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Datei
i2clcd.h
write operation to/from the display two bytes are send/received. \n In each of those two bytes the higher nibble contains the RS, RW, EMPTY and ENABLE bit. In the byte which is read/written first, the lower nibble contains bits 0 to 3 and \n in the second byte the lower nibble contains bit 4 to 7. */ /
in „4x20-LCD läuft nicht richtig“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LS7060_LS7062.pdf
DECODER ENABLE The scan counter is reset to the least significant byte positionhen this input is high, the scan counter and the Data Outputs are (State 1) when SCAN RESET input is brought low for a mini- disabled. When ENABLE is low, the scan counter and Data Out- puts are enabled for normal operation
in „Suche Manual/Schaltplan CN3165 Voltcraft Universalzähler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
NVT2001_NVT2002.pdf
voltage level translator 7.2 Bidirectional translation For the bidirectional clamping configuration (higher voltage to lower voltage or lower voltage to higher voltage), the EN input must be connected to VREFB and both pins pulled to HIGH side V pu(D)through a pull-up resistor (typically 200 k). This allows
in „Brauche Hilfe beim Verstehen eines Datenblatts“ · Mikrocontroller und Digitale Elektronik ·
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Datei
testtemp.c
TSIC_OFF() TSIC_PORT &= ~(1<<TSCI_POWER_PIN) //#define TSIC_SIGNAL (TSIC_PORT & (1<<TSIC_SIGNAL_PIN)) // Low/High Signal of the TSIC-Sensor, e.g. "if(TSIC_SIGNAL_HIGH)..." #define TSIC_SIGNAL_HIGH TSIC_PIN & ( 1 << TSIC_SIGNAL_PIN ) #define TSIC_SIGNAL_LOW !( TSIC_PIN & ( 1 << TSIC_SIGNAL_PIN )) /*********
in „AVR TSIC Auswertung => riesen Programm“ · Mikrocontroller und Digitale Elektronik ·
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Datei
i2c_master.c
volatile("nop"); asm volatile("nop"); asm volatile("nop"); } void scl_toggle(void) { short_delay(); SCL_HIGH(); short_delay(); SCL_LOW(); } void i2c_start_cond(void) { SDA_LOW(); short_delay(); SCL_LOW(); } #endif /************************************************************** Initialisiert den I²C Bus des
in „Alseits beliebt GCC plugin error“ · Mikrocontroller und Digitale Elektronik ·
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Datei
i2c_master.c
volatile("nop"); asm volatile("nop"); asm volatile("nop"); } void scl_toggle(void) { short_delay(); SCL_HIGH(); short_delay(); SCL_LOW(); } void i2c_start_cond(void) { SDA_LOW(); short_delay(); SCL_LOW(); } #endif /************************************************************** Initialisiert den I²C Bus des
in „Fragen zu Software I2C“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datasheet_SHT3x_DIS.pdf
and enter the single shot mode. Fetch Data 0x E0 00 Condition Hex. code Repeatability mps MSB LSB High 32 Medium 0.5 0x20 24 Low 2F High 30 Medium 1 0x21 26 Low 2D High 36 Medium 2 0x22 20 Table 11Fetch Data command (Clear blocks are controlled by the microcontroller, grey blocks by the sensor). Low
in „[V] 2x I2C Temperatur/Feuchte Sensor FS400-SHT35“ · Markt ·
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PDF
emax.pdf
voltage is : 14.4*45%=6.5V Startup mode: normal / soft / super-soft, default is normal startup. Timing: low / medium / high, default is medium timing. In normal cases, low timing can be used for most motors. But for high efficiency, we recommend the Low timing for 2 poles motor and Medium timing for 6 poles and above. For higher speed, High timing could be used. ESC. Protection Features: Low-voltage cutoff protection / over-heat protection / throttle signal lost protection . Design Features - Capacitors with extremely low
in „A4963 BLDC Motor Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
