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Datei
t6963c.h
glcd1_sget(void) // get LCD display status byte { int glcd1_status; glcd1_SET_DATADIR_IN(); glcd1_cd_high(); // bring LCD C/D line high (read status byte) glcd1_rd_low(); // bring LCD /RD line low (read active) glcd1_ce_low(); // bring LCD /CE line low (chip-enable active) asm volatile ("nop"::); asm volatile
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CM8888S.pdf
WR, RSO, CS) Low Level Input Voltage V 0.8 V IL High Level Input Voltage VIH 2.0 V Low Level Output Voltage (OL=1.6mA) VOL 0.4 V High Level Input Voltage OH=400mA) V OH 2.4 V Input Leakage Current (IN=0.4 to 2.4V) I
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AVR100_Accessing_the_EEPROM.PDF
;get address low byte in EEwtmph,EEARH ;get address high byte, remove if no high byte exists adiw EEwtmp,0x01 ;increment address out EEARL,EEwtmp ;output address low byte out EEARH,EEwtmph ;output address byte, remove
in „Universeller RC5-Fernbedienungsempfänger“ · Mikrocontroller und Digitale Elektronik ·
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Datei
sht11.c
} IODIR = DATA; //define DATA line as ouput if(!ack) DATA_HIGH else DATA_LOW SCK_HIGH //clk #9 for ack nop(); nop(); nop(); //pulswith approx. 5 us SCK_LOW DATA_HIGH //release DATA-line return val; } void sht71_transmission_start(void) { DATA_HIGH SCK_LOW //Initial state nop(); SCK_HIGH nop(); DATA_LOW nop(); SCK_LOW nop();nop();nop(); SCK_HIGH nop(); DATA_HIGH nop(); SCK_LOW } void sht71_connection_reset(void) { unsigned char i; DATA_HIGH SCK_LOW //Initial state for(i=0; i<9; i++)
in „LPC2148 und SHT11“ · Mikrocontroller und Digitale Elektronik ·
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ZN427-Impulsgeber.pdf
AxelR angenommen hat. Vielmehr wird die Konvertierung erst mit der positiven Rückflanke (Wechsel von LOW nach HIGH) des Startimpulses freigegeben und startet dann mit der folgenden negativen Flanke (Wechsel von HIGH nach LOW) des am Eingang CLOCK anliegenden Takts. Da die positive Flanke am Eingang /WR
in „Impulsgeber für 8 bit ADU“ · Mikrocontroller und Digitale Elektronik ·
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ADM485.pdf
1 ∆|V OCfor Complementary Output States 0.2 V R = 27 Ω or 50 Ω Output Short Circuit Current OUT= High) 35 250 mA –7 V ≤ VO≤ +12 V Output Short Circuit Current OUT= Low) 35 250 mA –7 V ≤ VO≤ +12 V CMOS Input Logic Threshold Low, V INL 0.8 V CMOS Input Logic Threshold High, VINH 2.0 V Logic Input Current
in „STM32 UART Kommunikation -> Langsamer uC Tod“ · Mikrocontroller und Digitale Elektronik ·
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Datei
sound.c
F4 1,0x16, 0,0xE3, // 0.5 second 0xF0,0x00, // pause low 0xF1,0x02, // pause high // G4 1,0x19, 0,0x81, // 0.5 second 0xF0,0x00, // pause low 0xF1,0x02, // pause high // A4 1,0x1C, 0,0xC6, // 0.5 second 0xF0,0x00, // pause low 0xF1,0x02, // pause high //
in „6502 Emulation auf AVR ?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
= HIGH; DATA =0xC0; P_ENABLE = LOW; P_ENABLE = LOW; P_CHIP1 = HIGH; P_CHIP2 = HIGH; P_DI = LOW; P_RW = LOW; P_ENABLE = HIGH; DATA =0xB9; P_ENABLE = LOW; while (1) { P_ENABLE = LOW; P_CHIP1 = HIGH; P_CHIP2 = HIGH; P_DI = HIGH; P_RW = LOW; P_ENABLE = HIGH; DATA =0x55; P_ENABLE = LOW; }; }
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AD8253.pdf
GainMode Table 6. Truth Table Logic Levels for Latched Gain Mode WR A1 A0 Gain WR A1 A0 Gain −V S Low Low 1 High to Low Low Low Change to 1 −V S Low High 10 High to Low Low High Change to 10 −V S High Low 100 High to Low High Low Change to 100 −V S High High 1000 High to Low High High Change to 1000 Low to Low X 1 X1 No change 1 1 LatchedGainMode Low to High X X No change High to High X 1 X1 No change Some applications have multiple programmable devices such as multiplexers or other programmable gain
