ATTINY85-20PU Microchip ATTINY85-20PU Microcontrollers AVR 512B 6 I/Os 20MHz
Microchip ATTINY85-20PU MCU 8-bit AVR RISC 8KB Flash 3.3V/5V 8-Pin PDIP W Tube / IC MCU 8BIT 8KB FLASH 8DIP
Microchip ATTINY85-20PU Microcontrollers Overview
MCU 8-bit AVR RISC 8KB Flash 3.3V/5V 8-Pin PDIP W Tube / IC MCU 8BIT 8KB FLASH 8DIP
Key Features of Microchip ATTINY85-20PU Microcontrollers
- Built to core Architecture: AVR, making integration easier across a wide range of systems.
- Optimized to rAM Size: 512B, improving robustness in practical applications.
- Built to max Frequency: 20MHz, making integration easier across a wide range of systems.
- Engineered to number of I/Os: 6, supporting dependable performance in real-world designs.
Microchip ATTINY85-20PU Microcontrollers Applications
Wearable Devices
- Commonly applied in temperature patches logging skin/body temperature trends over time, supporting stable and efficient system performance.
- Well-suited for medical wearables enabling continuous monitoring and event-based alerts, helping designers meet typical integration requirements.
- Commonly applied in uV exposure wearables estimating sunlight dose and alerting thresholds, supporting stable and efficient system performance.
- Well-suited for health monitoring wearables tracking vital signs and syncing data to mobile apps, helping designers meet typical integration requirements.
- Often used in smartwatches managing displays, sensors, notifications, and battery optimization, where predictable behavior and reliability are important.
Entertainment and Media
- Often used in projection mapping controllers coordinating triggers and syncing to sound/light cues, where predictable behavior and reliability are important.
- Often used in audio mixers controlling signal routing, gain staging, and digital effects parameters, where predictable behavior and reliability are important.
- Often used in karaoke machines processing audio, lyrics display timing, and scoring interfaces, where predictable behavior and reliability are important.
- Well-suited for interactive art installations processing user input and driving lights/sound responses, helping designers meet typical integration requirements.
- Well-suited for dJ controllers handling jog wheels, buttons, LEDs, and MIDI-style messaging, helping designers meet typical integration requirements.
Medical Devices
- Often used in smart pill dispensers managing schedules, access control, and reminder alerts, where predictable behavior and reliability are important.
- Often used in heart rate monitors collecting ECG/PPG signals and calculating beat-to-beat intervals, where predictable behavior and reliability are important.
- Commonly applied in blood pressure monitors controlling pumps/valves and analyzing oscillometric waveforms, supporting stable and efficient system performance.
- Often used in hearing aids processing audio input, adaptive gain, and feedback cancellation, where predictable behavior and reliability are important.
- Well-suited for blood glucose meters conditioning signals and computing concentration from test strips, helping designers meet typical integration requirements.
Communication Devices
- Well-suited for two-way radios managing encryption, channel scanning, and battery-saving modes, helping designers meet typical integration requirements.
- Often used in satellite communication terminals managing data transmission and antenna subsystem control, where predictable behavior and reliability are important.
- Often used in wireless microphones managing channel hopping and battery monitoring, where predictable behavior and reliability are important.
- Commonly applied in bluetooth modules controlling pairing, connection state, and low-energy advertising, supporting stable and efficient system performance.
- Well-suited for emergency communication devices handling alert decoding and alarm triggering, helping designers meet typical integration requirements.
Aerospace and Defense
- Commonly applied in unmanned ground vehicles controlling motors and sensor fusion for navigation, supporting stable and efficient system performance.
- Commonly applied in avionics displays managing flight information, warnings, and pilot interaction inputs, supporting stable and efficient system performance.
- Well-suited for space probes managing power budgeting, instrument control, and communication schedules, helping designers meet typical integration requirements.
- Well-suited for launch vehicle controllers sequencing ignition and stage separation events, helping designers meet typical integration requirements.
- Often used in environmental control units managing cabin pressure and temperature regulation, where predictable behavior and reliability are important.
Microchip ATTINY85-20PU Specifications
General
| Access Time | 20µs |
| Case/Package | PDIP |
| Contact Plating | Tin |
| Core Architecture | AVR |
| Data Bus Width | 8b |
| Frequency | 20MHz |
| Height | 4.953mm |
| Interface | SPI |
| Lead Free | Lead Free |
| Length | 10.16mm |
| Lifecycle Status | Production |
| Max Frequency | 20MHz |
| Max Operating Temperature | 85°C |
| Max Supply Voltage | 5.5V |
| Memory Size | 8kB |
| Memory Type | FLASH |
| Min Operating Temperature | -40°C |
| Min Supply Voltage | 2.7V |
| Mount | Through Hole |
| Number of ADC Channels | 4 |
| Number of I/Os | 6 |
| Number of I2C Channels | 1 |
| Number of PWM Channels | 6 |
| Number of Pins | 8 |
| Number of Programmable I/O | 6 |
| Number of SPI Channels | 1 |
| Number of Timers/Counters | 2 |
| Number of UART Channels | 1 |
| Oscillator Type | Internal |
| Peripherals | Brown-out Detect/Reset, POR, PWM, WDT |
| RAM Size | 512B |
| REACH SVHC | No |
| Radiation Hardening | No |
| RoHS | Compliant |
| Schedule B | 8542310000 |
| Termination | Through Hole |
| Watchdog Timer | Yes |
| Width | 7.112mm |
Specification: Microchip ATTINY85-20PU Microcontrollers AVR 512B 6 I/Os 20MHz
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