Microcontroller
The ideal choice for applications where performance, connectivity, safety, and security are needed
Microcontroller subcategories
Collapse all subcategories Expand all subcategories- 32-bit AURIX™ TriCore™ Microcontroller
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32-bit PSOC™ Arm® Cortex® Microcontroller
- Overview
- PSOC™ Control Arm® Cortex®-M33 MCU
- PSOC™ Edge Arm® Cortex® Multicore
- PSOC™ 6 Arm® Cortex®-M4 / M0+
- PSOC™ 5 LP Arm® Cortex®-M3
- PSOC™ 4 Arm® Cortex®-M0/M0+
- PSOC™ Analog Coprocessor Arm® Cortex®-M0+ MCU
- PSOC™ 4 HV Arm® Cortex®-M0+
- Automotive PSOC™ 4 Arm® Cortex®-M0/M0+ MCU
- PSOC™ Automotive Multitouch Arm® Cortex®-M0
- PSOC™ Fingerprint Arm® Cortex®-M0+
- 32-bit TRAVEO™ T2G Arm® Cortex® Microcontroller
- 32-bit XMC™ Arm® Cortex® Industrial Microcontroller
- Sensing controller
- MOTIX™ MCU | 32-bit motor control SoC (system-on-chip)
- Legacy Microcontroller
- Product Longevity
- Microcontroller Safety Products PRO-SIL™/ ISO26262
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FM3 32-bit Arm® Cortex®-M3 Microcontroller (MCU) Families
- Overview
- 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
- Overview
- 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
A microcontroller unit (MCU) contains a CPU, memory, and input/output peripherals on a single integrated circuit (IC) chip and works as a standalone small computer. This allows for a reduction in power consumption, more compact designs, and cost savings. Additionally, microcontrollers can provide functional safety and security for embedded systems.
Increasingly, it is becoming critical that microcontrollers are equipped with advanced security features to avoid security compromises and prevent malware attacks. For this reason, the new generation of 32-bit MCUs provides robust protection for a range of embedded system applications.
Infineon microcontroller portfolio
The Infineon microcontroller portfolio offers a comprehensive product range. Our 32-bit MCU product portfolio includes PSOC™, XMC™, TRAVEO™ T2G, Auto PSOC™, FM™ and MOTIX™ 32-bit motor control SoC (System-on-Chip) which are based on Arm® Cortex®-M technology, as well as AURIX™ which uses TriCore™ technology. Infineon’s broad portfolio of microcontrollers offers scalable and high-performance solutions for a range of applications for automotive, industrial and consumer markets.
As one of the largest semiconductor suppliers, Infineon has been active in microcontroller development for many years. Our AURIX™ Family of 32-bit high power microcontrollers offer the most advanced embedded safety and security features for the automotive industry and meet the highest automotive safety integrity level (ASIL) D classification. Infineon’s ASIL D microcontrollers are scalable and offer high performance and computation power with up to 300 MHz CPU and are available with high security module (HSM) enabled devices. Our portfolio of AURIX™ microcontrollers with HSM offer enhanced security and powerful safety architecture that support applications for the next levels of autonomous driving by providing a secure computing platform.
PSOCTM Control, PSOCTM Edge and PSOCTM 4 Multi-Sense are the latest additions to Infineon’s industrial and consumer MCU portfolio. With PSOC4TM Multi-Sense, Infineon expands its leading CAPSENSETM technology for HMI with revolutionary inductive and liquid sensing technologies. PSOCTM Control provides high-performance MCUs for real-time control of motor and power systems. PSOCTM Edge is Infineon’s next generation ML enabled MCU.
Microcontroller portfolio overview
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The AURIX™ microcontroller is automotive qualified and is designed to meet the needs of the most demanding embedded control systems applications where the competing issues of price/performance, real-time responsiveness, computational power, data bandwidth, and power consumption are key design elements.
The Auto PSOC™ - Programmable System on Chip, integrate Infineon best-in-class capacitive sensing technology for demanding Human Machine Interface (HMI) applications in the automotive interior as well as exterior applications like Battery Management Systems (BMS) along with an ARM Cortex-M0/M0+ CPU, flash and memory. A programmable analog front-end with ADC, operational amplifiers, low-power comparators combined with digital blocks and various communication interfaces such as SENT, LIN, CAN and CAN FD provide a single-chip smart sensor with high integration and small footprint. Extended development ecosystem has been build around Auto PSoC including multiple software compatibility and the famous PSOC Creator software, easy-to-use IDE that introduces a game-changing schematic entry design methodology.
TRAVEO™ T2G for automotive body electronics applications offers cutting-edge performance, safety, and security features. The TRAVEO™ T2G family is designed for transportation of the future. With processing power and network connectivity built into a single Arm® Cortex®- M4F and dual Cortex®- M7F, this family of microcontrollers has enhanced performance up to 1500 DMIPS in Traveo™ T2G. This family also provides the scalability across memory size and pin count. The IP compatibility enables customers to design and develop their system with a single-platform MCU solution. Traveo™ T2G devices have advanced security features with the introduction of HSM (Hardware security module), dedicated Cortex®-M0+ for secure processing, and embedded flash in dual bank mode for (Firmware-Over-The-AIR updates (FOTA) requirements. Traveo™ T2G features six power modes that enable ECUs to minimize overall power consumption. Traveo™ T2G come with optimized software platform that is available for AUTOSAR MCAL (Microcontroller Abstraction Layer), self-test libraries, Flash EEPROM emulation, as well as security low level drivers, combined with third-party firmware.
PSOC™ Control microcontroller family enables real-time control and increased system efficiency of motor control and power conversion applications. This family of high-performance Arm® Cortex®- M33 MCUs allows designers to innovate, solve complex design problems and get their products to market faster than ever before. Typical applications include HVAC, home appliances, robotics, telecom and server power supplies, light electric vehicle chargers, solar inverters, and industrial automation.
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. XMC4000 are powered by Arm® Cortex®-M4 with a built-in DSP instruction set. XMC7000 is Infineon’s latest addition to the XMC™ family addressing high-end industrial applications with best-in-class compute performance and peripherals such as CAN FD, TCPWM and Gb Ethernet.
The XMC™ portfolio of MCUs is ideal for a broad range of industrial and consumer applications, offering optimal power, performance capabilities, and reduce costs all while providing greater design flexibility.
PSOC™ Edge is Infineon’s Machine Learning-enhanced sensing, low power, secured, and advanced HMI high-performance microcontroller family and enables designers to deliver unmatched, highly usable end-user experiences for next generation devices. PSOC™ Edge devices are based on high-performance Cortex™-M55, including Helium DSP support paired with machine learning hardware accelerators intended to accelerate neural networks in Machine Learning and AI applications. In addition, PSOC™ Edge is supported by a rich set of enablement including the industry-recognized ModusToolbox™ software including integration with the Imagimob Studio AI solution and its off-the shelf ML models provided Ready Models.
The PSOC™ 6 family is built on an ultra-low-power architecture, and the MCUs feature low-power design techniques to extend battery life up to a full week for battery powered applications. The dual-core Arm® Cortex®-M4 and Cortex-M0+ architecture lets designers optimize for power and performance simultaneously. Using its dual cores combined with configurable memory and peripheral protection units, the PSOC 6 MCU delivers the highest level of protection defined by the Platform Security Architecture (PSA) from Arm. Designers can use the MCU’s rich analog and digital peripherals to create custom analog front-ends (AFEs) or digital interfaces for innovative system components such as MEMS sensors, electronic-ink displays. The PSOC 6 MCU features the latest generation of industry-leading CapSense® capacitive-sensing technology, enabling modern touch and gesture-based interfaces that are robust and reliable. PSOC 6 MCU, paired with Infineon’s AIROC™ Wi-Fi, AIROC™ Bluetooth, or AIROC™ combos radio modules, is the perfect solution for secure, low-power, feature-rich IoT products.
PSOC™ 4 has tackled some of the complex portions of embedded system design making it easier for you to get your product to market. Functions such as analog sensor integration, capacitive touch, and wireless connectivity have been integrated and optimized in PSOC™ 4 to just work. The latest 5th generation CAPSENSE™ technology with superior Signal-to-Noise ratio and ultra-low-power is featured on PSOC™ 4000T and PSOC™ 4100T Plus. In addition, these devices feature Multi-Sense which expand capacitive sensing with leading inductive and liquid sensing technologies.
