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Datei
graphik.c
<stdlib.h> #include <math.h> /* ------------ Special Include Files --------------- */ #include "tm_stm32f4_ili9341.h" #include "tm_stm32f4_rtc.h" /* ------------ Projekt Include Files --------------- */ #include "config.h" #include "graphik.h" #include "rtc_user.h" /* ------------ Typen Deklarationen
in „Zeigt her eure Kunstwerke (2017-2019)“ · Projekte & Code ·
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Datei
main.c
hadc1, &multimode) != HAL_OK) { _Error_Handler(__FILE__, __LINE__); } /**Configure Regular Channel */ sConfig.Channel = ADC_CHANNEL_1; sConfig.Rank = ADC_REGULAR_RANK_1; sConfig.SingleDiff = ADC_SINGLE_ENDED; sConfig.SamplingTime = ADC_SAMPLETIME_181CYCLES_5; sConfig.OffsetNumber = ADC_OFFSET_NONE; sConfig.Offset
in „Simultanabtastung mit STM32“ · Mikrocontroller und Digitale Elektronik ·
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PDF
F407-IoTBoard-Schematics.pdf
PB14 75 54 PF14 FSMC_A8 RST HS_DP PB15 76 PB14/SPI2_MISO/TIM1_CH2N/TIM8_CH2N/TIM12_CH1/U3_RTS/OTG_HS_DM/I2S2ext_SD PF14/FSMC_A8 55 PF15 FSMC_A9 PB15/SPI2_MOSI/TIM1_CH3N/TIM8_CH3N/TIM12_CH2/OTG_HS_DP/I2S2_SD PF15/FSMC_A9 B I2S_SCK
in „STM32 Nucleo welches Board am besten?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
= I2S_MCLKOUTPUT_ENABLE; hi2s3.Init.AudioFreq = I2S_AUDIOFREQ_32K; hi2s3.Init.CPOL = I2S_CPOL_LOW; HAL_I2S_Init(&hi2s3); } /** Configure pins as * Analog * Input * Output * EVENT_OUT * EXTI */ void MX_GPIO_Init
in „Probleme mit PCM1774 I2S DAC“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
= TIM_MASTERSLAVEMODE_DISABLE; HAL_TIMEx_MasterConfigSynchronization(&htim2, &sMasterConfig); sConfigIC.ICPolarity = TIM_INPUTCHANNELPOLARITY_RISING; sConfigIC.ICSelection = TIM_ICSELECTION_DIRECTTI; sConfigIC.ICPrescaler = TIM_ICPSC_DIV1; sConfigIC.ICFilter = 0; HAL_TIM_IC_ConfigChannel
in „STM32F4 Timer Interrupt“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lcd1803.c
disp->spi, disp->Reg_FuncSet1); // Disable RE bit static void LCD1803_CMD(SPI_HandleTypeDef *spi, uint8_t cmd); // send command & wait for finish static void LCD1803_WriteI(SPI_HandleTypeDef *spi, uint8_t b); // write instruction static uint8_t LCD1803_ReadS(SPI_HandleTypeDef *spi); // read status static
in „DOGM-204 Problem mit Steuercodes“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PAN1555__ENW89815A__Datasheet.pdf
1021.10 SUBJECT CLASS 2 BLUETOOTH MODULE PAGE Thema Bluetooth Modul der KlasseSeite 7 of 34 CUSTOMER’S CODE PANASONIC’S CODE DATE PAN1455/1555 ENW89815CxKF/ENW89815Datum 27.06.2011 6. TERMINAL LAYOUT Anschlußbelegung 0 9 8 7 6 5 4 3 2 1 11 1 4 12 3 13 2 14 1 15 0 16 B A 2 9 D C 17 8 8 9 20 1 2 23 4 5
in „Bluetooth-Modul "BlueMod+P25" von Stollmann - Ersatztyp“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
code implements a TCP Echo Server application based on * Raw API of LwIP stack. This application uses STM32F4xx the * ETH HAL API to transmit and receive data. * The communication is done with a web browser of a remote PC. ****************************************************************************** *
