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main.c
Abschalten }; struct Relais K1_Ein = { 0, 1, 0 }; struct Relais K1_Aus = { 1, 0, 1 }; struct Relais K2_Ein = { 2, 3, 2 }; struct Relais K2_Aus = { 3, 2, 3 }; struct Relais K3_Ein = { 4, 5, 4 }; struct Relais K3_Aus = { 5, 4, 5 }; struct Relais K4_Ein = { 6, 7, 6 }; struct Relais K4_Aus = { 7, 6, 7 };
in „Interrupt Variable übergeben“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCP23017-Datasheet.pdf
Independently or Together • 28-pin SSOP, 5.30 mm Body Package Types MCP23017 MCP23S17 GPB0 • 1 28 GPA7 GPB0 • 1 28 GPA7 GPB1 2 27 GPA6 GPB1 2 27 GPA6 GPB2 3 26 GPA5 GPB2 3 26 GPA5 GPB3 4 25 GPA4 GPB4 5 24 GPA3 GPB3 4 25 GPA4 6 23 GPA2
in „kennt jemand sich aus mit MC23017 IO-Board“ · Mikrocontroller und Digitale Elektronik ·
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Main.c
LCD_CURSOR_HOME 0x02 #define LCD_SET_DDADR 0x80 #define LCD_DDADR_LINE1 0x00 #define LCD_DDADR_LINE2 0x40 #define LCD_DDADR_LINE3 0x14 //0x10 #define LCD_DDADR_LINE4 0x54 //0x50 #define LCD_PORT PORTD #define LCD_DDR DDRD #define LCD_DB 0 //PD0 #define LCD_RS 4 //PORTD PD4 (1:Data, 0:Command) #define
in „LCD EA W204B-NLW“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
Abschalten }; struct Relais K1_Ein = { 0, 1, 0 }; struct Relais K1_Aus = { 1, 0, 1 }; struct Relais K2_Ein = { 2, 3, 2 }; struct Relais K2_Aus = { 3, 2, 3 }; struct Relais K3_Ein = { 4, 5, 4 }; struct Relais K3_Aus = { 5, 4, 5 }; struct Relais K4_Ein = { 6, 7, 6 }; struct Relais K4_Aus = { 7, 6, 7 };
in „Parsen klappt nur bis zur ersten Stelle.“ · Mikrocontroller und Digitale Elektronik ·
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Fleury_lcd_pollin.h
_PORT LCD_PORT #define LCD_DATA3_PORT LCD_PORT #define LCD_DATA3_PORT LCD_PORT #define LCD_DATA0_PIN 0 #define LCD_DATA0_PIN 4 #define LCD_DATA1_PIN 1 #define LCD_DATA1_PIN 5 #define LCD_DATA2_PIN 2 #define LCD_DATA2_PIN 6 #define LCD_DATA3_PIN 3 #define LCD_DATA3_PIN 7 #define LCD_RS_PORT LCD_PORT #define LCD_RS_PORT PORTB #define LCD_RS_PIN 4 #define LCD_RS_PIN 2 #define LCD_RW_PORT LCD_PORT #define LCD_RW_PORT
in „LCD HD44780 mit Atmega32 ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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lcd_test2.c
Arduino.h> // Standard Arduino header #include <SPI.h> #include <HardwareSerial.h> // Define the serial port using PF0 (TX) and PF1 (RX) HardwareSerial Serial2(PF0, PF1); // Pin definitions for the LCD #define LCD_BL_PWR PA9 #define LCD_VDD_PWR PF_3 // PY32Core! PF_3 IS RIGHT! #define LCD_PIN_RESET PB4 #define LCD_PIN_SCK PB3 #define LCD_PIN_DATA PB5 #define LCD_PIN_CS PA8 #define LCD_PIN_CMD_DATA PA12 #define LCD_PIN_BACKLIGHT PA11 #define LCD_WIDTH 128 #define LCD_HEIGHT 160 // Some RGB565 colors #define LCD_RGB565
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stm32_ub_i2c1.c