The PSOC™ 4 portfolio consists of several families of Arm® Cortex®-M0 and Cortex-M0+ microcontrollers with most devices including Infineon's CAPSENSE™ technology. The latest 5th generation CAPSENSE™ technology with superior Signal-to-Noise ratio and ultra-low-power is featured on . Other key features in the PSOC™ 4 portfolio include a customizable analog front end through programmable analog blocks as well as wired and wireless connectivity options such as USB, CAN, and Bluetooth Low Energy.
MOTIX™ 32-bit motor control SoC solutions integrate on a 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 System-on-Chip (SoC) solutions enable PCB space saving, reduce cost through minimum number of external components, and enable multiple and flexible designs. They can be used for a range of motor control applications such as window lift, sunroof, wiper, auxiliary pumps, HVAC fans, and engine cooling fans. Our Embedded Power ICs are automotive qualified.
Access to additional technical documentation:
By registering for myInfineon Collaboration Platform you can get access to additional add-on technical documentation, trainings, tools, and much more. Please follow these steps in order to get started:
- Register for myInfineon
- For AURIX documentation please send email to AURIX@infineon.com
- For Traveo documentation please email to Traveo@infineon.com
- For PSOC documentation please email to autoPSOC@infineon.com
- You will receive a confirmation which explains how to use your new access
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CYHVPA-128K-32-001
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MOTEON-TRACEBOX
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KIT_T2G-B-E_LITE
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KIT_T2G_C-2D-4M_LITE
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KIT_T2G_C-2D-6M_LITE
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KIT_T2G-B-H_LITE
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CYTVII-B-E-100-SO
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CYTVII-B-H-4M-176-CPU
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CY3295-MTK
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KIT_AURIX_2G_RADAR
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KIT_A2G_TC375_LITE
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CYTVII-B-E-176-SO
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CYTVII-B-E-BB
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CYTVII-B-H-8M-320-CPU
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KIT_A2G_TC387_MOTORCTR
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KIT_A2G_TC375_ARD_SB
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KIT_A2G_TC397XA_3V3_TFT
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12V BMS
- Eatron Technologies Ltd.Associated Partner
PSOC 4 PROCESSOR
- E-LagoriAssociated Partner
IOT ENABLED SWITCH
- E-LagoriAssociated Partner
Colorado Engineering - iScan Edge 1 – Infineon AURIX 2G Processor Module
- Colorado EngineeringPreferred Partner
Rutronik Development Kit RDK3
- Rutronik Elektronische Bauelemente GmbHAssociated Partner
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KIT-FPG1-T2G-B-E-2M
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PSOC4_HVMS_LITE_KIT
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Rutronik Development Kit RDK2
- Rutronik Elektronische Bauelemente GmbHAssociated Partner
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Secured boot for ARM processor platforms
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BMS
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Embedded Planet Components, Evaluation & Demonstration Boards, Turn Key Modules
- Embedded Planet, IncAssociated Partner
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LoRaWAN® module
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CodeMeter - Secure License Management for XMC4500 Microcontrollers
- WibuPreferred Partner
Battery Management System
- KENOTOMPreferred Partner
CY3253-BLDC_DaughterCard_Board_Layout
CY3253-BLDC_DaughterCard_Schematic
CY3253-BLDC_DaughterCard_Gerber
CY3253-BLDC_DaughterCard_Schematic
CY3253-BLDC_MasterCard_Board_Layout
CY3253-BLDC_MasterCard_Schematic
CY3253-BLDC_MasterCard_Schematic
CY3253-BLDC_MasterCard_Gerber
CY3236A-PIRMOTION Kit - Board Design Files (Schematic, Layout, Gerber, and BOM)
CY3236A-PIRMOTION Kit Only (Kit Design Files, Examples, Documentation)
CY8CKIT-046 PSOC 4 L-Series Pioneer Kit Design Files
CY8CKIT-046 Schematic
CY3210-24x23 EvalPod Schematic
CY3210-27x43 EvalPod Schematic
CY3210-24x23 EvalPod Gerber Files
CY3210-24x23 EvalPod BOM
CY3210-27x43 EvalPod Gerber Files
CY3210-27x43 EvalPod BOM
CY3210-21x23 EvalPod Schematic
CY3210-21x23 EvalPod Gerber Files
CY3210-21x23 EvalPod BOM
CY3271-EXP1 Kit - Board Design Files (Schematic, Layout, Gerber, and BOM)
CY3214-PSoCEVALUSB kit - Board Design Files (Schematic, Layout, Gerber, and BOM)
CY3214-PSoCEVALUSB Kit - Code Examples
CY3271-RFBoard Kit - Board Design Files (Schematic, Layout, Gerber, and BOM)
CY8CKIT-030 Board Design Files (Schematic, Layout, Gerber, BOM)
CY3280-BK1 Board Design Files
CY3280-22x45_Board_Design_Files (Schematic, Gerber, Layout, BOM)
CY3280-SRM_Board_Design_Files
Hamso services for simulation models
- Hamso EngineeringPreferred Partner
CY7C1020CV26 - IBIS
CY62137FV30 - IBIS
CY62256NL - VHDL
CY62128EV30 - IBIS
CY62126EV30 - IBIS
CY7C1041CV33-IBIS
CY7C1049CV33-IBIS
CY7C1020CV33-10ZC-VHDL
CY62157EV30-Ibis
CY62157EV30 - VHDL
CY62167EV30-IBIS
CY62146EV30-Ibis
CY62128E-IBIS
CY62128E - VHDL
CY62126EV30 - VHDL
CY62128EV30 - VHDL
CY62138FV30-VHDL
CY62137FV30-VHDL
CY62138F - VHDL
CY62147EV30-VHDL
CY62147EV30-Ibis
CY62146E - VHDL
CY62148EV30-VHDL
CY62157E - VHDL
CY62157E-Ibis
CY62167E-VHDL
CY62136FV30-VHDL
CY62136FV30 - IBIS
CY62148E-Ibis
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Simulate ONLINE - Digital Twin of XMC1400 Boot Kit co-simulating Embedded Application Code generated by ModusToolbox™ Development Ecosys...
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Simulate ONLINE - 24V smart High Side Switch shield with PROFET™ BTT6030-2ERA and BTT6020-1ERA for Arduino
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Simulate ONLINE - 12V DC Motor Control Shield with BTN8982TA and XMC1100 for two uni-directional or one bi-directional DC brushed motor
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Simulate ONLINE - Brushless DC (BLDC) Motor controlled by Sensorless Field-Oriented Control (FOC) using XMC1302 with MOSFET Inverter Opti...
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Simulate ONLINE - Brushless DC (BLDC) Motor controlled by Sensorless Field-Oriented Control (FOC) using XMC1302 32-bit ARM® Cortex®-M0 mi...
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Simulate ONLINE - 48V inverse buck LED driver for RGB color controlling with BSR606N and XMC1200
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Simulate ONLINE - 12V DC Motor Control with BTN8982TA and XMC1100 for one uni-directional DC brushed motor
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Simscape Electrical
- MathWorksPremium Partner
Simulink
- MathWorksPremium Partner
MATLAB
- MathWorksPremium Partner
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DOWNLOAD - Multitouch Quickstart Assistant
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emmtrix Code Vectorizer
- emmtrix TechnologiesAssociated Partner
eCV automates the vectorization process, transforming sequential C code into optimized vectorized code tailored to the AURIX™ TC4x architecture. This includes efficient handling of memory layouts and advanced loop transformations. Developers can simulate and test functionality even without access to target hardware, reducing development time and effort.
With support for Simulink® models, ONNX-based AI workflows, and detailed performance insights through integrated simulators, eCV minimizes the need for manual optimization while maximizing hardware performance.
We provide our tools with all required services.
FUJI AURIX
- PiNTeamPreferred Partner
CycurFUZZ
- ETAS GmbHPremium Partner
CycurRISK
- ETAS GmbHPremium Partner
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Silver
FlashFOX 8
- Goepel ElectronicAssociated Partner
AURIX™ Development Tools
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RAMScope-EXG
- DTS InsightAssociated Partner
Verification of control system behavior can be determined by observing changes in variable data of algorithms implemented in the control MCU. RAMScope can measure dynamically changing values of control algorithm variables in time series. It is possible to visualize the behavior of function processing and state transitions by measuring the input variable values of the control function and the function output variable values at fixed intervals.
RAMScopeVP is an integrated application software for comfortable use of RAMScope settings, measurements, capturing and calibration.
