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MAX1630-MAX1635.pdf
monitored—the 5V SMPS is ignored. Table 4. Operating Modes SHDN SEQ RUN/ON3 TIME/ON5 MODE DESCRIPTION Low X X X Shutdown All circuit blocks turned off. Supply current = 4µA. High Ref Low Low Standby Both SMPSs off. Supply current = 30µA. High Ref High Low Run 3.3V SMPS enabled/5V off High Ref Low High Run 5V SMPS enabled/3.3V off High Ref High High Run Both SMPSs enabled High GND Low Timing capacitor Standby Both SMPSs off. Supply current = 30µA. High GND High Timing capacitor Run Both SMPSs enabled. 5V enabled before 3.3V. High
in „Steuerung für Elektrochrom-Spiegel (BMW 5er)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
FlowChart_Timing-Diagramm_Controller-Software.pdf
SM:000] [SE:1] Timing-Diagramm bei Low/High-Flanke am Eingang PB2 200ms High (offen) PB2 (Eingang) Low (geschlossen) High (Tri-state) PB1 (Ausgang) Low High PB0 (Ausgang) Low Variable Impuls-Counter-Flag --> VICF VICF=1 INT0 VIGF=0 OCR0B
in „Programmierer für ATtiny4 gesucht“ · Mikrocontroller und Digitale Elektronik ·
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High_Input_Analog_Bandwidth_Track_and_Hold_Amplifiers.pdf
a significant cost advantage over alternative approaches such as diode bridges and mixers. High input analog bandwidth, high sampling rate, and low harmonic distortions are key parameters for THAs. Existing THAs are made in GaAs and more recently SiGe technology. These devices typically have an
in „Idee: Digitales Samplingoszilloskop“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
50-555Circuits.pdf
Pin 1 GROUND. Connects to the 0v rail. Pin 2 TRIGGER. Detects 1/3 of rail voltage to make output HIGH. Pin 2 has control over pin 6. If pin 2 is LOW, and pin 6 LOW, output goes and stays HIGH. If pin 6 HIGH, and pin 2 goes LOW, output goes LOW while pin 2 LOW. This pin has a very high impedance (about
in „20 Volt Signal zu 12 Volt“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
tm1638-cc.asm
.ENDMACRO .MACRO TM1638_STB_HIGH ; Strobe output high sbi PORT_TM1638, STB_PIN .ENDMACRO .MACRO TM1638_DATA_LOW ; Data input low cbi PORT_TM1638, DATA_PIN .ENDMACRO .MACRO TM1638_DATA_HIGH ; Data input high sbi PORT_TM1638, DATA_PIN
in „TM1638 - AVR ASM Library“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.cpp
(xpcc::gpio::LOW); DB3::setOutput(xpcc::gpio::LOW); DB4::setOutput(xpcc::gpio::HIGH); DB5::setOutput(xpcc::gpio::HIGH); DB6::setOutput(xpcc::gpio::LOW); DB7::setOutput(xpcc::gpio::LOW); LedRed::setOutput(xpcc::gpio::HIGH); xpcc::delay_ms(1000); ReadWrite::setOutput(xpcc::gpio::LOW); //WRITE xpcc::delay_ms(200); BiPolarMood::setOutput(xpcc::gpio::LOW); xpcc::delay_ms(200); LightSwitch::setOutput(xpcc::gpio::HIGH); //
in „STM32F4_Discovery + LCD“ · Mikrocontroller und Digitale Elektronik ·
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80C51.pdf
80C51 8-bit microcontroller family 80C51/87C51/80C31 4K/128 OTP/ROM/ROMless, low voltage (2.7V–5.5V), low power, high speed (33 MHz) DESCRIPTION FEATURES The Philips 8XC51/31 is a high-performance static 80C51 design 8051 Central Processing Unit fabricated with Philips high-density
in „Prüfen von Chips“ · Mikrocontroller und Digitale Elektronik ·
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Microsemi_13.56_MHz__Class-D_Half_Bridge.pdf