-------- I2C1_DEV_t I2C1DEV = { // Remap GPIO_Remap_I2C1, // Pin remap or not // PORT , PIN , Clock {GPIOB,GPIO_Pin_8,RCC_APB2Periph_GPIOB}, // SCL an PB8 {GPIOB,GPIO_Pin_9,RCC_APB2Periph_GPIOB}, // SDA an PB9 }
in „STM32F105 bei I2C Read ein Byte zu viel“ · Mikrocontroller und Digitale Elektronik ·
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firmware-v1.c
// Includes #include <REG52.h> //#include <stdlib.h> // defines #define MOTOR_PORT P1 #define TAKT 11000 #define CHANNELS 3 //Flowerrad sbit motorPin1 = MOTOR_PORT^0 ; sbit motorPin2 = MOTOR_PORT^1 ; sbit motorPin3 = MOTOR_PORT^2 ; sbit motorPin4 = MOTOR_PORT^3 ; //goborad sbit goboPin1 = MOTOR_PORT^4 ; sbit goboPin2 = MOTOR_PORT^5 ; sbit goboPin3 = MOTOR_PORT^6 ; sbit goboPin4 = MOTOR_PORT^7 ; //Lampe sbit lampe = P2^7 ; //Dipschalter sbit dip1 = P0^0; sbit dip2 = P0^1; sbit dip3 = P0^2; sbit
in „Schrittmotor mit ULN2803 und 8052 uC“ · Mikrocontroller und Digitale Elektronik ·
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78f9116.pdf
Information 21 PD78F9116 8. ELECTRICAL CHARACTERISTICS ABSOLUTE MAXIMUM RATINGS (T = 25 C) A ° Parameter Symbol Conditions Rated value Unit Supply voltage V DD -0.5 to +6.5 V V PP -0.5 to +10.5 V Input voltage VI1 Pins other than P50-P53 -0.3 to VD + 0.3 V VI2 P50-P53 (N-ch open drain) -0.3
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ATMega128CAN11_short.pdf
PORTF2 PORTF1 PORTF0 page 85 0x10 (0x30) DDRF DDF7 DDF6 DDF5 DDF4 DDF3 DDF2 DDF1 DDF0 page 85 0x0F (0x2F) PINF PINF7 PINF6 PINF5 PINF4 PINF3 PINF2 PINF1 PINF0 page 86 0x0E (0x2E) PORTE PORTE7 PORTE6 PORTE5 PORTE4 PORTE3 PORTE2 PORTE1 PORTE0 page 85 0x0D (0x2D) DDRE DDE7 DDE6 DDE5 DDE4 DDE3 DDE2 DDE1 DDE0 page 85 0x0C (0x2C) PINE PINE7 PINE6 PINE5 PINE4 PINE3 PINE2 PINE1 PINE0 page 85 0x0B (0x2B) PORTD PORTD7
in „ATmega128CAN11“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATMega128CAN11_short.pdf
PORTF2 PORTF1 PORTF0 page 85 0x10 (0x30) DDRF DDF7 DDF6 DDF5 DDF4 DDF3 DDF2 DDF1 DDF0 page 85 0x0F (0x2F) PINF PINF7 PINF6 PINF5 PINF4 PINF3 PINF2 PINF1 PINF0 page 86 0x0E (0x2E) PORTE PORTE7 PORTE6 PORTE5 PORTE4 PORTE3 PORTE2 PORTE1 PORTE0 page 85 0x0D (0x2D) DDRE DDE7 DDE6 DDE5 DDE4 DDE3 DDE2 DDE1 DDE0 page 85 0x0C (0x2C) PINE PINE7 PINE6 PINE5 PINE4 PINE3 PINE2 PINE1 PINE0 page 85 0x0B (0x2B) PORTD PORTD7
in „ATmega128CAN11“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datenblatt_SAB-C167CR-LM_SiemensSemiconductorGroup.pdf
.. ... ... P7.7 CC31IO CAPCOM2: CC31 Cap.-In/Comp.Out Semiconductor Group 5 C167CR Pin Definitions and Functions (cont’d) Symbol Pin Input (I) Function Number Output (O) P5.0 - 27 - 36 I Port 5 is a 16-bit input-only port with Schmitt-Trigger
in „Ersatz für alten Hitach H8/3337 µP?“ · Mikrocontroller und Digitale Elektronik ·
