-
PDF
IDT71256SA15PZ.pdf
: 1. WE is HIGH for Read Cycle. 2. Device is continuously selected, CS is LOW. 3. Address must be valid prior to or coincident with the later of CS transition LOW; otherwise tng parameter. 4. OE is LOW. 5. Transition
in „SRAM kompatibel zu IDT71256 SA15PZ“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Infineon_TLE9263QX.pdf
sampletaken Wakedetectionpossible as reference on 2ndsample Figure 7 Wake Input Timing HS Filter time High Low Switch open closed WK High Low n-1 n n+1 n+2 Learning WK n Low WK n+1= Low WK n+2 High Cycle WK nWK WK n= WK n+1 WK n+2≠WK n+1 WK = High wakeevent1 nowake wakeevent INT n-1 High Low INT & WK Bit
in „SBC für CAN/LIN bei einem 24V Bordnetz“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
main.c
GPIO_Init(TFT_DATA_GPIO_PORT, &GPIO_InitStructure); GPIO_Write(TFT_DATA_GPIO_PORT,0xFFFF); TFT_CS_HIGH(); TFT_RD_HIGH(); TFT_RS_HIGH(); TFT_WR_HIGH(); } void TFT_write_bus(uint16_t data) { GPIO_Write(TFT_DATA_GPIO_PORT, data); } void TFT_write_COM(char cmd) { TFT_CS_LOW(); TFT_RS_LOW(); TFT_write_bus(cmd); TFT_WR_LOW(); TFT_WR_HIGH(); TFT_CS_HIGH(); } void TFT_write_DATA(uint16_t data) { TFT_CS_LOW(); TFT_RS_HIGH(); TFT_write_bus(data); TFT_WR_LOW(); TFT_WR_HIGH(); TFT_CS_HIGH() ; } void TFT_write_COM_DATA(char
in „STM32 + SSD1289“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
main.c
GPIO_Init(TFT_DATA_GPIO_PORT, &GPIO_InitStructure); GPIO_Write(TFT_DATA_GPIO_PORT,0xFFFF); TFT_CS_HIGH(); TFT_RD_HIGH(); TFT_RS_HIGH(); TFT_WR_HIGH(); } void TFT_write_bus(uint16_t data) { GPIO_Write(TFT_DATA_GPIO_PORT, data); } void TFT_write_COM(char cmd) { TFT_CS_LOW(); TFT_RS_LOW(); TFT_write_bus(cmd); TFT_WR_LOW(); TFT_WR_HIGH(); TFT_CS_HIGH(); } void TFT_write_DATA(uint16_t data) { TFT_CS_LOW(); TFT_RS_HIGH(); TFT_write_bus(data); TFT_WR_LOW(); TFT_WR_HIGH(); TFT_CS_HIGH() ; } void TFT_write_COM_DATA(char
in „STM32 + SSD1289“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
spi.c
Sendet ein Byte über den SPI-Bus { uint8_t i; // Zählvariable for (i=0;i<8;i++) // 8 Bits senden { SCK_Low // Takt auf Low if ((Byte&0x80)==0) // Soll ein Low-Bit gesendet werden, ... SO_Low // ...SO auf Low ziehen else // Sonst: ... SO_High // ...SO auf High ziehen SCK_High // Pegel mit positiver Taktflanke
in „MCP2515 (CAN) und SPI“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
soft_i2c_master.c
hardware.h" #include <util/delay.h> // Send a START or repeated start signal void i2c_start(void) { SDA_HIGH; SCL_HIGH; while (!SDA || !SCL) {}; SDA_LOW; I2C_DELAY; SCL_LOW; I2C_DELAY; } // Send a STOP signal void i2c_stop(void) { SCL_HIGH; I2C_DELAY; SDA_HIGH; I2C_DELAY; while (!SDA || !SCL) {}; } // Send
in „Soft I²C zum Beispiel auf ATtiny13“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
6307.pdf
parameters. The unique combi- of only 22.5 mW at 3 V. A fast-acting CMOS-compatible con- nation of low cost, small size, low power consumption, high trol pin can disable the AD8307 to a standby current of under accuracy and stability, very high dynamic range, and a frequency 150 A. range encompassing
in „HI-Empfänger: Könnte das so funktionieren?“ · HF, Funk und Felder ·
-
PDF
Seiten_aus_IRFD_FINAL_de.pdf
I rad S-1. The components for a low pass filter based upon the normalized results, Table 2.1, are ck--- gk (2.8-1) ~We and L _gkRo k- (2.8-2) We The high pass filter is described by the following denormalization of the normal- ized low
in „Ist ein Filter immer ein Delay dass mit Phasenauslöschung funktioniert ?“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
MAX16801A-MAX16802B.pdf
