The L99MD01XPTR is a high-performance, low-power microcontroller from STMicroelectronics. It belongs to the STM32L4+ series, which is based on the Arm Cortex-M4 CPU with FPU and Arm Cortex-M0+ coprocessor. The L99MD01XPTR is designed for a wide range of applications, including industrial, medical, and consumer electronics.
Description:
The L99MD01XPTR is a high-density package variant of the STM32L4+ series microcontrollers. It comes in a 100-pin LQFP (Low Profile Quad Flat Package) package. The device features a wide operating temperature range of -40°C to +125°C, making it suitable for harsh environments.
Features:
- CPU: Arm Cortex-M4 with FPU running at up to 120 MHz and an Arm Cortex-M0+ coprocessor.
- Memory: 2 MB of Flash memory and 640 KB of SRAM.
- Connectivity: USB Type-C and USB Power Delivery (PD) controller, advanced connectivity with support for Bluetooth 5.0, Thread, Zigbee, 802.15.4, and 2.4 GHz RF.
- Security: Secure boot, hardware crypto engine, and secure firmware update.
- Power efficiency: Ultra-low-power technology with a power consumption as low as 118 uA/MHz in Run mode and down to 0.23 uA in Stop mode.
- Peripherals: A rich set of peripherals, including ADC, DAC,, ( UART, SPI, I2C), and more.
- Package: 100-pin LQFP package with a pitch of 0.5 mm.
Applications:
- Industrial automation and control systems.
- Medical devices, such as portable monitoring equipment and diagnostic tools.
- Smart home and building automation, including smart meters, lighting control, and HVAC systems.
- Consumer electronics, such as wearable devices, portable audio players, and IoT devices.
- Automotive applications, including body control modules, infotainment systems, and advanced driver assistance systems (ADAS).
- Renewable energy systems, like solar panel monitoring and energy management.
The L99MD01XPTR's combination of high performance, low power consumption, and advanced connectivity features make it an ideal choice for a wide range of applications requiring robust processing capabilities and secure, efficient operation.