SAK-TC399XE-256F300S BC
Trace, Measurement and Calibration in the target system
The SAK-TC399XE-256F300S BD belongs to the TC39x Emulation Devices, . It has the same feature set as the TC39x standard family with additional debug and tracing capabilities. The TC39xXE offers support for calibration, rapid prototyping, instrumentation and debug/emulation.
TC39xXE is based on TC39x. It can be used to emulate:
- TC39x standard devices (6 CPUs)
- TC38x standard devices (4 CPUs)
Standard Features
TC39xXE has the same features as the TC39x standard devices:
- 6 TriCore running at 300 MHz
- 16 MB flash/ ECC protection
- 6,9 MB SRAM/ ECC protection (additional 4 MB EMEM)
- 1 Gbit Ethernet, 12xCAN FD , 2xFlexRay, 12xLINs, 4xQSP , 2xI²C , 25xSENT, 6xPSI, 2xHSSL, 4xMSC , 1x eMMC/SDIO, GTM, CCU6, GPT12, HSM
- LFBGA-516 package
- Single voltage supply 5 V or 3.3 V
- Temperature : 40°C to 125°C
Emulation Features
- 4 MB Extension Memory (EMEM) for calibration and tracing (2 MB)
- Multi-Core Debug Solution (MCDS)
- Parallel and time aligned trace of cores and busses
- Powerful trigger conditions
- On-chip logic analyzer functions
- Additional DAP interface (DAPE) for connecting a second independent tool
- Injector for faults and stress (IFS)
- Aurora Gigabit Trace (AGBT) support
- CPUs have full access to all emulation resources, enabling all kind of interfaces (e.g. Ethernet) as tool connection
Benefits
- Higher software/system quality and faster time to market with best in class:
- Multi-core debugging and trace
- Trace based measurement
- Rapid prototyping
- Calibration
- Strong AURIX 1G compatibility
- Maintains investment in tools and knowledge
- Early availability of attractive tooling solutions
- Minimizes the risk
- Scalable tooling options from very cost effective to highest performance
- Consistent architecture over the whole family for all packages
- Different tool combinations due to two DAP interfaces
- Very cost effective trace
MCDS tracing can be evaluated using the free of charge MCDS Trace Viewer tool which comes with the DAS installation www.infineon.com/DAS
Compatibility
Full compatibility with TC39x standard devices. For TC38x systems the following points need to be considered:
- Thermal design and power supply need to support the higher TC39xXE power consumption
- SW needs to be tolerant to the different CHIPID and JTAGID values
- The upper 12 ASCLIN modules (out of 24) of TC38x may not be used
AURIX™ Embedded Software
AUTOSAR suits from 3rd parties
AURIX™ Tool
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Understand how hackers use the CAN bus to interfere with in-vehicle communication, and be aware of how Infineon’s AURIX™ microcontrollers support secure CAN communication. |
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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 |
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| English |
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| German |
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| 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 |
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| XMC4000 / XCM1000 Workshop: 32-Bit Industrial Microcontroller ARM® Cortex-M4/ ARM® Cortex-M0 |
English |
16-bit: C166, XC166
| Training Title |
Language |
Hitex |
Microconsult |
| X | |||
| X | |||
| XC2000/XE16x/XC16x/ST10: Architektur, Peripherie und Embedded Programmierung |
German |
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| 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 |
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| XC8xx/C500/8051 8-Bit Microcontrollers: Architecture and Embedded Programming | English | X |
Operating system and Applications
| Operating system and Applications | Language | Hitex | Microconsult |
| X | |||
| X | |||
| Embedded C: Programmiermethoden und -tools for Embedded-Anwendungen |
