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Datei
Beispiel.txt
("nop"); if( bitfolge & ( 1 << x ) ) { Ausgang_PORT |= ( 1 << Ausgang_SDA ); //auf high setzen } else { Ausgang_PORT &= ~( 1 << Ausgang_SDA ); //auf low setzen } //dies hier ist die Wartezeit zwischen Datenflanke und clock-low-->>high-Flanke asm volatile ("nop"); asm volatile ("nop");
in „inline Assembler "NOP" wird wegoptimiert in I2C-Routine“ · Mikrocontroller und Digitale Elektronik ·
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Datei
FlipDot_V04.ino
[z] & 0x7; tmp = 0x80 >> z; // alle dunklen DOTs schalten schreibeRegister(ziffer, 0, 0); // Zeile LOW inaktiv schreibeRegister(ziffer, 1, muster); // Spaltenmuster LOW setzen schreibeRegister(ziffer, 2, tmp); // Zeile HIGH, Spalte HIGH inaktiv #ifdef TEST Serial.println(F("Dots off")); printBIN(tmp)
in „Flipdot Display Projekt (Hilfe Logik Erbeten)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
adc_m128_test1.asm
ADC Wertes .def zeichen = r27 ; Zeichen zur Ausgabe auf den UART .def buffer = r28 ;rs232 ldi temp1, LOW(RAMEND) ; Stackpointer initialisieren out SPL, temp1 ldi temp1, HIGH(RAMEND) out SPH, temp1 ;UART Initalisierung ; Baudrate einstellen ldi temp1, LOW(UBRRVAL) sts UBRR1L, temp1 ldi temp1, HIGH(UBRRVAL
in „Problem mit ADC an mega128“ · Mikrocontroller und Digitale Elektronik ·
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Datei
i2csoft.c
Object->Sda ); // .. } void I2cSoftStart( tI2c *Object ) { *Object->Port |= ( 1 << Object->Scl ); // High H_DEL; *Object->Port &= ~( 1 << Object->Sda ); // Low H_DEL; } void I2cSoftStop( tI2c *Object ) { *Object->Port &= ~( 1 << Object->Sda ); // Low H_DEL; *Object->Port |= ( 1 << Object->Scl ); // High
in „Software I2C -> ATMEL“ · Mikrocontroller und Digitale Elektronik ·
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PDF
drv103.pdf
DRV103 DV 03 R03 SBVS029A – JUNE 2001 PWM LOW-SIDE DRIVER (1.5A and 3A) for Solenoids, Coils, Valves, Heaters, and Lamps FEATURES DESCRIPTION ● HIGH OUTPUT DRIVE: 1.5A and 3A Versions The DRV103 is a low-side DMOS power switch employing ● WIDE
in „PWM Signal wie stell ich das ein?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ZXLD1362.pdf
Inductor selection Recommended inductor values for the ZXLD1362 are in the range 68 µH to 220 µH. Higher values of inductance are recommended at higher supply voltages in order to minimize errors due to switching delays, which result in increased ripple and lower efficiency. Higher values of inductance
in „MAX16832 v. ZXLD1362 (LED Treiber)“ · Mikrocontroller und Digitale Elektronik ·
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Datei
avr300.asm
register empty i2c_write_first: breq i2c_get_ack ; goto get acknowledge sbi DDRD,SCLP ; force SCL low brcc i2c_write_low ; if bit high nop ; (equalize number of cycles) cbi DDRD,SDAP ; release SDA rjmp i2c_write_high i2c_write_low: ; else sbi DDRD,SDAP ; force SDA low rjmp i2c_write_high ; (equalize
in „Externes I2C EEPROM am AT90S1200“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ADC_IIC.asm
register empty i2c_write_first: breq i2c_get_ack ; goto get acknowledge sbi DDRC,SCLP ; force SCL low brcc i2c_write_low ; if bit high nop ; (equalize number of cycles) cbi DDRC,SDAP ; release SDA rjmp i2c_write_high i2c_write_low: ; else sbi DDRC,SDAP ; force SDA low rjmp i2c_write_high ; (equalize
in „Analog zu I²C haut nicht hin“ · Mikrocontroller und Digitale Elektronik ·
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Datei
patricia_Lcd.asm
