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Datei
patch_openocd_for_h7.txt
2Fstm32h7x3i_eval.cfg (gitweb link) http://openocd.zylin.com/gitweb?p=openocd.git;a=blob_plain;f=tcl/board/stm32h7x3i_eval.cfg;hb=refs/changes/82/4182/3 (raw link) store stm32h7x3i_eval.cfg to openocd-0.10.0/tcl/board/stm32h7x3i_eval.cfg cd openocd-0.10.0/tcl/target download stm32h7x.cfg to openocd-0.10.0/tcl
in „Nucleo-H743ZI in Linux und mit stlink 1.5.0“ · Mikrocontroller und Digitale Elektronik ·
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discoveryf4.pdf
UM1472 User Manual STM32F4DISCOVERY STM32F4 high-performance discovery board Introduction The STM32F4DISCOVERY helps you to discover the STM32F4 high-performance features and to develop your applications. It is based on an
in „Hilfe bei Programmierung STM32F407VG bei TIM1“ · Mikrocontroller und Digitale Elektronik ·
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stm32f4_xtal_168mhz_test.pdf
stm32f4_xtal_168mhz_test Project Configuration Report 1. Description 1.1. Project Project Name stm32f4_xtal_168mhz_test Board Name stm32f4_xtal_168mhz_test Generated with: STM32CubeMX 4.25.0 Date 03/23/2018 1.2. MCU MCU Series STM32F4 MCU Line STM32F407/417 MCU name STM32F407VGTx MCU Package LQFP100 MCU Pin number 100 Page 1 stm32f4_xtal_168mhz_test Project Configuration Report 2. Pinout Configuration Page 2 stm32f4_xtal_168mhz_test
in „STM32 Clock Configuration“ · Mikrocontroller und Digitale Elektronik ·
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STM32F070CBT6.pdf
capability Reference Part number • 5-channel DMA controller • One 12-bit, 1.0 μs ADC (up to 16 channels) STM32F070xB STM32F070CB, STM32F070RB STM32F070x6 STM32F070C6, STM32F070F6 – Conversion range: 0 to 3.6 V – Separate analog supply: 2.4 V to 3.6 V • Calendar RTC with alarm and periodic wakeup from Stop/
in „Poti / Buffer / ADC / STM32“ · Mikrocontroller und Digitale Elektronik ·
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Datei
stm32f0xx_hal_conf.h
"stm32f0xx_hal_adc.h" #endif /* HAL_ADC_MODULE_ENABLED */ #ifdef HAL_CAN_MODULE_ENABLED #include "stm32f0xx_hal_can.h" #endif /* HAL_CAN_MODULE_ENABLED */ #ifdef HAL_CEC_MODULE_ENABLED #include "stm32f0xx_hal_cec.h" #endif /* HAL_CEC_MODULE_ENABLED */ #ifdef HAL_COMP_MODULE_ENABLED #include "stm32f0xx_hal_comp.h" #endif /* HAL_COMP_MODULE_ENABLED */ #ifdef HAL_CRC_MODULE_ENABLED #include "stm32f0xx_hal_crc.h" #endif /* HAL_CRC_MODULE_ENABLED */ #ifdef HAL_DAC_MODULE_ENABLED #include "stm32f0xx_hal_dac.h
in „Programmierung - Doppelbelegung einer Taste“ · Mikrocontroller und Digitale Elektronik ·
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PDF
NUCLEO_DATASHEET_EN.pdf
and the respective targeted MCU. Table 2. Ordering information Order code Targeted MCU NUCLEO-F030R8 STM32F030R8T6 NUCLEO-F070RB STM32F070RBT6 NUCLEO-F072RB STM32F072RBT6 NUCLEO-F091RC STM32F091RCT6 NUCLEO-F103RB STM32F103RBT6 NUCLEO-F302R8 STM32F302R8T6 NUCLEO-F303RE STM32F303RET6 NUCLEO-F334R8 STM32F334R8T6 NUCLEO-F401RE STM32F401RET6 NUCLEO-F411RE STM32F411RET6 NUCLEO-L053R8 STM32L053R8T6 NUCLEO-L073RZ STM32L073RZT6 NUCLEO-L152RE STM32L152RET6 NUCLEO-L476RG STM32L476RGT6 The meaning of NUCLEO-TXXXRY codification is as
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Datei
readme.txt
Main program @par Hardware and Software environment - This example runs on STM32F10x High-Density, STM32F10x Medium-Density and STM32F10x Low-Density Devices. - This example has been tested with STMicroelectronics STM3210E-EVAL (STM32F10x High-Density) and STM3210B-EVAL (STM32F10x
