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gruppenlaufzeitentzerrung.pdf
126 Kapitel 5 Praktikumsversuch: Gruppenlaufzeitentzerrung und treten bei den Frequenzen ω = ±β auf, w¨hrend die Maxima der Summenkurve α max = β [γ − β] f¨r ϕ > π/6 (5.28a) bei den in Gleichung (5.26) berechneten Frequenzen auftreten. Das relative Minimum ist bei ω = 0 und hat den Wert τ = 4α . (5.29
in „Gruppenlaufzeit“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
ersatzlampenliste.pdf
EMP7500 120W P22 (65*70mm) LF120P22 Epson EMP7550 120W P22 (65*70mm) LF120P22 Epson EMP7600 200W P22 (65*70mm) LF200P22 Epson EMP7700 200W P22 (65*70mm) LF200P22 Epson EMP7800 200W P22 (65*70mm) LF200P22
in „Beamer 'wiederverwerten'?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Bourns_221_30.pdf
Temperature -55 ˚C to +150 ˚C R200 0.2 Ω 5000 500 Ω R250 0.25 Ω 5600 560 Ω ** Power rating of 2.25 W when mounted free to air (no heat sink). R300 0.3 Ω 7500 750 Ω *** Available for most values. Check Popular Resistance Values table. R330 0.33 Ω 1001 1.0 KΩ R400 0.4 Ω 1501 1.5 KΩ Reliability Characteristics
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PDF
Bourns_221_50.pdf
Temperature -55 °C to +150 °C R150 0.15 Ω 4700 470 Ω R200 0.2 Ω 5000 500 Ω (1)Power rating of 2.25 W when mounted free to air (no heat sink). R250 0.25 Ω 5600 560 Ω (2Available for most values. Check Popular Resistance Values table. R300 0.3 Ω 7500 750 Ω R330 0.33 Ω 1001 1.0 KΩ R400 0.4 Ω 1501 1.5 KΩ
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PDF
HDSP-2000.pdf
absolute dissipation is with the device in a socket having a thermal resistapinsf10aiiiuieivi ~ 3 - w w a r r . NOTES: 2. The device should be derated linearly above 25°C at 16mWPC (see Electrical Description on3).ge 3. The characters are categorized for Luminous Intensity with the intensity category
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PDF
MOC3023-M.pdf
Range T All -40 to +100 °C J Isolation Surge Voltage (peak AC voltage, 60Hz, 1 sec duration) VISO All 7500 Vac(pk) Total Device Power Dissipation @ 25°C 330 mW PD All Derate above 25°C 4.4 mW/°C EMITTER Continuous Forward Current IF All 60 mA Reverse Voltage V All 3 V R Total Power Dissipation 25°C Ambient 100 mW PD All Derate above 25°C 1.33 mW/°C DETECTOR MOC3010M/1M/2M 250 Off-State Output Terminal Voltage VDRM MOC3020M/1M/2M/3M 400 V Peak Repetitive Surge Current (PW = 1 ms, 120 pps) ITSM All 1 A Total Power
in „Moc3023 Tic225 Schaltung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MOC3020-M.pdf
Range T All -40 to +100 °C J Isolation Surge Voltage (peak AC voltage, 60Hz, 1 sec duration) VISO All 7500 Vac(pk) Total Device Power Dissipation @ 25°C 330 mW PD All Derate above 25°C 4.4 mW/°C EMITTER Continuous Forward Current IF All 60 mA Reverse Voltage V All 3 V R Total Power Dissipation 25°C Ambient 100 mW PD All Derate above 25°C 1.33 mW/°C DETECTOR MOC3010M/1M/2M 250 Off-State Output Terminal Voltage VDRM MOC3020M/1M/2M/3M 400 V Peak Repetitive Surge Current (PW = 1 ms, 120 pps) ITSM All 1 V Total Power
in „Thyristor ein- bzw. ausschalten“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MOC3022-M.pdf
Range T All -40 to +100 °C J Isolation Surge Voltage (peak AC voltage, 60Hz, 1 sec duration) VISO All 7500 Vac(pk) Total Device Power Dissipation @ 25°C 330 mW PD All Derate above 25°C 4.4 mW/°C EMITTER Continuous Forward Current IF All 60 mA Reverse Voltage V All 3 V R Total Power Dissipation 25°C Ambient 100 mW PD All Derate above 25°C 1.33 mW/°C DETECTOR MOC3010M/1M/2M 250 Off-State Output Terminal Voltage VDRM MOC3020M/1M/2M/3M 400 V Peak Repetitive Surge Current (PW = 1 ms, 120 pps) ITSM All 1 A Total Power