3/17 Application Note 1817 November 2012 Not Used High Side Pulse Width Generator High Side Transformer Driver Oscillator F/2 Flip Flop Low Side Transformer Driver Low Side Pulse Width Generator Low Voltage Support Power Figure 4. DRF1400 Reference Design
in „Bauplan für HF Netzteil gesucht.“ · HF, Funk und Felder ·
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Datei
dtmf_geb_m8a.asm
REGISTERS ;************************************************************************** .def ptr_Ltmp = r1 ; low part temporary register .def ptr_Htmp = r2 ; high part temporary register .def ptr_Lb = r3 ; low part low frequency pointer .def ptr_Hb = r4 ; high part low frequency pointer .def ptr_La = r5 ; low
in „DTMF AVR314 nach mega8“ · Mikrocontroller und Digitale Elektronik ·
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maxim_481_483_491.pdf
, Y and Z, are enabled by bringing DE high. They are high impedance when DE is low. If 3 5 — — 4 DE the driver outputs are enabled, the parts function as line drivers. While they are high impedance, they function as line rece/vers if RE is low. M A 4 6 3 5 5 DI Driver Input. A low on DI forces output Y low and output Z high. Similarly, a high on DI forces output Y high and output ZXlow. 5 7 4 6 6, 7 GND Ground 4 — — 5 7 9 Y Noninverting Driver Output 8 5 — — 6 8 10 Z Inverting
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MAX485.pdf
, Y and Z, are enabled by bringing DE high. They are high impedance when DE is low. If 3 5 — — 4 DE the driver outputs are enabled, the parts function as line drivers. While they are high impedance, they function as line rece/vers if RE is low. M A 4 6 3 5 5 DI Driver Input. A low on DI forces output Y low and output Z high. Similarly, a high on DI forces output Y high and output ZXlow. 5 7 4 6 6, 7 GND Ground 4 — — 5 7 9 Y Noninverting Driver Output 8 5 — — 6 8 10 Z Inverting
in „Kommunikation mit PC“ · Mikrocontroller und Digitale Elektronik ·
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4511_phillips.pdf
input are HIGH independent of all other input conditions. With (LT), and seven active HIGH n-p-n bipolar transistor LT HIGH, a LOW on BI forces all segment outputs LOW. segment outputs (O ao O )g The inputs LT and
in „Sieben-Segmentanzeige: Problem mit "6"“ · Mikrocontroller und Digitale Elektronik ·
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PDF
NCP51530-D-1324764-1.pdf
NCP51530 High and Low Side Gate Driver, High Performance, 700 V, with 3.5 A Source and 3 A Sink Currents www.onsemi.com NCP51530 is a 700 V high side and low side driver with 3.5 A source & 3 A sink current drive
in „Hilfe bei Halbbrückenschaltung benötigt“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
hcms.c
.. .. //Für Ansteuerung LED-Display #define HCMS29xx_RS_LOW() PORTC &= ~PC0 #define HCMS29xx_RS_HIGH() PORTC |= PC0 #define HCMS29xx_DATA_LOW() PORTC &= ~PC1 #define HCMS29xx_DATA_HIGH() PORTC |= PC1 #define HCMS29xx_CLK_LOW() PORTC &= ~PC2 #define HCMS29xx_CLK_HIGH
in „Agilent HCMS-29xx LED Display seriell ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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Datei
HW1Bsp2.vhd
