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Datei
lcd.h
_PORT LCD_PORT /**< port for 4bit data bit 1 */ #define LCD_DATA2_PORT LCD_PORT /**< port for 4bit data bit 2 */ #define LCD_DATA3_PORT LCD_PORT /**< port for 4bit data bit 3 */ #define LCD_DATA0_PIN 0 /**< pin for 4bit data bit 0 */ #define LCD_DATA1_PIN 1 /**< pin for 4bit data bit 1 */ #define LCD_DATA2_PIN 2 /**< pin for 4bit data bit 2 */ #define LCD_DATA3_PIN 3 /**< pin for 4bit data bit 3 */ #define
in „Attiny2313 mit HD44780 LCD“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lcd.h
_PORT LCD_PORT /**< port for 4bit data bit 1 */ #define LCD_DATA2_PORT LCD_PORT /**< port for 4bit data bit 2 */ #define LCD_DATA3_PORT LCD_PORT /**< port for 4bit data bit 3 */ #define LCD_DATA0_PIN 3 /**< pin for 4bit data bit 0 */ #define LCD_DATA1_PIN 2 /**< pin for 4bit data bit 1 */ #define LCD_DATA2_PIN 1 /**< pin for 4bit data bit 2 */ #define LCD_DATA3_PIN 0 /**< pin for 4bit data bit 3 */ #define
in „AVR Studio 6 und Datei“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lcd.h
_PORT LCD_PORT /**< port for 4bit data bit 1 */ #define LCD_DATA2_PORT LCD_PORT /**< port for 4bit data bit 2 */ #define LCD_DATA3_PORT LCD_PORT /**< port for 4bit data bit 3 */ #define LCD_DATA0_PIN 3 /**< pin for 4bit data bit 0 */ #define LCD_DATA1_PIN 2 /**< pin for 4bit data bit 1 */ #define LCD_DATA2_PIN 1 /**< pin for 4bit data bit 2 */ #define LCD_DATA3_PIN 0 /**< pin for 4bit data bit 3 */ #define
in „Komisches Verhalten mit lcd_puts“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lcd.h
_PORT LCD_PORT /**< port for 4bit data bit 1 */ #define LCD_DATA2_PORT LCD_PORT /**< port for 4bit data bit 2 */ #define LCD_DATA3_PORT LCD_PORT /**< port for 4bit data bit 3 */ #define LCD_DATA0_PIN 0 /**< pin for 4bit data bit 0 */ #define LCD_DATA1_PIN 1 /**< pin for 4bit data bit 1 */ #define LCD_DATA2_PIN 2 /**< pin for 4bit data bit 2 */ #define LCD_DATA3_PIN 3 /**< pin for 4bit data bit 3 */ #define
in „LCD tc1604a mit ATMEGA16“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lcd.h
_PORT LCD_PORT /**< port for 4bit data bit 1 */ #define LCD_DATA2_PORT LCD_PORT /**< port for 4bit data bit 2 */ #define LCD_DATA3_PORT LCD_PORT /**< port for 4bit data bit 3 */ #define LCD_DATA0_PIN 0 /**< pin for 4bit data bit 0 */ #define LCD_DATA1_PIN 1 /**< pin for 4bit data bit 1 */ #define LCD_DATA2_PIN 2 /**< pin for 4bit data bit 2 */ #define LCD_DATA3_PIN 3 /**< pin for 4bit data bit 3 */ #define
in „Probleme mit LCD-Ausgabe von Peter Fleury“ · Mikrocontroller und Digitale Elektronik ·
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PDF
066ff5d0ae41979babdbb2a054919e6488ccea2c9c04b742d1ae37c877e7b651.pdf
