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Nahaufnahme einer Leiterplatte mit STM32F103 Mikrocontroller
STM32F103 RBT6 78279 93 PHL 78 822 ST LM313
in „Was ist das für ein IC (M313)?“ · Mikrocontroller und Digitale Elektronik · · Platinenfotos
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Bestückungsbeispiel einer STM32F103CB Leiterplatte
Bestückungsbeispiel 3.3V UCC2 3.3V U5V C5 C3 R1 250m X-SWD VCC T-SWD UCC1 C10 C16 C13 100nF LED1 C2 C1 100nF C2Z DZ3 GND DIO CLK GND RST SWD STH32F103CB LEDR CLK GND DIO C2X C1X R2102 R2101 R2103 R2104 R2105 R2106 R2107 R2108 R2109 R2110 R2111 R2112 R2113 R2114 R2115 R2116 R2117 R2118 R2119
in „STM32 Nucleo Boards können UART Serial I/O und ST-Link debuggen“ · Mikrocontroller und Digitale Elektronik · · Platinenfotos
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Bestückungsbeispiel einer STM32F103CB Leiterplatte
Bestückungsbeispiel 3.3V VCC2 3.3V U5V F1 750pF LED1 LED2 LED3 C5 C4 C3 100nF C10 100nF C2 C1 X-SWD D25 3.3V VCC CLK GND RST SWO SWD 5.6V DZ2 DZ3 CLK C3 C2 GND 100nF STM32F103CB LCLR ROOT 8MHz LED4 LED5 GND AGROUND USART-TX USART-RX RX (input
in „STM32 Nucleo Boards können UART Serial I/O und ST-Link debuggen“ · Mikrocontroller und Digitale Elektronik · · Platinenfotos
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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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Pinbelegung STM32F103xx LQFP48 Mikrocontroller
Pinouts and pin description STM32F103x8, STM32F103xB Figure 8. STM32F103xx performance line LQFP48 pinout VBAT 1 PC13-TAMPER-RTC 2 PC15-OSC32_OUT 3 PD1-OSC_OUT 4 NRST 7 VSSA 8 VDDA 9 PA0-WKUP 10 PA1 11 PA2 12 PA3 13 PA4 14 PA5 15 PA6
in „STM32F103C6T6A Lässt sich nicht programmieren“ · Mikrocontroller und Digitale Elektronik · · Screenshots
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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 Arm® Cortex®-M3 RTC/TIM 72Mhz Max. 12bit ADC 2Unit 10Channel 20KB SRAM USB2.0 FS 64KB Flash CAN*1/USART*3 I2C*2/SPI*2 LQFP48 In den Warenkorb Jetzt kaufen
in „neuere BluePill (WeAct) I2C1 will nicht“ · Mikrocontroller und Digitale Elektronik · · Screenshots
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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,
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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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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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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Leiterplatten-Layout eines ESP-12 STM32F103C8T6 Projekts
SPK SPK +5V GND R L BOCT0 R17 1k ESP - 12 STM32F103C8T6 A11 A12 A15 B1 B12 B14 C14 C15 3V5 GND IC IO Q1 DCF LED1 DS1820 R15 100R 28 68 GND PIN 3V5 DS1820 R10 82 BS170 Q2 IC2 LM358 R9 3k R8 LED DCF 100nF R3 100R IC2 R2 10k R14 10k R16 100R R12 10k R13 10k R2 16k R4 4.7uF R7 10k R1 1k R5 100 R6 1k 4.7uF 5V RX TX GND PROG RUN USER WPS LED Power S2 S1 C3 100nF BAT43 IRF9310 16 1 2 GND +5V WS2812
in „WordClock mit WS2812“ · Projekte & Code · · Layouts
