Embedded - System On Chip (SoC)

Image Part Number Description / PDF Quantity Rfq
10AS027E1F27I1HG

10AS027E1F27I1HG

Intel

IC SOC CORTEX-A9 1.5GHZ 672FBGA

0

M2S010T-VF400I

M2S010T-VF400I

Roving Networks / Microchip Technology

IC SOC CORTEX-M3 166MHZ 400VFBGA

0

M2S025TS-1VFG400T2

M2S025TS-1VFG400T2

Roving Networks / Microchip Technology

IC SOC CORTEX-M3 166MHZ 400VFBGA

0

10AS057N4F40I3SG

10AS057N4F40I3SG

Intel

IC SOC CORTEX-A9 1.5GHZ 1517FBGA

0

XCZU4CG-L2FBVB900E

XCZU4CG-L2FBVB900E

Xilinx

IC SOC CORTEX-A53 900FCBGA

0

M2S005S-VFG400I

M2S005S-VFG400I

Roving Networks / Microchip Technology

IC SOC CORTEX-M3 166MHZ 400VFBGA

0

XCZU3CG-L2SBVA484E

XCZU3CG-L2SBVA484E

Xilinx

IC SOC CORTEX-A53 484FCBGA

0

XC7Z030-1FBG484C

XC7Z030-1FBG484C

Xilinx

IC SOC CORTEX-A9 667MHZ 484FCBGA

60

1SX250HH1F55E2LG

1SX250HH1F55E2LG

Intel

IC FPGA STRATIX 10 2912FBGA

0

10AS066K4F35E3SG

10AS066K4F35E3SG

Intel

IC SOC CORTEX-A9 1.5GHZ 1152FBGA

0

XCZU7CG-2FBVB900E

XCZU7CG-2FBVB900E

Xilinx

IC SOC CORTEX-A53 900FCBGA

0

10AS016E3F29E2SG

10AS016E3F29E2SG

Intel

IC SOC CORTEX-A9 1.5GHZ 780FBGA

3

10AS032E1F29E1HG

10AS032E1F29E1HG

Intel

IC SOC CORTEX-A9 1.5GHZ 780FBGA

0

10AS066K3F35E2SG

10AS066K3F35E2SG

Intel

IC SOC CORTEX-A9 1.5GHZ 1152FBGA

0

10AS066N2F40E1HG

10AS066N2F40E1HG

Intel

IC SOC CORTEX-A9 1.5GHZ 1517FBGA

0

XCZU11EG-1FFVC1156E

XCZU11EG-1FFVC1156E

Xilinx

IC SOC CORTEX-A53 1156FCBGA

0

10AS027E4F29I3SG

10AS027E4F29I3SG

Intel

IC SOC CORTEX-A9 1.5GHZ 780FBGA

0

XC7Z020-1CLG484I

XC7Z020-1CLG484I

Xilinx

IC SOC CORTEX-A9 667MHZ 484BGA

0

A2F500M3G-1FGG256M

A2F500M3G-1FGG256M

Roving Networks / Microchip Technology

IC SOC CORTEX-M3 100MHZ 256FBGA

0

XCZU3EG-1SFVA625I

XCZU3EG-1SFVA625I

Xilinx

IC SOC CORTEX-A53 625FCBGA

0

Embedded - System On Chip (SoC)

1. Overview

System on Chip (SoC) is a highly integrated semiconductor device that combines multiple electronic system components into a single chip. It typically integrates processors (CPU/GPU/DSP), memory, input/output interfaces, and specialized accelerators. SoCs serve as the core processing units for embedded systems, enabling compact, power-efficient, and cost-effective solutions. Their importance spans modern technology domains including mobile computing, IoT, automotive electronics, and AI edge computing.

2. Main Types and Functional Classification

TypeFunctional FeaturesApplication Examples
Application ProcessorsHigh-performance multi-core CPUs, integrated GPUs, multimedia codecsSmartphones, tablets, smart TVs
Microcontroller SoCsSingle-chip computers with flash memory, ADC/DAC, communication interfacesIndustrial control, sensor nodes, home appliances
FPGA-based SoCsProgrammable logic fabric with hard processor cores5G base stations, autonomous driving systems
AI Accelerator SoCsDedicated NPU units for machine learning inferenceSmart cameras, robotics, edge AI devices

3. Structure and Components

Typical SoC architecture includes:

  • Processing cores (ARM Cortex-A series, RISC-V, etc.)
  • Memory subsystems (cache, on-chip SRAM, external DRAM controllers)
  • Communication interfaces (USB, PCIe, Ethernet, wireless modules)
  • Specialized accelerators (GPU, DSP, VPU, cryptographic engines)
  • System bus matrix for component interconnection
  • Power management units for dynamic voltage/frequency scaling

4. Key Technical Specifications

ParameterDescriptionImportance
Process NodeManufacturing process (e.g., 5nm, 7nm)Impacts power efficiency and performance density
CPU ArchitectureCore count and ISA (ARM/x86/RISC-V)Determines computational capability and software compatibility
Thermal Design Power (TDP)Maximum heat dissipation ratingDictates cooling requirements and battery life
Memory BandwidthData transfer rate between cores and memoryCritical for performance-critical applications
Interface SpeedPCIe 5.0, USB4, etc.Determines peripheral connectivity capability

5. Application Fields

Key application domains include:

  • Consumer Electronics: Smartphones (Apple A15 Bionic), AR/VR headsets
  • Automotive: ADAS systems (NVIDIA DRIVE SoC), vehicle infotainment
  • Industrial: Smart manufacturing sensors, robotic controllers
  • Healthcare: Wearable ECG monitors, portable ultrasound devices
  • Networking: 5G base stations (Qualcomm FSM1000), network switches

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductsKey Features
Qualcomm 8 Gen 2Adreno 750 GPU, Hexagon AI accelerator
AppleM2 SoC12-core CPU, 19-core GPU, unified memory architecture
XilinxZynq UltraScale+ MPSoCQuad-core ARM Cortex-A53 with FPGA fabric
MediaTekDimensity 920012nm process, integrated 5G modem
NVIDIAJets 32NX2384-core Volta GPU for edge AI computing

7. Selection Guidelines

Key selection criteria:

  1. Performance requirements vs. power budget
  2. Required peripheral interfaces and I/O capabilities
  3. Software ecosystem maturity (OS support, development tools)
  4. Long-term supply stability for industrial applications
  5. Security features (hardware encryption, trusted execution)
  6. Cost-effectiveness for target application volume

8. Industry Trends Analysis

Key development trends:

  • Transition to sub-5nm process nodes for improved energy efficiency
  • Increasing integration of AI/ML accelerators in mainstream SoCs
  • Adoption of heterogeneous computing architectures (CPU+GPU+DSA)
  • Advancements in chiplet-based SoC design for modular scalability
  • Enhanced functional safety features for automotive and industrial applications
  • Growing emphasis on hardware-based security mechanisms
The global SoC market is projected to reach $150 billion by 2027, driven by demand in IoT edge devices and automotive electrification.

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