Arduino Mega 2560 Rev 3 Atmega Board Card Of Development Microcontroller Origina

Arduino Mega 2560 Rev 3 Atmega Board Card Of Development Microcontroller Origina
Arduino Mega 2560 Rev 3 Atmega Board Card Of Development Microcontroller Origina
Arduino Mega 2560 Rev 3 Atmega Board Card Of Development Microcontroller Origina
Arduino Mega 2560 Rev 3 Atmega Board Card Of Development Microcontroller Origina


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Location: Bagno di Piano
Ships to: US,
Item: 264978984285

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Item must be returned within:60 Days
Refund will be given as:Money Back
MPN:A000067
EAN:4560410440057
Arduino:Arduino
UPC:743070540976

Arduino Mega 2560 Rev 3 Atmega Board Card Of Development Microcontroller OriginaThe description of this item has been automatically translated. If you have any questions, please feel free to contact us. Arduino MEGA 2560 REV 3 ATMega board microcontroller development board ORIGINAL MANUFACTURER: Arduino REFERENCE: A000067 EAN CODE: 4560410440057 The Arduino MEGA 2560 is designed for more complex projects. With 54 digital I/O pins, 16 analog inputs and more space for your sketch, it is the recommended board for 3D printers and robotics projects. This way the projects have a lot of space and opportunities.DRIVERS – MANUALS – EXAMPLES – IDE PROGRAMMING The Arduino MEGA 2560 is designed for more complex projects. With 54 digital I/O pins, 16 analog inputs and more space for your sketch, it is the recommended board for 3D printers and robotics projects. This way the projects have a lot of space and opportunities. The Arduino Mega 2560 is a board based on the ATmega2560 microcontroller. It features 54 digital input/output pins (of which 15 can be used as PWM outputs), 16 analog inputs, 4 UARTs (hardware serial ports), a 16 MHz crystal oscillator, a USB connection, a power jack, an ICSP header, and a reset button. It contains everything you need to support the microcontroller; simply connect it to a computer with a USB cable or power it with an AC adapter or battery-to-DC to get started. The Arduino 2560 Mega board is compatible with most shields designed for the Uno and the former Duemilanove or Diecimila boards. The Arduino Mega 2560 is an upgrade for the Arduino Mega, which it replaces. Expansion shields are available to expand the communication and processing capabilities of the Arduino board. You can buy them here: EBAY | MECTRONICA STORE Do you need the power supply? You can find it here: EBAY | MECTRONICA STORE Programming The Arduino 2560 mega board can be programmed with the Arduino software (IDE). For details, see the reference and tutorial. The ATmega2560 on the Arduino Mega 2560 comes preprogrammed with a bootloader that allows you to upload new code to it without the use of an external hardware programmer. It communicates using the original STK500 protocol (reference, the C header files). It is also possible to bypass the bootloader and program the microcontroller through the ICSP (in-circuit serial programming) header using Arduino ISP or similar; see the instructions for details. The ATmega16U2 (or 8U2 in the REV1 and REV2 boards) firmware source code is available in the Arduino repository. The ATmega16U2/8U2 is loaded with a DFU bootloader, which can be activated by: On Rev1 boards: connect the solder jumper on the back of the board (near the map of Italy) and then reset the 8U2. On Rev2 or later boards: there is a resistor pulling the HWB 8U2/16U2 line to ground, making it easier to put into DFU mode. You can then use the Atmel FLIP software ( Windows ) or the DFU programmer (Mac OS X and Linux) to load new firmware. Or you can use the ISP header with an external programmer (overwriting the DFU bootloader). See this user-contributed tutorial for more information. Warnings The Arduino 2560 Mega has a resettable Polyfuse that protects your computer’s USB ports from shorts and overcurrent. While most computers provide their own internal protection, the fuse provides an additional level of protection. If more than 500 mA is applied to the USB port, the fuse will automatically break the connection until the short or overload is removed. Power The Arduino 2560 Mega can be powered through the USB connection or with an external power supply. The power source is automatically selected. (Non USB) External power can be supplied by an AC-DC adapter (wall-wart) or battery. The adapter can be connected by inserting a 2.1mm center-positive plug into the card’s power jack. Leads from a battery can be inserted into the GND and Vin pin headers of the POWER connector. The board can operate on an external power supply from 6 to 20 volts. If supplied with less than 7V, however, the 5V pin may provide less than five volts and the board may become unstable. If you use more than 12V, the voltage regulator may overheat and damage the board. The recommended range is 7 to 12 volts. The power pins are as follows: Vin. The input voltage to the card when using an external power source (as opposed to 5 volts from the USB connection or regulated power source). You can supply voltage through this pin, or, if supplying voltage through the power jack, access it through this pin. 5V. This pin generates a regulated 5V from the regulator on the board. The board can be powered either from the DC power outlet (7 – 12V), the USB connector (5V), or the VIN pin on the board (7-12V). Providing voltage through the 5V or 3.3V pins bypasses the regulator, and can damage the board. We do not recommend it. 3V3. A 3.3 volt supply generated by the on-board regulator. Maximum current draw is 50 mA. GND. earth pins. IOREF. This pin on the board provides the voltage reference that the microcontroller operates with. A properly configured shield that can read the pin voltage IOREF and select the appropriate power source or enable voltage translators on the outputs to work with 5V or 3.3V. Memory The ATmega2560 has 256 KB of Flash memory to store code (of which 8 KB is used for the bootloader), 8 KB of SRAM and 4 KB of EEPROM (which can be read and written with the EEPROM library). Input and Output See the mapping between Arduino pins and ATmega2560 ports: PIN_MAPPINGPIN MAPPING ATmega2560 Each of the Mega’s 54 digital pins can be used as an input or output, using pinMode(), digitalWrite(), and digitalRead() functions. They operate at 5 volts. Each pin can supply or receive 20 mA as recommended operating conditions and has an internal pull-up resistor (disconnected by default) of 20-50k Ohm. A maximum of 40mA is the value that must not be exceeded to avoid permanent damage to the microcontroller. Additionally, some pins have specialized functions: Serial: 0 (RX) and 1 (TX); Serial 1: 19 (RX) and 18 (TX); Serial 2: 17 (RX) and 16 (TX); Serial 3: 15 (RX) and 14 (TX). Used to receive (RX) and transmit (TX) TTL serial data. Pins 0 and 1 are also connected to the corresponding pins of the ATmega16U2 USB-to-TTL serial circuit. External interrupt: 2 (interrupt 0), 3 (interrupt 1), 18 (interrupt 5), 19 (interrupt 4), 20 (interrupt 3), and 21 (interrupt 2). These pins can be configured to trigger an alarm at a low level, a rising or falling edge, or level changes. See the attachInterrupt() function for details. PWM: 2 to 13 and 44 to 46. provide 8-bit PWM with the analogWrite() function. SPI: 50 (MISO), 51 (MOSI), 52 (SCK), 53 (SS). These pins support SPI communication using the SPI library. The SPI pins are also broken out on the ICSP header, which is physically compatible with the Arduino Uno and the older Duemilanove and Arduino Diecimila boards. LED: 13. There is a built-in LED connected to digital pin 13. When the pin is high the value, the LED is on, when the pin is low, it is off. TWI: 20 (SDA) and 21 (SCL). communication TWI support using the Wire library. Note that these pins are not in the same location as the TWI pins on the older Arduino Duemilanove or Diecimila boards. See also Arduino 2560 mega pin mapping diagram. The Arduino 2560 Mega has 16 analog inputs, each of which provides 10 bits of resolution (i.e. 1024 different values). By default they measure from the ground to 5 volts, although it is possible to change the upper end of their range using the AREF pin and analogReference() function. There are a couple more pins on the board: AREF. Reference voltage for analog inputs. Used with analogReference(). Reset. Pull this line LOW to reset the microcontroller. Typically used to add a reset button for screens that lock together on the edge. Communication The Arduino 2560 Mega board has a number of facilities for communicating with a computer, another board, or other microcontrollers. The ATmega2560 provides four hardware UARTs for TTL (5V) serial communication. An ATmega16U2 (ATmega 8U2 on revision 1 and revision 2 boards) on board channels one of these over USB and provides a virtual COM port to software on your computer ( Windows computers will need an .inf file, but OSX and Linux machines will recognize the board as a COM port automatically. The Arduino software (IDE) includes a built-in monitor that allows simple text data to be sent to and from the board. The RX and TX LEDs on the board flash when data is being transmitted via the ATmega8U2/ATmega16U2 chips and USB connection to the computer (but not for serial communication on pins 0 and 1). A SoftwareSerial library allows serial communication on any of the Mega 2560’s digital pins. The Arduino Mega 2560 also supports TWI and SPI communication. The Arduino software (IDE) includes a Wire library to simplify use of the TWI bus; see the documentation for details. For SPI communication, use the SPI library. Physical Features and Shield Compatibility The maximum length and width of the 2560 mega PCB are 4 and 2.1 inches respectively, with the USB connector and power jack extending beyond the former dimension. Three screw holes allow the Board to be attached to a surface or case. Note that the spacing between digital pins 7 and 8 is 160 mils (0.16″), not a multiple of the 100 mil spacing of the other pins. The Arduino 2560 Mega is designed to be compatible with most shields designed for the Uno and older Arduino Diecimila or Duemilanove boards. Digital pins 0 through 13 (and the adjacent AREF and GND pins), analog inputs 0 through 5, the power header, and ICSP are all in equivalent locations. Additionally, the main UART (serial port) is on the same pins (0 and 1), as are external interrupts 0 and 1 (pins 2 and 3 respectively). SPI is available through the ICSP header on both the Mega 2560 and Duemilanove/Diecimila boards. Please note that I2C is not on the same pins on the 2560 Mega board (20 and 21) as the Duemilanove/Diecimila boards (analog inputs 