PIC16LF818-I/ML — Microchip Technology — Microcontrollers MCUs — product image
Microchip Technology

Microchip PIC16LF818-I/ML Microcontrollers PIC 128B 16 I/Os 20MHz

Microcontrollers MCUs · Microchip Technology

MPNPIC16LF818-I/ML

Microchip PIC16LF818-I/ML PIC series Microcontroller IC 8-Bit 10MHz 1.75KB (1K x 14) FLASH 28-QFN (6x6)

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Product Overview

Application context for PIC16LF818-I/ML (Microchip Technology · Microcontrollers MCUs) — what the part is for, how it is typically used, and the design points buyers ask about first.

Microchip PIC16LF818-I/ML PIC series Microcontroller IC 8-Bit 10MHz 1.75KB (1K x 14) FLASH 28-QFN (6x6)

Microchip PIC16LF818-I/ML Microcontrollers Overview

The Microchip PIC Series Microcontroller IC is a versatile and efficient 8-bit microcontroller designed for a wide range of embedded applications. With a maximum operating frequency of 20MHz and a compact 28-QFN package, this microcontroller delivers exceptional performance while maintaining a small footprint. It features 1.8kB of FLASH memory and 128B of RAM, making it ideal for applications that require reliable data storage and processing. Operating within a temperature range of -40°C to 85°C, this microcontroller is suitable for both industrial and consumer electronics, ensuring robust performance in various environments.

Key Features of Microchip PIC16LF818-I/ML Microcontrollers

  • Engineered to 16 Programmable I/O Pins, supporting dependable performance in real-world designs.
  • Built to 1.8kB FLASH Memory and 128B RAM, making integration easier across a wide range of systems.
  • Optimized to wide Supply Voltage Range (2V to 5.5V), improving robustness in practical applications.
  • Built to 8-Bit Core Architecture with 20MHz Max Frequency, making integration easier across a wide range of systems.
  • Built to surface Mount QFN Package for Space-Saving Design, making integration easier across a wide range of systems.
  • Engineered to roHS Compliant and Lead-Free, supporting dependable performance in real-world designs.
  • Designed to multiple Communication Interfaces: I2C, SPI, SSP, helping ensure consistent and reliable operation.
  • Engineered to three Timers/Counters for Enhanced Functionality, supporting dependable performance in real-world designs.

Microchip PIC16LF818-I/ML Microcontrollers Applications

Communication Devices

  • Often used in two-way radios managing encryption, channel scanning, and battery-saving modes, where predictable behavior and reliability are important.
  • Often used in nFC readers polling tags and handling secure element interactions, where predictable behavior and reliability are important.
  • Well-suited for loRaWAN nodes managing duty cycle limits and scheduled uplink transmissions, helping designers meet typical integration requirements.
  • Well-suited for emergency communication devices handling alert decoding and alarm triggering, helping designers meet typical integration requirements.
  • Often used in beacon transmitters generating periodic IDs and tracking battery health, where predictable behavior and reliability are important.

Energy and Power Systems

  • Commonly applied in transformer monitoring units tracking temperature, load, and aging indicators, supporting stable and efficient system performance.
  • Often used in energy harvesting controllers managing charge storage and duty cycle scheduling, where predictable behavior and reliability are important.
  • Often used in power factor correction controllers switching capacitor banks to improve efficiency, where predictable behavior and reliability are important.
  • Well-suited for backup generator controllers sequencing start/stop and monitoring oil/temp parameters, helping designers meet typical integration requirements.
  • Often used in solar charge controllers managing MPPT tracking and battery charging safety limits, where predictable behavior and reliability are important.

Experimental and Future Uses

  • Well-suited for micro-scale robotics controllers coordinating tiny actuators and sensor readouts, helping designers meet typical integration requirements.
  • Commonly applied in edge federated learning nodes coordinating training cycles and secure updates, supporting stable and efficient system performance.
  • Commonly applied in space habitat environmental controllers regulating air quality, humidity, and thermal loops, supporting stable and efficient system performance.
  • Often used in brain-computer interface prototypes processing biosignals and streaming features for research, where predictable behavior and reliability are important.
  • Often used in smart textiles with embedded control managing distributed sensing and low-power communications, where predictable behavior and reliability are important.

Wearable Devices

  • Well-suited for smartwatches managing displays, sensors, notifications, and battery optimization, helping designers meet typical integration requirements.
  • Commonly applied in temperature patches logging skin/body temperature trends over time, supporting stable and efficient system performance.
  • Well-suited for industrial safety wearables detecting hazardous exposure and issuing warnings, helping designers meet typical integration requirements.
  • Commonly applied in smart glasses handling camera control, micro-displays, and touch/button inputs, supporting stable and efficient system performance.
  • Often used in smart insoles measuring pressure distribution and supporting gait analysis, where predictable behavior and reliability are important.

Consumer Electronics

  • Well-suited for refrigerators controlling compressor duty cycles, defrost heaters, and door-open alarms, helping designers meet typical integration requirements.
  • Well-suited for digital cameras handling shutter timing, sensor control, autofocus motors, and storage writes, helping designers meet typical integration requirements.
  • Commonly applied in set-top boxes controlling boot flow, LED indicators, and remote input decoding, supporting stable and efficient system performance.
  • Often used in rice cookers managing heating profiles, temperature feedback, and keep-warm safety limits, where predictable behavior and reliability are important.
  • Commonly applied in smart speakers managing voice input, LEDs, button events, and wireless connectivity, supporting stable and efficient system performance.

Design Resources

6 guides related to PIC16LF818-I/ML and microcontrollers mcus topics — background reading before you freeze the schematic.

Frequently Asked Questions

FAQ for this microcontrollers mcus (PIC16LF818-I/ML). Focused on purchasing and design-check questions, not full datasheet reprints.

What is PIC16LF818-I/ML?

Microchip PIC16LF818-I/ML PIC series Microcontroller IC 8-Bit 10MHz 1.75KB (1K x 14) FLASH 28-QFN (6x6)

What type of component is PIC16LF818-I/ML?

PIC16LF818-I/ML is a Microcontrollers MCUs from Microchip Technology.

Is PIC16LF818-I/ML in stock at MOZ Electronics?

PIC16LF818-I/ML 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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