Embedded - Microcontrollers

Image Part Number Description / PDF Quantity Rfq
EFM32PG22C200F512IM40-CR

EFM32PG22C200F512IM40-CR

Silicon Labs

EFM32 PG22 32-BIT MCU, 32-BIT AR

0

EFM8LB12F64E-C-QFP32R

EFM8LB12F64E-C-QFP32R

Silicon Labs

IC MCU 8BIT 64KB FLASH 32QFP

2137

EFM8LB11F16E-C-QSOP24R

EFM8LB11F16E-C-QSOP24R

Silicon Labs

IC MCU 8BIT 16KB FLASH 24QSOP

0

C8051F300-GS

C8051F300-GS

Silicon Labs

IC MCU 8BIT 8KB FLASH 14SOIC

133

C8051F349-GM

C8051F349-GM

Silicon Labs

IC MCU 8BIT 32KB FLASH 32QFN

0

C8051F540-IQR

C8051F540-IQR

Silicon Labs

IC MCU 8BIT 16KB FLASH 32LQFP

0

EFM8BB31F64G-D-QFN32R

EFM8BB31F64G-D-QFN32R

Silicon Labs

IC MCU 8BIT 64KB FLASH 32QFN

0

EFM8LB12F64ES1-C-QFN32R

EFM8LB12F64ES1-C-QFN32R

Silicon Labs

IC MCU 8BIT 64KB FLASH 32QFN

0

EFM32WG230F256-QFN64

EFM32WG230F256-QFN64

Silicon Labs

IC MCU 32BIT 256KB FLASH 64QFN

0

C8051F574-IMR

C8051F574-IMR

Silicon Labs

IC MCU 8BIT 16KB FLASH 40QFN

0

EFM32GG890F512G-E-BGA112R

EFM32GG890F512G-E-BGA112R

Silicon Labs

IC MCU 32BIT 512KB FLASH 112BGA

0

EFM32WG942F128-QFP64T

EFM32WG942F128-QFP64T

Silicon Labs

IC MCU 32BIT 128KB FLASH 64TQFP

160

C8051F509-IM

C8051F509-IM

Silicon Labs

IC MCU 8BIT 64KB FLASH 40QFN

0

EFM32ZG210F32-B-QFN32R

EFM32ZG210F32-B-QFN32R

Silicon Labs

IC MCU 32BIT 32KB FLASH 32QFN

0

C8051F550-IMR

C8051F550-IMR

Silicon Labs

IC MCU 8BIT 32KB FLASH 24QFN

0

C8051F062-GQ

C8051F062-GQ

Silicon Labs

IC MCU 8BIT 64KB FLASH 100TQFP

46

EFM8LB10F16E-C-QFN24

EFM8LB10F16E-C-QFN24

Silicon Labs

IC MCU 8BIT 16KB FLASH 24QFN

0

C8051T615-GM

C8051T615-GM

Silicon Labs

IC MCU 8BIT 8KB OTP 28QFN

0

EFM32GG11B820F2048GM64-BR

EFM32GG11B820F2048GM64-BR

Silicon Labs

IC MCU 32BIT 2MB FLASH 64QFN

0

EFM32LG942F128G-E-QFP64

EFM32LG942F128G-E-QFP64

Silicon Labs

IC MCU 32BIT 128KB FLASH 64TQFP

160

Embedded - Microcontrollers

1. Overview

Embedded microcontrollers (MCUs) are compact integrated circuits designed to control specific functions in embedded systems. They combine processing cores, memory, and peripheral interfaces into a single chip, enabling efficient control in applications ranging from consumer electronics to industrial automation. Their importance lies in enabling smart, connected, and autonomous systems in modern technology ecosystems.

2. Main Types and Functional Classification

Type Functional Characteristics Application Examples
General-Purpose MCUs Balanced performance, basic peripherals (timers, UART) Home appliances, simple sensors
Low-Power MCUs Optimized for energy efficiency, sleep modes Wearable devices, IoT edge nodes
High-Performance MCUs 32/64-bit cores, DSP capabilities, high-speed interfaces Industrial automation, automotive systems
Automotive MCUs ISO 26262 certified, extended temperature range Engine control units, ADAS

3. Structure and Components

Typical microcontroller architecture includes:

  • CPU core (e.g., ARM Cortex-M, RISC-V)
  • Memory (Flash, SRAM, EEPROM)
  • Peripherals (GPIO, SPI, I2C, ADC/DAC)
  • Real-time clock (RTC)
  • Power management unit
  • Communication interfaces (CAN, Ethernet, USB)

Physical packaging ranges from 8-pin DIP to 200+ pin BGA for complex applications.

4. Key Technical Specifications

Parameter Description
Clock Speed Determines processing capability (1 MHz - 1 GHz)
Memory Size Flash (code storage) and RAM (data processing)
Power Consumption Active/current sleep mode current draw
I/O Lines Number and type of programmable GPIO
Operating Temperature Industrial (-40 C to 85 C) or automotive (-40 C to 125 C)

5. Application Areas

  • Consumer Electronics: Smart home devices, wearables
  • Industrial: Motor control, factory automation
  • Automotive: Body control modules, EV battery management
  • Medical: Portable diagnostic equipment, infusion pumps
  • IoT: Wireless sensor networks, edge AI nodes

6. Leading Manufacturers and Products

Manufacturer Headquarters Representative Products
Texas Instruments USA MSP430FR5994 (low-power sensing)
STMicroelectronics Switzerland STM32H7 (high-performance)
Microchip Technology USA PIC32MZ (32-bit general purpose)
NXP Semiconductors Netherlands Kinetis K82 (automotive-grade)
Infineon Technologies Germany Traveo S6J3 (automotive graphics)

7. Selection Recommendations

Key considerations:

  1. Match core architecture to computational needs
  2. Verify peripheral compatibility with sensors/actuators
  3. Check temperature/ruggedness ratings
  4. Evaluate software ecosystem (RTOS support, middleware)
  5. Consider long-term supply stability

Example: For a battery-powered IoT sensor node, prioritize ultra-low power MCUs like the EFR32MG21 with integrated wireless capabilities.

8. Industry Trends

  • Integration of AI acceleration (e.g., Arm Ethos-U NPU)
  • Edge computing focus with on-chip machine learning
  • Enhanced security features (TrustZone, secure boot)
  • Sub-1V operation for energy harvesting applications
  • Growth of heterogeneous multi-core MCUs
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