Zeile mit adresse 0x45 .db " ",0 text5: ;soll im erste Zeile mit adresse 0xaF .db "Watt ",0 ldi temp1, LOW(RAMEND) ; LOW-Byte der obersten RAM-Adresse out SPL, temp1 ldi temp1, HIGH(RAMEND) ; HIGH-Byte der obersten RAM-Adresse out SPH, temp1 ldi temp1, 0xFF ;Port D = Ausgang out DDRD, temp1 rcall lcd_init
in „Dezimale Umwandlung vor LCD Ausgabe“ · Mikrocontroller und Digitale Elektronik ·
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PDF
W25Q256JW_SPI_RevJ_03102021_Plus.pdf
ALT UNIT MIN TYP MAX Write Protect Setup Time Before /CS Low WHSL (3) 20 ns Write Protect Hold Time After /CS High SHWL (3) 100 ns /CS High to Power-down Mode tDP(2) 3 µs (2) /CS High to Standby Mode without ID Read RES 1 30 µs (2) /CS High to next Instruction
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PDF
4pole.pdf
FOUR POLE ELECTROLYTIC CAPACITOR WITH EXTREMELY LOW INDUCTANCE, FOR HIGH FREQUENCY OUTPUT FILTERING AND FOR ENERGY STORAGE CIRCUITS IN HIGH-END AUDIO EQUIPMENTS . Application notes The short “life-story” of four pole for power supplies (and not only
in „4 Pole axial electrolytic capacitor“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
vga.asm
load lds spi1, sram+(1<<PB1 | 1<<PB2 | 1<<PB3 | 1<<PB5)-1 lds cifr, sram+$40-1 out GICR, cifr ldi XL, low(SRAM_START+13*columns) ldi XH, high(SRAM_START+13*columns) ldi YL, low(sram) ldi YH, high(sram) clr ctr0 ; clear counter clr ctr1 ldi tmp1, high(hscan) ldi tmp0, low(hscan) out ICR1H, tmp1 out ICR1L, tmp0 ldi tmp1, high(hsync) ldi tmp0, low(hsync) out OCR1AH, tmp1 out OCR1AL, tmp0 ldi tmp1, high(hsync+hbporch-tisr) ldi tmp0, low(hsync+hbporch-tisr) out OCR1BH, tmp1 out OCR1BL, tmp0 ldi tmp0, cfg0 ldi tmp1, cfg1 out
in „Atmega8 VGA - SPI mit 16 statt 18 Takten pro Zeichen“ · Projekte & Code ·
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PDF
applsci-08-01825-v2.pdf
the ageing can be seen. It also shows that the SOC level has a huge impact on the ageing, where higher C-rates in the lower SOC levels even generate less ageing than the lower C-rates in the higher SOC levels. As mentioned before, extrapolation was used for the lower C-rates seen in Figure 8a. The results
in „Pedelec: Akku und Controller verklebt - ist das rechtens ?“ · Fahrzeugelektronik ·
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PDF
AN749.pdf
generated within the transformer at design formula are available in the Reference section. Power higher frequencies, although part of this may be caused by the losses in the magnetic core employed to improve the combining techniques useful in designing high power low frequency response. At low frequencies
in „Stackpole Ferrit Kerne für RF Verstärker“ · HF, Funk und Felder ·
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PDF
AN749.pdf
generated within the transformer at design formula are available in the Reference section. Power higher frequencies, although part of this may be caused by the losses in the magnetic core employed to improve the combining techniques useful in designing high power low frequency response. At low frequencies
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Datei
AT89C51ED2.h
HIGH. __sfr __at (0xEA) CCAP0L; //Module 0 Capture LOW. __sfr __at (0xEB) CCAP1L; //Module 1 Capture LOW. __sfr __at (0xEC) CCAP2L; //Module 2 Capture LOW. __sfr __at (0xED) CCAP3L; //Module 3 Capture LOW
in „Include Datei AT89C51ed2“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ds18s20.pdf
data line to pull up to a high level within 15 µs after the start of the write time slot. For the host to generate a Write 0 time slot, the data line must be pulled to a logic low level and remain low for 60 µs. Read Time Slots The
