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MOSFET_Gate_Driver_Circuit.pdf
phenomenon to occur, only the gate resistor R asso4iated with Q was cha1ged in Figure 4.12. Figure 4.13 shows waveforms without a self-turn-on phenomenon and Figure 4.14 shows waveforms with a self-turn-on phenomenon. MOSFET Q 1 Load i = C ・dv / dt iD DG gd DS Cgd inductance D G S R 4 300V + MOSFET Q 2
in „MOSFET npn/pnp Driver“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MOSFET_Gate_Drive_Circuit_.pdf
phenomenon to occur, only the gate resistor R asso4iated with Q was cha1ged in Figure 4.12. Figure 4.13 shows waveforms without a self-turn-on phenomenon and Figure 4.14 shows waveforms with a self-turn-on phenomenon. MOSFET Q 1 Load i = C ・dv / dt iD DG gd DS Cgd inductance D G S R 4 300V + MOSFET Q 2
in „Gatebeschaltung Treiber“ · Analoge Elektronik und Schaltungstechnik ·
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RequiresAcrobat6.pdf
10 100 TJ--Junction Temperature (°C) Pulse Duration (sec.) Fig. 12 – Power vs. Pulse Duration Fig. 13 – Maximum Safe Operating Area 50 100 Single Pulse RθJA = 82°C/W 40 T = 25°C 100µ s A 10 1 1m s A 0m s t 10 ) 30 e 0ms ( r R DS(ON)Lmit 1s r u 1 w n o 20 a P D 10s - I 0.1 V = 4.5V 10 GS DC Single Pulse on 1-in2oz Cu. TA = 25°C 0 0.01 0.1 1 10 100 0.010.1 1 10 100 Pulse Duration (sec.) V DS --Drain-Source Voltage (V)
in „Ersatz-MosFet für GF9926“ · Analoge Elektronik und Schaltungstechnik ·
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WM12-DIN_20Data_D.pdf
system AL.U=wirnuraktiviert,wenneineder V LL Sys Größen VLNaußerhalbdereingestell- tenGrenzwerteliegt 13 A MAX Max. Strminden3Phasen Technische Änderungen vorbehalten WM12-DIN DS 100806 3 W M12-DIN Verwendete Berechnungsformeln M eßgrößen einzelner Phasen Momentanwert der Scheinleistung W irkleistung im
in „Drehstromzähler“ · Projekte & Code ·
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433MHz__odul_antenne_0900766b802fb241.pdf
. GND 5 14 Tx 2 NC 6 13 NC NC 7 12 Rx NC 8 11 NC GND 9 RXD1 FM Transceiver 10 GND 30.48 7 Pin Descriptions RF GND (pins 1,3) Tx (pin 14) For best results, these pins should be connected Data input to the transmitter can be
in „Funkempfänger/sender gesucht“ · Mikrocontroller und Digitale Elektronik ·
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IRFB3006_IR.pdf
On-Resistance vs. Temperature 16000 VGS = 0V, f = 1 MHZ 16 C = C + C , C SHORTED ID= 170A iss gs gd ds V V = 48V Crss = gd ( DS C = C + C g V DS= 30V )12000 oss ds gd l 12 F o ( C iss e c r n o i 8000 S 8 a t a e C a C G S 4 4000 Coss G V Crss 0 0 0 40 80 120 160 200 240 280 1 10 100 QG Total Gate Charge
in „Motor PWM Steuerung, Mosfet Problem“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ds1302.h
/* * ds1302.h * * written by Karl Zeilhofer * zeilhofer (at) gmail (dot) com * September 2008 */ // Header File for the Real Time Clock Chip // DS1302 from Dallas Semiconductor #ifndef _DS1302_H #define _DS1302
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EUA2005.pdf