in „2 Fragen zur Verstärkerschaltung“ · Analoge Elektronik und Schaltungstechnik ·
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Filter_Design_in_Thirty_Seconds_sloa093__TI.pdf
Supply 10 Filter Design in Thirty Seconds SLOA093 Design Procedure: • Go to Section 3, and design a high pass filter for the low end of the upper band. • Go to Section 2, and design a low pass filter for the high end of the lower band. • For the single supply case only: • Calculate Cin = Cout = 100 to
in „Bandpass und Phasenverschiebung“ · Mikrocontroller und Digitale Elektronik ·
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FilterDesignIn3oSeconds.pdf
Supply 10 Filter Design in Thirty Seconds SLOA093 Design Procedure: • Go to Section 3, and design a high pass filter for the low end of the upper band. • Go to Section 2, and design a low pass filter for the high end of the lower band. • For the single supply case only: • Calculate Cin = Cout = 100 to
in „Kerb-Filter mit OpAmp (LM324) tut nicht“ · Analoge Elektronik und Schaltungstechnik ·
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FilterDesignIn3oSeconds.pdf
Supply 10 Filter Design in Thirty Seconds SLOA093 Design Procedure: • Go to Section 3, and design a high pass filter for the low end of the upper band. • Go to Section 2, and design a low pass filter for the high end of the lower band. • For the single supply case only: • Calculate Cin = Cout = 100 to
in „Übertragungsfunktion Sallen Key Filter ( Tiefpass 2. Ordnung )“ · Analoge Elektronik und Schaltungstechnik ·
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FilterDesignIn3oSeconds.pdf
Supply 10 Filter Design in Thirty Seconds SLOA093 Design Procedure: • Go to Section 3, and design a high pass filter for the low end of the upper band. • Go to Section 2, and design a low pass filter for the high end of the lower band. • For the single supply case only: • Calculate Cin = Cout = 100 to
in „Wie komme ich auf die Grenzfrequenz eines RC Tiefpass“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
nrf24l01.c
MISO_AF GPIO_PinSource6 #define SCK_AF GPIO_PinSource7 /* CE und CSN Pins schalten */ #define CSN_LOW __DSB(); GPIO_ResetBits(CSN_PORT,CSN_PIN); __DSB(); #define CSN_HIGH __DSB(); GPIO_SetBits(CSN_PORT,CSN_PIN); __DSB(); #define CE_LOW __DSB(); GPIO_ResetBits(CE_PORT,CE_PIN); __DSB(); #define CE_HIGH
in „NRF24L01 SPI Problem bringt mich noch zum Wahnsinn!“ · Mikrocontroller und Digitale Elektronik ·
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drv8312.pdf
JANUARY 2014 ThreePhasePW MM otorD river Check for Samples: DRV8312, DRV8332 FEATURES Because of the low R of the power MOSFETs DS(on) • High-Efficiency Power Stage (up to 97%) with and intelligent gate drive design, the efficiency of these motor drivers can be up to 97%, which enables Low R DS(on)MOSFETs
in „Versorgung von BLDC für Logic“ · Analoge Elektronik und Schaltungstechnik ·
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3986pfd.pdf
Logic High-Side Drive CBOOT1B Translator C1B V MOTOR PFD1 Bridge2 Phase 2A C2A CBOOT2A PFD2 Phase 2 High-Side GH2A Drive Phase 2 S2A RGH2A RGH2B Control Logic VREG ENABLE GL2A Low-Side Drive LSS2 RGL2A RGL2B RESET
in „Bitte Hilfe in Englisch“ · Mikrocontroller und Digitale Elektronik ·
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3986.pdf
Logic High-Side Drive CBOOT1B Translator C1B V MOTOR PFD1 Bridge2 Phase 2A C2A CBOOT2A PFD2 Phase 2 High-Side GH2A Drive Phase 2 S2A RGH2A RGH2B Control Logic VREG ENABLE GL2A Low-Side Drive LSS2 RGL2A RGL2B RESET