in „Messabweichung beim 1-wire DS1“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet_002.pdf
data line to pull up to a high level within 15 µs after the start of the write time slot. For the host to generate a Write 0 time slot, the data line must be pulled to a logic low level and remain low for 60 µs. Read Time Slots The
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PDF
24C16.pdf
volt Symbol Parameter Min Max Min Max Units fSCL Clock Frequency, SCL 100 400 KHz t Clock Pulse Width Low 4.7 1.2 s LOW t Clock Pulse Width High 4.0 0.6 s HIGH tI Noise Suppression Time (1) 100 50 ns tAA Clock Low to Data Out Valid 0.1 4.5 0.1 0.9 s tBUF Time the bus must be free before a new 4.7 1.2 s
in „Erstellen eines 24C16 Eeproms in Multisim“ · Mikrocontroller und Digitale Elektronik ·
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PDF
EB_104.pdf
. Motorola MRF150 RF power drain bias current, only m matching is required, and it can relatively high power levels. This technique is considered be only 〉 10%. N impractical for bipolar transistors due to their low input N power FET has approximately five to ten times higher input I impedance than a
in „Stackpole Ferrit Kerne für RF Verstärker“ · HF, Funk und Felder ·
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PDF
BTHQ_128064AVD-FSTF-12-LED02White-COG.pdf
Symbol Description 1 P/S This is the parallel data input/serial data input switch terminal. P/S = HIGH: Parallel data input. P/S = LOW: Serial data input. The following applies depending on the P/S status: P/S Data/Command Data Read/Write Serial Clock HIGH D/C(A0) D0 to D7 RD, WR LOW D/C(A0) SI (D7) Write only SCL (D6) When P/S = LOW, D0 to D5 are HZ. D0 to D5 may be HIGH, LOW or Open. RD(E) and WR(R/W) are fixed to either HIGH or LOW. With serial data input, RAM display data reading is not supported. 2 C86 This is the MPU interface
in „Einschaltproblem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datenblatt_Display.pdf
Symbol Description 1 P/S This is the parallel data input/serial data input switch terminal. P/S = HIGH: Parallel data input. P/S = LOW: Serial data input. The following applies depending on the P/S status: P/S Data/Command Data Read/Write Serial Clock HIGH D/C(A0) D0 to D7 RD, WR LOW D/C(A0) SI (D7) Write only SCL (D6) When P/S = LOW, D0 to D5 are HZ. D0 to D5 may be HIGH, LOW or Open. RD(E) and WR(R/W) are fixed to either HIGH or LOW. With serial data input, RAM display data reading is not supported. 2 C86 This is the MPU interface
in „Pixelfehler auf Graphikdisplay“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PC16550D.pdf
Register Master Reset 0110 0000 MODEM Status Register Master Reset XXXX 0000 (Note 2) SOUT Master Reset High INTR (RCVR Errs) Read LSR/MR Low INTR (RCVR Data Ready) Read RBR/MR Low INTR (THRE) Read IIR/Write THR/MR Low INTR (Modem Status Changes) Read MSR/MR Low OUT 2 Master Reset High RTS Master Reset High DTR Master Reset High OUT 1 Master Reset High RCVR FIFO MR/FCR1 F#R0/DFCR0 All Bits Low XMIT FIFO MR/FCR1 F#R0/DFCR0 All Bits Low Note 1: Boldface bits are permanently low. Note 2: Bits 7–4 are driven by the input signals
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PDF
combined_comparison.pdf
time 25 ns (10MHz) CL= 50pF, V DD = 2.7-5.5V tr(I/O)outOutput low to high rise time 25 ns F Maximum frequency CL= 50pF, V = 2.7-5.5V 30 MHz 11 max(I/O)out DD tf(I/O)outOutput high to low fall time CL= 50pF, V DD = 2.7-5.5V 10 ns (30MHz) tr(I/O)outOutput low to high
