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PDF
Nucleo_F103RB_hardware_preparation.pdf
V1.1 - 28.01.2015 - by Matthias Diro Get the Nucleo-F103RB board working on Arduino IDE 1.5x/1.6x (Hardware setup) Please read the Nucleo manual first (UM1724 – User Manual) Hardware modifications: There are a few things we need to change to get the board
in „Nucleo STM32-F103RB nun wirklich "Arduino kompatibel"“ · Mikrocontroller und Digitale Elektronik ·
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PDF
nucleo_F103RB_pinout_sheet.pdf
Nucleo-F103RB Pinout Sheet for Arduino IDE left right Arduino Port Pin Pin Port Arduino Arduino Port Pin Pin Port Arduino TX2 D22 PC10 1 2 PC11 D30 RX2 D32 PC9 1 2 PC8 D33 D23 PC12 3 4 PD2 D31 T4 D15 PB8 3 4 PC6
in „Nucleo STM32-F103RB nun wirklich "Arduino kompatibel"“ · Mikrocontroller und Digitale Elektronik ·
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Datei
stm32-families.txt
STM32F101T(8-B)Ux DIE410 STM32F101V(8-B)Tx DIE410 STM32F102C(8-B)Tx DIE410 STM32F102R(8-B)Tx DIE410 STM32F103C(8-B)Tx DIE410 STM32F103CBUx DIE410 STM32F103R(8-B)Hx DIE410 STM32F103R(8-B)Tx DIE410 STM32F103T(8-B)Ux DIE410 STM32F103V(8-B)Hx DIE410 STM32F103V(8-B)Tx DIE410 STM32F103VBIx DIE411 STM32F205R(B-C-E-F-G
in „Controller mit größerem Flash als angegeben?“ · Mikrocontroller und Digitale Elektronik ·
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STM32F103CBT6 Mikrocontroller auf Leiterplatte
ST STM32F103CBT6 99T7R 9U 2 MYS 423 RR
in „neuere BluePill (WeAct) I2C1 will nicht“ · Mikrocontroller und Digitale Elektronik · · Platinenfotos
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MINI-STM32-Schematic-Diagram.pdf
3V3 1 PIP601 BOOT0 C0 P0 30 GND COP7 3V3 C2 0.1uFP0 0.1uF 320.1uF Title D 3PIP703 R161 BOOT1 STM32F103C-MINNI D 1PIP701 PI10K0PIR1602 Size Number Revision BOOT1 GND A4 V1.1 GND Date: 2013-2-27 Sheet of File: D:\PCB \..\STM32.SchDoc Drawn By: HKL 1 2 3 4 Bill of Materials STM32F103C-MINNI Source Data
in „Löttemperatur STM32“ · Mikrocontroller und Digitale Elektronik ·
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Datei
readme.txt
64 and 128 Kbytes. - Medium-density devices are STM32F101xx, STM32F102xx and STM32F103xx microcontrollers where the Flash memory density ranges between 64 and 128 Kbytes. - High-density Value line devices are STM32F100xx microcontrollers where the Flash memory density ranges between 256 and 512 Kbytes. - High-density devices are STM32F101xx and STM32F103xx microcontrollers where the Flash memory density ranges between 256 and 512 Kbytes. - XL-density devices are STM32F101xx and STM32F103xx microcontrollers where the Flash memory density ranges between
in „Timer/Counter STM32“ · Mikrocontroller und Digitale Elektronik ·
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Datei
STM32F10x_StdPeriph_Examples-RTC-LSI_Calib.txt
64 and 128 Kbytes. - Medium-density devices are STM32F101xx, STM32F102xx and STM32F103xx microcontrollers where the Flash memory density ranges between 64 and 128 Kbytes. - High-density Value line devices are STM32F100xx microcontrollers where the Flash memory density ranges between 256 and 512 Kbytes. - High-density devices are STM32F101xx and STM32F103xx microcontrollers where the Flash memory density ranges between 256 and 512 Kbytes. - XL-density devices are STM32F101xx and STM32F103xx microcontrollers where the Flash memory density ranges between