pwm8ch.asm
immediate ldi wr0, @1 xout @0, wr0 .endmacro .macro mem_init ;copy n byte from Flash to RAM ldi xl, low(@0) ;destination in RAM ldi xh, high(@0) ldi zl, low(_mlabel2*2) ;source in Flash ldi zh, high(_mlabel2*2) _mlabel1: lpm wr1, z+ st x+, wr1 cpi xl, low(@0+@1) ;max 256 byte brne _mlabel1 rjmp pc + 1
in „AVR Assembler-Frage“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tlc549.pdf
sequence between the microprocessor/controller and the device loses synchronization. When CS is taken high, it must remain high until the end of conversion. Otherwise, a valid high-to-low transition of CS causes a reset condition, which aborts the conversion in progress. Anewconversionmaybestartedandtheongoingconversionsimultaneouslyabortedbyperformingsteps1through
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PDF
NVC-MDCS46-V1.4.pdf
SPI and SPI_PCM Supply Voltage Levels Min Typical Max Unit Input Voltage Levels VILnput logic level low -0.4 - +0.4 V V input logic level high +1.26 - +2.2 V IH Tr/Tf - - 25 ns Output Voltage Levels VOL output logic level lowOLl= 4.0mA - - 0.4 V VOH output logic level highOHl= -4.0mA +1.35 - - V Tr/Tf
in „Mini Bluetooth Module mit SPP und AT Command set“ · Mikrocontroller und Digitale Elektronik ·
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Datei
sms.c
i, j, k, S, B, l, TX, z, y, r, sn; y = 0; TX = 0; r = 0; SET_TRIS_B(79); SET_TRIS_A(255); OUTPUT_HIGH(LED); WD: // Scharfstellen nach 42 s mit Rogerbeep l = 0; i = 0; j = 0; B = 0; //Signalspeicherungen zuruecksetzen S = 0; OUTPUT_LOW(Piezo); OUTPUT_LOW(Sirene); for (i = 0; i <= 7; i++) { delay_ms(5000
in „C-Code in PIC16F84A“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ads831.pdf
INPUTS Logic Family CMOS Compatible Convert Command Start Conversion Rising Edge of Convert Clock High Level Input Current)(VIN= 5V) 100 µA Low Level Input Current (IN= 0V) 10 µA High Level Input Voltage +3.5 V Low Level Input Voltage +1.0 V Input Capacitance 5 pF DIGITAL OUTPUTS Logic Family CMOS/TTL Compatible Logic Coding Straight Offset Binary Low Output Voltage (OL= 50µA) VDRV = 5V +0.1 V Low Output Voltage, (I = 1.6mA) +0.2 V OL High Output Voltage, OH = 50µA) +4.9 V High Output Voltage, OH = 0.5mA) +4.8 V Low Output Voltage, OL = 50µA) VDRV
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PDF
ADS1251_24Bit_8SOIC.pdf
clock operates independently from the system clock, therefore, it is pos- sible to run SCLK at a higher frequency than CLK. The normal state of SCLK is LOW. Holding SCLK HIGH will either ini- tiate a modulator reset for synchronizing multiple converters or enter power-down mode. This is a Schmitt-Trigger
in „ADC_Auslesen mit Delay“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SAM-LS_Data_Sheet_GPS.G3-SA-03002_.pdf
! Digital I/O (All signals except RESET_N) Input!pin!voltage!range! Vin! ! 0V! ! Vcc! V! Input!pin!Low!voltage! Vin_low! ! ! ! 0.15! V! Input!pin!high!voltage! Vin_high! ! Vcc! !0.4! ! ! V! Output!pin!voltage!range! Vout! ! 0V! ! Vcc! V! Output!pin!low!voltage! Vout_low! Iout!<!1mA! ! ! 0.4! V! (sink)! Output!pin!high!voltage! Vout_high! Iout!<!20µA! (source)! 0.67!×!Vcc! ! ! V! Output!pin!current!at!low!voltage! Iout_low! Vout_low! ! ! 1! mA! =!0.4!V! Output!pin!current!at!high!voltage! Iout_high! Vout_high! =!0.67
in „NMEA - Protokoll / UBLOX SAM - LS / ATMEGA 16“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PS-ITG-3200-00-01.4.pdf
the I C bus starts when the master puts the START condition (S) on the bus, which is defined as a HIGH-to-LOW transition of the SDA line while SCL line is HIGH (see figure below). The bus is considered to be busy until the master puts a STOP condition (P) on the bus, which is defined as a LOW to HIGH
