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Datei
ADXL345_I2C.c
/ #include "ADXL345_I2C.h" void i2c_init() { SDAPORT&= (1<<SDA); SCLPORT&= (1<<SCL); SOFT_I2C_SDA_HIGH; SOFT_I2C_SCL_HIGH; } void i2c_start() { SOFT_I2C_SCL_HIGH; H_DEL; SOFT_I2C_SDA_LOW; H_DEL; } void i2c_stop() { SOFT_I2C_SDA_LOW; H_DEL; SOFT_I2C_SCL_HIGH; Q_DEL; SOFT_I2C_SDA_HIGH; H_DEL; } uint8_t
in „I2C-Bibliothek für ATMEGA88A“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ad9854.c.c
ad9854_reset(); } void ad9854_write( unsigned char addr, unsigned char data ) { PORTC |= _WR; // WR high set_addr( addr ); PORTC &= ~_WR; // WR low set_data( data ); PORTC |= _WR; // WR high } #define SCLK_IN 0x04 #define CS_IN 0x08 #define SDA_IN 0x10 #define PIN_LOW 0 #define PIN_HIGH 1 #define PIN_UNDEFINED
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93LC46.pdf
Industrial (I): T40°C to +85°C Param. Sym Characteristic Min Typ Max Units Conditions No. D1 VIH1 High-level input voltage 2.0 — VCC +1 V VCC ≥ 2.7V VIH2 0.7 CC — VCC +1 V VCC ≥ 2.7V D2 VIL1 Low-level input voltage -0.3 — 0.8 V VCC ≥ 2.7V VIL2 -0.3 — 0.2 CC V VCC ≥ 2.7V D3 VOL1 Low-level output voltage
in „Probleme mit SPI EEPROM“ · Mikrocontroller und Digitale Elektronik ·
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AN255_I2C__SMBus_REPEATERS_HUBS_AND_EXPANDERS.pdf
to contend on the next high to low transition. If the current source of the LTC4300-1 gets turned on when the PCA9515 is driving a low, it will remain on because the pin does not go high. The current supplied by the current source
in „SPI oder TWI“ · Mikrocontroller und Digitale Elektronik ·
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AN255.pdf
to contend on the next high to low transition. If the current source of the LTC4300-1 gets turned on when the PCA9515 is driving a low, it will remain on because the pin does not go high. The current supplied by the current source
in „50 X LM75 an ATMEGA16?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ARD_Rheinturm_Schaltplan.pdf
(tenSecond);i++)digitalWrite(tenSecond[i],s10<=i?LOW:HIGH); //ZEHNERBAND SEKUNDEN digitalWrite(A0, LOW);//Masse an Sekunden delay(1); //SHOWTIME SEKUNDEN digitalWrite(A0, HIGH); for(i=0;i<sizeof(oneSecond);i++)digitalWrite(oneSecond[i],m1<=i?LOW:HIGH); //EINERBAND MINUTEN for(i=0;i<sizeof(tenSecond);i++)digitalWrite(tenSecond[i],m10<=i?LOW:HIGH); //ZEHNERBAND MINUTEN digitalWrite(A1, LOW);//Masse an MINUTEN delay(1); //SHOWTIME MINUTEN digitalWrite(A1, HIGH); for(i=0;i<sizeof(oneSecond);i++)digitalWrite(oneSecond[i],h1<=i?LOW:HIGH); /
in „Rheinturm Uhr Startzeit Problem“ · Mikrocontroller und Digitale Elektronik ·
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HV_257.pdf
junction diode is made available to help monitor the die temperature. Typical Application Circuit High Voltage HV257 Power Supply HVOUT0 VSIG DAC HV OUT y Low Voltage Power Supply HV OUT x x A HV 3 y Micro 0 OUT Processor A1 32 High Voltage Low Voltage MEMS A 2 Channel OpAmp Array Array A 3 Select E
in „Sockel und C_Load“ · Mikrocontroller und Digitale Elektronik ·
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RF12B-IC-2.pdf
integrated (low BOM, easy design-in) z No alignment required in production z Fast-settling, programmable, high-resolution PLL synthesizer z Fast frequency-hopping capability z High bit rate (up to 115.2 kbps in digital
in „Funk SI4420 kein Empfang“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Test4.c