in „lwIP STM32f4 kontiuierlich senden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
eGC.pdf
PIIC10U18 PIIC10L10 PIIC10P15 PIIC10G5 PIIC10M1 PIIC10J17 PIIC10V7 PIIC10L12_CORE VDD_CORE PIIC10R8 PIIC10G7S VSS PIIC10M6 APIIC10AA22HV VDDSHV PIIC10V8 L14 VDD_CORE VDD_CORE R10 G11 VSS VSS M8 AB1 VDDSHV VDDSHV V17 PIIC10VDD_CORE VDD_CORE PIIC10R10 PIIC10VSS VSS PIIC10M8 PIIC10VDDSHV VDDSHV PIIC10V17
in „[Suche] Interessierte(n) an Projekt (ARM/FPGA)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
simple_server.c
ADUC7026 **********************************************/ #include "..\main\include.h" #define PSTR(s) s //u8 st[10] ; u8 Pin8on = 1; u8 Pin9on = 0; //extern void delay_ms(u8 ms); // please modify the following two lines. mac and ip have to be unique // in your local area network. You can not have the
in „Webpage Webserver“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Teileliste-04-18-2233.pdf
0,02 EUR 28 LED gelb 118 0,02 EUR 29 LED blau 15 0,05 EUR 30 7-Segment-Anzeige Kingbright SC39-11GWA 8 0,40 EUR 31 Spannungsregler LM317 TO92 LM 317 LZ 9 0,80 EUR 0,28 EUR 32 Spannungsregler ET7805 0630 3 0,10 EUR 33 Standardquarz, Grundton 8,000 Mhz HC49/U-S 8,0000-HC49U-S 10 0,25 EUR 0,09 EUR 34 Standardquarz, Grundton 8,000 Mhz HC18 8,0000-HC18 2 0,27 EUR 0,09 EUR 35 Standardquarz, Grundton 12,000 Mhz HC49/U-S 12,0000-HC49U-S 2 0,21 EUR 0,07 EUR 36 Standardquarz, Grundton 16,000 Mhz HC49/U-S 16,0000-HC49U-S 12 0,25
in „Bauelemente abzugeben“ · Markt ·
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PDF
small_pcb.PDF
S G 10.1uf PIU302 IN1- OUT2 PI6607 MusicDACA VFD_CS PII908 7 8 CD_CS + PIMIC0P1IC101 PIC102 PIU403 IN1+ IN2- PI5606 DAC VCC 3.3V PI1009 PI5P307 PI6P308BOOT1 P01T0T4 - PIMIC02 68K R2 P R1K PIU604 VEE/GND
in „STC LED Cube 8x8x8 RGB“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Teileliste-04-19-1539.pdf
0,02 EUR 28 LED gelb 118 0,02 EUR 29 LED blau 15 0,05 EUR 30 7-Segment-Anzeige Kingbright SC39-11GWA 8 0,40 EUR 31 Spannungsregler LM317 TO92 LM 317 LZ 9 0,80 EUR 0,28 EUR 32 Spannungsregler ET7805 0630 3 0,10 EUR 33 Standardquarz, Grundton 8,000 Mhz HC49/U-S 8,0000-HC49U-S 0 0,25 EUR 0,09 EUR 34 Standardquarz, Grundton 8,000 Mhz HC18 8,0000-HC18 0 0,27 EUR 0,09 EUR 35 Standardquarz, Grundton 12,000 Mhz HC49/U-S 12,0000-HC49U-S 0 0,21 EUR 0,07 EUR 36 Standardquarz, Grundton 16,000 Mhz HC49/U-S 16,0000-HC49U-S 0 0,25 EUR
in „Bauelemente abzugeben“ · Markt ·
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Datei
main.cpp
app.h" #include "stack_check.h" osThreadId main_task_id; //======================== // main // startup_stm32l0xx.s -> SystemInit(): MSI 2,097MHz //======================== int main(void) { osKernelInitialize(); // stop Kernel #if defined(DEBUG) for(uint32_t i = 0xA0000; i > 0; i--); #endif App.Init(); main_task_id
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PDF
Teileliste-04-19-1957.pdf
LM 317 LZ 9 0,80 EUR 0,28 EUR 32 Spannungsregler ET7805 0630 3 0,10 EUR 33 Standardquarz, Grundton 8,000 Mhz HC49/U-S 8,0000-HC49U-S 0 0,25 EUR 0,09 EUR 34 Standardquarz, Grundton 8,000 Mhz HC18 8,0000-HC18 0 0,27 EUR 0,09 EUR 35 Standardquarz, Grundton 12,000 Mhz HC49/U-S 12,0000-HC49U-S 0 0,21 EUR
