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PDF
Vishay_Tantal-faq.pdf
metal leadframe • 293D industrial grade • TMCS standard industrial grade • 593D industrial grade, low ESR • TMCM extended range • TR3 low ESR • TMCU ultra flat, low profile • TP3 high performance, automotive grade • TMCJ molded case, 0603 size • TH3 high temperature, 150 °C, automotive grade • TMCP molded case, 0805 size • TH4 high temperature, 175 °C, automotive grade • TMCTX built-in-fuse • TH5 HITM ® very high temperature, 200 °C • TMCR low ESR • TL3 very low DC leakage B1. Vishay Polytech, high reliability • TM3 for medical
in „Überspannungsschutz günstiger“ · Analoge Elektronik und Schaltungstechnik ·
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lme49600.pdf
DESCRIPTION The LME49600 is a high performance, low distortion high fidelity 250mA audio buffer. The LME49600 is designed for a wide range of applications. It can be used inside the feedback loop of op amps. The LME49600 offers a pin-selectable
in „Kopfhörerverstärker in Studioqualität gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
at90s2313-datasheet-atmel.pdf
Voltage 11.5 12.5 V IPP Programming Enable Current 250.0 µA tDVXH Data and Control Setup before XTAL1 High 67.0 ns t XTAL1 Pulse Width High 67.0 ns XHXL t Data and Control Hold after XTAL1 Low 67.0 ns XLDX t XTAL1 Low to WR Low 67.0 ns XLWL t BS Valid to WR Low 67.0 ns BVWL t BS Hold after RDY/BSY High 67.0 ns RHBX (1) tWLWH WR Pulse Width Low 67.0 ns (2) tWHRL WR High to RDY/BSY Low 20.0 ns (2) tWLRH WR Low to RDY/BSY High 0.5 0.7 0.9 ms tXLOL XTAL1 Low to OE Low 67.0 ns tOLDV OE Low to DATA Valid 20.0 ns tOHDZ OE High to DATA Tri-stated
in „AVR Studio 4.19“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AT90S2313_Datasheet.pdf
Voltage 11.5 12.5 V IPP Programming Enable Current 250.0 µA tDVXH Data and Control Setup before XTAL1 High 67.0 ns t XTAL1 Pulse Width High 67.0 ns XHXL t Data and Control Hold after XTAL1 Low 67.0 ns XLDX t XTAL1 Low to WR Low 67.0 ns XLWL t BS Valid to WR Low 67.0 ns BVWL t BS Hold after RDY/BSY High 67.0 ns RHBX (1) tWLWH WR Pulse Width Low 67.0 ns (2) tWHRL WR High to RDY/BSY Low 20.0 ns (2) tWLRH WR Low to RDY/BSY High 0.5 0.7 0.9 ms tXLOL XTAL1 Low to OE Low 67.0 ns tOLDV OE Low to DATA Valid 20.0 ns tOHDZ OE High to DATA Tri-stated
in „Fragen zum Sleep Mode“ · Mikrocontroller und Digitale Elektronik ·
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PDF
KM62256C.pdf
LL-pwr KM62256CLRG-5L 28-TSOP R, 55ns, LL-pwr KM62256CLRG-7L 28-TSOP R, 70ns, LL-pwr Note : LL means Low Low standby current. FUNCTIONAL DESCRIPTION CS OE WE I/O Pin Mode Power H X 1) X1) High-Z Deselected Standby L H H High-Z Output Disabled Active L L H Dout Read Active L 1) L Din Write Active X 1. X
in „billig RAM's abzugeben“ · Markt ·
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Datei
nrf24l01.c
MISO_AF GPIO_PinSource6 #define SCK_AF GPIO_PinSource7 /* CE und CSN Pins schalten */ #define CSN_LOW { GPIO_ResetBits(CSN_PORT,CSN_PIN); __DSB(); } #define CSN_HIGH { GPIO_SetBits(CSN_PORT,CSN_PIN); __DSB(); } #define CE_LOW { GPIO_ResetBits(CE_PORT,CE_PIN); __DSB(); } #define CE_HIGH { GPIO_SetBits
in „[STM32F4xx] NRF24L01+ Funkmodul Source Code“ · Projekte & Code ·
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ADS1211.pdf
tion. If the DOR is being read when the internal update is Start Reading ADS1210/11 Start drives DRDY LOW Writing ADS1210/11 drives DRDY LOW CS CS state state HIGH HIGH LOW LOW CS state Continuous HIGH Read Mode? Yes LOW No ADS1210/11 generates 8 ADS1210/11 serial clock cycles generates 8 serial clock and
in „Hardware SPI vs. BIT BANGING AD Wandler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
340461.pdf