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main.c
define WAITTIME1 1000 int x= 0; __attribute__((__interrupt__)) static void button1(void) { AVR32_GPIO.port[1].ovrt= (1<<LED3); AVR32_GPIO.port[2].ifrc= (1<<Button1); } __attribute__((__interrupt__)) static void button0(void) { x++; switch (x) { case 1: led5_rot(); break; case 2: led5_gruen(); break; case 3: led5_gelb(); break; case 4: x= 0; led5_aus(); break; } AVR32_GPIO.port[2].ifrc= (1<<Button0); } __attribute__((__interrupt__)) static void timer0(void) { int x; if (AVR32_TC.channel[0].imr & (1<<AVR32
in „AVR32UC3 Timer Interrupt“ · Mikrocontroller und Digitale Elektronik ·
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main.c
#include <avr/io.h> #include <avr/pgmspace.h> #include <avr/eeprom.h> #include <avr/interrupt.h> #include <math.h> #include <stdio.h> #include <stdlib.h> #include <util/delay.h> #include "main.h" //#include "characters.h" #include "max_7456.h" #include "osd_helpers.h" #include "structs.h" #include "global_variables.h" //#include "vnc1l.h" #include "nmea.h" #include <stdio.h> #include <stdlib.h> #define sbi(ADDRESS,BIT) (ADDRESS |= (1<<BIT)) #define cbi(ADDRESS,BIT) (ADDRESS &= ~(1<<BIT)) volatile uint8_t sync = 0; volatile uint8_t sync_ok = 0; volatile uint8_t error = 0; volatile uint8_t channel
in „Wfly Multiswitch 8ch Probleme“ · Mikrocontroller und Digitale Elektronik ·
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A300_PCA9538_NXP.pdf
3 of 28 NXP Semiconductors PCA9538 8-bit I C-bus and SMBus low power I/O port with interrupt and reset 5.2 Pin description Table 2. Pin description Symbol Pin Description SO16, TSSOP16 HVQFN16 A0 1 15
in „I²C-I/O-Expander mit TRI-state Output“ · Mikrocontroller und Digitale Elektronik ·
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main.c
#include <stdio.h> #include "LPC8xx.h" #include "gpio.h" #include "mrt.h" #include "sct.h" #include "lpc8xx_pmu.h" #include "adc.h" #if defined(__CODE_RED) #include <cr_section_macros.h> #include <NXP/crp.h> __CRP const unsigned int CRP_WORD = CRP_NO_CRP ; #endif #define LED_GREEN 3 //#define LED_TEST 3 //#define DELAY 50000 // general parameters #define max_steps 100 #define max_timeout 250 // 5s volatile unsigned char steps[max_steps + 1]; volatile unsigned char current_step=0; volatile unsigned char actual_step=0; volatile unsigned char Random = 0; volatile unsigned int button_timeout_cnt=0;
in „LPC810 SCT-PWM Projekt Fehler“ · Mikrocontroller und Digitale Elektronik ·
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rtl8309sb.pdf
112 Port 1 LEDs are assigned at pins 103~106 Port 2 LEDs are assigned at pins 99~102 Port 3 LEDs are assigned at pins 93, 94, 97, 98 Port 4 LEDs are assigned at pins 89~92 Port 5 LEDs are assigned at pins 83
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TFH-Board_ONE_-_Sys-Doku_-_V2-3.pdf
