// our offering We Offer an MCU/MPU programming blogs of different semiconductor companies NXP Semiconductors To explore Automotive, edge AI,
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Gettobyte develops AI-driven and secure solutions for embedded devices using semiconductor chips by leveraging Edge AI and Cryptography. While currently focused on the automotive industry, our long-term vision extends to broader domains requiring real-time processing and secure communication.
Excited with the automotive technologies?? Want to learn the software technologies, which runs the vehicles...
Automotive Sensor and Module Interfacing(ADAS)
Learn Different Automotive protocols like: CAN, LIN, Ethernet, using Autosar MCAL Drivers and ElecronicsV3(S32K144 MCU)/AutoBoardV1(S32K344...
Cryto Security Model: Hardware Security Peripheral’s (HSM) using S32K3xx
// our offering We Offer an MCU/MPU programming blogs of different semiconductor companies NXP Semiconductors To explore Automotive, edge AI,
STM32 We carry more than just good coding skills. Our experience makes us stand out from other web development. SPC5
S32 Automotive Microcontrollers We carry more than just good coding skills. Our experience makes us stand out from other web
// our offering We Offer an MCU/MPU programming blogs of different semiconductor companies NXP Semiconductors To explore Automotive, edge AI,
Unlocking the Power of Semiconductor Chips in Embedded Systems Semiconductor chips are the backbone of modern embedded systems, powering everything…
https://youtu.be/kgsLO2cDsKI Automotive Secure Communication Over CAN -FD using Cryptography(SHE Peripheral) Description: Demonstration of Standard CAN Communication between couple of Gettobyte
Automotive Microcontroller training at DTU College for Autosar MCAL Layer on Industrial Microcontroller of NXP S32K144 MCU.
Explore this blog to know about UART peripheral in Microcontroller for doing UART communication
Explore this blog to know about SPI peripheral in Microcontroller for doing SPI communication
The powertrain domain includes key components such as the engine, transmission, and energy management systems, responsible for vehicle propulsion. With the rise of EVs and hybrid vehicles, real-time optimization through Edge AI is crucial, while Cryptography ensures protection against malicious data manipulation.
The chassis domain governs vehicle stability, suspension, and braking systems, ensuring safe handling and ride comfort. Edge AI enhances adaptive performance, while Cryptography prevents cyber threats from interfering with safety-critical functions
The body control domain handles vehicle access, lighting, climate control, and in-cabin automation. Edge AI enables intelligent automation, while Cryptography ensures only authorized commands are executed.
HMI systems enable driver interaction through touchscreens, voice commands, and gestures. Edge AI personalizes the user experience, while Cryptography protects against unauthorized access and data breaches.
Telematics Domain
The telematics domain includes GPS tracking, vehicle connectivity, and over-the-air (OTA) updates, essential for modern automotive ecosystems. Edge AI enhances predictive analytics, while Cryptography safeguards data integrity.
This domain includes Advanced Driver Assistance Systems (ADAS), collision prevention, and occupant protection technologies. Edge AI enables real-time risk assessment, while Cryptography ensures sensor data authenticity.