PIC18F45K22价格

参考价格:¥17.6422

型号:PIC18F45K22-E/P 品牌:Microchip 备注:这里有PIC18F45K22多少钱,2026年最近7天走势,今日出价,今日竞价,PIC18F45K22批发/采购报价,PIC18F45K22行情走势销售排行榜,PIC18F45K22报价。
型号 功能描述 生产厂家 企业 LOGO 操作
PIC18F45K22

28/40/44-Pin, Low-Power, High-Performance Microcontrollers with nanoWatt XLP Technology

High-Performance RISC CPU: • C Compiler Optimized Architecture: - Optional extended instruction set designed to optimize re-entrant code • Up to 1024 Bytes Data EEPROM • Up to 64 Kbytes Linear Program Memory Addressing • Up to 3896 Bytes Linear Data Memory Addressing • Up to 16 MIPS Operatio

Microchip

微芯科技

PIC18F45K22

Flash Memory Programming Specification

文件:545.77 Kbytes Page:42 Pages

Microchip

微芯科技

PIC18F45K22

Newer Device Available PIC18F45Q10

Microchip

微芯科技

28/40/44-Pin, Low-Power, High-Performance Microcontrollers with nanoWatt XLP Technology

High-Performance RISC CPU: • C Compiler Optimized Architecture: - Optional extended instruction set designed to optimize re-entrant code • Up to 1024 Bytes Data EEPROM • Up to 64 Kbytes Linear Program Memory Addressing • Up to 3896 Bytes Linear Data Memory Addressing • Up to 16 MIPS Operatio

Microchip

微芯科技

28/40/44-Pin, Low-Power, High-Performance Microcontrollers with nanoWatt XLP Technology

High-Performance RISC CPU: • C Compiler Optimized Architecture: - Optional extended instruction set designed to optimize re-entrant code • Up to 1024 Bytes Data EEPROM • Up to 64 Kbytes Linear Program Memory Addressing • Up to 3896 Bytes Linear Data Memory Addressing • Up to 16 MIPS Operatio

Microchip

微芯科技

28/40/44-Pin, Low-Power, High-Performance Microcontrollers with nanoWatt XLP Technology

High-Performance RISC CPU: • C Compiler Optimized Architecture: - Optional extended instruction set designed to optimize re-entrant code • Up to 1024 Bytes Data EEPROM • Up to 64 Kbytes Linear Program Memory Addressing • Up to 3896 Bytes Linear Data Memory Addressing • Up to 16 MIPS Operatio

Microchip

微芯科技

28/40/44-Pin, Low-Power, High-Performance Microcontrollers with nanoWatt XLP Technology

High-Performance RISC CPU: • C Compiler Optimized Architecture: - Optional extended instruction set designed to optimize re-entrant code • Up to 1024 Bytes Data EEPROM • Up to 64 Kbytes Linear Program Memory Addressing • Up to 3896 Bytes Linear Data Memory Addressing • Up to 16 MIPS Operatio

Microchip

微芯科技

28/40/44-Pin, Low-Power, High-Performance Microcontrollers with nanoWatt XLP Technology

High-Performance RISC CPU: • C Compiler Optimized Architecture: - Optional extended instruction set designed to optimize re-entrant code • Up to 1024 Bytes Data EEPROM • Up to 64 Kbytes Linear Program Memory Addressing • Up to 3896 Bytes Linear Data Memory Addressing • Up to 16 MIPS Operatio

Microchip

微芯科技

28/40/44-Pin, Low-Power, High-Performance Microcontrollers with nanoWatt XLP Technology

High-Performance RISC CPU: • C Compiler Optimized Architecture: - Optional extended instruction set designed to optimize re-entrant code • Up to 1024 Bytes Data EEPROM • Up to 64 Kbytes Linear Program Memory Addressing • Up to 3896 Bytes Linear Data Memory Addressing • Up to 16 MIPS Operatio

Microchip

微芯科技

28/40/44-Pin, Low-Power, High-Performance Microcontrollers with nanoWatt XLP Technology