werden soll */ // PORT_CS &= ~(1<<P_CS); // CS wieder Low löschen // /CS des MCP2515 auf Low ziehen mcp2515_CS_LOW(channel); if (address == 0x00) { spi_putc(SPI_RTS | 0x01); } else { spi_putc(SPI_RTS | address); } // PORT_CS |= (1<<P_CS); // CS auf High löschen // /CS Leitung wieder freigeben mcp2515_CS_HIGH(channel); return 1; } unsigned char mcp2515_read_rx_status(unsigned char channel) { unsigned char data; // /CS des MCP2515 auf Low ziehen mcp2515_CS_LOW(channel); spi_putc(SPI_RX_STATUS); data = spi_putc
in „MCP2515 Botschaften Empfangen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Test4.c
werden soll */ // PORT_CS &= ~(1<<P_CS); // CS wieder Low löschen // /CS des MCP2515 auf Low ziehen mcp2515_CS_LOW(channel); if (address == 0x00) { spi_putc(SPI_RTS | 0x01); } else { spi_putc(SPI_RTS | address); } // PORT_CS |= (1<<P_CS); // CS auf High löschen // /CS Leitung wieder freigeben mcp2515_CS_HIGH(channel); return 1; } unsigned char mcp2515_read_rx_status(unsigned char channel) { unsigned char data; // /CS des MCP2515 auf Low ziehen mcp2515_CS_LOW(channel); spi_putc(SPI_RX_STATUS); data = spi_putc
in „MCP2515 Interuptpin zurücksetzten“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AV02-0699EN.pdf
15.4 17.1 18.7 mA All pixels ON, HCMS-29XX (Other Colors) 14.0 15.9 17.1 mA Average value per pixel HIGH Level InputVoltage V ih 2.0 V 4.5V <V LOGIC < 5.5V 0.8V V 3.0V <V < 4.5V LOGIC LOGIC LOW Level InputVoltage V il 0.8 V 4.5V <V LOGIC < 5.5V 0.2V V 3.0V <V < 4.5V LOGIC LOGIC HIGH Level OutputVoltage
in „Micro LED Dot-Matrix gesucht“ · Mikrocontroller und Digitale Elektronik ·
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VCO_designs.pdf
acteristic has a crucial impact on phase noise as well.With a means that the resonant frequency should be higher than the higher capacitance ratio, the varactor’s coupling to the resonator oscillation frequency. is reduced, resulting in lower resonator current.Therefore, a Note that the resonator current circulates
in „RF vervielfacher und Verstärker“ · HF, Funk und Felder ·
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MC33153-D.pdf
otherwise noted.) A Characteristic Symbol Min Typ Max Unit LOGIC INPUT Input Threshold Voltage V High State (Logic 1) V IH − 2.70 3.2 Low State (Logic 0) V IL 1.2 2.30 − Input Current mA High State (IH= 3.0 V) IH − 130 500 Low State (V = 1.2 V) I − 50 100 IL IL DRIVE OUTPUT Output Voltage V Low State Sink= 1.0 A) VOL − 2.0 2.5 High State (I = 500 mA) V 12 13.9 − Source OH Output Pull−Down Resistor R − 100 200 kW PD FAULT OUTPUT Output Voltage V Low State Sink= 5.0 mA) VFL − 0.2 1.0 High State (I = 20 mA) V 12 13.3 − Source FH
in „Treiber für MOSFET Brücke mit eingebauten Kurzschlußschutz gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Random.asm
ldi Temp, 15 rcall ROLn ldi r30, Low(Zwischenwert) ldi r31, High(Zwischenwert) rcall AddToRAM // Eingangswert holen, dann Rotate Right 21 mal, dann sub von Zwischenwert ldi r30, Low(Eingangswert) ldi r31, High(Eingangswert) rcall LoadFromRAM
in „Einfacher Zufallsgenerator“ · Mikrocontroller und Digitale Elektronik ·
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Datei
dram.asm
out Port_Steuer, Temp1 ; Hier: RAM_RAS high out Port_Steuer, Temp2 ; Hier: RAM_RAS low out Port_Steuer, Temp1 ; Hier: RAM_RAS high out Port_Steuer, Temp2 ; Hier: RAM_RAS low out Port_Steuer, Temp1 ; Hier: RAM_RAS high out Port_Steuer, Temp2 ; Hier: RAM_RAS low out Port_Steuer, Temp1 ; Hier: RAM_RAS high dec Temp3 ; Temp3 dekrementieren brne refreshloop ;Wenn Temp3 != 0, wiederhole sbi Port_Steuer, RAM_CAS ; CAS wieder high out SREG, SREG2 ; SREG zurücksichern
in „LPC2292 und DRAM“ · Mikrocontroller und Digitale Elektronik ·
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Analysis_of_the_Sallen-Key_Architecture_sloa024b__TI.pdf
