
Embedded - System On Chip (SoC)
Embedded - System On Chip (SoC) - Category Overview
Definition of Embedded - System On Chip (SoC)
Embedded System on Chip (SoC) refers to a highly integrated semiconductor device that combines multiple core computing components onto a single chip. These components typically include a processor (CPU), memory, input/output (I/O) interfaces, and specialized accelerators (e.g., GPU, DSP, or AI cores). SoCs are designed for embedded systems, where compact size, power efficiency, and high performance are critical. They serve as the brain of smart devices, enabling advanced functionality in applications such as IoT, automotive systems, industrial automation, and consumer electronics.
Types of Embedded SoC Products
This category encompasses a diverse range of SoC solutions tailored for different industries and performance requirements:
- Application-Specific SoCs: Optimized for tasks like AI inference (e.g., NVIDIA Jetson, Qualcomm AI Engine) or real-time control (e.g., industrial PLCs).
- General-Purpose SoCs: Flexible designs for broad use cases (e.g., ARM-based SoCs like Raspberry Pi Compute Modules).
- Wireless SoCs: Integrate connectivity (Wi-Fi, Bluetooth, 5G) for IoT devices (e.g., ESP32, Nordic Semiconductor SoCs).
- Automotive SoCs: Compliant with safety standards (ISO 26262), used in infotainment and ADAS (e.g., NXP i.MX, Renesas R-Car).
- FPGA-SoC Hybrids: Combine programmable logic with processors (e.g., Xilinx Zynq, Intel Cyclone V).
Purchasing Recommendations for SoCs
When selecting an SoC, consider:
1. Performance Needs: Match CPU/GPU cores, clock speeds, and memory bandwidth to your workload (e.g., edge AI vs. low-power sensors).
2. Power Efficiency: Critical for battery-operated devices; check TDP (thermal design power) ratings.
3. Connectivity & Peripherals: Ensure built-in interfaces (USB, PCIe, MIPI) align with your system design.
4. Software Support: Verify OS compatibility (Linux, RTOS, Android) and vendor-provided SDKs/drivers.
5. Longevity & Supply: Industrial/automotive projects may require extended lifecycle availability.
Why Choose This Category? SoCs reduce development complexity, accelerate time-to-market, and enable cutting-edge functionality in space-constrained designs. Browse our curated selection to find the ideal balance of integration, performance, and cost for your embedded application.
Filter and sort
Categories
XCZU7EV-3FBVB900E
IC SOC CORTEX-A53 900FCBGA
XCZU4EG-1FBVB900E
IC SOC CORTEX-A53 900FCBGA
XC7Z045-2FFG900E
IC SOC CORTEX-A9 800MHZ 900FCBGA
XCZU3CG-1SFVA625I
IC SOC CORTEX-A53 625FCBGA
XC7Z010-2CLG400E
IC SOC CORTEX-A9 766MHZ 400BGA
XCZU7CG-1FBVB900I
IC SOC CORTEX-A53 900FCBGA
XC7Z020-2CLG484I
IC SOC CORTEX-A9 766MHZ 484BGA
XCVM1802-1LSIVSVD1760
IC VERSAL AICORE FPGA 1760BGA
XCZU15EG-L1FFVB1156I
IC SOC CORTEX-A53 1156FCBGA
XCZU3EG-L2SFVC784E
IC SOC CORTEX-A53 784FCBGA
M2S005S-VF256I
IC SOC CORTEX-M3 166MHZ 256FBGA
XCVM1802-2MLIVSVA2197
IC VERSAL AICORE FPGA 2197BGA
XCZU6CG-L2FFVC900E
IC SOC CORTEX-A53 900FCBGA
M2S005S-VF400I
IC SOC CORTEX-M3 166MHZ 400VFBGA
M2S025-1FGG484
IC SOC CORTEX-M3 166MHZ 484FBGA
XCZU11EG-3FFVF1517E
IC SOC CORTEX-A53 1517FCBGA
XCVM1802-1MLIVSVD1760
IC VERSAL AICORE FPGA 1760BGA
XCZU7EG-1FFVC1156I
IC SOC CORTEX-A53 1156FCBGA
XCZU4EG-1SFVC784E
IC SOC CORTEX-A53 784FCBGA
M2S060T-1VF400
IC SOC CORTEX-M3 166MHZ 400VFBGA