in „STM32 ReadOutProtection“ · Mikrocontroller und Digitale Elektronik ·
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Datei
system_stm32f10x.c
72MHz 72000000 #endif /*!< Uncomment the following line if you need to use external SRAM mounted on STM3210E-EVAL board (STM32 High density devices) as data memory */ #ifdef STM32F10X_HD /* #define DATA_IN_ExtSRAM */ #endif /* STM32F10X_HD */ /** * @} */ /** @addtogroup STM32F10x_System_Private_Macros
in „COIDE 2.7.0 und STMF103C8T6 (china board), startprobleme“ · Mikrocontroller und Digitale Elektronik ·
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Datei
stm32f0xx_hal_conf.h
" #endif /* HAL_IWDG_MODULE_ENABLED */ #ifdef HAL_PCD_MODULE_ENABLED #include "stm32f0xx_hal_pcd.h" #endif /* HAL_PCD_MODULE_ENABLED */ #ifdef HAL_PWR_MODULE_ENABLED #include "stm32f0xx_hal_pwr.h" #endif /* HAL_PWR_MODULE_ENABLED */ #ifdef HAL_RTC_MODULE_ENABLED #include "stm32f0xx_hal_rtc.h
in „STM32F0 Verständnisproblem Clock Konfiguration bzw. Clock Tree“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CD00277537.pdf
summary – USART supported Reference Part number • Development support – Serial wire debug supported STM32L151CB, STM32L151C8, STM32L151x6/8/B STM32L151C6, STM32L151RB, – JTAG and trace supported STM32L151R8, STM32L151R6, • Up to 83 fast I/Os (73 I/Os 5V tolerant), all STM32L151VB, STM32L151V8 mappable on 16 external interrupt vectors STM32L152CB, STM32L152C8, • Memories STM32L152x6/.8/B STM32L152C6, STM32L152RB, STM32L152R8, STM32L152R6, – Up to 128 KB Flash with ECC STM32L152VB, STM32L152V8 – Up to 16 KB RAM – Up to 4 KB of true EEPROM
in „SPI-Schnittstelle Befehl: SPI_I2S_SendData(spi2, data)“ · Mikrocontroller und Digitale Elektronik ·
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basic_interpreter.pdf
TinyBasic fuer STM8S103F3P6 Ein ultraminimalistischer Basic-Interpreter Initialprojekt und Ausgangsdatei von T. Suzuki, STM8S Port und Erweiterungen von R. Seelig Im Rahmen eines kleinen privaten "Wettbewerbs" ging es
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Datei
readme.txt
################################################################################### TinyBasic fuer STM8S103F3P6 Ein ultraminimalistischer Basic-Interpreter Ausgangsdatei von T. Suzuki STM8S Port und Erweiterungen von R. Seelig ##########################################################################
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DM00027566.pdf
STM32L-DISCOVERY 32L152CDISCOVERY Discovery kits for STM32L151/152 line Data brief Features • STM32L152RBT6 (128 KB Flash memory, 16 KB RAM, 4 KB EEPROM) or STM32L152RCT6 (256 KB Flash memory, 32 KBRAM,
in „SPI-Schnittstelle Befehl: SPI_I2S_SendData(spi2, data)“ · Mikrocontroller und Digitale Elektronik ·
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STM32 MPU Portfolio Übersicht nach Anwendungssegmenten
STM32 MPU portfolio by application segment STM32MP1 series STM32MP2 series Industrial communication processors STM32MP133 Cortex-A7 up to 1GHz FDCAN, 2x Eth STM32MP153 2x Cortex-A7 + Cortex-M4 FDCAN STM32MP257
in „ESP32-E22, schneller Chip aus dem Hause WCH, ressourcensparendes WiFi 7 uvam“ · Mikrocontroller und Digitale Elektronik · · Diagramme
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PDF
UM1052_PMSM_singledual_FOC_SDK_v3.3.pdf