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Datei
F103_SPI.c
#define SPI_MOSI_PIN GPIO_Pin_7 /* */ #define SPI_MISO_PIN GPIO_Pin_6 /* */ #define SPI_SCLK_PIN GPIO_Pin_5 /* */ typedef enum { SPI_MODE_0 = 0, // CPOL=0, CPHA=0 SPI_MODE_1, // CPOL=0, CPHA=1 SPI_MODE_2, // CPOL=1, CPHA=0 SPI_MODE_3 // CPOL=1, CPHA=1 } SPI1_Mode_t; void SPI_Init (SPI1_Mode_t mode) { GPIO_InitTypeDef GPIO_InitStruct; SPI_InitTypeDef SPI_InitStruct; // Initialize SPI RCC_APB2PeriphClockCmd (RCC_APB2Periph_SPI1, ENABLE); RCC_APB2PeriphClockCmd (RCC_APB2Periph_GPIOA, ENABLE); RCC_APB2PeriphClockCmd (RCC_APB2Periph_AFIO, ENABLE); SPI_InitStruct.SPI_Direction = SPI_Direction_2Lines_FullDuplex
in „STM32F303 SPI kein SCK- und MOSI-Signal“ · Mikrocontroller und Digitale Elektronik ·
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Nahaufnahme einer Leiterplatte mit integriertem Schaltkreis
ZCA0966CFN BMW 355A V03 ZZIW9346 L101 103J5C 100pF L102 103J5C 100pF L103 103J5C 100pF L104 103J5C 100pF L105 103J5C 100pF L106 103J5C 100pF L107 103J5C 100pF L108 103J5C 100pF L109 103J5C 100pF L110 103J5C 100pF L111 103J5C 100pF L112 103J5C 100pF L113 103J5C 100pF L114 103J5C 100pF L115 103J5C 100pF L116 103J5C 100pF L117 103J5C 100pF L118 103J5C 100pF L119 103J5C 100pF L120 103J5C 100pF L121 103J5C 100pF L122 103J5C 100pF L123 103J5C 100pF L124
in „? Controlleridentifikation“ · Mikrocontroller und Digitale Elektronik · · Platinenfotos
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Leiterplatte mit integriertem Schaltkreis
11 1 47 48 2 4 6 8 10 12 QFN48 0.5mm 14 16 18 20 22 24 23 25 26 28 30 32 34 36 38 37 35 40 42 44 46 6129B1A
in „STM32F103C6T6A Lässt sich nicht programmieren“ · Mikrocontroller und Digitale Elektronik · · Platinenfotos
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Leiterplatte mit Mikrocontroller und Lötpads
11 1 47 48 2 4 6 8 10 12 QFN48 0.5mm 14 16 18 20 22 24 23 25 26 28 30 32 34 36 38 37 35 40 42 44 46 6129B1A
in „STM32F103C6T6A Lässt sich nicht programmieren“ · Mikrocontroller und Digitale Elektronik · · Platinenfotos
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Datei
stm32f103.cpp
#include <assert.h> #include <Arduino.h> #include "stm32f103.h" #define DEBUG 0 /* Real speed for bit rate of CAN message */ uint32_t SPEED[6] = {50*1000, 100*1000, 125*1000, 250*1000, 500*1000, 1000*1000}; typedef struct { uint16_t baud_rate_prescaler; ///
in „Arduino Blue Pill CAN bibliothek“ · Mikrocontroller und Digitale Elektronik ·
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Datei
stm32f103.h
typedef enum {CAN_50KBPS, CAN_100KBPS, CAN_125KBPS, CAN_250KBPS, CAN_500KBPS, CAN_1000KBPS} BITRATE; #pragma once typedef enum {STANDARD_FORMAT = 0, EXTENDED_FORMAT} CAN_FORMAT; typedef enum {DATA_FRAME = 0, REMOTE_FRAME} CAN_FRAME; typedef struct { uint32_t id; /* 29 bit identifier */ uint8_t data[8]; /* Data field */ uint8_t len; /* Length of data field in bytes */ uint8_t ch; /* Object channel(Not use) */ uint8_t format; /* 0 - STANDARD, 1- EXTENDED IDENTIFIER */ uint8_t type; /* 0 - DATA FRAME, 1 - REMOTE FRAME */ } CAN_msg_t; bool CANInit(BITRATE bitrate, int remap); void CANReceive(CAN_msg_t
