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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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Datei
startup_stm32l476xx.s
******************* COPYRIGHT(c) 2016 STMicroelectronics ****************** ;* File Name : startup_stm32l476xx.s ;* Author : MCD Application Team ;* Version : V1.2.0 ;* Date : 28-October-2016 ;* Description : STM32L476xx Ultra Low Power devices vector table for MDK-ARM toolchain. ;* This module performs
in „SYSCFG->EXTICR Fehler“ · Mikrocontroller und Digitale Elektronik ·
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Datei
startup_stm32f746xx.S
/** ****************************************************************************** * @file startup_stm32f746xx.s * @author MCD Application Team , Benny Zinke * @Version V1.0.2 * @Date 06-October-2015 * @brief STM32F746xx Devices vector table for GCC based toolchain. * This module performs: * - Set the
in „STM32F7 & malloc“ · Mikrocontroller und Digitale Elektronik ·
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SRC_Power_Checker.pdf
1 2 3 4 5 6 7 8 U M T T X X X X K _ _ _ _ _ L I 1 1 2 2 _ _ _ _ _ _ 1. 31V BUCKINab supply, measure the bus voltage A R R R R l l l l D D A A A A A e e e e W W U U U U R R R R S S 4V1ab/3V3ab/3Vab/14V2ab 3V3_ C1 C2
in „STM32G474 Startverhalten“ · Mikrocontroller und Digitale Elektronik ·
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ADD9910_Design.pdf
RF_OUT1_P RF_OUT1_P VCC_3V3_µC RF_OUT1_N RF_OUT1_N Designator DDS_Modul_Supply_AD9910.SchDoc C C VCC_1V8_AVDD VCC_1V8_AVDD VCC_1V8_DVDD VCC_1V8_DVDD VCC_3V3_AVDD VCC_3V3_AVDD VCC_3V3_DVDD VCC_3V3_DVDD B D G N . V S 2T . PROJECT * APPROVALS DATE * ENG: * * DSN: * * PROJECTREVISION: DOCUMENTREVISION: DESIGNITEM
in „PCB -Frequenzrampe 100khz-360 MHz“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
config.h
CONFIG_H_INCLUDED #define CONFIG_H_INCLUDED #include <stdbool.h> #include <stdint.h> #include "tm_stm32f4_bmp180.h" #include "tm_stm32f4_rtc.h" // Typdefinition diverser RAM Typen, Verwendung <Typ> <CCRAM> <Variablenname> #define CCRAM __attribute__((section(".ccram"))) #define BKRAM __attribute__((
in „Organisation der Header und Includes“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ds18b20.c
=================== ??: DS18B20_Reset ??:? ??:Flag --- ???????DS18B20??? ??: ????????(????480?s??????),??????,MCU??????,DS1820 ????????????,??15~60?s?,DS1820??????(60~240?s??????)? ==============================================================================*/ u8 DS18B20_Reset(void) { DS18B20_
in „STM32 DS1820“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Strommessung.pdf
PA14 49 R211 5 37 50 CLK PC6 PA15 D VSS 6 38 PC7 BUTTON_{OK} F202 A8 SBU1 E 7 39 26 J203 B8 N H DAT0 PC8 PB0 BUTTON_{OK} 5A SBU2 G S DAT1 8 40 PC9 PB1 27 1 10 51 28 2 V 1 1 11 DET_A 9 52 PC10 PB2 55 BUTTON_{UP} 3 3 D201 A S SHIELD DET_B PC11 PB3 C217 10u 53 PC12 PB4 56
in „Prüfung Schaltplan Power Profiler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