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Datei
nrf24l01.c
GPIO_Pin_4 #define CE_PORT GPIOD #define CE_PIN GPIO_Pin_7 /* CE und CSN Pins schalten */ #define CSN_LOW GPIO_ResetBits(CSN_PORT,CSN_PIN) #define CSN_HIGH GPIO_SetBits(CSN_PORT,CSN_PIN) #define CE_LOW GPIO_ResetBits(CE_PORT,CE_PIN) #define CE_HIGH GPIO_SetBits(CE_PORT,CE_PIN) /* Viele Definitionen des
in „GCC Optimierung killt Funktion“ · Mikrocontroller und Digitale Elektronik ·
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Datei
spi_prog.cpp
return true; digitalWrite (RESET_PIN, HIGH); delay (1); digitalWrite (RESET_PIN, LOW); } return false; } return true; } void isp_end () { SPCR = 0; pinMode (MOSI_PIN, INPUT); digitalWrite (MOSI_PIN, HIGH); digitalWrite (MISO_PIN, HIGH); digitalWrite
in „Atmega mittels Atmega-Board programmieren“ · Mikrocontroller und Digitale Elektronik ·
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PDF
310J---FIDamp.pdf
l GENERAL DESCRIPTION Model 311- The is 311 similar to the 310 but the high quality The Analog Devices'models 31Oand 311 areoperationalampli- input is thepositiveor non-inaerting inplut. It isimarily in- fierswith extremely low input bias currents and high input tended for
in „DC-Messverstärker (Chopper) mit Kapazitätsdioden (diskret)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Datenblatt_DS18B20.pdf
the bus high. To generate a Write 0 time slot, after pulling the 1-Wire bus low, the bus master must continue to hold the bus low for the duration of the time slot (at least 60μs). 15 of 22 DS18B20 The DS18B20 samples
in „DS18B20 Darstellung von negativen Zahlen im Zweierkomplement?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datenblatt_DS18B20.pdf
the bus high. To generate a Write 0 time slot, after pulling the 1-Wire bus low, the bus master must continue to hold the bus low for the duration of the time slot (at least 60μs). 15 of 22 DS18B20 The DS18B20 samples
in „Timing Probleme 1-Wire“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datenblatt_DS18B20.pdf
the bus high. To generate a Write 0 time slot, after pulling the 1-Wire bus low, the bus master must continue to hold the bus low for the duration of the time slot (at least 60μs). 15 of 22 DS18B20 The DS18B20 samples
in „1-Wire Protokollablauf“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Experimental_Campaign_Tests_on_a_Tesla_Micro-Expanders.pdf
of the turbine and specific inlet conditions. In Fig. 4, we can see that when gap between disks is high, 0.3 mm, for lower rotational speed, at same mass flow, performance of the turbine is better. While at higher mass flow efficiency decreases compared to higher rotational speed. Gap width affects the leakage around the end walls based on pressure drop across rotor. For lower gap, pressure drop across rotor will be higher and hence more flow will bypass the rotor leading to lower performance. This can be the reason why 0.1 mm gap between disks shows lower efficiency. However
in „Luftzerlegung/Luftverflüssigung auf dem Basteltisch machbar?“ · Offtopic ·
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PDF
irmck203.pdf
Rectifier and may not be copied or distributed witho9t expressed consent. IRMCK203 Motion Peripheral Group Low (L) / Signal Input (I) / High (H) True Function Output (O) Asserted PWMUH O PWM phase U high side PWMUL O PWM phase U low side PWMVH O - PWM phase V high side PWHVL O PWM phase V low side PWMWH O PWM
in „BLDC, Synchronmaschine, Drehfeld Experimentierschaltung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