in „Schrittmotorsteuerung“ · Mikrocontroller und Digitale Elektronik ·
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1-BTS7810K_11-03-2003.pdf
7810 K 1.4 Pin Definitions and Functions Pin No. Symbol Function 1 NC Not connected 2 SL1 Source of low-side switch 1 3 IL1 Analog input of low-side switch 1 4 NC Not connected 5 IH1 Digital input of high-side switch 1 6 ST1 Status of high-side switch 1; open Drain output 7 SH1 Source of high-side switch
in „Kuehlkoerper“ · Mikrocontroller und Digitale Elektronik ·
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BTS7810K_11-03-2003.pdf
7810 K 1.4 Pin Definitions and Functions Pin No. Symbol Function 1 NC Not connected 2 SL1 Source of low-side switch 1 3 IL1 Analog input of low-side switch 1 4 NC Not connected 5 IH1 Digital input of high-side switch 1 6 ST1 Status of high-side switch 1; open Drain output 7 SH1 Source of high-side switch
in „Ansteuerung eines Magnetventils --> Frage zu Datenblatt“ · Analoge Elektronik und Schaltungstechnik ·
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82OM-80200MA.pdf
signal output. EOT: Output “1” to GND, means the AD convert procedure is LOW: Indicate LOW signal, and series signal output. completed, can change the DUT. HIGH: Indicate HIGH signal, and series signal output. LOW: Output “1” to GND, means the judgment of the compare CLOCK: When every group of output signal (including READY, function is low. PASS, LOW, HIGH) is ready, a CLOCK signal will be sent HIGH: Output “1” to GND, means the judgment of the compare out. There are 100 groups of output signals totally. function is high. STRB: After
in „Elektronischer Schalter gesucht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
IO_subproc.asm
valtregadr,b mov valtregradr,b mov vdregadr,b ldi a,wdtcr+0xc0 ;version message mov dregadr,a ldi a,low(ver_msg<<1) sts ver_msgx,a ldi a,high(ver_msg<<1) sts ver_msgx+1,a ldi zh,high(bitmap<<1) ;move register protection and ldi zl,low(bitmap<<1) ;default register address to RAM ldi yh,high(regprot) ldi
in „ATMEGA16 Revision & USART receive buffer“ · Mikrocontroller und Digitale Elektronik ·
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Datei
DMXmega8.ASM
DMX-BLOCKSET Pointer Bit 1-8 Bit 0 wird immer als 1 betrachtet ; r5 DMX-BLOCKSET Counter ; r6 Mega8 Calib low ; r7 Mega8 Calib high/Calib Trigger ; r8 2313 Calib low ; r9 2313 Calib High ; r10 Next 2313 Command ; r11 Delta Calib ; r12 DMX-IN Pointer ; r13 DMX-OUT Pointer ; r14 Command in Pointer ; r15 Command
in „Atmel Controller Probleme mit Slot 1 und 2 bei DMX-512“ · Mikrocontroller und Digitale Elektronik ·
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62256.pdf
HM62256B Series 32,768-word 8-bit High Speed CMOS Static RAM ADE-203-135D (Z) Rev. 4.0 Nov. 29, 1995 Description The Hitachi HM62256B is a CMOS static RAM organized 32-kword 8-bit. It realizes higher performance and low power consumption
in „IC P51256Sl-10 SRAM“ · Mikrocontroller und Digitale Elektronik ·
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Datei
pal3.asm
; =0 brne sync2 ldi r17, high(equalization) ; 2.35µs pre- and post- equalization ldi r16, low(equalization) ; 2.35µs rjmp sync6 sync2: cpi r24, 5+margin/2 brne sync4 ldi r17, high(vsync) ; 27.3µs vsync ldi r16, low(vsync) ; 27.3µs
in „Atmega 328P 20MHz PAL Video Terminal 60x30 Zeichen mit PS/2“ · Projekte & Code ·
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AIP31068L.pdf
interpreted as START or STOP. Bit transfer is illustrated in below Figure. Both SDA and SCK lines remain HIGH when the bus is not busy. A HIGH-to-LOW transition of SDA, while SCK is HIGH is defined as the START condition (S). A LOW-to-HIGH transition of SDA while SCK is HIGH is defined as the STOP condition