in „STK600 / Atmega 2560 per TWI mit ITG-3200 verbinden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AT45DB081D.pdf
normally be placed in the standby mode (not Deep Power-Down mode), and the output pin (SO) will be in a high-impedance state. When the device is deselected, data will not be accepted on the input pin (SI). CS Low Input A high-to-low transition on the CS pin is required to start an operation, and a low-to-high
in „Was ist die min. Betriebsspannung von SPI Flash AT45DB081D“ · Mikrocontroller und Digitale Elektronik ·
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PDF
INN3977CQ.pdf
BPS capacitor value could lead to output voltage overshoot during start-up. Values lower than 1.5 mF to increase the breakdown voltage in the circuit for the application of very high input voltage, higher than 550 VDC. The effective may not enough capacitance, which can cause unpredictable
in „Frage zu PowerInc INN3977CQ“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ReciprCnt.pdf
;*************************************************************************** ; XL = r26 ; low ; XH = r27 ; high ; YL = r28 ; low ; YH = r29 ; high ; ZL = r30 ; low ; ZH = r31 ; high ;************************************************************************* ;* constants : ;*******************
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PDF
top247.pdf
a low current CONTROL pin capacitor is charged through a switched high standby mode. The high-voltage current source turns on and voltagecurrentsourceconnectedinternallybetweentheDRAIN charges the external
in „Hilfe bei Reparatur SNT Laderegler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
top247.pdf
a low current CONTROL pin capacitor is charged through a switched high standby mode. The high-voltage current source turns on and voltagecurrentsourceconnectedinternallybetweentheDRAIN charges the external
in „Hilfe bei Reparatur SNT Laderegler“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
frame_send.c
8000000UL // Takt #define BAUD 19200UL //Baudrate #define UBRR_BAUD ((F_CPU/(16UL*BAUD))-1) #define SLP_TR_LOW (PORTB &= ~(1<<PB4)) #define SLP_TR_HIGH (PORTB |=(1<<PB4)) #define TRX_IRQ_TRX_END _BV(3) #define RST_LOW (PORTB &= ~(1<<PB5)) #define RST_HIGH (PORTB |= (1<<PB5)) static volatile int tx_in_progress
in „At86RF212 INT wird nicht ausgelöst“ · HF, Funk und Felder ·
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PDF
DS_FT232H.pdf
D7 to D0 bidirectional FIFO data. This bus is normally 18, 19,20 ADBUS[7:0] I/O input unless RD# is low. When high, do not read data from the FIFO. When low, there is data available in the FIFO which can be read by driving RD# low. When RD# goes high again RXF# will 21 RXF# OUTPUT always go high and only
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PDF
AD7609.pdf
OutputVoltage REFIN/REFOUT 2.49/ V 2.505 ReferenceTemperature Coefficient ±10 ppm/°C LOGIC INPUTS Input HighVoltage (INH 0.7×VDRIVE V Input LowVoltage (INL 0.3×VDRIVE V Input CurrentINI ) ±2 µA Input Capacitance IN ) 5 pF LOGIC OUTPUTS Output HighVoltage (OH) SOURCE 100 µA VDRIVE.2 V Output LowVoltage (VOL
in „Unterschiedliches Verhalten innerhalb der gleichen IC-Reihe“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AD7609.pdf
OutputVoltage REFIN/REFOUT 2.49/ V 2.505 ReferenceTemperature Coefficient ±10 ppm/°C LOGIC INPUTS Input HighVoltage (INH 0.7×VDRIVE V Input LowVoltage (INL 0.3×VDRIVE V Input CurrentINI ) ±2 µA Input Capacitance IN ) 5 pF LOGIC OUTPUTS Output HighVoltage (OH) SOURCE 100 µA VDRIVE.2 V Output LowVoltage (VOL
in „SPI-Kommunikation von AD-Wandler zu Raspberry Pi“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PCA9533.pdf
