市場調查報告書
商品編碼
1235939
到 2028 年的全球微控制器市場預測 - 按產品類型(8 位、16 位、32 位)、應用(汽車、工業、醫療設備、網絡/通信、消費電子、軍事/國防)和地區Microcontroller Market Forecasts to 2028 - Global Analysis By Product Type (8-Bit, 16-Bit and 32-Bit), Application (Automotive, Industrial, Medical Devices, Networking & Communications, Consumer Electronics and Military & Defense), and Geography |
根據 Stratistics MRC 的數據,2022 年全球微控制器市場規模將達到 349 億美元,預計到 2028 年將達到 605 億美元,預測期內復合年增長率為 9.6%。生長。
微控制器是一種小型集成電路,可控制嵌入式系統中的單個進程。 典型的微控制器嵌入系統中以控制設備的特定功能,在單個芯片上具有處理器、存儲器和輸入/輸出 (I/O) 外圍設備。 精簡的指令集導致設計更簡單,但對軟件的強調可能會使其變得更加困難。
據 HCL 稱,到 2025 年,全球 10% 的家庭將成為智能家居,配備可穿戴設備、煙霧探測器、恆溫器、玻璃破碎檢測系統等。這是智能設備的一個例子,它極大地受益於集成超低功耗和
醫療設備原始設備製造商專注於提供複雜的醫療保健解決方案,以治療和監測患有常見疾病的患者,並以合理的價格提高醫療保健設備的質量。我正在投入 微控制器在延長便攜式醫療設備的電池壽命方面發揮著重要作用,因為它們以超低功耗運行並包含高性能模擬外設。 微控制器能夠以數字方式處理和過濾患者狀況,顯示心率、血壓、血氧水平和肺活量等生理數據的參數結果,從而推動市場增長。
據信,整個微控制器行業都缺少強大的知識產權保護框架設計,而微控制器行業正在成為新的中小企業中心。 根據世界知識產權組織2017年的一份報告,越南、印度尼西亞、馬來西亞、泰國和菲律賓的知識產權框架效率低於世界最高標準,半導體和其他製造業阻礙了知識產權的擴張。 缺乏微控制器市場前景的製造商加入該鏈導致經濟增長、技術轉移和失去工作機會。 保護和執行知識產權的不充分和無效的框架阻礙了市場。
對提供自動監控、制動、警告和轉向功能的高級駕駛輔助系統 (ADAS) 的需求正在增加。 消費者對安全應用的興趣以及減少事故、保護駕駛員和增加車輛需求的法律要求是推動這些系統需求激增的主要因素。 因此,通過制定提高客戶認知度的營銷計劃,我們將增加對ADAS技術的需求,促進市場增長,從而使全球汽車製造商和微型計算機製造商擁有大量的微控制器市場。希望能夠提供觀點。
靜電會損害微控制器,因為它們是由 CMOS(互補金屬氧化物半導體)製成的。 高級功率器件不能直接與微控制器連接。 它的結構很複雜。 一般多用於微型設備。 執行的次數是確定的。 並非所有的微控制器都有模擬 I/O,這是一個阻礙市場增長的問題。
COVID-19 大流行造成的廣泛供應鏈中斷對工業和貿易的各個方面都產生了深遠影響。 多種因素共同造成了全球微控制器短缺,這不僅影響了汽車行業,也影響了其他行業。 疫情還導致汽車行業對微控制器的需求量大幅上升,全球範圍內的微控制器短缺影響著汽車行業和其他行業。
由於生產電動和混合動力汽車、照明設備等所需的汽車模塊市場的擴張,預計 16 位部分將有良好的增長。 此外,由於主要行業參與者的市場推動,預計在汽車、消費電子和醫療領域應用最多的藍牙和 WIFI 微控制器的產量將會增加。
由於全球對智能手機和其他智能設備的需求不斷增長,預計網絡和通信領域在預測期內將以最快的複合年增長率增長。 在過去的 20 年裡,世界數據量與日俱增,同時克服傳統數據驅動器的挑戰推動了微控制器市場的國際擴張。 微控制器是全球軍事和國防工業中使用的設備的關鍵組件,推動敏感數據在高暴露風險下傳輸,從而推動市場增長。
預計亞太地區在預測期內將佔據最大的市場份額,廉價勞動力和大量原材料是市場擴張的主要驅動力。 據信,中國、印度、馬來西亞和泰國等國家生活水平的提高是造成需求增加的原因。 這些國家正在努力用尖端技術升級其物質產品,例如先進的醫療技術、自動化設備、自動駕駛汽車和消費電子產品,這正在推動市場增長。
由於汽車和醫療設備行業的擴張,預計歐洲在預測期內的複合年增長率最高。 隨著德國、法國和其他知名汽車製造中心在過去十年中對先進微控制器的需求激增,預計歐洲在不久的將來將出現適度的市場增長。 此外,歐洲的生物醫學、生物工程和冶金行業正在改進其製造技術,因此世界各地的最終用戶有望獲得來自這些行業的先進醫療產品。
微控制器市場的主要參與者是: Infineon Technologies AG、NXP Semiconductor、Renesas Electronics Corporation、Microchip Technology Inc、STMicroelectronics、Texas Instruments Incorporated、Toshiba Electronic Devices & Storage Corporation、Intel、Maxim Integrated、ON Semiconductors、ROHM CO LTD、Zilog, Inc、Analog Devices Inc, Panasonic Corporation.
