Safety Products PRO-SIL™
Safety documentation
| Register and get acess to our free SAFETY documentation (Safety Manuals , IEC 61508 and ISO 26262 documentation , AURIX™ SafeTpack and SafeTlib product briefs and much more...) |
Click & check below PRO-SIL™ portfolio of Infineon:
PRO-SIL™ highlights :
- Broad hardware portfolio, including sensors and microcontrollers, along with analog and power management ICs that provide SIL-supporting features
- An independent functional safety management organization supports the ISO 26262 safety lifecycle
- Safety documentation, such as a safety manual and safety analysis summary report, can be made available for dedicated PRO-SIL™ products (NDA may be required)
- Infineon offers expert system integrator support for achieving the required ASIL on system level
- Infineon’s PRO-SIL™ logo will guide you to our products (hardware, software, safety documentation) with SIL-supporting features. Infineon’s activities result in simplified integration in safety-related application
Functional safety – ISO 26262:2018- Infineon is benchmark in Functional Safety
ISO 26262 defines the development of electric and electronic automotive systems with regard to their functional safety. The aim of this standard is to reduce possible hazards caused by the failure and malfunction of such systems. The safety requirements for the development process depend on the ASIL rating of the target application and can range from ASIL A to ASIL D. Applications such as steering or braking systems are rated with the highest ASIL D level. A failure in such a system can lead to an out-of-control vehicle, possibly resulting in fatal injuries. All newly developed parts, which are addressing a certain safety goal will be based on an ISO 26262-compliant development flow, thereby allowing direct use in all safety-relevant applications. Devices which are developed prior to the ISO 26262 as a QM part can nevertheless be used in ISO-compliant systems as outlined in part 8 clause 13 of the standard. In such cases, it is mandatory “to provide evidence of the suitability of hardware components and parts” for use in ISO-compliant systems and also to provide failure modes, their distribution and diagnostic capability.
To support our customers as they strive to achieve the highest ASIL on system level, Infineon provides both the necessary support for qualification of existing pre ISO 26262 products, and fully ISO 26262-compliant products of the future
Click on the bubbles below to discover more about AURIX™ Holistic Safety concept
AURIX™ Safety Solutions - Get more Information
Trainings
| Know more about AURIX™ Safety Concept
|
|
| Know more about AURIX™ SMU ( Safety Management Unit) |
Microcontroller Mediacenter
Please check the youtube channel Infineon4Engineers for more videos.
|
|
![]() |
Understand how hackers use the CAN bus to interfere with in-vehicle communication, and be aware of how Infineon’s AURIX™ microcontrollers support secure CAN communication. |
|
|
![]() |
|
![]() |
|
![]() |
|
|
|
|
32-bit: Tricore®
| Training Title |
Language |
Hitex |
Microconsult |
| AURIX TC2xx Workshop: 32-Bit Multicore Mikrocontroller-Familie |
German |
X | |
| AURIX TC2xx Workshop: 32-Bit Multicore Microcontroller Family | English | X | |
| AURIX TC3xx Workshop: 32-Bit Multicore-Mikrocontroller-Familie (2G Zweite Generation) |
German | X | |
| AURIX TC3xx Workshop: 32-Bit Multicore Microcontroller Family (2G Second Generation) |
English | X | |
| German |
|||
| English |
|||
| German |
|||
| English |
32-bit: XMC4000/XMC1000®
| Training Title |
Language |
Hitex |
Microconsult |
| Keil MDK-ARM Powertraining mit XMC4500 (Cortex-M4) | German | X | |
| Hands-on Professional Middleware für Cortex-M | German | X | |
| XMC4000 / XCM1000 Workshop: 32-Bit Industrial Microcontroller ARM® Cortex-M4/ ARM® Cortex-M0 |
German |
||
| XMC4000 / XCM1000 Workshop: 32-Bit Industrial Microcontroller ARM® Cortex-M4/ ARM® Cortex-M0 |
English |
16-bit: C166, XC166
| Training Title |
Language |