transfer 7.1.1 START and STOP conditions Both data and clock lines remain HIGH when the bus is not busy. A HIGH-to-LOW transition of the data line while the clock is HIGH is defined as the START condition (S). A LOW-to-HIGH transition of the data line while the clock is HIGH is
in „[V] 20St 4-Bit I2C LED PWN Treiber NXP PCA9533 (SO8) (1€/St)“ · Markt ·
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PDF
PCA9533.pdf
transfer 7.1.1 START and STOP conditions Both data and clock lines remain HIGH when the bus is not busy. A HIGH-to-LOW transition of the data line while the clock is HIGH is defined as the START condition (S). A LOW-to-HIGH transition of the data line while the clock is HIGH is
in „[V] einige 4 Bit I2C LED PWN Treiber NXP PCA9533 (SO8)“ · Markt ·
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PDF
PCA9533.pdf
transfer 7.1.1 START and STOP conditions Both data and clock lines remain HIGH when the bus is not busy. A HIGH-to-LOW transition of the data line while the clock is HIGH is defined as the START condition (S). A LOW-to-HIGH transition of the data line while the clock is HIGH is
in „[V] 4-Bit I2C LED PWN Treiber NXP PCA9533 (TSSOP-8) (1€/St)“ · Markt ·
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PDF
PCA9533.pdf
transfer 7.1.1 START and STOP conditions Both data and clock lines remain HIGH when the bus is not busy. A HIGH-to-LOW transition of the data line while the clock is HIGH is defined as the START condition (S). A LOW-to-HIGH transition of the data line while the clock is HIGH is
in „[V] 4-Bit I2C LED PWN Treiber NXP PCA9533 (TSSOP-8) (12€ / 20St)“ · Markt ·
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PDF
PCA9533.pdf
transfer 7.1.1 START and STOP conditions Both data and clock lines remain HIGH when the bus is not busy. A HIGH-to-LOW transition of the data line while the clock is HIGH is defined as the START condition (S). A LOW-to-HIGH transition of the data line while the clock is HIGH is
in „[V] nochmal 4-Bit I2C LED PWN Treiber NXP PCA9533 (TSSOP-8) (12€ / 20St)“ · Markt ·
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PDF
PCA9533.pdf
transfer 7.1.1 START and STOP conditions Both data and clock lines remain HIGH when the bus is not busy. A HIGH-to-LOW transition of the data line while the clock is HIGH is defined as the START condition (S). A LOW-to-HIGH transition of the data line while the clock is HIGH is
in „[V] 4-Bit I2C LED PWN Treiber NXP PCA9533 (TSSOP-8) (12€ / 20St)“ · Markt ·
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PDF
PCA9533.pdf
transfer 7.1.1 START and STOP conditions Both data and clock lines remain HIGH when the bus is not busy. A HIGH-to-LOW transition of the data line while the clock is HIGH is defined as the START condition (S). A LOW-to-HIGH transition of the data line while the clock is HIGH is
in „[V] 4-Bit I2C LED PWN Treiber NXP PCA9533 (TSSOP-8) (30St/17€)“ · Markt ·
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PDF
PCA9533.pdf
transfer 7.1.1 START and STOP conditions Both data and clock lines remain HIGH when the bus is not busy. A HIGH-to-LOW transition of the data line while the clock is HIGH is defined as the START condition (S). A LOW-to-HIGH transition of the data line while the clock is HIGH is
in „[V] 4-Bit I2C LED PWN Treiber NXP PCA9533 (TSSOP-8) (30St/12€)“ · Markt ·
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PDF
PCA9533.pdf
transfer 7.1.1 START and STOP conditions Both data and clock lines remain HIGH when the bus is not busy. A HIGH-to-LOW transition of the data line while the clock is HIGH is defined as the START condition (S). A LOW-to-HIGH transition of the data line while the clock is HIGH is
in „[V] 4-Bit I2C LED PWN Treiber NXP PCA9533 (TSSOP-8) (30St/12€)“ · Markt ·
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PDF