7 UART_RTS RTS CTS R1 IN R1 OUT UART_CTS UART_TXD 3 TXD RXD 3 R2 IN R2 OUT UART_RXD 8 8 UART_CTS CTS RTS T2 OUT T2 IN UART_RTS 4 4 C1+ V+ 9 9 0.1UF 0.1UF C1- V- 0.1UF 5 5 C2+ GND 0.1UF C2- READY UART connection with level shifting TEST POINTS I O B K O I C C M M P P P P S S S S 28 27 26 25 1 24 PIO 03 VDD 3.3V 2 23 1μF NC GND 3 22 RSET PIO 06 4 21 PIO 08 PIO 15 5 PIO 10 PIO 05 20 UART TXD 6 UART TXD PIO 02 19 0 EXAMPLE NMOS 4 OUTPUT LED 7 PIO 09 PIO 04
in „Diamex DX70 OBD Adapter Teildefekt“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Dec_T15_Adv2.asm
******** ; ; Hardware Anforderungen: ; ; Standard Belegung ; ; Tiny 15 PDIP/SOIC ; ;(RESET/ADC0) PB5 = 1 8 = VCC ;(ADC3) PB4 = 2 7 = PB2 (ADC1/SCK/T0/INT0) ;(ADC2) PB3 = 3 6 = PB1 (AIN1/MISO/OC1A) ; GND = 4 5 = PB0 (AIN0/AREF/MOSI) ; ; DCC Decoder ; ;RESET PB5 = 1 8 = VCC ;Funktion 2 PB4 = 2 7 = PB2
in „DCC Decoder“ · Projekte & Code ·
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Datei
test_achim_01.c
///////////////////////////////////////////// #define KEY_DDR DDRA // Datenrichtung A #define KEY_PORT PORTA // Angabe Port A #define KEY_PIN PINA // Angabe PIN A #define KEY_1 3 // PA 3 #define KEY_2 5 // PA 5 #define KEY_3 7 // PA 7 #define ALL_KEYS (1<<KEY_1|1<<KEY_2|1<<KEY_3) #define REPEAT_MASK
in „Anzeige LCD-I2C / Multitasking und Tasterentprellung von Peter“ · Mikrocontroller und Digitale Elektronik ·
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Datei
safe.c
static uint8_t z = 0; // shift register, speichert die letzten drei zustände uint8_t y = ( PIND >> 2 ) & 3; // beide drehgeber pins einlesen ( hier PD2 und PD3 ) if ( ( z & 3 ) != y ) // testen ob sich etwas geändert hat { z = ( ( z << 2 ) | y ) & 0x3f; // die zwei neuen bits reinshiften und ergebnis
in „AVR - Drehgeber auslesen - optimiert für präzise Benutzereingaben“ · Projekte & Code ·
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Datei
LCD.h
_PORT LCD_PORT /**< port for 4bit data bit 1 */ #define LCD_DATA2_PORT LCD_PORT /**< port for 4bit data bit 2 */ #define LCD_DATA3_PORT LCD_PORT /**< port for 4bit data bit 3 */ #define LCD_DATA0_PIN 4 /**< pin for 4bit data bit 0 */ #define LCD_DATA1_PIN 5 /**< pin for 4bit data bit 1 */ #define LCD_DATA2_PIN 6 /**< pin for 4bit data bit 2 */ #define LCD_DATA3_PIN 7 /**< pin for 4bit data bit 3 */ #define
in „WinAVR Studio gibt Fehlermeldung aus beim "Build Projekt"“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lcd.h
_PORT LCD_PORT /**< port for 4bit data bit 1 */ #define LCD_DATA2_PORT LCD_PORT /**< port for 4bit data bit 2 */ #define LCD_DATA3_PORT LCD_PORT /**< port for 4bit data bit 3 */ #define LCD_DATA0_PIN 0 /**< pin for 4bit data bit 0 */ #define LCD_DATA1_PIN 1 /**< pin for 4bit data bit 1 */ #define LCD_DATA2_PIN 2 /**< pin for 4bit data bit 2 */ #define LCD_DATA3_PIN 3 /**< pin for 4bit data bit 3 */ #define
