XC23xxE-Series
The XC23xxE microcontrollers are suitable for high-end BCM and gateways with a flash size of up to 1 MB and 128 MHz performance
The XC236xE and XC238xE microcontroller series is based on Infineon's popular and well-established C166 architecture. With the extended flash size of up to1 MB at 128 MHz performance, the microcontroller is well suited for high-end safety applications
Key Features
- 16- and 32-bit C166SV2 CPU
- Up to 90 KB of RAM
- Two very fast 12-bit A/D converters
- Low active power consumption
- Up to 128 MHz frequency
- Parallel flash programming
- Up to 8 serial interfaces (USIC)
- Packages: LQFP 100 and LQFP 144
- Up to 1 MB of flash memory
- 4 PWM units (CCU6) and (CCU2)
- Up to 3 CAN and 64MO
- Temperature range: -40°C to +125°C
About XC23xxE microcontrollers
The XC23xxE series is the high-performance extension of the XC2300 microcontroller family focussing on Safety applications.
The integrated instruction cache (iCache) offers a strong performance boost of up to 30%. In addition the frequancy increase of up to 128MHz brings further
performance improvements.
The new devices of this series, equipped with up to 1MB embedded Flash and optional FlexRay are geared towards automotive Safety applications, like
high-end Airbag, Electric Power-Steering (EPS) or Braking, requiring a higher range of performance or the potential for future performance improvements.
Customer Benefits
- Fast time to market due to Infineon's proven in use safety concept
- Comprehensive safety documentation intelligent error management avoids false alarm and therefore, reduces FIT and DPPM rate
- Scalable platform guarantees optimized cost-performance ratio
- Supports ASIL requirements
XC2300 and CIC61508
The implementation of ISO26262 and IEC61508 std. compliant safety critical systems requires an independent robust safety watchdog for main microcontroller supervision.
Thus, microcontroller-based safety systems, must be made of three components: Main microcontroller, an independent watchdog with robust monitoring channels, and a supporting safety software.
With its safety computing platform, Infineon covers all of these three needed components: The XC2300 MCU family, the CIC61508, an independent
robust watchdog plus, the SafeTcore safety library.
All three components were specified and developed for efficient implementation and fast time to market.
Typical target applications of Infineon’s safety computing platform are IEC61508 and SIL3
and ISO26262 and ASIL-C-ASIL-D applications.
CIC61508:
- Intelligent error management
- Robust monitoring channel
- Up to three safety enable and disable paths
- Task monitoring
- Wide temperature range (-40°C to 140°C)
- TSSOP-38 package
SafeTcore library:
- Processor monitoring and self-tests
- Independent safety monitor software with tasking V5r2p3
- supports ISO26262 and IEC61508
- Small memory footprint typ. 92 KB ROM
Access to additional technical documentation
By registering for My Infineon collaboration platform (myICP), you gain access to additional microcontroller information: Technical add-on documentation, training, tools, and much more. Please follow these steps to get started:
- Register at www.myinfineon.com with your company email address
- Send your access request to traveo@infineon.com (with your MyInfineon login name)
- You will receive a confirmation explaining how to use your new access
The XC236xE (LQFP-100) and XC238xE (LQFP-144) microcontroller series is based on Infineon's popular and well-established C166 architecture. With the extended Flash size of up to1 MB at 128MHz performance, the micro controller is well suited for high-end safety applications
Key Features:
- Up to 128 MHz frequency = 128 MIPS performance
- Up to 1 MB of flash memory and 90 KB of RAM
- Instruction cache
- Parallel Flash Programming
- Up to 4 PWM units (CCU6) to drive 3-phase motor
- Up to 24 ADC channels
- 2 very fast 12-bit A/D converters
- Up to 3-CAN / 64 MO
- Up to 8 serial interfaces (USIC channels)
- Optional FlexRay™ interface (2 channels)
- Low active power consumption
- DAP - Device Access Port (2 wire JTAG, replaces 5 wire JTAG)
XC23xxE Series | ||||||
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Subfamily | XC2361E | XC2367E | XC2368E | XC2387E | XC2388E | |