German
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| 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 |
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| Tracen und Multicore Debugging mit der PLS Universal Debug Engine UDE |
German |
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| Tracing and Multicore Debugging with the PLS Universal Debug Engine UDE |
English |
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| Tracen und Multicore Debugging for TriCore/AURIX (MCDS) mit Lauterbach TRACE32 |
German |
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| Tracing and Multicore Debugging for TriCore/AURIX (MCDS) with Lauterbach TRACE32 |
English |
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| German |
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| English |
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| German |
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| English |
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| RTOS-Anwendung: Entwicklung von Laufzeit-Architekturen f¼r Embedded- und Echtzeitsysteme |
German |
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| RTOS Application: Development of Runtime Architectures for Embedded and Real-time Systems |
English |
- AURIX™ Asynchronous Synchronous Interface
- AURIX™ Advanced Driver Assistance Subsystem (ADAS)
- AURIX™ Capture Compare Unit 6
- AURIX™ Central Processing Unit
- AURIX™ Controller Area Network
- AURIX™ Debug Support
- AURIX™ Delta-Sigma Analog-to-Digital Converter
- AURIX™ Direct Memory Access
- AURIX™ Ethernet MAC
- AURIX™ External Bus Unit
- AURIX™ Flexible CRC Engine
- AURIX™ FlexRay™ Protocol Controller
- AURIX™ General Purpose Input Output
- AURIX™ General Purpose Timer Unit
- AURIX™ Generic Timer Module
- AURIX™ Hardware Security Module
- AURIX™ High Speed Serial Link
- AURIX™ Infineon Low Level Driver
- AURIX™ Input Output Monitor
- AURIX™ Inter-Integrated Circuit Module
- AURIX™ Interrupt Router
- AURIX™ Memory Maps
- AURIX™ Memory Test Unit
- AURIX™ Micro Second Channel
- AURIX™ Program Memory Unit
- AURIX™ Queued Synchronous Peripheral Interface
- AURIX™ Safety Concept
- AURIX™ Safety Management Unit
- AURIX™ Single Edge Nibble Transmission
- AURIX™ System Architecture
- AURIX™ System Timer
- AURIX™ Versatile Analog-to-Digital Converter
- AURIX™ Peripheral Sensor Interface
- AURIX™ Peripheral Sensor Interface with Serial PHY
- AURIX™ System Control Units
- AURIX™_ASCLIN_UART_1
- AURIX ™_ASCLIN_LIN_Master_1
- AURIX ™_ASCLIN_Shell_UART_1
- AURIX™_ASCLIN_SPI_Master_1
- AURIX™_ADC_Background_Scan_1
- AURIX™_ADC_Group_Scan_1
- AURIX™_Blinky_LED_1
- AURIX™_CCU6_ADC_1
- AURIX™_CCU6_Interrupt_1
- AURIX™_CCU6_PWM_Generation_1
- AURIX™_CCU6_PWM_Capture_1
- AURIX™_CPU_Perf_Counters_1
- AURIX™_DMA_ADC_Transfer_1
- AURIX™_DMA_Linked_List_Mode_1
- AURIX™_DMA_Mem_to_Mem_1
- AURIX™_DSADC_1
- AURIX™_ERU_Interrupt_1
- AURIX™_GPT12_PWM_Capture_1
- AURIX™_FCE_CRC_1
- AURIX™_GPT12_Timer_Concatenation_1
- AURIX™_GPIO_LED_Button_1
- AURIX™_GTM_ATOM_Interrupt_1
- AURIX™_GTM_ATOM_PWM_1
- AURIX™_GTM_TOM_Interrupt_1
- AURIX™_GTM_TOM_PWM_1
- AURIX™_GTM_TIM_Capture_1
- AURIX™_I2C_Read_Ext_Device_1
- AURIX™_Interrupt_Prio_1
- AURIX™_IOM_PWM_Monitor_1
- AURIX™_IOM_Signals_Comparison_1
- AURIX™_MTU_MBIST_1
- AURIX™_MULTICAN_GW_TX_FIFO_1
- AURIX™_MULTICAN_1
- AURIX™_MULTICAN_FD_1
- AURIX™_Multicore_1
- AURIX™ _PWM_Buzzer_1
- AURIX™ _RAM_Run_Function_1
- AURIX™_SCU_Clock_1
- AURIX™_SCU_Die_Temp_Sensor_1
- AURIX™_SCU_Emergency_Stop_1
- AURIX™_SCU_Power_Down_Idle_1
- AURIX™_SCU_Power_Down_Sleep_1
- AURIX™_SCU_Reset_Detection_1
- AURIX™_SMU_Emergency_Stop_Alarm_1
- AURIX™_SMU_IR_Alarm_1
- AURIX™_SMU_Reset_Alarm_1
- AURIX™_SPI_CPU_1
- AURIX™_SPI_DMA_1
- AURIX™_STM_Interrupt_1
- AURIX™_UART_DMA_Transfer_1
- AURIX™_UART_VCOM_1
- AURIX™_Watchdog_1