gives a general overview and derivation of the transfer function, followed by detailed discussions of low-pass and high-pass filters, including design information, and ideal and non-ideal operation. To illustrate the limitations of real circuits, data on low-pass and high-pass filters using the Texas Instruments
in „Bandpass und Phasenverschiebung“ · Mikrocontroller und Digitale Elektronik ·
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MC9S12XEP100RMV1.pdf
-14. Read Access (n–1 Cycles) Access #0 Access #1 Bus cycle -> ... 1 2 3 ... n ... ECLK phase ... high low high low high low ... high low ... ADDR[22:20] / ACC[2:0] ... acc 0 000 000 ... acc 1 ... ADDR[19:16] / IQSTAT[3:0] ... addr 0 iqstat-1 addr 0 iqstat 0 addr 0 0000 ... addr 1 0000 ... ADDR[15:0]
in „TFT parallel ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Main.asm
6 ;0,0,0,0,0,0 DCF77 Zeit-Zwischenspeicher DCF77SHIFT: .BYTE 1 ;1 DCF77 Shifter DCF77TAL: .BYTE 1 ;LOW(NEWTIME) DCF77 Pointer auf NEWTIME Low DCF77TAH: .BYTE 1 ;HIGH(NEWTIME) DCF77 Pointer auf NEWTIME High HSEK: .BYTE 1 ;RTC verwaltet BCD 1/100 Sekunde SEK: .BYTE 1 ;RTC verwaltet BCD Sekunde MIN: .BYTE
in „Problem mit INT2 am Atmega 32“ · Mikrocontroller und Digitale Elektronik ·
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TMP101.pdf
represented in Figure 4. 1 0 11 Bits (0.125°C) 160ms Table 9 and Table 10 describe the format for theHIGH and T registers. Power-up Reset values for T and 1 1 12 Bits (0.0625°C) 320ms LOW HIGH T LOW are: THIGH = 80°C and T LOW = 75°C. The format of the data for T HIGH and T LOW is the same as for the OS
in „TMP101 kein ordentlicher 5volt pegel“ · Mikrocontroller und Digitale Elektronik ·
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Datei
com.c
include "lcd.h" #define SCL RC3 #define SDA RC4 //Macros for I2C - //SDA (RC4) and SCL(RC3) #define SDA_LOW() (TRISC=TRISC & 0b11101111) #define SDA_HIGH() (TRISC=TRISC | 0b00010000) #define SCL_LOW() (TRISC=TRISC & 0b11110111) #define SCL_HIGH() (TRISC=TRISC | 0b00001000) #define I2C_IDLE() (TRISC=TRISC
in „PIC16F73 I2C Master in C“ · Mikrocontroller und Digitale Elektronik ·
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Datei
uhr.asm
---------------- ;--------------Initialisierung von Ports, Timer,...-------------- init: ldi temp, LOW(RAMEND) ;Stackpointer out SPL, temp ldi temp, HIGH(RAMEND) out SPH, temp ldi temp,( 1<<WGM12 | 1<<CS10 ) ; Timer1 out TCCR1B, temp ldi temp, high( xtal / debounce - 1 ) out ocr1ah, temp ldi temp, low
in „brne funktioniert auf Atmega8 nicht, aber im AVRStudio“ · Mikrocontroller und Digitale Elektronik ·
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Datei
IntClock.inc
the carry-flag (important) ijmp Weekdays: ldi ZH,high(Montag<<1) ;case: 0 ldi ZL,low(Montag<<1) nop rjmp _nextEnd ldi ZH,high(Dienstag<<1) ;case: 1 ldi ZL,low(Dienstag<<1) nop rjmp _nextEnd ldi ZH,high(Mittwoch<<1) ;case: 2 ldi ZL,low(Mittwoch<<1) nop rjmp _nextEnd ldi ZH,high(Donnerstag<<1) ;case: 3 ldi ZL,low(Donnerstag<<1) nop rjmp _nextEnd ldi ZH,high(Freitag<<1) ;case: 4 ldi ZL,low(Freitag<<1) nop rjmp _nextEnd ldi ZH,high(Sonnabend<<1) ;case: 5 ldi ZL,low(Sonnabend<
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Datei
IntClock.inc
the carry-flag (important) ijmp Weekdays: ldi ZH,high(Montag<<1) ;case: 0 ldi ZL,low(Montag<<1) nop rjmp _nextEnd ldi ZH,high(Dienstag<<1) ;case: 1 ldi ZL,low(Dienstag<<1) nop rjmp _nextEnd ldi ZH,high(Mittwoch<<1) ;case: 2 ldi ZL,low(Mittwoch<<1) nop rjmp _nextEnd ldi ZH,high(Donnerstag<<1) ;case: 3 ldi ZL,low(Donnerstag<<1) nop rjmp _nextEnd ldi ZH,high(Freitag<<1) ;case: 4 ldi ZL,low(Freitag<<1) nop rjmp _nextEnd ldi ZH,high(Sonnabend<<1) ;case: 5 ldi ZL,low(Sonnabend<
