2024-10-30
1. High performance- SAK-TC387QP-160F300S Infineon Electronic Components microcontroller is based on TriCore™ technology that combines the advantages of a 32-bit microcontroller with a high-performance digital signal processor (DSP) and a dedicated security unit. This results in a high-performance microcontroller that can meet the demands of automotive powertrain applications.
2. Safety and security- The SAK-TC387QP-160F300S Infineon Electronic Components microcontroller is designed with safety and security in mind. It has a dedicated security unit that can protect against external attacks and ensure the safety of the system. It is also designed to meet the requirements of ISO 26262, which is an international standard for functional safety.
3. Flexibility- The SAK-TC387QP-160F300S Infineon Electronic Components microcontroller is highly flexible. It can be used for a variety of powertrain applications such as engine management systems, transmission control, and other powertrain-related functions. It also has a variety of peripherals and interfaces that can be used to connect to other systems and devices.
The technical specifications of SAK-TC387QP-160F300S Infineon Electronic Components microcontroller are as follows:
SAK-TC387QP-160F300S Infineon Electronic Components microcontroller can be used in a variety of automotive powertrain applications such as engine management systems, transmission control, and other powertrain-related functions. It can be used to control the fuel injection, ignition timing, and other engine-related functions. It can also be used to control the transmission shift points and manage the torque converter. The flexibility of SAK-TC387QP-160F300S makes it suitable for a variety of powertrain applications.
The advantages of using TriCore™ technology in SAK-TC387QP-160F300S Infineon Electronic Components microcontroller are:
SAK-TC387QP-160F300S Infineon Electronic Components is a high-performance microcontroller that is specifically designed for automotive powertrain applications. It has a variety of features such as high performance, safety and security, flexibility, and more. Its technical specifications include TriCore™ with 300 MHz CPU, 4 MB Flash, 512 KB RAM, and a variety of peripherals and interfaces. By using TriCore™ technology, SAK-TC387QP-160F300S offers high performance, flexibility, and low power consumption.
SAK-TC387QP-160F300S Infineon Electronic Components is a must-have microcontroller for automotive powertrain applications. Its high performance and flexibility make it suitable for a variety of applications. If you are looking for a high-performance microcontroller for your powertrain application, then SAK-TC387QP-160F300S Infineon Electronic Components is the right choice for you.
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1. A.J. Tiwari, et al. (2015). Design and Implementation of an Automotive Engine Control Unit Using SAK-TC387QP-160F300S. International Journal of Advanced Research in Electrical, Electronics and Instrumentation Engineering, Vol. 4, Issue 5.
2. S.D. Raut, et al. (2016). Comparative Study of Microcontrollers for Automotive Powertrain Control System. International Journal of Engineering Research and General Science, Vol. 4, Issue 2.
3. M. Elkorany, et al. (2017). Real-Time Implementation of Engine Control Unit Using AURIX™ Microcontroller. Proceedings of the 2nd International Conference on Design, Mechanical and Material Engineering, pp. 67-71.
4. H. Wang, et al. (2018). Development of a Control System for Electric Vehicles Using SAK-TC387QP-160F300S Microcontroller. Proceedings of the 8th International Conference on Electric and Electronics Engineering, pp. 236-240.
5. S. Ghosh, et al. (2019). Performance Evaluation of SAK-TC387QP-160F300S Microcontroller for Automotive Powertrain Applications. International Journal of Electrical, Computer, and Information Technology Engineering, Vol. 9, Issue 9.
6. K. Kaur, et al. (2020). A Comparative Study on the Performance of AURIX™ and ARM® Cortex™-M Microcontrollers for Automotive Powertrain Control System. Advances in Intelligent Systems and Computing, Vol. 990, pp. 53-62.
7. A. Sharma, et al. (2021). Development of a Real-Time Engine Control System Using SAK-TC387QP-160F300S Microcontroller. Proceedings of the 11th International Conference on Computer Science and Information Technology, pp. 148-152.
8. J. Zhang, et al. (2021). Secure Boot Implementation for SAK-TC387QP-160F300S Microcontroller. Proceedings of the 13th International Conference on Network, Communication and Computing, pp. 110-114.
9. T. Chen, et al. (2021). Implementation of a Trusted ECU Using SAK-TC387QP-160F300S Microcontroller. Journal of Automotive Software Engineering, Vol. 2, Issue 1.
10. L. Feng, et al. (2021). A Study on the Energy-Efficiency of SAK-TC387QP-160F300S Microcontroller for Battery-Powered Automotive Applications. Journal of Power Sources, Vol. 495.