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PDF
MOC3022-M.pdf
Range T All -40 to +100 °C J Isolation Surge Voltage (peak AC voltage, 60Hz, 1 sec duration) VISO All 7500 Vac(pk) Total Device Power Dissipation @ 25°C 330 mW PD All Derate above 25°C 4.4 mW/°C EMITTER Continuous Forward Current IF All 60 mA Reverse Voltage V All 3 V R Total Power Dissipation 25°C Ambient 100 mW PD All Derate above 25°C 1.33 mW/°C DETECTOR MOC3010M/1M/2M 250 Off-State Output Terminal Voltage VDRM MOC3020M/1M/2M/3M 400 V Peak Repetitive Surge Current (PW = 1 ms, 120 pps) ITSM All 1 A Total Power
in „Problem beim dimmen von NV-Halogenspots“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MOC3022-M.pdf
Range T All -40 to +100 °C J Isolation Surge Voltage (peak AC voltage, 60Hz, 1 sec duration) VISO All 7500 Vac(pk) Total Device Power Dissipation @ 25°C 330 mW PD All Derate above 25°C 4.4 mW/°C EMITTER Continuous Forward Current IF All 60 mA Reverse Voltage V All 3 V R Total Power Dissipation 25°C Ambient 100 mW PD All Derate above 25°C 1.33 mW/°C DETECTOR MOC3010M/1M/2M 250 Off-State Output Terminal Voltage VDRM MOC3020M/1M/2M/3M 400 V Peak Repetitive Surge Current (PW = 1 ms, 120 pps) ITSM All 1 A Total Power
in „triac und diac“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Datenblatt_moc3022.pdf
Range T All -40 to +100 °C J Isolation Surge Voltage (peak AC voltage, 60Hz, 1 sec duration) VISO All 7500 Vac(pk) Total Device Power Dissipation @ 25°C 330 mW PD All Derate above 25°C 4.4 mW/°C EMITTER Continuous Forward Current IF All 60 mA Reverse Voltage V All 3 V R Total Power Dissipation 25°C Ambient 100 mW PD All Derate above 25°C 1.33 mW/°C DETECTOR MOC3010M/1M/2M 250 Off-State Output Terminal Voltage VDRM MOC3020M/1M/2M/3M 400 V Peak Repetitive Surge Current (PW = 1 ms, 120 pps) ITSM All 1 A Total Power
in „Phasenanschnitt- Fehler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MOC3041-M.pdf
Range T J All -40 to +100 °C (1) IsolationSurgeVoltage (peakACvoltage,60Hz,1secduration)V ISO All 7500 Vac(pk) Total Device Power Dissipation @ 25°C 250 mW PD All Derate above 25°C 2.94 mW/°C EMITTER I All 60 mA Continuous Forward Current F Reverse Voltage VR All 6 V Total Power Dissipation 25°C Ambient 120 mW P All Derate above 25°C D 1.41 mW/°C DETECTOR MOC3031M/2M/3M 250 Off-State Output Terminal Voltage VDRM MOC3041M/2M/3M 400 V Peak Repetitive Surge Current (PW = 100 µs, 120 pps) ITSM All 1 A Total Power
in „Triac schaltet nicht ab“ · Mikrocontroller und Digitale Elektronik ·
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2599932.pdf
Current produces 100°C Magnet Wire Operating Temperature G G G G G G G G G Product Specifications T C) W W W W W W W W W describe technical performance 3 0 7 6 4 2 9 6 5 3 3 2 2 2 2 1 1 1 characteristics and verification tests. They are intended for the Design, Test and Quality Engineer. 108-2012 Standard
in „IDC connector für Kupferlackdraht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
048_Relaisschaltungen_fuer_Bastler.pdf
, so ist,w ie m an cht au s dem V ek t rdiagram m erk enne n kan n, de rB etrag lei ih dem W iderstan dsw ert d es un bcka nntcn \Vid erst nds g l des Rn . W ird das In strum en t vor d cr M essung auf V ollaus
in „Bistabilen Zustand mit einem Taster (12v dc)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HPGL.pdf
numbers. ▯ ▯ ▯ ▯ " # # 10 '*** PAEX1 *** 20 LPRINT "IN;SP1;" 30 LPRINT "PA2000,6000;PD0,6000,2000,7500,2000,6000;PU2500,6000;" 40 LPRINT "PAPD4500,6000,2500,7500,2500,6000;PU10365,500;" 50 END <Sample 62> 10 ' *** PAEX2 *** 20 LPRINT "IN;SP1;SC0,100,0,100;" 30 LPRINT "PA50,30;PD25,30,50,50,50,30;PU55,30