High-Performance RISC CPU: • C Compiler Optimized Architecture: - Optional extended instruction set designed to optimize re-entrant code • Up to 1024 Bytes Data EEPROM • Up to 64 Kbytes Linear Program Memory Addressing • Up to 3896 Bytes Linear Data Memory Addressing • Up to 16 MIPS Operatio

Microchip

微芯科技

28/40/44-Pin, Low-Power, High-Performance Microcontrollers with nanoWatt XLP Technology

High-Performance RISC CPU: • C Compiler Optimized Architecture: - Optional extended instruction set designed to optimize re-entrant code • Up to 1024 Bytes Data EEPROM • Up to 64 Kbytes Linear Program Memory Addressing • Up to 3896 Bytes Linear Data Memory Addressing • Up to 16 MIPS Operatio

Microchip

微芯科技

28/40/44-Pin, Low-Power, High-Performance Microcontrollers with nanoWatt XLP Technology

High-Performance RISC CPU: • C Compiler Optimized Architecture: - Optional extended instruction set designed to optimize re-entrant code • Up to 1024 Bytes Data EEPROM • Up to 64 Kbytes Linear Program Memory Addressing • Up to 3896 Bytes Linear Data Memory Addressing • Up to 16 MIPS Operatio

Microchip

微芯科技

28/40/44-Pin, Low-Power, High-Performance Microcontrollers with nanoWatt XLP Technology

High-Performance RISC CPU: • C Compiler Optimized Architecture: - Optional extended instruction set designed to optimize re-entrant code • Up to 1024 Bytes Data EEPROM • Up to 64 Kbytes Linear Program Memory Addressing • Up to 3896 Bytes Linear Data Memory Addressing • Up to 16 MIPS Operatio

Microchip

微芯科技

28/40/44-Pin, Low-Power, High-Performance Microcontrollers with nanoWatt XLP Technology

High-Performance RISC CPU: • C Compiler Optimized Architecture: - Optional extended instruction set designed to optimize re-entrant code • Up to 1024 Bytes Data EEPROM • Up to 64 Kbytes Linear Program Memory Addressing • Up to 3896 Bytes Linear Data Memory Addressing • Up to 16 MIPS Operatio

Microchip

微芯科技

28/40/44-Pin, Low-Power, High-Performance Microcontrollers with nanoWatt XLP Technology

High-Performance RISC CPU: • C Compiler Optimized Architecture: - Optional extended instruction set designed to optimize re-entrant code • Up to 1024 Bytes Data EEPROM • Up to 64 Kbytes Linear Program Memory Addressing • Up to 3896 Bytes Linear Data Memory Addressing • Up to 16 MIPS Operatio

Microchip

微芯科技

28/40/44-Pin, Low-Power, High-Performance Microcontrollers with nanoWatt XLP Technology

High-Performance RISC CPU: • C Compiler Optimized Architecture: - Optional extended instruction set designed to optimize re-entrant code • Up to 1024 Bytes Data EEPROM • Up to 64 Kbytes Linear Program Memory Addressing • Up to 3896 Bytes Linear Data Memory Addressing • Up to 16 MIPS Operatio

Microchip

微芯科技

28/40/44-Pin, Low-Power, High-Performance Microcontrollers with nanoWatt XLP Technology

High-Performance RISC CPU: • C Compiler Optimized Architecture: - Optional extended instruction set designed to optimize re-entrant code • Up to 1024 Bytes Data EEPROM • Up to 64 Kbytes Linear Program Memory Addressing • Up to 3896 Bytes Linear Data Memory Addressing • Up to 16 MIPS Operatio

Microchip

微芯科技

28/40/44-Pin, Low-Power, High-Performance Microcontrollers with nanoWatt XLP Technology

High-Performance RISC CPU: • C Compiler Optimized Architecture: - Optional extended instruction set designed to optimize re-entrant code • Up to 1024 Bytes Data EEPROM • Up to 64 Kbytes Linear Program Memory Addressing • Up to 3896 Bytes Linear Data Memory Addressing • Up to 16 MIPS Operatio

Microchip

微芯科技

28/40/44-Pin, Low-Power, High-Performance Microcontrollers with nanoWatt XLP Technology

