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MSP430F248TPM
+NomenclatureIC MCU 16BIT 48KB FLASH 64LQFP
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FabricantTexas Instruments
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Pièce fabricant #MSP430F248TPM
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Package LQFP (PM)-64
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En stock4946
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Spécifications
| Attribut | Valeur |
| Package | Bulk,Tray |
| Series | MSP430F2xx |
| ProductStatus | Active |
| CoreProcessor | MSP430 CPU16 |
| CoreSize | 16-Bit |
| Speed | 16MHz |
| Connectivity | I²C, IrDA, LINbus, SCI, SPI, UART/USART |
| Peripherals | Brown-out Detect/Reset, POR, PWM, WDT |
| NumberofI/O | 48 |
| ProgramMemorySize | 48KB (48K x 8 + 256B) |
| ProgramMemoryType | FLASH |
| RAMSize | 4K x 8 |
| Voltage-Supply(Vcc/Vdd) | 1.8V ~ 3.6V |
| DataConverters | A/D 8x12b |
| OscillatorType | Internal |
| OperatingTemperature | -40°C ~ 105°C (TA) |
| MountingType | Surface Mount |
| Package/Case | 64-LQFP |
Présentation
Description
The microcontroller operates at low power modes, making it ideal for battery-powered applications. It also includes features like a watchdog timer to improve system reliability, a flexible clock system, and multiple low-power operating modes that enhance energy efficiency. The variation in GPIO options makes it versatile for different interfacing needs.
Additionally, the MSP430F248TPM offers robust development support, with available resources such as development boards and debugging tools. Its combination of power efficiency, performance, and peripheral integration makes it well-suited for applications in industrial control, consumer electronics, and sensor systems.
Equivalent
Features
1. CPU: 16-bit RISC architecture, capable of 16 MIPS operation.
2. Memory: Up to 60KB of Flash memory and 2KB of RAM for code and data storage.
3. Low Power Modes: Multiple low-power modes to extend battery life in portable applications.
4. Clock System: Flexible clock system with internal digitally controlled oscillator (DCO) and external crystal oscillators.
5. Peripherals: Includes multiple timers, a watchdog timer, and a basic timer for precise control and time measurements.
6. Communication Interfaces: Supports USART, SPI, and I2C interfaces for robust connectivity options.
7. Analog Features: 12-bit Analog-to-Digital Converter (ADC), comparators, and operational amplifiers for handling analog inputs.
8. Package: Available in a 64-pin LQFP package for compact and flexible design implementations.
These features make the MSP430F248TPM suitable for a variety of applications, including industrial control, consumer electronics, and portable medical devices.
Pinout
Key functions and features of the MSP430F248TPM include:
- A 16-bit RISC architecture for low power and high performance.
- Up to 60KB of flash memory and 2KB of RAM.
- A variety of peripherals including multiple 16-bit timers, a 12-bit Analog-to-Digital Converter (ADC), and up to two universal serial communication interfaces (USCI) capable of supporting UART, I2C, and SPI protocols.
- Digital I/O with interrupt capabilities and flexible pin configuration.
This makes the MSP430F248TPM suitable for applications in metering, medical devices, and other low-power embedded systems. The device offers robust performance while maintaining minimal power usage, a hallmark of the MSP430 series.
Manufacturer
Texas Instruments is known for its significant contributions to the electronics industry, providing products and solutions across various sectors, including automotive, industrial, personal electronics, communications equipment, and enterprise systems. The MSP430 series, to which the MSP430F248TPM belongs, is a family of microcontrollers used for low-power applications, known for their energy efficiency and ease of use in embedded systems. TI's innovation in semiconductor technology has positioned it as a leader in the industry, emphasizing research and development to advance electronic applications worldwide.
Application
1. Consumer Electronics: Used in devices like digital watches and fitness trackers.
2. Industrial Control: Suitable for managing industrial sensors and control systems.
3. Medical Devices: Powers portable medical equipment such as glucose meters.
4. Home Automation: Used in smart home devices for efficient power consumption.
5. Energy Harvesting: Ideal for applications requiring energy efficiency and long battery life.
6. Wireless Sensors: Facilitates communication in remote sensor networks.
Its low power consumption and versatile connectivity options make it ideal for these areas.