procedure my_sll (vector: in aBVector; shamt: in ashamt; result: out aBVector) is begin result(result'low to (result'high - shamt)) := vector((vector'low + shamt) to vector'high); result((result'high - shamt + 1) to result'high) := ((result'high - shamt + 1) to result'high => '0'); end procedure my_sll;
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FD6287T_fortiorEnglish.pdf
. Built-in input filtering function Noise interference. High-end and low-end channel matching High-side outputs are in phase with inputs, low-side outputs are in phase with inputs. Inverted Packaging Preliminary Preliminary application Three-phase motor drive
in „hc-160a s2 Datenblatt?“ · Mikrocontroller und Digitale Elektronik ·
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NCP300L.PDF
Propagation Delay Input to Output (Figure 2) ms Complementary Output NCP300 Series Output Transition, High to Low tpHL − 97 − Output Transition, Low to High tpLH − 77 300 N−Channel Open Drain NCP301 Series Output Transition, High to Low tpHL − 97 − Output Transition, Low to High tpLH − − 300 NCP300/1 − 1.8
in „High-Side-Strom auf Low-Side spiegeln (Stromspiegel?!)“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
LuefterProject.asm
ldi r18,high(cT_CriticalFan) ;MSBYTE rcall DS1621_writeTemperatureHigh ldi r16,cDS1621_FirstSlave ldi r17,low(cT_NormalFan) ;LSBYTE ldi r18,high(cT_NormalFan) ;MSBYTE rcall DS1621_writeTemperatureLow ldi gCurrentFanLevel
in „AT90s2313 + ds1621 (liest nur Schrott)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
entrance.asm
key_check_match: set ret key_check_mismatch: clt ret key_change: ; get new key from user rcall lcd_clear ldi ZL, LOW( dchgkey * 2 ) ldi ZH, HIGH( dchgkey * 2 ) rcall lcd_show ldi ZH, HIGH( cfg_key + 4 ) ldi ZL, LOW( cfg_key + 4 ) rcall key_get ; confirm key rcall lcd_clear ldi ZL, LOW( dchgkey * 2 + 16 ) ldi ZH, HIGH
in „Drehgeber - (wiedereinmal)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
i2ci_sw.txt
-------------------------------------------- procedure i2c_start is _i2c_wait i2c_sda_direction = high -- data high _i2c_wait i2c_scl_direction = high -- clock high _i2c_wait i2c_sda_direction = low -- data low _i2c_wait i2c_scl_direction = low -- clock low _i2c_wait end procedure -- ----------------
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Logic_Level_Translation.pdf
. A next-generation bidirectional level shifter (the MAX3370 in the MAX3370–MAX3393 Mixed high-low and low-high translation family of ICs) fulfills those needs while overcoming some of the problems associated with alternative approaches. Applications like the SPI bus require a mixture of high
in „BlueNiceCom UART 89C51“ · Mikrocontroller und Digitale Elektronik ·
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Datei
SHT11.asm
-------------------------------------------------------------------------- sht11_transstart: data_high clk_low nop clk_high nop data_low nop clk_low nop nop clk_high nop data_high nop nop clk_low nop nop ret ;---------------------------------------------------------------------------------------- sht11
in „SHT71 Assembler Code für Atmega8“ · Mikrocontroller und Digitale Elektronik ·
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Datei
solar_light_tracker_07_11_24.ino
converted voltage value /****************** Motors config ******************/ int MOTOR_ENABLE = HIGH; // value to enable the motor (LOW or HIGH depending on hardware configuration) int MOTOR_DISABLE = LOW; // value to disable the motor (LOW or HIGH depending on hardware configuration) // config for
