マイクロコントローラー
マイクロコントローラー サブカテゴリー
全てのサブカテゴリーを閉じる 全てのサブカテゴリーを開く- 32ビットTriCoreマイクロコントローラー
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32-bit PSoC™ Arm® Cortex® Microcontroller
- 概要
- 32-bit PSoC™ 4 Arm® Cortex®-M0
- 32-bit PSoC™ 4 Automotive Arm® Cortex®-M0/M0+
- 32-bit PSoC™ 4 HV Arm® Cortex®-M0+
- 32-bit PSoC™ 5 LP Arm® Cortex®-M3
- 32-bit PSoC™ 6 Arm® Cortex®-M4 / M0+
- 32ビットPSoC™車載用Multitouch Arm® Cortex®-M0
- 32-bit PSoC™ Fingerprint Arm® Cortex®-M0+
- 32-bit PSoC™ Analog Coprocessor Arm® Cortex®-M0+ MCU
- 32-bit TRAVEO™ T2G Arm® Cortex® Microcontroller
- ARM Cortex-Mベースの32ビット産業用マイクロコントローラー
- Sensing controller
- MOTIX™ | ARM Cortex-Mベースの32ビット組込みパワーIC
- レガシー製品(C500-、C166-、AUDO1-ファミリー)
- Product Longevity
- 安全製品PRO-SIL
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FM3 32-bit Arm® Cortex®-M3 Microcontroller (MCU) Families
- 概要
- FM3 CY9BFx1xS/T-Series Arm® Cortex®-M3 Microcontroller (MCU) Family
- FM3 CY9BFx1xN/R-Series High Performance Arm® Cortex®-M3 Microcontroller (MCU) Family
- FM3 CY9BFx2xJ-Series Arm® Cortex®-M3 Microcontroller (MCU) Family
- FM3 CY9BFx2xS/T-Series Arm® Cortex®-M3 Microcontroller (MCU) Family
- FM3 CY9BFx2xK/L/M-Series Arm® Cortex®-M3 Microcontroller (MCU) Family
- FM3 CY9AFx2xK/L-Series Low Power Arm® Cortex®-M3 Microcontroller (MCU) Family
- FM3 CY9AFx1xL/M/N-Series Low Power Arm® Cortex®-M3 Microcontroller (MCU) Family
- FM3 CY9AFx1xK-Series Low Power Arm® Cortex®-M3 Microcontroller (MCU) Family
- FM3 CY9AFx5xM/N/R-Series Low Power Arm® Cortex®-M3 Microcontroller (MCU) Family
- FM3 CY9AFx4xL/M/N-Series Low Power Arm® Cortex®-M3 Microcontroller (MCU) Family
- FM3 CY9AFxAxL/M/N-Series Ultra Low Leakage Arm® Cortex®-M3 Microcontroller (MCU) Family
- FM3 CY9AFx3xK/L-Series Ultra Low Leakage Arm® Cortex®-M3 Microcontroller (MCU) Family
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FM4 32-bit Arm® Cortex®-M4 Microcontroller (MCU) Families
- 概要
- FM4 S6E2C High Performance Arm® Cortex®-M4 Microcontroller (MCU) Family
- FM4 S6E2G-Series Connectivity Arm® Cortex®-M4 Microcontroller (MCU) Family
- FM4 CY9BFx6xM/N/R-Series Motor Control Arm® Cortex®-M4 Microcontroller (MCU) Family
- FM4 S6E2H-Series Motor Control Arm® Cortex®-M4 Microcontroller (MCU) Family
- FM4 CY9BFx6xK/L-Series Motor Control Arm® Cortex®-M4 Microcontroller (MCU) Family
- FM0+ 32-bit Arm® Cortex®-M0+ Microcontroller (MCU) Families
The XMC™ family: One MCU platform. Countless solutions
The XMC™ family is most suitable for real-time critical applications where an industry-standard core is needed.
The XMC™ microcontroller family is based on ARM® Cortex®-M cores. It is dedicated to applications in the segments of power conversion, factory and building automation, transportation and home appliances . XMC1000 bring together the ARM® Cortex®-M0 core and market-proven and differentiating peripherals in a leading-edge 65 nm manufacturing process. XMC1000 is the number one choice for bringing traditional 8-bit designs to the next level, addressing a broad application spectrum from typical 8-bit applications up to digital power conversion and even field-oriented motor control.
XMC4000 are powered by ARM® Cortex®-M4 with a built-in DSP instruction set. The single-precision floating-point unit, Direct Memory Access (DMA) feature and Memory Protection Unit (MPU) are state-of-the-art for all F64K128devices – even the smallest XMC4000 runs with up to 80 MHz in core and peripherals. They come with a comprehensive set of common, fast and precise analog/mixed signal, timer/PWM and communication peripherals.
The AURIX™ family: Safety joins performance
The AURIX™ family addresses applications, where more performance, connectivity, safety and security are needed.
AURIX™ TC2xx microcontrollers serve the precise needs of the automotive and industrial market in terms of performance and safety. Its innovative multicore architecture is based on up to three independent 32-bit TriCore™ CPUs and has been designed to meet the highest safety standards, while simultaneously increasing performance significantly.
The latest AURIX™ TC3xx microcontrollers are also well-suited for safety-critical applications to support clean, autonomous, connected cars and to support IoT forconnected, safe, secure industrial applications. It ranges from classic airbag, braking and power steering to fail-operational systems supported by sensor-based systems using radar, LIDAR or camera technologies. From Industrial segment applications like safe and secure servo drives, PLCs, drones, robots and also medical applications.
AURIX™ TC3xx is pin compatible with the AURIX™ TC2xx and offers increased flash memory sizes of up to 16 MByte, over 6 MByte of integrated RAM and up to six TriCore™ 1.62 embedded cores, each with a full clock frequency of 300 MHz. New features include a new radar processing sub-system with up to two dedicated Signal Processing Units (SPU), Gigabit Ethernet , additional CAN FD and LIN interfaces and an eMMC interface for external flash.
Embedded Power ICs (System-on-Chip)
Infineon has combined its wealth of experience in microcontroller with a highly integrated System-on-Chip solutions. Our MCU portfolio includes Embedded Power ICs which integrate on single die the 32-bit microcontroller, the non-volatile flash memory, the analog and mixed signal peripherals, the communication interfaces along with the driving stages needed for either relay, half-bridge or full-bridge DC and BLDC motor applications. Our Embedded Power System-on-Chip (SoC) solutions offer an unmatched level of integration of all functions required to sense, control and actuate a motor, and enable PCB space saving while helping to reduce energy consumption due to power saving modes. Extensive diagnostics and protections are embedded within the system-on-chip, more than a discrete approach can offer. Besides that, our solutions reduce cost through minimum number of external components, and enable multiple and flexible designs. Embedded Power ICs can be used for a range of motor control applications such as window lift, sunroof, wiper, fuel pump, HVAC fans, engine cooling fan, water pumps. Infineon Embedded Power ICs are supported by a complete development tool chain provided by Infineon and third party vendors. The tool chain includes compiler, debugger, evaluation board, LIN low level driver and configuration tool as well as various software code examples.
By working closely together with major Tier1 and OEM producers, we define, develop and bring to market innovative microcontrollers that help our customers address requirements of the ever changing world of electronics. We place great value on overall system understanding, which together with our excellent customer support and wide portfolio of other semiconductors helps customers to execute their projects more effectively, quicker and at lower cost.
完全なAURIX™技術文書(データシートやアプリケーションノートを含む)へのアクセス:
- myinfineon.com(ハイパーリンク)で貴社の電子メールアドレスを使用して登録してください
- ログイン名を次のアドレスに送信してください: AURIX@infineon.com
- 登録されると、新しい文書の自動更新サービスが提供されます
- すべての登録プロセスの完了には、(時間帯の違いにより)
マイクロコントローラメディアセンター
その他のビデオについては、マイクロコントローラメディアセンターと弊社のユーチューブチャネルInfineon4Engineers をご覧ください。
Online Trainings / eLearning