45219 Essen-Kettwig, www.palmtec.de Messerleiste X4, 96-poliger Systembus Nr.: Reihe a Reihe b Reihe c Nr.: 1 VCC(+5V) VCC(+5V) VCC(+5V) 1 2 Port 1.6 (µC) Port A7 (DIO) Port 1.7 (µC) 2 3 Port 1.4 (µC) Port A6 (DIO) Port 1.5 (µC) 3 4 Port 1.2 (µC) Port A5 (DIO) Port 1.3 (µC) 4 5 Port 1.0 (µC) Port A4 (
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TFH-Board_ONE_-_Sys-Doku_-_V2-3.pdf
45219 Essen-Kettwig, www.palmtec.de Messerleiste X4, 96-poliger Systembus Nr.: Reihe a Reihe b Reihe c Nr.: 1 VCC(+5V) VCC(+5V) VCC(+5V) 1 2 Port 1.6 (µC) Port A7 (DIO) Port 1.7 (µC) 2 3 Port 1.4 (µC) Port A6 (DIO) Port 1.5 (µC) 3 4 Port 1.2 (µC) Port A5 (DIO) Port 1.3 (µC) 4 5 Port 1.0 (µC) Port A4 (
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NEC_78F.pdf
: P70/KR0 to P73/KR3 48-pin products: P70/KR0 to P73/KR3, P74, P75 2.2.8 P120 to P124 (port 12) P120 to P124 function as a 5-bit I/O port. These pins also function as pins for external interrupt request input, potential
in „NEC bzw. Renesas Microcontroller“ · Mikrocontroller und Digitale Elektronik ·
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m8def.inc
= 1 ; Port C Data Direction Register bit 1 .equ DDC2 = 2 ; Port C Data Direction Register bit 2 .equ DDC3 = 3 ; Port C Data Direction Register bit 3 .equ DDC4 = 4 ; Port C Data Direction Register bit 4 .equ DDC5
in „Probleme mit rjmp beim AVR Atmega 8L“ · Mikrocontroller und Digitale Elektronik ·
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Datei
m8def.inc
= 1 ; Port C Data Direction Register bit 1 .equ DDC2 = 2 ; Port C Data Direction Register bit 2 .equ DDC3 = 3 ; Port C Data Direction Register bit 3 .equ DDC4 = 4 ; Port C Data Direction Register bit 4 .equ DDC5
in „AVR8ASM TWI Interrupt“ · Mikrocontroller und Digitale Elektronik ·
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Datei
m8def.inc
= 1 ; Port C Data Direction Register bit 1 .equ DDC2 = 2 ; Port C Data Direction Register bit 2 .equ DDC3 = 3 ; Port C Data Direction Register bit 3 .equ DDC4 = 4 ; Port C Data Direction Register bit 4 .equ DDC5
in „AVR8ASM TWI Interrupt“ · Mikrocontroller und Digitale Elektronik ·
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Datei
m8def.inc
= 1 ; Port C Data Direction Register bit 1 .equ DDC2 = 2 ; Port C Data Direction Register bit 2 .equ DDC3 = 3 ; Port C Data Direction Register bit 3 .equ DDC4 = 4 ; Port C Data Direction Register bit 4 .equ DDC5
in „AVR8ASM TWI Interrupt“ · Mikrocontroller und Digitale Elektronik ·
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Datei
m8def.inc
= 1 ; Port C Data Direction Register bit 1 .equ DDC2 = 2 ; Port C Data Direction Register bit 2 .equ DDC3 = 3 ; Port C Data Direction Register bit 3 .equ DDC4 = 4 ; Port C Data Direction Register bit 4 .equ DDC5
in „AVR8ASM TWI Interrupt“ · Mikrocontroller und Digitale Elektronik ·