Hitex |
Microconsult |
| X | |||
| X | |||
| XC2000/XE16x/XC16x/ST10: Architektur, Peripherie und Embedded Programmierung |
German |
||
| XC2000/XE16x/XC16x/ST10: Architecture, Peripherals and Embedded Programming |
English |
||
| XC8xx/C500/8051 8-Bit Mikrocontroller: Architektur und Embedded Programmierung |
German |
X |
|
| XC8xx/C500/8051 8-Bit Microcontrollers: Architecture and Embedded Programming | English | X |
Operating system and Applications
| Operating system and Applications | Language | Hitex | Microconsult |
| X | |||
| X | |||
| Embedded C: Programmiermethoden und -tools for Embedded-Anwendungen |
German
|
||
| Embedded C: Programming Methods and Tools for Embedded Applications |
English |
||
| German |
|||
| TC17x7: Practical Application of TriCore® Specific Peripherals |
English |
||
| Tracen und Multicore Debugging mit der PLS Universal Debug Engine UDE |
German |
||
| Tracing and Multicore Debugging with the PLS Universal Debug Engine UDE |
English |
||
| Tracen und Multicore Debugging for TriCore/AURIX (MCDS) mit Lauterbach TRACE32 |
German |
||
| Tracing and Multicore Debugging for TriCore/AURIX (MCDS) with Lauterbach TRACE32 |
English |
||
| German |
|||
| English |
|||
| German |
|||
| English |
|||
| RTOS-Anwendung: Entwicklung von Laufzeit-Architekturen f¼r Embedded- und Echtzeitsysteme |
German |
||
| RTOS Application: Development of Runtime Architectures for Embedded and Real-time Systems |
English |
- AURIX™ Asynchronous Synchronous Interface
- AURIX™ Advanced Driver Assistance Subsystem (ADAS)
- AURIX™ Capture Compare Unit 6
- AURIX™ Central Processing Unit
- AURIX™ Controller Area Network
- AURIX™ Debug Support
- AURIX™ Delta-Sigma Analog-to-Digital Converter
- AURIX™ Direct Memory Access
- AURIX™ Ethernet MAC
- AURIX™ External Bus Unit
- AURIX™ Flexible CRC Engine
- AURIX™ FlexRay™ Protocol Controller
- AURIX™ General Purpose Input Output
- AURIX™ General Purpose Timer Unit
- AURIX™ Generic Timer Module
- AURIX™ Hardware Security Module
- AURIX™ High Speed Serial Link
- AURIX™ Infineon Low Level Driver
- AURIX™ Input Output Monitor
- AURIX™ Inter-Integrated Circuit Module
- AURIX™ Interrupt Router
- AURIX™ Memory Maps
- AURIX™ Memory Test Unit
- AURIX™ Micro Second Channel
- AURIX™ Program Memory Unit
- AURIX™ Queued Synchronous Peripheral Interface
- AURIX™ Safety Concept
- AURIX™ Safety Management Unit
- AURIX™ Single Edge Nibble Transmission
- AURIX™ System Architecture
- AURIX™ System Timer
- AURIX™ Versatile Analog-to-Digital Converter
- AURIX™ Peripheral Sensor Interface
- AURIX™ Peripheral Sensor Interface with Serial PHY
- AURIX™ System Control Units
- AURIX™_ASCLIN_UART_1
- AURIX ™_ASCLIN_LIN_Master_1
- AURIX ™_ASCLIN_Shell_UART_1
- AURIX™_ASCLIN_SPI_Master_1
- AURIX™_ADC_Background_Scan_1
- AURIX™_ADC_Group_Scan_1
- AURIX™_Blinky_LED_1
- AURIX™_CCU6_ADC_1
- AURIX™_CCU6_Interrupt_1
- AURIX™_CCU6_PWM_Generation_1
- AURIX™_CCU6_PWM_Capture_1
- AURIX™_CPU_Perf_Counters_1
- AURIX™_DMA_ADC_Transfer_1
- AURIX™_DMA_Linked_List_Mode_1
- AURIX™_DMA_Mem_to_Mem_1
- AURIX™_DSADC_1
- AURIX™_ERU_Interrupt_1
- AURIX™_GPT12_PWM_Capture_1
- AURIX™_FCE_CRC_1
- AURIX™_GPT12_Timer_Concatenation_1
- AURIX™_GPIO_LED_Button_1
- AURIX™_GTM_ATOM_Interrupt_1
- AURIX™_GTM_ATOM_PWM_1
- AURIX™_GTM_TOM_Interrupt_1
- AURIX™_GTM_TOM_PWM_1
- AURIX™_GTM_TIM_Capture_1
- AURIX™_I2C_Read_Ext_Device_1
- AURIX™_Interrupt_Prio_1
- AURIX™_IOM_PWM_Monitor_1
- AURIX™_IOM_Signals_Comparison_1
- AURIX™_MTU_MBIST_1
- AURIX™_MULTICAN_GW_TX_FIFO_1
- AURIX™_MULTICAN_1
- AURIX™_MULTICAN_FD_1
- AURIX™_Multicore_1
- AURIX™ _PWM_Buzzer_1
- AURIX™ _RAM_Run_Function_1
- AURIX™_SCU_Clock_1
- AURIX™_SCU_Die_Temp_Sensor_1
- AURIX™_SCU_Emergency_Stop_1
- AURIX™_SCU_Power_Down_Idle_1
- AURIX™_SCU_Power_Down_Sleep_1
- AURIX™_SCU_Reset_Detection_1
- AURIX™_SMU_Emergency_Stop_Alarm_1
- AURIX™_SMU_IR_Alarm_1
- AURIX™_SMU_Reset_Alarm_1
- AURIX™_SPI_CPU_1
- AURIX™_SPI_DMA_1
- AURIX™_STM_Interrupt_1
- AURIX™_UART_DMA_Transfer_1
- AURIX™_UART_VCOM_1
- AURIX™_Watchdog_1









