기능 안전 마이크로컨트롤러(MCUs) 시장 예측 : 규모, 점유율, ASIL 레벨별(A, B, C, D), 코어 아키텍처별, 주변기기별, 소프트웨어 지원별(AUTOSAR)(2026-2036년)
Functional Safety Microcontrollers (MCUs) Market Size, Share, & Forecast by ASIL Level (A, B, C, D), Core Architecture, Peripherals, and Software Support (AUTOSAR)- Global Forecast (2026-2036)
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리서치사 : Meticulous Research
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한글목차

기능 안전 마이크로컨트롤러(MCUs) 시장은 2026년부터 2036년까지의 예측기간동안 CAGR 11.6%로 성장하여 2036년까지 147억 3,000만 달러에 달할 것으로 예측되고 있습니다. 본 보고서는 세계 5대 지역에서 기능 안전 마이크로컨트롤러 시장에 대한 상세한 분석을 제공하며, 현재 시장 동향, 시장 규모, 최근 동향, 2036년까지의 예측에 중점을 두고 있습니다. 광범위한 2차 및 1차 조사 및 시장 시나리오의 상세한 분석을 통해 주요 산업의 촉진요인, 억제요인, 기회 및 과제의 영향 분석을 실시했습니다. 이 시장의 성장은 엄격한 자동차 안전 규제(ISO 26262), 첨단 안전 시스템을 도입하는 고급 자동차 제조업체의 강력한 존재감, ISO 26262 준거를 요구하는 확립된 자동차 안전 문화, 급속히 확대하는 자동차 생산, ADAS 및 자동 운전 기술의 채택 증가, 안전 인증 제어 시스템을 필요로 하는 전기자동차 부문의 확대, 신흥 자동차 시장의 안전 또한 고급 하드웨어 수준의 안전 기능 통합, 잠금 단계 동작을 위한 중복 처리 코어 개발, 내장 자가진단(BiST) 기능 채택, 안전 감시 장치 및 워치독에 대한 주목이 높아지고, 페일 세이프 상태 관리 수요 증가가 시장 성장을 지원할 것으로 예측됩니다.

목차

제1장 서론

제2장 조사 방법

제3장 주요 요약

제4장 시장 인사이트

제5장 ISO 26262 및 자동차 기능 안전 표준

제6장 경쟁 구도

제7장 세계의 기능 안전 마이크로컨트롤러(MCU) 시장 : ASIL 레벨별

제8장 세계의 기능 안전 마이크로컨트롤러(MCU) 시장 : 코어 아키텍처별

제9장 세계의 기능 안전 마이크로컨트롤러(MCU) 시장 : 주변기기별

제10장 세계의 기능 안전 마이크로컨트롤러(MCU) 시장 : 소프트웨어 지원별

제11장 세계의 기능 안전 마이크로컨트롤러(MCU) 시장 : 용도별

제12장 세계의 기능 안전 마이크로컨트롤러(MCU) 시장 : 차종별

제13장 기능 안전 마이크로컨트롤러(MCU) 시장 : 지역별

제14장 기업 프로파일

제15장 부록

SHW
영문 목차

영문목차

Functional Safety Microcontrollers (MCUs) Market by ASIL Level (A, B, C, D), Core Architecture (Single Core, Multi-Core), Peripherals (Safety Monitors, Watchdogs, EDAC), Software Support (AUTOSAR), Application (ADAS, Powertrain, Body Control), and Geography - Global Forecasts (2026-2036)

According to the research report titled, 'Functional Safety Microcontrollers (MCUs) Market by ASIL Level (A, B, C, D), Core Architecture (Single Core, Multi-Core), Peripherals (Safety Monitors, Watchdogs, EDAC), Software Support (AUTOSAR), Application (ADAS, Powertrain, Body Control), and Geography - Global Forecasts (2026-2036),' the functional safety microcontrollers market is projected to reach USD 14.73 billion by 2036, at a CAGR of 11.6% during the forecast period 2026-2036. The report provides an in-depth analysis of the global functional safety microcontrollers market across five major regions, emphasizing the current market trends, market sizes, recent developments, and forecasts till 2036. Following extensive secondary and primary research and an in-depth analysis of the market scenario, the report conducts the impact analysis of the key industry drivers, restraints, opportunities, and challenges. The growth of this market is driven by stringent automotive safety regulations (ISO 26262), strong presence of premium automotive manufacturers implementing advanced safety systems, established automotive safety culture requiring ISO 26262 compliance, rapidly growing automotive production, increasing adoption of ADAS and autonomous driving technologies, expanding electric vehicle segment requiring safety-certified control systems, and rising safety awareness in emerging automotive markets. Moreover, the integration of advanced hardware-level safety features, the development of redundant processing cores for lockstep operation, the adoption of built-in self-test (BiST) capabilities, the increasing focus on safety monitors and watchdogs, and the growing demand for fail-safe state management are expected to support the market's growth.