High-Performance RISC CPU: • C Compiler Optimized Architecture: - Optional extended instruction set designed to optimize re-entrant code • Up to 1024 Bytes Data EEPROM • Up to 64 Kbytes Linear Program Memory Addressing • Up to 3896 Bytes Linear Data Memory Addressing • Up to 16 MIPS Operatio

Microchip

微芯科技

28/40/44-Pin, Low-Power, High-Performance Microcontrollers with nanoWatt XLP Technology

High-Performance RISC CPU: • C Compiler Optimized Architecture: - Optional extended instruction set designed to optimize re-entrant code • Up to 1024 Bytes Data EEPROM • Up to 64 Kbytes Linear Program Memory Addressing • Up to 3896 Bytes Linear Data Memory Addressing • Up to 16 MIPS Operatio

Microchip

微芯科技

28/40/44-Pin, Low-Power, High-Performance Microcontrollers with nanoWatt XLP Technology

High-Performance RISC CPU: • C Compiler Optimized Architecture: - Optional extended instruction set designed to optimize re-entrant code • Up to 1024 Bytes Data EEPROM • Up to 64 Kbytes Linear Program Memory Addressing • Up to 3896 Bytes Linear Data Memory Addressing • Up to 16 MIPS Operatio

Microchip

微芯科技

28/40/44-Pin, Low-Power, High-Performance Microcontrollers with nanoWatt XLP Technology

High-Performance RISC CPU: • C Compiler Optimized Architecture: - Optional extended instruction set designed to optimize re-entrant code • Up to 1024 Bytes Data EEPROM • Up to 64 Kbytes Linear Program Memory Addressing • Up to 3896 Bytes Linear Data Memory Addressing • Up to 16 MIPS Operatio

Microchip

微芯科技

28/40/44-Pin, Low-Power, High-Performance Microcontrollers with nanoWatt XLP Technology

High-Performance RISC CPU: • C Compiler Optimized Architecture: - Optional extended instruction set designed to optimize re-entrant code • Up to 1024 Bytes Data EEPROM • Up to 64 Kbytes Linear Program Memory Addressing • Up to 3896 Bytes Linear Data Memory Addressing • Up to 16 MIPS Operatio

Microchip

微芯科技

28/40/44-Pin, Low-Power, High-Performance Microcontrollers with nanoWatt XLP Technology

High-Performance RISC CPU: • C Compiler Optimized Architecture: - Optional extended instruction set designed to optimize re-entrant code • Up to 1024 Bytes Data EEPROM • Up to 64 Kbytes Linear Program Memory Addressing • Up to 3896 Bytes Linear Data Memory Addressing • Up to 16 MIPS Operatio

Microchip

微芯科技

28/40/44-Pin, Low-Power, High-Performance Microcontrollers with nanoWatt XLP Technology

High-Performance RISC CPU: • C Compiler Optimized Architecture: - Optional extended instruction set designed to optimize re-entrant code • Up to 1024 Bytes Data EEPROM • Up to 64 Kbytes Linear Program Memory Addressing • Up to 3896 Bytes Linear Data Memory Addressing • Up to 16 MIPS Operatio

Microchip

微芯科技

28/40/44-Pin, Low-Power, High-Performance Microcontrollers with nanoWatt XLP Technology

High-Performance RISC CPU: • C Compiler Optimized Architecture: - Optional extended instruction set designed to optimize re-entrant code • Up to 1024 Bytes Data EEPROM • Up to 64 Kbytes Linear Program Memory Addressing • Up to 3896 Bytes Linear Data Memory Addressing • Up to 16 MIPS Operatio

Microchip

微芯科技

28/40/44-Pin, Low-Power, High-Performance Microcontrollers with nanoWatt XLP Technology

High-Performance RISC CPU: • C Compiler Optimized Architecture: - Optional extended instruction set designed to optimize re-entrant code • Up to 1024 Bytes Data EEPROM • Up to 64 Kbytes Linear Program Memory Addressing • Up to 3896 Bytes Linear Data Memory Addressing • Up to 16 MIPS Operatio

Microchip

微芯科技

28/40/44-Pin, Low-Power, High-Performance Microcontrollers with nanoWatt XLP Technology