in „Arduino Blue Pill CAN bibliothek“ · Mikrocontroller und Digitale Elektronik ·
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Datei
stm32f103.cpp
//#include <assert.h> #include <Arduino.h> #include "stm32f103.h" #define DEBUG 0 /* Symbolic names for bit rate of CAN message */ // typedef enum {CAN_50KBPS, CAN_100KBPS, CAN_125KBPS, CAN_250KBPS, CAN_500KBPS, CAN_1000KBPS} BITRATE; /* Real speed for bit rate
in „Arduino Blue Pill & CAN mit SN65HVD230“ · Mikrocontroller und Digitale Elektronik ·
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Datei
stm32f103.h
typedef enum {CAN_50KBPS, CAN_100KBPS, CAN_125KBPS, CAN_125KBPS32MHZ, CAN_125P1KBPS31P9MHZ,CAN_250KBPS, CAN_500KBPS, CAN_1000KBPS} BITRATE; typedef enum {STANDARD_FORMAT = 0, EXTENDED_FORMAT} CAN_FORMAT; typedef enum {DATA_FRAME = 0, REMOTE_FRAME} CAN_FRAME; typedef struct { uint32_t id; /* 29 bit identifier */ uint8_t data[8]; /* Data field */ uint8_t len; /* Length of data field in bytes */ uint8_t ch; /* Object channel(Not use) */ uint8_t format; /* 0 - STANDARD, 1- EXTENDED IDENTIFIER */ uint8_t type; /* 0 - DATA FRAME, 1 - REMOTE FRAME */ } CAN_msg_t; bool CANInit(BITRATE bitrate, int remap); void
in „Arduino Blue Pill & CAN mit SN65HVD230“ · Mikrocontroller und Digitale Elektronik ·
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Datei
stm32f103.h
#pragma once typedef enum {CAN_50KBPS, CAN_100KBPS, CAN_125KBPS, CAN_250KBPS, CAN_500KBPS, CAN_1000KBPS} BITRATE; typedef enum {STANDARD_FORMAT = 0, EXTENDED_FORMAT} CAN_FORMAT; typedef enum {DATA_FRAME = 0, REMOTE_FRAME} CAN_FRAME; typedef struct { uint32_t id; /* 29 bit identifier */ uint8_t data[8]; /* Data field */ uint8_t len; /* Length of data field in bytes */ uint8_t ch; /* Object channel(Not use) */ uint8_t format; /* 0 - STANDARD, 1- EXTENDED IDENTIFIER */ uint8_t type; /* 0 - DATA FRAME, 1 - REMOTE FRAME */ } CAN_msg_t; bool CANInit(BITRATE bitrate, int remap); void CANReceive(CAN_msg_t
in „Arduino Blue Pill & CAN mit SN65HVD230“ · Mikrocontroller und Digitale Elektronik ·
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Datei
stm32f103.h
typedef enum {CAN_50KBPS, CAN_100KBPS, CAN_125KBPS, CAN_250KBPS, CAN_500KBPS, CAN_1000KBPS} BITRATE; #pragma once typedef enum {STANDARD_FORMAT = 0, EXTENDED_FORMAT} CAN_FORMAT; typedef enum {DATA_FRAME = 0, REMOTE_FRAME} CAN_FRAME; typedef struct { uint32_t id; /* 29 bit identifier */ uint8_t data[8]; /* Data field */ uint8_t len; /* Length of data field in bytes */ uint8_t ch; /* Object channel(Not use) */ uint8_t format; /* 0 - STANDARD, 1- EXTENDED IDENTIFIER */ uint8_t type; /* 0 - DATA FRAME, 1 - REMOTE FRAME */ } CAN_msg_t; bool CANInit(BITRATE bitrate, int remap); void CANReceive(CAN_msg_t
in „Arduino Blue Pill & CAN mit SN65HVD230“ · Mikrocontroller und Digitale Elektronik ·
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Datei
stm32f103.cpp
------------------Testweise auskommentiert #include <assert.h> #include <Arduino.h> #include "stm32f103.h" #define DEBUG 0 typedef struct { uint32_t id; /* 29 bit identifier */ uint8_t data[8]; /* Data field */ uint8_t len; /* Length of data field in bytes */ uint8_t ch; /* Object channel(Not use) *