in „STM und sein Beispiel zur Callibrierung des RTC's“ · Mikrocontroller und Digitale Elektronik ·
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Datei
stm32f103r8_rom.ld
/* Linker script for lm3s6730 * * Version:Sourcery G++ 4.2-62 * BugURL:https://support.codesourcery.com/GNUToolchain/ * * Copyright 2007 CodeSourcery. * * The authors hereby grant permission to use, copy, modify, distribute, * and license this software and its documentation for any purpose, provided * that existing copyright notices are retained in all copies and that this * notice is included verbatim in any distributions. No written agreement, * license, or royalty fee is required for any of the authorized uses. * Modifications to this software may be copyrighted by their authors * and need
in „Bibliotheken nur teilweise Linken“ · Mikrocontroller und Digitale Elektronik ·
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Datei
stm32f103c8_flash.ld
--------------------------------------- * Linker script for running in internal FLASH on the STM32F103C8 *----------------------------------------------------------------------------*/ OUTPUT_FORMAT("elf32-littlearm", "elf32-littlearm", "elf32-littlearm") OUTPUT_ARCH(arm) SEARCH_DIR(.) /* Memory Spaces
in „uint64_t auf STM32F103“ · Mikrocontroller und Digitale Elektronik ·
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Datei
STM32F103X6_FLASH.ld
* ***************************************************************************** ** ** File : STM32F103X6_FLASH.ld ** ** Abstract : Linker script for STM32F103x6 Device with ** 32KByte FLASH, 10KByte RAM ** ** Set heap size, stack size and stack location according ** to application requirements. ** **
in „Falsche Ausgabe von arm-none-eabi-size“ · Mikrocontroller und Digitale Elektronik ·
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Serieller Terminal-Screenshot mit UDP-Nachrichten
Serial-COM9 (921600) - CRT File Edit View Options Transfer Script Tools Help sending UDP message #0 to 192.168.1.30 port 100 Transmit ok. Time for UDP packet 1024 bytes: 397 usec speed: 2579 kbytes/sec sending UDP message #1 to 192.168.1.30 port 100 Transmit ok. Time for UDP packet 1024 bytes: 400 usec speed: 2560 kbytes/sec sending UDP message #2 to 192.168.1.30 port 100 Transmit ok. Time for UDP packet 1024 bytes: 400 usec speed: 2560 kbytes/sec sending UDP message #3 to 192.168.1.30 port 100 Transmit ok. Time for UDP packet 1024 bytes: 400 usec speed: 2560 kbytes/sec sending UDP message #4 to
in „Datenrate STM32F107 HAL + Lwip“ · Mikrocontroller und Digitale Elektronik · · Screenshots
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PDF
debug_all_demo.pdf
debug_all_demo Generated with: STM32CubeMX 4.25.1 Date 11/22/2018 1.2. MCU MCU Series STM32F1 MCU Line STM32F103 MCU name STM32F103C8Tx MCU Package LQFP48 MCU Pin number 48 Page 1 debug_all_demo Project Configuration Report 2. Pinout Configuration Page 2 debug_all_demo Project Configuration Report 3. Pins Configuration
in „CubeMX und HAL - I2C hängt sich auf“ · Mikrocontroller und Digitale Elektronik ·
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Datei
simple_server.c
buf, plen, PSTR("<center>")); 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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Datei
nrf24l01_usr.h
