆盖范围。目前的快速充电标准是 Verizon 提供的基于 GaN 的壁式充电器。基于 GaN 的壁式充电器比其他类型的传统充电器要紧凑得多
- 2020 年 11 月,Baseus 推出全新氮化镓 (GaN) 系列 120W 充电头,输出功率为 45W、65W 和 120W。该公司在充电业务方面处于领先地位,最近推出了首款 65W 三端口快速充电插头。高达 100W 20V/5A 的笔记本电脑充电是全新 120W 氮化镓 (GaN) 系列的主要用途。此外,它还支持 MacBook、戴尔、惠普、联想等。它可以同时快速为两台笔记本电脑充电
- 2020 年 11 月,GaN Systems 推出了 100V 驱动器 GaN DC/DC 功率级模块、650V 150A 半桥 IPM、650V 150A 全桥模块和驱动器以及 650V 300A 三相模块和驱动器等 GaN 功率模块评估套件,扩大了电源市场的规模。GaN 模块具有更高的系统性能,并符合行业尺寸标准
全球氮化镓 (GaN) 充电器市场范围
全球氮化镓 (GaN) 充电器市场根据功率输出、应用和最终用户进行细分。这些细分市场之间的增长将帮助您分析行业中增长微弱的细分市场,并为用户提供有价值的市场概览和市场洞察,帮助他们做出战略决策,确定核心市场应用。
功率输出
- 25W GaN充电器
- 30W GaN充电器
- 45W GaN充电器
- 60W GaN充电器
- 65W GaN充电器
- 90W GaN充电器
- 100W GaN充电器
应用
最终用户
- 消费电子产品
- 信息技术和电信
- 汽车
- 航空航天和国防
- 其他的
全球氮化镓 (GaN) 供电充电器市场区域分析/洞察
对全球氮化镓 (GaN) 供电充电器市场进行了分析,并按地区、功率输出、应用和最终用户提供了市场规模洞察和趋势。
全球氮化镓 (GaN) 充电器市场报告涵盖的国家包括美国、加拿大、墨西哥、巴西、阿根廷、南美洲其他地区、德国、意大利、英国、法国、西班牙、荷兰、比利时、瑞士、土耳其、俄罗斯、欧洲其他地区、日本、中国、印度、韩国、澳大利亚、新加坡、马来西亚、泰国、印度尼西亚、菲律宾、亚太其他地区、沙特阿拉伯、阿联酋、南非、埃及、以色列、中东和非洲其他地区
亚太地区在全球氮化镓 (GaN) 充电器市场占据主导地位,因为在 2023 年至 2030 年的预测期内,该地区消费电子和汽车行业对 LED 的需求很高。此外,电动汽车的广泛采用加上半导体行业的快速发展,预计在预测期内将进一步加速扩张。
由于中国和日本等主要国家经济增长加快,亚太地区将实现最高复合年增长率,并将成为 2023 年至 2030 年期间全球氮化镓 (GaN) 供电充电器市场增长最快的地区。
报告的区域部分还提供了影响市场当前和未来趋势的各个市场影响因素和国内市场监管变化。下游和上游价值链分析、技术趋势和波特五力分析、案例研究等数据点是用于预测各个国家市场情景的一些指标。此外,在提供区域数据的预测分析时,还考虑了全球品牌的存在和可用性以及由于来自本地和国内品牌的大量或稀缺竞争而面临的挑战、国内关税的影响和贸易路线。
竞争格局和全球氮化镓 (GaN) 充电器市场份额分析
全球氮化镓 (GaN) 供电充电器市场竞争格局提供了竞争对手的详细信息。详细信息包括公司概况、公司财务状况、收入、市场潜力、研发投资、新市场计划、全球影响力、生产基地和设施、生产能力、公司优势和劣势、产品发布、产品宽度和广度以及应用主导地位。以上提供的数据点仅与公司对全球氮化镓 (GaN) 供电充电器市场的关注有关。
全球氮化镓 (GaN) 供电充电器市场的一些主要参与者包括:
- 富士通(日本)
- 东芝公司(日本)
- 德州仪器公司(美国)
- Cree LED(美国)
- 爱思强(德国)
- 三菱化学公司(日本)
- 伊顿(爱尔兰)
- 西门子(德国)
- Belkin International, Inc(美国)
- Aukey(中国)
- Gizmochina(中国)
- VisIC Technologies(以色列)
- Koninklijke Philips NV(荷兰)
- VINA 国际控股有限公司(美国)
- GaN Systems Inc.(加拿大)
- Epigan NV(比利时)
- 纳维半导体有限公司(美国)
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研究方法
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