Load Resistance - ohm V - Supply Voltage -V CC Figure8. Figure9. Figure10. Figure11. Figure12. Figure13. DS2005 Ver 1.1 Nov. 2006 7 EUA2005 TOTAL HARMONIC DISTORTION+NOISE vs COMMON MODE INPUT VOLTAGE % 10 e f= 1KHz i Po=200mW o + n t o s D i 1 n m a H V =2.5V V =3.6V t DD DD o VDD5V - N + H 0.1 T 0.0
in „"Brainstorming" Verstärker für hochohmige Kopfhöhrer“ · Analoge Elektronik und Schaltungstechnik ·
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bs208.pdf
DSS drain-source breakdown −V GS= 0 200 − - V voltage −ID= 10 A −DSS drain-source leakage curren−V DS= 130 V − − 1 A V GS= 0 −DSS drain-source leakage curren−V DS= 70 V − − 25 A −V GS= 0.2 V −GSS gate-source leakage current−V GS= 20 V − − 100 nA V DS= 0 −VGS(th) gate-source threshold V GS= VDS 0.8 −
in „Mosfet BS208 sperrt nicht bei >3V“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
ds18s20.h
#ifndef DS18S20_H_ #define DS18S20_H_ #include <stdint.h> /** * @file ds18S20.h * @brief * Header file of DS18S20 library. It contains the prototypes of all * functions available in the library, definitions of all macros * and constans. * * @author Goce Boshkovski * @date 13-Jun-15 * @copyright GNU General Public License v2. * */ //Define MCU CPU Freq for the time delay functions #ifndef F_CPU #define F_CPU 16000000UL #endif /** \defgroup DS18S20ROMCmd DS18x20 ROM Commands
in „Timerberechnung die hunderste“ · Mikrocontroller und Digitale Elektronik ·
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Datei
nrf24l01_drv.c
) | (1 << NRF24L01_MASK_TX_DS)); /* RX_DR aus -> 1 */ val |= (1 << NRF24L01_MASK_RX_DR); RF_WriteRegSingle(NRF24L01_REG_CONFIG,val); /* Setze Merker, dass ISR Bescheid weiss, dass Modul auf MAX_RT oder TX_DS wartet */ f_WaitForEoTX
in „NRFL24L01+ - Immer Ärger mit den Paarungen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RJH60F5DPQ.pdf
Preliminary Datasheet RJH60F5DPQ-A0 600 V - 40 A - IGBT R07DS0326EJ0200 Rev.2.00 High Speed Power Switching Jul 22, 2011 Features Low collector to emitter saturation voltage V CE(sat) 1.37 V typ. CI = 40 A, VGE= 15 V, Ta = 25°C) Built in fast recovery diode
in „Inverter Elektroden-Schweißgerät abgeraucht -> IGBT defekt“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
main.c
_mat[5][8] = { {0x3f,0x00,0x08,0x01,0xdb,0x13,0x6c,0x10}, {0,0,0,0,0,0,0,0}, {0x0c,0x00,0x08,0x01,0xdb,0x08,0x21,0x10}, {0,0,0,0,0,0,0,0}, {0x54,0x00,0x08,0x01,0x86,0x70,0x0a,0x10} }; /*** Abfrage eines DS18S20ers mit der Slave-Adresse s_adr ***
in „DS18S20 auslesen (finde den fehler nicht)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM2574.pdf
Regulator Design Procedure (Continued) INDUCTOR VALUE SELECTION GUIDES (For Continuous Mode Operation) DS011394-26 FIGURE 4. LM2574HV-3.3 Inductor Selection Guide DS011394-14 FIGURE 6. LM2574HV-12 Inductor Selection Guide DS011394-13 FIGURE 5. LM2574HV-5.0 Inductor Selection Guide DS011394-15 FIGURE 7. LM2574HV
in „Ersatz für 7805 gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM2574.pdf
Regulator Design Procedure (Continued) INDUCTOR VALUE SELECTION GUIDES (For Continuous Mode Operation) DS011394-26 FIGURE 4. LM2574HV-3.3 Inductor Selection Guide DS011394-14 FIGURE 6. LM2574HV-12 Inductor Selection Guide DS011394-13 FIGURE 5. LM2574HV-5.0 Inductor Selection Guide DS011394-15 FIGURE 7. LM2574HV
