
Microchip PIC18F8585-I/PT Microcontrollers PIC 3.3kB 68 I/Os 40MHz
Microcontrollers MCUs · Microchip Technology
Microchip PIC18F8585-I/PT PIC18F8585-I/PT; 8bit PIC Microcontroller; 40MHz; 48kb; 1024 B Flash; 80-Pin TQFP
- Professional sourcingVetted supply chain with documented traceability
- Genuine partsDocumented traceability on every shipment
- ESD-safe handlingOriginal packaging, moisture controlled
- Worldwide shippingConsolidated freight to 100+ countries
Product Overview
Product narrative for the Microchip Technology part PIC18F8585-I/PT. Read this before you compare alternates or open an RFQ.
Microchip PIC18F8585-I/PT Microcontrollers Overview
PIC18F8585-I/PT; 8bit PIC Microcontroller; 40MHz; 48kb; 1024 B Flash; 80-Pin TQFP
Key Features of Microchip PIC18F8585-I/PT Microcontrollers
- Designed to number of I/Os: 68, helping ensure consistent and reliable operation.
- Optimized to max Frequency: 40MHz, improving robustness in practical applications.
- Designed to rAM Size: 3.3kB, helping ensure consistent and reliable operation.
- Built to core Architecture: PIC, making integration easier across a wide range of systems.
Microchip PIC18F8585-I/PT Microcontrollers Applications
Robotics
- Commonly applied in underwater robots managing thrusters, depth sensors, and stability control, supporting stable and efficient system performance.
- Well-suited for delivery robots controlling motors and detecting curbs/obstacles for sidewalk travel, helping designers meet typical integration requirements.
- Often used in competition robots executing timed routines and sensor-driven strategies, where predictable behavior and reliability are important.
- Often used in social robots managing expressive motion, sensors, and user interaction logic, where predictable behavior and reliability are important.
- Often used in robotic camera gimbals stabilizing footage with IMU feedback and motor control, where predictable behavior and reliability are important.
Aerospace and Defense
- Commonly applied in electronic warfare controllers managing waveform timing and subsystem coordination, supporting stable and efficient system performance.
- Well-suited for high-reliability power controllers distributing regulated rails across avionics subsystems, helping designers meet typical integration requirements.
- Often used in navigation systems processing GPS and inertial data for robust position estimates, where predictable behavior and reliability are important.
- Commonly applied in autonomous defense drones coordinating sensors and mission logic with safety rules, supporting stable and efficient system performance.
- Often used in radar controllers managing precise timing, pulse generation, and synchronization triggers, where predictable behavior and reliability are important.
Automotive Applications
- Commonly applied in electric power steering controllers assisting steering torque based on speed/angle inputs, supporting stable and efficient system performance.
- Often used in headlight controllers managing auto high-beam, leveling motors, and DRL patterns, where predictable behavior and reliability are important.
- Often used in airbag control modules detecting collisions and deploying airbags with strict safety checks, where predictable behavior and reliability are important.
- Often used in tire pressure monitoring systems reading pressure/temperature and transmitting telemetry, where predictable behavior and reliability are important.
- Commonly applied in parking assist systems processing ultrasonic sensors and generating distance alerts, supporting stable and efficient system performance.
Communication Devices
- Often used in wireless routers controlling status LEDs, button events, and watchdog recovery logic, where predictable behavior and reliability are important.
- Often used in intercom systems managing duplex audio, door release relays, and call routing, where predictable behavior and reliability are important.
- Often used in paging transmitters controlling message encoding and timed broadcast slots, where predictable behavior and reliability are important.
- Often used in two-way radios managing encryption, channel scanning, and battery-saving modes, where predictable behavior and reliability are important.
- Commonly applied in smart antennas adjusting orientation, gain, and calibration routines for link quality, supporting stable and efficient system performance.
Experimental and Future Uses
- Well-suited for smart materials experiments controlling heating/strain to observe phase changes, helping designers meet typical integration requirements.
- Well-suited for neural stimulation research devices controlling pulse width, frequency, and safety limits, helping designers meet typical integration requirements.
- Often used in space habitat environmental controllers regulating air quality, humidity, and thermal loops, where predictable behavior and reliability are important.
- Commonly applied in smart textiles with embedded control managing distributed sensing and low-power communications, supporting stable and efficient system performance.
- Well-suited for space robotics subsystems managing joint control and radiation-tolerant watchdog logic, helping designers meet typical integration requirements.
Design Resources
Tutorial and application reading tied to PIC18F8585-I/PT. These are editorial guides on this site, not manufacturer PDFs.
Frequently Asked Questions
Short answers for sourcing PIC18F8585-I/PT from Microchip Technology: what to confirm before you place the order.
What is PIC18F8585-I/PT?
Microchip PIC18F8585-I/PT PIC18F8585-I/PT; 8bit PIC Microcontroller; 40MHz; 48kb; 1024 B Flash; 80-Pin TQFP
What type of component is PIC18F8585-I/PT?
PIC18F8585-I/PT is a Microcontrollers MCUs from Microchip Technology.
Is PIC18F8585-I/PT in stock at MOZ Electronics?
PIC18F8585-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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