NETIMPRESS acorde
- DTS InsightAssociated Partner
In the production of multiple on-chip flash MCUs mounted on a multi-piece PCB assembly, it is possible to perform batch programming of the same object file, or batch programming of different MCU types with different object files. A maintenance unit (AFX230) is available as an offline setting tool for speeding up the setup change when the production lot is changed and the start-up confirmation of the production line.
NETIMPRESS avant
- DTS InsightAssociated Partner
As ECU development progresses, we received requests to adopt the tools verified in the development to the programming equipment of the production line, and have evolved as a programmer for the production site.
At development, production, and maintenance sites, there are procedures for partially modifying the flash of programmed ECU products according to the purpose and application (software revision, model, grade, destination).
Since the beginning of sales of the NETIMPRESS series, it has been compatible with the function of reprogramming a specific area of flash memory via CAN communication of the in-vehicle network.
It is NETIMPRESS avant to improve the reliability and versatility that we have built up so far, and to enhance the speed, safety measures, functions, and operability with a compact (size of bible) design.
TRACE32® Instruction Set Simulators for AURIX™ TriCore™, Arm® and C166
- Lauterbach GmbHPremium Partner
TRACE32® Tool Qualification Kit (TQSK) for Functional Safety according to ISO 26262, DO-178C, IEC 61508, IEC 62304 and EN 50128
- Lauterbach GmbHPremium Partner
TRACE32® PowerView Software for all Lauterbach Hardware- and Software-Only-Debug- and Trace-Solutions
- Lauterbach GmbHPremium Partner
TRACE32® LogicAnalyzer Extensions for Lauterbach Debug- and Trace-Moduls
- Lauterbach GmbHPremium Partner
- Correlating Digital/Analog Signals to Program Flow enables complex analyses such as best/worst case latencies and signal-software cross-timing
- Measuring target voltage and current consumption for monitoring the energy consumption of the device and locating areas of minimum, mean, and maximum power consumption
- Analyzing a number of industry standard protocols, such as ASYNC (RS232), CAN, I2C, I2S, SPI, JTAG, and SWD
- Close integration with the debugger allows for cross-triggering of hardware and software events to provide precise control
TRACE32® CombiProbe 2 Compact Trace
- Lauterbach GmbHPremium Partner
- With dual multipurpose connectors debugging and tracing of two independent multi-core SoCs at the same time
- Profiling an AUTOSAR® Adaptive-Platform-based OS together with Lauterbach’s ARTI kernel driver and visualization of runtime statistics and timing charts
- To optimize power-hungry code sections, the power consumption of embedded systems can be measured and recorded with Lauterbach’s Mixed-Signal Probe
- Sampling analog and digital signals and correlating them with code for drawing a coherent picture of what is happening simultaneously inside the chip and outside at the pins and peripherals
TRACE32® PowerTrace System
- Lauterbach GmbHPremium Partner
- Determination of the performance of applications and data coverage for certifying safety-critical applications
- Supporting On-Chip- and Off-Chip-Trace and all trace protocols used by Infineon microcontrollers
- Simultaneously inspect of hypervisor, guest operating systems, device drivers, interrupt service routines, middleware and the application software
- Saving ultra long-term test data (hours to weeks of run-time) by streaming the trace data to a local PC
- Recording trace from several cores at the same time using a mix of heterogenous or homogenous processor architectures
TRACE32® PowerDebug System
- Lauterbach GmbHPremium Partner
- The intelligent debug modules provide the highest available download speeds and smallest response times
- PowerDebug system can be extended with trace and logic analyzer modules for run-time analysis, code coverage, or in-depth troubleshooting
- Providing advanced multi-core, hypervisor, and OS-aware debugging. The fully scriptable and sophisticated toolkit allows to solve even the most complex problems
- The consistent GUI saves time, and eases the transition from one CPU architecture to another
TRACE32® Debug- and Trace-Tools for AURIX™ TriCore™ Microcontroller
- Lauterbach GmbHPremium Partner
- Debugging of all TriCore™ CPUs as well as debugging of all auxiliary controllers like PPU, GTM, SCR, HSM and PCP
- Debug port sharing via 3rd party tools
- PIL simulation
- Instruction and Data Trace of cores, on-chip busses and interconnects
- Support for On-chip trace, DAP streaming and AGBT/SGBT high-speed serial trace
- In-depth cache analysis showing valid bits, dirty bits, and LRU information for each cache line
- AUTOSAR, operating system and hypervisor-aware debugging and tracing
- Code coverage analysis for functional safety
CRATE™ Collaborative Remote Automated Test Environment
- BG Networks Inc.Preferred Partner
BGN SAT Security Automation Tool
- BG Networks Inc.Preferred Partner
BSMART
- SMH TECHNOLOGIES SRLAssociated Partner
Bsmart can be power supplied by a conventional power adapter through power jack or by an optionally mountable battery pack.
Bsmart is easily managed by a host PC through Ethernet LAN connection and USB-UART connection or, to gain portability, by Bsmart App for Tablet and Smartphone via Bluetooth connection.
Bsmart is able to interface microprocessors, serial memories, and many other silicon devices directly through the common communication protocols or via CAN/CAN-FD/LIN bus.
TASKING LAPACK PERFORMANCE-LIBRARIES
- TASKINGPreferred Partner
SFX II PXIe C4/FXT-X
- Goepel ElectronicAssociated Partner
SFX II BLADE 4
- Goepel ElectronicAssociated Partner
SFX II CUBE
- Goepel ElectronicAssociated Partner
SYSTEM CASCON
- Goepel ElectronicAssociated Partner
Green Hills Optimizing C/C++ Compilers
- Green Hills SoftwarePreferred Partner
- Use the most recent C and C++ language standards
- Optimize performance by eliminating unnecessary code and variables, inline across modules, better analyze inter-procedural aliases
- Seamlessly integrate the compiler into a build and release automation systems
- Enforce industry-standard coding conventions like MISRA 2004 and MISRA 2012 Certified to meet the highest levels of tool qualification and C/C++ runtime certification:Certified for IEC 61508:2010 (Industrial), EN 50128:2011 (Railway), and ISO 26262:2011 (Automotive) functional safety standards by TÜV NORD and exidaQualified for both SIL 4 and ASIL DRuns on Windows and Linux host development environments.Integration with AUTOSAR Classic, third-party RTOSes, and bare metal
uISP Programmer
- Algocraft SrlAssociated Partner
SMART ICT
- ProMikAssociated Partner
Service providers for Embedded Software development
- KENOTOMPreferred Partner
Embedded software development
- PromwadAssociated Partner
CycurGATE
- ETAS GmbHPremium Partner
CycurSoC
- ETAS GmbHPremium Partner
AURIX™ Code Examples
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AnCyR™ Anomaly Detection and Cyber Resilience
- BG Networks Inc.Preferred Partner
Secure Key Programming & Provisioning
- ProMikAssociated Partner
Together with ProMik's programming and test hardware, it's possible to generate crypto keys during the programming process on the module itself which can be PGP or SHA-2 encrypted for example. In addition, ProMik's production software FlashTask Pro provides an secure API to any MES systems or key management server for receiving and storing keys or serial numbers.