in „Iverting Buck Boost -5V“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
BS170.pdf
o r Dim A Max max A Dim N See detail AA 7" Diameter Option B Min Dim C See detail AA W3 Dim D min 13" Diameter Option W2 max Measured at Hub DETAIL AA Dimensions are in inches and millimeters Reel Tape Size Option Dim A Dim B Dim C Dim D Dim N Dim W1 Dim W2 Dim W3 (LSL-USL) 8mm 7" Dia 177.8 1.559 13 +0.5/-0.20.008 20.25 55165 8.4 +1.5/059/-0.000 14.47 7.9 - 10. 929 8mm 13" Dia 13.00 0.059 512 +0.020/-0.008 0.795 4.00 0.331 +0.059/-0.000 0.567 0.311 - 0.429 330 1.5 13 +0.5/-0.2 20.2 100 8.4 +1.5/0 14.4 7.9 - 10. 9 October 2004, Rev. D1 © 2010 Fairchild Semiconductor Corporation
in „BS170 Wie viel Watt verträgt er?“ · Analoge Elektronik und Schaltungstechnik ·
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D170086D.pdf
and H-ADJ versions, ILOAD = 100 mA, T A= 25˚C Normalized Efficiency Dropout Voltage Output Voltage DS012661-4 DS012661-5 DS012661-3 Line Regulation Load Regulation Output Ripple Voltage DS012661-6 DS012661-7 DS012661-8 Operating Shutdown Switching Frequency Quiescent Current Quiescent Current DS012661
in „LM2528-3.3 & SI4735 & Bluetooth anliegen“ · Mikrocontroller und Digitale Elektronik ·
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LMD18200.pdf
factory. Typical Performance Characteristics V vs Flag Current R (ON) vs Temperature R (ON) vs SAT DS DS Supply Voltage DS010568-16 DS010568-17 DS010568-18 Supply Current vs Supply Current vs Supply Current vs Supply Voltage Frequency (V S = 42V) Temperature (V S = 42V) DS010568-19 DS010568-20 DS010568
in „Halbbrücke für BLDC“ · Mikrocontroller und Digitale Elektronik ·
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HEIZUNG_UNGARN.PDF
1 PIJ 50 2 PIJ 50 3 PIJ 50 4 Keyboard B B LCD[ ..0] LCD[7..0] P3 D3 1N4007 P3 PI0 J4 Q1 R10 SI2312DS PQ0 PI10 PR10 LCD7 PIJ 40 1 P0 PIJ 40 2 R11 PI0 C 3 33R C PIJ 40 3 PR12 PIJ 40 4 10k PIJ 40 5 PI1 P0 PIJ 40 6 LCD0 C77 7 LCD1 PI2 100nF PI8 40 7 NLCD PIJ 40 8 LCD2 PIJ 40 9 PIJ4 010 PIJ4 011 12 PI13
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ureflow.pdf
1 2 3 4 5 6 D2 U1 +3V3 DS14W +5V +3V3 +3V3 VIN FB1 NCP1117 3 VI VO 2 VBUS D +3V3 N C2 U4 R14 R19 G R11 MAX6675ISA+T SW1 10K SW3 10K F1 D3 1 22uF 1.5K A 500mA DS14W C1 4 1 4 BTN_LEFT 1 4 BTN_RIGHT A 10uF / 25V VCC 2 3 2 3 J1 C4
in „Feedback Schaltplan STM32G0“ · Mikrocontroller und Digitale Elektronik ·
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DS337_2.pdf
transmit at distances of up to ideal for use in portable battery powered wireless 400m. applications DS337_2 June 01 Ó2001 REG No 277 4001, England. Page 1 433MHz Narrow Band Radio Transmitter & Receivers Absolute Maximum Ratings: Transmitter Operating temperature: -10°C to +55°C Storage temperature: -
in „RFM12 - Funkmodul“ · Mikrocontroller und Digitale Elektronik ·
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schiebereg.pdf