from CC IN Supply Current After Startup IIN VIN= +24V 1.4 2.5 mA Shutdown Supply Current UVLO/EN = low 90 µA GATE DRIVER R Measured at NDRV sinking, 100mA 2 4 Driver Output Impedance ON(LOW) Ω RON(HIGH) Measured at NDRV sourcing, 20mA 4 12 Driver Peak Sink Current 1 A Driver Peak Source Current 0.65
in „High Brightness LEDs > 50W µC als regelbare KSQ“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
MAX152.pdf
, unless otherwise noted.) X PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS 1 LOGIC INPUTS 5 Input High Voltage VINH CS, WR, RD, PWRDN 2.0 V 2 MODE 2.4 Input Low Voltage VINL CS, WR, RD, PWRDN 0.66 V MODE 0.8 CS, RD, PWRDN ±1 Input High Current IINH WR ±3 µA MODE 15 100 Input Low Current I CS, WR, RD,
in „Ansteuerung A/D-Wandler MX152 (+/-Vref) Wechselspannungsmessung“ · Analoge Elektronik und Schaltungstechnik ·
-
Datei
haa_bus.h
Daten wiederholen Daten nicht wiederholen //Bits setzten //#define Sende_Ant() FKT &= ~(1 << KOM) //LOW: Antwort wird gesendet //#define Sende_Bef() FKT |= (1 << KOM) //HIGH: Befehl wird gesendet //#define Anf_Reed() FKT |= (1 << REE) //HIGH: Reed-Kontakt wird angefragt //#define Anf_Bat() FKT |= (1 <
in „Attiny13 spring t aus Hauptschleife“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
DS75160__161__162_GPIB-Transceiver.pdf
Voltage Bus (Note 5) IOH e b 5.2 mA 2.5 3.4 e VOL Low-Level Terminal IOL 16 mA 0.3 0.5 V Output Voltage Bus I e 48 mA 0.4 0.5 OH I High-Level V e 5.5V 0.2 100 IH Terminal and I mA Input Current TE, PE, DC, V e 2.7V 0.1 20 I IL Low-Level SC Inputs V Ie
in „PM2528 als Scannermultimeter mit GPIB“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Avalon_A3255Q48-131113-V05-EN.pdf
High Low >125ns >125ns DATA_N High Low >250ns Figure 3-3 shows bus SEND1 state. SEND1 could send one bit 1 to bus. SEND1 state starts with DATA_P=0 and DATA_N=0, after 125ns, DATA_N stays low and DATA_P transform from low to high and lasts over 125ns, then if no more bit to transfer DATA_P and DATA_N return to high, and bus is back to IDLE state. Figure 3-4 Multi-bit transfer (0Xca) DATA_P High Low DATA_N High Low SEND0
in „Chips für SHA256 Berechnungen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
431000.pdf
OE to output valid tOE 50 60 70 ns Output hold from address change tOH 10 10 10 ns CE1 to output in low impedance tLZ1 10 10 10 ns CE2 to output in low impedance tLZ2 10 10 10 ns OE to output in low impedance OLZ 5 5 5 ns CE1 to output in high impedance tHZ1 35 40 50 ns CE2 to output in high impedance
in „SRAM Ansteuern (Zeitdiagramm)“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
93C86.pdf
= -40°C to +85°C Automotive (E): TA = -40C to +125C Parameter Symbol Min. Max. Units Conditions High-level input voltageV IH1 2.0 V CC+1 V — Low-level input voltage V IL1 -0.3 0.8 V — Low-level output voltageV OL1 — 0.4 V IOL= 2.1 mA; VCC= 4.5V V OL2 — 0.2 V IOL=100 A; VCC = 4.5V High-level output
in „asm Code für EEPROM 93C86“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
NAND_SLC.pdf
Low to Write Enable High DVWH DS Data Valid to Write Enable High Data setup time Min 20 15 ns ELWH CS Chip Enable Low to Write Enable High E setup time Min 30 20 ns tWHALH Write Enable High to Address Latch High tALH AL hold time Min 10 5 ns tWHALL Write Enable High to Address Latch Low t Write Enable High to Command Latch High WHCLH t CL hold time Min 10 5 ns t CLH Write Enable High to Command Latch Low WHCLL
in „NAND Adressen-Berechnung“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
TAS5611.pdf