UM1052 User manual STM32F05xx/STM32F100xx/STM32F103xx/STM32F2xx/ STM32F4xx PMSM single/dual FOC SDK v3.3 Introduction This manual describes the Motor Control Software Development Kit (generically called software library) designed for and to be used with STM32F05xx, STM32F100xx, STM32F103xx, STM32F2xx or STM32F4xx microcontrollers. The software library implements the Field Oriented Control (FOC) drive of 3-phase Permanent Magnet Synchronous Motors (PMSM
in „BLDC Sinuskommutierung Ansteuerung H-Brücke“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
User_s_Manual_of_ET-STM32F103.pdf
User’sManualofBoardMicrocontrollerversionET-STM32F103(ARMCortex-M3) ET-STM32F103 38 ET-STM32F103 is ARM Cortex-M3 Board Microcontroller that uses 32-Bit 64PIN (LQFP) Microcontroller No.STM32F103RBT6 from STMicroelectronics. Resource systems internal
in „SPI mit SD Karte antwortet nicht korrekt auf CMD0“ · Mikrocontroller und Digitale Elektronik ·
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PDF
User_s_Manual_of_ET-STM32F103.pdf
User’sManualofBoardMicrocontrollerversionET-STM32F103(ARMCortex-M3) ET-STM32F103 38 ET-STM32F103 is ARM Cortex-M3 Board Microcontroller that uses 32-Bit 64PIN (LQFP) Microcontroller No.STM32F103RBT6 from STMicroelectronics. Resource systems internal
in „Suche Schalter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
stm32f030f4-956260.pdf
STM32F030x4 STM32F030x6 STM32F030x8 STM32F030xC ® Value-line ARM -based 32-bit MCU with up to 256 KB Flash, timers, ADC, communication interfaces, 2.4-3.6 V operation Datasheet -production data Features
in „STM32F030 interne REF ausreichend für 12Bit?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
stm32h753bit6.cpp
).get_nvic()), m_fmc(m_rcc), m_ltdc(), m_i2c_1(), m_sdmmc_1(m_hsem[17]), m_sdmmc_2(m_hsem[18]) { } STM32H753BIT6& CODE_HARDWARE(STM32H753BIT6::get)() { static STM32H753BIT6 DATA_HARDWARE_0(stm32h753bit6); return(stm32h753bit6); } feedback CODE_HARDWARE(STM32H753BIT6::startup)() { if(m_debug.startup()
in „Virtual Function Elimination ARM GCC“ · Mikrocontroller und Digitale Elektronik ·
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Datei
stm32f107.c
configuration */ ADC_Configuration(); /* Configure the GPIO ports */ GPIO_Configuration(); /* Initialize the STM3210C-EVAL's LCD */ STM3210C_LCD_Init(); /* Initialize STM3210C-EVAL's LEDs */ STM_EVAL_LEDInit(LED1); STM_EVAL_LEDInit(LED2); STM_EVAL_LEDInit(LED3); STM_EVAL_LEDInit(LED4); /* Turn on leds available on STM3210X-EVAL */ STM_EVAL_LEDOn(LED1); STM_EVAL_LEDOn(LED2); STM_EVAL_LEDOn(LED3); STM_EVAL_LEDOn(LED4); /* Clear the LCD */ LCD_Clear(Blue); /* Set the LCD Back Color */ LCD_SetBackColor(Blue); /* Set
in „STM32 System_Setup“ · Mikrocontroller und Digitale Elektronik ·
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en.DM00315319.pdf
AN4899 Application note STM32 microcontroller GPIO hardware settings and low-power consumption Introduction The STM32 microcontroller general-purpose input/output pin (GPIO) provides many ways to interface with external circuits
in „STM32: 5 Volt tolerante Eingänge sind es nicht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
dma.c
#include <stdint.h> #include <dev/board.h> #include <dev/gpio.h> #include <arch/cm3/stm/stm32_timer.h> #include <arch/cm3/stm/stm32_gpio.h> #include <arch/cm3/stm/stm32_dma.h> #define TRANSFERSIZE 4 uint32_t gSamples[TRANSFERSIZE]; #define TIM1_CH2_STREAM (DMA_CONTROL2 | DMA_STREAM2 |
in „STM32F4 Timer Interrupt“ · Mikrocontroller und Digitale Elektronik ·
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Datei
irmp.c.logging.F30x.diff
