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STM32F10xxx

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Abstract: shows four LEDs connected to the STM32F10xxx. The USART1 signals (Rx, Tx) must be connected to the DB9 , peripherals Introduction The STM32F10xxx is built around the latest CortexTM-M3 core from ARM® designed for , -bit code density. The STM32F10xxx has three low-power modes with a fast startup capability using the embedded 8 MHz RC oscillator. The STM32F10xxx also embeds a real-time clock running from either an internal 40 kHz RC or an external quartz oscillator. In addition, the STM32F10xxx has the VBAT function STMicroelectronics
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AN2585 AN2585 STM32F10xxx PC13 STM3210B-EVAL STM32F101xx STM32F10xx STM32F101 STM32F103 STM32F10
Abstract: AN2558 Application note STM32F10xxx ADC application examples Introduction This application note is intended to provide practical application examples of the STM32F10xxx ADC peripheral use. This , STM32F10xxx firmware library. These are available for download from the STMicroelectronics microcontrollers , Contents 1 STM32F10xxx ADC-converted data transfer using DMA . . . . . . . . . . . . 3 1.1 1.2 , . . . . . . . . . . . . . . . . . . . . . 9 AN2558 - Application note STM32F10xxx STMicroelectronics
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ADCIN11 STM32F10x ADCIN14 IN17 STM32F
Abstract: user. This driver uses the USART to load a binary file from the HyperTerminal to the STM32F10xxx's , STM32F10xxx's internal RAM. In the event of a failure when receiving the data, the "Failed to receive the , -byte blocks. An error check is performed in data blocks transmitted to the STM32F10xxx's internal RAM to , the STM32F10xxx's internal Flash memory. It is not mandatory to use the push-button; the user can , file via HyperTerminal to the STM32F10xxx's internal Flash memory, do as follows: 1. Press 1 on STMicroelectronics
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AN2557 USE_STM3210B_EVAL STM3210E STM3210B-EVAL example STM3210B STM3210E USART STM3210B-EVAL/STM3210E-EVAL
Abstract: STM32F10xxxFWLib folder by STM32F10xxx_StdPeriph_Lib_V3.0.0 3. Remove the following files from your project , AN2953 Application note How to migrate from the STM32F10xxx firmware library V2.0.3 to the STM32F10xxx standard peripheral library V3.0.0 Introduction The objective of this application note is to explain how to migrate an application based on the STM32F10xxx firmware library (FWLib) V2.0.3 to the STM32F10xxx standard peripheral library (StdPeriph_Lib) V3.0.0. The purpose of this document is not to STMicroelectronics
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STM32F10xxx Library Manual STM32F10X_HD STM32F10x_StdPeriph_Lib um0427 STM32F10x um0427 STM3210-EVAL STM32F102
Abstract: AN2570 Application note STM32F10xxx I²C application examples Introduction This application note is intended to provide practical application examples of the STM32F10xxx I²C peripheral use. This , STM32F10xxx firmware library. These are available for download from the STMicroelectronics website: www.st.com. June 2007 Rev 1 1/10 www.st.com STM32F10xxx I²C-I²C communication using interrupts in 7-bit addressing modeAN2570 - Applica- 1 STM32F10xxx I²C-I²C communication using interrupts STMicroelectronics
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STM32F10* I2C STM32F10* I2C firmware I2C Peripherals M24C08
Abstract: AN2582 Application note STM32F10xxx USART application examples Introduction This application note is intended to provide practical application examples of the STM32F10xxx USART peripheral use , STM32F10xxx firmware library. These are available for download from the STMicroelectronics website , 1 STM32F10xxx USART hardware flow control communication . . . . . . . 5 1.1 1.2 Hardware , . . . . . . . . . . . . . . . . 5 STM32F10xxx USART interrupt communication with HyperTerminal . STMicroelectronics
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USART multiprocessor STM32F10* USART USART2 stm32f10x library SPI USART rs232 pc notes on USART communication
Abstract: 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 should be read in conjunction with the datasheet of the relevant STM32F10xxx product and the STM32F10xxx reference manual. For information on programming, erasing and protection of the internal Flash memory please refer to the STM32F10xxx Flash programming manual. The STM32F10xxx STMicroelectronics
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AN2629 STM32F10xxx reference manual STM32 AN2629 STM32 IWDG STM32 firmware library user manual STM32
Abstract: AN2569 Application note STM32F10xxx GPIO application examples Introduction This application note is intended to provide practical application examples of the STM32F10xxx GPIO peripheral use , STM32F10xxx firmware library. These are available for download from the STMicroelectronics website: www.st.com. October 2007 Rev 2 1/5 www.st.com STM32F10xxx I/O toggling AN2569 - Application note 1 STM32F10xxx I/O toggling 1.1 Overview This example describes how to use the Port STMicroelectronics
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PA13 PA15
