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ATMEGA162V-8PU
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ATMEGA162V-8PU数据手册
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6
ATmega162/V
2513F–AVR–12/03
Port D (PD7..PD0) Port D is an 8-bit bi-directional I/O port with internal pull-up resistors (selected for each
bit). The Port D output buffers have symmetrical drive characteristics with both high sink
and source capability. As inputs, Port D pins that are externally pulled low will source
current if the pull-up resistors are activated. The Port D pins are tri-stated when a reset
condition becomes active, even if the clock is not running.
Port D also serves the functions of various special features of the ATmega162 as listed
on page 77.
Port E(PE2..PE0) Port E is an 3-bit bi-directional I/O port with internal pull-up resistors (selected for each
bit). The Port E output buffers have symmetrical drive characteristics with both high sink
and source capability. As inputs, Port E pins that are externally pulled low will source
current if the pull-up resistors are activated. The Port E pins are tri-stated when a reset
condition becomes active, even if the clock is not running.
Port E also serves the functions of various special features of the ATmega162 as listed
on page 80.
RESET
Reset input. A low level on this pin for longer than the minimum pulse length will gener-
ate a Reset, even if the clock is not running. The minimum pulse length is given in Table
18 on page 47. Shorter pulses are not guaranteed to generate a reset.
XTAL1 Input to the Inverting Oscillator amplifier and input to the internal clock operating circuit.
XTAL2 Output from the Inverting Oscillator amplifier.
About Code Examples This documentation contains simple code examples that briefly show how to use various
parts of the device. These code examples assume that the part specific header file is
included before compilation. Be aware that not all C compiler vendors include bit defini-
tions in the header files and interrupt handling in C is compiler dependent. Please
confirm with the C compiler documentation for more details.

ATMEGA162V-8PU 数据手册

Microchip(微芯)
324 页 / 3.66 MByte
Microchip(微芯)
22 页 / 0.54 MByte
Microchip(微芯)
323 页 / 3.99 MByte
Microchip(微芯)
6 页 / 0.27 MByte
Microchip(微芯)
1 页 / 0.13 MByte

ATMEGA162V8 数据手册

ATMEL(爱特美尔)
ATmega 系列 8 MHz 16 KB 闪存 1 KB SRAM 8 位 微控制器 - TQFP-44
ATMEL(爱特美尔)
ATMEL  ATMEGA162V-8PU  微控制器, 8位, 低功率高性能, ATmega, 8 MHz, 16 KB, 1 KB, 40 引脚, DIP
Microchip(微芯)
8 位 megaAVR 微控制器,4KB 到 16KB 闪存我们在 RS Components 提供 Atmel 的各种 megaAVR 8 位微控制器。每个微控制器均基于增强型 RISC 体系结构,并具有 QTouch 库支持。 所有 megaAVR 微控制器具有不同 Kb 的系统内可编程内存、EEPROM 和 SRAM 以及不同引脚和封装类型。 **megaAVR 8 位微控制器类型 ** •ATmega8 •ATmega16 •ATmega48 •ATmega88 •ATmega162 •ATmega164 •ATmega165 •ATmega168 •ATmega8515 •ATmega8535
ATMEL(爱特美尔)
8 位 megaAVR® 微控制器,4KB 至 16KB 闪存,Atmel我们在 RS Components 提供 Atmel 的各种 megaAVR 8 位微控制器。每个微控制器均基于增强型 RISC 体系结构,并具有 QTouch 库支持。 所有 megaAVR 微控制器具有不同 Kb 的系统内可编程内存、EEPROM 和 SRAM 以及不同引脚和封装类型。 **megaAVR 8 位微控制器类型 ** •ATmega8 •ATmega16 •ATmega48 •ATmega88 •ATmega162 •ATmega164 •ATmega165 •ATmega168 •ATmega8515 •ATmega8535### AVR 微控制器,Atmel
Microchip(微芯)
ATmega 系列 8 MHz 16 KB 闪存 1 KB SRAM 8 位 微控制器 - TQFP-44
Microchip(微芯)
8 位 megaAVR 微控制器,4KB 到 16KB 闪存我们在 RS Components 提供 Atmel 的各种 megaAVR 8 位微控制器。每个微控制器均基于增强型 RISC 体系结构,并具有 QTouch 库支持。 所有 megaAVR 微控制器具有不同 Kb 的系统内可编程内存、EEPROM 和 SRAM 以及不同引脚和封装类型。 **megaAVR 8 位微控制器类型 ** •ATmega8 •ATmega16 •ATmega48 •ATmega88 •ATmega162 •ATmega164 •ATmega165 •ATmega168 •ATmega8515 •ATmega8535
Microchip(微芯)
ATMEL(爱特美尔)
Microchip(微芯)
AVR 8MHz 闪存:8K@x16bit RAM:1KB
ATMEL(爱特美尔)
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