AM2, Master Mode 2.6 3 3.35 VIH High level input voltage 1.86 V VIL Low level input voltage 1.45 V OUTPUT-STAGE MOSFETs R Drain-to-source resistance, low side (LS)T J 25°C, excludes metallization 60 100 mΩ DS(on) Drain-to-source resistance
in „TAS5611 Layout erfahrung“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
LCD.asm
tempB, 'g' cpi XL, low(card_buffer)+low(512) brne print_picture_green_px_ok cpi XH, high(card_buffer)+high(512) breq print_picture_end print_picture_green_px_ok: ld temp, X+ sts px_24bit_gr, temp print_picture_red_px: ldi tempB, 'r' cpi XL, low(card_buffer)+low(512) brne print_picture_red_px_ok cpi XH, high(card_buffer)+high(512) breq print_picture_end print_picture_red_px_ok: ld temp, X+ sts px_24bit_ro, temp rcall convert_and_transfer_px
in „ansteuerung für LDS176-controller (nokia 6610 lcd)“ · Projekte & Code ·
-
PDF
AVR-ASM-Tutorial_16_05_08_v1.pdf
: subi temp2, low(1000) sbci temp3, high(1000) brcs lcd_number3 inc temp1 rjmp lcd_number2 ; ... und ausgeben lcd_number3: rcall lcd_data subi temp2, low(-1000) sbci temp3, high(-1000) ; Als nächtes kommt die Hunderterstelle
in „AVR-ASM-Tutorial: PDF 16.5.08“ · www.mikrocontroller.net ·
-
PDF
AVR-ASM-Tutorial_16_05_08_v2.pdf
: subi temp2, low(1000) sbci temp3, high(1000) brcs lcd_number3 inc temp1 rjmp lcd_number2 ; ... und ausgeben lcd_number3: rcall lcd_data subi temp2, low(-1000) sbci temp3, high(-1000) ; Als nächtes kommt die Hunderterstelle
in „AVR-ASM-Tutorial: PDF 16.5.08“ · www.mikrocontroller.net ·
-
PDF
Si4320.pdf
detect threshold Programmable in 0.1 V steps 2.25 5.35 V Vlba Low battery detection accuracy +/-3 % V il Digital input low level 0.3*Vdd V Vih Digital input high level 0.7*V dd V il Digital input current V il0 V -1 1 µA Iih Digital input current V ihV ,dd =dd.4 V
in „RF01 und RF02 433 MHz Funkmodul“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ES51922.pdf
summarizes the full-scale range of each mode. When ES51922 operate in the automatic mode1&2, it takes high input from IVSH/IVSL (higher range/lower range), low input from SGND and reference voltage from VR. When ES51922 operates in the manual mode1~4, It takes high input from ADP, low input from SGND and
in „UT61E Batterieabschaltung“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
MCP2551.pdf
state if TXD is Low when VDD reaches VPORH . CANH and CANL will become Low depending on the differential signals on the CANH active only after TXD is asserted High. Once powered and CANL pins and is usually connected to
in „MCP2551 Standby Mode wenn AVR im Power down Modus“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
MAX1448E_data.pdf
single-ended operation, connect IN- to COM. 12 CLK Conversion Clock Input Power-Down Input 13 PD High: power-down mode Low: normal operation Output Enable Input High: digital outputs disabled 15 OE Low: digital outputs enabled 16–20 D9–D5 Three-State Digital Outputs D9–D5. D9 is the MSB. Output Driver
-
PDF
EUP3482.pdf
0.923 0.951 ErrorAmplifier Voltage Gain 360 V/V ErrorAmplifier Transconductance IC= ±10µA 800 µA/V High-Side Switch On-Resistance 160 m Low-Side Switch On-Resistance 110 m High-Side Switch Leakage Current V ENV, V SWV 5 µA Upper Switch Current Limit Minimum Duty Cycle 2.5 3.5 A Lower Switch Current Limit
in „Sony Soundbar HT-CT260H nicht mehr einschaltbar - EUP3482A defekt“ · Analoge Elektronik und Schaltungstechnik ·
-
Datei
lcd.c
x */ #if LCD_IO_MODE #define lcd_e_delay() __asm__ __volatile__( "rjmp 1f\n 1:" ); #define lcd_e_high() LCD_E_PORT |= _BV(LCD_E_PIN); #define lcd_e_low() LCD_E_PORT &= ~_BV(LCD_E_PIN); #define lcd_e_toggle() toggle_e() #define lcd_rw_high() LCD_RW_PORT |= _BV(LCD_RW_PIN) #define lcd_rw_low() LCD_RW_PORT