---------------- */ /* -------------- Typen Deklarationen--------------------- */ /* An den STM32F103 Display Controller adressierter Datensatz */ typedef struct { uint8_t command; // 0x10 = Datensatz folgend , 0x20 = ..... uint8_t nrDataSet; // 1: Datensatznummer (rotierend) uint8_t id_data; // 1:
in „[STM32F4xx] NRF24L01+ Funkmodul Source Code“ · Projekte & Code ·
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PDF
test.pdf
Regulation on the Maple Mini for more information. Recommended Reading STMicro documentation for STM32F103CB microcontroller: Datasheet (PDF); covers STM32F103x8, STM32F103xB. Reference Manual RM0008 (PDF); definitive resource for peripherals on the STM32F1 line. Programming Manual PM0056 (PDF); assembly language and register reference. STM32F103CB overview page with links to further references. Footnotes [1] See boardUsedPins for more information. 8 von 8 29.11.2015 20:12
in „Wie kann ich diese Webseite ausdrucken?“ · PC Hard- und Software ·
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Datei
ILI9341_template_BluePill.ino
2017, ChrisMicro ************************************************************************/ /* STM32F103 BluePill */ #include "SPI.h" #include "Adafruit_GFX.h" #include "Adafruit_ILI9341.h" // TFT 9341 // 2.4" SPI TFT LCD Display 2.4 Inch Touch Panel LCD ILI9341 240x320 5V/3.3V // http://stores.ebay.de/findyours?_trksid=p2047675.l2563 // // STM32F103 // http://stores.ebay.de/SenseCore?_trksid=p2047675.l2563 // // TFT-Anschluss STM32F103 TFT 9341 //#define TFT_CS A2 3 //#define TFT_DC A1 5 //#define TFT_RST R rst-rst //#define TFT_MOSI A7 6 //#define
in „TFT mit ILI9341“ · Mikrocontroller und Digitale Elektronik ·
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Schaltplan STM32F103 Blue Pill mit TFT-Modul
1.8 SPI 128x160 TFT Module ST7735R Controller VCC GND CS SDA SCK LED +3,3V 10k 10k 10k 38 Vcc PB7 PB6 PA8 PA1 PA7 PA5 23 PC14 25 PA0 24 PC15 GND 40 left up down right
in „Game CodedColor für die STM32F103 Bluepill“ · Projekte & Code · · Schaltpläne
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AliExpress Produktseite STM32F103 Development Board
de.aliexpress.com App ausprobieren & sparen Genießen Sie mehr Angebote in u... Öffnen Modellnummer STM32F103 Development Board Kit Ursprung CN (Herkunft) Markenname WeAct Studio Choice Ausgewählt von AliExpress Lieferant Verkauft von WeAct Studio Choice Store Artikelbeschreibung Berichtpunkt WeAct Studio STM32F103C8T6
in „neuere BluePill (WeAct) I2C1 will nicht“ · Mikrocontroller und Digitale Elektronik · · Screenshots
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PDF
UART_Test.pdf
custom Generated with: STM32CubeMX 6.2.1 Date 08/02/2021 1.2. MCU MCU Series STM32F1 MCU Line STM32F103 MCU name STM32F103RBTx MCU Package LQFP64 MCU Pin number 64 1.3. Core(s) information Core(s) Arm Cortex-M3 Page 1 UART_Test Project Configuration Report 2. Pinout Configuration Page 2 UART_Test Project
in „STM32F1 HAL UART Senden nicht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
readme.txt
your image into target memory - Run the example @note - Low-density devices are STM32F101xx and STM32F103xx microcontrollers where the Flash memory density ranges between 16 and 32 Kbytes. - Medium-density devices are STM32F101xx and STM32F103xx microcontrollers where the Flash memory density ranges between 32 and 128 Kbytes. - High-density devices are STM32F101xx and STM32F103xx microcontrollers where the Flash memory density ranges between 256 and 512 Kbytes. * <h3><center>© COPYRIGHT 2009 STMicroelectronics</center></h3> */