4 and 5). Automatic (softWare) reset Rather than requiring a physical press of the reset button before an upload, the Mega 2560 is designed to allow it to be reset by software running on a connected computer. One of the ATmega8U2’s hardware flow control (DTR) lines is connected to the ATmega2560’s reset line through a 100 nanofarad capacitor. When the line is asserted (low), the reset line drops long enough to reset the IC. The Arduino software (IDE) uses this feature to allow you to upload code by simply pressing the upload button in the Arduino environment. This means that the bootloader can have a shorter timeout, as the lowering of the DTR can be well coordinated with the start of loading. This configuration has other implications. When the Arduino 2560 Mega board is connected to either a computer running Mac OS X or Linux, it resets itself every time a connection is made to it from software (via USB). For the next half second or so, the bootloader is running on the ATmega2560. While it is programmed to ignore malformed data (i.e. anything other than an upload of new code), it will intercept the first few bytes of data sent to the board after a connection is opened. If a sketch run on the edge receives one-time configuration or other data when first starting, make sure the software it communicates with waits one second after opening the connection and before sending this data. The Arduino 2560 Mega board contains a trace that can be cut to disable auto-reset. The pads on both sides of the track can be welded together to reactivate it. It is labeled “RESET-EN”. You may also be able to disable auto-reset by connecting a 5V 110 ohm resistor to the reset line; see this forum thread for details. revisions The Arduino 2560 mega does not use the FTDI USB to serial driver chip used in previous projects. Instead, it is equipped with the ATmega16U2 (ATmega8U2 in Arduino revision 1 and 2 tips) programmed as a USB to serial converter. Revision 2 of the Arduino 2560 Mega board has a resistor pulling the 8U2 HWB line to ground, making it easier to put it into DFU mode. Revision 3 of the Arduino 2560 mega board has the following improved features: 1.0 pinout: SDA and SCL pins – near the AREF pin – and two new pins placed near the RESET pin, the IOREF which allow the shields to adapt to the voltage supplied by the board. In the future, the shields will be compatible with both the board using the AVR, which operates at 5V, and the board using the ATSAM3X8E, which operates at 3.3V. The second is an unconnected pin, which is reserved for future purposes. stronger RESET circuit. ATmega 16U2 replace the 8U2. SPECIFICATIONS Microcontroller ATmega2560 Operating Voltage 5V Input Voltage (recommended) 7-12V Input Voltage (limit) 6-20V Digital I/O Pins 54 (of which 15 provide PWM output) Analog Input Pins 16 DC Current per I/O Pin 20 mA DC Current for 3.3V Pin 50 mA Flash Memory 256 KB of which 8 KB used by bootloader SRAM 8 KB EEPROM 4 KB Clock Speed ​​16 MHz Length 101.52 mm Width 53.3 mm Weight 37 g Why Mectronic STORE? All products are shipped via the best national couriers such as SDA, GLS, Poste Italiane, BRT and DHL. To facilitate delivery, you will be asked for your telephone number when ordering, allowing the courier to contact you in case of any problem or eventuality during delivery. 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If you are not satisfied with a product, you have 30 days to withdraw from the purchase and receive a refund for the purchase of the product. TECHNICAL ASSISTANCE What differentiates us from other sellers? We are a company that deals with electronics with technicians dedicated to solving your doubts or problems with our products. No waiting on the phone or call center: you can contact us via phone, whatsapp, email or fax, you can find the contact details at the bottom of the page. Our experience is at your service to help you choose and use the products on sale. FEEDBACK Feedback is important to us and to you. We therefore ask you to report any problems in the purchase and to contact us before issuing negative or neutral feedback. Remember to put 5 stars in all fields in your feedback if possible to always guarantee the service we offer. As you can see, the way to contact us is clear and simple, to quickly resolve all problems with our products. ELECTRONICS – HOME AUTOMATION – REMOTE CONTROLS – AUTOMATION AND MECHANICS – SOFTWARE PRODUCTIONS Prestalia e-commerce solutions. DRIVERS – MANUALS – EXAMPLES – IDE PROGRAMMING The Arduino MEGA 2560 is designed for more complex projects. With 54 digital I/O pins, 16 analog inputs and more space for your sketch, it is the recommended board for 3D printers and robotics projects. This way the projects have a lot of space and opportunities. The Arduino Mega 2560 is a board based on the ATmega2560 microcontroller. It features 54 digital input/output pins (of which 15 can be used as PWM outputs), 16 analog inputs, 4 UARTs (hardware serial ports), a 16 MHz crystal oscillator, a USB connection, a power jack, an ICSP header, and a reset button. It contains everything you need to support the microcontroller; simply connect it to a computer with a USB cable or power it with an AC adapter or battery-to-DC to get started. The Ard MPN A000067 Marca Arduino EAN 4560410440057

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