master reset (active LOW) SH CP 11 shift register clock input ST 12 storage register clock input CP OE 13 output enable (active LOW) DS 14 serial data input VCC 16 positive supply voltage handbook, halfpage 11 12 handbook, halfpage Q1 1 16 VCC SHCP STCP Q ' 9 Q2 2 15 Q0 7 Q0 15 Q3 3 14 DS 1 Q1 Q4 4 13 OE
in „wie steuer ich nen sn7447 mit avr an??“ · Mikrocontroller und Digitale Elektronik ·
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74HC_HCT595_CNV_3.pdf
master reset (active LOW) SH CP 11 shift register clock input ST 12 storage register clock input CP OE 13 output enable (active LOW) DS 14 serial data input VCC 16 positive supply voltage handbook, halfpage 11 12 handbook, halfpage Q1 1 16 VCC SHCP STCP Q ' 9 Q2 2 15 Q0 7 Q0 15 Q3 3 14 DS 1 Q1 Q4 4 13 OE
in „LCD DEM20485 in gerade Zeile springen (c't-Bot)“ · Mikrocontroller und Digitale Elektronik ·
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MCP2551.pdf
voltage 0V Receive data output voltage 0.3 VDD 11 VRS = 4V; TXD = 2V © 2007 Microchip Technology Inc. DS21667E-page 13 MCP2551 NOTES: DS21667E-page 14 © 2007 Microchip Technology Inc. MCP2551 3.0 PACKAGING INFORMATION 3.1 Package Marking Information 8-Lead PDIP (300 mil) Example: XXXXXXXX MCP2551 XXXXXNNN
in „CAN-BUS - Nur empfangen - Was mache ich mit dem TXD Pin am Tranceiver??“ · Mikrocontroller und Digitale Elektronik ·
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Datei
1wire.cpp
License //along with this program. If not, see <http://www.gnu.org/licenses/>. // // //VERSION 1.1 DS2423 for ATTINY2313 and ATTINY25 //FOR MAKE by hand /* avr-gcc -mmcu=[attiny25|attiny2313] -O2 -c ow_slave_DS2423.c avr-gcc.exe -mmcu=[attiny25|attiny2313] ow_slave_DS2423.o -o ow_slave_DS2423.elf avr-objcopy -O ihex ow_slave_DS2423.elf ow_slave_DS2423.hex */ #include <avr/io.h> #include <avr/interrupt.h> #include <avr/wdt.h> #include "ledCommunication.h" //does not work here because less memory by ATtiny13 #if defined(__AVR_ATtiny13A
in „1-Wire Slave auf AVR“ · Mikrocontroller und Digitale Elektronik ·
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IRLR7843C.pdf
Temperature www.irf.com 3 IRLR/U7843CPbF 100000 12 VGS = 0V, f = 1 MHZ D = 12A V = 24V Ciss = Cgs+ Cgd C ds SHORTED ) DS Crss = gd ( 10 VDS= 15V C = C + C e ) oss ds gd t F10000 o 8 ( V c r a Ciss u 6 c S a t a Coss e , 1000 a 4 C , Crss S G 2 V 0 100 0 20 40 60 80 1 10 100 Q Total Gate Charge (nC) VDS , Drain-to-Source
in „H-Brücke - 30A - MOSFET“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
_APT30M40JVFR_A-601394.pdf
= ±30V, DS = 0V) ±100 nA VGS(th) Gate Threshold Voltage DS = VGS, D = 2.5mA) 2 4 Volts CAUTION: These Devices are Sensitive to Electrostatic Discharge. Proper Handling Procedures Should Be FollowAd. APTWebsite
in „SOT-227 Leistung Gehäuse im Linearbetrieb?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Multi_SD_SIM.ino
57600); debugprintln(ID_ID); debugflush(); Spannungen_messen(); if (Batteriespannung > VMinimum) { DS_Temp = No_Val; Sensor_DS18B20(); Sensor_DHT(); Sensor_Si7021(); Sensor_SHT31(); Sensor_BME280(); if (DS_Temp == No_Val) DS_Temp = rtc.getTemperature(); Sensor_Licht(); Sensor_Gewicht(false); for (int