in „Code Solartracker“ · Mikrocontroller und Digitale Elektronik ·
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PDF
file.pdf
high charging currents at high SoC regimes, where the anode potential is lowest, the high chargingcurrents have still caused disproportionate degradation at lower SoCs. No benefits compared to CCCV charging
in „Pedelec: Akku und Controller verklebt - ist das rechtens ?“ · Fahrzeugelektronik ·
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Datei
Laden.asm
(Empfang) aktivieren sbi UCSR0B, TXEN ; TX (Senden) aktivieren ;default-Werte laden (var) ldi xh, high(var0) ldi xl, low (var0) ldi yh, high(var1) ldi yl, low(var1) ldi data, 26 werteladen_: ldi zh, high(defaultwerte*2) ldi zl, low(defaultwerte*2) ldi count, 16 werteladen: lpm temp, z+ st x+, temp st
in „UART Problem (Assembler zu C) II“ · Mikrocontroller und Digitale Elektronik ·
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Datei
reedelundhibyte.asm
,eewe ;Schreibzugriff? rjmp reedready1 ;wenn ja zurück ldi tmp,low(eeelwh) out eearl,tmp ;Adresse lowbyte ldi tmp,high(eeelwh) out eearh,tmp ;Adresse highbyte sbi EECR, EERE ;Lesevorgang aktivieren in elwh, EEDR ;Daten in CPU Register kopieren reedready2: sbic eecr,eewe ;Schreibzugriff? rjmp reedready2 ;wenn ja zurück ldi tmp,low(eemomelwl) out eearl,tmp ;Adresse lowbyte ldi tmp,high(eemomelwl) out eearh,tmp ;Adresse highbyte sbi EECR, EERE ;Lesevorgang aktivieren in momwl, EEDR ;Daten in CPU Register kopieren reedready3: sbic
in „AVR Assembler: ret springt an falsche Stelle zurück“ · Mikrocontroller und Digitale Elektronik ·
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Datei
audior.asm
, RAS ;RAS deaktivieren ret adcready: sbi PORTB, RAS ;Disable Refresh sbi PORTB, LCAS sbrs AdresseHigh, 4 ;Da 16bit Speicher, rcall ReadLowByte ;entscheidet das MSBit sbrc AdresseHigh, 4 ;ob Low oder Highbyte rcall ReadHighByte out ocr1al, Byte ;gespeicherten Wert ausgeben in Byte, adch ;neuen Wert einlesen sbrs AdresseHigh, 4 ;Eigentlich wäre ein Read-modify-write rcall WriteLowByte ;hier besser, aber das ganze ist ja nur ein Test sbrc AdresseHigh, 4 rcall WriteHighByte add AdresseLow,eins ;24 bit Adresszähler hochzählen
in „2MB DRAM an AVR“ · Projekte & Code ·
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PDF
FE1.1s.pdf
________________Data Sheet_______________________ INTRODUCTION The FE1.1s is a highly integrated, high quality, F EATURES high performance, low power consumption, yet Fully compliant with Universal Serial Bus low cost solution for USB 2.0 High Speed 4-Port Specification Revision 2.0 (USB 2.0); Hub.
in „FE1.1s USB-Hub probleme“ · Mikrocontroller und Digitale Elektronik ·
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Datei
header_lcd.h
); #define glcd_rst_high() glcd_rst_PORT |= _BV(glcd_rst_PIN); #define glcd_rst_low() glcd_rst_PORT &= ~_BV(glcd_rst_PIN); #define glcd_fs_high() glcd_fs_PORT |= _BV(glcd_fs_PIN); #define glcd_fs_low() glcd_fs_PORT &= ~_BV(
in „Display defekt? Zeilen werden nicht angezeigt..“ · Mikrocontroller und Digitale Elektronik ·
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MAX481_422.pdf
