The ATTINY461-20SU belongs to the category of microcontrollers and is designed for various embedded applications. It is known for its compact size, low power consumption, and versatile functionality. The package type for ATTINY461-20SU is SOIC (Small Outline Integrated Circuit) with 20 pins.
The ATTINY461-20SU features a high-performance, low-power AVR 8-bit microcontroller. It operates at a voltage range of 1.8V to 5.5V and offers a wide range of integrated peripherals, including timers, communication interfaces, and analog-to-digital converters.
The detailed pin configuration of ATTINY461-20SU includes 20 pins, each serving specific functions such as digital I/O, analog input, power supply, and communication interfaces. A comprehensive pinout diagram is available in the datasheet for precise connection and integration.
The ATTINY461-20SU offers a rich set of functional features, including: - High-performance 8-bit CPU - Low-power consumption - Integrated peripherals for versatile applications - Flexible communication interfaces - Analog-to-digital conversion capabilities
The working principle of ATTINY461-20SU revolves around its ability to execute programmed instructions, interact with external components through its pins, and manage various tasks within embedded systems. Its low-power design allows for efficient operation in battery-powered applications.
The ATTINY461-20SU is well-suited for a wide range of embedded applications, including but not limited to: - IoT devices - Sensor nodes - Consumer electronics - Industrial control systems - Smart home automation
For users seeking alternative models with similar capabilities, the following microcontrollers can be considered: - ATTINY2313A-PU - ATTINY85-20PU - ATMEGA328P-PU - PIC16F877A - STM32F103C8T6
In conclusion, the ATTINY461-20SU microcontroller offers a balance of performance, power efficiency, and versatility, making it an ideal choice for diverse embedded applications.
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What is the maximum clock speed of ATTINY461-20SU?
What are the key features of ATTINY461-20SU?
Can ATTINY461-20SU be used for low-power applications?
What are the communication interfaces supported by ATTINY461-20SU?
Is ATTINY461-20SU suitable for battery-powered devices?
What development tools are available for programming ATTINY461-20SU?
Does ATTINY461-20SU have built-in analog-to-digital conversion (ADC) capability?
What are the typical applications of ATTINY461-20SU?
Can ATTINY461-20SU be used in harsh environmental conditions?
Are there any known limitations or challenges when using ATTINY461-20SU in technical solutions?