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siggen1-F_Fab.pdf
L W 1 P y 2 C _ C29 2 3 R 0R 0 100nF S R_ 0 1 0r 2 n 3 111 0pF_C11R84 U 10M90 R R W 1 J 0C 3 S1M32F103C8106nF R k 10k k1S 1 6 0 0 0 0R/ 2 R83 1 3 L14 1R 0 r 0 8 4 4 4 4 V0CpFC1052 0 F0 R100 Bead 600R 1 t V C R R0C0C0C0C5BT3904 R R00Q3 0R 0nC1 1k Conn_02x03_Odd_Even e 5 1F F F F / Q2 11 1 10VC 1k02 R
in „KiCAD: durchsuchbarer Bestück-Plan als pdf?“ · Platinen ·
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MB1075.pdf
BAT60JFILM D R 3V 4 4 4 4 4 4 4 4 4 3 3 3 1 PICN201 PIR14PIR1402TCKTC PISB40PISB402 PISB30PISB302 3V STM32F103C8T6 2 PICN202 SB4B4 SB3B3 STM_JTCKCK SWCLK _ S B B T B B B SD T L 3 PICN204 PISSB6B6SB602 PISB5B5ISB502 C171 I2 C2CO16 V V P P O P P PN / 5 W 5 PICN205 PIR15PIR1502TMSTMS PISB80PISB802 PISB70PISB702
in „.net auf STM32F429ZI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
media32.pdf
GND PISS100MOUNT VCC CP11 VCC 010P3P04 VCC P I U 1 VDDA3 VSSAP I U 1 0GND2 3M Micro SD 1 2 3 4 STM32F103RET PIP1022 1PIP101 TRST PIP1044 3PIP103 TDII VCC VCC VCC VCC VCC VCC PIP1066 5PIP105 TMS PIP1088 7PIP107 NLTC I2 K2 82 02 2 P2 PIP10120 9PIP1011 CK6K6 CK7K7 CK8K8 COK99 CK1010 COK111 CW_PLAY Unknown
in „MP3 Player mit Clickwheel und S65“ · Mikrocontroller und Digitale Elektronik ·
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PDF
media32.pdf
SGND0 6 10k GND PISS100MOUNT Array VCC P I U 1VDDA 3 VSSAP I U 1 0GND2 VCC P1P1 VCC 1 2 3 44 STM32F103RET 3M Micro SD PIP1022 1 PIP101 TRST VCC PIP1044 3 PIP103 TDI VCC VCC VCC VCC VCC VCC PIP1066 5 PIP105 TMS PIP1088 7 PIP107 TCK P2 72 I2 K2 2 C2 I8R7A605 PIP10110 9 PIP109 CK6K6 CK7K7 CK8K8 COK99 CK1010
in „MP3 Player mit Clickwheel und S65“ · Mikrocontroller und Digitale Elektronik ·
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Schaltplan.pdf
, C6 & C7 100nF 312-1469 1 R 2 C2 & C5 10nF 312-1431 1 tipo de puente de resistencias. C3 & C4 10μF 103-957 1 C5, C6 e C7 servono per ridurre il disturbo e rallentare in modo T1 BD135 299-323 1 Conjunto considerevole la risposta di uscita. In alcune applicazioni è meglio T2 BD136 299-339 1 En la tarjeta
in „DMS-Verstärker mit RS232 verbinden“ · Mikrocontroller und Digitale Elektronik ·
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vestel_17ips11-r2.pdf
RL207 4 6 C 4 1 C D111 +400V SB5100 6 7 V 8 V 0 10R D106 BA159 4 9 12V_AC D117 1 m 1 6 7 6 1 1 1 F103 R202 6 R 9 R 8 0 1N4148 PIN_9 C 2 1 2 C C 10R 1 0 1 0 1 1 Q105 C103 5 SB5100 26R R201 S 8 F 8 F S R157 FQPF9N50C 47p D108 10R C116 10R 2kV 8 24V_AC R204 GATE R139 SB5100 24V_AC 10R 275V 150n 10R 0 7
in „LCD-Fernseher Hintergrundbeleuchtung defekt?“ · Mikrocontroller und Digitale Elektronik ·
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stm32_magic_eye2.pdf
XTAL1 5 46 SWDIO PD0 PA13 XTAL2 6 PD1 PA14 49 SWCLK C18 100n +5V +5VA 54 50 10µ C23 L2 PD2 PA15 STM32F103RCTx 47µ 8 26 LED0 1 2 9 PC0 PB0 27 LED1 PC1 PB1 GNDD GNDD 4 3 U7 H10 H11 H12 H13 H14 H15 H16 H17 10 PC2 PB2 28 FMT 6 11 55 BUTTON_0 SCK D A 1 5 C14 C15 C16 PC3 PB3 7 LRCK V C VRef 1 C 100µ 10µ 100n
