PIC18F45K20-I/PT — Microchip Technology — Microcontrollers MCUs — product image
Microchip Technology

Microchip PIC18F45K20-I/PT Microcontrollers PIC 1.5kB 36 I/Os 64MHz

Microcontrollers MCUs · Microchip Technology

MPNPIC18F45K20-I/PT

Microchip PIC18F45K20-I/PT MCU 8-bit PIC18 PIC RISC 32KB Flash 2.5V/3.3V 44-Pin TQFP Tray - Trays

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Product Overview

Application context for PIC18F45K20-I/PT (Microchip Technology · Microcontrollers MCUs) — what the part is for, how it is typically used, and the design points buyers ask about first.

Microchip PIC18F45K20-I/PT MCU 8-bit PIC18 PIC RISC 32KB Flash 2.5V/3.3V 44-Pin TQFP Tray - Trays

Microchip PIC18F45K20-I/PT Microcontrollers Overview

MCU 8-bit PIC18 PIC RISC 32KB Flash 2.5V/3.3V 44-Pin TQFP Tray - Trays

Key Features of Microchip PIC18F45K20-I/PT Microcontrollers

  • Engineered to core Architecture: PIC, supporting dependable performance in real-world designs.
  • Engineered to max Frequency: 64MHz, supporting dependable performance in real-world designs.
  • Optimized to rAM Size: 1.5kB, improving robustness in practical applications.
  • Optimized to number of I/Os: 36, improving robustness in practical applications.

Microchip PIC18F45K20-I/PT Microcontrollers Applications

Aerospace and Defense

  • Well-suited for ground station controllers managing antenna tracking and uplink command scheduling, helping designers meet typical integration requirements.
  • Often used in autonomous defense drones coordinating sensors and mission logic with safety rules, where predictable behavior and reliability are important.
  • Commonly applied in space probes managing power budgeting, instrument control, and communication schedules, supporting stable and efficient system performance.
  • Well-suited for range instrumentation units collecting telemetry with precise time-stamping, helping designers meet typical integration requirements.
  • Commonly applied in launch vehicle controllers sequencing ignition and stage separation events, supporting stable and efficient system performance.

Security and Surveillance

  • Commonly applied in facial recognition terminals managing camera capture and local authentication workflows, supporting stable and efficient system performance.
  • Commonly applied in surveillance drones managing camera gimbals, flight stabilization, and return-to-home failsafes, supporting stable and efficient system performance.
  • Well-suited for license plate recognition systems processing images and controlling gate relays, helping designers meet typical integration requirements.
  • Often used in motion detectors processing PIR signals and triggering alarms with debounce logic, where predictable behavior and reliability are important.
  • Commonly applied in anti-theft retail tags managing RF signaling and deactivation verification, supporting stable and efficient system performance.

Agriculture

  • Commonly applied in automated greenhouse controllers managing temperature, humidity, and vent actuation, supporting stable and efficient system performance.
  • Often used in automated feeding systems managing schedules, portions, and hopper sensors, where predictable behavior and reliability are important.
  • Often used in water tank level monitors measuring depth and automating refill/valve control, where predictable behavior and reliability are important.
  • Well-suited for pest detection systems counting trap activity and triggering targeted interventions, helping designers meet typical integration requirements.
  • Commonly applied in weather-based farming controllers adjusting irrigation plans based on forecast inputs, supporting stable and efficient system performance.

Medical Devices

  • Often used in medical imaging control panels handling operator inputs and subsystem coordination, where predictable behavior and reliability are important.
  • Commonly applied in smart pill dispensers managing schedules, access control, and reminder alerts, supporting stable and efficient system performance.
  • Commonly applied in hearing aids processing audio input, adaptive gain, and feedback cancellation, supporting stable and efficient system performance.
  • Commonly applied in blood glucose meters conditioning signals and computing concentration from test strips, supporting stable and efficient system performance.
  • Often used in smart hospital beds adjusting position, monitoring occupancy, and preventing entrapment, where predictable behavior and reliability are important.

Industrial Automation

  • Often used in industrial alarms monitoring faults, driving stack lights, and enforcing interlocks, where predictable behavior and reliability are important.
  • Often used in assembly line controllers synchronizing multiple machines and handling line stoppages, where predictable behavior and reliability are important.
  • Well-suited for pick-and-place stations synchronizing feeders, vacuum valves, and servo motion, helping designers meet typical integration requirements.
  • Well-suited for chemical mixing controllers managing agitators, timing, and hazard-safe shutdown logic, helping designers meet typical integration requirements.
  • Often used in robotic arms handling precise motor control, encoder feedback, and motion trajectories, where predictable behavior and reliability are important.

Design Resources

6 guides related to PIC18F45K20-I/PT and microcontrollers mcus topics — background reading before you freeze the schematic.

Frequently Asked Questions

FAQ for this microcontrollers mcus (PIC18F45K20-I/PT). Focused on purchasing and design-check questions, not full datasheet reprints.

What is PIC18F45K20-I/PT?

Microchip PIC18F45K20-I/PT MCU 8-bit PIC18 PIC RISC 32KB Flash 2.5V/3.3V 44-Pin TQFP Tray - Trays

What type of component is PIC18F45K20-I/PT?

PIC18F45K20-I/PT is a Microcontrollers MCUs from Microchip Technology.

Is PIC18F45K20-I/PT in stock at MOZ Electronics?

PIC18F45K20-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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