in „ESP32 Treiber für I2C Display AiP31068L ardiuno.h wire.h“ · Mikrocontroller und Digitale Elektronik ·
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Active_antenna_coupler_for_VLF.pdf
you are interested in signals down to the coupler is to convert the low-level signal at the high- 10-kHz range or below. The preamplifier vvliL'drive 50- impedance pickup point on a short antenna to a low- ohm cablesup to 30.5 meters (100feet) long and still provide adequate
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I2C_bus.pdf
durch die Herstellung der STOP-Bedingung erreicht. Sie ist dann gegeben, wenn die SDA-Leitung von LOW- auf HIGH-Pegel wechselt, während sich die SCL- Leitung auf High-Pegel befindet.Aus diesem Grunde darf bei der normalen Datenübertragung nur dann Pegelwechsel auf SDA erfolgen, wenn SCL Low-Pegel führt
in „I2C Bus und EEPROM“ · Mikrocontroller und Digitale Elektronik ·
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87C257.pdf
Enable Low Chip Enable Low to ELQV CE Output Valid G = VIL 45 60 70 80 ns Output Enable Low to GLQV tOE Output Valid E = VIL 25 30 35 40 ns (2) Chip Enable High to EHQZ DF Output Hi-Z G = VIL 0 25 0 30 0 30 0
in „externes EPROM auslesen“ · Mikrocontroller und Digitale Elektronik ·
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bq24725.pdf
V REGN = 6 V, I = 10 mA 0.9 1.4 Ω PWM DRIVER TIMING LOW_HIGH Driver dead time from low side to high side 20 ns HIGH_LOW Driver dead time from high side to low side 20 ns INTERNAL SOFT START STEP Soft start current step 64 mA In CCM mode 10mΩ current sensing
in „[V] 3St TI LiIon Lade/ Batterie-Management Chips: BQ24725RG und BQ24072RG“ · Markt ·
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Datei
MPU6050.c
(){ i2c_start(MPU6050_ADDRESS_WRITE); i2c_write(0x3B); i2c_rep_start(MPU6050_ADDRESS_READ); int axHigh = i2c_readAck(); int axLow = i2c_readAck(); int ayHigh = i2c_readAck(); int ayLow = i2c_readAck(); int azHigh = i2c_readAck(); int azLow = i2c_readNak(); i2c_stop(); ax = axHigh << 8 | axLow; ay = ayHigh
in „MPU 6050 Gyrosensor auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2304140030_QX-Micro-Devices-QX2304L30T_C219035.pdf
Machine Translated by Google QX2304 High-efficiency PFM synchronous boost DC/DC converter Overview Features The QX2304 is a high-efficiency, low-power, low-ripple, high- Maximum efficiency: 95% frequency PFM synchronous boost DC/DC converter
in „IC (SOT23-3?) aus Christbaumkerze identifizieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
_IC2__001183650-da-01-en-IC_SWITCH_HISIDE_8C_ISO1H801G_DSO_36_INF.pdf
V --------------------- parallel input data is transferred to the input latches L ON(CL) with a high-to-low transition of the signal WR (write) while the CS is logic low. A low-to-high transition of CS 3.3.3 Power Transistor Overcurrent Protection transfers then the data of the input latches to the
in „ISO1H811G Anteuerung mit Atmega 32“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Nixie.ino.txt
= 21; delay(2000); digitalWrite(HighVoltage, HIGH); digitalWrite(EN_SEE, LOW); digitalWrite(EN_SEZ, LOW); digitalWrite(EN_MIE, LOW); digitalWrite(EN_MIZ, LOW); digitalWrite(EN_STE, LOW); digitalWrite(EN_STZ, LOW); } //-----------------
in „Nixieuhr mit IN-18 und Arduino Nano by Kapitän-Blaubär“ · Projekte & Code ·
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PDF
m95320-r.pdf
inputs/outputs become high impedance, the C line is pulled low (while the S line is pulled high): this will ensure that S and C do not become high at the same time, and so, that the tSHCH requirement is met. The typical value