in „Arduino Blue Pill & CAN mit SN65HVD230“ · Mikrocontroller und Digitale Elektronik ·
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Datei
stm32f103.h
typedef enum {CAN_50KBPS, CAN_100KBPS, CAN_125KBPS, CAN_125KBPS32MHZ, CAN_125P1KBPS31P9MHZ,CAN_250KBPS, CAN_500KBPS, CAN_1000KBPS} BITRATE; typedef enum {STANDARD_FORMAT = 0, EXTENDED_FORMAT} CAN_FORMAT; typedef enum {DATA_FRAME = 0, REMOTE_FRAME} CAN_FRAME; typedef struct { uint32_t id; /* 29 bit identifier */ uint8_t data[8]; /* Data field */ uint8_t len; /* Length of data field in bytes */ uint8_t ch; /* Object channel(Not use) */ uint8_t format; /* 0 - STANDARD, 1- EXTENDED IDENTIFIER */ uint8_t type; /* 0 - DATA FRAME, 1 - REMOTE FRAME */ } CAN_msg_t; bool CANInit(BITRATE bitrate, int remap); void
in „Arduino Blue Pill & CAN mit SN65HVD230“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet.pdf
Reference Root part number – 7-channel DMA controller – Peripherals supported: timers, ADC, SPIs, STM32F103x6 STM32F103C6, STM32F103R6, 2 STM32F103T6 I Cs and USARTs STM32F103C8, STM32F103R8 ■ Up to 80 fast I/O ports STM32F103x8 STM32F103V8, STM32F103T8 – 26/37/51/80 I/Os, all mappable on 16 STM32F103xB STM32F103RB STM32F103VB, external interrupt vectors, all 5 V-tolerant STM32F103CB except for analog inputs ■ Debug mode May 2008 Rev 7 1/83 www.st.com 1 Contents STM32F103xC, STM32F103xD, STM32F103xE Contents
in „ARM Audio Spektrum Analyser“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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Datei
platformio.ini
=512 [env:STM32F103RC_btt_512K_USB] platform = ${common_stm32f1.platform} extends = env:STM32F103RC_btt_512K build_flags = ${env:STM32F103RC_btt_512K.build_flags} -DUSE_USB_COMPOSITE lib_deps = ${env:STM32F103RC_btt_512K.lib_deps} USBComposite for STM32F1@0.91 # # STM32F103RE # [env:STM32F103RE] platform = ${common_stm32f1.platform} extends = common_stm32f1 board = genericSTM32F103RE monitor_speed = 115200 # # STM32F103RE_btt ............. RET6 # STM32F103RE_btt_USB
in „Ender3 Z-Achse fährt mit Marlin nur nach oben“ · Mechanik, Gehäuse, Werkzeug ·
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CD00161566.pdf
SPIs, Table 1. Device summary I Cs and USARTs Reference Part number Up to 80 fast I/O ports STM32F103C8, STM32F103R8 – 26/37/51/80 I/Os, all mappable on 16 STM32F103x8 STM32F103V8, STM32F103T8 external interrupt vectors and almost all STM32F103xB STM32F103RB STM32F103VB, 5 V-tolerant STM32F103CB,
in „[F] STM32F103: Lastkondensatoren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STM103.pdf
Device summary Reference Part number – Pe2ipherals supported: timers, ADC, SPIs, I Cs and USARTs STM32F103C8, STM32F103R8 STM32F103x8 STM32F103V8, STM32F103T8 ■ Up to 80 fast I/O ports – 26/37/51/80 I/Os, all mappable on 16 STM32F103xB STM32F103RB STM32F103VB, external interrupt vectors and almost all
in „STM32 2 Versorgungsspannungen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GD32F103xx_Datasheet_V2.5.pdf