in „Wird diese if-Schleife jemals ausgeführt?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS1307.pdf
ORDERING INFORMATION PART TEMP RANGE VOLTAGE (V) PIN-PACKAGE TOP MARK* DS1307+ 0°C to +70°C 5.0 8 PDIP (300 mils) DS1307 DS1307N+ -40°C to +85°C 5.0 8 PDIP (300 mils) DS1307N DS1307Z+ 0°C to +70°C 5.0 8 SO (150 mils) DS1307 DS1307ZN+ -40°C to +85°C 5.0 8 SO (150 mils) DS1307N
in „[V] noch 2 x 10St. Dallas RTC DS1307Z (SO8) abzugeben“ · Markt ·
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PDF
DS1307.pdf
ORDERING INFORMATION PART TEMP RANGE VOLTAGE (V) PIN-PACKAGE TOP MARK* DS1307+ 0°C to +70°C 5.0 8 PDIP (300 mils) DS1307 DS1307N+ -40°C to +85°C 5.0 8 PDIP (300 mils) DS1307N DS1307Z+ 0°C to +70°C 5.0 8 SO (150 mils) DS1307 DS1307ZN+ -40°C to +85°C 5.0 8 SO (150 mils) DS1307N
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PDF
ds1307.pdf
ORDERING INFORMATION PART TEMP RANGE VOLTAGE (V) PIN-PACKAGE TOP MARK* DS1307+ 0°C to +70°C 5.0 8 PDIP (300 mils) DS1307 DS1307N+ -40°C to +85°C 5.0 8 PDIP (300 mils) DS1307N DS1307Z+ 0°C to +70°C 5.0 8 SO (150 mils) DS1307 DS1307ZN+ -40°C to +85°C 5.0 8 SO (150 mils) DS1307N
in „Probleme mit DS1307 und dessen Zeitausgabe“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PH2520U.pdf
breakdown voltage ID = 250 µA; VGS = 0 V; Tj= 25 °C 20 - - V VGS(th) gate-source threshold ID= 1 mA; V DS = V GS; Tj= -55 °C; - - 1.2 V voltage see Figure 7; see Figure 8 I = 1 mA; V = V ; T = 150 °C; 0.25 - - V D DS GS j see Figure 7 ; see Figure 8 I = 1 mA; V = V ; T = 25 °C; 0.45 0.7 0.95 V D DS GS j
in „FET Empfehlung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PH2925U.pdf
7 ; see Figure 6 DSS drain leakage current V DS = 25 V; VGS = 0 V; Tj= 150 °C - - 500 µA V DS = 25 V; VGS = 0 V; Tj= 25 °C - 0.06 1 µA I gate leakage current V = 10 V; V = 0 V; T = 25 °C - 20 100 nA GSS GS DS j V GS = -10 V; VDS = 0 V; j = 25 °C -
in „Mosfet IRFP4568PbF wird extrem heiß - warum?“ · Analoge Elektronik und Schaltungstechnik ·
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technical.pdf
V Th)2 (11.166) gm = β · (1 + λDS )(VGS − VTh) (11.167) γ gmb= g m √ (11.168) 2 Φ − VBS • linear region:DS < VGS − VTh Id= β · (1 + λDS ) · GS − VTh − VDS /2) ·DS (11.169) gds= β · (1 + λDS ) · GS − VTh − VDS ) + β ·λDS · (GS − VTh −
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Datei
Raspi_temp_Sender.ino
Chantrell http://nathan.chantrell.net // Updated by Martin Harizanov (harizanov.com) to work with DS18B20 // To use with DS18B20 instead of TMP36, a 4K7 resistor is needed between the Digital 9 and Digital 10 of the ATTiny (Vdd and DQ) // To get this to compile follow carefully the discussion here:
in „RFM 12B SP Rev.1 mit 5V oder nicht ?“ · Mikrocontroller und Digitale Elektronik ·
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sla7024m.pdf
Symbol Test Conditions Min Typ Max Units FET Leakage Current I V = 100 V, V = 44 V — — 4.0 mA DSS DS CC FET ON Voltage V (SLA7024M & SMA7029M) V = 14 V, I = 1 A — — 600 mV DS(ON) CC OUT (SLA7026M) V CC = 14 V, IOUT = 3 A — — 850 mV FET ON Resistance r (SLA7024M & SMA7029M) V = 14 V, I = 1 A — — 600