in „STM32 ReadOutProtection“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Getting_started_with_STM32F10xxx_hardware_development.pdf
64 and 128 Kbytes. ● Medium-density devices are STM32F100xx, STM32F101xx, STM32F102xx and STM32F103xx microcontrollers where the Flash memory density ranges between 64 and 128 Kbytes. ● High-density value line devices are STM32F100xx microcontrollers where the Flash memory density ranges between 256 and 512 Kbytes. ● High-density devices are STM32F101xx and STM32F103xx microcontrollers where the Flash memory density ranges between 256 and 512 Kbytes. ● XL-density devices are STM32F101xx and STM32F103xx microcontrollers where the Flash memory density ranges between
in „Quarz an STM32F103 / Widerstand?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
stm32f1xx_hal_can.h
STM32F1xx_HAL_CAN_H #define __STM32F1xx_HAL_CAN_H #ifdef __cplusplus extern "C" { #endif #if defined(STM32F103x6) || defined(STM32F103xB) || defined(STM32F103xE) || \ defined(STM32F103xG) || defined(STM32F105xC) || defined(STM32F107xC) /* Includes -------------------------------------------------------------
in „STM32 CAN Botschaft empfangen“ · Mikrocontroller und Digitale Elektronik ·
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Beispiel für die Markierung eines LQFP48-Gehäuses
03x4, STM32F103x6 Package info Device Marking for LQFP48 The following figure gives an example of topside marking orientation versus ball 1 location. Figure 52. LQFP48 marking example (package view) Product identification(1) STM32F 103C7T7A Date code = year + week Y WW Pin 1 identification ST A Revision code
in „STM32F103C6T6A Lässt sich nicht programmieren“ · Mikrocontroller und Digitale Elektronik · · Screenshots
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Datei
stm32f103zet6_cantest_send.c
uint16_t CAN_ID; uint8_t CAN_DATA0,CAN_DATA1,CAN_DATA2,CAN_DATA3,CAN_DATA4,CAN_DATA5,CAN_DATA6,CAN_DATA7; uint8_t CanFlag; int main(void) { // Initialiesieren der CAN-Hardware CAN_Configuration(); printf("CAN-Bus Test \r\n"); printf("CAN-Bus Speed 100kHz \r\n"); /* Infinite loop */ while (1) { delay_ms(1000); /* delay 1000ms */ CanWriteData(0xA5A5); } } void CanWriteData(uint16_t ID) { CanTxMsg TxMessage; uint32_t i = 0; uint8_t TransmitMailbox = 0; /* transmit */ TxMessage.StdId = ID; //TxMessage.ExtId = 0x00; TxMessage.RTR = CAN_RTR_DATA; TxMessage.IDE = CAN_ID_STD; TxMessage.DLC = 8; TxMessage.Data
in „STM32 can Message“ · Mikrocontroller und Digitale Elektronik ·
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Datei
stm32f103vct6_cantest_receive.c
uint16_t CAN_ID; uint8_t CAN_DATA0,CAN_DATA1,CAN_DATA2,CAN_DATA3,CAN_DATA4,CAN_DATA5,CAN_DATA6,CAN_DATA7; uint8_t CanFlag; int main(void) { // Initialiesieren der CAN-Hardware CAN_Configuration(); printf("CAN-Bus Test \r\n"); printf("CAN-Bus Speed 100kHz \r\n"); /* Infinite loop */ while (1) { if(CanFlag==ENABLE) { CanFlag=DISABLE; printf("CAN Receive Data \r\n"); printf("CAN_ID %x \r\n",CAN_ID); printf("CAN_DATA0 %x \r\n",CAN_DATA0); printf("CAN_DATA1 %x \r\n",CAN_DATA1); printf("CAN_DATA2 %x \r\n",CAN_DATA2); printf("CAN_DATA3 %x \r\n",CAN_DATA3); printf("CAN_DATA4 %x \r\n",CAN_DATA4); printf("CAN_DATA5
in „STM32 can Message“ · Mikrocontroller und Digitale Elektronik ·
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Datei
