Embedded - Microcontrollers

Image Part Number Description / PDF Quantity Rfq
MB9BF564KPMC-G-JNE2

MB9BF564KPMC-G-JNE2

Rochester Electronics

IC MCU 32BIT 288KB FLASH 64LQFP

201

P87C51SBAA

P87C51SBAA

Rochester Electronics

IC MCU 8BIT 4KB OTP 44PLCC

2076

MD87C51FC/B

MD87C51FC/B

Rochester Electronics

MICROCONTROLLER, 8 BIT, UVPROM,

5968

CY8C20224-12LKXIKC

CY8C20224-12LKXIKC

Rochester Electronics

IC MCU 8BIT 8KB FLASH 16QFN

1802

MB9AF141MAPMC-G-JNE2

MB9AF141MAPMC-G-JNE2

Rochester Electronics

32 BIT ARM CORTEX M3 BASED MICRO

180

TP8032AH

TP8032AH

Rochester Electronics

MICROCONTROLLER, 8 BIT, 6MHZ, NM

551

TA8797BH

TA8797BH

Rochester Electronics

MICROCONTROLLER, 16-BIT, OTPROM,

140

D8748H

D8748H

Rochester Electronics

MICROCONTROLLER, 8 BIT, UVPROM,

1007

MB9AF156RAPMC-G-JNE2

MB9AF156RAPMC-G-JNE2

Rochester Electronics

IC MCU 32BIT 544KB FLASH 120LQFP

100

D8742

D8742

Rochester Electronics

MICROCONTROLLER, 8 BIT, UVPROM,

161

CY8C24423A-24PXIKP

CY8C24423A-24PXIKP

Rochester Electronics

IC MCU 8BIT 4KB FLASH 28DIP

187

N80C152JC

N80C152JC

Rochester Electronics

MICROCONTROLLER, 8-BIT, 8051 CPU

5200

N8273-4

N8273-4

Rochester Electronics

MULTI PROTOCOL CONTROLLER, MOS

4110

CY8C21645-24PVXAT

CY8C21645-24PVXAT

Rochester Electronics

IC MCU 8BIT 8KB FLASH 48SSOP

3000

CY8C20434-12LQXIKC

CY8C20434-12LQXIKC

Rochester Electronics

IC MCU 8BIT 8KB FLASH 32QFN

15450

CY8C21634-24LTXIKA

CY8C21634-24LTXIKA

Rochester Electronics

IC MCU 8BIT 8KB FLASH 32QFN

4544

LD8752BH

LD8752BH

Rochester Electronics

MICROCONTROLLER, 8-BIT, UVPROM,

71

CY8C20234-12SXIKP

CY8C20234-12SXIKP

Rochester Electronics

IC MCU 8BIT 8KB FLASH 16SOIC

221

MB9BF124LQN-G-AVE2

MB9BF124LQN-G-AVE2

Rochester Electronics

IC MCU 32BIT 288KB FLASH 64QFN

175

MB9AFA32MPMC-G-SNE2

MB9AFA32MPMC-G-SNE2

Rochester Electronics

32 BIT ARM CORTEX-M3 BASED MICRO

100

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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