in „Bauelemente abzugeben“ · Markt ·
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Teileliste-04-20-1111.pdf
LM 317 LZ 9 0,80 EUR 0,28 EUR 32 Spannungsregler ET7805 0630 3 0,10 EUR 33 Standardquarz, Grundton 8,000 Mhz HC49/U-S 8,0000-HC49U-S 0 0,25 EUR 0,09 EUR 34 Standardquarz, Grundton 8,000 Mhz HC18 8,0000-HC18 0 0,27 EUR 0,09 EUR 35 Standardquarz, Grundton 12,000 Mhz HC49/U-S 12,0000-HC49U-S 0 0,21 EUR
in „Bauelemente abzugeben“ · Markt ·
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Datei
I2CRoutines.h
------------------------------------------- */ Status I2C_Master_BufferRead(I2C_TypeDef* I2Cx, uint8_t* pBuffer, uint32_t NumByteToRead, I2C_ProgrammingModel Mode, uint8_t SlaveAddress); Status I2C_Master_BufferWrite(I2C_TypeDef* I2Cx, uint8_t* pBuffer, uint32_t NumByteToWrite, I2C_ProgrammingModel Mode, uint8_t SlaveAddress); void I2C_Slave_BufferReadWrite(I2C_TypeDef* I2Cx,I2C_ProgrammingModel Mode); void I2C_LowLevel_Init(I2C_TypeDef* I2Cx); void I2C_DMAConfig(I2C_TypeDef* I2Cx, uint8_t* pBuffer, uint32
in „stm32 Cortex I2C : Master zieht SCL auf Masse“ · Mikrocontroller und Digitale Elektronik ·
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Datei
I2CRoutines.h
------------------------------------------- */ Status I2C_Master_BufferRead(I2C_TypeDef* I2Cx, uint8_t* pBuffer, uint32_t NumByteToRead, I2C_ProgrammingModel Mode, uint8_t SlaveAddress); Status I2C_Master_BufferWrite(I2C_TypeDef* I2Cx, uint8_t* pBuffer, uint32_t NumByteToWrite, I2C_ProgrammingModel Mode, uint8_t SlaveAddress); void I2C_Slave_BufferReadWrite(I2C_TypeDef* I2Cx,I2C_ProgrammingModel Mode); void I2C_LowLevel_Init(I2C_TypeDef* I2Cx); void I2C_DMAConfig(I2C_TypeDef* I2Cx, uint8_t* pBuffer, uint32
in „Cortex I2C zu kurze Impulsdauer“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
#include "stm32f10x_conf.h" #include "main.h" void eraseFlashPage(uint8_t page) { uint32_t addr = FLASH_ADDR + 0x400 * page; FLASH_Unlock(); FLASH_ClearFlag(FLASH_FLAG_PGERR | FLASH_FLAG_WRPRTERR | FLASH_FLAG_EOP
in „STM32F103 bootloader tool“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
SPI_InitStructure.SPI_CRCPolynomial = 0; SPI_Init(SPI1, &SPI_InitStructure); SPI_Cmd(SPI1, ENABLE); SELECT_GYRO; while (SPI_I2S_GetFlagStatus(SPI1, SPI_I2S_FLAG_BSY ) == SET); SPI_I2S_SendData(SPI1, 0x20C7); //Sensor Config DESELCT_GYRO; } int main(void) { char buffer_string[100]; uint16_t yaxis; SystemInit(); SysTick_Config(
in „STM32-Discovery Gyro auslesen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.h
#endif /* Includes ------------------------------------------------------------------*/ #include "stm32f1xx_hal.h" /* Private includes ----------------------------------------------------------*/ /* USER CODE BEGIN Includes */ /* USER CODE END Includes */ /* Exported types --------------------------
in „CubeIDE Variablen in externen Modul unbekannt“ · Mikrocontroller und Digitale Elektronik ·
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Datei
DSO_Test.cpp