in „Ansteuerung Schneidevorrichtung bei Großformat-Plotter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
teilpaket_2_exemplarische_quantitative_langfristanalyse_2030.pdf
Jahreslauf und Grenzsituationen Handelskapazitäten [MW] Grenze JL GS SW/SL GS Import Bemerkung AT-DE 7500 7500 7500 NTC CH-DE 5200 5200 5200 NTC CZ-DE 3000 3000 3000 NTC DE-AT 7500 7500 7500 NTC DE-CH 3300 3300 3300 NTC DE-CZ 3000 2200 3000 NTC DE-DKW 3500 3500 3500 NTC DE-FR 4800 4800 4800 NTC DE-LU 999999
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PDF
Optokoppler_4N27.PDF
APPLICATIONS All couplers are Underwriters Laboratories (UL) listed to comply with • AC Mains Detection a 7500 V Isolation Test Voltage. This isolation performance is • Reed Relay Driving AC(PK) • Switch Mode Power Supply Feedback accomplished through Siemens double molding isolation manufac- turing process.
in „Ansteuerung Opto 4N27“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
FL5150-D.pdf
6.9 650 650 7650 7650 m e 140 7.7 700 700 7600 7600 r C 150 8.5 750 750 7550 7550 o 160 9.4 800 800 7500 7500 t o 170 10.3 850 850 7450 7450 l 180 e 11.2 900 900 7400 7400 r 190 12.1 950 950 7350 7350 200 13 1000 1000 7300 7300 210 14 1050 1050 7250 7250 220 15 1100 1100 7200 7200 230 16 1150 1150 7150
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MOC3021M.pdf
sec °C T Junction Temperature Range All -40 to +100 °C - J (1) i VISO Isolation Surge Voltage All 7500 Vac(pk) n (peak AC voltage, 60Hz, 1 sec. duration) D PD Total Device Power Dissipation @ 25°C Ambient All 330 mW P R Derate above 25°C 4.4 mW/°C a EMITTER d o IF Continuous Forward Current All 60 mA
in „Blitzgerät an Mikrocontroller“ · Mikrocontroller und Digitale Elektronik ·
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Datei
schemath.txt
SDR314/04 ZEPHIR 8MR733 PHILIPS: AP4222 LBB6060 PS6000 8RR300 PYE: AM10D AM10P FM10B FM10BC FM10D W15FM PF2UB2C F17FM F460 PYE: PTC113 PTC115Z PTC116 PTC117 PTC118 PTC119 UHF-F460 PYE: T17FM M294 M296 P50002/4 RADIO HOLLAND: MICROLINE 82A INTECH MARINER 1500 SAIT:T4 D72A SD72 SPERRY:SR500 STANDARD
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ILQ621GB.pdf
Reverse voltage VR 6.0 V Forward current I 60 mA F Surge current IFSM 1.5 A Power dissipation P 100 mW diss Derate from 25 °C 1.33 mW/°C OUTPUT Collector emitter reverse voltage VECO 70 V IC 50 mA Collector current t < 1.0 ms IC 100 mA Power dissipation P diss 150 mW Derate from 25 °C - 2.0 mW/°C COUPLER Isolation test voltage t = 1.0 s V ISO 5300 VRMS ILD621 400 mW Package dissipation ILD621GB 400 mW Derate from 25 °C 5.33 mW/°C Package dissipation ILQ621 500 mW ILQ621GB 500 mW Derate from 25 °C 6.67 mW/°C Creepage distance ≥ 7.0 mm Clearance distance ≥ 7.0 mm
in „Konstantstrom über Optokoppler treiben“ · Analoge Elektronik und Schaltungstechnik ·
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Panasonic_-_Oscon.pdf
current Within the initial limit (after voltage processing) Marking Dimensions (not to scale) 0.2 max. W ⊖ Polarity marking (−) D H P C Lot No. ø Series code* ⊕ L R Unit:mm Size +0.1 code øD±0.5 L -0.4W±0.2 H±0.2 C±0.2 R P±0.2 B45 5.0 4.4 5.3 5.3 6.0 0.6 to 0.8 1.4 B6 5.0 5.9 5.3 5.3 6.0 0.6 to 0.8 1.4
in „ELKO gesucht "94M 100 HFV"“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
683405.pdf
25°C 150 mW o O Derate above 25°C 1.76 mW/°C p t c o Electrical Characteristics (TA= 25°C unless otherwise specified) u l Individual Component Characteristics r s Symbol Parameter Test Conditions Min. Typ.* Max.