input, O = output, P = power. (2) I/O Level: 5VT = 5 V tolerant. (3) Functions are available in GD32F103VF/G/I/K devices. 33 GD32F103xx Datasheet (4) Functions are available in GD32F103VC/D/E/F/G/I/K devices. (5) ADC2 functions are available in GD32F103VC/D/E/F/G/I/K devices. 34 GD32F103xx Datasheet
in „Unterschiede CS32F103C8T6 und STM32F103C8T6“ · Mikrocontroller und Digitale Elektronik ·
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Datei
fehler.txt
'CRH' stm32f103.cpp:269:12: error: 'struct gpio_dev' has no member named 'ODR' stm32f103.cpp:278:12: error: 'struct gpio_dev' has no member named 'CRH' stm32f103.cpp:283:12: error: 'struct gpio_dev' has no member named 'CRH' stm32f103.cpp:291:12: error: 'struct gpio_dev' has no member named 'ODR' stm32f103.cpp:299:12: error: 'struct gpio_dev' has no member named 'CRL' stm32f103.cpp:304:12: error: 'struct gpio_dev' has no member
in „Arduino Blue Pill & CAN mit SN65HVD230“ · Mikrocontroller und Digitale Elektronik ·
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Datei
diff.txt
:103E400068F7EA35F20550F3F797F695E7952F01F5 :103E400068F7EA35F20550F3F797F695E7952F01F5 :103E5000CAE0E8EBFFE30590002031F079D00016CE :103E5000CAE0E8EBFFE30590002031F079D00016CE :103E6000D1F3CA9591F0F5CF06EA8BD071D0E1F786 :103E6000D1F3CA9591F0F5CF06EA8BD071D0E1F786 :103E70000AEA87D06DD0F1F76BD0F1F3F101E89445 :103E70000AEA87D06DD0F1F76BD0F1F3F101E89445 :103E80000430F8F061F1063020F428BA27BA0C9417 :103E80000430F8F061F1063020F428BA27BA0C9417
in „UART Bootloader ATtiny13 - ATmega644“ · Projekte & Code ·
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PDF
User_s_Manual_of_ET-STM32F103.pdf
User’sManualofBoardMicrocontrollerversionET-STM32F103(ARMCortex-M3) ET-STM32F103 38 ET-STM32F103 is ARM Cortex-M3 Board Microcontroller that uses 32-Bit 64PIN (LQFP) Microcontroller No.STM32F103RBT6 from STMicroelectronics. Resource systems internal
in „SPI mit SD Karte antwortet nicht korrekt auf CMD0“ · Mikrocontroller und Digitale Elektronik ·
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PDF
User_s_Manual_of_ET-STM32F103.pdf
User’sManualofBoardMicrocontrollerversionET-STM32F103(ARMCortex-M3) ET-STM32F103 38 ET-STM32F103 is ARM Cortex-M3 Board Microcontroller that uses 32-Bit 64PIN (LQFP) Microcontroller No.STM32F103RBT6 from STMicroelectronics. Resource systems internal
in „Suche Schalter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet_adc.pdf
STM32F103x6, STM32F103x8, STM32F103xB Electrical characteristics 5.3.17 12-bit ADC characteristics Unless otherwise specified, the parameters given in Table 45 are derived from tests performed under ambient
in „ARM Audio Spektrum Analyser“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
drv103.pdf
J– TA θ HA= – (θJC +θ CH) PD 125°C – 35 C θHA = 2W –(16.7°C / + 2 C / ) (4) θ = 26.3°C / HA 12 DRV103 SBVS029A APPLICATIONS CIRCUITS +12V 5.6kΩ "Fault" 22µF Microsemi HLMP-0156 1MΩ + SK34MS Relay 7 6 3A 40V Schottky OK +V S DRV103 5 1.7V 8 OUT Input + 47µF CT Tantalum 316kΩ CT(µF) TON (s) 47 10 22 5
in „Widerstände dimensionieren.“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
file1.TXT