timer void uart_puts(char* s); char outval[80]; uint16_t dmabuf[BufSize]; volatile uint8_t trig_arm; volatile unsigned int benchtime; ADC_InitTypeDef ADC_InitStructure; extern "C" void SysTick_Handler(void) { benchtime++; } extern
in „STM32F103 ADCs mit externem Trigger langsamer?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main_ver1.c
#include <stdint.h> #include "stm8s.h" #define F_CPU 1600000UL #define LED_PIN 3 //function prototyps static inline void delay_ms(uint16_t ms); void init_gpio(void); int init_timer(void); void init_interrupt(void); int main(){ init_gpio
in „sdcc source code in mehrere Dateien aufteilen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
hal_status_recive == HAL_OK) { char hal_string[] = "HAL_OK_Recive\n"; HAL_UART_Transmit(&huart1, (uint8_t*)hal_string, sizeof(hal_string), 100); } if(hal_status_recive == HAL_ERROR) { char hal_string[] = "HAL_ERROR_Recive\n"; HAL_UART_Transmit(&huart1, (uint8_t*)hal_string, sizeof(hal_string), 100); }
in „Überlauf UART“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
&htim4); sClockSourceConfig.ClockSource = TIM_CLOCKSOURCE_INTERNAL; HAL_TIM_ConfigClockSource(&htim4, &sClockSourceConfig); sMasterConfig.MasterOutputTrigger = TIM_TRGO_RESET; sMasterConfig.MasterSlaveMode = TIM_MASTERSLAVEMODE_DISABLE
in „STM32F4 auf eigenem Board / GPIO Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
16; HAL_UART_Init(&huart1); } /** Configure pins as * Analog * Input * Output * EVENT_OUT * EXTI PA8 ------> RCC_MCO_1 */ void MX_GPIO_Init(void) { GPIO_InitTypeDef GPIO_InitStruct; /* GPIO Ports Clock Enable */ __GPIOH_CLK_ENABLE(); __GPIOA_CLK_ENABLE(); /*Configure GPIO pin : PA8 */ GPIO_InitStruct.Pin
in „STM32F4 CubeMX UART Probleme“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GH025A_A3__-_090622.pdf
5 CT SW 16 S2 R12 R2 6 SRT LN 15 S1 R17 8 GND PGND 13 C8 9 FB SS 12 C7 10 IS SCP 11 C6 VS STB C18 R5 R8 OVP R6 C4 FB1 5V R3 Q1 C14 R23 R24 D7 A-DIM C5 R7 1 2 VIN R4 OVP 1 ZD2 R13 C12 2 R14 S2 D4 2 1 R15 1 2 D5 GREEN
in „Display ansteurern“ · Mikrocontroller und Digitale Elektronik ·
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Datei
hwinfop14s.txt
=1 E: TAGS=:systemd: E: CURRENT_TAGS=:systemd: P: /devices/platform/serial8250/tty/ttyS8 M: ttyS8 R: 8 U: tty D: c 4:72 N: ttyS8 L: 0 E: DEVPATH=/devices/platform/serial8250/tty/ttyS8 E: SUBSYSTEM=tty E: DEVNAME=/dev/ttyS8 E: MAJOR=4 E: MINOR=72 E: USEC_INITIALIZED=1186780 E: ID_MM_CANDIDATE
in „Lenovo Thinkpad P14s (Intel) freeze beim Steckerziehen“ · PC Hard- und Software ·
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Datei
i2croutines.h
------------------------------------------- */ Status I2C_Master_BufferRead(I2C_TypeDef* I2Cx, uint8_t* pBuffer, uint32_t NumByteToRead, I2C_ProgrammingModel Mode, uint8_t SlaveAddress); Status I2C_Master_BufferWrite(I2C_TypeDef* I2Cx, uint8_t* pBuffer, uint32_t NumByteToWrite, I2C_ProgrammingModel Mode, uint8_t SlaveAddress); void I2C_Slave_BufferReadWrite(I2C_TypeDef* I2Cx,I2C_ProgrammingModel Mode); I2C_InitTypeDef I2C_LowLevel_Init(I2C_TypeDef* I2Cx); void I2C_DMAConfig(I2C_TypeDef* I2Cx, uint8_t* pBuffer