-28 03:49:25.062008857 +0100 @@ -856,7 +856,7 @@ irmp_protocol_names[IRMP_N_PROTOCOLS + 1 # define STM32_UART_COM USART2 # define STM32_UART_BAUD 115200 // 115200 Baud # include "stm32f4xx_usart.h" -#elif defined(ARM_STM32F10X) +#elif defined(ARM_STM32F10X) || defined(ARM_STM32F30X) # define STM32_UART_COM
in „IRMP - Infrared Multi Protocol Decoder“ · Projekte & Code ·
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UserManual_STM32H747_DISCO.pdf
UM2411 User manual Discovery kit with STM32H747XI MCU Introduction The STM32H747I-DISCO Discovery kit is a complete demonstration and development platform for the STMicroelectronics Arm Cortex -M7 and -M4 dual-core-based STM32H747XIH6 microcontroller
in „STM32H747-DISCO0 - Demo Sourcecode gesucht“ · Mikrocontroller und Digitale Elektronik ·
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en.DM00072315.pdf
, STM32F405xx, STM32F407xx, STM32F410xx, STM32F411xx, STM32F412xx, STM32F415xx, STM32F417xx, STM32F427xx, STM32F429xx, STM32F437xx, STM32F439xx, Microcontrollers STM32F446xx, STM32F469xx, STM32F479xx STM32F7 Series: – STM32F722xx, STM32F723xx, STM32F732xx, STM32F733xx, STM32F 745xx, STM32F746xx, STM32F756xx, STM32F765xx, STM32F767xx, STM32F769xx, STM32F777xx, STM32F779xx STM32L0 Series: – STM32L07xxx, STM32L08xxx STM32L4
in „STM32 I2C zu Bootloader“ · Mikrocontroller und Digitale Elektronik ·
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PDF
en.DM00088500.pdf
STM32F030x4 STM32F030x6 STM32F030x8 STM32F030xC ® Value-line ARM -based 32-bit MCU with up to 256 KB Flash, timers, ADC, communication interfaces, 2.4-3.6 V operation Datasheet -production data Features
in „Controller IC für digitale RGBW LED-Streifen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STM32_5VtolerantIO.pdf
3.3(.) • It is not allowed to connect VBUS when STM32 is not supplied. VBUS • Or place the zenner diode (ex.3.3V) between VBUS and VDD STM32 • If STM32 supply is from LDO supplied by VBUS • It is recommended to have zenner diode(ex. 3.3V) 3.3(ex.) VBUS=5V VDD=3.3V To STM32 VDD LDO Application example : Triac Drive 9 • This example is shown for the -5V supply system 0V(Phase) -1.7V 5.6 LDO STM32 3.3V -5V LOAD (Neutral) • STM32 GPIO need to be set up as Open-drain mode
in „ESP32 3.3V Logik Level Mosfet“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
STMxx-Discovery-Versaloon-How2.pdf
//www.versaloon.com/ , where Simon was using the exact same chip , as the one used for Jtag on the STM32VL. I finally have succeded in adapting Versaloon to run SWD programming , on the embeddedARM Jtag on the STM8S-Discovery or STM32VL-Discovery boards. For now i can only get vsprog to work , but Simon
in „Use your STMxx-Discoveryboard as JTAG (SWD)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
gccout.txt
-mfpu=fpv4-sp-d16 -mcpu=cortex-m4 -mthumb -lm -fno-math-errno -specs=nosys.specs -T./lib/stm32f4xx_flash.ld -o ./main.out obj/main.o obj/usart.o obj/dprintf.o obj/system_stm32f4xx.o obj/stm32f4xx_gpio.o obj/stm32f4xx_tim.o obj/stm32f4xx_usart.o obj/stm32f4xx_rcc.o obj/stm32f4xx_adc.o obj/stm32f4xx_it.o
in „ARM Cortex M4 hängt beim Sinus“ · Mikrocontroller und Digitale Elektronik ·
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Datei
console_oszi_ub.txt
ffunction-sections -fdata-sections -Wall -fstack-usage -MMD -MP -MF"Startup/cmsis_boot/startup/startup_stm32f4xx.d" -MT"Startup/cmsis_boot/startup/startup_stm32f4xx.o" --specs=nano.specs -mfpu=fpv4-sp-d16 -mfloat-abi=hard -mthumb -o "Startup/cmsis_boot/startup/startup_stm32f4xx.o" arm-none-eabi-gcc "../Startup