Max Unit Supply Voltage VDD 2.4 2.8 3.5 V Supply Voltage for Display VCC Note 3 14.25 15 15.75 V High Level Input V 0.8xV - V V IH DD DD Low Level Input V 0 - 0.2 x V IL IOUT=0.1mA, VDD High Level Output VOH 3.3MHz 0.9VxDD - VDD V 0 0.1 x Low Level Output VOL - V DD V Note 4 - 250 400 Operating current
in „Wie Dc/Dc-Wanlder aktivieren? (Display)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
340461.pdf
Max Unit Supply Voltage VDD 2.4 2.8 3.5 V Supply Voltage for Display VCC Note 3 14.25 15 15.75 V High Level Input V 0.8xV - V V IH DD DD Low Level Input V 0 - 0.2 x V IL IOUT=0.1mA, VDD High Level Output VOH 3.3MHz 0.9VxDD - VDD V 0 0.1 x Low Level Output VOL - V DD V Note 4 - 250 400 Operating current
in „Densitron OLED“ · Mikrocontroller und Digitale Elektronik ·
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Datei
soft_i2c_master.c
hardware.h" #include <util/delay.h> // Send a START ore repeated start signal void i2c_start(void) { SDA_HIGH; SCL_HIGH; while (!SDA || !SCL) {}; SDA_LOW; I2C_DELAY; SCL_LOW; I2C_DELAY; } // Send a STOP signal void i2c_stop(void) { SCL_HIGH; I2C_DELAY; SDA_HIGH; I2C_DELAY; while (!SDA || !SCL) {}; } // Send
in „Soft I²C zum Beispiel auf ATtiny13“ · Mikrocontroller und Digitale Elektronik ·
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Datei
t6963c_main_v2.asm
am anfang kurz warten sbi PortB,reset ; Reset auf H rcall delay ; text start adress set ldi lcdLSB,low (TXT_BASE) ldi lcdMSB,high(TXT_BASE) rcall Write2Byte ldi command, (TXTHOME) rcall WriteCMD ; graphic start adress set ldi lcdLSB,low (GFX_BASE) ldi lcdMSB,high(GFX_BASE) rcall Write2Byte ldi command, (GFXHOME) rcall WriteCMD ; Textarea ldi lcdLSB,low (SPALTEN) ldi lcdMSB,high(0x00) rcall Write2Byte ldi command, (TXTAREA) rcall WriteCMD ; Grafikarea ldi lcdLSB,low (SPALTEN) ldi lcdMSB,high(0x00) rcall Write2Byte ldi command, (GFXAREA) rcall WriteCMD
in „Optimierung ASM-Code für GLCD“ · Mikrocontroller und Digitale Elektronik ·
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Datei
DS1631_itoa.txt
15.02.10 char * itoa_DS1631_Temp( char * strDest, int intTemp, char DecimalDigits) { unsigned intTempHighByte; // high byte represents integer degrees in front of comma unsigned intTempLowByte; // low byte represents decimal degrees after comma in higher nibble char tmpBuffer[5]; if (intTemp & 0b1000000000000000
in „USI TWI Probleme mit DS1631 Temperatursensor“ · Mikrocontroller und Digitale Elektronik ·
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Datei
DS1631_itoa.txt
15.02.10 char * itoa_DS1631_Temp( char * strDest, int intTemp, char DecimalDigits) { unsigned intTempHighByte; // high byte represents integer degrees in front of comma unsigned intTempLowByte; // low byte represents decimal degrees after comma in higher nibble char tmpBuffer[5]; if (intTemp & 0b1000000000000000
in „DS1631 Nachkommastellen berechnen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
nichicon_Uebersicht.pdf
to +105°C l Chip type, o Low Chip type h impedance 7000h load life i H LT UE WD High temp. Reflow –40 to +125°C –55(-40) to+125°C impedance Chip type Chip type, HighVoltage, Vibration Lowimpedance HighTemperatureRange Resistance Long life High CD CW temperature –55 to +105°C –25 to +105°C o LH Chip type, Chip type a –40 to +125°C Low 7000h load life f Chip type BC impedance Lowimpedance c High Voltage, p High Reliability –55(-40) to+150°C
in „Top 5 der Elko Hersteller?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
BitBangingTest.c
NVIC_EnableIRQ(TIM2_IRQn); while(!interruptWarDa) __WFI(); TIM2->CR1 &= ~TIM_CR1_CEN; // Timer aus } void DataHigh(){ GPIOC->ODR |= (1<<8); //PC8High } void DataLow(){ GPIOC->ODR &= ~(1<<8); //PC8 LOW } void CsHigh(){ GPIOC->ODR |= (1<<6); //PC6 High } void CsLow(){ GPIOC->ODR &= ~(1<<6); //PC6 Low } void ClockHigh