:103EF000FFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFD2 :103F0000FFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFC1 :103F1000FFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFB1 :103F2000FFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFA1 :103F3000FFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFF91 :103F4000FFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFF81 :103F5000FFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFF71 :103F6000FFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFF61 :103F7000FFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFF51 :103F8000FFFFFFFFFFFFFFFFFFFFFFFFFFFFFFFF41
in „Trying to understand .hex files obtained after compiling a XC8 MPLAB X project.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
drv103.pdf
J– TA θ HA= – (θJC +θ CH) PD 125°C – 35 C θHA = 2W –(16.7°C / + 2 C / ) (4) θ = 26.3°C / HA 12 DRV103 SBVS029A APPLICATIONS CIRCUITS +12V 5.6kΩ "Fault" 22µF Microsemi HLMP-0156 1MΩ + SK34MS Relay 7 6 3A 40V Schottky OK +V S DRV103 5 1.7V 8 OUT Input + 47µF CT Tantalum 316kΩ CT(µF) TON (s) 47 10 22 5
in „PWM Signal wie stell ich das ein?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TRC103_Transceiver_RFM_121129.pdf
Monolithics, Inc. TRC103 - 11/29/12 4.0 Configuration Register Memory Map Register names are based on the function name and address location for easy reference: 0x1F PGCFG1F PKTCFG1E PKTCFG1D 0x1C PKTCFG1C 0x1B OSCFG1B 0x1A
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small_pcb.PDF
PB7/I2C1_SDA/TIM4_CH2 PISTM32F103RCT6059 GND PIVFD25363636 RESET PISTM32NRSTRCT607 PB6/I2C1_SCL/TIM4_CH1 PISTM32F103RCT6058 220uf/16V PIVFD25363737 PISTM32PC0/ADC108 PB5/I2C1_SMBAI PISTM32F103RCT6057 POC1001 PIC1002 GND PIVFD25363838
in „STC LED Cube 8x8x8 RGB“ · Mikrocontroller und Digitale Elektronik ·
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Datei
file2.TXT
:103F00008988530EE82EFED700F094948998210EEC :103F1000E82EFED700F08B8412000001A16F5DEC4B :103F200025F0800E0201006F080E1FEC24F07E0EBB :103F3000C86EC58000D0C5B0FED70001A151FE0BF0 :103F4000E6EC20F002010351E6EC20F0C58200D03F :103F5000C5B2FED70001A1510109E6EC20F09F0E89 :103F60000201006F000E0201016F020E0201026FDA :103F70005AEC20F05DEC25F09F0E0201036F000E5D :103F80000201046F00D012002B6E61EC25F0800E50 :103F9000276E080EC5EC24F0180EC86EC58000D040
in „Trying to understand .hex files obtained after compiling a XC8 MPLAB X project.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GD32VF103_Datasheet_Rev1.0.pdf
12-bit ADC0~1 TIMER1~3 SAR ADC Powered BDDA EXTI SPI1~2 GPIOA USART1~2 GPIOB A A I2C0 B P 2 1 GPIOC F F I2C1 a m x x GPIOD = = FWDGT 0 5 M M H H RTC GPIOE z Z DAC TIMER0 TIMER4~6 UART3~4 CAN1 10 GD32VF103 Datasheet 2.3. Pinouts and pin assignment Figure 2-2. GD32VF103Vx LQFP100 pinouts B D S P P P P
in „RISC-V: Wird das was?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
GD32VF103_Datasheet_Rev1.0.pdf
12-bit ADC0~1 TIMER1~3 SAR ADC Powered BDDA EXTI SPI1~2 GPIOA USART1~2 GPIOB A A I2C0 B P 2 1 GPIOC F F I2C1 a m x x GPIOD = = FWDGT 0 5 M M H H RTC GPIOE z Z DAC TIMER0 TIMER4~6 UART3~4 CAN1 10 GD32VF103 Datasheet 2.3. Pinouts and pin assignment Figure 2-2. GD32VF103Vx LQFP100 pinouts B D S P P P P