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mdlm7301.pdf
otherwise specified Supply Current vs VOS vs VOS vs V CM Supply Voltage Supply Voltage V = ± 1.1V S DS012842-3 DS012842-4 DS012842-5 V OS vs VCM VOS vs VCM Inverting Input, V = ± 2.5V V = ± 15V S S Bias Current vs Common Mode Voltage V = ± 1.1V S DS012842-6 DS012842-7 DS012842-8 5 www.national.com = =
in „Problem mit OP als Spannungsfolger vor ADC“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PHC2300_3_1_.pdf
VGS = 0; DS = 50 V; f = 1 MHz − 102 − pF P-channel VGS = 0; DS = −50 V; f = 1 MHz − 45 − pF C output capacitance oss N-channel VGS = 0; DS = 50 V; f = 1 MHz − 15 − pF P-channel VGS = 0; DS = −50 V; f = 1 MHz − 15
in „[S] PHC2300 komplementär Mosfet SO8 / Bestellung Farnell/HBE“ · Markt ·
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PDF
3004rg.pdf
0.25mA (All Transistors) 55 - - V VDS=55V V GS=0V (Q1,Q4) - - 25 µA Drain-Source Leakage Current V DS=-55V V GS=0V (Q2,Q3) - - -25 µA Gate-Source Leakage Current VGS=±20V V DS =0 (All Transistors) - - ±100 nA V DS=V GS D =250µA (Q1,Q4) 2.0 - 4.5 V Gate-Source Threshold Voltage V DS=V GS D =250µA (Q2,
in „Motorbrücke 24V/10A“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Diodes-Incorporated-B120-13-F_C134421.pdf
) Top View Bottom View Ordering Information (Note 4) Part Number Qualification Case Packaging B1XX-13-F Commercial SMA 5,000/Tape & Reel B1XXB-13-F Commercial SMB 3,000/Tape & Reel *xx = Device Type, e.g. B120-13-F (SMA Package); B120B-13-F (SMB Package). Notes: 1. EU Directive 2002/95/EC (RoHS) & 2011
in „LT3433, wo finde ich diese Bauteile?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Anleitung.pdf
time. VI. Component listing: NO. Component Name PCB Marker Parameter QTY 1 TP5400 Charging IC U1 1 2 DS1302 Clock IC U2 SOP-8 1 3 STC15W404AS U3 SOP-16 1 4 0805 SMD Resistor R330 R1 0.33ohm 1 5 0805 SMD Resistor 122 R3 1.2Kohm 1 6 0805 SMD Resistor 102 R2,R10,R19 1Kohm 3 7 0805 SMD Resistor 103 R12,R13
in „Hilfe bei Fehlersuche“ · Platinen ·
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PDF
xfft_ds260.pdf
(0) xk(1) xk(2) xk_im xk(N-2) xk(N-1) xk(0) xk(1) xk(2) xk_index 00 N-2 N-1 00 01 02 xip230 Figure 13: Unload Output Results in Natural Order with Cyclic Prefix Insertion of Length 2 DS260 March 1, 2011 www.xilinx.com 32 Product Specification LogiCORE IP Fast Fourier Transform v7.1 X-Ref Target - Figure
in „Implementierung der XILINX FFT-Core“ · FPGA, VHDL & Co. ·
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PDF
LM158.pdf
Driver Current Monitor 3 M / 5 2 M / 8 1 M L DS007787-13 DS007787-14 *(Increase R1 for I small) V ≤ V −2V L L Driving TTL Voltage Follower DS007787-15 DS007787-17 VO= VIN Pulse Generator DS007787-16 www.national.com 12 L M Typical Single-Supply Applications (V = 5.0DC) (Continued) 5 / M Squarewave Oscillator Pulse Generator 2 5 / M 3 5 / M 2 0 4 DS007787-18 DS007787-19 Low Drift Peak Detector DS007787-20 HIGH Z LOW ZN OUT 13 www.national.com 4 9 + 2 Typical Single-Supply Applications (V = 5.0 V DC ) (Continued) M / 5 High Compliance Current Sink