in „STM32F103 und I2S Probleme“ · Mikrocontroller und Digitale Elektronik ·
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4560.pdf
7518 A808 A908 7.6 mm Common Cathode ± 1. Overflow D F101 10 mm Common Anode Right Hand Decimal E F103 10 mm Common Cathode Right Hand Decimal F F107 10 mm Common Anode ± 1. Overflow G F108 10 mm Common Cathode ± 1. Overflow H G101 10 mm Two Digit Common Anode Right Hand Decimal X G103 10 mm Two Digit
in „7 Segment LED datenblatt suche für EAGLE“ · Mikrocontroller und Digitale Elektronik ·
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Datei
i2c.c
reading * and writing described in the reference manual (RM0008). * * Device used: Bluepill (STM32F103C8) ****************************************************************************** * * Copyright (C) 2021 Marco, Roldan L. * * This program is free software: you can redistribute it and/or modify * it
in „STM32F1 Probleme mit Frings I2C-Bus Routine“ · Mikrocontroller und Digitale Elektronik ·
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Datei
USB.c
/* ST STM32F103ZET6: USB als COM Port betreiben */ #include "usb.h" /* die Transfer-Puffer für zeichenweises In und Out über den USB */ #define txLen 256 char UsbTxBuf[txLen]; int txr, txw; #define rxLen 256 char UsbRxBuf
in „Frage an W.S. wegen USB CDC Implementierung STM32F103“ · Mikrocontroller und Digitale Elektronik ·
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5_-_STM32F_Connectivity_Line.pdf
Portfolio Introduction to Cortex-M Core STM32 General Purpose Lines Product-Line Overview (F100/F101/F103) Walk through the main peripherals ST Standard Peripheral Library Live demonstration of the STM32 Value Discovery Kit STM32 Low-Power Line Product-Line Overview (L15x) Low-Power modes and consumption
in „STM32: Timer funktioniert nicht“ · Mikrocontroller und Digitale Elektronik ·
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DSO203.pdf
channel digital Oscilloscope for common electronic engineering tasks. It's based on ARM cortex M3 (STM32F103VCT6) 32 bits platform, providing 72MS/s sampling rate with integrated FPGA and high speed ADC. Internal 2MB USB disk could be used to store waveform, user application and upgrade firmware. Due to the
in „Welches aktuelle DSO ist gut ?“ · Mikrocontroller und Digitale Elektronik ·
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en.DM00428288.pdf
TVS/ESD/EMI ST USBLC6-2SC6 SOT23-6L LD3985M33R 74 1 U3 SOT23-5 CONVERTER ST LD3985M33R 75 1 U4 STM32F103CB MCU ST STM32F103CBT6 T6 LQFP48 8MHz NX3225GD 8MHz EXS00A- 76 1 X1 L3.2_W2.5 QUARTZ NDK CG04874 14/20 DocID030941 Rev 1 UM2278 Getting started 2.2.8 Schematic diagrams Figure 3: STEVAL-SPIN3202 schematic
in „Problem mit ST-Board zur BLDC-Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
debounce.c