- ProMik Key Generation and Key Provisioning
- Encryption / Decryption
- Cryptographic Support for: PGP, AES, …
- Connection to Customer Infrastructure e.g. MES, key server,
Full on-chip security support
- ProMikAssociated Partner
Full HSM Activation Flow
- Various HSM firmware support
- HSM firmware programming
- Key provisioning
- Key programming
- Firmware update
- Implementation of customer-specific software interfaces
- Debug interface lock
- Flash protection
- Secure Boot Activation
Line-Of-Code Intelligence™
- Aurora LabsPreferred Partner
Hamso services for Embedded Software
- Hamso EngineeringPreferred Partner
Ubiquitous Network Framework
- Ubiquitous AI CorporationPreferred Partner
SYSTEC Design Services
- SYSTEC CorporationPreferred Partner
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IAR Secure Deploy
- IARPreferred Partner
wolfBoot
- wolfSSL Inc.Preferred Partner
IAR Embedded Trust
- IARPreferred Partner
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SensiML Analytics Toolkit for PSoC™ 6
- SensiMLAssociated Partner
DO -178
- wolfSSL Inc.Preferred Partner
curl/ Tiny curl
- wolfSSL Inc.Preferred Partner
DTLS 1.3
- wolfSSL Inc.Preferred Partner
wolfTPM
- wolfSSL Inc.Preferred Partner
wolfSSL JSSE Provider and JNI Wrapper
- wolfSSL Inc.Preferred Partner
wolfSSL embedded SSL library
- wolfSSL Inc.Preferred Partner
wolfSSH
- wolfSSL Inc.Preferred Partner
wolfSentry
- wolfSSL Inc.Preferred Partner
wolfMQTT
- wolfSSL Inc.Preferred Partner
wolfHSM
- wolfSSL Inc.Preferred Partner
wolfCrypt FIPS
- wolfSSL Inc.Preferred Partner
wolfCrypt cryptography engine
- wolfSSL Inc.Preferred Partner
AGNOSAR® Bootloader
- AVIN SystemsPreferred Partner
AGNOSAR® Classic Platform
- AVIN SystemsPreferred Partner
Service providers for Automotive Applications
Industrial Automation Solutions: Hardware & Software
- PromwadAssociated Partner
PROOF
- ETAS GmbHPremium Partner
VSOC
- ETAS GmbHPremium Partner
Infineon Developer Community
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Hamso services for development
- Hamso EngineeringPreferred Partner
MCU Driver Development
- Crossware I/O GmbHPreferred Partner
MCU Connectivity
- Crossware I/O GmbHPreferred Partner
MCU HMI/GUI
- Crossware I/O GmbHPreferred Partner
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OLVIA services
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Integra Sources services for XMC™
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Mixed Mode Services
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KPIT services
- KPIT Technologies Ltd.Preferred Partner
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Intect Solutions Services
- Intecs SolutionsPreferred Partner
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Embedded Office Services
- Embedded OfficePreferred Partner
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DriveXpert Services
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Bluewind Standard support services (Free of charge)
- BluewindPreferred Partner
- First level customer support covering Infineon products/solutions
- Technical interface and support to the customer
- Driving design
- Basic training for design teams
- 24 h response time to the customer Design services and topics requiring specific analysis are a part of Premium Support.
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Bluewind Premium support services (Consultancy model)
- BluewindPreferred Partner
- Specification of general SW architecture defining required layers, control and data flow structure etc.
- Specification and implementation of custom device drivers
- Optimization of software components with regard to speed/code size
- Software testing
- Support of project-specific functional safety engineering
- Project-specific support of security solution
- Safety support
- Security support
- Multicore support
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LEADMOVE Services radar
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TBench Solutions Premium services (Consultancy model)
- TBench SolutionsPreferred Partner
● PCB development ● Schematic drawing and version recording ● Component selection - Board layout ● Software development (single- & multicore) and version recording ● Overall compliance to safety standards e.g. ISO26262 (ASIL A-D and QM) and IEC61508 (SIL 1-4 and QM),e.g. Hazard Analysis, FMEDA & FTA Analysis Testing and documentation
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AVL Standard support services (Free of charge)
- AVLPreferred Partner
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ULMA Embedded Solutions services
- ULMA Embedded SolutionsPreferred Partner
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Tessolve Premium services (Consultancy model) - Advanced technical trainings
- TessolvePreferred Partner
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Teletronics Services
- TeletronicsPreferred Partner
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eInfoships Standard support services (Free of Charge)
- eInfochipsPreferred Partner
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LEADMOVE Services
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Microfuzzy Standard support services (Free of Charge)
- MicrofuzzyPreferred Partner
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Commercial VCU development
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Colorado Engineering - Premium support services (Consultancy model)
- Colorado EngineeringPreferred Partner
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Boot Commander
- Neutron ControlsPreferred Partner
Device Programmer System Partners for PSoC™ 4 |
Blue Clover Devices, DTS Insight, Elnec, Elprotronic, Hi-Lo Systems, LIERDA, PEmicro, Phyton Inc., RPM Systems, Sinaen, SMH Technologies, TPfusion, Xeltek |
Device Programmer System Partners for PSoC™ 4 |
Device Programmer System Partners for PSoC™ Automotive Multitouch |
Hi-Lo Systems Phyton Inc., RPM Systems, Sinaen, SMH Technologies, System General, TPfusion, Xeltek |