in „Strommessung mit LM358“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
PICkit_3_Programmer_Application_User_s_Guide_50002158a.pdf
PC, ensure that the PICkit 3 is not connected to a target board. 2013 Microchip Technology Inc. DS50002158A-page 13 PICkit™ 3 Programmer Application User’s Guide 2.3 INSTALLING AND LAUNCHING THE PICkit 3 PROGRAMMER APPLICATION Get the PICkit 3 Programmer Application from the Downloads section of the
in „PICkit3 und Windows 11“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2201210930_HUAYI-HY3215W_C2965569.pdf
Conditions Min Typ. Max Unit Static Characteristics BV DSS Drain-Source Breakdown Voltage V GS=V ,DS=250μA 150 - - V V DS=150,V =0V - - 1 μA IDSS Drain-to-Source LeakageCurrent TJ=125°C - - 50 μA V GS(th) Gate Threshold Voltage V DS=V , IDS250μA 3 4 5 V IGSS Gate-Source Leakage Current V GS=±25V,V DSV
in „Ersatz Mosfet für 6kw Wechselrichter "Reliable/WZRELB"“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Code_Wordclock_V3.txt
#define BitMaskCLK 0b00100000 //pin 13 = Clock Pin; Pin 13 ist bit 5 von Port B #define BitMaskDAT 0b00001000 //pin 11 = Data Pin; Pin 11 ist bit 3 von Port B #define BitMaskLAT 0b00100000 //pin 5 = Data Pin; Pin 5 ist bit 5 von Port D #define
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PDF
IRF7401_IR.pdf
Gate Charge (nC) DS G Fig 5. Typical Capacitance Vs. Fig 6. Typical Gate Charge Vs. Drain-to-Source Voltage Gate-to-Source Voltage 100 100 OPERATION IN THIS AREA LIMITED ) BY R ( DS(on) t T = 25°C e J ) 100us r TJ= 150°
in „IRF7401 - Rds(On)?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
lm5642.pdf
(V DS sensing), R DS-ON will show more variation than a current-sense resistor, largely due to temperature variation. R will increase proportional to temperature according to a specific DS-ON temperature coefficient. Refer to the FET manufacturer's datasheet to determine the range of R DS-ON values over operating temperature or see the Component Selection section (Equation 27) for a calculation of maximum R DS- ON. This will prevent R DS-ON variations from prematurely tripping the current
in „Komisches Verhalten von LM5642MTCX“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
pic18f2320.pdf
2/0 Y Y Y 2 2/3 PIC18F2320 8192 4096 512 256 25 10 2/0 Y Y Y 2 2/3 PIC18F4220 4096 2048 512 256 36 13 1/1 Y Y Y 2 2/3 PIC18F4320 8192 4096 512 256 36 13 1/1 Y Y Y 2 2/3 2003 Microchip Technology Inc. DS39599C-page 1 PIC18F2220/2320/4220/4320 Pin Diagrams PDIP MCLR/V PP/RE3 1 40 RB7/KBI3/PGD RA0/AN0
in „I2C-Bus Collision“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MRF89XAM8A.pdf
in Figure 2-9 FIGURE 2-3: TOP SILK SCREEN FIGURE 2-6: LAYER 3 — POWER PLANE FIGURE 2-4: TOP COPPER DS70651A-page 12 Preliminary © 2010 Microchip Technology Inc. MRF89XAM8A FIGURE 2-7: BOTTOM COPPER FIGURE 2-8: BOTTOM SILK SCREEN © 2010 Microchip Technology Inc. Preliminary DS70651A-page 13 MRF89XAM8A
in „Was darf man von einer PCB-Antenne erwarten?“ · HF, Funk und Felder ·