stm32l1xx.h> #else #error Device not specified. #endif #elif defined(USE_HAL_DRIVER) #if defined(STM32F103xB) #include "stm32f1xx_hal.h" #elif defined(STM32L151xB) #include "stm32l1xx_hal.h" #else #error Device not specified. #endif #else #include <avr/io.h> // for PORT/ PIN access #include <avr/interrupt.h
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STM32_DS1307.pdf
left side: GND, SDA, SCL, VCC (U = 3,3V). For I2C and USB communication we use a Black Pill (STM32F103C8T6) We only write and read the seven yellow timekeeper registers 0x00 up to 0x06. “When you power up the module the clock halt (CH) bit in the seconds register will be set to a 1.” That means, that
in „I2C STM32F103“ · Mikrocontroller und Digitale Elektronik ·
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EP2C5T144_CN.pdf
VREFB3N0 99 PIN99 MSEL1 C9 C8 IO, LVDS30n, DQ1R2 100 PIN100 1 0.1uF IO, LVDS30p, DQ1R1 101 PIN101 GND 22uF 103 PIN103 MSEL0 IO, PLL2_OUTp, DQ1R0 104 PIN104 P6 VCC3.3 IO, PLL2_OUTn R111K TCK EP2C5T144C8 TDO 1 2 GND 3 4 VCC3.3 TMS 5 6 GND R12 7 8 TDI 9 10 Program Mode Config 1K GND JTAG U2G GND 6 98 19 GND GND
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EP2C5T144_CN.pdf
VREFB3N0 99 PIN99 MSEL1 C9 C8 IO, LVDS30n, DQ1R2 100 PIN100 1 0.1uF IO, LVDS30p, DQ1R1 101 PIN101 GND 22uF 103 PIN103 MSEL0 IO, PLL2_OUTp, DQ1R0 104 PIN104 P6 VCC3.3 IO, PLL2_OUTn R111K TCK EP2C5T144C8 TDO 1 2 GND 3 4 VCC3.3 TMS 5 6 GND R12 7 8 TDI 9 10 Program Mode Config 1K GND JTAG U2G GND 6 98 19 GND GND
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Datei
arm_error.txt
achieve this. * this procedure is executed in System Mode */ void Init_BSS_DATA( void ) { c8: e59f103c ldr r1, [pc, #60] ; 10c <.text+0x10c> cc: e59f203c ldr r2, [pc, #60] ; 110 <.text+0x110> d0: ea000001 b dc <Init_BSS_DATA+0x14> unsigned int *dp, *sp; /* load the .data section into ram: */ dp = &_
in „AT91SAM7S: einheitlicher Startup-Code“ · Mikrocontroller und Digitale Elektronik ·
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Datei
simple_server.c
fill_tcp_data_p(buf, plen, "<h1> STM32 WEBSERVER </h1>"); plen = fill_tcp_data_p(buf, plen, "<h2> STM32F103ZET6 </h2>"); plen = fill_tcp_data_p(buf, plen, "<table border>" ); plen = fill_tcp_data_p(buf, plen, "<thead>"); plen = fill_tcp_data_p(buf, plen, "<tr>"); plen = fill_tcp_data_p(buf, plen, "<thead>
in „Webpage Webserver“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Stellwerk0_B.cpp
--------------------------------------Testweise auskommentiert #include <assert.h> #include "stm32f103.h" // Bei selbst erstellten Bibliotheken der name immer in Anfuehrungszeichen!! Nicht in <> kleiner als Zeichen! #include <LiquidCrystal.h> // EIngaenge // Taster const int TastStellwerk0Blattern =
in „CAN Variable“ · Mikrocontroller und Digitale Elektronik ·
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Datei
readme.txt