in „stm32 Cortex I2C : Master zieht SCL auf Masse“ · Mikrocontroller und Digitale Elektronik ·
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PDF
The_International_System_of_Units_sp330.pdf
expanded Transition /pm uncertainties U = kuc 2p9– 5d' 4 645 807.20 (k = 3), equal to three times the 2p8– 5d 4 642 280.06 1s3– 3p 10 565 112.86 relative combined 1s – 3p 450 361.62 standard 4 8 uncertainties. 86 –8 For Kr, the above values apply, with a relative uncertainty of 2 ⫻10 , to radiations emitted
in „Stromangabe in der Einheit At?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
TouchPanel.c
****************************************************************************/ static void WR_CMD (u8 cmd) { /* Wait for SPI1 Tx buffer empty */ while (SPI_I2S_GetFlagStatus(SPI2, SPI_I2S_FLAG_TXE) == RESET); /* Send SPI1 data */ SPI_I2S_SendData(SPI2,cmd); /* Wait for SPI1 data reception */ while (SPI_I2S_GetFlagStatus
in „ADS7843 Werte berechnen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
file.pdf
Hardware and layout UM1472 Figure 6. STM32F407VGT6 block diagram ##-▯DATA▯2!-▯▯▯▯+" %XTERNAL▯MEMORY #,+▯▯.%▯;▯▯▯=▯▯!;▯▯▯▯= CONTROLLER▯▯&3-# $;▯▯▯▯=▯▯/%.▯▯7%.▯▯ .*4234▯▯*4$)▯▯ !("▯ 32!-▯▯032!-▯▯./2▯&LASH▯ .",;▯▯▯=▯▯.,▯▯.2%' *4$/▯37$▯▯*4$/ *
in „STM32 FW_LIB wozu dient RCC_APB2PeriphClockCmd?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LIS302DL_AN.pdf
shown in Figure 2 Figure 2. LIS302DL electrical connection Vdd Vdd_IO 1 6 Z 1 X Y 10uF 6 13 Top VIEW 8 100nF 8 13 TOP VIEW DIRECTION OF THE DETECTABLE D ACCELERATIONS I D P S T T O A L C I I S S C S GND Digital signal from/to signal controller.Signal’s levels are defined by proper selection of Vdd_IO
in „Verwirrung mit LIS302“ · Mikrocontroller und Digitale Elektronik ·
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PDF
FMeter-407-TDC.pdf
Impuls/Umdrehung geliefert wird. technische Daten: Kanal F1: 0,001 Hz - 80 MHz mit 10-stell. Ergebnis/s; lückenlose Messungen Kanal F2: 0,001 Hz - 80 MHz mit 8-stell. Ergebnis/s; lückenlose Messungen Vorgabe der Messzeit von 0,001 - 999,000 s in 1 ms Schritten; je Kanal Vorgabe von Timeout von 0,001
in „DIY Frequency Counter mit 10 bis 12 Digits?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
#include "stm32f10x_lib.h" #include <stdint.h> GPIO_InitTypeDef GPIO_InitStructure; USART_InitTypeDef USART_InitStructure; ErrorStatus HSEStartUpStatus; void RCC_Configuration(void); void NVIC_Configuration(void)
in „CortexM3 include problem“ · Mikrocontroller und Digitale Elektronik ·
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Datei
os_cpu_a.asm
*********************************************** AREA |.text|, CODE, READONLY, ALIGN=2 THUMB REQUIRE8 PRESERVE8 ;********************************************************************************************************* ; CRITICAL SECTION METHOD 3 FUNCTIONS ; ; Description: Disable/Enable interrupts by
in „Portierung von Keil .asm-Datei nach GCC“ · Mikrocontroller und Digitale Elektronik ·
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Datei
simple_server_10.c