Key Players

The key players operating in the functional safety microcontrollers market are Infineon Technologies AG (Germany), NXP Semiconductors N.V. (Netherlands), STMicroelectronics N.V. (Switzerland), Renesas Electronics Corporation (Japan), Texas Instruments Inc. (U.S.), Microchip Technology Inc. (U.S.), Qualcomm Technologies Inc. (U.S.), Mobileye (Intel subsidiary) (Israel), Nvidia Corporation (U.S.), Xilinx Inc./AMD (U.S.), Altera/Intel (U.S.), Lattice Semiconductor Corporation (U.S.), Analog Devices Inc. (U.S.), Maxim Integrated/Analog Devices (U.S.), Cypress Semiconductor/Infineon (U.S.), ON Semiconductor Corporation (U.S.), Broadcom Inc. (U.S.), Qorvo Inc. (U.S.), Skyworks Solutions Inc. (U.S.), and Semtech Corporation (U.S.), among others.

Market Segmentation

The functional safety microcontrollers market is segmented by ASIL level (ASIL A, ASIL B, ASIL C, ASIL D), core architecture (single core, multi-core with lockstep), peripherals (safety monitors, watchdogs, error detection and correction (EDAC), and others), software support (AUTOSAR, non-AUTOSAR), application (ADAS, powertrain control, body control and infotainment, battery management systems, and others), and geography. The study also evaluates industry competitors and analyzes the market at the country level.

Based on ASIL Level

Based on ASIL level, the ASIL C and ASIL D segments hold the largest combined share of the market in 2026. This segment's dominance is primarily attributed to the critical nature of safety-critical automotive applications requiring the highest safety integrity levels. The ASIL B segment is expected to grow at a significant CAGR during the forecast period, driven by adoption in mid-range safety applications. The ASIL A segment maintains steady demand for less critical safety functions.

Based on Core Architecture

Based on core architecture, the multi-core with lockstep segment is estimated to hold the largest share of the market in 2026. This segment's dominance is primarily attributed to its superior redundancy and fault-tolerance capabilities for safety-critical applications. The single core segment is expected to maintain a significant share, driven by cost-effectiveness for lower ASIL level applications.

Based on Peripherals

Based on peripherals, the safety monitors and watchdogs segment is expected to account for substantial share of the market. This segment's dominance is driven by their critical importance in detecting and responding to potential failures. The EDAC (error detection and correction) segment is expected to grow at the highest CAGR during the forecast period, driven by increasing adoption in memory protection and data integrity applications.

Based on Application

Based on application, the ADAS segment is expected to witness significant growth during the forecast period. This segment's growth is fueled by rapid deployment of advanced driver assistance systems and autonomous driving technologies. The powertrain control segment holds a substantial share, driven by critical safety requirements in engine and transmission management. The body control and infotainment segment is expected to grow at a significant CAGR, driven by increasing integration of safety functions in vehicle body systems.

Geographic Analysis

An in-depth geographic analysis of the industry provides detailed qualitative and quantitative insights into the five major regions (North America, Europe, Asia-Pacific, Latin America, and the Middle East & Africa) and the coverage of major countries in each region. In 2026, Europe is estimated to account for the largest share of the global functional safety microcontrollers market, driven by stringent automotive safety regulations, strong presence of premium automotive manufacturers implementing advanced safety systems, and established automotive safety culture requiring ISO 26262 compliance. Asia-Pacific is projected to register the highest CAGR during the forecast period, fueled by rapidly growing automotive production, increasing adoption of ADAS and autonomous driving technologies, expanding electric vehicle segment requiring safety-certified control systems, and rising safety awareness in emerging automotive markets. The region's rapid market transformation is creating substantial opportunities.

Key Questions Answered in the Report-

Scope of the Report:

Functional Safety Microcontrollers (MCUs) Market Assessment -- by ASIL Level

Functional Safety Microcontrollers (MCUs) Market Assessment -- by Core Architecture

Functional Safety Microcontrollers (MCUs) Market Assessment -- by Peripherals

Functional Safety Microcontrollers (MCUs) Market Assessment -- by Software Support

Functional Safety Microcontrollers (MCUs) Market Assessment -- by Application

Functional Safety Microcontrollers (MCUs) Market Assessment -- by Geography

TABLE OF CONTENTS

1. Introduction

2. Research Methodology

3. Executive Summary

4. Market Insights

5. ISO 26262 and Automotive Functional Safety Standards

6. Competitive Landscape

7. Global Functional Safety Microcontrollers (MCUs) Market, by ASIL Level

8. Global Functional Safety Microcontrollers (MCUs) Market, by Core Architecture

9. Global Functional Safety Microcontrollers (MCUs) Market, by Peripherals

10. Global Functional Safety Microcontrollers (MCUs) Market, by Software Support

11. Global Functional Safety Microcontrollers (MCUs) Market, by Application

12. Global Functional Safety Microcontrollers (MCUs) Market, by Vehicle Type

13. Functional Safety Microcontrollers (MCUs) Market, by Geography

14. Company Profiles

15. Appendix

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