in „Coocox Projekt in STMCubeIDE importieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AvrSTM32F_IO.pdf
Lesen der IO Ports genauso übersichtlich programmiert werden kann. Die Möglichkeiten der Ports bei den STM32Fxxx Prozessoren sind aber deutlich vielfältiger. Abb.1 STM32F10x GPIO Register Struktur Abb.2 STM32F30x und STM32F40x GPIO Register Struktur STM32F3 Discovery Board Blockschaltbild // Simple GPIO Example for STM32F10x und STM32F30x Discovery Modul Juni 2013 // A.Schnell #include "stm32f30x.h" #include "stm32f30x_gpio.h" #include "stm32f30x_rcc.h" #define BUTTON GPIO_Pin_0 // User Button #define LED6 GPIO_Pin
in „AVR ARM STM32F3 Discovery GPIO Einführung“ · Projekte & Code ·
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Datei
LUHE_AD9650.h
#endif /* Includes ------------------------------------------------------------------*/ #include "stm32f4xx.h" /** @addtogroup Utilities * @{ */ /** @addtogroup STM32F4_DISCOVERY * @{ */ /** @addtogroup STM32F429I_DISCOVERY * @{ */ /** @addtogroup STM32F429I_DISCOVERY_LOW_LEVEL * @{ */ /** @defgroup
in „AD9850 Steuerwort,Berechnung richtig?“ · HF, Funk und Felder ·
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Datei
irmp-libopencm3.diff
PCM__) || defined(__PCB__) || defined(__PCH__) // CCS PIC compiler # define PIC_CCS +#elif defined(STM32F1) // ARM STM32 with libopencm3 +# define ARM_OPENCM3 +# define F_CPU (SysCtlClockGet()) #elif defined(STM32L1XX_MD) || defined(STM32L1XX_MDP) || defined(STM32L1XX_HD) // ARM STM32 # include <stm32l1xx.h
in „IRMP - Infrared Multi Protocol Decoder“ · Projekte & Code ·
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PDF
Getting_started_with_STM32F10xxx_hardware_development.pdf
ranges between 16 and 32 Kbytes. ● Medium-density value line devices are STM32F100xx microcontrollers where the Flash memory density ranges between 64 and 128 Kbytes. ● Medium-density devices are STM32F100xx, STM32F101xx, STM32F102xx and STM32F103xx microcontrollers where the
in „Quarz an STM32F103 / Widerstand?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
platformio.ini
[env:STM32F103] board = nucleo_f103rb build_flags = -D STM32F1 [env:STM32F303] board = nucleo_f303re build_flags = -D STM32F3 [env:STM32F446] board = nucleo_f446re build_flags = -D STM32F4 [env:STM32G474] board = nucleo_g474re build_flags = -D STM32G4 # Framework stm32cube is not supported #[env:STM32G431] #board = nucleo_g431rb
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Datei
system_stm32f4xx.c
************************************************* */ /** @addtogroup CMSIS * @{ */ /** @addtogroup stm32f4xx_system * @{ */ /** @addtogroup STM32F4xx_System_Private_Includes * @{ */ #include "stm32f4xx.h" /** * @} */ /** @addtogroup STM32F4xx_System_Private_TypesDefinitions * @{ */ /** * @} */ /** @addtogroup
in „STM32F103 Bluepill mit 128kb lässt sich nicht flashen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
en.DM00155929.pdf
STM32F446xC/xE Errata sheet STM32F446xC/xE device limitations Silicon identification This errata sheet applies to the revision A of STM32F446xx microcontroller families. The STM32F446xx devices feature
in „Wer nutzt das Nucleo-64 und kann mir“ · Mikrocontroller und Digitale Elektronik ·
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datasheet_adc.pdf
STM32F103x6, STM32F103x8, STM32F103xB Electrical characteristics 5.3.17 12-bit ADC characteristics Unless otherwise specified, the parameters given in Table 45 are derived from tests performed under ambient