ADUC7026 **********************************************/ #include "..\main\include.h" #define PSTR(s) s //u8 st[10] ; u8 Pin8on = 1; u8 Pin9on = 0; //extern void delay_ms(u8 ms); // please modify the following two lines. mac and ip have to be unique // in your local area network. You can not have the
in „Webpage Webserver“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
Initialize all configured peripherals */ MX_GPIO_Init(); MX_USART1_UART_Init(); /* USER CODE BEGIN 2 */ uint8_t buffer[10]; uint8_t *pointer; pointer = buffer; //pointer = &buffer; HAL_UART_Receive_IT(&huart1, pointer, 10); /* USER CODE END 2 */ /* Infinite loop */ /* USER CODE BEGIN WHILE */ while (1) { /*
in „Überlauf UART“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
Initialize all configured peripherals */ MX_GPIO_Init(); MX_USART1_UART_Init(); /* USER CODE BEGIN 2 */ uint8_t buffer[20]; uint8_t *pointer_recive; uint8_t *pointer_transmit; pointer_recive = buffer; pointer_transmit = buffer; HAL_StatusTypeDef hal_status_recive; HAL_StatusTypeDef hal_status_transmit; // TimeOut
in „Überlauf UART“ · Mikrocontroller und Digitale Elektronik ·
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Datei
PeriphCode.c
#include "stm32f0xx.h" #define SPIBUFFERSIZE 256 char SPIRxBuffer[SPIBUFFERSIZE]; char SPITxBuffer[SPIBUFFERSIZE]; int main() { int i = 0; for(i=0;i<SPIBUFFERSIZE;i++) { SPIRxBuffer[i] = 0x5A; SPITxBuffer[i] = 0xA5
in „STM32F0 SWD LockOut“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lcd_init.c
Level Ebene Autor : Christian Julius ******************************************** */ /* LCD Pins CS PA8 DC PA4 SPI_CLK PA5 MOSI PA7 MISO PA6 BACKLIGHT C15 */ #include "stm32f10x_conf.h" /* ------------ Standard Include Files --------------- */ #include <stdint.h> #include <stdbool.h> /* ------------ System
in „Basteltip: STM32F103 DIP40 Board“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BTS462T_20040127.pdf
Body Model) VESD kV according to ANSI EOS/ESD - S5.1 - 1993 ESD STM5.1 - 1998 Input pin ± 1 all other pins ± 5 Thermal Characteristics junction - case: RthJC - - 3 K/W Thermal resistance @ min. footprint Rth(JA) - 80 - K/W Thermal resistance @ 6 cm
in „Schaltregler-Diskussion“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
qaxe_flash_stm32L.txt
shm/QAXE/FW/qaxe/firmware/fw-rev2/qaxe-rev2.bin 0x8000000 st-flash 1.8.0-13-g40ee5f4 2024-03-04T19:08:32 WARN common.c: NRST is not connected 2024-03-04T19:08:32 INFO common.c: STM32L1xx_Cat_2: 32 KiB SRAM, 64 KiB flash in at least 256 byte pages. file /dev/shm/QAXE/FW/qaxe/firmware/fw-rev2/qaxe-rev2.bin md5 checksum: e27ce5bee835a7fa5c8c0734fccf424, stlink checksum: 0x005ff15a 2024-03-04T19:08:32 INFO common_flash.c: Attempting to write 60240 (0xeb50) bytes to stm32 address: 134217728 (0x8000000) -> Flash page at 0x8000000 erased (size
in „10W Bitcoin miner mit 450GH/s für Raspberry Pi“ · Projekte & Code ·
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Datei
lcd_init.c
