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ATXMEGA192D3-MH

厂商:
Atmel
类别:
ATxmega系列单片机
包装:
Tray
封装:
MLF (VQFN) 64M2 64
无铅情况/ROHS:
无铅
描述:
8/16-bit AVR XMEGA D3 Microcontro...

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  • 参数
  • 描述
参数 数值
DAC Resolution (bits) 0
UART 3
Crypto Engine No
SPI 5
Max I/O Pins 50
Output Compare channels 18
Ext Interrupts 50
Pin Count 64
Analog Comparators 2
Temp. Range (deg C) -40 to 85
PWM Channels 18
Timers 5
USB Speed No
EEPROM (Bytes) 2048
ADC channels 16
Flash (Kbytes) 192 Kbytes
TWI (I2C) 2
DRAM Memory No
USB Interface No
SRAM (Kbytes) 16
ADC Speed (ksps) 200
External Bus Interface 0
Input Capture Channels 18
EEPROM 大小 2K x 8
RAM容量 16K x 8
程序存储器容量 192KB (192K x 8)
数据转换器 A/D 16x12b
周边设备 Brown-out Detect/Reset, POR, PWM, WDT
Resistive Touch Screen No
FPU No
CPU 8-bit AVR
Hardware QTouch Acquisition No
Self Program Memory YES
Operating Voltage (Vcc) 1.6 to 3.6
Camera Interface No
picoPower Yes
Graphic LCD No
32kHz RTC Yes
Max. Operating Frequency 32 MHz
I/O Supply Class 1.6 to 3.6
ADC Resolution (bits) 12
Video Decoder No
# of Touch Channels 16
MPU / MMU no / no
NAND Interface No
Temp. Sensor Yes
Calibrated RC Oscillator Yes
程序存储器类型 FLASH
工作温度 -40°C ~ 85°C
核心处理器 AVR
芯体尺寸 8/16-Bit
振荡器型 Internal
系列 AVR® XMEGA
速度 32MHz
输入/输出数 50
连通性 I²C, IrDA, SPI, UART/USART
工作电压 1.6 V ~ 3.6 V

The high-performance, low-power 8/16-bit AVR XMEGA microcontroller combines 192KB ISP flash memory (8KB boot code section) with read-while-write capabilities, 2KB EEPROM, 16KB SRAM, a four-channel event system, a programmable multi-level interrupt controller, 50 general purpose I/O lines, a 16-bit real time counter, five flexible 16-bit timer/counters with compare modes and PWM, three USARTs, two 2-wire interfaces, two serial peripheral interfaces, one 16-channel/12-bit A/D converter with optional differential input with programmable gain, two analog comparators with window mode, a programmable watchdog timer with separate internal oscillator, accurate internal oscillators with PLL and prescaler, and a programmable brown-out detection. The Program and Debug Interface (PDI), a fast 2-pin interface for programming and debugging, is available. By executing powerful instructions in a single clock cycle, the device achieves throughputs approaching 1 MIPS per MHz, balancing power consumption and processing speed.

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