Device Programmer System Partners for PSoC™ Automotive Multitouch |
- AURIX™ System Control Units
- AURIX™ Peripheral Sensor Interface with Serial PHY
- AURIX™ Peripheral Sensor Interface
- AURIX™ Versatile Analog-to-Digital Converter
- AURIX™ System Timer
- AURIX™ System Architecture
- AURIX™ Single Edge Nibble Transmission
- AURIX™ Safety Management Unit
- AURIX™ Safety Concept
- AURIX™ Queued Synchronous Peripheral Interface
- AURIX™ Program Memory Unit
- AURIX™ Micro Second Channel
- AURIX™ Memory Test Unit
- AURIX™ Memory Maps
- AURIX™ Interrupt Router
- AURIX™ Inter-Integrated Circuit Module
- AURIX™ Input Output Monitor
- AURIX™ Infineon Low Level Driver
- AURIX™ High Speed Serial Link
- AURIX™ Hardware Security Module
- AURIX™ Generic Timer Module
- AURIX™ General Purpose Timer Unit
- AURIX™ General Purpose Input Output
- AURIX™ FlexRay™ Protocol Controller
- AURIX™ Flexible CRC Engine
- AURIX™ External Bus Unit
- AURIX™ Ethernet MAC
- AURIX™ Direct Memory Access
- AURIX™ Delta-Sigma Analog-to-Digital Converter
- AURIX™ Debug Support
- AURIX™ Controller Area Network
- AURIX™ Central Processing Unit
- AURIX™ Capture Compare Unit 6
- AURIX™ Advanced Driver Assistance Subsystem (ADAS)
- AURIX™ Asynchronous Synchronous Interface
- ADC_Background_Scan_1_KIT_TC275_LK
- ADC_Background_Scan_1_KIT_TC297_TFT
- ASCLIN_LIN_Master_1_KIT_TC297_TFT
- ADC_Filtering_1_KIT_TC275_LK
- ADC_Filtering_1_KIT_TC297_TFT
- ADC_Group_Scan_1_KIT_TC275_LK
- ADC_Group_Scan_1_KIT_TC297_TFT
- ADC_Queued_Scan_1_KIT_TC275_LK
- ADC_Queued_Scan_1_KIT_TC297_TFT
- ADC_Single_Channel_1_KIT_TC275_LK
- ADC_Single_Channel_1_KIT_TC297_TFT
- ASCLIN_LIN_Master_1_KIT_TC275_LK
- ASCLIN_LIN_Master_1_KIT_TC297_TFT
- ASCLIN_Shell_UART_1_KIT_TC237_TFT
- ASCLIN_Shell_UART_1_KIT_TC275_LK
- ASCLIN_Shell_UART_1_KIT_TC275_SB
- ASCLIN_Shell_UART_1_KIT_TC277_TFT
- ASCLIN_Shell_UART_1_KIT_TC297_TFT
- ASCLIN_SPI_Master_1_KIT_TC297_TFT
- ASCLIN_SPI_Master_1_KIT_TC275_LK
- ASCLIN_UART_1_KIT_TC297_TFT
- ASCLIN_UART_1_KIT_TC275_LK-TR
- Assembly_C_Code_1_KIT_TC297_TFT
- Assembly_C_Code_1_KIT_TC275_LK
- Blinky_LED_1_KIT_TC234_TFT
- Blinky_LED_1_KIT_TC237_TFT
- Blinky_LED_1_KIT_TC265_TFT
- Blinky_LED_1_KIT_TC275_LK
- Blinky_LED_1_KIT_TC275_SB
- Blinky_LED_1_KIT_TC277_TFT
- Blinky_LED_1_KIT_TC297_TFT
- BUS_Register_Protection_1_KIT_TC275_LK
- BUS_Register_Protection_1_KIT_TC297_TFT
- CCU6_ADC_1_KIT_TC275_LK
- CCU6_ADC_1_KIT_TC297_TFT
- CCU6_Interrupt_1_KIT_TC275_LK
- CCU6_Interrupt_1_KIT_TC297_TFT
- CCU6_PWM_Capture_1_KIT_TC275_LK
- CCU6_PWM_Capture_1_KIT_TC297_TFT
- CCU6_PWM_Generation_1_KIT_TC275_LK
- CCU6_PWM_Generation_1_KIT_TC297_TFT
- CPU_Perf_Counters_1_KIT_TC275_LK-TR
- CPU_Perf_Counters_1_KIT_TC297_TFT
- CPU_Trap_Recognition_1_KIT_TC275_LK-TR
- CPU_Trap_Recognition_1_KIT_TC297_TFT
- DMA_ADC_Transfer_1_KIT_TC275_LK-TR
- DMA_ADC_Transfer_1_KIT_TC297_TFT
- DMA_Linked_List_Mode_1_KIT_TC275_LK-TR
- DMA_Linked_List_Mode_1_KIT_TC297_TFT
- DMA_Mem_to_Mem_1_KIT_TC275_LK-TR
- DMA_Mem_to_Mem_1_KIT_TC297_TFT
- DSADC_1_KIT_TC275_LK-TR
- DSADC_1_KIT_TC297_TFT
- ERU_Interrupt_1_KIT_TC275_LK-TR
- ERU_Interrupt_1_KIT_TC297_TFT
- FCE_CRC_1_KIT_TC275_LK-TR
- FCE_CRC_1_KIT_TC297_TFT
- Flash_Programming_1_KIT_TC275_LK-TR
- Flash_Programming_1_KIT_TC297_TFT
- GPIO_LED_Button_1_KIT_TC275_LK-TR
- GPIO_LED_Button_1_KIT_TC297_TFT
- GPT12_PWM_Capture_1_KIT_TC275_LK-TR
- GPT12_PWM_Capture_1_KIT_TC297_TFT
- GPT12_PWM_Generation_1_KIT_TC275_LK-TR
- GPT12_PWM_Generation_1_KIT_TC297_TFT
- GPT12_Timer_Concatenation_1_KIT_TC275_LK-TR
- GPT12_Timer_Concatenation_1_KIT_TC297_TFT
- GPT12_Timer_Interrupt_1_KIT_TC275_LK-TR
- GPT12_Timer_Interrupt_1_KIT_TC297_TFT
- GTM_ATOM_Interrupt_1_KIT_TC275_LK-TR
- GTM_ATOM_Interrupt_1_KIT_TC297_TFT
- GTM_ATOM_PWM_1_KIT_TC275_LK-TR
- GTM_ATOM_PWM_1_KIT_TC297_TFT
- GTM_TIM_Capture_1_KIT_TC275_LK-TR
- GTM_TIM_Capture_1_KIT_TC297_TFT
- GTM_TOM_Interrupt_1_KIT_TC275_LK-TR
- GTM_TOM_Interrupt_1_KIT_TC297_TFT
- GTM_TOM_PWM_1_KIT_TC234_TFT
- GTM_TOM_PWM_1_KIT_TC237_TFT
- GTM_TOM_PWM_1_KIT_TC265_TFT
- GTM_TOM_PWM_1_KIT_TC275_LK
- GTM_TOM_PWM_1_KIT_TC275_SB
- GTM_TOM_PWM_1_KIT_TC275_SB
- GTM_TOM_PWM_1_KIT_TC277_TFT
- GTM_TOM_PWM_1_KIT_TC297_TFT
- I2C_Read_Ext_Device_1_KIT_TC297_TFT
- Interrupt_Prio_1_KIT_TC275_LK-TR
- Interrupt_Prio_1_KIT_TC297_TFT
- IOM_PWM_Monitor_1_KIT_TC275_LK-TR
- IOM_PWM_Monitor_1_KIT_TC297_TFT
- IOM_Signals_Comparison_1_KIT_TC275_LK-TR
- IOM_Signals_Comparison_1_KIT_TC297_TFT
- Memory_Access_Performance_1_KIT_TC275_LK-TR
- Memory_Access_Performance_1_KIT_TC297_TFT
- MPU_Memory_Protection_1_KIT_TC275_LK-TR
- MPU_Memory_Protection_1_KIT_TC297_TFT
- MTU_MBIST_1_KIT_TC275_LK-TR
- MTU_MBIST_1_KIT_TC334_LK
- MTU_MBIST_1_KIT_TC297_TFT
- MULTICAN_1_KIT_TC275_LK-TR
- MULTICAN_1_KIT_TC297_TFT
- MULTICAN_FD_1_KIT_TC275_LK-TR
- MULTICAN_FD_1_KIT_TC297_TFT
- MULTICAN_GW_TX_FIFO_1_KIT_TC275_LK-TR
- MULTICAN_GW_TX_FIFO_1_KIT_TC297_TFT
- MULTICAN_RX_FIFO_1_KIT_TC275_LK-TR
- MULTICAN_RX_FIFO_1_KIT_TC297_TFT
- Multicore_1_KIT_TC275_LK
- Multicore_1_KIT_TC275_SB
- Multicore_1_KIT_TC297_TFT
- OneEye_DAS_Oscilloscope_1_KIT_TC234_TFT
- OneEye_DAS_Oscilloscope_1_KIT_TC237_TFT
- OneEye_DAS_Oscilloscope_1_KIT_TC265_TFT
- OneEye_DAS_Oscilloscope_1_KIT_TC275_SB
- OneEye_DAS_Oscilloscope_1_KIT_TC275_LK
- OneEye_DAS_Oscilloscope_1_KIT_TC277_TFT
- OneEye_DAS_Oscilloscope_1_KIT_TC297_TFT
- PWM_Buzzer_1_KIT_TC297_TFT
- OneEye_DAS_Quickstart_1_KIT_TC275_LK
- OneEye_DAS_Quickstart_1_KIT_TC297_TFT
- OneEye_DAS_Shell_1_KIT_TC275_LK
- OneEye_DAS_Shell_1_KIT_TC297_TFT
- OneEye_UART_Mux_1_KIT_TC275_LK
- OneEye_UART_Mux_1_KIT_TC297_TFT
- OneEye_UART_Oscilloscope_1_KIT_TC275_LK
- OneEye_UART_Oscilloscope_1_KIT_TC297_TFT
- OneEye_UART_Shell_1_KIT_TC275_LK
- OneEye_UART_Shell_1_KIT_TC297_TFT
- RAM_Run_Function_1_KIT_TC275_LK-TR
- RAM_Run_Function_1_KIT_TC297_TFT
- SCU_Clock_1_KIT_TC275_LK-TR
- SCU_Clock_1_KIT_TC297_TFT
- SCU_Die_Temp_Sensor_1_KIT_TC275_LK-TR
- SCU_Die_Temp_Sensor_1_KIT_TC297_TFT
- SCU_Emergency_Stop_1_KIT_TC275_LK-TR