irUsbSender-v1-0-1.pdf
GND C10 only if using with a TSOP31236 receiver connected to J7 pins 3(out), 5(Vcc), 6(Gnd). D1 r C8 C9 GND GND NOT GND LED-green d JP2 then needs to close pin 2 and 3. 22µF 22µF d a JP2 s tl R4 J1 U3 c oo SolderJumper_3_Open 18 GND 4 b GND GND USB_B_Micro USBLC6-2SC6 r t 1 3 optional S J4 p oo 2 SWD
in „[V] Leerplatinen für USB <-> IRMP/IRSND und STM32 controller“ · Markt ·
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Datei
Slave.cpp
/ Enable SPI Rx SPI1->CR2 |= (uint16_t)SPI_I2S_DMAReq_Rx; } // On Reception end void DMA2_Stream2_IRQHandler() { // Disable SPI Rx SPI1->CR2 &= (uint16_t)~SPI_I2S_DMAReq_Rx; // Clear IT DMA2->LIFCR |= 0x200000; // Set reply for master switch (DAQPipe.rx_frame
in „2 STM32F4 SPI Master/Slave FullDuplex“ · Mikrocontroller und Digitale Elektronik ·
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H616_JC_6Z_V1_2_MCU.pdf
4 M B C M C M M M / / / / / / S T I I M I I P 3 S M F S S R 9 9 X X T W 0 D D S / P O 2 1 F 5 _ / E T N _ _ 4 3 P )/ ) _ 8 _ I _ E 6 P 4 3 3 U _ T T T S ( ( 8 L A M _ _ P D P I _ C R R A / 4 3 A C B I K C P / C O U U / S C C D _ S
in „Induktiver Näherungsschalter tauschen Probleme“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
clockmicro-clockmicrov2.pdf
GND GND GND GND 4 6 8 k 9 U3 2 3 4 9 STM32F103C8Tx 1 3 D D D A R D D D D SW1 V V V D V NRST 7 3 NRST SW_PUSH C16 3 + 4 N 44 BOOT0 D T G LO = Boot from flash 100n B 100 1 VBAT R42 GND GND C18 C19 5 5 PD0/RCC_OSC_IN F 6 PD1
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BMS_Matrix.pdf
X1 14 B 1 0 X2 15 1 1M 1 B C 1 11 X3 R1 BT1 3 Y Y0 1 Zur_Schaltmatrix Battery_Cell 5 U2 2 3 3 2 Y1 STM8S001J3M Q_NMOS_GDS Q_NMOS_GDS Y2 2 Y3 4 4 Q1 Q2 D V Inh 6 6 PB4 PD6 1 5 8 PB5 PD5 A 10 PC5 7 E S B 9 3 VCAP S V V V 2 7 8 C2 1u C C Sheet: / D File: BMS_Matrix.sch D Title: Size: A4 Date: Rev: KiCad
in „Antiserielle n-Channel-MOSFETs ansteueren mit 74HC4052“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
main.c
/h2> */ /* Includes ------------------------------------------------------------------*/ #include "stm32f10x.h" #include "platform_config.h" /** @addtogroup STM32F10x_StdPeriph_Examples * @{ */ /** @addtogroup CAN_Normal * @{ */ /* Private typedef -----------------------------------------------------
in „CAN mit STM32“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ureflow_1.0.1.pdf
R8 GND GND GND A1 1.5K 4.7K B1 R1 R2 1 GND B12 U4 GND 5.1K 5.1K CH340B GND A12 C9 +3V3 EP 4.7uF Shield B B D GND N G C10 U6 D? 100nF DS14W 4 STM32G031F8P6 RESET 6 PF2-NRST D PA0 7 BUZZER +5V +5V +5V +3V3
in „Feedback Schaltplan STM32G0“ · Mikrocontroller und Digitale Elektronik ·
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Datei
initsdram.c
#ifdef DATA_IN_ExtSDRAM /** * @brief Setup the external memory controller. * Called in startup_stm32f429_439xx.s before jump to main. * This function configures the external SDRAM mounted on STM32F429I-DISCO board * This SDRAM will be used as program data memory (including heap and stack). * Ported