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Datei
Uhr.c
(High) } if (s1 == 4) { PORTA &= ~ (1 << PA0)|(1 << PA2)|(1 << PA3); //Zustand PA0 PA2 PA3 definieren (low) PORTA |= (1 << PA1); //Zustand PA1 definieren (High) } if (s1 == 5) { PORTA &= ~ (1 << PA0)|(1 <
in „Binär UHR Programmcode in AVR-GCC“ · Mikrocontroller und Digitale Elektronik ·
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Datei
LED_Matrix_Fehler.ino
displayNum(byte rowNum,int colNum) { int j; byte temp = rowNum; for(j=2;j<6;j++) { digitalWrite(j, LOW); } digitalWrite(row5, LOW); digitalWrite(row6, LOW); digitalWrite(row7, LOW); digitalWrite(row8, LOW); for(j=6;j<14;j++) { digitalWrite(j, HIGH); } switch(colNum) { case 1: digitalWrite(col1, LOW);
in „Definieren von variable im laufenden Programm“ · Softwareentwicklung ·
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Datei
LED_Matrix_Fehler.ino
displayNum(byte rowNum,int colNum) { unsigned int j; byte temp = rowNum; for(j=2;j<6;j++) { digitalWrite(j, LOW); } digitalWrite(row5, LOW); digitalWrite(row6, LOW); digitalWrite(row7, LOW); digitalWrite(row8, LOW); for(j=6;j<14;j++) { digitalWrite(j, HIGH); } switch(colNum) { case 1: digitalWrite(col1, LOW);
in „2 stellige Zahl Seriell übertragen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
souce_code_esrM.txt
(hereinafter referred to step2) step1: ldi z1, low (porog1); Writes low byte porog1 in z1 ldi z2, high (porog1); Sets high byte porog1 in z2 ldi z3, 0, 0, z3 Sets cp b1, z1; Comparison b2 + b1 with z2 + z1 with carry cpc b2, z2; cpc b3, z3; brsh step4
in „Lcd zweite zeile wird nicht angesprochen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
esr_messgeraet.asm
(hereinafter referred to step2) step1: ldi z1, low (porog1); Writes low byte porog1 in z1 ldi z2, high (porog1); Sets high byte porog1 in z2 ldi z3, 0, 0, z3 Sets cp b1, z1; Comparison b2 + b1 with z2 + z1 with carry cpc b2, z2; cpc b3, z3; brsh step4
in „Lcd zweite zeile wird nicht angesprochen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Perfektium-Modbus-V1.0.pdf
06H. (1) Read data command (Function Code 04H) Read data downstream frame format Device Function High byte Low byte Data Data CRC CRC communication code of of field field Check Check address (04H) Start start length length low high byte (0~247)06H address address high byte low byte of data of data byte
in „CRC Prüfsumme für BMS“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Optrex_LCD_F-51320.asm
*2) ldi ZH,High(Optrex*2) mov XL, ZL mov XH, ZH lpm temp2, Z Optrex_aus_: dec temp2 breq exit1 adiw XL, 1 mov ZL, XL mov ZH, XH lpm ldi temp, 6 mov temp1, r0 mul temp1, temp ldi ZL, LOW(Font*2) ldi ZH, HIGH(Font*2)
in „Pollin Grafik LCD-Modul OPTREX F-51320AE“ · Mikrocontroller und Digitale Elektronik ·
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MAX9271.pdf
Set GPIO1 low. 1 1 Set GPIO1 high. 0 Set GPO low. D0 SETGPO 0 1 Set GPO high. D[7:6] — 00 Reserved. 00 D5 GPIO5IN 0 GPIO5 is low 1 1 GPIO5 is high. (read only) 0 GPIO4 is low. D4 GPIO4IN 1 1 GPIO4 is high. (read only) 0 GPIO3 is low. 1 D3 GPIO3IN 0x10 1 GPIO3 is high. (read only) 0 GPIO2 is low. 1 D2 GPIO2IN (read only) 1 GPIO2 is high. 0 GPIO1 is low. 1 D1 GPIO1IN 1 GPIO1 is high. (read only) D0 GPO_L 0 GPO is set low. 0 1 GPO
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MAX4617-MAX4619.pdf
19-1502; Rev 2; 3/02 High-Speed, Low-Voltage, CMOS Analog Multiplexers/Switches M ________________General Description ____________________________Features A The MAX4617/MAX4618/MAX4619 are high-speed, low- Fast Switching Times