in „1*16 LCD _mit Peter Fleury's LCD library“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lcd.h
_PORT LCD_PORT /**< port for 4bit data bit 1 */ #define LCD_DATA2_PORT LCD_PORT /**< port for 4bit data bit 2 */ #define LCD_DATA3_PORT LCD_PORT /**< port for 4bit data bit 3 */ #define LCD_DATA0_PIN 0 /**< pin for 4bit data bit 0 */ #define LCD_DATA1_PIN 1 /**< pin for 4bit data bit 1 */ #define LCD_DATA2_PIN 2 /**< pin for 4bit data bit 2 */ #define LCD_DATA3_PIN 3 /**< pin for 4bit data bit 3 */ #define
in „Probleme mit LCD-Ausgabe von Peter Fleury“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
*Configure GPIO pin Output Level */ HAL_GPIO_WritePin(GPIOB, LD1_Pin|LD3_Pin, GPIO_PIN_RESET); /*Configure GPIO pin Output Level */ HAL_GPIO_WritePin(LD2_GPIO_Port, LD2_Pin, GPIO_PIN_RESET); /*Configure GPIO pin : B1_Pin
in „STM32H745 I2S DMA (NUCLEO-STM32H745ZI-Q DualCore)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
cs5460.pdf
+5 V - VA+ = +2.5 V; VA- = -2.5 V; VD+ = +3 V CS5460-BS -40 C to +85 °C 24-pin SSOP VA+ RESET VD+ IIN+ PGA High Pass Watch Dog IIN- x10,x50 Filter Timer 4tOrder Digital ∆Σ Filter CS Modulator Power Calculation
in „Leistung messen an 230V von 1W bis 2000W“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
CH348DS1.PDF
CH348 Datasheet 1 USB to Octal Serial Ports Chip CH348 Datasheet Version: 1C http://wch.cn 1. Introduction CH348 is a high-speed USB bus converter chip, which converts USB to octal serial ports UART0/1/2/3/4/5/6/7, and used to expand serial
in „CH348 USB zu 8 Port Serial (UART)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Technische_Beschreibung_LCD-Addon.pdf
Data Steckerleiste für den Anschluss an ein myAVR Board Port D Port B Port C Pin header to connect to a myAVR Board 1 20 d u g R/W 2 3 4 5 6 7 0 1 2 . . . / . . . . . . LCD 16x2 D D D D D D B B B t t t s t t t t t t r r r r r r r r r o o o V a o o o o o o P P
in „2.Zeile LCD nicht erreichbar“ · Mikrocontroller und Digitale Elektronik ·
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PDF
D810038B.PDF
GND GND 8, 22 GND 10 GND 40 10, 30 VCC, AVCC VCC, AVCC 7, 20 VCC, AVCC 20 VCC 9 Belegung Extension-Port J4 PIn an J4 ATtiny 12/15 Funktion Tiny 12 Funktion Tiny 15 Eeprom 24Cxx Funktion 5 n.c. - - 5 SDA 6 n.c. - - 6 SCL 12 3 PB4 (XTAL2) PB3 (ADC2) n.c. - 13 2 PB3 (XTAL1) PB4 (ADC3) n.c. - 14 5 PB0 (MOSI
in „Pollin Board unzuverlässig-Hilfe bei der Fehlersuche!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Pollin_Board.pdf