in „ARM Audio Spektrum Analyser“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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Datei
stm32_ub_uart.h
//-------------------------------------------------------------- // File : stm32_ub_uart.h //-------------------------------------------------------------- //-------------------------------------------------------------- #ifndef __STM32F4_UB_UART_H #define __STM32F4_UB_UART_H
in „STM32F030F4P6 und USART1“ · Mikrocontroller und Digitale Elektronik ·
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PDF
textdisplayadapter_2.pdf
Quelldateien für folgende Mikrocontrollerfamilien zur Verfügung: Controllerfamilie Verzeichnis im Archiv STM8 ./stxlcd/stm8_pwm ./stxlcd/stm8_uart AVR ./stxlcd/avr_pwm ./stxlcd/avr_uart Padauk PFS154 ./stxlcd/pfs154/stx_lcd_transmit STM32F0 ./stxlcd/stm32f0 Auch hier gilt: Die Software ist unter Linux entstanden
in „"Intelligenter" Textdisplayadapter mit Padauk PFS154“ · Projekte & Code ·
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Schaltplan eines Reset-Schaltkreises mit STM6315
+5V C2 100n U1 4 VCC BR 1 GND RESO 2 R9 10k RESET 1 SB1 1 2 3 MR STM6315 C1 100n GND
in „Atmega 328P resetten“ · Mikrocontroller und Digitale Elektronik · · Schaltpläne
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PDF
STM.pdf
∪ L298 DUALFULL-BRIDGE DRIVER . OPERATINGSUPPLYVOLTAGEUP TO 46 V TOTAL DCCURRENT UP TO 4 A LOWSATURATION VOLTAGE OVERTEMPERATUREPROTECTION LOGICAL ”0” INPUT VOLTAGE UP TO 1.5 V (HIGHNOISEIMMUNITY) DESCRIPTION Multiwatt15 PowerSO20 The L298is an integratedmonolithiccircuitin a 15- lead Multiwatt and PowerSO20 packages. It is a highvoltage,high current dualfull-bridgedriver de- signedtoacceptstandardTTLlogiclevelsanddrive ORDERING NUMBERS : L29L298HN (Multiwatt Horiz.) inductive loads such as relays, solenoids, DC and L298P (PowerSO20) steppingmotors.Twoenableinputsareprovidedto enableordisablethedeviceindependentlyofthein
in „Motor mit automatischer Drehzahlanpassung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
stm.c
/* ECE 476 Spring 2002 Final Project * Scanning Tunneling Microscope MCU Software * Sunarni Maulan * Engin Ipek * Cornell University */ #include <Mega163.h> #include <stdio.h> #include <Math.h> #include <delay.h> #define begin { #define end } void init(void); void cal(void);//calibration & scanning function void scan(void); bit r_ready; //signal ready, receive buffer is full unsigned char r_buffer[2]; //receive buffer unsigned char r_char, r_index; //character received and the index unsigned char z, x, y, r, a, vbias; //specification received from PC unsigned char stepy, stepx, countx ; //current
in „Fertige C-Source mit welchem Compiler erstellt?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STM.pdf
M54HC165 M74HC165 8 BIT PISO SHIFT REGISTER . tIG= 15 ns(TYP.) AT V = 5 V . LOWPOWER DISSIPATION CC CC = 4 A(MAX.) AT T =A25 ⋅C . OUTPUT DRIVE CAPABILITY 10 LSTTL LOADS . BALANCEDPROPAGATION DELAYS B1R F1R PLH = PHL (Plastic Package) (CeramicPackage) . SYMMETRICAL OUTPUT IMPEDANCE OL = IOH = 4 mA(MIN.) . HIGH NOISE IMMUNITY VNIH= VNIL= 28 % V CC(MIN.) . WIDE OPERATING VOLTAGE RANGE M1R C1R VCC (OPR) = 2 V TO6 V (MicroPackage) (Chip Carrier) . PIN ANDFUNCTION COMPATIBLE ORDER CODES : WITH 54/74LS165 M54HC165F1R M74HC165M1R M74HC165B1R M74HC165C1R DESCRIPTION PIN CONNECTIONS(top view) The M54/74HC165