, are enabled by bringing DE high. They are high impedance when DE is low. If 3 5 — — 4 DE the driver outputs are enabled, the parts function as line drivers. While they are high impedance, they function as line receMvers if RE is low. A 4 6 3 5 5 DI Driver Input. A low on DI forces output Y low and output Z high. Similarly, a high on DI forces output Y high and output ZXlow. 5 7 4 6 6, 7 GND Ground 4 8 — — 5 7 9 Y Noninverting Driver Output 5 — — 6 8 10 Z Inverting
in „Problem mit MAX481 Transmitter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX485.pdf
, are enabled by bringing DE high. They are high impedance when DE is low. If 3 5 — — 4 DE the driver outputs are enabled, the parts function as line drivers. While they are high impedance, they function as line receMvers if RE is low. A 4 6 3 5 5 DI Driver Input. A low on DI forces output Y low and output Z high. Similarly, a high on DI forces output Y high and output ZXlow. 5 7 4 6 6, 7 GND Ground 4 8 — — 5 7 9 Y Noninverting Driver Output 5 — — 6 8 10 Z Inverting
in „STM32 UART Kommunikation -> Langsamer uC Tod“ · Mikrocontroller und Digitale Elektronik ·
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Datei
TEC6_Hubert3.ino
(tasterstatus == LOW) //Taster gedrückt,LOW { Taststat=HIGH; // Tastenstatus setzen digitalWrite(relais1, LOW); // Relais 1 aktivieren previousMillis = currentMillis; // Zeitstempel speichern } if((Taststat == HIGH) &&
in „Arduino UNO an 4fach Relais“ · Mikrocontroller und Digitale Elektronik ·
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Datei
sketch_nov12b.ino
(tasterstatus == LOW) //Taster gedrückt,LOW { Taststat=HIGH; // Tastenstatus setzen digitalWrite(relais1, LOW); // Relais 1 aktivieren previousMillis = currentMillis; // Zeitstempel speichern } if((Taststat == HIGH) &&
in „Arduino UNO an 4fach Relais“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.lst
@0,LOW(@2+@3) LDI R@1,HIGH(@2+@3) .ENDM .MACRO __GETD1N LDI R30,LOW(@0) LDI R31,HIGH(@0) LDI R22,BYTE3(@0) LDI R23,BYTE4(@0) .ENDM .MACRO __GETD2N LDI R26,LOW(@0) LDI R27,HIGH(@0) LDI R24,BYTE3(@0) LDI R25
in „Timer initialisierung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
spi.h
-2))/MCLK)*ZWEIHOCH24; //_delay_ms(10); freq_word = (wert*mclk_faktor); high = (uint8_t)(((freq_word>>12) & 0x0FFF)); low = (uint8_t)((freq_word & 0x00000FFF)); ad5932_write(AD5932_FSTART_HIGH | high); ad5932_write(AD5932_FSTART_LOW | low); } /* void ad5932_set_delta_f(double
in „Probleme bei der Stueuerung über Taster!“ · Mikrocontroller und Digitale Elektronik ·
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PDF
cy7c199n_8.pdf
Time 12 15 20 ns AA Address to Data Valid 12 15 20 ns OHA Data Hold from Address Change 3 3 3 ns t CE LOW to Data Valid 12 15 20 ns ACE DOE OE LOW to Data Valid 5 7 9 ns [8] LZOE OE LOW to Low-Z 0 0 0 ns [8, 9] HZOE OE HIGH to High-Z 5 7 9 ns t CE LOW to Low-Z [8] 3 3 3 ns LZCE HZCE CE HIGH to High-Z[8,9
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PDF
HV9901.pdf
POL CC V ENO Enable Output Voltage - High 0.9VCC V CC V 2V < VCC < 5.5V V ENO Enable Output Voltage - Low 0 0.1VCC V 2V < VCC < 5.5V Enable Logic Truth Table POL ENI ENO Gate Drive Output LOW LOW HIGH VGT = Oscillating Output, Duty Cycle depends on Inductive Load LOW HIGH LOW VGT = LOW, SYNC = HIGH, Oscillator shut down. HIGH HIGH LOW VGT = Oscillating Output, Duty Cycle depends on Inductive Load HIGH LOW HIGH VGT = LOW, SYNC = HIGH, Oscillator shut down. 4 HV9901