GND GND 8, 22 GND 10 GND 40 10, 30 VCC, AVCC VCC, AVCC 7, 20 VCC, AVCC 20 VCC 9 Belegung Extension-Port J4 PIn an J4 ATtiny 12/15 Funktion Tiny 12 Funktion Tiny 15 Eeprom 24Cxx Funktion 5 n.c. - - 5 SDA 6 n.c. - - 6 SCL 12 3 PB4 (XTAL2) PB3 (ADC2) n.c. - 13 2 PB3 (XTAL1) PB4 (ADC3) n.c. - 14 5 PB0 (MOSI
in „AVR: UART Pollin Board“ · Mikrocontroller und Digitale Elektronik ·
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PDF
D810038B.pdf
GND GND 8, 22 GND 10 GND 40 10, 30 VCC, AVCC VCC, AVCC 7, 20 VCC, AVCC 20 VCC 9 Belegung Extension-Port J4 PIn an J4 ATtiny 12/15 Funktion Tiny 12 Funktion Tiny 15 Eeprom 24Cxx Funktion 5 n.c. - - 5 SDA 6 n.c. - - 6 SCL 12 3 PB4 (XTAL2) PB3 (ADC2) n.c. - 13 2 PB3 (XTAL1) PB4 (ADC3) n.c. - 14 5 PB0 (MOSI
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PDF
AVR-Board20_810038B.PDF
GND GND 8, 22 GND 10 GND 40 10, 30 VCC, AVCC VCC, AVCC 7, 20 VCC, AVCC 20 VCC 9 Belegung Extension-Port J4 PIn an J4 ATtiny 12/15 Funktion Tiny 12 Funktion Tiny 15 Eeprom 24Cxx Funktion 5 n.c. - - 5 SDA 6 n.c. - - 6 SCL 12 3 PB4 (XTAL2) PB3 (ADC2) n.c. - 13 2 PB3 (XTAL1) PB4 (ADC3) n.c. - 14 5 PB0 (MOSI
in „Atmel Evaluationboard V2.01“ · Mikrocontroller und Digitale Elektronik ·
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PDF
pollin_board.PDF
GND GND 8, 22 GND 10 GND 40 10, 30 VCC, AVCC VCC, AVCC 7, 20 VCC, AVCC 20 VCC 9 Belegung Extension-Port J4 PIn an J4 ATtiny 12/15 Funktion Tiny 12 Funktion Tiny 15 Eeprom 24Cxx Funktion 5 n.c. - - 5 SDA 6 n.c. - - 6 SCL 12 3 PB4 (XTAL2) PB3 (ADC2) n.c. - 13 2 PB3 (XTAL1) PB4 (ADC3) n.c. - 14 5 PB0 (MOSI
in „Atmega32 Evaluationsboard pollin mysmartusb“ · Mikrocontroller und Digitale Elektronik ·
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PDF
pollin_board.PDF
GND GND 8, 22 GND 10 GND 40 10, 30 VCC, AVCC VCC, AVCC 7, 20 VCC, AVCC 20 VCC 9 Belegung Extension-Port J4 PIn an J4 ATtiny 12/15 Funktion Tiny 12 Funktion Tiny 15 Eeprom 24Cxx Funktion 5 n.c. - - 5 SDA 6 n.c. - - 6 SCL 12 3 PB4 (XTAL2) PB3 (ADC2) n.c. - 13 2 PB3 (XTAL1) PB4 (ADC3) n.c. - 14 5 PB0 (MOSI
in „Interrupt und PortC Atmega32“ · Mikrocontroller und Digitale Elektronik ·
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PDF
471D81B8d01.pdf
(XTAL2/TOSC2) PB7 8 17 PB5 (SCK) 9 1 1 1 1 1 1 16 5 6 7 0 1 2 3 4 D D D B B B B B ) ) P) ) P) ) ) ) T N N P 1A 1 C O ( A AI I C C / I ( ( ( ( / S ( S O ( ( MLF Top View ) ) C D T / / ) ) 0 ) ) E 5 4 3 2 T X
in „Motorregelung für Fußballroboter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
D810038B.PDF
31 GND GND 8, 22 GND 10 GND 40 10, 30 VCC,AVCC VCC,AVCC 7, 20 VCC,AVCC 20 VCC 9 Belegung Extension-Port J4 PIn an J4 ATtiny 12/15 FunktionTiny 12 FunktionTiny 15 Eeprom 24Cxx Funktion 5 n.c. - - 5 SDA 6 n.c. - - 6 SCL 12 3 PB4 (XTAL2) PB3 (ADC2) n.c. - 13 2 PB3 (XTAL1) PB4 (ADC3) n.c. - 14 5 PB0 (MOSI