Core | Core | C166SV2 | ||||
Frequency (MHz) | 100-128 | |||||
Package | QFP 100 | QFP 144 | ||||
Flash | Program Flash (kB) | 512-1024 | 512-1024 | 512-1024 | 512-1024 | 512-1024 |
Flash | Data Flash (kB) | 64 | 64 | 64 | 64 | 64 |
SRAM | ∑ SRAM (kB) | 90 | 90 | 90 | 90 | 90 |
CAN | Channels (message objects) | 2 (64) | 3 (64) | 3 (64) | 3 (64) | 3 (64) |
ADC | Channels | 16 | 16 | 16 | 24 | 24 |
Universal Serial Interface [USIC] Channels* |
6 | 6 | 6 | 6 | 8 | |
Capture Compare Units [CCU]** |
CCU 1 | 0 | 0 | 0 | 0 | 0 |
CCU 2 | 1 | 1 | 1 | 1 | 1 | |
CCU 6 | 2 | 4 | 4 | 4 | 4 | |
Flexray | Channels | 0 | 0 | 2 | 0 | 2 |
Temperatur (Tambient) | -40°C to +125°C |
-40°C to +125°C |
-40°C to +125°C |
-40°C to +125°C |
-40°C to +125°C |
Microcontroller Mediacenter
Please check the youtube channel Infineon4Engineers for more videos.
Partner | Description / Contact |
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ARCCORE is an independent software company providing AUTOSAR solutions to the global automotive market. ARCCORE ’s products include embedded software platforms and development tools and can easily be accessed from ARCCORE’s homepage. ARCCORE offers an innovative business model supporting all stages in the software development process providing both open source and commercial license terms. |
Bluewind's extensive knowledge of Infineon MCU products gives them the capability to provide expert services for full product design covering the complete design cycle: architectural stage, hardware/software design, product testing, CE compliance and post production. http://www.bluewind.it/ifx_home.html |
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E2-CAD |
E2-CAD is a simplified joint stock company, founded in 2001 by people coming from the automotive electronics industry to provide high level consulting and product development support in the field of Powertrain (Electric Vehicle, transmission), Instrument clusters and Body controllers. E2-CAD has developed a Fast Prototyping ECU designed for real embedded test cases. This ECU includes three boards : The generic board includes multi-purpose interfaces for sensors/actuators (solenoids, motors, analog inputs, …) compliant to automotive standard constraints. The CPU board uses the large processing capabilities of Tricore TC 1797 with a BIOS allowing to adapt an applicative software. The third board is optional and designed to integrate specific customer additional functions. http://e2-cad.com/ |
Cichon Engineering Consulting |
http://ing.cichon.com/infineon |
http://www.elektrobit.com/ | |
eSyslogic provides engineering service for Industrial, Consumer and Multi-Media customers to accelerate designs. eSyslogic has extensive knowledge in Infineon 8 and 16 bit MCU coupled with in-depth know-how in application systems providing full turnkey solution to customers. eSyslogic can provide solutions with Infineon MCUs for the following application areas: capacitive touch control board, miniature beauty and healthcare product, ultrasonic slim fit gadget, portable toll gate reader with DVR, wireless charger etc. http://www.esyslogic.com/eng/product/product01_1.asp |
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http://www.etas.com/ | |
Fineio has earned its reputation as a Shenzhen New Hi-tech Enterprise. We specialize in offering professional R&D program to satisfy specific demands from our customers with complete service and support. Our products and business include Induction Cooker, Soybean Milk Maker, Electromagnetic Water Heater ,Air Heater, Electromagnetic Pressure Cooker, Electromagnetic coffee maker, Commercial IH Cooker and Induction heating. We are proud to have a team of professional employees experienced in research and design with a wide sales network. Our business goal is to creat the best brand with the highest reputation and influence in our field. http://www.fineio.com/en/ |
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The MM232R and the UB232R from FTDI are simple and easy-to-use tools to program and communicate with Infineon's XC800 microcontrollers. They provide seamless connection between the PC's USB port and the microcontroller's UART port and work efficiently together with FLOAD (part of DAVEBENCH).