in „Cree LED an 230V“ · Mikrocontroller und Digitale Elektronik ·
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74138.pdf
L= 15 pF CL= 50 pF Units Min Max Min Max t Propagation Delay Time PLH Select to Output 2 18 27 ns LOW-to-HIGH Level Output tPHL Propagation Delay Time Select to Output 2 27 40 ns HIGH-to-LOW Level Output tPLH Propagation Delay Time LOW-to-HIGH Level Output Select to Output 3 18 27 ns tPHL Propagation Delay Time HIGH-to-LOW Level Output Select to Output 3 27 40 ns tPLH Propagation Delay Time Enable to Output 2 18 27 ns LOW-to-HIGH Level Output tPHL Propagation Delay Time Enable to Output 2 24 40 ns HIGH-to-LOW Level
in „Led-Matrix Überlegung“ · Mikrocontroller und Digitale Elektronik ·
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FD6287T_cn-translated.pdf
High side output voltage VHOm,2,3 VS1,2,3 VB1,2,3 V Low side supply voltage iV CC 7 20 V Low side output voltage l 0 V logic input voltage (HIN, LIN*) VLO1,2,3 VCC VIN 0 VCC V ambient temperature e TA -
in „PWM: Motortreiber schaltet bei Tastverhältnis Reduktion ab“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Temperatursensor.pdf
Temperature Conversion Time CONV 0.4 1.0 s Time Slot SLOT 60 120 s Recovery Time tREC 1 s Write 0 Low Time LOW0 60 120 s Write 1 Low Time LOW1 1 15 s Read Data Valid tRDV 15 s Reset Time High RSTH 480 s Reset Time Low RSTL 480 s Presence Detect High PDHIGH 15 60 s Presence Detect Low tPDLOW 60 240 s EEPROM Write Time WR 10 50 ms VDD Low to Mode Toggle Clock PC 100 ns 6 Low Mode Toggle Clock 16 High to t 100 ns V High CP DD Mode Toggle Clock Pulse Low t 0.1 10 s CL Time Mode Toggle Clock Pulse High CH 0.1 s Time Mode Toggle Clock High–to–Low
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Datei
3x3.asm
============== ; die Bits des Port A nun verändern -> LED1,4 lechtet! sbi PORTA,2 ; Portbit 2 auf high (5V) setzen sbi PORTA,4 ; Portbit 4 auf high (5V) setzen sbi PORTA,1 ; Portbit 1 auf high (5V) setzen cbi PORTA,0 ; Portbit 0 auf low (0V) setzen Loop1: nop ; Verzögerung nop ; Verzögerung nop ; Verzögerung
in „Neuling-Frage: Assembler-Befehl "brne" out of range“ · Mikrocontroller und Digitale Elektronik ·
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Datei
i2cmastersw.c
SCL high for T_HIGH, read data in the middle of that period I2CMSW_WAIT_NS(T_HIGH / 2); *c |= (I2CMSW_READ_SDA() << (7 - i)); I2CMSW_WAIT_NS(T_HIGH - T_HIGH / 2); // pull SCL low I2CMSW_PULL_DOWN_SCL(); } //
in „AVR als I2C-Slave macht Probleme“ · Mikrocontroller und Digitale Elektronik ·
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PDF
S71248.pdf
10 10 ns TCPH CE# High Time 100 100 ns TCHZ CE# High to High-Z Output 20 14 ns TCLZ SCK Low to Low-Z Output 0 0 ns TDS Data In Setup Time 5 3 ns TDH Data In Hold Time 5 3 ns T HOLD# Low Setup Time 10 10 ns HLS THHS HOLD# High Setup Time 10 10 ns THLH HOLD# Low Hold Time 15 10 ns T HOLD# High Hold Time 10 10 ns HHH THZ HOLD# Low to High-Z Output 20 14 ns TLZ HOLD# High to Low-Z Output 20 14 ns TOH Output Hold from SCK Change
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Datei
NOKIA_TEST.asm