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PDF
D810038B.PDF
31 GND GND 8, 22 GND 10 GND 40 10, 30 VCC,AVCC VCC,AVCC 7, 20 VCC,AVCC 20 VCC 9 Belegung Extension-Port J4 PIn an J4 ATtiny 12/15 FunktionTiny 12 FunktionTiny 15 Eeprom 24Cxx Funktion 5 n.c. - - 5 SDA 6 n.c. - - 6 SCL 12 3 PB4 (XTAL2) PB3 (ADC2) n.c. - 13 2 PB3 (XTAL1) PB4 (ADC3) n.c. - 14 5 PB0 (MOSI
in „LCD Fusebits für Atmega32“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Pollin_AVR_Evalutationsboard.pdf
31 GND GND 8, 22 GND 10 GND 40 10, 30 VCC,AVCC VCC,AVCC 7, 20 VCC,AVCC 20 VCC 9 Belegung Extension-Port J4 PIn an J4 ATtiny 12/15 FunktionTiny 12 FunktionTiny 15 Eeprom 24Cxx Funktion 5 n.c. - - 5 SDA 6 n.c. - - 6 SCL 12 3 PB4 (XTAL2) PB3 (ADC2) n.c. - 13 2 PB3 (XTAL1) PB4 (ADC3) n.c. - 14 5 PB0 (MOSI
in „External Interrupt Atmega16“ · Mikrocontroller und Digitale Elektronik ·
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PDF
D810074B.pdf
31 GND GND 8, 22 GND 10 GND 40 10, 30 VCC,AVCC VCC,AVCC 7, 20 VCC,AVCC 20 VCC 9 Belegung Extension-Port J4 PIn an J4 ATtiny 12/15 FunktionTiny 12 FunktionTiny 15 Eeprom 24Cxx Funktion 5 n.c. - - 5 SDA 6 n.c. - - 6 SCL 12 3 PB4 (XTAL2) PB3 (ADC2) n.c. - 13 2 PB3 (XTAL1) PB4 (ADC3) n.c. - 14 5 PB0 (MOSI
in „Probleme beim Einstieg in die wunderbare Welt der Microcontroller“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Evaluationsboard.PDF
31 GND GND 8, 22 GND 10 GND 40 10, 30 VCC,AVCC VCC,AVCC 7, 20 VCC,AVCC 20 VCC 9 Belegung Extension-Port J4 PIn an J4 ATtiny 12/15 FunktionTiny 12 FunktionTiny 15 Eeprom 24Cxx Funktion 5 n.c. - - 5 SDA 6 n.c. - - 6 SCL 12 3 PB4 (XTAL2) PB3 (ADC2) n.c. - 13 2 PB3 (XTAL1) PB4 (ADC3) n.c. - 14 5 PB0 (MOSI
in „Atmega16 UART empfängt nicht - senden klappt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Unterlagen_Pollinboard.pdf
31 GND GND 8, 22 GND 10 GND 40 10, 30 VCC,AVCC VCC,AVCC 7, 20 VCC,AVCC 20 VCC 9 Belegung Extension-Port J4 PIn an J4 ATtiny 12/15 FunktionTiny 12 FunktionTiny 15 Eeprom 24Cxx Funktion 5 n.c. - - 5 SDA 6 n.c. - - 6 SCL 12 3 PB4 (XTAL2) PB3 (ADC2) n.c. - 13 2 PB3 (XTAL1) PB4 (ADC3) n.c. - 14 5 PB0 (MOSI
in „Atmega16 keine Kommunikation“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tmp95fy64f.pdf
O Port 72:I/O port /TO3 Output Timer output 3:Timer 2 or Timer 3 output /INT2 Input Interrupt request pin 2 :Interrupt request pin with rising edge. P73 1 I/O Port 73:I/O port /TI4 Input Timer input 4:Timer 4 input /INT3 Input Interrupt request pin 3 :Interrupt request pin with rising edge. P74 1 I/O Port 74:I/O port /TO5 Output Timer output 5:Timer 4 or Timer 5 output P75 1 I/O Port 75:I/O port /TO7 Output Timer output