Display's l schen void lcd_status(void) { pd0 = 0x00; // Port 2 als Eingang LCD_CD = 1; // Commando High LCD_RD = 0; // Read Low LCD_CE = 0; // Chip Enable Low asm ("NOP"); asm ("NOP"); asm ("NOP"); LCD_STATUS = LCD_PORT; // Status lesen LCD_CE = 1; // Chip Enable High LCD_RD = 1; // Read High LCD_STATUS
in „Ein paar Fragen zum T6963C“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tpa3244.pdf
lower than 125°C 1 0 Junction temperature higher than 125°C (overtemperature warning) 1 1 Junction temperature lower than 125°C and no OLP or UVP faults (normal operation) Note that asserting RESET low forces
in „Class-D Verstärker TPA3244“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BUF634_Datasheet.pdf
® BUF634 BUF3 4 BU634 B F64 B6 4 250mA HIGH-SPEED BUFFER FEATURES APPLICATIONS HIGH OUTPUT CURRENT: 250mA VALVE DRIVER SLEW RATE: 2000V/ s SOLENOID DRIVER PIN-SELECTED BANDWIDTH: OP AMP CURRENT BOOSTER 30MHz to 180MHz LINE DRIVER LOW QUIESCENT
in „OP Ausgang -> Leitung -> AD Messkarte -- Wie\Wo terminieren?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Monitorhalterung2_2.ino
Value < 250) || (_Achse_A_0_Value == 0 && _S1_Value > 750)) //Achse Wand Stopp { digitalWrite(K1_A_0, HIGH); digitalWrite(K4_A_1, HIGH); } //Achse Scharnier if ((_S2_Value < 250) && (_Achse_B_1_Value == 1)) //Achse Scharnier ausfahren (auf) { digitalWrite(K2_B_0, LOW); digitalWrite(K5_B_1, LOW); } if (_S2
in „Falsche Analogwerte im Seriellen Monitor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TPS3510P.pdf
monitors 3.3 V and 5 V. When an OV or UV condition is detected, the power good output (PGO) is set to low and FPO is latched high. PSON from low to high resets the protection latch. UVP function is enabled 75 ms after PSON is set low and debounced. Furthermore, there is a 2.3-ms delay (and an additional
in „TPS3510 mit Datemblatt“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
sht11.c
--------------------*/ // Befehl einleiten: DATA auf LOW während SCK HIGH ist static void transmission_start(void) { SHT11_DATA_OUT; // Port auf Ausgang SHT11_DATA_HIGH; _delay_us(IF_SPEED); SHT11_SCK_LOW; // Ausgangszustand _delay_us(IF_SPEED); SHT11_SCK_HIGH; _delay_us(IF_SPEED); SHT11_DATA_LOW; // aktivierende Flanke _delay_us(IF_SPEED); SHT11_SCK_LOW; _delay_us(IF_SPEED); // einen Taktimpuls SHT11_SCK_HIGH; _delay_us(IF_SPEED); SHT11_DATA_HIGH; _delay_us(IF_SPEED); // wieder Ruhezustand
in „SHT11 an ATmega2560 Es funktioniert nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN2236.pdf
of the comparator pulses high. Small signal levels make this design an interesting challenge. It requires very low-noise circuitry, both because the amount of charge generated by individual gamma photons is extremely small, and
in „Fragen zum PCF8583 als Event Counter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
W25Q128JV_RevI_08232021_Plus.pdf
MHz instructions( 2.7V-3.0V) Clock frequency for Read Data instruction (03h) R D.C. 50 MHz Clock High, Low Time tCLH, 45% for all instructions except for Read Data (03h) CLL(1) PC ns CRLH , Clock High, Low Time (1) 45% ns for Read Data (03h) instruction tCRLL PC Clock Rise Time peak to peak CLCH (2)
in „Speicher handling mit W25Q128“ · Mikrocontroller und Digitale Elektronik ·
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PDF
INA111_BB.pdf
resistors provides a balanced input with possible NOISE AND ACCURACY PERFORMANCE advantages of lower input offset voltage due to bias current The INA111’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 may provide lower offset voltage and drift. For very low source impedance (≤1k ), Crystal or the INA103 may provide
