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The AVR Dragon can both program and debug since the 32 KB limitation was removed in AVR Studio 4.18, and the JTAGICE mkII is capable of both programming and debugging the processor. The processor can also be programmed through USB from a Windows or Linux host, using the USB "Device Firmware Update" protocols.
The Atmel AVR instruction set is the machine language for the Atmel AVR, a modified Harvard architecture 8-bit RISC single chip microcontroller which was developed by Atmel in 1996. The AVR was one of the first microcontroller families to use on-chip flash memory for program storage.
SAME5x - Same with D5x plus Ethernet MAC and CAN-FD networking peripherals. Both SAMD5x-E5x series integrate many similar peripherals for ex Timers and Sercoms for UART, I2C, SPI etc. from ATSAMD2x and ATSAMC2x M0+ series thus is easier to upgrade to M4F Core MCUs.
The AVR Butterfly is a battery-powered single-board microcontroller developed by Atmel. It consists of an Atmel ATmega169PV Microcontroller , a liquid crystal display , joystick , speaker, serial port , real-time clock (RTC), internal flash memory , and sensors for temperature and voltage. [ 1 ]
AVR microcontrollers, a family of microcontrollers originally developed by Atmel, now part of Microchip Technology; Audio/video receiver, a home theater electronic component; Acronym for augmented reality and virtual reality interactive experiences; Automatic voltage regulator
debugWIRE is supported by all modern hardware debuggers from Microchip.This includes Atmel-ICE, [3] JTAGICE3, AVR Dragon, JTAGICE mkII, and SNAP. [4] It is also possible to build a cheap debugWIRE hardware debugger [5] based on an open-source Arduino sketch, [6] using a general USB-Serial adaptor or ATtiny85 board, [7] or a CH552 microcontroller.
AVR32 is a 32-bit RISC microcontroller architecture produced by Atmel.The microcontroller architecture was designed by a handful of people educated at the Norwegian University of Science and Technology, including lead designer Øyvind Strøm and CPU architect Erik Renno in Atmel's Norwegian design center.
S-MAC or Studio MAC is a non-broadcast variant, used mostly in North America. The main advantages of this variant are: Processing NTSC component signals yields better results (a higher quality image) than manipulating NTSC directly – thus the need to create S-MAC.