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ATMEGA168V-10AU
+BOMIC MCU 8BIT 16KB FLASH 32TQFP
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Nhà sản xuấtCông nghệ Microchip
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Ông. Phần #ATMEGA168V-10AU
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Bảng dữ liệu ATMEGA168V-10AU DataSheet
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Gói TQFP-32
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Có sẵn2243
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Thông số kỹ thuật
| thuộc tính | Giá trị |
| Package | Tray |
| Series | AVR® ATmega |
| ProductStatus | Active |
| CoreProcessor | AVR |
| CoreSize | 8-Bit |
| Speed | 10MHz |
| Connectivity | I²C, SPI, UART/USART |
| Peripherals | Brown-out Detect/Reset, POR, PWM, WDT |
| NumberofI/O | 23 |
| ProgramMemorySize | 16KB (8K x 16) |
| ProgramMemoryType | FLASH |
| EEPROMSize | 512 x 8 |
| RAMSize | 1K x 8 |
| Voltage-Supply(Vcc/Vdd) | 1.8V ~ 5.5V |
| DataConverters | A/D 8x10b |
| OscillatorType | Internal |
| OperatingTemperature | -40°C ~ 85°C (TA) |
| MountingType | Surface Mount |
| Package/Case | 32-TQFP |
Tổng quan
Description
Key specifications include:
- Flash Memory: 16KB of in-system programmable flash memory.
- RAM: 1KB of SRAM.
- EEPROM: 512 bytes of EEPROM for data retention.
- Clock Speed: Operates up to 10 MHz.
- I/O Pins: 23 general-purpose I/O pins.
- Timers: Includes three timers/counters (two 8-bit and one 16-bit).
- Communication Interfaces: Supports USART, SPI, and I2C interfaces.
- ADC: Integrated 10-bit ADC with up to 8 channels.
- Operating Voltage: Functions between 1.8V to 5.5V.
The ATMEGA168V-10AU is ideal for various embedded applications, including consumer electronics, automotive, and industrial control systems, due to its balance of power efficiency and processing capabilities. It comes in a TQFP-32 package, making it suitable for compact designs.
Equivalent
1. ATMEGA168-20AU: Similar features but with a higher maximum clock speed.
2. ATMEGA328P Offers more memory and is a popular upgrade.
3. ATMEGA88: A lower memory version but with a similar feature set.
4. PIC16F series: Comparable from Microchip’s PIC range, though with architectural differences.
5. STM8 series: Alternatives from STMicroelectronics, with different architectures.
Features
1. Architecture: 8-bit AVR RISC architecture, ensuring efficient processing.
2. Operating Voltage: 1.8V to 5.5V, suitable for battery-operated devices.
3. Clock Speed: Up to 10 MHz at 1.8V to 5.5V.
4. Flash Memory: 16KB of in-system self-programmable flash.
5. SRAM: 1KB internal SRAM for volatile data storage.
6. EEPROM: 512 bytes, allowing for non-volatile data storage.
7. I/O Ports: 23 general-purpose I/O lines for interfacing with other devices.
8. Timers/Counters: Two 8-bit and one 16-bit timer/counter with PWM.
9. ADC: 10-bit ADC with up to 6 channels for analog signal processing.
10. Communication Interfaces: Supports USART, SPI, and I2C (TWI) for serial communication.
11. Watchdog Timer: Programmable watchdog timer with separate on-chip oscillator.
12. Interrupts: 24 interrupt/5 external pin interrupts.
13. Power-Saving Modes: Multiple power-saving modes for energy efficiency.
14. Package: Available in a 32-pin TQFP package, ideal for compact designs.
These features make the ATMEGA168V-10AU suitable for various embedded applications requiring low power and high performance.
Pinout
Key functions of the ATmega168V-10AU include:
1. CPU: 8-bit AVR RISC architecture.
2. Memory: 16KB Flash, 1KB SRAM, and 512 bytes EEPROM.
3. Clock Speed: Operates at up to 10 MHz.
4. Timers: Two 8-bit timers and one 16-bit timer.
5. ADC: 10-bit, 8-channel Analog to Digital Converter.
6. Communication Interfaces: Supports USART, SPI, and I2C (TWI).
7. PWM: Six PWM channels for generating pulse-width modulated signals.
8. Interrupts: External and pin-change interrupts for responsive design.
9. Low-Power Features: Multiple sleep modes to reduce power consumption.
These features make the ATmega168V-10AU suitable for a wide range of applications, including embedded systems, sensor interfacing, and consumer electronics.
Manufacturer
Application
1. Embedded Systems: Used in consumer electronics, home automation, and industrial control systems.
2. IoT Devices: Powers smart devices for connectivity and control functions.
3. Robotics: Controls motors and sensors in small robotic applications.
4. Automotive: Implements control systems in vehicles for non-safety critical applications.
5. Wearables: Supports health monitoring and fitness devices with efficient power usage.
6. Prototyping and Education: Popular in Arduino boards for learning and development projects.
These applications leverage the microcontroller's balance of performance, power efficiency, and cost-effectiveness.