in „Makefile produziert undefined reference to“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
ZX81_debug_drv.h
data bus as INPUT ( inactive ) setAddressbusActive(); Z80_writeAddrBus(address); digitalWrite(nIORQ, LOW); digitalWrite(nRD, LOW); delayMicroseconds(4); value = Z80_readDataBus(); digitalWrite(nRD, HIGH); // data should be latched here digitalWrite(nIORQ, HIGH); setAddressbusInactive(); //DDRA = 0; //
-
PDF
qt102_2r3.04.pdf
QT102 can be configured to be active threshold level. The threshold level is fixed at 10 counts. high or active low (see Section 3.3). • If active high then 3.3 Output Polarity Selection The output (OUT pin) of the QT102 can be configured to have ‘on’ is high an active high or active low output by means
in „Stromversorgung Problem“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Circuits_Designer_Notbook_cdn_nb_brochure__ATC.pdf
added together to yield ESR. Note that the ESR = Rsd+Rsm dielectric losses are predominant at the lower Dielectric loss (Rsd) is determined by the specific frequencies and diminish at higher frequencies. The converse is also true for metal losses. Other characteristics of the dielectric material. Each
in „Warum sind die Widerstände hochkant eingelötet?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
ina121.pdf
resistors provides a balanced input with possible NOISE AND ACCURACY PERFORMANCE advantages of lower input offset voltage due to bias current The INA121’s FET input circuitry provides low input bias and better high-frequency common-mode rejection. current and high speed. It achieves lower noise and higher accuracy with high impedance sources. With source imped- ances of 2k to 50k the INA114, INA128, or INA129 may Crystal or provide lower offset voltage and drift. For very low source Ceramic INA121 impedance
in „Pulsmessung über Kontaktflächen“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
AS5045.pdf
operation) VDD5V = 4.5-5.5V (5V operation) amb unless otherwise noted) Parameter Symbol Min Max Unit Note High level input voltage VIH 0.7 * VDD5V VDD5V V High level input voltage VPROG Programming Conditions V During programming See Low level input voltage VIL 0.3 * VDD5V V High level input current IiL 30 100
in „Vom Sensor zum VHDL Board (D0-Board)“ · FPGA, VHDL & Co. ·
-
Datei
basiclcdcon.asm
temp2=r17 .def temp3=r18 .def Bits=r19 .def NextOp=r20 .def tempm=r21 .def Spalte=r25 .def XAdresseLow=r26 .def Zeile=r27 .def AdresseLow =r30 .def AdresseHigh=r31 ;PortB .equ EnLCD=0 .equ Command=1 ;PortD .equ XSCL=3 .equ LP=4 .equ FLM=5 .org 0000 rjmp reset .org OVF0addr ;Timer 0 reti .org URXCaddr
in „Altes Grafikdisplay (monocrome)“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
Display.asm
verlängere die Pause RJMP SDAIsLow RCALL Delay DEC u1 BRNE WaitforSDALow RJMP Endtrans ;Transfer Failed, exit SDAIsLow: RCALL Delay ;100µs warten, dann CBI DDRB, MRQ_OUT ;MRQ wieder HIGH LDI u1,30 WaitforSDAHigh: SBIC PINB,SDA_OUT ;Warten bis SDA vom Slave wieder auf High gesetzt wird RJMP SDAIsHigh RCALL Delay DEC u1 BRNE WaitforSDAHigh RJMP Endtrans ;Transfer Failed, exit SDAIsHigh: RCALL Delay ;100 Mikrosekunden warten SBI DDRB, SDA_OUT ;SDA auf LOW setzen RCALL Delay
in „Hat schonmal einer ein Opel TID ->erfolgreich<-angesteuert ?“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
ArduMicroPro_Tablet.ino
Init Complete"); pinMode(LDO_Pin, OUTPUT); //"slow boot LDO" while (i<2000) { digitalWrite(LDO_Pin, HIGH); delayMicroseconds(i); digitalWrite(LDO_Pin,LOW); delayMicroseconds(2000-i); i++; } digitalWrite(LDO_Pin, HIGH); pinMode(Power_Pin_LED, OUTPUT); digitalWrite(Power_Pin_LED, HIGH); //pinMode(PIN, OUTPUT
