MICROCHIP PIC18LF2480-I/ML 芯片, 8位微控制器, PIC118LF, 40MHZ, QFN-28
DEVICE OVERVIEW
This document contains device specific information for the following devices:
• PIC18F2480
• PIC18F2580
• PIC18F4480
• PIC18F4580
This family of devices offers the advantages of all PIC18 microcontrollers – namely, high computational performance at an economical price – with the addition of high-endurance, Enhanced Flash program memory. In addition to these features, the PIC18F2480/2580/4480/4580 family introduces design enhancements that make these microcontrollers a logical choice for many high-performance, power sensitive applications.
Power Managed Modes:
• Run: CPU on, peripherals on
• Idle: CPU off, peripherals on
• Sleep: CPU off, peripherals off
• Idle mode currents down to 5.8 µA typical
• Sleep mode current down to 0.1 µA typical
• Timer1 Oscillator: 1.1 µA, 32 kHz, 2V
• Watchdog Timer: 2.1 µA
• Two-Speed Oscillator Start-up
Flexible Oscillator Structure:
• Four Crystal modes, up to 40 MHz
• 4X Phase Lock Loop PLL – available for crystal and internal oscillators
• Two External RC modes, up to 4 MHz
• Two External Clock modes, up to 40 MHz
• Internal oscillator block:
- 8 user selectable frequencies, from 31 kHz to 8 MHz
- Provides a complete range of clock speeds, from 31 kHz to 32 MHz when used with PLL
- User tunable to compensate for frequency drift
• Secondary oscillator using Timer1 @ 32 kHz
• Fail-Safe Clock Monitor
- Allows for safe shutdown if peripheral clock stops
Special Microcontroller Features:
• C compiler optimized architecture with optional extended instruction set
• 100,000 erase/write cycle Enhanced Flash program memory typical
• 1,000,000 erase/write cycle Data EEPROM memory typical
• Flash/Data EEPROM Retention: > 40 years
• Self-programmable under software control
• Priority levels for interrupts
• 8 x 8 Single Cycle Hardware Multiplier
• Extended Watchdog Timer WDT:
- Programmable period from 41 ms to 131s
• Single-Supply 5V In-Circuit Serial
Programming™ ICSP™ via two pins
• In-Circuit Debug ICD via two pins
• Wide operating voltage range: 2.0V to 5.5V
Peripheral Highlights:
• High current sink/source 25 mA/25 mA
• Three external interrupts
• One Capture/Compare/PWM CCP module
• Enhanced Capture/Compare/PWM ECCP module 40/44-pin devices only:
- One, two or four PWM outputs
- Selectable polarity
- Programmable dead time
- Auto-Shutdown and Auto-Restart
• Master Synchronous Serial Port MSSP module supporting 3-wire SPI™ all 4 modes and I2C™ Master and Slave modes
• Enhanced Addressable USART module
- Supports RS-485, RS-232 and LIN 1.3
- RS-232 operation using internal oscillator block no external crystal required
- Auto-Wake-up on Start bit
- Auto-Baud detect
• 10-bit, up to 11-channel Analog-to-Digital Converter module A/D, up to 100 Ksps
- Auto-acquisition capability
- Conversion available during Sleep
• Dual analog comparators with input multiplexing
ECAN Module Features:
• Message bit rates up to 1 Mbps
• Conforms to CAN 2.0B ACTIVE Specification
• Fully backward compatible with PIC18XXX8 CAN modules
• Three modes of operation:
- Legacy, Enhanced Legacy, FIFO
• Three dedicated transmit buffers with prioritization
• Two dedicated receive buffers
• Six programmable receive/transmit buffers
• Three full 29-bit acceptance masks
• 16 full 29-bit acceptance filters w/ dynamic association
• DeviceNet™ data byte filter support
• Automatic remote frame handling
• Advanced error management features
频率 40 MHz
电源电压DC 5.00 V, 5.50 V max
针脚数 28
时钟频率 40.0 MHz
RAM大小 768 B
位数 8
耗散功率 1000 mW
FLASH内存容量 16 KB
I/O引脚数 25
存取时间 40.0 µs
内核架构 PIC
模数转换数ADC 1
输入/输出数 25 Input
工作温度Max 85 ℃
工作温度Min -40 ℃
耗散功率Max 1000 mW
电源电压 2V ~ 5.5V
电源电压Max 5.5 V
电源电压Min 2 V
安装方式 Surface Mount
引脚数 28
封装 QFN-28
长度 6 mm
宽度 6 mm
高度 0.88 mm
封装 QFN-28
工作温度 -40℃ ~ 85℃
产品生命周期 Unknown
包装方式 Tube
RoHS标准 RoHS Compliant
含铅标准 Lead Free
REACH SVHC版本 2015/12/17
型号/品牌 | 代替类型 | 替代型号对比 |
---|---|---|
PIC18LF2480-I/ML Microchip 微芯 | 当前型号 | 当前型号 |
PIC18F2480-I/SO 微芯 | 类似代替 | PIC18LF2480-I/ML和PIC18F2480-I/SO的区别 |
PIC18LF2480T-I/ML 微芯 | 类似代替 | PIC18LF2480-I/ML和PIC18LF2480T-I/ML的区别 |