in „[S] Tools für TMP95FY64F von Toshiba“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lcd.h
_PORT LCD_PORT /**< port for 4bit data bit 1 */ #define LCD_DATA2_PORT LCD_PORT /**< port for 4bit data bit 2 */ #define LCD_DATA3_PORT LCD_PORT /**< port for 4bit data bit 3 */ #define LCD_DATA0_PIN 4 /**< pin for 4bit data bit 0 */ #define LCD_DATA1_PIN 5 /**< pin for 4bit data bit 1 */ #define LCD_DATA2_PIN 6 /**< pin for 4bit data bit 2 */ #define LCD_DATA3_PIN 7 /**< pin for 4bit data bit 3 */ #define
in „LCD ES DIP204“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lcd.h
_PORT LCD_PORT /**< port for 4bit data bit 1 */ #define LCD_DATA2_PORT LCD_PORT /**< port for 4bit data bit 2 */ #define LCD_DATA3_PORT LCD_PORT /**< port for 4bit data bit 3 */ #define LCD_DATA0_PIN 4 /**< pin for 4bit data bit 0 */ #define LCD_DATA1_PIN 5 /**< pin for 4bit data bit 1 */ #define LCD_DATA2_PIN 6 /**< pin for 4bit data bit 2 */ #define LCD_DATA3_PIN 7 /**< pin for 4bit data bit 3 */ #define
in „20x4 lcd zeigt immer das gleiche an“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATM16_doc2466.pdf
JTAG interface is enabled, Port C the pull-up resistors on pins PC5(TDI), PC3(TMS) and PC2(TCK) will be activated even if a reset occurs. Table 28. Port C Pins Alternate Functions Port Pin Alternate Function PC7 TOSC2 (Timer Oscillator
in „ISP - Pinbelegung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Eng_ET-TFT240320TP-3.2.pdf
TouchScreen.Thedetailofthesespinsareshownbelow. H C H H H H H H H H H I N C R E B B B B B B B B + L O I T V R G L W R D D 3 5 7D 9 1 3 5 7 9S 1 3 5V 7 9 1 3 5 7 9 1 1 1 1 1 2 2 2 2 2 3 3 3 3 0 6 0 2 4 6 8 1 1 1 1 1 2 2 2 2 + S Y 3 3 T X + S D L B B B
in „LCD 240x320 color + touch screen module“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Ateme16.pdf
is enabled, Port C the pull-up resistors on pins PC5(TDI), PC3(TMS) and PC2(TCK) will be activated even if a reset occurs. Table 28. Port C Pins Alternate Functions Port Pin Alternate Function PC7 TOSC2 (Timer Oscillator
in „Atmega16 und spi bus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Ateme16.pdf
is enabled, Port C the pull-up resistors on pins PC5(TDI), PC3(TMS) and PC2(TCK) will be activated even if a reset occurs. Table 28. Port C Pins Alternate Functions Port Pin Alternate Function PC7 TOSC2 (Timer Oscillator
in „Atmega16 und spi bus“ · Mikrocontroller und Digitale Elektronik ·
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Datei
usart_nrf.c
)); MIMajor[j].Property.Port = HM_1000W_A; MIMajor[j + 1].Property.Port = HM_1000W_B; MIMajor[j + 2].Property.Port = HM_1000W_C; MIMajor[j + 3].Property.Port = HM_1000W_D; if((MIMajor[j].Property.Id_In_Phase >= 1) && (MIMajor[j