High-Performance RISC CPU: • C Compiler Optimized Architecture: - Optional extended instruction set designed to optimize re-entrant code • Up to 1024 Bytes Data EEPROM • Up to 64 Kbytes Linear Program Memory Addressing • Up to 3896 Bytes Linear Data Memory Addressing • Up to 16 MIPS Operatio

Microchip

微芯科技

28/40/44-Pin, Low-Power, High-Performance Microcontrollers with nanoWatt XLP Technology

High-Performance RISC CPU: • C Compiler Optimized Architecture: - Optional extended instruction set designed to optimize re-entrant code • Up to 1024 Bytes Data EEPROM • Up to 64 Kbytes Linear Program Memory Addressing • Up to 3896 Bytes Linear Data Memory Addressing • Up to 16 MIPS Operatio

Microchip

微芯科技

28/40/44-Pin, Low-Power, High-Performance Microcontrollers with nanoWatt XLP Technology

High-Performance RISC CPU: • C Compiler Optimized Architecture: - Optional extended instruction set designed to optimize re-entrant code • Up to 1024 Bytes Data EEPROM • Up to 64 Kbytes Linear Program Memory Addressing • Up to 3896 Bytes Linear Data Memory Addressing • Up to 16 MIPS Operatio

Microchip

微芯科技

28/40/44-Pin, Low-Power, High-Performance Microcontrollers with nanoWatt XLP Technology

High-Performance RISC CPU: • C Compiler Optimized Architecture: - Optional extended instruction set designed to optimize re-entrant code • Up to 1024 Bytes Data EEPROM • Up to 64 Kbytes Linear Program Memory Addressing • Up to 3896 Bytes Linear Data Memory Addressing • Up to 16 MIPS Operatio

Microchip

微芯科技

28/40/44-Pin, Low-Power, High-Performance Microcontrollers with nanoWatt XLP Technology

High-Performance RISC CPU: • C Compiler Optimized Architecture: - Optional extended instruction set designed to optimize re-entrant code • Up to 1024 Bytes Data EEPROM • Up to 64 Kbytes Linear Program Memory Addressing • Up to 3896 Bytes Linear Data Memory Addressing • Up to 16 MIPS Operatio

Microchip

微芯科技

28/40/44-Pin, Low-Power, High-Performance Microcontrollers with nanoWatt XLP Technology

High-Performance RISC CPU: • C Compiler Optimized Architecture: - Optional extended instruction set designed to optimize re-entrant code • Up to 1024 Bytes Data EEPROM • Up to 64 Kbytes Linear Program Memory Addressing • Up to 3896 Bytes Linear Data Memory Addressing • Up to 16 MIPS Operatio

Microchip

微芯科技

28/40/44-Pin, Low-Power, High-Performance Microcontrollers with nanoWatt XLP Technology

High-Performance RISC CPU: • C Compiler Optimized Architecture: - Optional extended instruction set designed to optimize re-entrant code • Up to 1024 Bytes Data EEPROM • Up to 64 Kbytes Linear Program Memory Addressing • Up to 3896 Bytes Linear Data Memory Addressing • Up to 16 MIPS Operatio

Microchip

微芯科技

28/40/44-Pin, Low-Power, High-Performance Microcontrollers with nanoWatt XLP Technology

High-Performance RISC CPU: • C Compiler Optimized Architecture: - Optional extended instruction set designed to optimize re-entrant code • Up to 1024 Bytes Data EEPROM • Up to 64 Kbytes Linear Program Memory Addressing • Up to 3896 Bytes Linear Data Memory Addressing • Up to 16 MIPS Operatio

Microchip

微芯科技

28/40/44-Pin, Low-Power, High-Performance Microcontrollers with nanoWatt XLP Technology

High-Performance RISC CPU: • C Compiler Optimized Architecture: - Optional extended instruction set designed to optimize re-entrant code • Up to 1024 Bytes Data EEPROM • Up to 64 Kbytes Linear Program Memory Addressing • Up to 3896 Bytes Linear Data Memory Addressing • Up to 16 MIPS Operatio

Microchip

微芯科技

28/40/44-Pin, Low-Power, High-Performance Microcontrollers with nanoWatt XLP Technology