in „CMOS analog multiplexer MAX4619“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LC72130.pdf
charge pump output When the frequency generated by dividing the local oscillator frequency by N is higher than the reference PD1 19 Charge pump PD2 20 output frequency, a high level will be output from the PD pin. Similarly, when that frequency is lower, a low level will be output. The PD pin goes to the
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Datei
avr-video-8-8.asm
<1) ldi XH,HIGH(Charbuf) ldi XL, LOW(Charbuf) ldi mpb,84 inil1: lpm mpc,Z+ st X+,mpc dec mpb brne inil1 ;RSR232 Input Buffer löschen ldi XH,HIGH(inbuf) ldi XL, LOW(inbuf) ldi mpa,64 inbufc: st X+,zero dec mpa brne
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Datei
problem.asm
multiplicand low byte ; B =r17 ;multiplicand high byte ; C =r18 ;multiplier low byte ; D =r19 ;multiplier high byte ; C =r18 ;result byte 0 (LSB) ; D =r19 ;result byte 1 ; E =r20 ;result byte 2 ; F =r21 ;result byte 3 (MSB) ; G =r22 ;loop counter ;***** Code MUL16U: clr F ;clear 2 highest bytes of result clr E ldi G,16 ;init loop counter lsr D ror C m16u_1: brcc noad8 ;if bit 0 of multiplier set add E,A ;add multiplicand Low to byte 2 of res adc F,B ;add multiplicand high to byte 3
in „Astudio oder Assembler springt bei Call 1 Word zu weit???“ · Mikrocontroller und Digitale Elektronik ·
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PDF
6N137.pdf
an internal pull up resistor. 2 4. tlevel on the LOW to HIGH transition of the output voltage pulse.HIGH to LOW transition of the input current pul3e to the 1.5 V 5. t -Propagation delay is measured from the 3.75 mA level on the LOW to HIGH transition
in „Optokoppler mit TTL/Schmitt-Trigger?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
HCPL-263.pdf
an internal pull up resistor. 2 4. tlevel on the LOW to HIGH transition of the output voltage pulse.HIGH to LOW transition of the input current pul3e to the 1.5 V 5. t -Propagation delay is measured from the 3.75 mA level on the LOW to HIGH transition
in „Logic Gate Optocoupler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
A500_6N137.pdf
an internal pull up resistor. 2 4. tlevel on the LOW to HIGH transition of the output voltage pulse.HIGH to LOW transition of the input current pul3e to the 1.5 V 5. t -Propagation delay is measured from the 3.75 mA level on the LOW to HIGH transition
in „Optokoppler Verstärkung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Main.asm
temp out sreg, temp pop temp reti anzeige2: ldi temp1, $80 rcall lcd_command ; sende Kommando ldi ZL, LOW(text4*2) ; Adresse des Strings in den ldi ZH, HIGH(text4*2) ; Z-Pointer laden rcall lcd_flash_string ; Unterprogramm gibt String aus ldi temp1, $A8 rcall lcd_command ; sende Kommando ldi ZL, LOW(text1
in „Atmega stürtzt nach ca. 15 min ab“ · Mikrocontroller und Digitale Elektronik ·
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fx614.pdf
and the CLK input is sampled. If the CLK input is low at this time the RDYN pin is pulled low and the first received bit is output on the RXD pin. The CLK pin should then be pulsed high 9 times, the first 8 high to low transitions will be used by the device
in „FX614 ,TCM3105 Bezugsquellen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Test-02-09.c
Timer-Daten-Register Timer1 High auf 0 setzen TCNT1L=0; //Timer-Daten-Register Timer1 Low auf 0 setzen } if (PINB & (1 << PB0)||(PINC & (1 << PC2))) //wenn PB0 oder PC2 High ist setze PC0 auf High { while((TCNT1<time)||(PINB & (0 <