in „STM32F103C8T6 => GD32VF103C8T6“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Build_options.txt
GCC HOME: C:\Program Files (x86)\GNU Tools ARM Embedded\4.7 2013q3\bin compile: [mkdir] Created dir: F:\SVN\[...]\muedm_f103\Debug\bin [mkdir] Created dir: F:\SVN\[...]\muedm_f103\Debug\obj [cc] 18 total files to be compiled. [cc] arm-none-eabi-gcc -mcpu=cortex-m3 -mthumb -Wall -ffunction-sections -g
in „ARM-GCC: makefile“ · Mikrocontroller und Digitale Elektronik ·
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panasonic_tx-w32d5dpf.pdf
470nF C2377 ECKC1H102J CERAMIC 50V 1nF C1903 ECA1EM470GB ELECT 25V 47µF C2378 ECKC1H102J CERAMIC 50V 1nF C1904 ECUV1H103ZFX S.M. CAP 50V 10nF C2381 ECKC1H103JB CERAMIC 50V 10nF C1905 ECUV1C224KBX S.M. CAP
in „Panasonic TX-W32D5DPF“ · Analoge Elektronik und Schaltungstechnik ·
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30107090_VA97___ABL322PN___103A.pdf
42015 Correggio (RE) - Italy page 6 of 33 pages Datasheet Subject: VA97 – ABL322P/N – 103A Revision: 000 4 Air performance Axial Fan Module performance curve Test number: 11687 400 40 375 38 36 350 34 325 ] 32 [ 300 30 c 275 28 e 26 f 250 E ] 225 24 P 22 · e 200 20 — u 18 ] s 175 [ P 150
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Schaltplan.pdf
10K 4.7uF C99 C186 2 VDD 33K 8.2K 4066 R144 1 1 1 1 1 1 1 9 104 103 GND 4.7k S2 1 R141 C199 SW SPST C CON12 18K R91 Q19 103 S1 C R82 C128 R134 Q17 VR2 C111 10K 2 0 VR1 R74 470K 4.7uF 4.7K C119 3904 10K 100uF 9014
in „LCD Anzeige-Inhalt speichern.“ · Mikrocontroller und Digitale Elektronik ·
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MITSUBISHI_CV-0MW7B51.pdf
,etc. 141L184O9 C-CERAMIC-CHIP 390pF C582 141L185O3 C-CERAMIC-CHIP 560pF R198,199,etc. 103L299O9 R-CHIP 0 C349,350,etc. 141L185O9 C-CERAMIC-CHIP 1000pF R023,024 103L301O0 R-CHIP 56 C346 141L161O9 C-CERAMIC-CHIP 6800pF R021,022,etc. 103L301O1 R-CHIP 68 C301,302,etc. 141L162O1 C-CERAMIC-CHIP 0.01 F R059,060,etc. 103L291O3 R-CHIP 100 R816,817,etc. 103L291O7 R-CHIP 220 C605,625 141L162O3 C-CERAMIC-CHIP 0.015 F C060,061,etc. 141L164O6 C-CERAMIC-CHIP 0.1 F R001,002 103L192O1 R-CHIP 470 C402,418,913
in „Verstärker reparieren“ · Analoge Elektronik und Schaltungstechnik ·
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UHF_Remote_Control_System_TEMIC_9606.pdf
alternatively 1206. All capacitors not otherwise specified have a 20% tolerance and are size 0805. C 101 6.8 pF, 10% R 108 220 C 102 3.3 pF, 10% R 109 1 k C 103 100 pF C 104 1 nF (R 110 ≈ 470 ) C 105 100 pF T 101 S 852 T T 102 S 852 T C 106 10 pF T 103 S 852 T C 107 33 pF T 104 S 852 T C 108 6.8 pF, 5% SAW 101
in „ISM Empfänger mit kleinstem Standby“ · HF, Funk und Felder ·
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stm32-families.txt
410 STM32F103R(8-B)Hx 410 STM32F103R(8-B)Tx 410 STM32F103T(8-B)Ux 410 STM32F103V(8-B)Hx 410 STM32F103V(8-B)Tx 410 STM32F103VBIx 411 STM32F205R(B-C-E-F-G)Tx 411 STM32F205R(E-G)Yx 411 STM32F205RGEx 411 STM32F205V
in „Controller mit größerem Flash als angegeben?“ · Mikrocontroller und Digitale Elektronik ·