- Identify the communication interfaces available in AURIX™ TC3xx
- Understand their key features

- Indicate where to find AURIXTM easy-to-reach sources of information and documentation
- Easily identify our tools, software platform and its support ecosystem

- Understand why systems require frequent updates and how it is done
- Find out how AURIX™ families of microcontrollers support over-the-air software updates

- Understand how hackers use the CAN bus to interfere with in-vehicle communication
- Be aware of how Infineon’s AURIX™ microcontrollers support secure CAN communication

- Know the AURIX™ 32-bit multicore microcontroller family and its applications
- Be familiar with the safety standards, support models and tools available and where to find them

- Identify the AURIX™ first generation target application segments, setting trends and portfolio
- Understand the AURIX™ software characteristics and its available tools

- Know what ADAS is and understand how AURIX™ fits ADAS applications
- Know where to find AURIX™ support models, tools and development kits

- Be aware of the growing market for connected cars and recognize how connectivity poses a challenge to security
- Understand how the 1st Generation AURIX™ Hardware Security Module (HSM) works, its key features and applications

- Understand the importance and the main technologies of the electrification of the powertrain
- Understand the operating modes of the electric drive system

- Get to know how AURIX™ is able to answer the needs of the electric vehicle market
- Recognize how AURIX™ TC3xx addresses key electric vehicle challenges and understand its main features

- Understand how OPTIGA™ TPM can help automotive systems achieve a high level of security
- Apply this family of security controllers to different use cases in various host environments

- Understand what TriCore™ is and identify the advantages it brings to users
- Be aware of the outlook of future developments

- Find out about the definition of gateway and zone controllers and their typical applications
- Discover the new routing requirements in gateway and zone controllers

- Categorize cyber security threats in the upcoming automotive electrical and electronic architecture
- Identify how Infineon’s next generation AURIX™ TC4x microcontrollers are able to mitigate cyber security threats

- Explain how the major automotive trends are shaping the evolution of electrical and electronic or E/E architectures in cars
- Recognize the main and trending E/E architecture concepts and Infineon´s solutions to support them

- Distinguish the different AURIX™ generations and their respective features
- Identify AURIX™ support tools to help you design-in this family of Infineon’s microcontrollers in your industrial applications