in „Arduino + 74HC165“ · Mikrocontroller und Digitale Elektronik ·
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Datei
stm.cpp
#include <iostream> #include <cstdlib> #include <boost/msm/back/state_machine.hpp> #include <boost/msm/front/state_machine_def.hpp> #include <boost/msm/front/functor_row.hpp> namespace { namespace msm = boost::msm; namespace msmf = boost::msm::front; namespace mpl = boost::mpl; // Events struct EventKommen { EventKommen() { std::cout << "> EventKommen" << std::endl; }; }; struct EventGehen { EventGehen() { std::cout << "> EventGehen" << std::endl; }; }; struct EventMorgen { EventMorgen() { std::cout << "> EventMorgen" << std::endl; }; }; struct EventAbend { EventAbend() { std::cout << "> EventAbend"
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PDF
STM.pdf
LF00AB/C ∪ SERIES VERY LOW DROP VOLTAGE REGULATORS WITH INHIBIT VERYLOW DROPOUT VOLTAGE(0.45V) VERYLOW QUIESCENTCURRENT (TYP.50 A IN OFF MODE,500 A IN ON PENTAWATT MODE) OUTPUT CURRENT UP TO500 mA LOGIC-CONTROLLEDELECTRONIC SHUTDOWN OUTPUT VOLTAGESOF 1.25;1.5; 1.8;2.5; 2.7;3; 3.3; 3.5;4; 4.5; 4.7; 5; 5.2; 5.5;6; 8; 8.5; 9;12V INTERNALCURRENT AND THERMAL LIMIT ONLY2.2 F FORSTABILITY TO-220 ISOWATT220 AVAILABLEIN 〉 1%oAB) OR 〉 2%(C) SELECTIONAT 25 C SUPPLYVOLTAGEREJECTION: 80 db (TYP.) o TEMPERATURERANGE:-40 TO 125 C DESCRIPTION PPAK DPAK The LF00 series are very Low Drop regulators available in
in „Spannungsregler“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
stm.c
s10, s11, s12 }; void stm1(void) { static int s; switch (s) { case s10: if (condition10() == false) return; action10(); s++; break; case s11: if (condition11() == false) return; action11(); s++; break; // ... etc. } } int main(void) { for (;;) { stm0(); stm1(); // ... etc. } }
in „State Machine mit While-Schleifen.bitte um Kommentare“ · Mikrocontroller und Digitale Elektronik ·
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STM.pdf
M54/74HC299 M54/74HC323 HC2998BITPIPOSHIFTREGISTERWITHASYNCHRONOUSCLEAR HC3238BITPIPOSHIFTREGISTERWITHSYNCHRONOUS CLEAR . HIGH SPEED fMAX = 42 MHz (TYP.) AT CC = 5V . LOWPOWER DISSIPATION ICC = 4 µA(MAX.) AT TA= 25°C . HIGH NOISE IMMUNITY V NIH= VNIL= 28 % VCC(MIN.) . 10 LSTTL LOADS FOR QA’ TO QH’ (Plastic Package) (CeramicPackage) 15 LSTTL LOADS FOR QA TO QH . SYMMETRICAL OUTPUT IMPEDANCE IOH = OL = 6 mA (MIN.) FOR QA, TO QH, IOH = OL = 4 mA (MIN.) FOR QA, TO QH . BALANCEDPROPAGATION DELAYS M1R C1R tPLH = PHL (MicroPackage) (Chip Carrier) . WIDE OPERATING VOLTAGE RANGE ORDER CODES : V CC
in „74HC299 8-bit PIPO Shift Register“ · Mikrocontroller und Digitale Elektronik ·
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hardware_dev.pdf
ranges between 16 and 32 Kbytes. ● Medium-density value line devices are STM32F100xx microcontrollers where the Flash memory density ranges between 64 and 128 Kbytes. ● Medium-density devices are STM32F100xx, STM32F101xx, STM32F102xx and STM32F103xx microcontrollers where the
in „STM32: JTAG mit ST-LINK: Error in Initializing ST-Link device“ · Mikrocontroller und Digitale Elektronik ·
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user_manual_nucleo.pdf
and the respective targeted MCU. Table 1. Ordering information Order code Targeted MCU NUCLEO-F030R8 STM32F030R8T6 NUCLEO-F072RB STM32F072RBT6 NUCLEO-F103RB STM32F103RBT6 NUCLEO-F302R8 STM32F302R8T6 NUCLEO-F401RE STM32F401RET6 NUCLEO-L152RE STM32L152RET6 The meaning of NUCLEO-TXXXRY codification is as
in „USART1 issue with a STM32F030R8 Nucleo Board“ · µC & Digital Electronics ·