Embedded - Microcontrollers - Application Specific

Image Part Number Description / PDF Quantity Rfq
CY8CTMA375-LQI-03

CY8CTMA375-LQI-03

Rochester Electronics

TRUE TOUCH MCU

19509

CY7C66113A-LFXC

CY7C66113A-LFXC

Rochester Electronics

39 I/O FULL SPEED USB PERIPH. +4

476

CY8CTMG200A-24LQXI

CY8CTMG200A-24LQXI

Rochester Electronics

SOC CY8CTMG200 M8C

10204

CY8CTMA375-LQI-00KG

CY8CTMA375-LQI-00KG

Rochester Electronics

TRUE TOUCH MCU

539

CY8CTMA120-00AXI

CY8CTMA120-00AXI

Rochester Electronics

MULTIFUNCTION PERIPHERAL

5359

CY7C66113A-LTXC

CY7C66113A-LTXC

Rochester Electronics

USB

1671

CY8C20347-24LQXIK4

CY8C20347-24LQXIK4

Rochester Electronics

PSOC 2

489

CY7C64343-32LQXCKG

CY7C64343-32LQXCKG

Rochester Electronics

USB

0

CY8C20236A-24LKXIKG

CY8C20236A-24LKXIKG

Rochester Electronics

PSOC 2

376

ML4828IP

ML4828IP

Rochester Electronics

SWITCHING CONTROLLER, VOLTAGE-MO

15

P8274

P8274

Rochester Electronics

MULTI PROTOCOL CONTROLLER, 2 CHA

882

P82530

P82530

Rochester Electronics

MULTI PROTOCOL CONTROLLER, 2 CHA

4774

CY8CTST200-32LQXI

CY8CTST200-32LQXI

Rochester Electronics

SOC CY8CTMG200 M8C

303

CY8CTST120-00AXI

CY8CTST120-00AXI

Rochester Electronics

MULTIFUNCTION PERIPHERAL

5426

P82530-6

P82530-6

Rochester Electronics

MULTI PROTOCOL CONTROLLER, 2 CHA

1572

CY8CTST100-00LFXI

CY8CTST100-00LFXI

Rochester Electronics

MICRO PERIPHERAL IC

5960

ICL7182CPL

ICL7182CPL

Rochester Electronics

INTERFACE CIRCUIT, CMOS, PDIP40

57

CY8CTMA395-LTI-00

CY8CTMA395-LTI-00

Rochester Electronics

TRUE TOUCH MCU

50119

CY8CTMA545-48LQI

CY8CTMA545-48LQI

Rochester Electronics

TRUE TOUCH MCU

699

CY8CTMA340-FNI-03T

CY8CTMA340-FNI-03T

Rochester Electronics

TRUE TOUCH MCU

2000

Embedded - Microcontrollers - Application Specific

1. Overview

Application Specific Microcontrollers (AS-MCUs) are integrated circuits designed to perform dedicated functions in embedded systems. Unlike general-purpose microcontrollers, AS-MCUs are optimized for specific tasks through customized hardware, firmware, and peripherals. They play a critical role in modern technology by enabling efficient processing, real-time control, and power optimization in specialized applications such as automotive systems, industrial automation, and IoT devices.

2. Main Types and Functional Classification

TypeFunctional FeaturesApplication Examples
Application-Specific Microcontrollers (AS-MCUs)Custom I/O interfaces, optimized instruction sets, fixed-function logicMotor control in appliances, sensor hubs
Application-Specific Standard Parts (ASSPs)Industry-standard peripherals, pre-defined functionalityUSB controllers, Ethernet PHY chips
Custom ASIC-based MCUsFull hardware customization, dedicated acceleratorsMedical imaging systems, aerospace avionics
System-on-Chip (SoC) MCUsIntegrated CPU, memory, and application-specific IP blocksSmartphones, automotive infotainment

3. Structure and Components

AS-MCUs typically consist of:

  • Core Architecture: RISC/VLIW processors with specialized execution units
  • Memory Hierarchy: Embedded flash (128KB-8MB), SRAM with error correction
  • Custom Peripherals: PWM controllers, analog comparators, hardware encryption engines
  • Interconnect Fabric: High-speed buses (AHB/APB) with QoS management
  • Power Management: Multiple voltage domains, clock gating, retention registers
  • Package: 48-256 pin QFP/BGA with thermal dissipation features

4. Key Technical Specifications

ParameterImportance
Processing Throughput (MIPS/GFLOPS)Determines real-time task execution capability
Power Consumption ( A/MHz)Critical for battery-operated devices
Memory Size & SpeedAffects code complexity and data buffering
Operating Temperature (-40 C to +150 C)Ensures reliability in harsh environments
Interface Protocols (CAN, LIN, Ethernet)Enables system integration compatibility
Functional Safety Certification (ISO 26262, IEC 61508)Required for automotive/industrial systems

5. Application Domains

Key industries utilizing AS-MCUs:

  • Industrial: CNC machine controllers, predictive maintenance sensors
  • Automotive: Engine control units (ECUs), ADAS sensor fusion modules
  • Medical: MRI machine motion controllers, patient monitoring systems
  • Consumer: Smart home appliances, wearable fitness trackers
  • Telecom: 5G base station beamforming controllers

6. Leading Manufacturers and Products

ManufacturerProduct SeriesKey Features
Texas InstrumentsMSP430FRASFerroelectric memory, 16-bit MCU for energy meters
NXP SemiconductorsS32K1xxArm Cortex-M4 for automotive body control
STMicroelectronicsSTM32AAutomotive qualified, CAN FD interface
MicrochipPIC18FXX85Integrated LCD driver for appliance controls
InfineonAURIX TC3xxTri-core architecture for motor drives

7. Selection Guidelines

Key considerations:

  • Match computational requirements with core architecture
  • Verify peripheral compatibility with system interfaces
  • Evaluate toolchain support (compilers, debuggers)
  • Assess long-term supply stability
  • Validate security features (AES encryption, secure boot)
  • Compare total cost of ownership (NRE + unit cost)

8. Industry Trends

Emerging developments:

  • AI/ML integration for edge computing (e.g., TensorFlow Lite on-chip)
  • Sub-10nm process nodes enabling 200+ MHz operation
  • Functional safety compliance up to ASIL-D
  • Energy harvesting-ready ultra-low-power designs
  • Rise of RISC-V based customizable cores
  • Increased adoption in 5G IoT gateways
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