Silicon Labs C8051F380-GQR especificações técnicas, atributos, parâmetros.
Category:Integrated Circuits (ICs)/Microcontroller, Microprocessor, FPGA Modules
製品ステータス:Active
動作温度:-40°C ~ 85°C (TA)
取り付けタイプ:Surface Mount
パッケージ/ケース:48-TQFP
サプライヤーデバイスパッケージ:48-TQFP (7x7)
周辺機器:Brown-out Detect/Reset, POR, PWM, Temp Sensor, WDT
I/ O数:40
スピード:48 MIPS
E E P R O Mサイズ:-
コアプロセッサ:8051
R A Mサイズ:4.25K x 8
プログラムメモリタイプ:Flash
コアサイズ:8-Bit
接続性:EBI/EMI, I²C, SPI, UART/USART, USB
プログラムメモリサイズ:64KB (64K x 8)
電圧 - 電源 ( Vcc/ Vdd):2.7V ~ 5.25V
データコンバータ:A/D 32x10b
発振器タイプ:Internal
EU RoHS ステータス:ROHS3 Compliant
モイスチャーレベル:3 (168 Hours,30°C/60%RH)
輸出規制分類番号:EAR99
HTS 米国:8542.31.0001
REACH規則:REACH is not affected
中国の RoHS ステータス:Green Symbol: Green and environmentally friendly product
Silicon Labs C8051F380-GQR Detalhes
The Silicon Labs C8051F380-GQR is an 8-bit microcontroller based on the 8051 architecture. It features a high-performance core along with integrated peripherals, making it suitable for a wide range of applications requiring control, monitoring, and communication. The C8051F380 includes analog features, digital I/O, and various communication interfaces, enhancing its versatility in embedded systems.
Functions
- Core Features:
- 8-bit 8051-compatible microcontroller core
- High-speed operation (up to 25 MHz)
- Configurable Flash memory and RAM, allowing code modification after production
- Analog Features:
- 12-bit ADC for high-resolution data acquisition
- Integrated comparator and DAC (Digital-to-Analog Converter) for signal processing
- Digital Peripherals:
- GPIO (General-Purpose Input/Output) ports for interfacing with other devices
- Timer/counter modules for precise timing and event counting
- UART (Universal Asynchronous Receiver/Transmitter) for serial communication
- SMBus interface for sensor communication
- Power Management:
- Low power consumption modes for energy efficiency
Applications
- Industrial Automation: Motor control, sensor interfaces, and measurement systems.
- Consumer Electronics: Home automation systems, remote controls, and handheld gadgets.
- Medical Devices: Patient monitoring systems, diagnostic equipment, and wearable devices.
- Automotive: Vehicle access systems, automotive control systems, and other in-car applications.
Alternative Parts
- Silicon Labs C8051F330: Similar architecture with fewer features, suitable for basic applications.
- Microchip PIC16F877A: A widely-used alternative from a different manufacturer with a 16-bit architecture.
- Atmel AT89C52: Another 8051-compatible microcontroller, offering different memory configurations and peripherals.
Embedded Modules
Silicon Labs offers various development kits and embedded modules such as:
- C8051F380 Development Kit: A comprehensive development platform for prototyping with the C8051F380 microcontroller.
- Silicon Labs EFM32 and EFR32 platforms: Energy-efficient microcontroller platforms that can share programming tools and development environments.
Related Q&A
1. Q: What are the key features of the C8051F380-GQR microcontroller?
A: The C8051F380-GQR features an 8-bit core, configurable Flash and RAM memory, a 12-bit ADC, integrated comparators, multiple timers, GPIO ports, and UART communication. It operates at speeds up to 25 MHz.
2. Q: In which applications can the C8051F380-GQR be used?
A: It can be used in industrial automation, consumer electronics, medical devices, automotive applications, and any embedded system requiring control and communication.
3. Q: Are there alternatives to the C8051F380-GQR?
A: Yes, alternatives include the Silicon Labs C8051F330, Microchip PIC16F877A, and Atmel AT89C52, each offering different architectures and features suited to various applications.
4. Q: What development tools are available for the C8051F380-GQR?
A: Silicon Labs provides a development kit specifically for the C8051F380-GQR, along with software tools for programming and debugging. Additional resources include reference manuals and application notes available on their website.
5. Q: How does the power management feature of the C8051F380-GQR benefit embedded applications?
A: The low-power consumption modes facilitate energy-efficient operation, extending battery life in portable devices and reducing overall power usage in larger systems, making it ideal for applications where power conservation is critical.