The STM32F103ZEH7 is a high-performance microcontroller unit (MCU) manufactured by STMicroelectronics. It belongs to the STM32 family of 32-bit ARM Cortex-M3 processors. The STM32F103ZEH7 is designed for a wide range of applications, including industrial control, medical equipment, consumer electronics, and automotive systems.
Description:
The STM32F103ZEH7 is an MCU based on the ARM Cortex-M3 processor, operating at a maximum frequency of 72 MHz. It features a high-performance memory architecture, with 512 KB of Flash memory and 64 KB of SRAM. The device is packaged in a 144-pin LQFP (Low-profile Quad Flat Package) package.
Features:
- ARM Cortex-M3 processor with a maximum frequency of 72 MHz
- 512 KB of Flash memory
- 64 KB of SRAM
- Flexible memory mapping: up to 16 different memory layouts
- Advanced control and power management peripherals
- 37 general-purpose I/O (GPIO) lines with external interrupt capability
- Multiple communication interfaces: up to 2x I2C, up to 3x SPI, up to 3x USART/UART, USB 2.0 full-speed device, and CAN
- 2x 12-bit ADC with up to 18 channels
- 2x 12-bit DAC channels
- Real-time clock (RTC) with calibration
- CRC calculation unit
- True random number generator (RNG)
- Programmable watchdog timers
- Nested vectored interrupt controller (NVIC)
- Core coupled memory (CCM) for high-performance data access
Applications:
- Industrial control systems: motor control, robotics, and automation
- Medical equipment: portable devices, diagnostic equipment, and monitoring systems
- Consumer electronics: smart appliances, wearable devices, and IoT devices
- Automotive systems: body control modules, infotainment systems, and safety systems
- Telecommunication systems: modems, routers, and gateways
- Energy management systems: smart grid, power distribution, and energy monitoring
- Human-machine interface (HMI) devices
- Data acquisition and signal processing systems
- Embedded systems requiring high performance and low power consumption
The STM32F103ZEH7's combination of processing power, memory, and communication interfaces makes it suitable for a wide range of applications requiring high performance, low power consumption, and advanced control capabilities.