- SCU_Emergency_Stop_1_KIT_TC297_TFT
- SCU_Power_Down_Idle_1_KIT_TC275_LK-TR
- SCU_Power_Down_Idle_1_KIT_TC297_TFT
- SCU_Power_Down_Sleep_1_KIT_TC275_LK-TR
- SCU_Power_Down_Sleep_1_KIT_TC297_TFT
- SCU_Power_Down_Standby_1_KIT_TC275_LK-TR
- SCU_Power_Down_Standby_1_KIT_TC297_TFT
- SCU_Reset_Detection_1_KIT_TC275_LK-TR
- SCU_Reset_Detection_1_KIT_TC297_TFT
- SMU_Emergency_Stop_Alarm_1_KIT_TC275_LK-TR
- SMU_Emergency_Stop_Alarm_1_KIT_TC297_TFT
- SMU_Fault_Signaling_1_KIT_TC275_LK-TR
- SMU_Fault_Signaling_1_KIT_TC297_TFT
- SMU_Reset_Alarm_1_KIT_TC275_LK-TR
- SMU_Reset_Alarm_1_KIT_TC297_TFT
- SPI_CPU_1_KIT_TC275_LK-TR
- SPI_CPU_1_KIT_TC297_TFT
- SPI_DMA_1_KIT_TC275_LK-TR
- SPI_DMA_1_KIT_TC297_TFT
- STM_Interrupt_1_KIT_TC237_TFT
- STM_Interrupt_1_KIT_TC275_LK
- STM_Interrupt_1_KIT_TC275_SB
- STM_Interrupt_1_KIT_TC277_TFT
- STM_Interrupt_1_KIT_TC297_TFT
- STM_System_Time_1_KIT_TC275_LK-TR
- STM_System_Time_1_KIT_TC297_TFT
- UART_DMA_Transfer_1_KIT_TC275_LK-TR
- UART_DMA_Transfer_1_KIT_TC297_TFT
- UART_VCOM_1_KIT_TC275_LK
- UART_VCOM_1_KIT_TC297_TFT
- Watchdog_1_KIT_TC275_LK-TR
- Watchdog_1_KIT_TC297_TFT
- SMU_IR_Alarm_1_KIT_TC275_LK-TR
- SMU_IR_Alarm_1_KIT_TC297_TFT
- STM_Interrupt_1_KIT_TC265_TFT
- STM_Interrupt_1_KIT_TC234_TFT
- AURIX™ Asynchronous Synchronous Interface
- AURIX™ Capture Compare Unit 6
- AURIX™ Central Processing Unit
- AURIX™ Debug Support
- AURIX™ Direct Memory Access
- AURIX™ Enhanced Delta-Sigma Analog-to-Digital Converter
- AURIX™ FlexRay Protocol Controller
- AURIX™ General Purpose Input Output
- AURIX™ General Purpose Timer Unit
- 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™ Peripheral Sensor Interface
- AURIX™ Peripheral Sensor Interface with Serial PHY
- AURIX™ Queued Synchronous Peripheral Interface
- AURIX™ Radar Interface
- AURIX™ Single Edge Nibble Transmission
- AURIX™ System Architecture
- AURIX™ System Timer
- AURIX™ CAN Interface
- AURIX™ Clocking System
- AURIX™ Converter Control Block
- AURIX ™ Enhanced Versatile Analog-to-Digital Converter
- AURIX™ External Bus Unit
- AURIX™ Flexible CRC Engine
- AURIX™ Generic Timer Module
- AURIX™ Gigabit Ethernet MAC
- AURIX™ Hardware Security Module
- AURIX™ System Control Units
- AURIX™ Safety Management Unit
- AURIX™ High Speed Serial Link
- AURIX™ Safety Concept
- AURIX™ Non Volatile Memory Subsystem
- AURIX™ 8-bit Standby Controller
- AURIX™ Camera and ADC Interface
- AURIX™ High Speed Pulse Density Modulation
- AURIX™ SD and eMMC Interface
- AURIX ™ SPU Lockstep Comparator
- AURIX ™ Signal Processing Unit
- ADC_Filtering_1_KIT_TC334_LK
- ADC_Filtering_1_KIT_TC375_LK
- ADC_Filtering_1_KIT_TC397_TFT
- ADC_Queued_Scan_1_KIT_TC334_LK
- ADC_Queued_Scan_1_KIT_TC375_LK
- ADC_Queued_Scan_1_KIT_TC397_TFT
- ADC_Single_Channel_1_KIT_TC334_LK
- ADC_Single_Channel_1_KIT_TC375_LK
- ADC_Single_Channel_1_KIT_TC397_TFT
- ASCLIN_LIN_Master_1_KIT_TC334_LK
- ASCLIN_LIN_Master_1_KIT_TC375_LK
- ASCLIN_LIN_Master_1_KIT_TC397_TFT
- ASCLIN_Shell_UART_1_KIT_TC334_LK
- ASCLIN_Shell_UART_1_KIT_TC367_TFT
- ASCLIN_Shell_UART_1_KIT_TC375_LK
- ASCLIN_Shell_UART_1_KIT_TC375_SB
- ASCLIN_Shell_UART_1_KIT_TC377_TFT
- ASCLIN_Shell_UART_1_KIT_TC387_TFT
- ASCLIN_Shell_UART_1_KIT_TC397_TFT
- ASCLIN_SPI_Master_1_KIT_TC334_LK
- ASCLIN_SPI_Master_1_KIT_TC375_LK
- ASCLIN_SPI_Master_1_KIT_TC397_TFT
- ASCLIN_UART_1_KIT_TC334_LK
- ASCLIN_UART_1_KIT_TC375_LK
- ASCLIN_UART_1_KIT_TC397_TFT
- Assembly_C_Code_1_KIT_TC334_LK
- Assembly_C_Code_1_KIT_TC375_LK
- Assembly_C_Code_1_KIT_TC397_TFT
- Blinky_LED_1_KIT_TC334_LK
- Blinky_LED_1_KIT_TC367_TFT
- AURIX_Blinky_LED_1_KIT_TC375_LK
- Blinky_LED_1_KIT_TC375_SB
- Blinky_LED_1_KIT_TC377_TFT
- GPT12_PWM_Generation_1_KIT_TC397_TFT
- CCU6_ADC_1_KIT_TC334_LK
- CCU6_ADC_1_KIT_TC375_LK
- CCU6_Interrupt_1_KIT_TC334_LK
- CCU6_Interrupt_1_KIT_TC375_LK
- CCU6_Interrupt_1_KIT_TC397_TFT
- CCU6_PWM_Capture_1_KIT_TC334_LK
- CCU6_PWM_Capture_1_KIT_TC375_LK
- CCU6_PWM_Capture_1_KIT_TC397_TFT
- CCU6_ADC_1_KIT_TC397_TFT
- CCU_Clock_1_KIT_TC334_LK
- CCU_Clock_1_KIT_TC375_LK
- CCU_Clock_1_KIT_TC397_TFT
- CCU6_PWM_Generation_1_KIT_TC334_LK
- CCU6_PWM_Generation_1_KIT_TC375_LK
- CCU6_PWM_Generation_1_KIT_TC397_TFT
- Blinky_LED_1_KIT_TC387_TFT
- Blinky_LED_1_KIT_TC397_TFT
- BUS_Register_Protection_1_KIT_TC334_LK
- BUS_Register_Protection_1_KIT_TC375_LK
- BUS_Register_Protection_1_KIT_TC397_TFT
- CPU_Perf_Counters_1_KIT_TC334_LK
- CPU_Perf_Counters_1_KIT_TC375_LK
- CPU_Perf_Counters_1_KIT_TC397_TFT
- CPU_Trap_Recognition_1_KIT_TC334_LK
- CPU_Trap_Recognition_1_KIT_TC375_LK
- CPU_Trap_Recognition_1_KIT_TC397_TFT
- DMA_ADC_Transfer_1_KIT_TC334_LK
- DMA_ADC_Transfer_1_KIT_TC375_LK
- DMA_ADC_Transfer_1_KIT_TC397_TFT
- DMA_Linked_List_Mode_1_KIT_TC334_LK
- DMA_Linked_List_Mode_1_KIT_TC375_LK
- DMA_Linked_List_Mode_1_KIT_TC397_TFT
- DMA_Mem_to_Mem_1_KIT_TC334_LK
- DMA_Mem_to_Mem_1_KIT_TC375_LK
- DMA_Mem_to_Mem_1_KIT_TC397_TFT
- EDSADC_1_KIT_TC375_LK
- EDSADC_1_KIT_TC397_TFT
- ERU_Interrupt_1_KIT_TC334_LK
- ERU_Interrupt_1_KIT_TC375_LK
- ERU_Interrupt_1_KIT_TC397_TFT
- Ethernet_1_KIT_TC375_LK
- Ethernet_1_KIT_TC397_TFT
- FCE_CRC_1_KIT_TC334_LK
- FCE_CRC_1_KIT_TC375_LK
- FCE_CRC_1_KIT_TC397_TFT
- Flash_Programming_1_KIT_TC334_LK
- Flash_Programming_1_KIT_TC375_LK
- Flash_Programming_1_KIT_TC397_TFT
- GPIO_LED_Button_1_KIT_TC334_LK
- GPIO_LED_Button_1_KIT_TC375_LK
- GPIO_LED_Button_1_KIT_TC397_TFT
- GPT12_PWM_Capture_1_KIT_TC334_LK
- GPT12_PWM_Capture_1_KIT_TC375_LK
- GPT12_PWM_Capture_1_KIT_TC397_TFT
- GTM_ATOM_Interrupt_1_KIT_TC334_LK
- GTM_ATOM_Interrupt_1_KIT_TC375_LK
- GTM_ATOM_PWM_1_KIT_TC397_TFT
- GTM_TOM_PWM_1_KIT_TC334_LK
- GPT12_Timer_Concatenation_1_KIT_TC334
- GPT12_Timer_Concatenation_1_KIT_TC375_LK
- GPT12_Timer_Concatenation_1_KIT_TC397_TFT
- GPT12_Timer_Interrupt_1_KIT_TC334_LK
- GPT12_Timer_Interrupt_1_KIT_TC375_LK
- GPT12_Timer_Interrupt_1_KIT_TC397_TFT
- GPT12_PWM_Generation_1_KIT_TC334_LK
- GPT12_PWM_Generation_1_KIT_TC375_LK
- GTM_ATOM_Interrupt_1_KIT_TC397_TFT
- GTM_ATOM_PWM_1_KIT_TC334_LK
- GTM_ATOM_PWM_1_KIT_TC375_LK