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Datei
m8def.inc
= 1 ; Port C Data Direction Register bit 1 .equ DDC2 = 2 ; Port C Data Direction Register bit 2 .equ DDC3 = 3 ; Port C Data Direction Register bit 3 .equ DDC4 = 4 ; Port C Data Direction Register bit 4 .equ DDC5
in „AVR8ASM TWI Interrupt“ · Mikrocontroller und Digitale Elektronik ·
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Datei
m8def.inc
= 1 ; Port C Data Direction Register bit 1 .equ DDC2 = 2 ; Port C Data Direction Register bit 2 .equ DDC3 = 3 ; Port C Data Direction Register bit 3 .equ DDC4 = 4 ; Port C Data Direction Register bit 4 .equ DDC5
in „AVR-Mikrocontrollertechnik-Kursus in Assembler besprechung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
m8def.inc
= 1 ; Port C Data Direction Register bit 1 .equ DDC2 = 2 ; Port C Data Direction Register bit 2 .equ DDC3 = 3 ; Port C Data Direction Register bit 3 .equ DDC4 = 4 ; Port C Data Direction Register bit 4 .equ DDC5
in „AVR-Mikrocontrollertechnik-Kursus in Assembler besprechung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
tft.c
lcd_drivOut, _MC, _MP, _MW, _SC, _EC, _SP, _EP; //extern GFXfont *gfxFont; void setReadDir (void) { PIN_INPUT(D0_PORT, D0_PIN); PIN_INPUT(D1_PORT, D1_PIN); PIN_INPUT(D2_PORT, D2_PIN); PIN_INPUT(D3_PORT, D3_PIN); PIN_INPUT(D4_PORT, D4_PIN); PIN_INPUT(D5_PORT, D5_PIN); PIN_INPUT(D6_PORT, D6_PIN); PIN_INPUT(D7_PORT, D7_PIN); } void setWriteDir (void) { PIN_OUTPUT(D0_PORT, D0_PIN); PIN_OUTPUT(D1_PORT, D1_PIN); PIN_OUTPUT(D2_PORT, D2_PIN); PIN_OUTPUT(D3_PORT, D3_PIN); PIN_OUTPUT(D4_PORT, D4_PIN); PIN_OUTPUT(D5_PORT
in „4DLCD-32QA mit STM32 initialisieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CS8415A_data.pdf
13 U Data Buffer Control 0 0 0 0 0 0 DETUI 0 14-1D Q sub-code Data 1E OMCK/RMCK Ratio ORR7 ORR6 ORR5 ORR4 ORR3 ORR2 ORR1 ORR0 20-37 C or U Data Buffer 7F ID and Version ID3 ID2 ID1 ID0 VER3 VER2 VER1 VER0 Table 1. Control Register Map Summary 7.1 Memory Address Pointer (MAP) 7 6 5 4 3 2 1 0 INCR MAP6
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ATmega2560.xml
<MEM_ADDR>$2C</MEM_ADDR> <PINE0_MASK>0x01</PINE0_MASK> <PINE1_MASK>0x02</PINE1_MASK> <PINE2_MASK>0x04</PINE2_MASK> <PINE3_MASK>0x08</PINE3_MASK> <PINE4_MASK>0x10</PINE4_MASK> <PINE5_MASK>0x20</PINE5_MASK> <PINE6_
in „Eclipse AVR win32 komplett?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
_delay_us( T2_TWI/4 ); // Delay for T2TWI if TWI_STANDARD_MODE #endif /* Generate Start Condition */ PORT_USI &= ~(1<<PIN_USI_SDA); // Force SDA LOW. _delay_us( T4_TWI/4 ); PORT_USI &= ~(1<<PIN_USI_SCL); // Pull SCL
in „Hilfe! Mein AVR USI Master (I2C) mag nicht mehr :(“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BeagleBoneBlack_Rev_C.pdf