in „Wechselrichter Hoymiles HM-xxxx 2,4 GhZ Nordic Protokoll?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lcd.h
_PORT LCD_PORT /**< port for 4bit data bit 1 */ #define LCD_DATA2_PORT LCD_PORT /**< port for 4bit data bit 2 */ #define LCD_DATA3_PORT LCD_PORT /**< port for 4bit data bit 3 */ #define LCD_DATA0_PIN 11 /**< pin for 4bit data bit 0 */ #define LCD_DATA1_PIN 12 /**< pin for 4bit data bit 1 */ #define LCD_DATA2_PIN 13 /**< pin for 4bit data bit 2 */ #define LCD_DATA3_PIN 14 /**< pin for 4bit data bit 3 */ #define
in „LCD Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
jupiter-gps_TU30-D160-0x1_.pdf
Hz 10 G 2 -3 Hz 10 500 Hz -4 10 -5 2000 Hz 10 -6 10 0 1 2 3 4 10 10 10 10 10 Vibration Frequency (Hz) C301 Figure 5. SAE Composite Curve (Random Noise) Treat the Jupiter LP GPS receiver as extremely sensitive
in „[V] GPS-Module - Conexant Jupiter TU30-D160 mit 10kHz-Ausgang“ · Markt ·
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Datei
main.c
8000000UL #define F_SCL 8000000UL //#define F_SCL 100000UL // Pinbelegung des Display an verwendete µC-Pins anpassen #define twi_PORT_BIT_DISPLAY_DATA4 4 #define twi_PORT_BIT_DISPLAY_DATA5 5 #define twi_PORT_BIT_DISPLAY_DATA6 6 #define twi_PORT_BIT_DISPLAY_DATA7 7 #define twi_PORT_BIT_DISPLAY_RS 0 #define
in „PWM steuert Helligkeit & Farbe bei LED-Module“ · Projekte & Code ·
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PDF
nRF24LE1_Product_Specification_rev1_6-6439.pdf
2 - P2.2 P2DIR 3 - P2.3 P2DIR 4 - P2.4 P2DIR 5 - P2.5 P2DIR 6 - P2.6 P2DIR 7 - P2.7 Port2 only available on package 48 pin 7×7mm Table 80. P2DIR register Register name: P3DIR Address: 0x96 Reset value:
in „Projekt: Kugelschreiber-Morse“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lcd.h
_PORT LCD_PORT /**< port for 4bit data bit 1 */ #define LCD_DATA2_PORT LCD_PORT /**< port for 4bit data bit 2 */ #define LCD_DATA3_PORT LCD_PORT /**< port for 4bit data bit 3 */ #define LCD_DATA0_PIN 4 /**< pin for 4bit data bit 0 */ #define LCD_DATA1_PIN 3 /**< pin for 4bit data bit 1 */ #define LCD_DATA2_PIN 2 /**< pin for 4bit data bit 2 */ #define LCD_DATA3_PIN 1 /**< pin for 4bit data bit 3 */ #define
in „HMC-16223 (HDD44780 kompatibel) zeigt kein ASCII nur "?", "_" usw“ · Mikrocontroller und Digitale Elektronik ·
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Datei
laptimer.c
mit Null überschreiben #define CURSOR_HOME 0x02 // Coursor an Anfangsposition setzen #define LCD_PORT PORTD // Port an dem das LCD angeschlossen ist #define LCD_DDR DDRD // Datenpins an denen das LCD angeschlossen ist #define LCD_RS PD4 // Ausgang an dem der RS-Pin des LCD hängt #define LCD_EN PD5 /
in „Laptimer Projekt mit Magnetschleife (Atmega8)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