in „STM32F429 Disco Board: SDRAM benutzen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Testboard_KK32F7.PDF
/TIM3_CH4/TIM8_CH4/I2C3_SDA/I2S_CKIN/SDIO_D1/DCMI_D3 TIM8_CH1N/CAN1_TX/FMC_D21/LCD_G2/PH13 PIU1000152 CAN1_TX GND GND P OuSD_D2D 0 D 2 162 PC10/SPI3_SCK/I2S3_CK/USART3_TX/UART4_TX/SDIO_D2/DCMI_D8/LCD_R2 TIM8_CH2N/FMC_D22
in „STM32F7 Discovery Board“ · Mikrocontroller und Digitale Elektronik ·
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Datei
jlink.txt
Compiled Jul 17 2013 11:52:37 DLL version V4.58, compiled Nov 29 2012 14:32:24 Firmware: J-Link ARM V8 compiled Nov 25 2013 19:20:08 Hardware: V8.00 S/N: xxxxxxxxxxx OEM: SEGGER-EDU Feature(s): FlashBP, GDB VTarget = 3.254V Info: TotalIRLen = 9, IRPrint = 0x0011 Info: ARM AP[0]: 0x00460000, JTAG-AP **
in „[STM32/Cortex-M4] JTag nur beim Systemflash möglich. Fehler beim Mainflash“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ds18b20.c
release by DDR to input DIR_1WIRE_IN(); } // wait at least 1us (recovery time) delay_nus(1); } } u8 read_1820(void) { u8 data = 0x00; u8 i = 0; for (i = 0; i < 8; i++) { // set DDR to output DIR_1WIRE_OUT(); // put signal low //CLR_OP_1WIRE(); // hold down for at least 1us delay_nus(1); // release
in „STM32 DS1820“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ureflow.pdf
RI} GND 10K 10K B CC1 A5 ~{DCD}12 1 4 BTN_BACK 1 4 BTN_OK U B5 13RESET 3 CC2 1 ~{DTR} 2 3 2 3 SBU1 A8 ~{RTS}14 Q3 GND B8 D 7 2 S8050 SBU2 G ~{RST} R7 1 GND GND GND A1 4.7K B1 R1 R2 1 GND B12 U4 C5 GND 5.1K 5.1K CH340B 100nF GND A12 C10 +3V3 EP 4.7uF Shield B B D GND N G C11 U6 100nF 4 STM32G031F8P6 RESET
in „Feedback Schaltplan STM32G0“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ds18b20.c
data &= ~(1 << i); } // total slot at least 60us delay_nus(55); } return data; } /* ·µ»ØÖµÊÇÎÂ¶È ñÊ s,s,s,s, s,b6,b5,b4, b3,b2,b1,b0, b-1,b-2,b-3,b-4 ת»»ÎªÊ® øÖÆ ÎÂ¶È T = (int)val*10/16; ·Å óÁË10±¶£¬ öλÊÇСÊý²¿·Ö¡£ */ void DS18B20_Convert(void) //ζÈת»» { init_1820(); // λ18b20 write_1820(0xcc); // ·¢³öת»»ÃüÁî write_1820(0x44); } u16 DS18B20_Read(void) //¶ÁȡζÈÖµ { int temp; s16 Vorkommastelle; u8 Nachkommastelle; u16 res; init_1820(); // λ18b20 write_1820(0xcc); // ·¢³öת»»ÃüÁî write_1820(0x44); delay_nus(750); init_1820(); write_1820(0xcc); //·¢³ö¶ÁÃüÁî write_1820(0xbe)
in „STM32 DS1820“ · Mikrocontroller und Digitale Elektronik ·
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Datei
stm32_spi_eigen.c
Deaktiviert CRC calculation SPI_Cmd(SPI1,ENABLE); // AKtiviert die SPI1-Schnittstelle } void send_Byte(uint8_t val) { //SPI_RxFIFOThresholdConfig(SPI1, SPI_RxFIFOThreshold_QF); GPIO_ResetBits(GPIOA, GPIO_Pin_6); // NSS aktiveren while (SPI_I2S_GetFlagStatus(SPI1, SPI_I2S_FLAG_TXE) == RESET); //wait buffer empty SPI_SendData8(SPI1, val); while (SPI_I2S_GetFlagStatus(SPI1, SPI_I2S_FLAG_BSY) == SET); //wait finish sending GPIO_SetBits(GPIOA, GPIO_Pin_6); // NSS deaktivieren } void DDS_write(uint16_t data) { //SPI_RxFIFOThresholdConfig