High-Performance RISC CPU: • C Compiler Optimized Architecture: - Optional extended instruction set designed to optimize re-entrant code • Up to 1024 Bytes Data EEPROM • Up to 64 Kbytes Linear Program Memory Addressing • Up to 3896 Bytes Linear Data Memory Addressing • Up to 16 MIPS Operatio

Microchip

微芯科技

28/40/44-Pin, Low-Power, High-Performance Microcontrollers with nanoWatt XLP Technology

High-Performance RISC CPU: • C Compiler Optimized Architecture: - Optional extended instruction set designed to optimize re-entrant code • Up to 1024 Bytes Data EEPROM • Up to 64 Kbytes Linear Program Memory Addressing • Up to 3896 Bytes Linear Data Memory Addressing • Up to 16 MIPS Operatio

Microchip

微芯科技

28/40/44-Pin, Low-Power, High-Performance Microcontrollers with nanoWatt XLP Technology

High-Performance RISC CPU: • C Compiler Optimized Architecture: - Optional extended instruction set designed to optimize re-entrant code • Up to 1024 Bytes Data EEPROM • Up to 64 Kbytes Linear Program Memory Addressing • Up to 3896 Bytes Linear Data Memory Addressing • Up to 16 MIPS Operatio

Microchip

微芯科技

28/40/44-Pin, Low-Power, High-Performance Microcontrollers with nanoWatt XLP Technology

High-Performance RISC CPU: • C Compiler Optimized Architecture: - Optional extended instruction set designed to optimize re-entrant code • Up to 1024 Bytes Data EEPROM • Up to 64 Kbytes Linear Program Memory Addressing • Up to 3896 Bytes Linear Data Memory Addressing • Up to 16 MIPS Operatio

Microchip

微芯科技

28/40/44-Pin, Low-Power, High-Performance Microcontrollers with nanoWatt XLP Technology

High-Performance RISC CPU: • C Compiler Optimized Architecture: - Optional extended instruction set designed to optimize re-entrant code • Up to 1024 Bytes Data EEPROM • Up to 64 Kbytes Linear Program Memory Addressing • Up to 3896 Bytes Linear Data Memory Addressing • Up to 16 MIPS Operatio

Microchip

微芯科技

28/40/44-Pin, Low-Power, High-Performance Microcontrollers with nanoWatt XLP Technology

High-Performance RISC CPU: • C Compiler Optimized Architecture: - Optional extended instruction set designed to optimize re-entrant code • Up to 1024 Bytes Data EEPROM • Up to 64 Kbytes Linear Program Memory Addressing • Up to 3896 Bytes Linear Data Memory Addressing • Up to 16 MIPS Operatio

Microchip

微芯科技

28/40/44-Pin, Low-Power, High-Performance Microcontrollers with nanoWatt XLP Technology

High-Performance RISC CPU: • C Compiler Optimized Architecture: - Optional extended instruction set designed to optimize re-entrant code • Up to 1024 Bytes Data EEPROM • Up to 64 Kbytes Linear Program Memory Addressing • Up to 3896 Bytes Linear Data Memory Addressing • Up to 16 MIPS Operatio

Microchip

微芯科技

28/40/44-Pin, Low-Power, High-Performance Microcontrollers with nanoWatt XLP Technology

High-Performance RISC CPU: • C Compiler Optimized Architecture: - Optional extended instruction set designed to optimize re-entrant code • Up to 1024 Bytes Data EEPROM • Up to 64 Kbytes Linear Program Memory Addressing • Up to 3896 Bytes Linear Data Memory Addressing • Up to 16 MIPS Operatio

Microchip

微芯科技

28/40/44-Pin, Low-Power, High-Performance Microcontrollers with nanoWatt XLP Technology

High-Performance RISC CPU: • C Compiler Optimized Architecture: - Optional extended instruction set designed to optimize re-entrant code • Up to 1024 Bytes Data EEPROM • Up to 64 Kbytes Linear Program Memory Addressing • Up to 3896 Bytes Linear Data Memory Addressing • Up to 16 MIPS Operatio

Microchip

微芯科技

28/40/44-Pin, Low-Power, High-Performance Microcontrollers with nanoWatt XLP Technology

