Automotive Electronics is a critical component in modern vehicles, enabling advanced functions such as infotainment, driver assistance, and vehicle control. As the automotive industry moves toward electrification, these systems play an even more essential role in managing battery performance, energy efficiency, and overall vehicle operation. Electrification & Battery Systems focus on developing high-performance batteries, power management units, and thermal control solutions to support electric and hybrid vehicles. These systems ensure reliable energy storage, efficient charging, and optimal battery life. Charging Infrastructure is a key enabler for widespread adoption of electric vehicles (EVs), offering fast, safe, and convenient charging solutions. It includes both public and private charging stations, as well as smart grid integration for efficient energy distribution. Wireless Connectivity enhances the driving experience by enabling seamless communication between the vehicle, the driver, and external networks. It supports features like over-the-air updates, real-time navigation, and vehicle-to-everything (V2X) communication. Together, these technologies form the backbone of next-generation automotive systems, supporting safer, smarter, and more sustainable mobility solutions. They are widely used in passenger cars, commercial vehicles, and autonomous driving platforms, meeting the growing demand for connected and electric transportation.
Series Name | Description | Manufacturer Name | Attribute Description |
---|---|---|---|
onsemi | 1200V, 30A, 1.7kV IGBT module, Trench Field-Stop technology, 2500V isolation, high efficiency, low switching losses, suitable for industrial motor drives and inverters. | ||
onsemi | 14-bit SPI input, 6 high-side drivers, 8 low-side drivers, I/O expanders with fault detection, wide supply voltage (5V to 27V), operating temperature -40°C to 150°C, designed for automotive applications. | ||
onsemi | 12V automotive multi-switch interface, SPI communication, 6 configurable inputs, LED driver capability, low-power mode, high ESD protection, wide operating temperature range, designed for harsh environments. | ||
STMicroelectronics | 32-bit Arm® Cortex®-M4, 64 MHz, 512 KB Flash, 128 KB SRAM, Bluetooth 5.3, BLE, 2.4 GHz radio, ultra-low power, integrated DC/DC, multiple peripherals, QFN48 package. | ||
STMicroelectronics | Bluetooth 5.0 LE, 2.4GHz, 128KB Flash, 20KB RAM, -96dBm sensitivity, +10dBm output, integrated balun, low power consumption, supports multiple profiles and mesh networking. | ||
STMicroelectronics | Ultra-low-power Bluetooth LE 5.3 SoC, 2.4GHz radio, ARM Cortex-M0+, 16MHz, 256KB flash, 32KB RAM, integrated DC-DC converter, multiple peripherals, supports Bluetooth mesh, AES encryption, operating voltage 1.7V to 3.6V. | ||
STMicroelectronics | Bluetooth Low Energy 1 Mbps, 2.4GHz radio, ARM Cortex-M0 MCU, 16MHz clock, 160KB Flash, 24KB RAM, ultra-low power consumption, integrated balun, multiple peripherals, supports Bluetooth 5.0. | ||
STMicroelectronics | Bluetooth 4.2 compliant, 2.4GHz radio, 16MHz Cortex-M0, 128KB Flash, 20KB RAM, ultra-low power consumption, supports BLE and 802.15.4, integrated balun, 2.1-3.6V supply. | ||
STMicroelectronics | ARM Cortex-M4/M0+ dual-core, 64MHz, 1MB Flash, 256KB RAM, Bluetooth 5, Zigbee, Thread, 2.4GHz RF, 144-pin UFBGA package, operating voltage 1.7-3.6V, -40°C to +85°C. | ||
STMicroelectronics | ARM Cortex-M4/M0+ dual-core, 64MHz, 1MB Flash, 256KB RAM, Bluetooth 5, Zigbee, Thread, 2.4GHz RF, USB, SPI, I2C, UART, ADC, DAC, 1.7-3.6V, QFN48 package. |