in „Anleitung - Bedienpanel - 10Zoll fullHD (FIRE HD10 Mod)“ · Haus & Smart Home ·
-
PDF
PCA9515_NXP.pdf
specified. Symbol Parameter Conditions Min Typ Max Unit Supplies V CC supply voltage 3.0 3.3 3.6 V I HIGH-level supply current both channels HIGH; - 2.3 5 mA CCH VCC = 3.6 V; SDAn = SCLn = V CC ICCL LOW-level supply current both channels LOW; - 2.3 5 mA VCC = 3.6 V; one SDA and one SCL = GND, other SDA
in „I2C Repaeter PCA9515A“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
NM93C46.PDF
device is fabricated using Fairchild Semiconductor floating-gateelf timed write cycle CMOS process for high reliability, high endurance and low pow■ Device status during programming cycles consumption. ■ 40 year data retention “LZ” and “L” versions of NM93C46 offer very low standby curre■ Endurance: 1,000,000
in „EEPROM durch anders tauschen, was beachten?“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
thermo02.asm
srsk=r4 ;SREG-Kopie .def mwn=r5 ;Messwert / Mittelwert Nachkomma .def mwl=r6 ;Messwert / Mittelwert Low .def mwh=r7 ;Messwert / Mittelwert High .def scheibe=r8 ;Zeitscheibe .def sfl=r9 ;Skalierfaktorzähler Low .def sfh=r10 ;Skalierfaktorzähler High .def ausa=r11 ;Bitmuster Digits aus PortA .def ausb=r12
in „Temperaturmessung mit ATmag88 intern ADC8 (Assembler)“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
IR2130.pdf
Additional information is shown in Figures 50 through 53. Symbol Definition Min. Max. Units V B1,2,3 High Side Floating Supply Voltage -0.3 625 V High Side Floating Offset Voltage V - 25 V + 0.3 S1,2,3 B1,2,3 B1,2,3 VHO1,2,3 High Side Floating Output Voltage VS1,2,3 0.3 VB1,2,3 0.3 V CC Low Side and Logic
in „Shunt Messung mit IR2130 (BLDC Steuerung)“ · Analoge Elektronik und Schaltungstechnik ·
-
PDF
AVR051.pdf
. The oscillator has a programmable bias current so the on-chip active modules can be biased at a lower current for low frequency operation, and at a higher current for high frequency operation. The Bias Current is controlled by the clock fuse settings as described in Table 3. The advantages of an RC
in „AtMega32 mit Quarz betreiben. [siehe Bild]“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
i2cmaster.S
: lsl r24 ;if transmit register empty i2c_write_first: breq i2c_get_ack sbi SCL_DDR,SCL ;force SCL low brcc i2c_write_low nop rcall i2c_delay_T4 ;delay T/2 cbi SDA_DDR,SDA ;release SDA rjmp i2c_write_high i2c_write_low: rcall i2c_delay_T4 ;delay T/2 sbi SDA_DDR,SDA ;force SDA low rjmp i2c_write_high
in „Problem beim Schreiben in I2C EEPROM“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
CH340DS2_E.PDF
low, connect to SELECT-IN Printer error, active with low, set up pull-up resistor internal, 5 ERR# IN connect to ERROR or FAULT 8 SLCT IN Printer online, active with high, set up pull-up resistor internal
in „Chip aus USB-Parallel-Adapter“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
SRAM-routines.asm
(write_zeiger+1 == max. Pufferadresse) && (read_zeiger == 0) cpi temp1, low(buffer+buffersize) ldi temp3, high(buffer+buffersize) cpc temp2, temp3 brne write_to_SRAM cpi XL, low(buffer) ; (read_zeiger == 0) ldi temp1, high(buffer) cpc XH, temp1 breq no_reset_PointerY write_to_SRAM
in „Fifo Assembler“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
NAND.pdf
insertion is serially and timed by the Write Enable cycles. Data are accepted only with Chip Enable low, Address Latch Enable low, Command Latch Enable low, Read Enable High, and Write Protect High and latched on the rising edge of Write Enable. See figure 7 and table 12 for details of the timings requirements