- GTM_ATOM_PWM_1_KIT_TC397_TFT
- GTM_TIM_Capture_1_KIT_TC334_LK
- GTM_TIM_Capture_1_KIT_TC375_LK
- GTM_TIM_Capture_1_KIT_TC397_TFT
- GTM_TOM_Interrupt_1_KIT_TC334_LK
- GTM_TOM_Interrupt_1_KIT_TC375_LK
- GTM_TOM_Interrupt_1_KIT_TC397_TFT
- GTM_TOM_PWM_1_KIT_TC367_TFT
- GTM_TOM_PWM_1_KIT_TC375_LK
- GTM_TOM_PWM_1_KIT_TC375_SB
- GTM_TOM_PWM_1_KIT_TC377_TFT
- GTM_TOM_PWM_1_KIT_TC387_TFT
- GTM_TOM_PWM_1_KIT_TC397_TFT
- I2C_Read_Ext_Device_1_KIT_TC375_LK
- AURIX_I2C_Read_Ext_Device_1_KIT_TC397_TFT
- Interrupt_Prio_1_KIT_TC334_LK
- Interrupt_Prio_1_KIT_TC375_LK
- Interrupt_Prio_1_KIT_TC397_TFT
- IOM_Signals_Comparison_1_KIT_TC375_LK
- IOM_Signals_Comparison_1_KIT_TC397_TFT
- MCMCAN_1_KIT_TC334_LK
- MCMCAN_1_KIT_TC375_LK
- MCMCAN_1_KIT_TC397_TFT
- MCMCAN_FD_1_KIT_TC334_LK
- MCMCAN_FD_1_KIT_TC375_LK
- MCMCAN_FD_1_KIT_TC397_TFT
- MCMCAN_Filtering_1_KIT_TC334_LK
- MCMCAN_Filtering_1_KIT_TC375_LK
- MCMCAN_Filtering_1_KIT_TC397_TFT
- Memory_Access_Performance_1_KIT_TC334_LK
- Memory_Access_Performance_1_KIT_TC375_LK
- Memory_Access_Performance_1_KIT_TC397_TFT
- MPU_Memory_Protection_1_KIT_TC334_LK
- MPU_Memory_Protection_1_KIT_TC375_LK
- MPU_Memory_Protection_1_KIT_TC397_TFT
- MTU_MBIST_1_KIT_TC375_LK
- MTU_MBIST_1_KIT_TC397_TFT
- Multicore_1_KIT_TC375_LK
- Multicore_1_KIT_TC375_SB
- Multicore_1_KIT_TC377_TFT
- Multicore_1_KIT_TC387_TFT
- Multicore_1_KIT_TC397_TFT
- OneEye_DAS_Oscilloscope_1_KIT_TC334_LK
- OneEye_DAS_Oscilloscope_1_KIT_TC367_TFT
- OneEye_DAS_Oscilloscope_1_KIT_TC375_LK
- OneEye_DAS_Oscilloscope_1_KIT_TC375_SB
- OneEye_DAS_Oscilloscope_1_KIT_TC377_TFT
- OneEye_DAS_Oscilloscope_1_KIT_TC387_TFT
- OneEye_DAS_Oscilloscope_1_KIT_TC397_TFT
- OneEye_DAS_Oscilloscope_1_KIT_TC397_TFT
- OneEye_DAS_Quickstart_1_KIT_TC334_LK
- OneEye_DAS_Quickstart_1_KIT_TC375_LK
- OneEye_DAS_Quickstart_1_KIT_TC397_TFT
- OneEye_DAS_Shell_1_KIT_TC334_LK
- OneEye_DAS_Shell_1_KIT_TC375_LK
- OneEye_DAS_Shell_1_KIT_TC397_TFT
- OneEye_UART_Mux_1_KIT_TC334_LK
- OneEye_UART_Mux_1_KIT_TC375_LK
- OneEye_UART_Mux_1_KIT_TC397_TFT
- OneEye_UART_Oscilloscope_1_KIT_TC334_LK
- OneEye_UART_Oscilloscope_1_KIT_TC375_LK
- OneEye_UART_Oscilloscope_1_KIT_TC397_TFT
- OneEye_UART_Shell_1_KIT_TC334_LK
- OneEye_UART_Shell_1_KIT_TC375_LK
- OneEye_UART_Shell_1_KIT_TC397_TFT
- PMS_Power_Down_Idle_1_KIT_TC334_LK
- PMS_Power_Down_Idle_1_KIT_TC375_LK
- PMS_Power_Down_Sleep_1_KIT_TC334_LK
- PMS_Power_Down_Sleep_1_KIT_TC375_LK
- PMS_Power_Down_Idle_1_KIT_TC397_TFT
- PMS_Power_Down_Sleep_1_KIT_TC397_TFT
- PWM_Buzzer_1_KIT_TC397_TFT
- RAM_Run_Function_1_KIT_TC375_LK
- RAM_Run_Function_1_KIT_TC397_TFT
- SCU_Die_Temp_Sensor_1_KIT_TC334_LK
- SCU_Die_Temp_Sensor_1_KIT_TC375_LK
- SCU_Die_Temp_Sensor_1_KIT_TC397_TFT
- SCU_Reset_Detection_1_KIT_TC397_TFT
- SCU_Emergency_Stop_1_KIT_TC334_LK
- SCU_Emergency_Stop_1_KIT_TC375_LK
- SCU_Emergency_Stop_1_KIT_TC397_TFT
- SMU_Emergency_Stop_Alarm_1_KIT_TC334_LK
- SMU_Emergency_Stop_Alarm_1_KIT_TC375_LK
- SCU_Reset_Detection_1_KIT_TC334_LK
- SCU_Reset_Detection_1_KIT_TC375_LK
- SMU_Emergency_Stop_Alarm_1_KIT_TC397_TFT
- SMU_Fault_Signaling_1_KIT_TC334_LK
- SMU_Fault_Signaling_1_KIT_TC375_LK
- SMU_Fault_Signaling_1_KIT_TC397_TFT
- SMU_IR_Alarm_1_KIT_TC334_LK
- SMU_IR_Alarm_1_KIT_TC375_LK
- SMU_IR_Alarm_1_KIT_TC397_TFT
- SMU_Reset_Alarm_1_KIT_TC334_LK
- SMU_Reset_Alarm_1_KIT_TC375_LK
- SMU_Reset_Alarm_1_KIT_TC397_TFT
- SPI_CPU_1_KIT_TC334_LK
- SPI_CPU_1_KIT_TC375_LK
- SPI_CPU_1_KIT_TC397_TFT
- SPI_DMA_1_KIT_TC334_LK
- SPI_DMA_1_KIT_TC375_LK
- SPI_DMA_1_KIT_TC397_TFT
- SPI_TLF_1_KIT_TC397_TFT
- STM_Interrupt_1_KIT_TC334_LK
- STM_Interrupt_1_KIT_TC367_TFT
- STM_Interrupt_1_KIT_TC375_LK
- STM_Interrupt_1_KIT_TC375_SB
- STM_Interrupt_1_KIT_TC377_TFT
- STM_Interrupt_1_KIT_TC387_TFT
- STM_Interrupt_1_KIT_TC397_TFT
- STM_System_Time_1_KIT_TC334_LK
- STM_System_Time_1_KIT_TC375_LK
- STM_System_Time_1_KIT_TC397_TFT
- UART_DMA_Transfer_1_KIT_TC334_LK
- UART_DMA_Transfer_1_KIT_TC375_LK
- UART_DMA_Transfer_1_KIT_TC397_TFT
- UART_VCOM_1_KIT_TC334_LK
- UART_VCOM_1_KIT_TC375_LK
- UART_VCOM_1_KIT_TC397_TFT
- Watchdog_1_KIT_TC334_LK
- Watchdog_1_KIT_TC375_LK
- Watchdog_1_KIT_TC397_TFT
- AUTO TRAINING: TRAVEO(TM) T2G AUDIO SUBSYSTEM (MXAUDIOSS_VER2) EN
- AUTO TRAINING: TRAVEO(TM) T2G TRIGGER MULTIPLEXER (MXPERI_VER2) EN
- AUTO TRAINING: TRAVEO(TM) II I/O SYSTEM (MXS40IOSS) EN
- AUTO TRAINING: TRAVEO(TM) II BOOT (MXS40SAS*H) EN
- AUTO TRAINING: TRAVEO(TM) II ETHERNET MAC (MXETH) EN
- AUTO TRAINING: TRAVEO(TM) II BODY HIGH AND CLUSTER 2D SRAM INTERFACE (M7CPUSS) EN
- AUTO TRAINING: TRAVEO(TM) II CHIP OPERATIONAL MODES (MXS40SAS*H) EN
- AUTO TRAINING: TRAVEO(TM) II DEVICE SECURITY (MXS40SAS *H) EN
- AUTO TRAINING: TRAVEO(TM) II NONVOLATILE MEMORY PROGRAMMING (MXS40SAS*H EN
- AUTO TRAINING: TRAVEO(TM) II SRAM INTERFACE (M4CPUSS_VER2) EN
- AUTO TRAINING: TRAVEO(TM) II TCPWM (MXTCPWM_VER2) EN
- AUTO TRAINING: TRAVEO(TM) T2G SAMPLE DRIVER LIBRARY EN
- AUTO TRAINIG: TRAVEO™ T2G Boot EN
- AUTO TRAINING: PROTECTION UNITS (M4CPUSS_VER2) EN
- AUTO TRAINING: TRAVEO (TM) II AUDIO DAC (MXDAC) EN
- AUTO TRAINING: TRAVEO (TM) II REAL-TIME CLOCK (RTC) (MXS40SRSS_VER2) EN
- AUTO TRAINING: TRAVEO (TM) II SOUND GENERATOR (MXSG) EN
- AUTO TRAINING: TRAVEO (TM) II WATCHDOG TIMER (MXS40SRSS_VER2) EN
- AUTO TRAINING: TRAVEO (TM) T2G CAN FD CONTROLLER (MXTTCANFD) EN
- AUTO TRAINING: TRAVEO (TM) T2G CLOCK SYSTEM (MXS40SRSS_VER2) EN
- AUTO TRAINING: TRAVEO (TM) T2G POWER SUPPLY AND MONITORING (MXS40SRSS_VER2) EN
- AUTO TRAINING: TRAVEO II SAR ADC (MXS40EPASS) EN
- AUTO TRAINING: TRAVEO(TM) EVENT GENERATOR (MXEVTGEN) EN
- AUTO TRAINING: TRAVEO(TM) II CLOCK SYSTEM (MXS40SRSS_VER3) EN
- AUTO TRAINING: TRAVEO(TM) II CPU SUBSYSTEM (M7CPUSS) EN
- AUTO TRAINING: TRAVEO(TM) II CXPI (MXCXPI) EN
- AUTO TRAINING: TRAVEO(TM) II DEVICE POWER MODES (MXS40SRSS_VER2) EN
- AUTO TRAINING: TRAVEO(TM) II DIRECT MEMORY ACCESS (M4CPUSS_VER2) EN
- AUTO TRAINING: TRAVEO(TM) II FAULT SUBSYSTEM (M4CPUSS_VER2) EN
- AUTO TRAINING: TRAVEO(TM) II FLASH (S40ECT) EN
