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SPC5534MVM80
+NomenclatureIC MCU 32BIT 1MB FLASH 208MAPBGA
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FabricantNXP USA Inc.
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Pièce fabricant #SPC5534MVM80
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Package SOT1513-1
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En stock2503
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Spécifications
| Attribut | Valeur |
| Package / Case | Tray |
| Series | MPC55xx Qorivva |
| Part Status | Not For New Designs |
| Core Processor | e200z6 |
| Core Size | 32-Bit Single-Core |
| Speed | 80MHz |
| Connectivity | CANbus, EBI/EMI, Ethernet, SCI, SPI |
| Peripherals | DMA, POR, PWM, WDT |
| Number of I/O | 192 |
| Program Memory Size | 1MB (1M x 8) |
| Program Memory Type | FLASH |
| RAM Size | 64K x 8 |
| Voltage - Supply (Vcc/Vdd) | 1.35V ~ 1.65V |
| Data Converters | A/D 34x12b |
| Oscillator Type | External |
| Operating Temperature | -40°C ~ 125°C (TA) |
| Mounting Type | Surface Mount |
Présentation
Description
Key features of the SPC5534MVM80 include a powerful CPU core that supports efficient data processing and real-time control tasks. It also offers multiple interfaces for communication, such as CAN, LIN, and SPI, which are crucial for automotive networks and industrial automation. The microcontroller includes a variety of peripherals and memory configurations that support extensive I/O operations and program storage, ensuring flexibility in application development.
The SPC5534MVM80 is designed to meet stringent automotive standards, offering features like enhanced safety mechanisms, low power consumption, and robust security functions. Its architecture supports advanced motor control applications, engine management systems, and body electronics solutions, making it an ideal choice for engineers and developers working on next-generation automotive and industrial projects.
Equivalent
Features
Key features include:
1. Flash Memory: It comes with integrated flash memory, typically around 1 MB, which is essential for storing program code and important data.
2. RAM: It includes SRAM, often around 64 KB, to support efficient processing and data management.
3. Peripheral Support: The device supports various peripherals including timers, serial communication interfaces (like CAN, LIN, and UART), and ADCs for analog-to-digital conversion.
4. Safety Features: It is designed with automotive safety in mind, featuring robust fault-detection and error-correction mechanisms.
5. Power Management: The SPC5534MVM80 includes advanced power management features to optimize energy usage and extend battery life in portable applications.
6. Temperature Range: It is capable of operating in a wide range of temperatures, suitable for harsh industrial and automotive environments.
These features make it a reliable choice for demanding applications requiring high reliability and efficiency.
Pinout
- CPU: It is based on the Power Architecture® e200 core with a focus on automotive control applications.
- Memory: It features embedded Flash memory and RAM.
- I/O Ports: It has numerous general-purpose I/O ports for interfacing with other devices.
- Communication Protocols: It supports various communication interfaces, such as CAN, LIN, and UART, for automotive networking.
- Timers: It includes advanced timer modules for precise control over timing operations.
- Analog-to-Digital Converters (ADC): It features ADCs for converting analog signals to digital data.
- PWM Modules: It has PWM modules for controlling motors and other actuators.
This combination of features makes it suitable for a variety of control systems in automotive applications, focusing on performance, safety, and efficiency.
Manufacturer
Application
1. Automotive Systems: Used in engine control units (ECUs), transmission control, and other automotive electronic systems due to its robust processing power and reliability.
2. Industrial Automation: Suitable for industrial control systems, robotics, and process automation, providing precise control and data processing capabilities.
3. Safety-Critical Systems: Employed in systems requiring high reliability and safety standards, thanks to its advanced fault detection and error correction features.
4. Communication Gateways: Facilitates communication between different network protocols in complex systems, leveraging its integrated communication interfaces.
These applications leverage the microcontroller's performance, real-time processing capabilities, and extensive peripheral support.