SWIM anschliessen und in das Verzeichnis ./toolsource/stm8_bootflashv2 wechseln. Dort ist ein make f103 einzugeben um den Bootloader zu erstellen. Ein make flash103 installiert den Bootloader. Fortan ist der STM8 ueber diesen programmierbar und ein ST-Link wird dann nicht mehr benoetigt. Hierist anzumerken
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UART-Command-Introduction-EN-1.pdf
end with a newline symbol. semicolon symbol ; semicolon symbol \r\n (5)Programming examples: STM32F103RBT6: void uart_init(u32 bound){ // GPIO_InitTypeDef GPIO_InitStructure; USART_InitTypeDef USART_InitStructure; NVIC_InitTypeDef NVIC_InitStructure; RCC_APB2PeriphClockCmd(RCC_APB2Periph_USART1|RCC_APB2Periph_GPIOA
in „1.8" 128*160 HMI Intelligent Smart UART Serial TFT Display von Spotpear.“ · Mikrocontroller und Digitale Elektronik ·
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Datei
usb.c
define shift 0 #define memwidth word /* For devices with 1 x 16 bits / word access schema (e.g. STM32F103xx, STM32F303xB and xC) */ // #define shift 1 // #define memwidth dword // Enable trace messages #define ENABLE_TRACING 0 #if ENABLE_TRACING #include <stdio.h> #define trace(msg) ITM_SendString(msg)
in „An W.S.: Läuft deine USB Implementierung auch auf STM32F303?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Bulb_Ohm.pdf
DC-Waveform Generator for Higher Current and Lower Frequencies In this project we use a STM32F103C8 – mounted on a Black Pill – to control via I2C a 12-Bit Digital-to-Analog Converter (DAC) to generate signals like e.g. Sinus-, Triangle-, Rectangle-signals, in a voltage range of e.g. U0=0V up to
in „I2C STM32F103“ · Mikrocontroller und Digitale Elektronik ·
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Datei
simple_server.c
fill_tcp_data_p(buf, plen, "<h1> STM32 WEBSERVER </h1>"); plen = fill_tcp_data_p(buf, plen, "<h2> STM32F103ZET6 </h2>"); plen = fill_tcp_data_p(buf, plen, "<table border>" ); plen = fill_tcp_data_p(buf, plen, "<thead>"); plen = fill_tcp_data_p(buf, plen, "<tr>"); plen = fill_tcp_data_p(buf, plen, "<thead>
in „Webpage Webserver“ · Mikrocontroller und Digitale Elektronik ·
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Datei
simple_server.c
#66FFFF'>")); //Hintergrundfarbe plen = fill_tcp_data_p(buf, plen, PSTR("<a style=color:red><h1>STM32F103 WEBSERVER<h1></a>")); /* */ plen = fill_tcp_data_p(buf, plen, "<table border>" ); plen = fill_tcp_data_p(buf, plen, "<thead>"); plen = fill_tcp_data_p(buf, plen, "<tr>"); plen = fill_tcp_data_p(buf,
in „Webpage Webserver“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS203V2.6_SCH.pdf
O_GBIN 13 C69 105 100uH 3V6 1V2 XC6206P122 Vusb 83 PD2 PB0 35 63 I/O_GBIN I/O 12 D+ 71 PA12_D+ STM32F103VCT6 PA2_T23 25 ADC_EN 72 I/O I/O 10 C70 105 D- 70 PA11_D- PA3 26 71 I/O I/O 2 nPD E S C S 2V8 2 30 69 73 C25 105 L S I E M M 0 Ax5 4 PE3 PA5 31 SCK 68 I/O I/O 76 L6 S R M E U13 Z 1 2 3 4 5 7 6 9 1 8
in „Oszilloskop aus STM32 und FPGA“ · Mikrocontroller und Digitale Elektronik ·
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PDF
hdsp_a103.pdf