in „Bit Banging STM32 - F303RE ohne Library“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AAT3113.pdf
AAT3113/4 High Efficiency 1.5X Fractional Charge Pumps For White LED Applications ChargePump ™ General Description Features The AAT3113/4 are low noise, constant frequency • White LED Backlighting charge pump DC/DC
in „LCD Hintergrundbeleuchtung dimmen mit PWM“ · Mikrocontroller und Digitale Elektronik ·
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PDF
isl5585-1529099.pdf
Thermal Alarm Output IC Junction Temperature - 175 - °C LOGIC INPUTS (F0, F1, F2, E0, SWC, BSEL) Input Low Voltage - - 0.8 V Input High Voltage 2.0 - - V Input Low Current V =0.4V -20 -10 - A IL Input High Current V =2.4V - - 1 A IH LOGIC OUTPUTS (DET, ALM) Output Low Voltage I =1mA - .15 0.4 V OL Output
in „Anschluss eines alten Analigtelefons an einen RasPi für Audio in/out“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
tlc5916.pdf
PLH4 Low-to-high propagation delay time, CLK to SDO 12 20 30 ns t High-to-low propagation delay time, CLK to OUTn 300 365 ns PHL1 PHL2 High-to-low propagation delay time, LE(ED1) to OUTn 300 365 ns PHL3 High-to-low
in „Current Sink in Current Source transformieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TLC5916.pdf
PLH4 Low-to-high propagation delay time, CLK to SDO 12 20 30 ns t High-to-low propagation delay time, CLK to OUTn 300 365 ns PHL1 PHL2 High-to-low propagation delay time, LE(ED1) to OUTn 300 365 ns PHL3 High-to-low
in „Gesucht: LED-Treiber 8 LED (100mA-200ma)“ · Mikrocontroller und Digitale Elektronik ·
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interleaved_bcm_pfc.pdf
conduction mode power factor correction II. BCMPFCC ONVERTER PROPERTIES circuits are widely used in lower power off line power supplies. Their application at higher power levels is less practical due to the high amplitude of inductor ripple current, which is a significantA. Power Factor Correction Control
in „LC-filter - Überschwingen verhinden“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
WIZ830MJ_Datasheet_V_1.2.pdf
Address t A[9:0] I J1:19 ~ J1:28 Used as Address[9-0] pin Data D[15:8] I/O J1:2 ~ J1:9 16 bit-wide high data bus In case of using 8 bit data bus, there are driven as High-Z D[7:0] I/O J1:10 ~ J1:17 Data 16 bit-wide low data bus /CS I J2:19 Module Select : Active low. /CS of W5300 Read Enable : Active
in „[V] Ethernet Webserver mit ATMEGA128 und 2x Ohne MCU“ · Markt ·
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3901090614.pdf
10 pF SDA capacitance C SDA 10 pF Slave address SA Factory default 5A hex Wake up request wake SDA low 33 ms SMBus Request REQ SCL low 1.44 ms Timeout, low Timeout,L SCL low 27 33 ms Timeout, high Timeout,H SCL high 45 55 ▯s Acknowledge setup time Tsuac(MD) 8-th SCL falling edge, Master 1.5 ▯s Acknowledge
in „Erste Schritte mit TWI“ · Mikrocontroller und Digitale Elektronik ·
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TM1637_V2.4_EN.pdf
correspondence with the LED lights connected with SEG pin and GRID pin on the chip.LED data is displayed from low level to high level in respect of display address, and should be operated from low level to high level in respect of data bytes. E E E E E E E E G G G G G G G G 1 2 3 4 5 6 7 8 xxHL(low four bits) xxHU
in „TM1637, 4-stellige LED 7-Segmentanzeige mit AVR-GCC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datasheet_TM1637.pdf
correspondence with the LED lights connected with SEG pin and GRID pin on the chip.LED data is displayed from low level to high level in respect of display address, and should be operated from low level to high level in respect of data bytes. E E E E E E E E G G G G G G G G 1 2 3 4 5 6 7 8 xxHL(low four bits) xxHU
