The ST92F150CV1QBTRE is a high-performance, 8/16-bit microcontroller from STMicroelectronics, designed to offer a versatile solution for embedded control systems. This powerful microcontroller is based on the ST9+ architecture and is particularly well-suited for automotive applications, industrial control systems, and a wide range of other embedded applications where reliability and efficiency are paramount.
Key Features
- Advanced Core: The ST92F150CV1QBTRE features an 8/16-bit CPU core with up to 16 Mbyte linear addressing space, enabling it to handle complex tasks and algorithms with ease.
- Memory Capacity: Equipped with 256 Kbytes of ROM and 16 Kbytes of RAM, this microcontroller provides ample space for both application code and data storage.
- Connectivity: A variety of communication interfaces are available, including CAN 2.0B, I2C, SPI, and multiple UARTs, allowing for flexible integration into different system architectures.
- Robust I/O Capabilities: With up to 68 I/O ports, the ST92F150CV1QBTRE can interface with a wide array of peripherals and sensors, offering versatile control and data acquisition options.
- Integrated Peripherals: On-chip peripherals include PWM channels, an 8-channel 10-bit A/D converter, and a watchdog timer, which enhance the functionality without the need for additional components.
- Operating Conditions: This microcontroller operates over a wide temperature range, making it suitable for harsh environments often encountered in automotive and industrial applications.
Applications
The ST92F150CV1QBTRE is ideal for a variety of applications, including but not limited to:
- Automotive control systems
- Industrial automation
- Motor control
- Home appliances
- Consumer electronics
Package and Quality
This microcontroller comes in a robust LQFP 144 package, which ensures a compact footprint while providing sufficient pins for extensive functionality. STMicroelectronics' commitment to quality means that the ST92F150CV1QBTRE is manufactured to meet high standards, ensuring reliability and performance for critical applications.