High-Performance RISC CPU: • C Compiler Optimized Architecture: - Optional extended instruction set designed to optimize re-entrant code • Up to 1024 Bytes Data EEPROM • Up to 64 Kbytes Linear Program Memory Addressing • Up to 3896 Bytes Linear Data Memory Addressing • Up to 16 MIPS Operatio

Microchip

微芯科技

28/40/44-Pin, Low-Power, High-Performance Microcontrollers with nanoWatt XLP Technology

High-Performance RISC CPU: • C Compiler Optimized Architecture: - Optional extended instruction set designed to optimize re-entrant code • Up to 1024 Bytes Data EEPROM • Up to 64 Kbytes Linear Program Memory Addressing • Up to 3896 Bytes Linear Data Memory Addressing • Up to 16 MIPS Operatio

Microchip

微芯科技

28/40/44-Pin, Low-Power, High-Performance Microcontrollers with nanoWatt XLP Technology

High-Performance RISC CPU: • C Compiler Optimized Architecture: - Optional extended instruction set designed to optimize re-entrant code • Up to 1024 Bytes Data EEPROM • Up to 64 Kbytes Linear Program Memory Addressing • Up to 3896 Bytes Linear Data Memory Addressing • Up to 16 MIPS Operatio

Microchip

微芯科技

28/40/44-Pin, Low-Power, High-Performance Microcontrollers with nanoWatt XLP Technology

High-Performance RISC CPU: • C Compiler Optimized Architecture: - Optional extended instruction set designed to optimize re-entrant code • Up to 1024 Bytes Data EEPROM • Up to 64 Kbytes Linear Program Memory Addressing • Up to 3896 Bytes Linear Data Memory Addressing • Up to 16 MIPS Operatio

Microchip

微芯科技

28/40/44-Pin, Low-Power, High-Performance Microcontrollers with nanoWatt XLP Technology

High-Performance RISC CPU: • C Compiler Optimized Architecture: - Optional extended instruction set designed to optimize re-entrant code • Up to 1024 Bytes Data EEPROM • Up to 64 Kbytes Linear Program Memory Addressing • Up to 3896 Bytes Linear Data Memory Addressing • Up to 16 MIPS Operatio

Microchip

微芯科技

28/40/44-Pin, Low-Power, High-Performance Microcontrollers with nanoWatt XLP Technology

High-Performance RISC CPU: • C Compiler Optimized Architecture: - Optional extended instruction set designed to optimize re-entrant code • Up to 1024 Bytes Data EEPROM • Up to 64 Kbytes Linear Program Memory Addressing • Up to 3896 Bytes Linear Data Memory Addressing • Up to 16 MIPS Operatio

Microchip

微芯科技

28/40/44-Pin, Low-Power, High-Performance Microcontrollers with nanoWatt XLP Technology

High-Performance RISC CPU: • C Compiler Optimized Architecture: - Optional extended instruction set designed to optimize re-entrant code • Up to 1024 Bytes Data EEPROM • Up to 64 Kbytes Linear Program Memory Addressing • Up to 3896 Bytes Linear Data Memory Addressing • Up to 16 MIPS Operatio

Microchip

微芯科技

28/40/44-Pin, Low-Power, High-Performance Microcontrollers with nanoWatt XLP Technology

High-Performance RISC CPU: • C Compiler Optimized Architecture: - Optional extended instruction set designed to optimize re-entrant code • Up to 1024 Bytes Data EEPROM • Up to 64 Kbytes Linear Program Memory Addressing • Up to 3896 Bytes Linear Data Memory Addressing • Up to 16 MIPS Operatio

Microchip

微芯科技

28/40/44-Pin, Low-Power, High-Performance Microcontrollers with nanoWatt XLP Technology

High-Performance RISC CPU: • C Compiler Optimized Architecture: - Optional extended instruction set designed to optimize re-entrant code • Up to 1024 Bytes Data EEPROM • Up to 64 Kbytes Linear Program Memory Addressing • Up to 3896 Bytes Linear Data Memory Addressing • Up to 16 MIPS Operatio

Microchip

微芯科技

28/40/44-Pin, Low-Power, High-Performance Microcontrollers with nanoWatt XLP Technology