2023 年 1 月,英飛凌和 Resonac 宣布擴大合作,簽訂新的多年期碳化矽 (SiC) 材料交付合同。 根據協議,Resonac 將向英飛凌提供製造 SiC 半導體所需的 SiC 材料,佔未來十年預計需求的兩位數份額。
2023 年 1 月,恩智浦宣布推出用於下一代 ADAS 和自動駕駛系統的先進汽車雷達單芯片系列,該單芯片解決方案由高度集成的射頻前端和多核雷達處理器組成。
2022 年 11 月,恩智浦宣布推出適用於現代電氣化應用的高性能 S32K39 系列 MCU。 這種新的 MCU 支持 NXP 的電池管理系統 (BMS) 和 EV 電源逆變器,為下一代 EV 提供端到端解決方案。
2022 年 7 月,恩智浦將與富士康合作開發下一代汽車平台,建立在該公司基於恩智浦 i.MX 應用處理器和恩智浦軟件無線電平台的首個數字駕駛艙合作夥伴關係的基礎上。
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According to Stratistics MRC, the Global Microcontroller Market is accounted for $34.90 billion in 2022 and is expected to reach $60.50 billion by 2028 growing at a CAGR of 9.6% during the forecast period. A microcontroller is a small integrated circuit that controls a single process in an embedded system. A typical microcontroller is embedded inside a system to control a particular function in a device and consists of a processor, memory, and input/output (I/O) peripherals on a single chip. Due to its streamlined instruction set and resulting greater design simplicity, but the software can be more difficult due to the emphasis it places on it.
According to HCL, 10% of residences worldwide will be smart homes by 2025 with wearable's, smoke detectors, thermostats, and glass breakage detection systems are a few examples of smart devices that greatly benefit from the integrated high-performance analog capabilities and extremely low power consumption of 8-bit MCUs.
Original equipment manufacturers of medical equipment are strictly focused on providing sophisticated healthcare solutions for treating and monitoring the patients suffering from common ailments, hence enhancing the quality of healthcare gadgets at a reasonable price. Due to its ultra-low power operation and incorporated high performance analogue peripherals, Microcontrollers play a vital role in portable medical instruments by extending their battery life. The patient's condition can be digitally processed and filtered by the Microcontroller, which also shows the parametric results of physiological data like heart rate, blood pressure, blood oxygen level, lung capacity, and many other things are propelling the market growth.
Designing a robust framework for the protection of intellectual property rights is considered as missing throughout the microcontroller sector, which is becoming into the centre for new small and medium companies. The efficiency of IP frameworks in Vietnam, Indonesia, Malaysia, Thailand, and the Philippines is below the highest worldwide standards, according to the World Intellectual Property Organization report from 2017, which is impeding the expansion of the semiconductor and other manufacturing sectors. The Lack of microcontroller market prospects for manufacturers to participate in chains results in a loss of economic growth, technology transfer, and employment opportunities. Insufficient and ineffective frameworks for the protection and enforcement of intellectual property rights are hindering the market.