Applications:
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With 35 years experience in micrcontroller designs, Hitex offers development tools and development services in HW, SW and testing for Infineon microcontrollers. For safety applications according to SIL/ASIL (IEC61508, ISO26262) or ClassB (IEC60335, IEC60730), Hitex can serve you in consulting, with self test software, integration and certification. https://www.hitex.com/ |
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IHR is an independent company based in Rheinmünster/Germany with global offices and representatives (started in 1992 as a test laboratory and developer for driver / bus software (CAN, LIN, Flexray Ethernet)). Additionally, IHR has been active in the field of automotive application software for Tier 1's and OEM's in the field of stepper motors and flap control in the extended climatic range, actuators, ventilation of the vehicle interior and performance regulation in the seat comfort area. The projects (including ASIL requirements) are implemented according to the IHR Q management system (analogous to ISO TS 16949) and the work is carried out according to SPICE processes. Development Tools for crosslinking in automobiles
And other solutions, for example: Expert Systems for the analysis of network timings, Measuring Tools for the integration of control units, Testing Tools for the production at the OEM and Tier1. |
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https://www.kpit.com/ | |
Infineon and MESCO Engineering entered a cooperation to provide reference designs for IO-Link developments and full engineering service using infineon microcontroller. The MESCO IO-Link device stack is ported to a XC800 microcontroller. https://www.mesco-engineering.com/ |
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For over 20 years, Mixed Mode, a PIXEL Group company, has successfully supported its customers in the development of embedded and software engineering. Mixed Mode is a preferred supplier partner for Infineon projects and as such has extensive know-how of Infineon microcontroller platforms & tools (e.g. 166-, XMC-, TriCore- and Aurix- families).
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http://powerelectronics.de/ | |
Murata offers technical support for Ceramic Resonators and Crystals to get the optimum oscillation circuit conditions for Infineon MCUs. https://www.murata.com/ | |
NDK Nihon Dempa Kogyo Co.Ltd is one of the top brand in the quartz crystal industry. Market leader especially in the field of automotive applications and telecommunication. With long experience in circuit design we offer measurement to ensure stable oscillation of crystal in the oscillator circuitry. For details about our service kindly follow the url of our German partner Frischer Electronic GmbH: http://www.frischer-frg.com/ |
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In the field of embedded systems, softgate develops high-performance software based on your specific requirements and needs. We focus on the area of real-time systems, low-level programming, and communication buses. Here, an important element is our experience in the microprocessor environment. softgate has extensive knowledge in Infineon 8-bit, 16-bit controllers and in TriCore™ architecture. softgate has been realizing very demanding projects for various companies from the automotive, medical and consumer electronics sector already. http://www.soft-gate.de | |
http://www.sotec.eu | |
TELNET is a Global provider of Offshore/Nearshore Product Development and Engineering Services, following Partnership approaches to servicing our customers worldwide.
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Developing software in conformance with Safety Critical Standards can greatly increase development cost, challenges, costs, and risks. It is critical to optimize your processes to achieve compliance efficiently and cost effectively. Long or short-term Project Consulting, Mentoring. Regulatory Compliance Training and Consulting to help reduce the cost of software certification, Software Development and Testing services to mentor, coach, assist, or fully outsource any of your software engineering activities –e.g. Gap Analysis. Deep domain expertise and real-world experience with Industry Standards including: Avionics Standards: DO-178B, DO-178C, DO-254, Medical Standards: FDA 510(k), PMA, Automotive Standard: ISO 26262,Railway Standards: CENELEC, EN 50126, EN 50128, and EN 50129, Industrial Automation Standard: IEC 61508 |
Infineon offers programming services for certain customer-specific applications. We adapt programs for specific needs in applications such as automotive and electric motor control, building on Infineon’s Microcontroller Firmware and Software libraries.