Abstract: AN2576 Application note STM32F10xxx SPI application examples Introduction This application note is intended to provide practical application examples of the STM32F10xxx SPI peripheral use. This , STM32F10xxx firmware library. These are available for download from the STMicroelectronics website: www.st.com. June 2007 Rev 1 1/11 www.st.com Contents AN2576 Contents 1 STM32F10xxx , STM32F10xxx simplex SPI-SPI communication using interrupts . . . . 5 2.1 2.2 Hardware description . . . . STMicroelectronics
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AN-2576 M25P64
Abstract: AN2581 Application note STM32F10xxx TIM application examples Introduction This application note is intended to provide practical application examples of the STM32F10xxx TIMx peripheral use. This , STM32F10xxx firmware library. These are available for download from the STMicroelectronics website , 1 STM32F10xxx TIMx output compare mode . . . . . . . . . . . . . . . . . . . . . . . 4 1.1 1.2 , . . . . . . . . . . . . . . . . . . . . . . . . . 7 STM32F10xxx TIMx output compare inactive mode STMicroelectronics
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Abstract: describes a drive for a quadruplex mode (4COM) LCD using the STM32F10xxx. Refer to Figure 9. The only , AN2656 Application note STM32F10xxx LCD glass driver firmware Introduction This application note describes a technique for driving liquid crystal displays (LCD) with STM32F10xxx microcontrollers , STM32F10xxx MCUs. This application note also provides a technique to control the LCD contrast through , presents a solution based on a standard STM32F10xxx MCU directly driving a quadruplex LCD. This solution STMicroelectronics
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CT4-098-LV CT4-098 Varitronix LCD vim stm32 timer stm32f103vbt6 UA742 s3d8 PD-878
Abstract: the revision code of the device (see the STM32F10xxx reference manual for details on how to find the , for STM32F10xxx mediumdensity devices . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . , may freeze for SLEEPONEXIT single instruction ISR . . . . . . 8 STM32F10xxx silicon limitations . . , ®-M3 limitations An errata notice of the STM32F10xxx core is available from the following web address , STM32F10xxx devices. Table 3. Cortex-M3 core limitations and impact on microcontroller behavior ARM STMicroelectronics
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STM32F103xxx STM32F10xxB ic ir 2112 stm32f103xxx manual stm32f103xx lqfp100 STM32F102x STM32F101C8 STM32F101R8 STM32F101V8 STM32F101T
Abstract: (controllers). In the rest of the document, these devices will be referred to as STM32F10xxx. The application , and advanced examples in a "real" application (involving other STM32F10xxx-controlled resources , an STM32F10xxx and the I2C2 of another STM32F10xxx. The I2C1 and I2C2 data lines (SDA) are connected , four I2C communication modes in which STM32F10xxx microcontrollers can operate, that is, slave , referred to as STM32F10xxx for convenience. 1.1 Overview In this example, an I2C communication is STMicroelectronics
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AN2824 AM-240320LTNQW00H STM32-SK AM-24032 MCBSTM32 AM-240320
Abstract: register show the revision code of the device (see the STM32F10xxx reference manual for details on how to , . . . . . . . . . . . . . . . . . . . 6 1.1 Cortex-M3 limitations description for STM32F10xxx , freeze for SLEEPONEXIT single instruction ISR . . . . . . 8 STM32F10xxx silicon limitations . . . . . , limitations An errata notice of the STM32F10xxx core is available from the following web address: http , and their implications on the behavior of high-density STM32F10xxx devices. Table 3. Cortex-M3 STMicroelectronics
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STM32F101RC STM32F101ZC STM32F101RD STM32F101VD STM32F101ZE STM32F103RC WLCSP64 STM32F10* I2C errata STM32F101vc STM32F103VC STM32F101VC STM32F101ZD
Abstract: AN2563 Application note STM32F10xxx debug application examples Introduction This application note is intended to provide practical application examples of the STM32F10xxx Firmware Library use in , accompany the STM32F10xxx firmware library. These are available for download from the STMicroelectronics website: www.st.com. October 2007 Rev 2 1/4 www.st.com How to use the STM32F10xxx firmware library in debug mode AN2563 - Application note 1 How to use the STM32F10xxx firmware library in STMicroelectronics
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practical application
Abstract: to STM32F10xxx. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . , NOR Flash memory characteristics and according to the HCLK clock of the STM32F10xxx. Based on the , AN2784 Application note Using the high-density STM32F10xxx FSMC peripheral to drive external memories Introduction This application note describes how to use the High-density STM32F10xxx FSMC , an overview of the STM32F10xxx FSMC controller. Then it provides memory interfacing examples that STMicroelectronics
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S29GL128P90 is61wv51216 M29W128xx70 S29GL128P S29GL128P90FFIR2 fsmc STM3210E-EVAL