in „INA111 als Verstärker für Solarzelle?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
IC_CC1101.cpp
DDRB |= (1<<MOSI_PIN); //pinMode(MOSI_PIN, OUTPUT); PORTB &=~ (1<<MOSI_PIN); //digitalWrite(MOSI_PIN, LOW); DDRB |=(1<<SCK_PIN); //pinMode(SCK_PIN, OUTPUT); PORTB |= (1<<SCK_PIN); //digitalWrite(SCK_PIN, HIGH); DDRB |=(1<<SS_PIN); //pinMode(SS_PIN, OUTPUT); PORTB |= (1<<SS_PIN); //digitalWrite(SS_PIN, HIGH
in „In-Circuit radino CC1101 Modul Hängt im SPI Transfer“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ina111.pdf
resistors provides a balanced input with possible NOISE AND ACCURACY PERFORMANCE advantages of lower input offset voltage due to bias current The INA111’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 may provide lower offset voltage and drift. For very low source impedance (≤1k ), Crystal or the INA103 may provide
in „"Hallsonde für Oszilloskop" im Eigenbau?!“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
eve.cpp
SPI.h> volatile unsigned int cmdOffset = 0x0000; void host_command(unsigned char data) { SPI.setSS(LOW); delayMicroseconds(5); SPI.transfer(data); SPI.transfer(0x00); SPI.transfer(0x00); SPI.setSS(HIGH); } void cmdparam8(unsigned char data) { SPI.setSS(LOW); delayMicroseconds(5); SPI.transfer(data);
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PDF
Datasheet_7416.pdf
, VI= 5.5V 1 mA IIH HIGH Level Input Current VCC = Max, VI= 2.4V 40 µA IIL LOW Level Input Current VCC = Max, VI= 0.4V −1.6 mA ICCH Supply Current with Outputs HIGH VCC = Max 30 48 mA I Supply Current with Outputs LOW V = Max
in „3,3 volt DSP out auf 5 V Pegel“ · Mikrocontroller und Digitale Elektronik ·
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Datei
AVR360_asm.htm
,high(c_value) ;Load compare high value out OCR1AH,temp ldi temp,low(c_value) ;Load compare low value out OCR1AL,temp ldi temp,0x00 out TCNT1H,temp ;Clear timer high byte out TCNT1L,temp ;Clear timer low
in „App-Note AVR360 und ATmega8“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MX25L6405D__3V__64Mb__v1.5.pdf
CP programming cycle, which means the WIP bit=0. The sequence of issuing CP instruction is : CS# high to low→ sending CP instruction code→ 3-byte address on SI→ Data Byte on SI→CS# goes high to low→ sending CP instruction......→ last desired byte programmed or sending Write Disable (WRDI) instruction
in „FLASH Memory Chip im Lenovo X200 von 8 MB auf 16 MB vergroessern“ · PC Hard- und Software ·
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PDF
DS-CY7C1471V33-133AXC.pdf
, 18, 19] – 3.8 ns CHZ OEV OE LOW to output valid – 3.0 ns OELZ OE LOW to output low Z [17, 18, 19] 0 – ns [17, 18, 19] OEHZ OE HIGH to output high Z – 3.0 ns Setup Times t Address setup before CLK rise 1.5 – ns AS t ADV/LD setup before
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Datei
PROGTINY.INC
rjmp to boot loader --------------- ld appl, y ldd apph, y+1 subi appl, low (BootStart - 0x1001) ; new application jump sbci apph, high(BootStart - 0x1001) ldi a0, low (BootStart-1) ldi a1, high(BootStart-1 + 0xC000) ; = RJMP st y, a0 std y+1, a1 ; replace by bootloader jump
in „Verständnisfrage zur LINUX AVR-GCC Toolchain & zum ATtiny167“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM2574.pdf
drive this pin with a “high-frequency,” “low-inductance,” or “low-ESR.” These will high-level TTL or CMOS signal. The ON /OFF pin can be reduce the output ripple to 10 mV or 20 mV. However, when safely pulled up to +V IN without
in „Ersatz für 7805 gesucht“ · Mikrocontroller und Digitale Elektronik ·