STM32F103C8Tx_FLASH.ld
**************************** ** ** File : LinkerScript.ld ** ** Abstract : Linker script for STM32F103C8Tx Device with ** 64KByte FLASH, 20KByte RAM ** ** Set heap size, stack size and stack location according ** to application requirements. ** ** Set memory bank area and size if external memory is used
in „SPI auf STM32F103 - kein Signal“ · Mikrocontroller und Digitale Elektronik ·
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Datei
stm32f103c8_flash.ld.txt
--------------------------------------- * Linker script for running in internal FLASH on the STM32F103C8 *----------------------------------------------------------------------------*/ OUTPUT_FORMAT("elf32-littlearm", "elf32-littlearm", "elf32-littlearm") OUTPUT_ARCH(arm) SEARCH_DIR(.) /* Memory Spaces
in „ROM-Auslastung von C++-Programm reduzieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STM32F103_Industrial_Board_R1.pdf
17 DI G GND J? RS485 GND 18 120R Text 19 MAX3485 1 TR- GND 20 2 TR+ CON20 GND CON2 PCB Name:STM32F103 Title Unless otherwise specified, all values are as follows: resistor values are in Ohms, i.e. 0R47, 5R6, 220, 5K6, 22K PCB Nr. 5500-0000 STM32F103IndustrialBoard A capacitor values are in Microfarads
in „STM32F103VET6 Industrial Board Schaltbild“ · Mikrocontroller und Digitale Elektronik ·
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PDF
UM08001_JLinkARM.pdf
STM32F101ZE ST STM32F102C6 STM32F102C6 ST STM32F102C8 STM32F102C8 ST STM32F102CB STM32F102CB ST STM32F103C6 STM32F103C6 ST STM32F103C8 STM32F103C8 ST STM32F103CB STM32F103CB ST STM32F103R6 STM32F103R6 ST STM32F103R8 STM32F103R8 ST STM32F103RB STM32F103RB ST STM32F103RC STM32F103RC ST STM32F103RD STM32F103RD ST STM32F103RE STM32F103RE ST STM32F103T6 STM32F103T6 ST STM32F103T8 STM32F103T8 ST STM32F103V8 STM32F103V8 ST STM32F103VB STM32F103VB ST STM32F103VC STM32F103VC ST STM32F103VD STM32F103VD ST STM32F103VE STM32F103VE
in „[V] J-Link JTAG Adapter USB für ARM abzugeben“ · Markt ·
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PDF
NUCLEO_DATASHEET_EN.pdf
online resources. Table 1. Device summary Reference Part number NUCLEO-F030R8, NUCLEO-F070RB, NUCLEO-F103RB, NUCLEO-F302R8, NUCLEO-XXXXRX NUCLEO-F303RE,NUCLEO-F334R8, NUCLEO-F401RE,NUCLEO-F411RE, NUCLEO-L053R8,NUCLEO-L073RZ NUCLEO-L152RE, NUCLEO-L476RG December 2014 DocID025838 Rev 6 1/4 For further information
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PDF
UM1052_PMSM_singledual_FOC_SDK_v3.3.pdf
. . . . . . . . . . . . . 40 Table 7. single-shunt current reading, used resources (single drive, F103/F100 LD/MD), F05xx . . 41 Table 8. single-shunt current reading, used resources (single or dual drive, F103HD, F2xx, F4xx) 42 Table 9. ICS current reading, used resources (single drive, F103 LD/MD)
in „BLDC Sinuskommutierung Ansteuerung H-Brücke“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TestArmTurtorialDeu.pdf
empfohlen, dieselben Komponenten zu verwenden. Auswahl Mikrocontroller Für den Mikrocontroller ein STM32F103C8 oder ein STM32F103RB von STMicroelectronics verwendet werden. Beide Controller sind bis auf die Flash-Größe (64 KiB vs 128 KiB) und die Anzahl der Pins (48 vs 64) identisch. Diese Controller gehören
in „ARM-Assembler-Tutorial“ · Mikrocontroller und Digitale Elektronik ·
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Datei
STM32F10x_512k_64.ld
