PIC32MX564F128L-I/PT — Microchip Technology — Microcontrollers MCUs — product image
Microchip Technology

Microchip PIC32MX564F128L-I/PT Microcontrollers PIC 32kB 85 I/Os 80MHz

Microcontrollers MCUs · Microchip Technology

MPNPIC32MX564F128L-I/PT

Microchip PIC32MX564F128L-I/PT RISC Microcontroller, 32-Bit, FLASH, PIC32 CPU, 80MHz, CMOS, PQFP100

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Product Overview

A closer look at PIC32MX564F128L-I/PT as a microcontrollers mcus: functional summary, usage notes, and the features that matter in real designs.

Microchip PIC32MX564F128L-I/PT RISC Microcontroller, 32-Bit, FLASH, PIC32 CPU, 80MHz, CMOS, PQFP100

Microchip PIC32MX564F128L-I/PT Microcontrollers Overview

RISC Microcontroller, 32-Bit, FLASH, PIC32 CPU, 80MHz, CMOS, PQFP100

Key Features of Microchip PIC32MX564F128L-I/PT Microcontrollers

  • Designed to number of I/Os: 85, helping ensure consistent and reliable operation.
  • Built to rAM Size: 32kB, making integration easier across a wide range of systems.
  • Built to max Frequency: 80MHz, making integration easier across a wide range of systems.
  • Optimized to core Architecture: PIC, improving robustness in practical applications.

Microchip PIC32MX564F128L-I/PT Microcontrollers Applications

Smart Infrastructure

  • Commonly applied in building management systems controlling HVAC, elevators, and lighting coordination, supporting stable and efficient system performance.
  • Often used in smart grid substations controlling distribution switching and fault isolation routines, where predictable behavior and reliability are important.
  • Often used in smart crosswalk beacons managing flashing patterns and push-button inputs, where predictable behavior and reliability are important.
  • Often used in smart elevators optimizing traffic flow and managing predictive dispatch algorithms, where predictable behavior and reliability are important.
  • Well-suited for flood monitoring systems measuring water levels and triggering early-warning alerts, helping designers meet typical integration requirements.

Home Automation

  • Commonly applied in smoke detectors processing sensor data, running self-tests, and triggering audible alarms, supporting stable and efficient system performance.
  • Commonly applied in smart door locks handling PIN/RFID/app authentication and motorized locking with tamper alerts, supporting stable and efficient system performance.
  • Often used in smart plugs monitoring power usage, switching loads, and enforcing safety cutoffs, where predictable behavior and reliability are important.
  • Commonly applied in smart humidifiers regulating mist output to maintain target humidity levels, supporting stable and efficient system performance.
  • Often used in smart irrigation controllers scheduling valve zones and reacting to rain/soil conditions, where predictable behavior and reliability are important.

Wearable Devices

  • Often used in vR controllers tracking motion and buttons with low-latency sensor fusion, where predictable behavior and reliability are important.
  • Often used in wearable ECG patches amplifying signals and storing episodic arrhythmia events, where predictable behavior and reliability are important.
  • Commonly applied in medical wearables enabling continuous monitoring and event-based alerts, supporting stable and efficient system performance.
  • Commonly applied in smart rings monitoring activity, skin temperature, and low-power connectivity, supporting stable and efficient system performance.
  • Well-suited for sports performance wearables tracking cadence, stride, and training load, helping designers meet typical integration requirements.

Aerospace and Defense

  • Often used in radar controllers managing precise timing, pulse generation, and synchronization triggers, where predictable behavior and reliability are important.
  • Often used in unmanned ground vehicles controlling motors and sensor fusion for navigation, where predictable behavior and reliability are important.
  • Often used in uAV controllers managing navigation waypoints, stabilization, and failsafe behaviors, where predictable behavior and reliability are important.
  • Commonly applied in range instrumentation units collecting telemetry with precise time-stamping, supporting stable and efficient system performance.
  • Commonly applied in flight control systems managing sensor inputs and actuators with redundant safety logic, supporting stable and efficient system performance.

Communication Devices

  • Commonly applied in two-way radios managing encryption, channel scanning, and battery-saving modes, supporting stable and efficient system performance.
  • Commonly applied in walkie-talkies managing audio capture, channel selection, and push-to-talk state, supporting stable and efficient system performance.
  • Well-suited for loRaWAN nodes managing duty cycle limits and scheduled uplink transmissions, helping designers meet typical integration requirements.
  • Well-suited for wireless routers controlling status LEDs, button events, and watchdog recovery logic, helping designers meet typical integration requirements.
  • Often used in v2X communication units exchanging safety messages with timing and security checks, where predictable behavior and reliability are important.

Design Resources

Design articles that mention PIC32MX564F128L-I/PT, Microchip Technology, or the surrounding technology. Start here for selection tips and application notes.

Frequently Asked Questions

3 practical questions buyers ask about PIC32MX564F128L-I/PT — availability, specs, and how to request a quote.

What is PIC32MX564F128L-I/PT?

Microchip PIC32MX564F128L-I/PT RISC Microcontroller, 32-Bit, FLASH, PIC32 CPU, 80MHz, CMOS, PQFP100

What type of component is PIC32MX564F128L-I/PT?

PIC32MX564F128L-I/PT is a Microcontrollers MCUs from Microchip Technology.

Is PIC32MX564F128L-I/PT in stock at MOZ Electronics?

PIC32MX564F128L-I/PT is listed as in stock. Order online when a price is shown, or submit an RFQ for volume pricing and lead time.

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