in „Problem beim NAND-Flash ansteuern mit Mega32“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
TI_ads808.pdf
MAX UNITS DIGITAL OUTPUTS Logic Family +3V/+5V Compatible CMOS Logic Coding Straight Offset Binary Low Output Voltage OL = 50µA to 1.6mA) VDRV = 3V +0.2 V High Output Voltage,OHI= 50µA to 0.5mA) +2.5 V Low Output Voltage, (I= 50µA to 1.6mA) VDRV = 5V +0.2 V OL High Output Voltage,OHI= 50µA to 1.6mA)
in „Projekt Signal-Auswertung mit High-Speed-ADC“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
TI_ads808.pdf
MAX UNITS DIGITAL OUTPUTS Logic Family +3V/+5V Compatible CMOS Logic Coding Straight Offset Binary Low Output Voltage OL = 50µA to 1.6mA) VDRV = 3V +0.2 V High Output Voltage,OHI= 50µA to 0.5mA) +2.5 V Low Output Voltage, (I= 50µA to 1.6mA) VDRV = 5V +0.2 V OL High Output Voltage,OHI= 50µA to 1.6mA)
in „Projekt Signal-Auswertung mit High-Speed-ADC“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
Ausschnitt.asm.txt
. . ;------------------------------------------------------------------------------- Menu7: ldi zl,low(menue71*2) ldi zh,high(menue71*2) rcall msg_out ldi temp1,zeile2 ; setzte Cursor in zweite Zeile (Anfang) rcall sendebefehl ; Befehl senden ldi zl,low(menue72*2) ldi zh,high(menue72*2) rcall msg_out
in „"komische" Zeichen auf dem LCD“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
ADC_2.txt
INTERVALLZEIT brne adc_akku_end cpi AKKU_L,low(W_FREISCHWELLE) ldi A,high(W_FREISCHWELLE) cpc AKKU_H,A brcs abschaltung tst RUHEZEIT brne flimmern cpi AKKU_L,low(W_00) ldi A,high(W_00) cpc AKKU_H,A brcs null cpi AKKU_L,low(W_0) ldi A,high(W_0) cpc AKKU_H,A brcs null cpi AKKU_L,low(W_25) ldi A,high(W_25) cpc AKKU_H,A brcs null cpi AKKU_L,low(W_50) ldi A,high(W_50) cpc AKKU_H,A brcs zweifuenf cpi AKKU_L,low(W_75) ldi A,high(W_75) cpc AKKU_H,A brcs fuenfnull cpi AKKU_L,low(W_100
in „Wie programmiert man eine Hysterese in Assembler ?“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
CNCArduinoControl.ino
PinEndschalterX, INPUT); pinMode(PinEndschalterY, INPUT); pinMode(PinSyncStart, INPUT); digitalWrite(PinDirX, LOW); digitalWrite(PinDirY, LOW); digitalWrite(PinDirZ, LOW); digitalWrite(PinStepX, HIGH); digitalWrite(PinStepY, HIGH); digitalWrite(PinStepZ, HIGH); digitalWrite(PinStatusLED, LOW); digitalWrite(PinEmpfangsStatus
in „Delay funktioniert nur in loop (Arduino)“ · Mikrocontroller und Digitale Elektronik ·
-
Datei
I2C-Slave-100.bas
; shift MSB out and "floating empty flag" in rol i2cdata Wlo_mr: Sbic Pind , Pind4 ; Wait For Scl Low rjmp wlo_mr ;**** Transmitt data **** brcc fb_low_mr ; if current data bit high cbi DDRD,DDD2 ; release SDA rjmp fb_mr ; goto read loop Fb_low_mr: ; Else sbi DDRD,DDD2 ; force SDA Fb_mr: Lsl I2cdata ; If Data Register Not Empty Loop_mr: Whi_mr: Sbis Pind , Pind4 ; Wait For Scl High rjmp whi_mr Wlo_mr2: Sbic Pind , Pind4 ; Wait For Scl Low rjmp wlo_mr2 brcc b_low_mr ; if current data bit high cbi DDRD,DDD2 ; release SDA lsl i2cdata ; if data register not empty brne loop_mr ; loop
in „2 AVRs über I2C verbinden?“ · Mikrocontroller und Digitale Elektronik ·
-
PDF
Teilen-binaer.PDF
Divisionsrest .def Schleife =R20 ; Schleifenzähler ; Abschnitt für 16DIV8 ;-------------------- .def DividendLow =R16 ; Zahl, die geteilt werden soll, Low Byte .def ErgebnisLow =R16 ; erlaubte Mehrfachdefinition .def DividendHigh=R17 ; Zahl, die geteilt werden soll, High Byte .def ErgebnisHigh=R17 ; erlaubte Mehrfachdefinition
in „Grundlagen: Teilen binär Teil 1 - Vorzeichenlose Ganzzahlen“ · Projekte & Code ·