Embedded - Microprocessors

Image Part Number Description / PDF Quantity Rfq
AM1705DPTPD4

AM1705DPTPD4

Texas Instruments

AM1705 SITARA PROCESSOR: 32-BIT,

40

AM3715CBPD100

AM3715CBPD100

Texas Instruments

RISC MICROPROCESSOR, 32 BIT, 100

840

AM3505AZER

AM3505AZER

Texas Instruments

AM3505 SITARA PROCESSOR: ARM COR

920

AM3357BZCZD30

AM3357BZCZD30

Texas Instruments

IC MPU SITARA 300MHZ 324NFBGA

106

OMAP3530EZCBB

OMAP3530EZCBB

Texas Instruments

OMAP3530EZCBB

0

AM5716AABCDEA

AM5716AABCDEA

Texas Instruments

SITARA PROCESSOR

0

AM5729BABCXEAR

AM5729BABCXEAR

Texas Instruments

AM5729BABCXEA REEL

245

AM3352BZCED30

AM3352BZCED30

Texas Instruments

IC MPU SITARA 300MHZ 298NFBGA

249

AM3352BZCEA60

AM3352BZCEA60

Texas Instruments

IC MPU SITARA 600MHZ 298NFBGA

0

AM3358BZCZ60

AM3358BZCZ60

Texas Instruments

IC MPU SITARA 600MHZ 324NFBGA

0

AM3517AZCNAC

AM3517AZCNAC

Texas Instruments

IC MPU SITARA 600MHZ 491NFBGA

0

AM3352ZCE27

AM3352ZCE27

Texas Instruments

32-BIT, 275MHZ, CMOS, PBGA298

529

OMAP3503EZCBCS

OMAP3503EZCBCS

Texas Instruments

OMAP3503EZCBCS

0

AM1808BZWT3

AM1808BZWT3

Texas Instruments

RISC MPU, 32-BIT, 375MHZ

7601

AM3358BZCZA100

AM3358BZCZA100

Texas Instruments

IC MPU SITARA 1.0GHZ 324NFBGA

1250

OMAP3503DCBB

OMAP3503DCBB

Texas Instruments

IC MPU OMAP-35XX 600MHZ 515FCBGA

0

AM3894ACYG120

AM3894ACYG120

Texas Instruments

32-BIT, 1200MHZ, CMOS, PBGA1031

268

AM1808BZWTD4

AM1808BZWTD4

Texas Instruments

RISC MPU, 32-BIT, 456MHZ

52

DP8344BV

DP8344BV

Texas Instruments

IC MPU 20MHZ 84PLCC

0

AM1808BZCE3

AM1808BZCE3

Texas Instruments

RISC MPU, 32-BIT, 375MHZ

70067

Embedded - Microprocessors

1. Overview

Embedded microprocessors are specialized computing units designed for dedicated control, monitoring, or processing tasks within electronic systems. Unlike general-purpose CPUs, they integrate processing cores, memory interfaces, and peripheral controllers into a single chip (SoC) to optimize performance, power efficiency, and cost for specific applications. These devices form the backbone of modern IoT, automotive systems, industrial automation, and consumer electronics.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
ARM Cortex-M SeriesLow-power 32-bit cores with real-time capabilities, optional DSP extensionsSmart sensors, wearables, motor control
PowerPCHigh reliability, floating-point units, automotive/Aerospace focusedVehicle ECUs, avionics systems
MIPSEfficient pipelining, 32/64-bit variants for multimedia processingNetworking equipment, set-top boxes
RISC-VOpen instruction set, modular architecture for customizationAI accelerators, edge computing devices
x86 (Embedded)PC compatibility, high processing power with integrated GPUsIndustrial PCs, medical imaging equipment

3. Architecture and Components

A typical embedded microprocessor contains:

  • Processing Core(s): RISC/Complex Instruction Set architectures with 1-8 cores
  • Memory Subsystem: Integrated SRAM, ROM, and external DRAM controllers
  • Peripheral Interfaces: UART, SPI, I2C, USB, CAN, PCIe, Ethernet MAC
  • Real-Time Components: Watchdog timers, PWM generators, ADC/DAC modules
  • Power Management: Multiple sleep modes, DVFS (Dynamic Voltage/Frequency Scaling)

4. Key Technical Specifications

ParameterDescriptionImportance
Clock FrequencyOperating speed (10MHz-6GHz)Determines processing throughput
Instruction SetRISC vs CISC architectureAffects code density and power consumption
TDP (Thermal Design Power)Power consumption under load (100mW-50W)Dictates thermal management requirements
Process NodeManufacturing technology (28nm-5nm)Impacts performance and energy efficiency
Memory BandwidthData transfer rate between core and memoryLimits performance in data-intensive tasks

5. Application Domains

  • Consumer Electronics: Smartphones (application processors), home appliances
  • Automotive: ADAS controllers, engine management systems
  • Industrial: PLCs (Programmable Logic Controllers), robotics
  • Healthcare: MRI scanners, portable diagnostic devices
  • Communications: 5G base stations, optical network transceivers

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Features
ARM HoldingsCortex-A78128-bit NEON engine, 4nm process, 3.0GHz
IntelAtom x6425EQuad-core, 12W TDP, integrated Intel HD Graphics
NXP Semiconductorsi.MX 8M Plus1.8GHz Cortex-A53, NPU for ML acceleration
MicrochipSAM9X6032-bit ARM926EJ-S, 120MHz, ECC memory support
QualcommQCS610Hexagon DSP, Adreno GPU, AI Engine for computer vision

7. Selection Guidelines

Key considerations include:

  • Performance requirements vs power budget (e.g., Cortex-M55 for ultra-low-power AI)
  • Real-time constraints (deterministic latency for motor control applications)
  • Peripheral integration (CAN FD for automotive networks)
  • Software ecosystem (RTOS support, middleware availability)
  • Longevity and supply chain stability (automotive-grade qualification)

Case Study: A smart thermostat design selected NXP's MCIMX7U5 (Cortex-M4 + Cortex-A7) for its combination of real-time sensor processing and application-layer connectivity.

8. Industry Trends

Emerging directions include:

  • AI integration: On-chip neural processing units (NPUs) for edge ML inference
  • Heterogeneous computing: Multi-architecture SoCs (RISC-V + GPU + NPU)
  • Advanced packaging: 3D-stacked memory integration for bandwidth-intensive applications
  • Functional safety: ISO 26262 compliance for autonomous vehicle systems
  • Open ecosystems: Growth of RISC-V adoption in custom ASIC designs
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