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市场调查报告书
商品编码
1308716
2030 年计算机微芯片市场预测 - 按类型、应用和地区划分的全球分析Computer Microchips Market Forecasts to 2030 - Global Analysis By Type (Memory Chips, Logic Chips and Other Types), Application and By Geography |
根据 Stratistics MRC 的数据,2023 年全球计算机微芯片市场规模将达到 268 亿美元,预计 2030 年将达到 616 亿美元,复合年增长率为 12.6%。
计算机芯片也称为集成电路、芯片、半导体材料的微型晶圆。 现代数字计算机的处理器和内存组件都是芯片。 随着技术的进步,纳米技术有望使晶体管变得更小,电路的功能也相应变得更强大。 计算机微芯片上的数百万个晶体管充当开关,电阻器调节它们之间的电流,电容器存储和释放电力,二极管阻止能量流动。 微芯片消除了对单独部件的需求并减小了计算机的尺寸。 集成电路可以以更低的成本包含更多的元件。
行业中增长最快的领域之一是创新。 手机製造商在其产品中广泛使用这些半导体芯片,其强劲的销售继续给芯片製造商带来巨大的压力,要求他们提供高质量的零部件。 这促使製造商开发创新产品,试图赢得这些高科技巨头的供应合同。 另一个可能刺激行业扩张的因素是,由于对小型轻量电子产品的需求不断增长,电子元件日益小型化。
个人电脑需求下降是全球计算机微芯片市场增长的主要障碍之一。 智能手机和平板电脑更便携、更易于使用,因此个人电脑市场正在萎缩。 结果,个人电脑对微芯片的需求正在下降。 然而,也存在一些必须克服的预期挑战,这些挑战可能会阻碍市场的增长。
全球对计算机微芯片的需求正在迅速增长。 这背后有多种因素,例如对处理能力的需求不断增长、微芯片价格的下降以及微芯片应用范围的扩大等。 物联网(IoT)、人工智能、大数据等导致对处理能力的需求不断增加。 微芯片是运行这些技术所需的日益强大的计算机的关键组件。
COVID-19疫情对计算机微芯片市场产生了显着的负面影响。 根据来自价值链各个环节(包括原始设备製造商、供应商、集成商、最终用户和分销商)的众多行业专家的意见,以及计算机微芯片生态系统中各个公司的财务披露,市场被认为已经萎缩。 。 全球供应链也因疫情爆发而中断,系统出现巨大真空。 这一流行病的破坏性经济影响正在显现。
由于健康监测,内存芯片领域预计将出现良好的增长。 新一波的微芯片应用以及打击盗窃和欺诈的能力将这些好处结合在一起。 计算机芯片,称为微芯片,是现代计算的基石。 数以百万计的晶体管安装在微小的硅晶圆上来处理和存储数据。 微芯片的尺寸、复杂性和功率各不相同,但它们都用于实现比人类更快、更准确、更高效地执行任务的技术。
在预测期内,汽车行业预计将以最快的复合年增长率增长。 这个市场包括汽车、卡车和公共汽车。 半导体是一种控制电子流动的电路,也是现代电子产品的大脑。 对于这个市场,半导体行业提供了广泛的产品,包括传感器、微控制器和用于电源管理的集成电路。
由于新兴国家对个人电脑、智能手机和平板设备等电子产品的需求不断增长,预计亚太地区将在预测期内占据最大的市场份额。 微芯片在中国有着巨大的机遇,原材料廉价,产能巨大。 由于快速的技术进步和高资本投资,预计中国市场将显着增长。
由于小型和智能设备的日益普及,预计欧洲在预测期内将出现最高的复合年增长率。 消费电子设备消费的不断增长以及对手持式微计算机处理器的需求不断增长是该行业快速扩张的原因。 此外,物联网和自动化流程的发展需要高性能和紧凑的微芯片,这有望推动市场需求。
2021 年 12 月,三星和 IBM 联合宣布利用新型垂直晶体管架构在半导体设计方面取得突破,为超越纳米片的扩展指明了道路。
According to Stratistics MRC, the Global Computer Microchips Market is accounted for $26.8 billion in 2023 and is expected to reach $61.6 billion by 2030 growing at a CAGR of 12.6% during the forecast period. A computer chip may also be referred to as an integrated circuit, a chip, or a tiny wafer of semiconductor material. The processor and memory components of a modern digital computer are chips. As technology develops, transistors are anticipated to become even tiny thanks to nanotechnology, and circuits to become proportionally more powerful. Millions of transistors on a computer microchip operate as on-and-off switches, while resistors regulate the electricity currents that travel back and forth between the transistors, capacitors store and release electricity, and diodes halt the flow of energy. Microchips make it unnecessary to segregate a component, which reduces the size of computers. An integrated circuit can accommodate more components for a lower price.