in „AD9833 mittels STM32F072 per SPI ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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Datei
drehgeber.h
#ifndef _DREHGEBER_H #define _DREHGEBER_H #include <iostm8s105s4.h> #include <intrinsics.h> #include <stdint.h> #include "..\stm8def.h" #define TIM1_Period 1000 #define TIM1_ENCODERMODE_TI12 (u8)0x03 void init_drehgeber (void); #endif
in „[STM8S] Drehgeber direkt anschließen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
schaltplan.txt
+5V 3.3V 3.3V 3.3V ST-Link ^ ^ ^ ^ o o o o 3.3V 47u | 100n | | 100n | | N | S | +----||---+ +----||---| | +----||---+ | R | W | | | | | +-+ | | | S | I | | | --- | 2,2k | | --- | | T | M | -- | | | | +--------------|-------+ | --- | | +-+ | | | +--------+ | +------------------
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Datei
main.c
/h2> */ /* Includes ------------------------------------------------------------------*/ #include "stm32f10x.h" #include "platform_config.h" /** @addtogroup StdPeriph_Examples * @{ */ /** @addtogroup FLASH_Write_Protection * @{ */ /* Private typedef ---------------------------------------------------
in „STM32 ReadOutProtection“ · Mikrocontroller und Digitale Elektronik ·
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schaltplan_uC.pdf
/ 100k 50V A _ R3 1 EN D FB 4 FB 4 5 E G GND R R H D1 GND GND TP5 A C3 C4 C5 C6 0R 7MP4541GN-Z C7 C8 C9 C10 C 50V 50V 50V 50V 6 8 7 6.3V 6.3V 10u 10u J 4u7 1u 100n 1u R 6 R 100n 1u 6.3V 6.3V k +3V3 B 0 8 1 S T1 1 R C11 9 1 1 1 1 1 1 1 1 1 TP6 TP7 BSS138 TP8 9 0 R R R R R R R R R R P P TP11 T 6.3V T
in „Übersprechen von einem uC-Pin zum Anderen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Strommessung.pdf
GPOUT 25 PC4 PA13 49 D+ VDD POWERSAVE PC5 PA14 C CLK 5 ~{CE} 37 PC6 PA15 50 ~{ENABLE_{SDCARD}} C 6 38 A8 L VSS STAT2 PC7 V SBU1 D I DAT0 7 39 PC8 PB0 26 J203 3 B8 SBU2 N H 8 40 27 ~{BUTTON_{BACK}}1 G S DAT1 10 51 PC9 PB1 28 2 DET_A PC10 PB2 A S 11 9 52 55 ~{BUTTON_{UP}} 3 SHIELD DET_B 53 PC11 PB3 56 4 s
in „Prüfung Schaltplan Power Profiler“ · Mikrocontroller und Digitale Elektronik ·
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not_fitted_schaltplan_uC.pdf
5 R 680p A / 100k 50V A A R3 1 EN D FB 4 FB 3 G GND R R H D1 GND GND A C3 C4 C5 C6 7P4541GN-Z C7 C8 C9 C10 TP5 C 50V 50V 50V 50V 6 8 7R 6.3V 6.3V 10u 10u J 4u7 1u 100n 1u R 6 R 100n 1u 6.3V 6.3V k +3V3 B 0 8 1 S T1 1 R NF C11 9 1 1 1 1 1 1 NF1 TP6 TP7 BSS138 TP8 9 0 R R R R R R R R R R P 1 TP11 T 6.3V
in „Übersprechen von einem uC-Pin zum Anderen“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
ds18b20.c
/60~120us DIR_1WIRE_OUT(); } return (x); } /* ·µ»ØÖµÊÇÎÂ¶È žñÊœs,s,s,s, s,b6,b5,b4, b3,b2,b1,b0, b-1,b-2,b-3,b-4 ת»»ÎªÊ®œøÖÆ ÎÂ¶È T = (int)val*10/16; ·ÅŽóÁË10±¶£¬žöλÊÇСÊý²¿·Ö¡£ */ void DS18B20_Convert(void) //ζÈת»» { init_1820(); //žŽÎ»18b20 write_1820(0xcc); // ·¢³öת»»ÃüÁî write_1820(0x44); } u16 DS18B20_Read(void) //¶ÁȡζÈÖµ { int temp; s16 Vorkommastelle; u8 Nachkommastelle; u16 res; init_1820(); write_1820(0xcc); //·¢³ö¶ÁÃüÁî write_1820(0xbe); //res=read_1820(); //¶ÁÊýŸÝ //res+=(u16)read_1820()<<8; Temperature[0]=read_1820(); Temperature