uint16_t count) { for (uint16_t i = 0; i < count; i++) { /* Warte bis TX Buffer leer ist */ SPI_I2S_SendData(LCD_SPI,data); while (SPI_I2S_GetFlagStatus(LCD_SPI, SPI_I2S_FLAG_TXE) == RESET); } } /* --------- LCD_SPI 8 Bit Senderoutine ----------- */ void SPI_SendByte(uint8_t data) { /* Warte bis TX Buffer leer ist */ SPI_I2S_SendData(LCD_SPI,data); while (SPI_I2S_GetFlagStatus(LCD_SPI, SPI_I2S_FLAG_TXE) == RESET); while (SPI_I2S_GetFlagStatus(LCD_SPI, SPI_I2S_FLAG_BSY) == SET); } /* ---------- LCD_SPI 16 Bit Senderoutine
in „Lebensdauer von lokalen Variablen“ · Softwareentwicklung ·
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PDF
BTS4140N.pdf
energy dissipation EAS single pulse Tj= 150 °C, IL= 0.15 A Load dump protection 3)VLoadDump 4)= VA+ V S VLoaddump V R I2Ω, td=400ms, V =INow or high IL= 150 mA, V bb= 13,5 V 93.5 Vbb = 27 V 127 Electrostatic discharge voltage(Human Body Model) VESD kV according to ANSI EOS/ESD - S5.1 - 1993 ESD STM5.1
in „+12V mit +3.3V schalten P-MOSFET?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
stm32f10x_tim.c
Select the Input and set the filter */ tmpccmr1 &= (uint16_t)(((uint16_t)~((uint16_t)TIM_CCMR1_CC2S)) & ((uint16_t)~((uint16_t)TIM_CCMR1_IC2F))); tmpccmr1 |= (uint16_t)(TIM_ICFilter << 12); tmpccmr1 |= (uint16_t)(TIM_ICSelection << 8); if((TIMx == TIM1) || (TIMx == TIM8) || (TIMx == TIM2) || (TIMx
in „STM32 - Eclipse, ARM GCC - Funktionsaufruf geht nicht :-(“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
-----------------------------*/ /* USER CODE END PFP */ /* USER CODE BEGIN 0 */ void uart_putc(uint8_t d){ HAL_UART_Transmit(&huart2, &d , 1, 100); } uint8_t uart_getc(void){ uint8_t d; (uint8_t)HAL_UART_Receive(&huart2, &d, 1, 100); return d; } void RxIntEnable(CAN_HandleTypeDef *CanHandle) { if(CanHandle
in „STM32 CAN Botschaft empfangen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
HAL_RCC_GPIOB_CLK_ENABLE(); /*Configure GPIO pin Output Level */ HAL_GPIO_WritePin(GPIOB, GPIO_PIN_8|GPIO_PIN_9, GPIO_PIN_RESET); /*Configure GPIO pins : PB8 PB9 */ GPIO_InitStruct.Pin = GPIO_PIN_8|GPIO_PIN_9; GPIO_InitStruct.Mode = GPIO_MODE_OUTPUT_PP; GPIO_InitStruct.Pull = GPIO_NOPULL; GPIO_InitStruct.Speed
in „STM32: interne Pull-Ups für SPI“ · Mikrocontroller und Digitale Elektronik ·
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Datei
startup_stm32f10x_cl.c
/** ****************************************************************************** * @file startup_stm32f10x_cl.c * @author Coocox * @version V1.0 * @date 3/7/2011 * @brief STM32F10x Connectivity line Devices Startup code. * This module performs: * - Set the initial SP * - Set the vector table entries
in „Compiler überschreibt Speicherbereich von Malloc“ · Mikrocontroller und Digitale Elektronik ·
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Datei
LVGLDispDriver_DISCO_F769NI.cpp
lcd.SetBackColor(LCD_COLOR_BLUE); _lcd.SetTextColor(LCD_COLOR_WHITE); _lcd.DisplayStringAt(0, LINE(5), (uint8_t *)"DISCOVERY STM32F769NI", CENTER_MODE); init(); } void LVGLDispDISCO_F769NI::init() { size_t bufferSize = LV_HOR_RES_MAX * _nBufferRows; #if (USE_STATIC_BUFFER == 0) // allocate memory for display
in „komplexes Problem mit Grafik und Dateisystem auf Disco-F746NG“ · Mikrocontroller und Digitale Elektronik ·