in „EEPROM Frage“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main_160407_MakroAuszug.c
Spg-Schwellwert definieren, Formel: UW.MBg*AL/MBg, wird vom Compiler nur ein mal berechnet #define LED_HIGH (AUSGANG_SET_HIGH(PORTA,PA5)); (AUSGANG_SET_LOW(PORTA,PA6)); (AUSGANG_SET_LOW(PORTA,PA7)) // LED_high (Spg. Oberbereich) ein, Rest aus #define LED_MID (AUSGANG_SET_LOW(PORTA,PA5)); (AUSGANG_SET_HIGH(PORTA,PA6)); (AUSGANG_SET_LOW(PORTA,PA7)) // LED_mid (Spg. Mittelbereich) ein, Rest aus #define LED_LOW (AUSGANG_SET_LOW(PORTA,PA5)); (AUSGANG_SET_LOW(PORTA,PA6)); (AUSGANG_SET_HIGH(PORTA,PA7)) // LED_low (Spg. Unterbereich) ein
in „Präprozessor-Makro verschachteln“ · Mikrocontroller und Digitale Elektronik ·
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ADS1256.pdf
pigpio.OUTPUT) # pin 13 ADS1256 /PDWN input # set GPIO outputs to start values pi.write(23, 1) # DAC8532 /CS high pi.write(22, 1) # ADS1256 /CS high pi.write(11, 0) # ADS1256 SCLK low (later overridden by spi_open) pi.write(10, 0) # ADS1256 DIN low (later overridden by spi_open) pi.write(27, 1) # ADS1256 /PDWN high pi.write(18, 1) # ADS1256 /RESET high pi.write(8, 1) # AD9952 /CS high pi.write(24, 0) # AD9952 RESET low pi.write(25, 0) # AD9952 I/O-Update low # Delay until DRDY line goes low, allowing for automatic
in „Kommunikation mit AD-Wandler ADS1255“ · Mikrocontroller und Digitale Elektronik ·
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Datei
I_C-Slave_1200_avr302.asm
sec ; shift MSB out and "floating empty flag" in rol TWIdata 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 TWIdata ; 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 TWIdata ; if data register not empty brne loop_mr ; loop
in „I2C Slave für AT90S2313“ · Mikrocontroller und Digitale Elektronik ·
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Datei
1-Wire.asm
Bits auf dem 1-Wire Bus .def LevelTimerRL=r23 ; Zeitzähler für den gemessenen Pegel des 1-Wire Busses Low .def LevelTimerRH=r24 ; Zeitzähler für den gemessenen Pegel des 1-Wire Busses High .def OWStateRL=r25 ; State des 1-Wire Busses, Low-Teil .def OWStateRH=r26 ; State des 1-Wire Busses, High-Teil ; Daten
in „Störungen auf AVRs?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
I2C.c
rotate into carry and test _endasm if ( STATUS & 0x01 ) // if carry set, transmit out logic 1 { CLOCK_LOW; // set clock pin output to drive low DATA_HI; // release data line to float high Delay10TCYx(1); // user may need to modify based on Fosc CLOCK_HI; // release clock line to float high Delay1TCY();
in „Software I2C Problem - kein ACK“ · Mikrocontroller und Digitale Elektronik ·
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Datei
SetMenu.inc
************** ; ; Set month ; SetMonth: rcall LCD_1RowHome ;set the first position on LCD ldi ZH,high(StringDisplayMonth<<1) ldi ZL,low(StringDisplayMonth<<1) rcall Show_String lds temp2, D_month rcall Bin2BCD rcall ShowBCD rcall LCD_2RowHome ldi ZH,high(StringSetMD<<1) ldi ZL,low(StringSetMD<<1) rcall
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Alliance_-_as7c34098a_v2.1-1.pdf
OE) access time tOE – 4 – 5 – 6 – 7 ns Output hold from address change tOH 3 – 3 – 3 – 3 – ns 5 CE Low to output in low Z tCLZ 3 – 3 – 3 – 3 – ns 4, 5 CE High to output in high Z CHZ – 5 – 6 – 7 – 9 ns 4, 5 OE Low to output in low Z tOLZ 0 – 0 – 0 – 0 – ns 4, 5 OE High to output in high Z OHZ – 5 – 6 – 7 – 9 ns 4, 5 t – 5 – 6 – 7 – 8 ns LB, UB access time BA t 0 – 0 – 0 – 0 – ns LB, UB Low to output in low Z BLZ t – 5 – 6 – 7 – 9 ns LB, UB High to output in high Z BHZ Power up time t 0 – 0 – 0 – 0 – ns 5 PU Power down time t – 10 – 12 – 15 – 20 ns 5 PD Key to switching waveforms Rising