For more Information on Programming Services please contact your nearest Infineon sales office or contact one of our partners below:
Company Name and Weblink | XC800 | XC2000 | Aurix™ | Description |
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btv technologies gmbh |
X | X | X | btv offers: State of the art programming , tape & reel and logistics services, on 7 days a week, 24 hours. Main customers come from the automotive and telecommunications sector. We are certified acc. to TS16949, ISO9001. |
FALCON |
X | X | Falcon Denshi K.K. offers the programming service from 1 chip to mass production in Japan market. Falcon Programming Center is able to offer ROM programming service, marking, taping & reeling, baking, dry packing, 2D inspection, 3D lead scan and socket cleaning & restoration service and so on. | |
X | X | X | Full-fledged Automatic Programming Service Founded in 2002, Flatek provide programming and testing services in Great China Market, including service facilities in Taipei, Shenzhen, Shanghai, Chengdu, and Zhengzhou. Flatek is a ISO-9001 certified company. Major Services:
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Hi-Lo Systems |
X | X | HI-LO SYSTEMS established its Programming Center in 2001 This Center has been ISO-9001 and TS-16949 certified. HI-LO Programming Center is able to offer comprehensive and also competitive solutions for device programming, marking, taping & reeling, baking, dry packing, laser mark, 2D inspection and 3D lead scan, etc., including special request of customized devices programming and packing. Hi-Lo offers the programming services in Great China zone, including Taipei, Hsinchu, Hong Kong and Shanghai. |
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HTV GmbH |
X | X | X | Programming of electronic components: • Programming capacity >750,000 pcs/day • Programming of all electronic components incl. wafer-programming • Own development of algorithms & adapters • HTV-On-Site Programming - programming at customer's facility In addition we provide a full range of services like complex serial number programming, automated tape&reel service with 3D lead-inspection, laser marking, marking removal etc.
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Test and Qualification of electronic components: • Testing capacity >450,000 pcs/day • Data sheet and electrical authenticity test • Component qualification & environmental simulations • Screening of specific parameters • Fully automated high capacity testers • Development of test programs and ASICs HTV offers fast and flexible testing solutions tailor made to specific customer requirements. We test and qualify wafers, components and assemblies. Our engineers are specialized in performing complex test applications including own development of test-programs and robots.
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Long-Term Conservation of electronic components: Our unique Thermal-Absorptive Gas-Barrier Method TAB® offers a long-term conservation of components or complete devices currently up to 50 years. This product-specific reduction of the determining physical and chemical aging processes keeps components alive for decades also after end-of-life announcement. Analysis of electronic components, packaging, wafer sawing, tinning & retinning etc. Certification: ISO/TS16949 & ISO9001 |
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X | X | X | Full-fledged Automatic Programming Service ProMik’s trusted programming services build on 10 years experience and offer fully automated and integrated programming systems. Our services range from automated device handling/programming with lead inspection (2D-Collinearity and 3D-Coplanarity), laser-marking with full traceability to logistic services. ProMik offer an additional advantage for its customers: accessible engineering Know-How on site. Programming
Competence in this area has enabled Promik to STL (Ship to line) for key Automotive customers Certification TS16949 and ISO9001 |
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X | X | X | SEMITRON W.Röck GmbH was founded 1975 in south of Germany by Mr. Dipl.-Ing. Werner Röck More than 40 Years competence and experience! Meanwhile 140 employees, independent company with flexible structures and flat hierarchy. This company has been ISO-9001 certified and offer the programming service worldwide. Company locations are in Germany and Switzerland. For programming Security Devices, MCU`s, EPROM`s, FLASHE`s ( standard, NAND, NOR… ) OTP`s, PLD`s … we use systems from DATA I/O, BP Microsystems, ELNEC, HI/LO … etc. Automatically programming and Tape & Reel of SOT23 is no problem since 10 year`s. Marking options: Label, Ink and Laser Inspection options: 2D and 3D Leadscan Delivery: Tray, Tube and Tape & Reel Packaging: ESD, Dry Pack, Nitrogen Programming capacity: up to 500`000 pcs./day Additional services!
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For programming services companies: If you offer programming services specific for Infineon Microcontrollers and want to be listed on this page, please send a message to MC-Software@infineon.com.
- 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 |
|||
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 |
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 |
Embedded C: Programmiermethoden und -tools für 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 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 |