[3] 7 R7 TIMER4 gpmc_advn_a timer4 gpio2[2] 8 T7 TIMER7 gpmc_oen_re timer7 gpio2[3] 9 T6 TIMER5 gpmc_be0n_c timer5 gpio2[5] 10 U6 TIMER6 gpmc_wen timer6 gpio2[4] 11 R12 GPIO1_13 gpmc_ad13 lcd_data18 mmc1
in „BeagleboneBlack: Sensor über I2C“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
PB2 #define servo1 PB1 #define pin_taster PB0 /* PORT C */ #define poti1 PC7 #define reset PC6 #define pinnchen PC5 //#define PC4 //#define PC3 #define sound1 PC2 #define poti3 PC1 #define poti2 PC0 /* PORT D */ #define ziel_led PD7 #define pump1 PD6 #define pump2 PD5 #define R_LED4 PD4 #define R_LED3 PD3 #define R_LED2 PD2 #define sound2 PD1 #define R_LED1 PD0 volatile char f_200ms; volatile char f_100ms; unsigned char servo; void port_init(void) { PORTB = 0xF1
in „ATmega48 Hardware-PWM - Zu kurzer Servoweg“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
PB2 #define servo1 PB1 #define pin_taster PB0 /* PORT C */ #define poti1 PC7 #define reset PC6 #define pinnchen PC5 //#define PC4 //#define PC3 #define sound1 PC2 #define poti3 PC1 #define poti2 PC0 /* PORT D */ #define ziel_led PD7 #define pump1 PD6 #define pump2 PD5 #define R_LED4 PD4 #define R_LED3 PD3 #define R_LED2 PD2 #define sound2 PD1 #define R_LED1 PD0 volatile char f_100ms; void port_init(void) { PORTB = 0xF1; DDRB = 0x0E; PORTC = 0x43; DDRC = 0xBC;
in „ATmega48 Hardware-PWM - Zu kurzer Servoweg“ · Mikrocontroller und Digitale Elektronik ·
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Datei
BLDC.c
= GPIO_Pin_3 | // IN Phase A GPIO_Pin_4 | // IN Phase B GPIO_Pin_5 ; // IN Phase C GPIO_Init(GPIOB, &GPIO_InitDef); } // Signale von den Komparatoren (NULL-A, NULL-B, NULL-C) void initBEMF(void) { // für Motoren
in „BLDC Regler Problem auf Basis STM32F103“ · Mikrocontroller und Digitale Elektronik ·
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rpc_f_2.pdf
; ; ;-------------------------------------------------------------------- ; ; HOST PROCESSOR PIC16C73 or similar ; RPC EQU 06 ;USE PORT B ON PIC ; ; ** Bit assignments for RPC PORT ** ; D7 EQU 7 ;Bi-Dir D6 EQU 6 ;Bi-Dir D5 EQU 5 ;Bi-Dir D4 EQU 4 ;Bi-Dir TXA EQU 3 ;INPUT TXR EQU 2 ;OUTPUT RXA EQU 1
in „Problem mit BIM2 und RPC Funkübertragung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ch32v003.c
#include "ch32v00x.h" #include <stdint.h> #define TMP101_ADDR 0x48 // I2C-Adresse des TMP101 Sensors (Standard) #define I2C_SPEED 100000 // I2C Geschwindigkeit (100kHz) // GPIO-Pins für 7-Segment-Anzeige #define SEG_PORT GPIOA #define SEG_A GPIO_Pin_0 #define SEG_B GPIO_Pin_1 #define SEG_C GPIO_Pin_2 #define SEG_D GPIO_Pin_3 #define SEG_E GPIO_Pin_4 #define SEG_F GPIO_Pin_5 #define SEG_G GPIO_Pin_6 #define SEG_DP GPIO_Pin_7 #define DIGIT_PORT GPIOC #define DIGIT_1 GPIO_Pin_0 #define DIGIT
in „Copilot für MCUs“ · Mikrocontroller und Digitale Elektronik ·
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PDF
EN_UM_N32G45x_Series_User_Manual_V3.pdf