in „STM32 DS1820“ · Mikrocontroller und Digitale Elektronik ·
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Datei
processing.c
- Yq; XiXqYiYq += (Xi_Xq * Yi_Yq); } return XiXqYiYq / Xi_Xq2; } /* A=1,B=2,C=3,D=4,E=5,F=6,G=7,H=8,I=9,J=10 K=11 L=12 M=13 N=14 O=15 P=16 Q=17 R=18 S=19 T=20 U=21 V=22 W=23 X=24 Y=25 Z=26 */ // Die erste Null ist nur fuer Z Offset, da Z ab 1 anfaengt const char const falling[10] = {0,1,2,4,8,15,18,21,22,24
in „Organisation der Header und Includes“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Schaltplan mit STM32F103C8T6 Mikrocontroller
1 2 3 4 5 A B C D TLC2272ACD R46 10KO Motor + (3) X5 5V +5V S4 start KSC221G S5 KSC221G vor GND 3K9 390R=350R 20mA=10@500 Ohm(2) R30 15R 100K R52 +5V TLC2272ACD N1 5 7 GND X2 GND X2 T2CH1 PA0 PB1 16 3V3 +3V3 3V3 PA1 PB1 16 PB2 PA2 PB3 PA3 PB4 IC4 PB5 PA5 PB6 Sclk PB6 PA6 MosI PB7 PA7 T1CH1 PB8 PA8 PB9 PA9/Tx PB10 PA10/Rx PB11 PA11/CanRx PB12 PA12/CanTx PB13 PA13/SWDIO PB14 PA14/SWCLK PB15 PA15 STM32F103C8T6 3V3 3V3 3V3 R38 R39 R40 X8 br Index 3 T3CH2remap 5 ge B 2 RT A X2 GND +3V3 +5V +5V
in „LM358 gegen TS272“ · Analoge Elektronik und Schaltungstechnik · · Schaltpläne
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PDF
pinout_blackpill.pdf
1 1 A A P P K S STM32F103C8T6 BLACKPILL C M J J K O D C D 3 G W W 3 S S 37 34 5V 5V CK3 T1BKIN NSS2 SMBAI2 PB12 B12 25 5V 22 5V B11 PB11 SDA2 RX3 T2C4N CTS3 T1C1N SCK2 PB13 B13 26 5V 21 5V B10 PB10 SCL2 TX3 T2C3N RTS3
in „pinout blackpill STM32F103C8T6“ · Mikrocontroller und Digitale Elektronik ·
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PDF
project__2_.pdf
1 D/C 38 D/C 29 5 A 37 0402, NPO, +/- 2% 0402, NPO, +/- 2% 30 PA8 PH0-OSC_OUT 6 10K 36 WR S4 31 PA9 PH1-OSC_OUT 7 35 RD 32 PA10 NRST 8 Reset 34 D0 GND VDD 33 PA11 VSSA 9 33 D1 PA12 VDDA D2 A13 34 PA13 PA0-WKUP1 10 S2 32 D3 35 VSS_2 PA1 11 CS1 GND 31 D4 36 VDD_2 PA2
in „LCD + nRF24L01 = EMV/HF Probleme?“ · HF, Funk und Felder ·
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PDF
STM32F100RB_Reference_Card_Ausschnitt_I2C.pdf
diagram for master transmitter 7-bit master transmitter S Address A Data1 A Data2 A DataN A P ..... EV5 EV6 EV8_1 EV8 EV8 EV8 EV8_2 10-bit master transmitter S Header A Address A Data1 A DataN A P ..... EV5 EV9 EV6 EV8_1 EV8 EV8 EV8_2 Legend: S= Start, S =
in „I2C an STM32F100RB konfigurieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ledpixel.pdf
1 2 3 4 5 6 +5V +5V +5V IC1 9 W2 STM8S003F3P S9013/BC547 IR_IN D 3 8 RESET# 4 NRST D OSCIN/PA1 5 Q1 D U1A A V 6 IR_OUT N 3 + + A OSCOUT/PA2 W1 1 G V 1 IR_IN [SPI_NSS]TIM2_CH3/PA3 10 LED_B IR_OUT 2 2 - SWIM 18 - V PD1/SWIM 19 PD2/AIN3[TIM2
in „Projektidee RGB Pixel mit Touch“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STM32F407ZG-board-schematic.pdf
NA NA NA 33k 1 VDISPLAY R105 D3 - + 0 3 4 TCK 4 3 TRST 33k VDIGITAL R106 4 6 SPI1_SCKO 2.2R 1N5819S PWR_SEL 2 3.3V_E R 5 5 6 TDO/I2S3_CK 6 5 TDI/I2S3_WS SPI1_SCK 4 SCK 150R D +5V 7 8 TDI/I2S3_WS 8 7 TMS SOFT_SPI1_MOSI R96 2k SPI1_MISO 3 DIO T +5V_TRACE 9 10 1 Close 9 10 RST 10 9 TCK LCD_CS LCD_CS 5