There is an increase in demand for advanced driver-assistance systems (ADAS), which provide automated monitoring, braking, warning, and steering features. Consumer interest in safety applications and legal requirements that lower accidents, protect drivers, and boost demand for cars are major factors in the spike in demand for these systems. As a result, it is anticipated that developing marketing plans to raise customer awareness would increase the demand for ADAS technology while providing a multitude of microcontroller market prospects to automotive and microcontroller manufacturers worldwide by enhancing the market growth.
Static electricity has the potential to harm microcontrollers because they are made of complementary metal-oxide-semiconductors (CMOS). A superior power device cannot be directly interfaced with by a microcontroller. Its structure is intricate. Typically, it is used in micro equipment. There are a set number of executions. There are problems since not all microcontrollers have analogue I/O which hampers the growth of the market.
The COVID-19 pandemic's extensive supply chain disruptions had a profound effect on all facets of industry and trade. Several factors combined to produce a global microcontroller shortage that has an impact on the auto industry as well as other industries. The epidemic has also contributed to a huge rise in demand for microcontrollers in the automotive industry, a worldwide microcontroller shortage that has an impact on the auto industry and other industries which
The 16-Bit segment is estimated to have a lucrative growth, due to the expanding market for automotive modules needed to produce electric or hybrid automobiles, lighting equipment, etc. The production of microcontrollers with Bluetooth and WIFI, which have the greatest applications in the automotive, consumer electronics, and medical sectors, is anticipated to increase as a result of key industry players thereby boosting the market.
The networking & communications segment is anticipated to witness the fastest CAGR growth during the forecast period, due to worldwide rise in demand for smartphone and other smart devices. Since the previous two decades, the globe has seen a daily increase in data generation while also overcoming problems with traditional data drives, which has fuelled the expansion of the microcontroller market internationally. Microcontrollers are crucial components of the equipment used by the military and defence industries all over the world since they transport loads of sensitive data at a higher risk of information leakage which drives the market growth.
Asia Pacific is projected to hold the largest market share during the forecast period owing to the major drivers of the expansion of the local market are the availability of cheap labour and raw resources in large quantities. The rise in living standards in nations like China, India, Malaysia, Thailand, etc. is thought to be the cause of the increase in demand. These nations strive to upgrade materialistic goods including advanced medical technology, automated equipment, automated cars, and consumer gadgets with cutting-edge technology which is encouraging the growth of the market.
Europe is projected to have the highest CAGR over the forecast period, owing to the expansion of the automotive and medical device industries, Europe is anticipated to have modest market growth in the near future the fact that Germany, France, and other well-known automobile manufacturing centres in Europe, are experiencing surge in demand for advanced MCUs during the past ten years. Additionally, Europe's biomedical, bioengineering, and metallurgical industries are improving their manufacturing techniques, and as a result, end customers around the world can anticipate receiving highly advanced medical products from these industries.
Some of the key players profiled in the Microcontroller Market include: Infineon Technologies AG, NXP Semiconductor, Renesas Electronics Corporation, Microchip Technology Inc, STMicroelectronics, Texas Instruments Incorporated, Toshiba Electronic Devices & Storage Corporation, Intel, Maxim Integrated, ON Semiconductors, ROHM CO LTD, Zilog, Inc, Analog Devices Inc and Panasonic Corporation
In Jan 2023, Infineon and Resonac announce the expansion of their cooperation and a new multi-year agreement for delivery of silicon carbide (SiC) materials. According to the agreement, Resonac will supply Infineon with SiC materials for the production of SiC semiconductors, covering a double-digit share of the forecasted demand for the next decade.
In Jan 2023, NXP Introduces Advanced Automotive Radar One-Chip Family for Next-Gen ADAS and Autonomous Driving Systems, The one-chip solution is comprised of a highly integrated RF front-end and a multi-core radar processor.
In Nov 2022, NXP Introduces High-Performance S32K39 Series MCUs for Modern Electrification Applications. The new MCUs enable NXP's battery management system (BMS) and EV power inverters to provide end-to-end solutions for next-generation EVs.
In July 2022, NXP Collaborates with Foxconn on Next Generation Vehicle Platforms, The collaboration builds on the company's initial digital cockpit partnership, based on the NXP i.MX applications processors and NXP Software Defined Radio platform.
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