One of the industries' most promising areas for growth is innovation. Mobile phone manufacturers use a lot of these semiconductor chips in their products, and because of their strong sales, these companies continue to put active pressure on chip manufacturers to supply them with high-quality components. This encourages various manufacturers to come up with innovative products in an effort to land supply deals with such tech giants. Another element that may spur industry expansion is the ongoing reduction in the size of electronic components due to the rise in demand for small and light gadgets.
The decline in demand for personal computers is one of the main obstacles preventing the global market for computer microchips from growing. Since smartphones and tablets are more portable and user-friendly, there has been a decline in the market for personal computers. As a result, there is less of a demand for personal computer microchips. But it's anticipated that there will be some challenges the market must overcome that could prevent it from growing.
The need for computer microchips is rising quickly on a global scale. This is caused by a variety of elements, such as the growing need for computing power, the falling price of microchips, and the expanding range of microchip applications. The demand for processing power is rising as a result of the Internet of Things (IoT), AI, and big data. Microchips are a crucial component of the increasingly powerful computers that are needed to run these technologies.
The obstacle to the evolution of the worldwide market for computer microchips is the escalating competition from alternative technologies. Many different replacement technologies are offered on the market to replace microchips. Microchips cannot compete with these modern technologies for effectiveness and efficiency. As a result, the market is expected to grow more slowly as less people are expected to buy microchips.
The COVID-19 pandemic epidemic has had a significant negative influence on the market for computer microchips. It is determined that the market has declined based on input from numerous industry experts from different segments of the value chain, including OEMs, suppliers, integrators, end users, and distributors, as well as the financial disclosure of different businesses in the computer microchip ecosystem. The worldwide supply chain has also been interrupted by the pandemic outbreak, leaving a huge vacuum in the system. The pandemic's disruptive economic effects have been felt.
The memory chips segment is estimated to have a lucrative growth, due to the monitoring of health. The benefits can be summed up as the ability to combat theft and fraud as well as the new wave of microchip applications. Computer chips known as microchips are the cornerstone of contemporary computing. Millions of transistors are housed on these small silicon wafers, which can process and store data. The size, complexity, and power of microchips vary, but they are all used to make technology capable of carrying out tasks more quickly, correctly, and efficiently than a human could.
The automotive segment is anticipated to witness the fastest CAGR growth during the forecast period. This market consists of automobiles, trucks, and buses. They function as a sort of electrical circuit to control the flow of electrons, acting as the brain of contemporary electronics. For this market, the semiconductor industry provides a wide range of goods, including as sensors, microcontrollers, and integrated circuits for power management.
Asia Pacific is projected to hold the largest market share during the forecast period owing to increasing demand for electronic products such as PCs, smartphones, and tablets in emerging countries. Microchips have a huge window of opportunity to China's inexpensive cost of raw materials and vast production capacity. It is anticipated to have a significant market growth due to its early technology advancement and expensive capital investment.
Europe is projected to have the highest CAGR over the forecast period, owing to increasing adoption of compact and smart devices. Consumer electronics device consumption growth is responsible for the industry's quick expansion as well as the rise in demand for hand-held and microcomputer processors. Furthermore, the development of the Internet of Things and automation processes necessitates high-performance and compact microchips, which is predicted to fuel market demand.
Some of the key players profiled in the Computer Microchips Market include Samsung, TSMC, Broadcom Inc, Intel Corporation, Micron Technology Inc, NUVIA Corporation, AMD, Qualcomm Inc, NXP Semiconductors NV, Infineon, Texas Instruments Inc, Advanced Micro Devices INC, Taiwan Semiconductor Manufacturing Co. Ltd, ST Microelectronics NV, Celera and GCT Semiconductor.
In March 2022, Broadcom CEO Hock Tan announced record revenues for the company's first fiscal quarter of $7.7 billion but quickly decried a chip backlog that grew by double digits over the prior quarter.
In December 2021, Samsung and IBM jointly announced a breakthrough in semiconductor design utilizing a new vertical transistor architecture that demonstrates a path to scaling beyond nanosheet, and has the potential to reduce energy usage by 85 percent compared to a scaled fin field-effect transistor.