in „LEDs mit Zeitverzögerung und Abschaltung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
glcdneu.c
RS auf high delay2ms(1); LATD = befehl; //Befehl laden GLCD_EN = 1; //Enable auf high delay2ms(1); GLCD_EN = 0; //Enable auf low GLCD_RW = 1; //RW auf high GLCD_CS1 = 1; //CS1 auf high GLCD_CS2 = 1; //CS2 auf high GLCD_RS = 0; //RS auf low } void GLCD_daten(unsigned char daten) { // write displayDaten in ram GLCD_RS = 1; //RS auf High GLCD_CS1 = 1; //CS1 auf High GLCD_CS2 = 1; //CS2 auf high GLCD_RW = 0; //RW auf low LATD = daten; //Gib
in „Initialisierung eines GLCDs 128x64“ · Mikrocontroller und Digitale Elektronik ·
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PDF
an-1157.pdf
to achieve high power factor and low THD in simple and low cost. Fig.1: 50% Valley Fill Passive PFC Circuit Fig. 2: Valley Fill Circuit Waveforms Upper: DC BUS (in Yellow), Middle inpu(Red) Middle Back:Lamp(in Green
in „PFC? Wozu diese Ladekondensatorschaltung im Schaltnetzteil?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LM2595.pdf
in low output voltage applications (5V and RMS ripple current rating, voltage rating, and capacitance lower). Ultra-fast recovery, or High-Efficiency rectifiers are value. For the output capacitor, the ESR
in „Schaltregler 9-18V input 14-V output“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LM2595.pdf
in low output voltage applications (5V and RMS ripple current rating, voltage rating, and capacitance lower). Ultra-fast recovery, or High-Efficiency rectifiers are value. For the output capacitor, the ESR
in „5 Volt 1A fürs auto passiv gekühlt gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
ILX554B_Code_arduino_uno.txt
; //ROG=high,CLK=low for(int i=0; i<16;i++){ //1us __asm__("nop\n\t"); } PORTD = B00011000; //ROG=high,CLK=high for(int i=0; i<16;i++){ __asm__("nop\n\t"); } } PORTD = B00011000; //ROG=high, clk=high for(int i=0
in „CCD Zeile NEC µPD8872CY“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TEA1716T.pdf
. The low-side driver is referenced to the PGND pin and is supplied from the SUPREG pin. The high-side driver is floating. The reference for the high-side driver is the HB pin, connected to the midpoint of the
in „Reparatur Schaltnetzteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BTS7960_v1.1_2004-12-07.pdf
220-7 overcurrent and short circuit. The BTS 7960 provides a cost optimized solution for protected high current PWM motor drives with very low board space consumption. Basic Features • Path resistance of typ. 16 mΩ @ 25 °C Low quiescent current of typ. 7 µA @ 25 °C PWM capability of up to 25 kHz combined
in „H-Brücke für Gleichstrommotor 24V 5A“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Infineon-BTS7960-DS-v01_01-en.pdf
220-7 overcurrent and short circuit. The BTS 7960 provides a cost optimized solution for protected high current PWM motor drives with very low board space consumption. Basic Features • Path resistance of typ. 16 mΩ @ 25 °C Low quiescent current of typ. 7 µA @ 25 °C PWM capability of up to 25 kHz combined
in „BTS7960 IS Sensor mit abweichenden Werten.“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BTS7960_v1.1_2004-12-07.pdf
220-7 overcurrent and short circuit. The BTS 7960 provides a cost optimized solution for protected high current PWM motor drives with very low board space consumption. Basic Features • Path resistance of typ. 16 mΩ @ 25 °C Low quiescent current of typ. 7 µA @ 25 °C PWM capability of up to 25 kHz combined
in „H-Brücken IC schalten bei Belastung ab und nicht wieder an“ · Mikrocontroller und Digitale Elektronik ·