PG2 PA4 I2C2_SDA PB11 PG3 PA5 I2C2_SMBA PB12 7.2.5.12.3 I2C3 pin remapping See alternate remapping configuration register (AFIO_RMP_CFG3). Table 7-30 I2C3 pin remapping Alternate function I2C3_RMP[1:0] = 00 I2C3_RMP[1:0] = 10 I2C3_RMP[1:0] = 11 I2C3_SCL PC0 PF4 PC4 I2C3_SDA PC1 PF5 PC5 7.2.5.12.4 I2C4 pin remapping See alternate remapping configuration register (AFIO_RMP_CFG3). Table 7-31 I2C4 pin remapping
in „ALLPOWERS S2000 PRO Reparaturhilfe“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
des Pins 7 von J19, ist Port C Pin 29___Enable AVR32_GPIO.port[2].gpers = 1 << AVR32_PIN_PC29; AVR32_GPIO.port[2].oders = 1 << AVR32_PIN_PC29; AVR32_GPIO.port[2].ovrc = 1 << AVR32_PIN_PC29; //____Initialisierung des Pins 5 von J19, ist Port C Pin 10___Richtung AVR32_GPIO.port[2].gpers = 1 << AVR32_PIN_PC10; AVR32_GPIO.port[2].oders = 1 << AVR32_PIN_PC10; AVR32_GPIO.port[2].ovrc = 1 << AVR32_PIN_PC10; //____Initialisierung
in „Nanotec Schrittmotor dreht nur in eine Richtung!!“ · Mikrocontroller und Digitale Elektronik ·
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usart_nrf.c
].Property.Port = MI_1000W_A; MIMajor[j + 1].Property.Port = MI_1000W_B; MIMajor[j + 2].Property.Port = MI_1000W_C; MIMajor[j + 3].Property.Port = MI_1000W_D; if(Dtu3Detail.Property.PortNum >= PORT_LEN) { Dtu3Detail.Property.PortNum
in „Wechselrichter Hoymiles HM-xxxx 2,4 GhZ Nordic Protokoll?“ · Mikrocontroller und Digitale Elektronik ·
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LCD.c
char buffer[20]; ltoa (data,buffer,10); LCD_String(buffer); } void LCD_Busy(void) { volatile uint8_t C = 0, RS = 0; RS = LCD_PIN & (1 << LCD_RS); LCD_DDR &= ~((1 << LCD_D7 ) | (1 << LCD_D6 ) |(1 << LCD_D5 ) | (1 << LCD_D4 ) ); // D4 - D7 als Eingang LCD_PORT |= ((1 << LCD_D7 ) | (1 << LCD_D6 ) |(1 << LCD_D5 ) | (1 << LCD_D4 ) ); // D4 - D7 setzen LCD_PORT &= ~(1 << LCD_RS ); LCD_PORT |= (1 << LCD_RW ); // RW setzen zum Daten lesen do { LCD_PORT |= (1 << LCD_EN ); // Daten stehen an _delay_us(1); C = LCD_PIN
in „Pollin Evaluation Addon-board v1.0 LCD Ansteuerung mit Arduino Problem“ · Mikrocontroller und Digitale Elektronik ·
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Datei
glcd.c
PINB //display control connections: #define LCD_C_PORT PORTD #define LCD_C_DDR DDRD #define LCD_C_PIN PIND #define LCD_RESET 6 #define LCD_WR 2 #define LCD_RD 3 #define LCD_CE 4 #define LCD_CD 5 #define LCD_FS 7 //cursor pattern: #define HIGH_1 0xA0
in „compileroptimierung?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet.pdf
4 5 6 7 8 1 2 3 4 5 6 7 8 9 1 1 1 1 1 1 1 1 1 1 2 2 2 2 2 2 2 2 2 2 3 3 3 3 3 3 3 3 3 0 # # # # # # # # # # # # # # 3 2 1 0 # # # 7 6 5 4 N C X A T A UI P D E C 0 P A D G L CS L Q R D D D D C E T CP S K
in „(Windows/Winbond) CPU Temperatur auslesen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main_.c
