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MICROCHIP ATXMEGA16D4-MHA2

Manufacturer
MPN
ATXMEGA16D4-MHA2
LCSC Part #
C3226504
Packaging
VQFN-44(7x7)
Customer #
Key Attributes
AVR 8/16 Bit 32MHz 34 VQFN-44(7x7) Microcontrollers RoHS
Datasheetpdf iconMICROCHIP ATXMEGA16D4-MHA2
RoHS Compliance1 documents available
Alternative Parts7
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1+$ 2.6077$ 2.61
200+$ 1.0092$ 201.84
360+$ 0.9737$ 350.53
1,080+$ 0.9567$ 1033.24
Standard Packaging360/Full Reel
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Products Specifications

All
TypeDescription
CategoryIntegrated Circuits (ICs)/Embedded/Microcontrollers
ManufacturerMICROCHIP
PackagingVQFN-44(7x7)
Operating Temperature-40℃~+85℃
Program Memory TypeFLASH
Voltage - Supply1.6V~3.6V
EEPROM1KB
Program Storage Size16KB
CPU CoreAVR
Core Size8/16 Bit
CPU Maximum Speed32MHz
Oscillator TypeBuilt-in
Number of I/O34

Introduction

AI Translation

The Atmel AVR XMEGA is a family of low power, high performance, and peripheral rich 8/16-bit microcontrollers based on the AVR enhanced RISC architecture. By executing instructions in a single clock cycle, the AVR XMEGA device achieves throughputs CPU approaching one million instructions per second (MIPS) per megahertz, allowing the system designer to optimize power consumption versus processing speed. The AVR CPU combines a rich instruction set with 32 general purpose working registers. All 32 registers are directly connected to the arithmetic logic unit (ALU), allowing two independent registers to be accessed in a single instruction, executed in one clock cycle. The resulting architecture is more code efficient while achieving throughputs many times faster than conventional single-accumulator or CISC based microcontrollers. The AVR XMEGA D4 devices provide the following features: in-system programmable flash with read-while-write capabilities; internal EEPROM and SRAM; four-channel event system and programmable multilevel interrupt controller, 34 general purpose I/O lines, 16-bit real-time counter (RTC); four flexible, 16-bit timer/counters with compare and PWM channels; two USARTs; two two-wire serial interfaces (TWIs); two serial peripheral interfaces (SPIs); one twelve - channel, 12-bit ADC with optional differential input with programmable gain; two analog comparators (ACs) with window mode; programmable watchdog timer with separate internal oscillator; accurate internal oscillators with PLL and prescaler; and programmable brown-out detection. The program and debug interface (PDI), a fast, two-pin interface for programming and debugging, is available. The XMEGA D4 devices have five software selectable power saving modes. The idle mode stops the CPU while allowing the SRAM, event system, interrupt controller, and all peripherals to continue functioning. The power-down mode saves the SRAM and register contents, but stops the oscillators, disabling all other functions until the next TWI, or pin-change interrupt, or reset. In power-save mode, the asynchronous real-time counter continues to run, allowing the application to maintain a timer base while the rest of the device is sleeping. In standby mode, the external crystal oscillator keeps running while the rest of the device is sleeping. This allows very fast startup from the external crystal, combined with low power consumption. In extended standby mode, both the main oscillator and the asynchronous timer continue to run. To further reduce power consumption, the peripheral clock to each individual peripheral can optionally be stopped in active mode and idle sleep mode. Atmel offers a free QTouch library for embedding capacitive touch buttons, sliders and wheels functionality into AVR microcontrollers. The devices are manufactured using Atmel high-density, nonvolatile memory technology. The program flash memory can be reprogrammed in-system through the PDI interface. A boot loader running in the device can use any interface to download the application program to the flash memory. The boot loader software in the boot flash section will continue to run while the application flash section is updated, providing true read-while-write operation. By combining an 8/16-bit RISC CPU with in-system, self-programmable flash, the AVR XMEGA is a powerful microcontroller family that provides a highly flexible and cost effective solution for many embedded applications. All Atmel AVR XMEGA devices are supported with a full suite of program and system development tools, including C compilers, macro assemblers, program debugger/simulators, programmers, and evaluation kits.

Features

AI Translation
  • High-performance, low-power Atmel AVR XMEGA 8/16-bit Microcontroller
  • Nonvolatile program and data memories
  • 16K - 128KBytes of in-system self-programmable flash
  • 4K - 8KBytes boot section
  • 1K - 2KBytes EEPROM
  • 2K - 8KBytes internal SRAM
  • Four-channel event system
  • Four 16-bit timer/counters
  • Two timer/counters with 4 output compare or input capture channels
  • Two timer/counters with 2 output compare or input capture channels
  • High-resolution extensions on all timer/counters
  • Advanced waveform extension (AWeX) on one timer/counter
  • Two USARTs with IrDA support for one USART
  • Two two-wire interfaces with dual address match (I2C and SMBus compatible)
  • Two serial peripheral interfaces (SPIs)
  • CRC-16 (CRC-CCITT) and CRC-32 (IEEE 802.3) generator
  • 16-bit real time counter (RTC) with separate oscillator
  • One twelve-channel, 12-bit, 200ksps Analog to Digital Converter
  • Two Analog Comparators with window compare function, and current sources
  • External interrupts on all general purpose I/O pins
  • Programmable watchdog timer with separate on-chip ultra low power oscillator
  • QTouch library support
  • Capacitive touch buttons, sliders and wheels
  • Power-on reset and programmable brown-out detection
  • Internal and external clock options with PLL and prescaler
  • Programmable multilevel interrupt controller
  • Five sleep modes
  • Programming and debug interfaces: PDI (program and debug interface)
  • I/O and packages: 34 Programmable I/O pins
  • 44 - lead TQFP
  • 44 - pad VQFN/QFN
  • 49 - ball VFBGA
  • Operating voltage 1.6 – 3.6V
  • Operating frequency: 0 – 12MHz from 1.6V, 0 – 32MHz from 2.7V

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