7518 A808 A908 7.6 mm Common Cathode ±1. Overflow D F101 10 mm Common Anode Right Hand Decimal E F103 10 mm Common Cathode Right Hand Decimal F F107 10 mm Common Anode ±1. Overflow G F108 10 mm Common Cathode ±1. Overflow H G101 10 mm Two Digit Common Anode Right Hand Decimal X G103 10 mm Two Digit
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Datei
simple_server_10.c
#66FFFF'>")); //Hintergrundfarbe plen = fill_tcp_data_p(buf, plen, PSTR("<a style=color:red><h1>STM32F103 WEBSERVER<h1></a>")); plen = fill_tcp_data_p(buf, plen, "<table border>" ); plen = fill_tcp_data_p(buf, plen, "<thead>"); plen = fill_tcp_data_p(buf, plen, "<tr>"); plen = fill_tcp_data_p(buf, plen,
in „Webpage Webserver“ · Mikrocontroller und Digitale Elektronik ·
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PDF
hy-stm32_schematic.pdf
PD2 1 1 2 2 2 B GND GND 4K7 RST GND GND GND GND GND Date: 3-Apr-2011 Sheet of File: F:\PCB\HY-STM32F103_64P.ddb Drawn By:
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core.pdf
SWDIO_PB14 27 PB14 A PA14 37SWCLK GND +3V3 28 S S S S 38 PB15 V V V V PA15 VCC3 3 5 7 2 3 4 8 STM32F103C8Tx GND D D GND GNGDNDNDND E E (C) 2017 Piotr Esden-tempski <piotr@esden.net> (C) 2017 1BitSquared <info@1bitsquared.com> CC-BY-SA V4.0 1BitSquared Sheet: /ST-Link/ File: stlink.sch Title: FX2Grok Flat
in „Review Eierlegende Wollmilchsau“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Arcam-FMJ-P7.pdf
BUSSMANN S504 T315mA 20MM F102-1 8S004 FUSEHOLDER 20MM PCB F102-2 F022 FUSEHOLDER COVER TO SUIT 8S004 F103 C12406 FUSE BUSSMANN S504 T4A 20MM F103-1 8S004 FUSEHOLDER 20MM PCB F103-2 F022 FUSEHOLDER COVER TO SUIT 8S004 F104 C12406 FUSE BUSSMANN S504 T4A 20MM F104-1 8S004 FUSEHOLDER 20MM PCB F104-2 F022 FUSEHOLDER
in „Bandbreite von analogen Audioschaltungen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Arcam-FMJ-P7.pdf
BUSSMANN S504 T315mA 20MM F102-1 8S004 FUSEHOLDER 20MM PCB F102-2 F022 FUSEHOLDER COVER TO SUIT 8S004 F103 C12406 FUSE BUSSMANN S504 T4A 20MM F103-1 8S004 FUSEHOLDER 20MM PCB F103-2 F022 FUSEHOLDER COVER TO SUIT 8S004 F104 C12406 FUSE BUSSMANN S504 T4A 20MM F104-1 8S004 FUSEHOLDER 20MM PCB F104-2 F022 FUSEHOLDER
in „Bester Audio OPV“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
simple_server.c
= fill_tcp_data_p(buf, plen, "<html><head>\r\n"); plen = fill_tcp_data_p(buf, plen, "<title>STM32F103ZET6 HomeControl</title>"); plen = fill_tcp_data_p(buf, plen, "</head>\r\n"); plen = fill_tcp_data_p(buf, plen, "<body bgcolor='#A9ED61'>\r\n"); //Hintergrundfarbe plen = fill_tcp_data_p(buf, plen, "
in „Webpage Webserver“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MV.pdf
point for capacitance less than100mF (e.g. R10 =.10mF; 1R0 =1.0mF; 10R =10mF; 101=100mF; 102 =1,000mF; 103 =10,000mF). Lead Configuration: VC = Vertical Chip Lead Terminals. DC Rated Voltage: Expressed in Volts (e.g. 50 = 50WVDC). Series Name: Indicates Basic Capacitor Design. 28 UNITED CHEMI-CON, INC.