in „Suche 3,3V SRAM mind 64kb“ · Markt ·
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PDF
Perkin_Elmer_Flash___Arc_Tubes.pdf
26 QXA RING SERIES Page 33 Liquid cooled, high pressure krypton arc lamps for C/W (DC) operation. Air cooled ring format xenon flashlamps for low aver- age power, medium peak power operation. QDX SERIES Page 28 Fast rise time, high peak power, low
in „Reparatur (UW) Blitzgerät möglich?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MCP73871-Data-Sheet-20002090E__2_.pdf
(PROG2) Input High Voltage Level V IH 1.8 — — V Input Low Voltage Level VIL — — 0.8 V Input Leakage Current LK — 0.01 1 μA VPROG2 = VDD Timer Enable (TE) Input High Voltage Level V IH 1.8 — — V Note 1 Input Low Voltage
in „Fehlersuche beim MCP73871“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ADUCI2C.c
--------------------------------- void i2c_start(void) { // An I2C start sequence is defined as a High to Low Transistino on the data // line as the CLK pin is high MDE = H; // Master Mode Data Output Enable: ON MDO = H; MCO = H; MDO = L; // Master Mode Data Output: LOW delay_time(I2CDELAY); // Warte
in „Leuftfeuchtigkeitssensor HH10D“ · Mikrocontroller und Digitale Elektronik ·
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80515.pdf
CCL3 Comp./Capture Reg. 3, Low Byte0C6 00 H H CRCH Com./Rel./Capt. Reg. High Byte0CBH 00H CRCL Com./Rel./Capt. Reg. Low Byte 0CAH 00H TH2 Timer 2, High Byte 0CD H 00H TL2 Timer 2, Low Byte 0CC 00 H1) H T2CON Timer 2 Control Register
in „Probleme mit dem SAAB 80C535“ · Mikrocontroller und Digitale Elektronik ·
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Datei
grafiklcd.asm
active low, command high) ;port E pin 4 -> lcd reset (active low) ;port E pin 5 -> lcd WR (active low) ; ;####################################################################### .include "C:\Programme\Atmel\AVR
in „Ein paar Fragen zum T6963C“ · Mikrocontroller und Digitale Elektronik ·
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Datei
grafiklcd.asm
active low, command high) ;port E pin 4 -> lcd reset (active low) ;port E pin 5 -> lcd WR (active low) ; ;####################################################################### .include "C:\Programme\Atmel\AVR
in „Ein paar Fragen zum T6963C“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Gas-Sensor.pdf
monitoring device suitable for the detection of gas, butane , propane , methane , smoke , etc. ; Using high-quality dual-panel design, with power indicator and TTL signal output instructions; The switching signal having a DO (TTL) output and analog output AO ; TTL output valid signal is low . ( Low-level
in „cooles Arduino Projekt gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
74LS193.pdf
Delay Time Count Down PHL 24 32 ns High to Low Level Output to Borrow t Propagation Delay Time Either Count PLH 38 45 ns Low to High Level Output to Any Q PHL Propagation Delay Time Either Count High to Low Level Output to Any Q 47 54 ns PLH Propagation Delay Time Load to Low to High Level Output Any Q 40 41 ns PHL Propagation Delay Time Load to High to Low Level Output Any Q 40 47 ns PHL Propagation Delay Time Clear to High to Low Level Output Any Q 35 44 ns 3 Logic Diagram
in „Binär-Zähler - fertig kaufen oder Lötvorlage gesucht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
countdown_timer_4x7_seg_.ino
); digitalWrite(dotPoint4,HIGH); } else if (setPoint==3) { digitalWrite(dotPoint1,LOW); digitalWrite(dotPoint2,LOW); digitalWrite(dotPoint3,HIGH); digitalWrite(dotPoint4,LOW); } else if (setPoint==2) { digitalWrite(dotPoint1,HIGH
in „7Sgement 12V Betrieb, per multiplexen“ · Mikrocontroller und Digitale Elektronik ·