High-Performance RISC CPU: • C Compiler Optimized Architecture: - Optional extended instruction set designed to optimize re-entrant code • Up to 1024 Bytes Data EEPROM • Up to 64 Kbytes Linear Program Memory Addressing • Up to 3896 Bytes Linear Data Memory Addressing • Up to 16 MIPS Operatio

Microchip

微芯科技

28/40/44-Pin, Low-Power, High-Performance Microcontrollers with nanoWatt XLP Technology

High-Performance RISC CPU: • C Compiler Optimized Architecture: - Optional extended instruction set designed to optimize re-entrant code • Up to 1024 Bytes Data EEPROM • Up to 64 Kbytes Linear Program Memory Addressing • Up to 3896 Bytes Linear Data Memory Addressing • Up to 16 MIPS Operatio

Microchip

微芯科技

28/40/44-Pin, Low-Power, High-Performance Microcontrollers with nanoWatt XLP Technology

High-Performance RISC CPU: • C Compiler Optimized Architecture: - Optional extended instruction set designed to optimize re-entrant code • Up to 1024 Bytes Data EEPROM • Up to 64 Kbytes Linear Program Memory Addressing • Up to 3896 Bytes Linear Data Memory Addressing • Up to 16 MIPS Operatio

Microchip

微芯科技

28/40/44-Pin, Low-Power, High-Performance Microcontrollers with nanoWatt XLP Technology

High-Performance RISC CPU: • C Compiler Optimized Architecture: - Optional extended instruction set designed to optimize re-entrant code • Up to 1024 Bytes Data EEPROM • Up to 64 Kbytes Linear Program Memory Addressing • Up to 3896 Bytes Linear Data Memory Addressing • Up to 16 MIPS Operatio

Microchip

微芯科技

28/40/44-Pin, Low-Power, High-Performance Microcontrollers with nanoWatt XLP Technology

High-Performance RISC CPU: • C Compiler Optimized Architecture: - Optional extended instruction set designed to optimize re-entrant code • Up to 1024 Bytes Data EEPROM • Up to 64 Kbytes Linear Program Memory Addressing • Up to 3896 Bytes Linear Data Memory Addressing • Up to 16 MIPS Operatio

Microchip

微芯科技

28/40/44-Pin, Low-Power, High-Performance Microcontrollers with nanoWatt XLP Technology

文件:5.67499 Mbytes Page:496 Pages

Microchip

微芯科技

PIC18F45K22产品属性

  • 类型

    描述

  • 型号

    PIC18F45K22

  • 功能描述

    8位微控制器 -MCU 32KB Flash 1536B RAM 8B nanoWatt

  • RoHS

  • 制造商

    Silicon Labs

  • 核心

    8051

  • 处理器系列

    C8051F39x

  • 数据总线宽度

    8 bit

  • 最大时钟频率

    50 MHz

  • 程序存储器大小

    16 KB 数据 RAM

  • 大小

    1 KB 片上

  • ADC

    Yes

  • 工作电源电压

    1.8 V to 3.6 V

  • 工作温度范围

    - 40 C to + 105 C

  • 封装/箱体

    QFN-20

  • 安装风格

    SMD/SMT

更新时间:2026-1-3 23:01:00
IC供应商 芯片型号 品牌 批号 封装 库存 备注 价格
Microchip(微芯)
25+
TQFP-44_10x10x08P
7589
全新原装现货,支持排单订货,可含税开票
Microchip(微芯)
24+
标准封装
9048
原厂渠道供应,大量现货,原型号开票。
MICROCHIP
2016+
TQFP44
4000
只做原装,假一罚十,公司可开17%增值税发票!
MICROCHIP/微芯
24+
TQFP
33500
全新进口原装现货,假一罚十
Microchip
25+
TQFP44
22000
一级代理原装正品,实单必成。
MICROCHIP/微芯
2038+
QFP44
8000
原装正品现货假一罚十
Microchip
25+
TQFP44
6000
全新原装现货、诚信经营!
Microchip(微芯)
25+
5000
只做原装 假一罚百 可开票 可售样
MICROCHIP
23+
TQFP44
3200
正规渠道,只有原装!
MICROCHIP
24+
44TQFP
1600
只做原装 有挂有货 假一赔十

PIC18F45K22数据表相关新闻