MMC5633NJL.pdf
Frequency fSCL 0 400 kHz START Hold Time tHD;STA 0.6 µS START Setup Time tSU;STA 0.6 µS LOW period of SCL tLOW 1.3 µS HIGH period of SCL tHIGH 0.6 µS Data Hold Time tHD;DAT 0 0.9 µS Data Setup Time tSU;DAT 0.1 µS Rise Time tr From V ILV IH 0.3 µS Fall Time tf From V IHV IL 0.3 µS Bus Free
in „Sensor Array ansprechen mit I2C - Unterschiede zu Mega2560 und Seeed RP2040“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX220-MAX249.pdf
of unused drivers can be left unconnected since 400kΩ input pull-up resistors to VCC are built in Low X High Impedance (except for the MAX220). The pull-up resistors force the MAX223 __ High Low __ Active outputs of unused drivers low because all drivers invert. High High High Impedance The internal input pull-up resistors typically source 12µA, Low High Impedance MAX225 __ __ __ High Active except in shutdown mode where the pull-ups are dis- abled. Driver outputs turn off and enter a high-imped- MAX235 Low Low High Impedance ance state—where leakage
in „avr prog und device- auswahl“ · Mikrocontroller und Digitale Elektronik ·
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PDF
max232.pdf
of unused drivers can be left unconnected since 400kΩ input pull-up resistors to VCC are built in Low X High Impedance (except for the MAX220). The pull-up resistors force the MAX223 __ High Low __ Active outputs of unused drivers low because all drivers invert. High High High Impedance The internal
in „Trackball dsub9w auf PS2m Belegung?“ · PC Hard- und Software ·
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Datei
lcd.c
// LCD-type EA W204B 4x20 #endif //*/ // define display codes // -------------------- #define LCD_HIGH_PART 0b11110000 // high part of a byte #define LCD_LOW_PART 0b00001111 // low part of a byte #define LCD_4BIT_HIGH_BIT DB7 // most significant bit in 4-bit mode (highest bit) #define LCD_4BIT_LOW_BIT
in „LCD funktioniert nur an Port D (ATmega644P)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CMEL_C0283QGLC-T_Tentative_Spec_May07_-_GLYN_.pdf
Operating Voltage 2.5 2.8 3.3 V Power Supply Voltage VDD3 I/O supply Voltage 1.65 1.8 3.3 V Logic High level inputVih 0.7*VDD3 VDD3 V Logic Low level inputVil 0.0 0.3*VDD3 V Logic High level outpVoh Iout=-1mA 0.8*VDD3 VDD3 V Logic Low level outpuVol Iout=+1mA 0.0 0.2*VDD3 V Analog High level outpEL_ONoh
in „OLED Sammelbestellung“ · Markt ·
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PDF
S9132_datasheet.pdf
D) Vdd(D) + 0.25 Clock pulse voltage V(clk) V Low level 0 - 0.4 Start pulse voltage High level V(st) Vdd(D) - 0.25 Vdd(D) Vdd(D) + 0.25 V Low level 0 - 0.4 *2: When the latter-stage digital processing circuit is a 3.3 V family, the high level of digital
in „Belichtungssteuerung bei S9132“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CMEL_C0283QGLC-T_Tentative_Spec_May07_-_GLYN_.pdf
Operating Voltage 2.5 2.8 3.3 V Power Supply Voltage VDD3 I/O supply Voltage 1.65 1.8 3.3 V Logic High level inputVih 0.7*VDD3 VDD3 V Logic Low level inputVil 0.0 0.3*VDD3 V Logic High level outpVoh Iout=-1mA 0.8*VDD3 VDD3 V Logic Low level outpuVol Iout=+1mA 0.0 0.2*VDD3 V Analog High level outpEL_ONoh
in „[V] Displays und diverses“ · Markt ·
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PDF
DS18B20-PAR_TO-92__12_BIT_0_5__Fehler.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 60 ms). 13 of 19 DS18B20-PAR The DS18B20
in „Genauigkeitsangabe auf einem Thermometer“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
MC_product_selection_AN.pdf
Nominal Voltage 3.6V 1.2V Cycle Life 1000 800 Li-Ion (Lithium-Ion) Li-Ion batteries have advantages in high energy den- Memory Effect No Yes Cost ($/Wh)[4] 2.5 1.3 sity, low maintenance requirement, relatively low self discharge rate, and higher voltage per cell. (Table 1 Energy Density: 210-320 160-230 and
