This application note provides technical details on the software and tools associated with implementing a serial numbering technique. It also provides examples and hints for serial number encoding techniques that can be applied to any ST7 microcontrollers equipped with non-volatile memory.
This application note describes a technique for implementing an ADC for measuring both positive and negative input voltages while operating from a single (positive) supply.
This application note describes the CAN interrupt drivers of the ST10F27x and provides programming examples that can be used to define interrupt schemes and write interrupt drivers.
This application note is intended for system designers who require a software and hardware implementation overview of the low-power modes of the STM32F101xx, STM32F102xx and STM32F103xx products. It describes how to use the STM32F10xxx product family and details the clock systems, register settings and low-power management in order to optimize the use of STM32F10xxx in applications where low power is key.
This application note provides the user with a low cost oscillator solution with discrete components and based on a resonator or quartz that can be used for STR71x MCU.
This application note provides information on how to use and take full advantage of the STR91xFA DMA controller. It describes the most typical and useful control scenarios for each peripheral DMA transfer. Software is available for download from www.st.com.
This application note, with UART as an example, provides general guidelines for creating an IAP application using two different methods: the first one is based on the Ymodem protocol and the second one is based on a customized UART protocol using the free Flash Loader utility provided by ST.
This document provides a hardware implementation overview of the low power modes of the STR75x product family, and details the components of supply circuitry, clock systems, register settings, and low power management in order to optimize the use of STR750 in applications where low power is key.
This application note explains how to replace the external EEPROM with the emulated-EEPROM in STR91xF devices using the on-chip Flash memory, which saves components and silicon area.
This document describes how to use the DMA controller of STM32F101xx and STM32F103xx, including the main features of DMA and performance analysis. It also provides programming examples of using the DMA controller, including obtaining ADC continuous sampling data using SPI transmission and achieving fast data transfer with GPIO using DMA.
This document highlights the differences between the ST10F269Zx and ST10F272Z2 devices, which are members of the STMicroelectronics ST10 family of 16-bit single-chip CMOS microcontrollers. It describes the modified and new functionalities and registers of the ST10F272Z2, and provides advice on handling the differences that may impact the replacement of the ST10F269Zx with the ST10F272Z2. It is intended for hardware or software designers adapting existing applications based on the ST10F269Zx to the ST10F272Z2.
This application note outlines the necessary steps to ensure the STR91xFA is configured for optimum performance for those applications which require the STR91xFA to operate at full speed and deliver the highest performance from the CPU core and highest bandwidth of data movement.