/* Default linker script for STM32F103RB_128K_20K Copyright RAISONANCE S.A.S. 2008 */ /* include the common STM32F103RB sub-script */ /* Common part of the linker scripts for STM32 devices*/ /* default stack sizes. These are used by the
in „STM32: CAN Loopback mit merkwürdigem Effekt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STPicProgL.pdf
1 ENA_USB 26 PB13 VPPSWI 7 27 PB14 2 R27 /MCLR_HI LED 28 R19 6 PB15 100 R6 5 GND2 GND1 4 10k STM32F103C8T6 BSS123 R16 VT1 TC4429 1 0 VD1 R 4 MCLR_LO 220 4k7 VPPVAR R29 R30 R26 +3,3V XPRG 2 2 G1 R8 R9 10k 10k 2 R +3,3V 1 I2C1_SDA 2 I2C1_SCL 3 B 2k2 2k2 - D6 D7 D8 D9 PGM_SWDCLK 4 S X4 BLDR_RX1 5 S 1 CLOCK
in „Padauk MCU für 0.038 USD aus Taiwan“ · Mikrocontroller und Digitale Elektronik ·
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Schaltplan mit STM32F103C8T6 Mikrocontroller
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 TLC2272ACD Q1 16MHz EN OUT 8 C9 100n +Vcc 2 4 100n 100n 100n C16 C15 C14 C13 GND GND GND +3V3 C29 100n +5V
in „LM358 gegen TS272“ · Analoge Elektronik und Schaltungstechnik · · Schaltpläne
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Pinbelegung STM32F103C6Tx LQFP48
ST, STM32F103C6Tx, LQFP48, VDD, VSS, PB9, BOO.., PB7, PB6, PB5, PB4, PA15, PA14, VDD, VSS, PA13, SYS_JTMS-SWDIO, PA12, CAN_TX, PA11, CAN_RX, PA10, TIM1_CH3, PA9, TIM1_CH2, PA8, TIM1_CH1, PB15, TIM1_CH3N, PB14, TIM1
in „Wer kann mir schöne Fotos machen?“ · Offtopic · · Screenshots
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STM32F103CB Blue Pill Mikrocontroller und Header-Pins
WeAct Studio STM32F103CB Blue Pill DataLink / 4 github.com/WeActStudio/BluePill gitee.com/WeActStudio/BluePill Hello 你好 Hallo こんにちは здравства Hola 你好
in „[V] BluePill von WeAct und MapleMini“ · Markt · · Fotos
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Bild
Laptop mit STM32F103VETX Chip-Abbildung und drei Mikrocontrollern
STM32F103VETX LQFP100
in „Re: CubeMX ist ein erbarmliches Stück Scheiße!“ · Mikrocontroller und Digitale Elektronik · · Fotos
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Datei
simple_server.c
buf, plen, PSTR("<center>")); 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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Verschiedene Mikrocontroller-Entwicklungsboards auf blauem Untergrund
ST Nucleo XNUCLEO F103RB ARM Cortex-M3/M4 mbed 16. Waveshare XNUCLEO F103RB 17. HAOYOU LPC1768-Mini-DK2 18. NXP LPC1549xpresso V2 19. Panutt LPC1768 20. NXP LPC-Link 2 (LPC XPresso) 19.02.2024
in „[V] Sammlung diverser Entwicklungsboards“ · Markt · · Platinenfotos
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Bild
Waveshare XNucleo F103RB Mikrocontroller-Board und ST-Link V2 mini
16. Waveshare XNucleo F103RB RX/01 TX/01 02 PLM/03 PIM/04 06 07 09 PLM/09 PIM/10 011 RESO/012 SCK/013 GND AUD 014 ARM Cortex-M0/M3/M4 mbed ST XNUCLEO-F103RB ST-link V2 mini
in „[V] Sammlung diverser Entwicklungsboards“ · Markt · · Platinenfotos
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PDF
hardware_dev.pdf
density ranges between 16 and 32 Kbytes. ● Low-density devices are STM32F101xx, STM32F102xx and STM32F103xx microcontrollers where the Flash memory density 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 Flash memory density ranges between 64 and 128 Kbytes. ● High-density devices are STM32F101xx and STM32F103xx microcontrollers where the Flash memory density ranges between