in „Hackbarer(?) 21 EUR Quadcopter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
dm00451014-controlling-a-triac-with-a-phototriac-stmicroelectronics.pdf
constraints can lead to follow conflicting directions. For a good immunity to fast voltage transient and low EMI noise, it is recommended to reduce the value of R1 and R2. But a low value of R1 can result to high dI/dt turn-on that may damage the power Triac, while a too low resistance for R2 cannot protect
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Datei
SPI_EEPROM_Write_Read_Alphabet.txt
Initialisieren //-------------------------------------------------------- PORTB &= ~(1 << PB2); // CS low _delay_us(1); SPI_MasterTransmit(0x06); // WREN PORTB |= (1 << PB2); // CS high _delay_us(1); PORTB &= ~(1 << PB2); // CS low SPI_MasterTransmit(0x01); // WSRS SPI_MasterTransmit(0x00); // NOPROT PORTB |= (1 << PB2); // CS high _delay_us(10); PORTB &= ~(1 << PB2); // CS low while(1) { PORTC |= (1 << PC5); // LED blinken _delay_ms(100); PORTC &= ~(1 << PC5); _delay_ms(100); // Schreibvorgang 1 //----------------------------
in „Speicherplatzadressierung SPI EEPROM“ · Mikrocontroller und Digitale Elektronik ·
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Datei
maintst.c
Ausgang wieder auf low gesetzt. PORTB&=~(1<<PB1); //Der Ausgang wird auch auf low gesetzt wenn der Endschalter betätigt ist. a2=0; b2=0; } if(FL_auf_ein) //Wenn FL_auf_ein (also PB1 high ist) Text ans LCD senden { //Text
in „Multiplexer mit AtMega abfragen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
danceswithferrets4n.ino
{ // update the address lines to reflect the address we want ... digitalWrite(kPin_A0, (addr & 1)?HIGH:LOW); digitalWrite(kPin_A1, (addr & 2)?HIGH:LOW); digitalWrite(kPin_A2, (addr & 4)?HIGH:LOW); digitalWrite(kPin_A3, (addr & 8)?HIGH:LOW); digitalWrite(kPin_A4, (addr & 16)?HIGH:LOW); digitalWrite(kPin_A5, (addr & 32)?HIGH:LOW); digitalWrite(kPin_A6, (addr & 64)?HIGH:LOW); digitalWrite(kPin_A7, (addr & 128)?HIGH:LOW); digitalWrite(kPin_A8, (addr & 256)?HIGH:LOW); } byte ReadByte() { // read the current eight-bit byte
in „Altes EPROM auslesen Intersil 6654A (2xCE) mit Arduino“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD7789.pdf
Currents ±1 μA max V IN DD Input Capacitance 10 pF typ All digital inputs LOGIC OUTPUTS 1 V OHOutput HighVoltage V DD− 0.6 V min V DD= 3V, SOURCE= 100 μA V OLOutput LowVoltage 1 0.4 V max V DD= 3V, SINK= 100 μA 1 V OHOutput HighVoltage 4 V min V DD= 5V, SOURCE= 200 μA V OLOutput LowVoltage 1 0.4 V max V
in „mit PC über µC Pt1000 auslesen u. Peltier ansteuern/Anfän“ · Mikrocontroller und Digitale Elektronik ·
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Datei
max31865Hani.ino
loop function */ byte Read(byte r_addr) { digitalWrite(slaveSelectPin, LOW); SPI.transfer(r_addr); // read from configuration register value = SPI.transfer(0x00); // dummy write to provide SPI clock signals to read digitalWrite(slaveSelectPin, HIGH); return value; } /** *
in „MAX31865 + PT100 kommuniziert nicht mit Arduino“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Uhr_Temp.asm
main60 ;wenn gleich --> überspringen rcall Muell cpi Flag_muell,0x01 brne main51 cursor,0,1 ldi zl,low(Rest*2) ldi zh,high(Rest*2) rcall LCD_string rjmp Main55 main51: cpi Flag_muell,0x02 brne main52 cursor,0,1 ldi zl,low(papier*2) ldi zh,high(papier*2) rcall LCD_string rjmp main55 main52: cpi Flag_muell,0x03 brne main53 cursor,0,1 ldi zl,low(gelb*2) ldi zh,high(gelb*2) rcall LCD_string rjmp main55 main53: rcall DateC ;Datum berechnen rcall DayC ;Wochentag umrechen cursor,0,1 ldi zl,low(DayCopy) ldi zh,high(DayCopy) rcall LCD_stringram cursor