in „8Mbit/s Manchester Code codieren und decodieren mit STM32F407“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STM32F407ZG-board-schematic.pdf
NA NA NA 33k 1 VDISPLAY R105 D3 - + 0 3 4 TCK 4 3 TRST 33k VDIGITAL R106 4 6 SPI1_SCKO 2.2R 1N5819S PWR_SEL 2 3.3V_E R 5 5 6 TDO/I2S3_CK 6 5 TDI/I2S3_WS SPI1_SCK 4 SCK 150R D +5V 7 8 TDI/I2S3_WS 8 7 TMS SOFT_SPI1_MOSI R96 2k SPI1_MISO 3 DIO T +5V_TRACE 9 10 1 Close 9 10 RST 10 9 TCK LCD_CS LCD_CS 5
in „Problem: SPI Remap am STM32F407ZG“ · Mikrocontroller und Digitale Elektronik ·
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Datei
STM32F10x.s
;/*****************************************************************************/ ;/* STM32F10x.s: Startup file for ST STM32F10x device series */ ;/*****************************************************************************/ ;/* <<< Use Configuration Wizard in Context Menu >>> */ ;/***
in „STM32 SysTick“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Controller.pdf
P 02 Battery C1 100N w _ L PIR502PIR602 PIR702 1 PCER201PIC1202oRP g g g g g 2M g W GND GND J4J P2 S S S S S T S S GND 8 7 6 5 4 3 2 1 0 9 8 7 +3.3V PIJ401DAT2 GND PIJ409 C151 CU2 U8P I7P U0P 45P 0P 03P 0P 01P 2P 0P 28P 20 CSC PIJ402CD/DAT3 GND PIJ4010 GND PCER501PIC1502 D S B B T B B B B B 1 1 R R
in „RTC Kapazitäten abgleichen, Genauigkeit erhöhen (STM32)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Visio-CPLD-IO.pdf
ADC1 8 – Channel Y1[0..7] Analog Muliplexer STM32 Cortex M3 ADC2 8 – Channel Y2[0..7] Analog Muliplexer F F F F D A M S S S … … C C M C 7 5 _ _ _ _ ] ] W O N N E E 1 3 A[0..2] Andere Busteilnehmer CPLD P P
in „Erzeugung von Tri - State Signalen?“ · FPGA, VHDL & Co. ·
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PDF
Schaltplan.pdf
1 2 3 4 L1 3.3V LED-RED 10uH C7 C8 C9 C10 C11 D1 100n 100n 100n 100n 10uF / 6.3V R6 4 6 8 A red LED-GREEN GND GND GND GND 1 2 3 4 9 GND 64kB Flash / 20kB RAM A 100R STM32F103xxT U3 yellow 3.3V +5V USB 3.3V A _ _ _ _ TxD und RxD remapped
in „STM32 und USB-Bulk Transfer“ · Mikrocontroller und Digitale Elektronik ·
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PDF
FR_Family_MB91F109.pdf
A 1 3 / A 1 / B B P B B E E C C / / / / / C P G G C G G 1 / H L 0 / / / / Q Q K K A / C / R / / R S 0 0 0 S T T C S T T E E C C P 2 2 1 1 0 0 0 R D C C R I I V X X V I I D D D D O S S S S S S S I 0 9 9 9 9 9 9 9 9 9 9 8 8 8 8 8 8 8 8 8 8 7 7 7 7 1 CS1L/PB5/DREQ2 1 75 AN3 CS1H/PB6/DACK2 2 74 AN2 DW1
in „Fujitsu MB91F011 internal flash read/write“ · Mikrocontroller und Digitale Elektronik ·
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Datei
stm32f4xx.h
<< 24)\ |(__STM32F4XX_STDPERIPH_VERSION_SUB1 << 16)\ |(__STM32F4XX_STDPERIPH_VERSION_SUB2 << 8)\ |(__STM32F4XX_STDPERIPH_VERSION_RC)) /** * @} */ /** @addtogroup Configuration_section_for_CMSIS * @{ */ /** * @brief
in „STM32F0 Discovery und UART1“ · Mikrocontroller und Digitale Elektronik ·