in „TM1637 wie funktioniert die Strombegrenzung?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS90LV048A.pdf
Notes 3, 4, 7, 8) Symbol Parameter Conditions Min Typ Max Units PHLD Differential Propagation Delay High to Low C L 15 pF 1.2 2.0 2.7 ns PLHD Differential Propagation Delay Low to High V ID= 200 mV 1.2 1.9 2.7 ns SKD1 Differential Pulse Skew PHLD − PLHD| (Note 6) (Figure 1 and Figure 2) 0 0.1 0.4 ns t
in „TFT Display 8bit 16bit 8080 Interface über LVDS“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS90LV048A.pdf
Notes 3, 4, 7, 8) Symbol Parameter Conditions Min Typ Max Units PHLD Differential Propagation Delay High to Low C L 15 pF 1.2 2.0 2.7 ns PLHD Differential Propagation Delay Low to High V ID= 200 mV 1.2 1.9 2.7 ns SKD1 Differential Pulse Skew PHLD − PLHD| (Note 6) (Figure 1 and Figure 2) 0 0.1 0.4 ns t
in „Analogsignal über Twisted-Wire übertragen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
25040.pdf
brought low while SCK is low, otherwise the initiated or in progress will be completed, regardless of HOLD function will not be invoked until the next SCK the CS input signal. If CS is brought high during a program
in „Eeprom Philip Pines Auslesen mit CH341“ · Fahrzeugelektronik ·
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AN-1126.pdf
follows: Thesimpleboostoperating parametersarelistedinTable 1. • They are an economical choice for high output voltage and low output current. The advantages of a simple boost topology include • They provide high boost ratioswithimproveddutycycleand • Itisthesimplest schematic design with the fewest parts
in „180VDC-Netzteil Ausgangsstrom zu gering“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tmp175.pdf
format for HIGHTand and conversion time. T registers. Note that the most significant byte is sent LOW first, followed by the least significant byte. Power-up reset CONVERSION TIME values for HIGH and TLOW are: R1 R0 RESOLUTION (typical) T = 80°C and T = 75°C 0 0 9 Bits (0.5°C) 27.5ms HIGH LOW 0 1 10
in „Temperaturmessung mit dem LM75“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SGMOP17C.pdf
SGMOP17C 1.5MHz, High Voltage, High Precision, Low Noise Rail-to-Rail Output Operational Amplifier GENERAL DESCRIPTION FEATURES The single SGMOP17C is a rail-to-rail output, low noise • Low Offset Voltage: 120μV (MAX) and high precision operational amplifier which has low • Rail-to-Rail Output Swing input offset voltage, and bias current. It is guaranteed• 4.5V to 36V Single Supply Operation operate from 4.5V to 36V single
in „Identifikation SOT23-5 ST3SK“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HCPL-4731.pdf
HCPL-4701/-4731/-070A/-073A VeryLowPowerConsumptionHighGainOptocouplers DataSheet Features Applications • Ultra low input current capability - 40 µA • Battery operated applications • Specified for 3 V operation • ISDN telephone interface
in „High-Side-Strom auf Low-Side spiegeln (Stromspiegel?!)“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
main.c
ROT 5 (Active High) PA6 --- Treiber Kathode ROT 6 (Active High) PA7 --- Taster PB0 --- Treiber Kathode Grün 0 (Active High) PB1 --- Treiber Kathode Grün 1 (Active High) PB2 --- Treiber Kathode Grün 2 (Active High) PB3
in „[avr-gcc]7x7 RGB matrix code problem“ · Mikrocontroller und Digitale Elektronik ·
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Datei
AT89C51RE2.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-File für AT89c51RE2“ · Mikrocontroller und Digitale Elektronik ·
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PDF
hy62256a.pdf
HY62256A Series 32Kx8bit CMOS SRAM DESCRIPTION FEATURES The HY62256A is a high-speed, low power and • Fully static operation and Tri-state output 32,786 x 8-bits CMOS Static Random Access • TTL compatible inputs and outputs Memory fabricated using Hyundai's high • Low power consumption