SCL ;Low an Clock BTFSC DISPBUFF,6 ;ist Bit6 1? BSF SDA ;Serial Data Line High BTFSS DISPBUFF,6 ;ist Bit6 0? BCF SDA ;Serial Data Line Low NOP BSF SCL ;High an Clock NOP BCF SCL ;Low an Clock BTFSC DISPBUFF,
in „Ausgabe auf Nokia 3310 Display“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CY7C1041DV33-10ZSXI.pdf
Time 10 12 ns tAA Address to Data Valid 10 12 ns tOHA Data Hold from Address Change 3 3 ns tACE CE LOW to Data Valid 10 12 ns t OE LOW to Data Valid 5 6 ns DOE tLZOE OE LOW to Low-Z 0 0 ns tHZOE OE HIGH to High-Z[10, 11] 5 6 ns [11] tLZCE CE LOW to Low-Z 3 3 ns [10, 11] tHZCE CE HIGH to High-Z 5 6 ns t CE LOW to Power Up 0 0 ns PU tPD CE HIGH to Power Down 10 12 ns tDBE Byte Enable to Data Valid 5 6 ns tLZBE Byte Enable to Low-Z 0 0 ns tHZBE Byte Disable to High-Z 6 6 ns Write Cycle[12, 13] tWC Write Cycle
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MAX3030-MAX3033.pdf
C.) A CC A MIN MAX CC A X PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS 3 Driver Propagation Delay Low to High tDPLH 0 R L 100Ω, C =L50pF, Figures 2, 3 8 16 ns 3 Driver Propagation Delay High to Low tDPHL 0 E Differential Transition Time, Low to High tR – R L 100Ω, C =L50pF (10% to 90%), 10 ns M Differential
in „SPI mit RS485-Übertragung: Problem mit zu langen Propagation-Delays“ · Mikrocontroller und Digitale Elektronik ·
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LCD_Controller_320x240.pdf
Anzahl der Messungen) (Default -> 4) (Wert -> 1,2,4,8,16,32,64) Mode 3 -> Kalibrierwert für Xmin (Xmin Low / Xmin High) Mode 4 -> Kalibrierwert für Xmax (Xmax Low / Xmax High) Mode 5 -> Kalibrierwert für Ymin (Ymin Low / Ymin High) Mode 6 -> Kalibrierwert für Ymax (Ymax Low / Ymax High) (Kalibrierwerte werden
in „Grafikfähiger LCD Controller für 320x240 LCD mit D-RAM“ · Projekte & Code ·
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Datei
LCD.asm
Hintergrundbeleuchtung: P_EXP_B5 ;E: PB3 .equ PIN_E = 3 .equ RS = 4 ;LCD_Initialisierung lcd_init: ldi wait_low, low(15*XTAL/ZPS/1000) ldi wait_high, high(15*XTAL/ZPS/1000) rcall wait ldi temp, 0x03 rcall Portexponder_ausgabe rcall lcd_enable ldi wait_low, low(5*XTAL/ZPS/1000) ldi wait_high, high(5*XTAL/ZPS/1000) rcall wait rcall lcd_enable ldi wait_low, low(5*XTAL/ZPS/1000) ldi wait_high, high(5*XTAL/ZPS/1000) rcall wait rcall lcd_enable ldi wait_low, low(5*XTAL/ZPS/1000) ldi wait_high, high(5*XTAL/ZPS/1000) rcall wait ;4bit-Modus einstellen ldi temp
in „Falsche Zeichen bei LCD-Ausgabe“ · Mikrocontroller und Digitale Elektronik ·
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Datei
DS18x20_0C_Display.asm
in DS18B20 Position bringen lsl RAM_Low ; 6543 210R =<= 6,5432 10R- rol RAM_High ; SSSS SSSS =<= SSSS SSS6 lsl RAM_Low ; 5432 10R- =<= 5,4321 0R-- rol RAM_High ; SSSS SSS6 =<= SSSS SS65 lsl RAM_Low ; 4321 0R-- =<= 4,3210 R--- rol RAM_High
in „AVR ATtiny13 DS18B20/DS18S20 I2C PCF8574 LCD Temperaturanzeige“ · Projekte & Code ·
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PDF
AM2305.pdf
bit (Bit14 ~ bit 0) temperature values. Parity bit Parity bit = humidity high + humidity low + temperature high + temperature low ◎Single-bus data calculation example Example 1:40 Data received: 0000 0010 1001 0010 0000 0001 0000 1101 1010 0010 High humidity 8 Low humidity 8
in „1 Wire Schnittstelle vor der "bösen" ESD Welt schützen“ · Mikrocontroller und Digitale Elektronik ·