Abstract: devices are referred to collectively as STM32F10xxx. The application note is organized in three parts , provides an example using DMA and other STM32F10xxx-controlled resources (multislave communication, ADC , hardware connection between the I2C1 of an STM32F10xxx and the I2C2 of another STM32F10xxx. The I2C1 and , AN2824 Application note STM32F10xxx devices: advanced I²C examples Introduction The aim of , , covering the four I2C communication modes available in the STM32F10xxx, that is, slave transmitter, slave STMicroelectronics
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STM32F10xxx-controlled
Abstract: UM0424 User manual STM32F10xxx USB-FS-Device development kit Introduction The STM32F10xxx , USB transfer types (control, interrupt, bulk and isochronous). It supports all STM32F10xxx microcontroller families. The aim of the STM32F10xxx USB-FS-Device development kit is to use the STM32F10xxx , description of all the components of the STM32F10xxx USB-FSDevice development kit, including: STM32F10xxx , Contents 1 STM32F10xxx USB-FS-Device firmware library . . . . . . . . . . . . . . . . . . . 7 1.1 STMicroelectronics
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stm32f105 usb reference STM32F105 STM32F10xxx UM0424 stm32f10 reference manual stm32f105 manual STM32F10xxx USB
Abstract: demonstration platform for STM32F10xxx-based applications. It is designed to allow the user to try out the , Crystal for STM32F10xxx. Reset control The Reset can be generated by hardware or software: 1.4 , . . . . . . . . . . . . . . . . 18 STM32F10xxx resources . . . . . . . . . . . . . . . . . . . . , STM32F10xxx evaluation board peripherals . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 20 STM32F10xxx demo interrupts. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . STMicroelectronics
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UM0435 MB542 UM0426 stm32 text to speech stm32f10x manual wav player stm32 STM32F10xxx Library Manual pwr example
Abstract: (resume) event on the bus. In this case, EXTI line 18 is activated and wakes up the STM32F10xxx. After , UM0424 User manual STM32F10xxx USB-FS-Device development kit Introduction The STM32F10xxx , USB-FS-Device transfer types (control, interrupt, bulk and isochronous). It supports all STM32F10xxx microcontroller families. The aim of the STM32F10xxx USB-FS-Device development kit is to use the STM32F10xxx , description of all the components of the STM32F10xxx USB-FSDevice development kit, including: Device STMicroelectronics
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micro sd spi stm32f10 UM0551 STM32 usb printer library spi program stm32f10 STM32F10xxx UM0412 AC digital ampermeter
Abstract: DBGMCU_IDCODE register show the revision code of the device (see the STM32F10xxx reference manual for details , for STM32F10xxx high-density devices 7 1.1.1 1.1.2 Cortex-M3 event register is not set by , Cortex-M3 may freeze for SLEEPONEXIT single instruction ISR . . . . . . 9 STM32F10xxx silicon limitations , limitations An errata notice of the STM32F10xxx core is available from the following web address: http , and their implications on the behavior of high-density STM32F10xxx devices. Table 3. Cortex-M3 STMicroelectronics
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STM32F103ZD 548-72 STM32F103xE STM32F103xD stm32f103ve errata MULTIMASTER STM32F101RE STM32F101VE STM32F103ZC STM32F103RD STM32F103VD
Abstract: Flash-memory-based microcontrollers. All STM32F10xxx in production include the bootloader detailed in this , manual (PM0042). The specifications cover the architectural model of the bootloader for the STM32F10xxx , STM32F10xxx configuration in System memory boot mode . . . . . . . . . . . . . . . . . . . . . . . . 6 , Bootloader for STM32F10xxx with USART1 . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . , space Table 1 shows that the STM32F10xxx enters the System memory boot mode if the BOOT pins are STMicroelectronics
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AN2606 STM32Fxxx PM0042 STM32F10xxx Flash programming AN2586 bootloader uart parity
Abstract: , STM32F102xx and STM32F103xx Flash-memory-based microcontrollers. All STM32F10xxx in production include the , model of the bootloader for the STM32F10xxx family, but the low-level communication software supports , . . . . . 5 STM32F10xxx configuration in System memory boot mode . . . . . . . . . . . . . . . . . , . Figure 20. Figure 21. Figure 22. Figure 23. 4/37 Bootloader for STM32F10xxx with USART1 . . . . , 1 shows that the STM32F10xxx enters the System memory boot mode if the BOOT pins are configured as STMicroelectronics
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PA10 ST3232 STM32F10xxx AN2586
Abstract: firmware given within this application note apply to both Medium- and High-density STM32F10xxx products , 3.4 Method implementation on the STM32F10xxx devices . . . . . . . . . . . . . . . 8 3.4.1 3.4.2 , on STM32F10xxx devices . . . . . . . . . . . . . . . . . 13 5 Comparing the first and second , . . . . . . . . . . . . . . 16 6.2 Taking advantage of High-density STM32F10xxx devices . . . , the STM32F10xxx, signals having components up to 500 kHz can be processed by the ADC. If for example STMicroelectronics
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AN2668 7x110 LMV321 STM32F103xx
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