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Datei
stm32f4xx.h
<< 24)\ |(__STM32F4XX_STDPERIPH_VERSION_SUB1 << 16)\ |(__STM32F4XX_STDPERIPH_VERSION_SUB2 << 8)\ |(__STM32F4XX_STDPERIPH_VERSION_RC)) /** * @} */ /** @addtogroup Configuration_section_for_CMSIS * @{ */ /** * @brief
in „STM32F4 SPI Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
FEZ_Cerb40.pdf
PC6 38 PC7/UART6_RX NRST PC7 39 60 PC8 40 PC8/SD_D0 LOADER BOOT0 PC9 PC9/SD_D1 C PC10 51 PC10/SD_D2 K PC11 52 PC11/SD_D3 R 1 31 VCAP_1 PC12 53 PC12/SD_CLK PC13 2 PC13 PC14 3 PC14/XO32 47 VCAP_2 PC15 4 PC15/XI32 PD2 54 PD2/SD_CMD C8 C9 S S S 2.2uF 2.2uF V V V Q2 GND STM32F40X 1 1 6 32k VBUS GND C21 C22 D 18pF USB_DP D+ 18pF USB_DM D- B VBUS VBUS S GND GND U GNDX4 1M R7 C11 4700pF,250V Open Source Hardwar GND Licensed under Creative Commons
in „Störsignal auf Spannungsversorgung“ · Mikrocontroller und Digitale Elektronik ·
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dogm_spi_3.3V.c
NVIC_Configuration(void); void sendDataOut(char flag,char data) { /* Select Display */ GPIOA->BRR = GPIO_Pin_8; if (flag) // 1 -> data GPIOA->BSRR = GPIO_Pin_3; else // 0 -> command GPIOA->BRR = GPIO_Pin_3; /* Send SPI1 data */ SPI_I2S_SendData(SPI1,data ); // wait until transmission register is empty while (SPI_I2S_GetFlagStatus(SPI1, SPI_I2S_FLAG_TXE) == RESET); // becomes 1 as soon as the register is empty // wait until transmission is finalized: while (SPI_I2S_GetFlagStatus(SPI1, SPI_I2S_FLAG_BSY)); // becomes
in „EA DOGM162 mit STM32 reagiert nicht mit SPI“ · Mikrocontroller und Digitale Elektronik ·
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canbusboard.pdf
16 E0_STEP_INT 7 0 1 A 15 SPREAD T A A U VCC_IO C9 U 1 2 G E _ D GND 100nF V S S I D L D N C12 5 M M D I C P G 100nF +3.3V 8 9 0 1 2 3 4 9 1 1 1 1 1 2 R18 GND 20K C11 R21 R22 100nF 20K 20K S E0_EN_INT _ E0_EN R E0_STEP_INT A E0_STEP _ E0_DIR E0_DIR_INT E GND R17 3 x 100 C C Sheet
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ureflow.pdf
V 3 RXD C6 2 CS 6 CS +3V3 +3V3 VBUS B9 RXD 10nF T- B7 1 SO 7 SO D- Q4 D-A7 6 UD- ~{CTS}9 2 B6 5 10 S8550 R15 R20 D+ A6 15 UD+ ~{DSR}11 3 1 SW2 SW4 _ D+ TNOW ~{RI} GND 10K 10K B CC1 A5 ~{DCD}12 1 4 BTN_BACK 1 4 BTN_OK U B5 13RESET CC2 ~{DTR} BOOT0 2 3 2 3 SBU1 A8 ~{RTS}14 GND B8 D 7 SBU2 G ~{RST} R7
in „Feedback Schaltplan STM32G0“ · Mikrocontroller und Digitale Elektronik ·
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media32.pdf
3 4 5 6 7 8 A A VCC 8 7 6 5 R8R7A615 CRA11 10k DSDS SIEMENS S65 Display Array nRESETP I D S 0 0SP1 2 3 44 nCSPIDS01 RSPIDS02 DATA P I D S 0 3 U1U1 CLK P I D S 0 4 P I U 1PA0-WKUP PB0P I U 1 0 2 6 VCC UA1A1 nCS_AudioP
in „MP3 Player mit Clickwheel und S65“ · Mikrocontroller und Digitale Elektronik ·
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Visio-CPLD-IO.pdf
ADC1 8 – Channel Y1[0..7] Analog Muliplexer STM32 Cortex M3 ADC2 8 – Channel Y2[0..7] Analog Muliplexer F F F F D A M S S S … … C C M C 7 5 _ _ _ _ ] ] W O N N E E 1 3 A[0..2] CPLD MAX V Family Features CS2