in „Identifizierung von SMD Kondensator“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
robot-mit-cplusplus-anteilen-noheap-trotzdem-grosz.objdump.txt
#72 ; 0x48 8002a7a: d108 bne.n 8002a8e <GPIO_Init+0x192> 8002a7c: 69bb ldr r3, [r7, #24] 8002a7e: f103 0308 add.w r3, r3, #8 8002a82: f04f 0201 mov.w r2, #1 8002a86: fa02 f203 lsl.w r2, r2, r3 8002a8a: 687b ldr r3, [r7, #4] 8002a8c: 611a str r2, [r3, #16] 8002a8e: 69bb ldr r3, [r7, #24] 8002a90: f103
in „ROM-Auslastung von C++-Programm reduzieren“ · Mikrocontroller und Digitale Elektronik ·
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Datei
simple_server.c
fill_tcp_data(buf, plen, password); plen = fill_tcp_data_p(buf, plen, PSTR("<a style=color:red><h1>STM32F103 WEBSERVER<h1></a>")); /**/ //LED 1 AN if (st[0] == 0) { plen = fill_tcp_data_p(buf, 0, PSTR("HTTP/1.0 200 OK\r\nContent-Type: text/html\r\nPragma: no-cache\r\n\r\n")); plen = fill_tcp_data_p(buf, plen
in „Webpage Webserver“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ili9341Driver.c
License: None * * ATTENTION!: This Display Driver is currently designed and * tested under the STM32F103C8T6 Processor and the SPI2 * Peripheral which is clocked at 36MHz so a max SPI SCK * Speed from 18 MHz. If you use this on a other SPI Peripheral * Bus then you have might to change the __NOP() Instuctions
in „ILI9486 8-Bit Parallel Bus deutlich langsamer als SPI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
spwf01.pdf
functionalities via the UART serial port. Figure 1. Block diagram 3.3 V Supply STM32 CW1100 3 UART/ F103 b/g/n Filt SPI/I2C Integrated er PA GPIOs KHz MHz Flash 1MB SPWF01Sx AM17476v1 2/16 DocID025635 Rev 2 SPWF01SA, SPWF01SC General electrical specifications 2 General electrical specifications Table 1
in „Wlan2Serial Modul für 5 euro“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Schaltbild_v2_2.pdf
R316 22 8 SCK 2 PD1−OSC_OUT PA10 RFSW−RXSYNTH L L 0402 1 3 2 RF3 RF4 10 470nC327 R NRST 7 NRST STM32F103C8/CB LQFP48 PA9 30 RFSW−RECV 0603 R318 22 9 SDI (MOSI) 7 6 7 6 R12 50 3 MXD8641 9 6 5 D 1 e 2 0 D 1 e 2 0 RF1 RF2 0 8 VSSA PA8 29 RFSW−REFL 0 3 0402 L d 3 L d 3 0402 4 VDD NC 8 0 0 R R LCD−DC 10 D/C
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discoveryf4.pdf
SB13 and SB14 are closed and R24, R25 and R68 are removed. ● MCO from ST-LINK. From MCO of the STM32F103. This frequency cannot be changed, it is fixed at 8 MHz and connected to PH0-OSC_IN of the STM32F407VGT6. Configuration needed: – SB13, SB14 OPEN – R25(aremoved (a) – R68 soldered ● Oscillator onboard
in „Hilfe bei Programmierung STM32F407VG bei TIM1“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Schaltplan.pdf
100 CHARGE 12 C33 L8 C89 0.47uH 330 7P TRANS2 VRAD2 1 C17 BATT 104 C193 473 C36 7.5T 7P C49 C42 220uF 103 Q10 560 102 11 102 82P 9018 VAM R122100 LIN 10 R7 C202 5P L7 C398P CF4 C72 R28 T5 R IN 9 47 102 L9 7.5T C5115P R136330 R25 10.7S 104 100 C35 C58 C124 EXTIN 8 R19 R8 R38 7.5T 220K C76 C77 R60 C206 R44
in „LCD Anzeige-Inhalt speichern.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STM_DEV.pdf