in „STM32: JTAG mit ST-LINK: Error in Initializing ST-Link device“ · Mikrocontroller und Digitale Elektronik ·
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Screenshot eines Debuggers mit C-Code und Variablenwerten
Arial_7x10 Font_t {...} table const short * 0x2e006816 width short -12264 height short 26709 STM32F103 St-Link [Program] X:\tools\openocd-0.10.0 Error: jtag status contains invalid mode Polling target stm32f103 cpu failed, trying to... Examination failed, GDB will be halted. Info : Previous state query
in „Nach Initialisierung falsche Werte im Struct“ · Softwareentwicklung · · Screenshots
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Datei
STM32F103_512K_64K_FLASH.ld
/* Default secondary/main linker script for STM32F103_512K_64K Copyright RAISONANCE S.A.S. 2007-2010 !!! This file is automatically generated by Ride if the default linker script option is active !!! Do not modify it if the option is set, as it will be
in „Anfänger Linkerscipt Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
user_manual_nucleo.pdf
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 follows: TXXX describes the STM32 MCU product line
in „USART1 issue with a STM32F030R8 Nucleo Board“ · µC & Digital Electronics ·
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Datei
putty.txt
. board_led_init... button_init... timer2_init... wpsbutton_init... Version: 2.9.5 Hardware: STM32F103 Display: WC12h LEDs: WS2812 GRB Welcome to WordClock Logger! ---------------------------- irmp_init... power_init... power_init() called power_on... switching power on delay_init... board_led_init... button_init... timer2_init... wpsbutton_init... Version: 2.9.5 Hardware: STM32F103 Display: WC12h LEDs: WS2812 GRB rtc is online eeprom is online ws2812: no external pullup detected eeprom is online current eeprom version: 0x00020900 reading ir codes from eeprom DFPLAYER LOGGER ESP8266
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Datei
ws2812.c
---------------------------------------------------------------------------------- * adapted STM32F103 part for STM32F103C8 with HAL libs @ 72MHz (TIM1 CH1 is unchanged) *----------------------------------------------------------------------------------------------------------------------------------
in „WS2812B mit Lib von Martin Hubáček auf F103“ · Mikrocontroller und Digitale Elektronik ·
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PDF
fiostdv20_datasheet.pdf
(3232-series) level converter - Micro SD card socket ARM 32-bits Cortex TM – M3 Processor (STM32F103RET6) Four built-in operating modes selectable via - 90MIPS maximum speed jumper settings - USB Mass Storage Device (micro SD - 64 KBytes SRAM card reader) - 51 GPIO - In-application programming via
in „Aimagin FioStd wird nicht mehr erkannt.“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
/RTC_test/CMSIS/device/stm32f1xx.h \ /home/stefan/Programmierung/STM32/RTC_test/CMSIS/device/stm32f103xb.h \ /home/stefan/Programmierung/STM32/RTC_test/CMSIS/core/core_cm3.h \ /home/stefan/Programmierung/STM32/RTC_test/CMSIS/core/core_cmInstr.h \ /home/stefan/Programmierung/STM32/RTC_test/CMSIS/core/
in „stm32f103 RTC Interrupt öfter als erwartet“ · Mikrocontroller und Digitale Elektronik ·
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Datei
platformio.ini
build_flags = -D STM32L0 [env:STM32F030] board = nucleo_f030r8 build_flags = -D STM32F0 [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 =