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ATMEGA16-16AU
+StücklisteIC MCU 8BIT 16KB FLASH 44TQFP
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HerstellerMikrochip-Technologie
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Herstellerteil #ATMEGA16-16AU
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Datenblatt ATMEGA16-16AU DataSheet
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Paket TQFP44
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Auf Lager6971
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Spezifikationen
| Attribut | Wert |
| Package | Tray |
| Series | AVR® ATmega |
| ProductStatus | Active |
| CoreProcessor | AVR |
| CoreSize | 8-Bit |
| Speed | 16MHz |
| Connectivity | I²C, SPI, UART/USART |
| Peripherals | Brown-out Detect/Reset, POR, PWM, WDT |
| NumberofI/O | 32 |
| ProgramMemorySize | 16KB (8K x 16) |
| ProgramMemoryType | FLASH |
| EEPROMSize | 512 x 8 |
| RAMSize | 1K x 8 |
| Voltage-Supply(Vcc/Vdd) | 4.5V ~ 5.5V |
| DataConverters | A/D 8x10b |
| OscillatorType | Internal |
| OperatingTemperature | -40°C ~ 85°C (TA) |
| MountingType | Surface Mount |
| Package/Case | 44-TQFP |
Übersicht
Description
Key features include:
1. Architecture: RISC (Reduced Instruction Set Computing) architecture with 131 instructions, most of which are executed in a single clock cycle.
2. Memory: It has 16 KB of In-System Programmable Flash memory, 1 KB SRAM, and 512 bytes EEPROM.
3. Clock Speed: Operates at a maximum frequency of 16 MHz.
4. I/O Ports: Includes 32 general-purpose I/O lines for interfacing with external components.
5. Peripheral Features: Contains a range of peripherals such as timers, PWM channels, ADC, USART, SPI, TWI, and Watchdog Timer.
6. Operating Voltage: Typically operates at 4.5 – 5.5V.
7. Package: Available in a TQFP-44 package, suitable for compact circuit designs.
The ATMEGA16-16AU is ideal for educational purposes, prototyping, and small-scale production, offering a balance of performance, power efficiency, and ease of use.
Equivalent
1. Microchip ATmega16A
2. Microchip ATmega32 (with more memory)
3. Microchip ATmega8 (with less memory)
4. Microchip ATmega328 (used in Arduino Uno)
5. NXP LPC1114 (ARM Cortex-M0, if a 32-bit alternative is acceptable)
These alternatives may differ in features like memory size, peripherals, and architecture, so reviewing their specifications is advised to ensure compatibility with your requirements.
Features
1. Core: AVR RISC architecture.
2. Operating Frequency: Up to 16 MHz.
3. Flash Memory: 16 KB self-programmable.
4. SRAM: 1 KB.
5. EEPROM: 512 Bytes.
6. I/O Ports: 32 programmable I/O lines.
7. Timers/Counters: Two 8-bit and one 16-bit timer/counter with separate prescalers and compare modes.
8. PWM Channels: Four PWM channels.
9. ADC: 10-bit, 8-channel ADC.
10. Interfaces:
- USART for serial communication.
- SPI (Serial Peripheral Interface).
- TWI (Two-wire Serial Interface/compatible with I2C).
11. Interrupts: External and internal interrupt sources.
12. Watchdog Timer: With a separate on-chip oscillator.
13. Brown-out Detection: Programmable threshold levels.
14. Power-saving Modes: Idle, ADC Noise Reduction, Power-save, and Power-down modes.
15. Package: Available in 44-pin TQFP package.
The ATMEGA16-16AU is suitable for various applications requiring low power consumption, high performance, and flexible interfacing.
Pinout
1. Power Supply Pins:
- VCC (Pin 11, 32): Digital supply voltage.
- GND (Pin 12, 31): Ground.
2. Port A (PA0-PA7, Pins 40-33):
- 8-bit bi-directional I/O port. Also serves as ADC inputs.
3. Port B (PB0-PB7, Pins 1-8):
- 8-bit bi-directional I/O port. Supports various functions like SPI.
4. Port C (PC0-PC7, Pins 22-29):
- 8-bit bi-directional I/O port. Can be used for JTAG interface.
5. Port D (PD0-PD7, Pins 14-21):
- 8-bit bi-directional I/O port. Supports USART communication.
6. RESET (Pin 9):
- Active low reset input.
7. XTAL1/XTAL2 (Pins 13, 12):
- Connections for an external clock source.
The ATmega16-16AU provides multiple functionalities such as ADC, USART, SPI, and timers, making it versatile for various applications.
Manufacturer
Application
1. Embedded Systems: Used in consumer electronics, home automation, and industrial control systems.
2. Robotics: Powers sensors, motors, and control systems in robotic devices.
3. IoT Devices: Serves as a core component for processing and connectivity in Internet of Things applications.
4. Data Acquisition: Utilized in systems collecting and processing environmental or system data.
5. Automotive: Found in vehicle control units and infotainment systems.
6. Educational Projects: Often used in academic institutions for teaching microcontroller programming and electronics.
These applications leverage the microcontroller’s balance of performance, power efficiency, and cost-effectiveness.