/************************************************************************/ /* */ /* Debouncing 8 Keys */ /* Sampling 4 Times */ /* With Repeat Function */ /* */ /* Author: Peter Dannegger */ /* danni@specs.de */ /* */ /************************************************************************/ /* ** Tastenentprellung mit Unterscheidung lang/kurz/Repeat ** Taste muss für 4*5ms stabil sein ** mit Timer 1 ** * HildeK, 27.12.20 7 LEDs, 8 Tasten - Unterscheidung lang/kurz/repeat entfernt * Buzzermode, Selection-Mode, individuelle Auswahl-Mode * Buzzer: erste gedrückte Taste sperrt die anderen (kritisch bei gleichzeitigem
in „Atmega Taster einlesen und in Register schreiben funktioniert nicht wie geplant“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAXQ2000.pdf
PIN 100-PIN PORT ALTERNATE FUNCTION 66, 67, 97, 98, P1.7; 1 66 97 P1.0 SEG8 1–8 68; 1–5 3–8 SEG8– 2 67 98 P1.1 SEG9 SEG15 3 68 3 P1.2 SEG10 4 1 4 P1.3 SEG11 5 2 5 P1.4 SEG12 6 3 6 P1.5 SEG13 7 4 7 P1.6
in „Quo vadis MAXQ 2000“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Programm_Option_-Wl-v_Ausgabe_.txt
\\portable\\packages\\DxCore\\hardware\\megaavr\\1.5.11\\cores\\dxcore\\UART3.cpp" -o "C:\\Users\\Worker\\AppData\\Local\\Temp\\arduino_build_360282\\core\\UART3.cpp.o" "C:\\avrToolchain\\avr-gcc-8.5.0_mingw32_binutils2.42_avrLibc2.2GitHub/bin/avr-g++"
in „GCC v14 Release“ · Mikrocontroller und Digitale Elektronik ·
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Datei
rdr.c
an D5 (Eingang) echte Ausg nge: C0 LED (Aktivit t, bzw. Fehlerblinken) C1 /OE (zur Sicherheit) C2 Motor ( ber drei parallele Treiberkan le an Pin 25) C3 clock (Schieberegister) C4 data (Schieberegister) C5 rck (Daten bernahme Schieberegister) C6 Spalte 18 ( ber Treiber auf Pin 5) C7 Spalte 17 ( ber Treiber auf Pin 4) */ #define MASKE_R (1<<PD7) #define MASKE_S (1<<PD6) #define MASKE_T (1<<PD5) #define MASKE_GESAMT (MASKE_R | MASKE_S | MASKE_T
in „Druckelement Epson Model-620 ansteuern?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
R8C22-23_Group_Hardware_Manual.pdf
. Table 5.2 Pin Functions after Reset Pin Name Pin Functions P0, P1, P2 Input port P3_0, P3_1, P3_3 to P3_5, P3_7 Input port P4_2 to P4_7 Input port P6 Input port b15 b0 0000h Data register (R0) 0000h Data register
in „Fragen zu Renesas µC (R5F2122CKFP)“ · 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 = PB10 Basisstation (PTX) Display-Rechner (dieser hier!) =========================================================================== Daten an Display senden ACK Pipe 0 "dclie" <---------2---------------------------| TX-Pipe "dclie" ----------1-----------> Pipe 1: "dclie" Display fordert Daten bei Basis an ACK Pipe 0 "dclie" -----------2----
in „NRF24L01+ auf STM32F103: Ich weiss nicht mehr weiter :-(“ · Mikrocontroller und Digitale Elektronik ·