in „70ns SRAM an ATmega128 ?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
49HzNoise.pdf
in case 2. The evaluation shows that the sound levels of the frequencies around 25 Hz are not very high and way under the reference curve. Only in the higher frequencies is the reference curve exceeded. Despite the low sound levels in the lower frequencies, the frequency analysis shows that the frequencies
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ST_M25P64_data.pdf
Disable The only way to exit the Hardware Protected Mode (SRWD) bit after driving Write Protect (W) Low (HPM) once entered is to pull Write Protect (W ) – or by driving Write Protect (W) Low after High. setting the Status Register Write Disable If Write Protect (W ) is permanently tied High, the (SRWD
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0900766b80a5541c_1_.pdf
Figure 1. Block Diagram Pin Descriptions Pin Name I/O Description /CS Input Chip Select. This active-low input activates the device. When high, the device enters low- power standby mode, ignores other inputs, and all outputs are tri-stated. When low, the device internally activates the SCK signal. A falling
in „Batterie gebuffertes Ram -> DS1307?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Latch32bit-74LVCH32373A_2.pdf
read register L L l L L L L h H H Latch register and disable H L l L Z outputs H L h H Z Note 1. H = HIGH voltage level; h = HIGH voltage level one set-up time prior to the HIGH-to-LOW LE transition; L = LOW voltage level; l = LOW voltage level one set-up time prior to the HIGH-to-LOW LE transition; Z =
in „BGA Footprint“ · Platinen ·
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PDF
HIP4086_Mostfet.pdf
(xHB) 5 AHI High-Side Logic Level Inputs. Logic at these three pins controls the three high side output drivers, AHO (Pin 2 BHI 17), BHO (Pin 24) and CHO (Pin 14). When is low, xHO is high. When xHI is high, xHO is low. Unless the 12 CHI dead time is disabled by connecting RDEL (Pin 7) to ground, the low side input of each phase will override the (xHI) corresponding high side input on that phase - see Truth Table
in „Kommunikation zwischen mehreren µC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
E32-868T30D_Usermanual_EN_v1.6.pdf
Description For function 1 & function 2 mentioned above, the priority should be given to the one with low level output, which means if it 1 meets each of any low level output condition, AUX outputs low level, if none of the low level condition is met, AUX outputs high level. When AUX outputs low level,
in „Programmierung und Betrieb der Funkmodule E32-868T“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TC551001BPL-70L-Toshiba.pdf
ELECTiI=IONIC C D M P O N E N T S , IN C . Static RAM TC551001BPUBFUBFTUBTRL-70U85U1OL Notes: 1. RIW is high for read cycles. 2. If the CE1 low transition or CE2 high transition occurs coincident with or after the RIW low transition, outputs remain in a high impedance state. 3. If the CE1 high transition or CE2 low transition occurs coincident with or prior to the RIW high transition, outputs remain in a high impedance state. 4.If OE is high during a write cycle, the outputs are in a high impedance state during
in „[V] 35St. SRAM SMD TC551001BFTL-70L 128K*8 5V“ · Markt ·
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Datei
temp1.asm
Speicher holen ldi ZH,high(zahlen<<1) ;Z-Pointer mit Adresse ldi ZL,low(zahlen<<1) ; der Tabelle laden add ZL, zahl1 ;Auszugebende Zahl mit Z-Pointer (LOW) addieren lpm zahl1, Z ; in Z steht aktuelle Adresse der richtigen Ziffer
in „DS18S20 --> Quellcode-Überprüfung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