- AUTO TRAINING: TRAVEO(TM) II FLEXRAY (MXFLEXRAY) EN
- AUTO TRAINING: TRAVEO(TM) II INTER PROCESSOR COMMUNICATION (M4CPUSS_VER2) EN
- AUTO TRAINING: TRAVEO(TM) II LIN (MXLIN) EN
- AUTO TRAINING: TRAVEO(TM) II MIXER (MXMIXER) EN
- AUTO TRAINING: TRAVEO(TM) II POWER SUPPLY AND MONITORING (MXS40SRSS_VER3) EN
- AUTO TRAINING: TRAVEO(TM) II POWER SUPPLY AND MONITORING FOR TVII-C EN
- AUTO TRAINING: TRAVEO(TM) II PROGRAM AND DEBUG INTERFACE (MXS40SAS*H) EN
- AUTO TRAINING: TRAVEO(TM) II PULSE WIDTH MODULATED (PWM) INTERFACE (MXPWM) EN
- AUTO TRAINING: TRAVEO(TM) II SDHC HOST CONTROLLER (MXSDHC) EN
- AUTO TRAINING: TRAVEO(TM) II SERIAL COMMUNICATIONS BLOCK (MXSCB_VER2) EN
- AUTO TRAINING: TRAVEO(TM) II SERIAL MEMORY INTERFACE (MXSMIF_VER2) EN
- AUTO TRAINING: TRAVEO(TM) II TIME DIVISION MULTIPLEXED (TDM) INTERFACE (MXTDM) EN
- AUTO TRAINING: TRAVEO(TM) RESET SYSTEM (MXS40SRSS_VER2) EN
- AUTO TRAINING: TRAVEO(TM) T2G BODY ENTTRY CPU SUBSYSTEM (M4CPUSS_VER2) EN
- AUTO TRAINING: TRAVEO(TM) T2G INTERRUPTS (M4CPUSS_VER2) EN
- AUTO TRAINING: TRAVEO™ T2G Automotive Body Controller Entry/High and Cluster 2D Family Overview EN
- CAN FD for KIT_T2G-B-H_EVK
- Code Flash Sector Data Updating for KIT_T2G-B-H_EVK
- Cryptography AES Demonstration KIT_T2G-B-H_EVK
- Cryptography TRNG Demonstration for KIT_T2G-B-H_EVK
- Device Configurator Timer configuration
- EVTGEN trigger ADC for KIT_T2G-B-H_EVK
- Fault_Handling for KIT_T2G-B-H_EVK
- GPIO Pins for KIT_T2G-B-H_EVK
- HAL GPIO Interrupt for KIT_T2G-B-H_EVK
- HAL I2C Master for KIT_T2G-B-H_EVK
- HAL PWM Square Wave for KIT_T2G-B-H_EVK
- HAL SPI Master for KIT_T2G-B-H_EVK
- HAL TCPWM Timer for KIT_T2G-B-H_EVK
- HAL Watchdog Timer for KIT_T2G-B-H_EVK
- I2C Slave Using Callbacks for KIT_T2G-B-H_EVK
- I2C_Master EZI2C Slave for KIT_T2G-B-H_EVK
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 | X | ||
English | X | ||
German | X | ||
English | X | ||
German |
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English |
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German |
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English |
32-bit: XMC4000/XMC7000/XMC1000®
16-bit: C166, XC166
Training Title |
Language |
Hitex |
Microconsult |
XC2000/XE16x/XC16x/ST10: Architektur, Peripherie und Embedded Programmierung |
German |
||
XC2000/XE16x/XC16x/ST10: Architecture, Peripherals and Embedded Programming |
English |
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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 |
Embedded C: Programmiermethoden und -tools für Embedded-Anwendungen |
German
|
||
Embedded C: Programming Methods and Tools for Embedded Applications | English |
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German |
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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 für 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 für Embedded- und Echtzeitsysteme |
German |
||
RTOS Application: Development of Runtime Architectures for Embedded and Real-time Systems |
English |
TRAVEO™ T2G
Training Title |
Language |
Hitex |
Microconsult |
TRAVEO™ T2G: Mikrocontroller-Architektur für Automotive-Anwendungen | German | X | |
TRAVEO™ T2G: Microcontroller Architecture for Automotive Applications |
English | X |
Did you know that nearly every embedded system starts with a microcontroller? This introductory training provides a high-level view on the Infineon microcontroller portfolio and capabilities with the focus on industrial, IoT & consumer microcontrollers.
Online Trainings / eLearning
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- Identify the communication interfaces available in AURIX™ TC3xx
- Understand their key features
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- Indicate where to find AURIXTM easy-to-reach sources of information and documentation
- Easily identify our tools, software platform and its support ecosystem
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- Understand why systems require frequent updates and how it is done
- Find out how AURIX™ families of microcontrollers support over-the-air software updates
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- 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
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- 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
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- Identify the AURIX™ first generation target application segments, setting trends and portfolio
- Understand the AURIX™ software characteristics and its available tools
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- Know what ADAS is and understand how AURIX™ fits ADAS applications
- Know where to find AURIX™ support models, tools and development kits
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- 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
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- Understand the importance and the main technologies of the electrification of the powertrain
- Understand the operating modes of the electric drive system
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- 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
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- 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
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- Understand what TriCore™ is and identify the advantages it brings to users
- Be aware of the outlook of future developments
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- Find out about the definition of gateway and zone controllers and their typical applications
- Discover the new routing requirements in gateway and zone controllers
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- 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
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- 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
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- 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