PC9 PISS6016 PD4 PISS40116 PISS50116 PIUC1022 PIUC1019 VCC VCC VDDA VSSA GND SS66 SS4 SS55 D STM32F103VE I2 I02 P02 P02 P2 P02 92 D COCK COCK COCK COCK COCK OCK OCK9 I1100n I01n 10P01100nP010n 1P1n 100P01 91 TitleCPU Master Size:A4 Number: 2. Revision1.0 GND Date: 16.01.2010 Time: 17:31:15 Sheet 2 of
in „STM32 Development Board“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ws2812b.c
www.martinhubacek.cz @hubmartin Licence: MIT License original CPU STM32F302xx @64MHz adapted to STM32F103C8 @72MHz */ #include <string.h> //#include "stm32f3xx_hal.h" #include "stm32f1xx_hal.h" #include "ws2812b.h" extern WS2812_Struct ws2812b; // Define source arrays for my DMAs uint32_t WS2812_IO_High
in „WS2812B mit Lib von Martin Hubáček auf F103“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HY-SmartSTM32_SCH.pdf
3 11 VDD_5 VSS_5 10 22 19 C25 Y2 C26 VDDA 21 VDDA VSSA 20 10P 32.768K 10P VREF+ VREF- VREF+ STM32F103VCT6 3V3 L1 VDDA 3V3 L2 VREF+ 3V3 R40 10uH 10uH 3V3 S2 510R C11 C27 C12 C28 1 4 BOOT0 BOOT0 A C6 C7 C8 C9 C10 2 3 KEYB BOOT1 A 104 104 104 104 104 104 106 104 106 BOOT R41 Title 510R Multi Media Development
in „STM32 can Message“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STM_DEV.pdf
PISS1401 PILF101PILF102 C2 PIUC1022 VDDA VSSA PIUC1019 GND D Stiftleiste 2pol BLM31A601S COK3 STM32F103VE K2 K2 62 P2 I02 I2 SS66 SS4 SS55 D 100n COCK COCK COCK COCK COCK COCK9 C1 100n 100n 100n 100n 100n 100n Title CPU Master K1 K1 61 P1 I01 I1 Size: A4 Number:2. Revision1.0 GND GND Date: 24.01.2010
in „STM32 Development Board“ · Mikrocontroller und Digitale Elektronik ·
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Datei
sdio.c
/* SD Karten Interface */ #include "STM32F103.h" #include "StdTypes.h" #include "startup.h" #include "sdio.h" #include "systick.h" #include "events.h" #include "gio.h" #include "conv.h" /* Umdefinitionen NXP-->ST */ #define MCI_POWER SDIO_POWER
in „STM32F103: Problem mit ChanFat und SD karte“ · Mikrocontroller und Digitale Elektronik ·
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Datei
nrf24l01.c
/* ******************************************** STM32F103 Mini Board Modul : NRF24L01 Routinen für dasNRF24L01 Funkmodul Autor : Christian Julius ******************************************** SPI2: MOSI = PB15 MISO = PB14 SCLK = PB13 CE = PB11 CSN = PB12 IRQ
in „NRF24L01+ auf STM32F103: Ich weiss nicht mehr weiter :-(“ · Mikrocontroller und Digitale Elektronik ·
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Datei
nrf24l01_drv.c
/* ******************************************** STM32F103 Mini Board Modul : NRF24L01 Routinen für dasNRF24L01 Funkmodul Autor : Christian Julius ******************************************** SPI2: MOSI = PB15 MISO = PB14 SCLK = PB13 CE = PB11 CSN = PB12 IRQ
in „[STM32F4xx] NRF24L01+ Funkmodul Source Code“ · Projekte & Code ·
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Datei
nrf24l01_drv.c
/* ******************************************** STM32F103 Mini Board Modul : NRF24L01 Routinen für dasNRF24L01 Funkmodul Autor : Christian Julius ******************************************** SPI2: MOSI = PB15 MISO = PB14 SCLK = PB13 CE = PB11 CSN = PB12 IRQ
in „Basteltip: STM32F103 DIP40 Board“ · Mikrocontroller und Digitale Elektronik ·