test.c
output pins /* defines all Pins of Port B as output pins, LEDs on STK600, testing purpose only */ DDRB |= (1 << DDB0) | (1 << DDB1) | (1 << DDB2) | (1 << DDB3) | (1 << DDB4) | (1 << DDB5) | (1 << DDB6) | (1 << DDB7); // define input pins /* defines all Pins of Port C as input pins, SW0 to SW6 switches on STK600, testing purpose only */ DDRC &= ~((1 << DDC0) | (1 << DDC1) | (1 << DDC2) | (1 << DDC3) | (1 << DDC4) | (1 << DDC5) | (1 <
in „ISR / INT0 mit ATMEGA168“ · Mikrocontroller und Digitale Elektronik ·
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PDF
doc7707.pdf
DDC7 DDC6 DDC5 DDC4 - DDC2 DDC1 DDC0 DDRC Read/Write R/W R/W R/W R/W R R/W R/W R/W Initial Value 0 0 0 0 0 0 0 0 11.4.6 Port C Input Pins Address – PINC Bit 7 6 5 4 3 2 1 0 PINC7 PINC6 PINC5 PINC4 - PINC2 PINC1 PINC0
in „AVR (AT90USB162) - Sleep Mode und PCINT“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lcd.h
_PORT LCD_PORT /**< port for 4bit data bit 1 */ #define LCD_DATA2_PORT LCD_PORT /**< port for 4bit data bit 2 */ #define LCD_DATA3_PORT LCD_PORT /**< port for 4bit data bit 3 */ #define LCD_DATA0_PIN 0 /**< pin for 4bit data bit 0 */ #define LCD_DATA1_PIN 1 /**< pin for 4bit data bit 1 */ #define LCD_DATA2_PIN 2 /**< pin for 4bit data bit 2 */ #define LCD_DATA3_PIN 3 /**< pin for 4bit data bit 3 */ #define
in „Mega8, Lcd, Fleury“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
= 7 (teilen durch 8) * TQ = 2 * (BRP + 1) / Fosc (=> 1 uS) * * Sync Seg = 1TQ * Prop Seg = (PRSEG + 1) * TQ = 1 TQ * Phase Seg1 = (PHSEG1 + 1) * TQ = 3 TQ * Phase Seg2 = (PHSEG2 + 1) * TQ = 3 TQ * * Bus speed = 1 / (Total # of TQ
in „ATmega644PA und MCP2515 SPI Problem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
pic18f2320.pdf
/RX/DT RC1/T1OSI/CCP2 * 12 17 RC6/TX/CK RC2/CCP1/P1A 13 16 RC5/SDO RC3/SCK/SCL 14 15 RC4/SDI/SDA * RB3 is the alternate pin for the CCP2 pin multiplexing. Note: Pin compatible with 40-pin PIC16C7X devices. DS39599C-page 2
in „I2C-Bus Collision“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet.pdf
changed without notice. Any latest information please preview http;//www.mdtic.com.tw P. 1 2005/6 VER 1.3 MDT2020(DF) 4. Pin Assignment DIP/ SOP/ SKINNY SSOP RTCC 1 28 /MCLR VSS 1 28 /MCLR Vdd 2 27 OSC1 RTCC 2 27 OSC1 N/C 3 26 OSC2 VDD 3 26 OSC2 Vss 4 25 PC7 VDD 4 25 PC7 N/C 5 24 PC6 PA0 5 24 PC6 PA0 6 23
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Datei
main.c
); /*Configure GPIO pin : LD2_Pin */ GPIO_InitStruct.Pin = LD2_Pin; GPIO_InitStruct.Mode = GPIO_MODE_OUTPUT_PP; GPIO_InitStruct.Pull = GPIO_NOPULL; GPIO_InitStruct.Speed = GPIO_SPEED_FREQ_LOW; HAL_GPIO_Init(LD2_GPIO_Port,
in „MAX30102 programmierung“ · Mikrocontroller und Digitale Elektronik ·