74hct595.pdf
shift register is transferred to the storage register and the parallel output stages Note 1. H = HIGH voltage level; L = LOW voltage level; ↑ = LOW-to-HIGH transition; ↓ = HIGH-to-LOW transition; Z = high-impedance OFF-state; n.c. = no change; X = donÕt care. ORDERING INFORMATION PACKAGE TYPE NUMBER
in „74HC595 wie steuert man das latch an?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
74HC595_Philips.pdf
shift register is transferred to the storage register and the parallel output stages Note 1. H = HIGH voltage level; L = LOW voltage level; ↑ = LOW-to-HIGH transition; ↓ = HIGH-to-LOW transition; Z = high-impedance OFF-state; n.c. = no change; X = donÕt care. ORDERING INFORMATION PACKAGE TYPE NUMBER
in „Definierter Einschaltzustand beim 74HC595“ · Mikrocontroller und Digitale Elektronik ·
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PDF
74HC595_Shiftregister.pdf
shift register is transferred to the storage register and the parallel output stages Note 1. H = HIGH voltage level; L = LOW voltage level; ↑ = LOW-to-HIGH transition; ↓ = HIGH-to-LOW transition; Z = high-impedance OFF-state; n.c. = no change; X = donÕt care. ORDERING INFORMATION PACKAGE TYPE NUMBER
in „Unterschied 74HCT595, 74HC595“ · Mikrocontroller und Digitale Elektronik ·
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PDF
74HC_HCT595.pdf
shift register is transferred to the storage register and the parallel output stages Note 1. H = HIGH voltage level; L = LOW voltage level; ↑ = LOW-to-HIGH transition; ↓ = HIGH-to-LOW transition; Z = high-impedance OFF-state; n.c. = no change; X = donÕt care. ORDERING INFORMATION PACKAGE TYPE NUMBER
in „74HC595 und ATtiny13 Lauflicht“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Bosch_Akku_Ladungspumpe.asm
ldi XL,LOW(display_volt) ldi XH,HIGH(display_volt) rcall bin2bcd ld r16,Y inc YL tst r16 brpl degree_pos ldi r16,0 degree_pos: ldi XL,LOW(display_degree) ldi XH,HIGH(display_degree) rcall bin2bcd ld r16,Y inc YL ldi XL,LOW(display_percent) ldi XH,HIGH(display_percent) rcall bin2bcd ld r17,Y ldi XL,LOW(display_bar) ldi XH,HIGH(display_bar) ldi r18,0 ldi r16,1 bar_lp: cp r18,r17 brne bar1 ldi r16,2 bar1: st X+,r16 inc r18
in „Ladungspumpe mit Bosch Classic Pedelec-Akku“ · Projekte & Code ·
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PDF
CY7C65620_CY7C65630_38-08037_AA.pdf
Cypress’s next generation family of hub is operating at full-speed (the upstream port is connected to high-performance, low-power USB 2.0 hub controllers. HX2LP is a full-speed host controller), a high-speed peripheral does not an ultra low power single chip USB 2.0 hub controller with operate at its full
in „PIN mit ground verbinden ja/nein?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Hupe.txt
INPUT); pinMode(1, OUTPUT); } void loop() { hupen = digitalRead(0); if(hupen == 0) { digitalWrite(1, HIGH); delay(KURZ); digitalWrite(1, LOW); delay(KURZ); digitalWrite(1, HIGH); delay(KURZ); digitalWrite(1, LOW); delay(KURZ); digitalWrite(1, HIGH); delay(KURZ); digitalWrite(1, LOW); delay(KURZ); digitalWrite(1, HIGH); delay(KURZ); digitalWrite(1, LOW); delay(KURZ); delay(LANG); digitalWrite(1, HIGH); delay(KURZ); digitalWrite(1, LOW); delay(KURZ); delay(LANG); digitalWrite(1, HIGH); delay(KURZ); digitalWrite(1,
in „ATtiny13a - seltsames Verhalten“ · Mikrocontroller und Digitale Elektronik ·
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Datei
lcd.asm
.IFDEF userchar1 .IFNDEF userchar0 ldi ZL,LOW(userchar1<<1) ldi ZH,HIGH(userchar1<<1) ldi iobuf,(0b01000000+8) rcall lcd_command .ENDIF rcall lcd_writechar .ENDIF .IFDEF userchar2 .IFNDEF userchar1 ldi ZL,LOW(userchar2<<1) ldi ZH,HIGH(userchar2
in „Hilfe! LCD-Ansteuerung“ · Mikrocontroller und Digitale Elektronik ·