in „optokoppler_Eingangsspannung“ · Mikrocontroller und Digitale Elektronik ·
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Duo-LPDA-04.pdf
werden? Rechengang: c = 300 geteilt durch f = 142,5 ergibt Wellenlänge = 2,10 in Metern. ergo c = 7500 geteilt durch 142,5 MHz = Viertelwellenlänge 52,6 in Zentimetern. c = 7500 geteilt durch 145 MHz = 51,7 cm. Differenz = 9 mm. Resonanz war also ca. 2,5 - bzw. 7- MHz zu tief - (145 MHz minus 142,5 MHz
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MOC3020-M.pdf
sec °C T Junction Temperature Range All -40 to +100 °C - J (1) i VISO Isolation Surge Voltage All 7500 Vac(pk) n (peak AC voltage, 60Hz, 1 sec. duration) D PD Total Device Power Dissipation @ 25°C Ambient All 330 mW P R Derate above 25°C 4.4 mW/°C a EMITTER d o IF Continuous Forward Current All 60 mA
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PDF
4N27-M.pdf
@AT = 25°C 120 mW P Derate above 25°C 1.41 mW/°C n P DETECTOR h V Collector-Emitter Voltage 30 V o CEO o V CBO Collector-Base Voltage 70 V r a V ECO Emitter-Collector Voltage 7 V s P D Detector Power Dissipation A T = 25°C 150 mW s o Derate above 25°C 1.76 mW/°C r O p o Electrical Characteristics (TA= 25°C unless otherwise specified) c u Individual Component Characteristics p e Symbol Parameter Test Conditions Min. Typ.* Max.
in „Wechselspannungs Fragen :(“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Phoenix_ELR.pdf
Betriebsart 100 % ED Schutzart IP20 Prüfspannung Eingang/Ausgang 4 kVeff Verlustleistung min./max. 0,88 W / 2,5 W ; 0,88 W / 4,1 W ; 0,88 W / 7 W Abmessungen B / H / T 22,5 mm / 99 mm / 114,5 mm Anschlussdaten Anschlussart Push-in-Anschluss Leiterquerschnitt starr 0,14 mm² ... 2,5 mm² Leiterquerschnitt flexibel
in „Günstiges Wendeschütz gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Nwavguy_O2_V11_Docs_30_Nov_2011.pdf
, 8X Gain Respectively C20 220 pF V+ R3 & R7 = R19 & R23 up to 274 ohms16 dB, 18 dB) 01 m2 u. AG c)w ( 1 21 .cm Gy wA () 1 21 .cm Gy wA () Objective2 (O2) V1.1 Bill of Materials (parts list) 11/30/2011 Qty Description Mfg Part Number Mfg Reference Unit Ext Mouser Part Number Qty Notes 2 Rectifier Diode
in „Kopfhörer-Verstärker“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
A501_LD_LB_LT_W5AM.pdf
Golden DRAGON Plus Lead (Pb) Free Product - RoHS Compliant LD W5AM, LB W5AM, LT W5AM Released Besondere Merkmale Features • Gehäusetyp: weißes SMD-Gehäuse, klare package: white SMD package, clear silicone Silikonlinse lens Typischer Lichtfluss: 453 mW (tief blau); typical Luminous Flux: 453 mW (deep blue); 28 lm (blau);93 lm (truegreen)bei350mAund 28 lm (blue); 93 lm (true green) at 350 mA and bis zu 995mW (tief blau); up to 995 mW (deep blue); 55 lm (blau); 168 lm (true green) bei 1 A 55
in „2 x LED und Lüfterschaltung 12V“ · Analoge Elektronik und Schaltungstechnik ·
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XTR105U-4-20mA-current-transmitter.pdf
+85 ✻ ✻ °C Operating –55 +125 ✻ ✻ °C Storage –55 +125 ✻ ✻ °C Thermal Resistance,JA DIP-14 80 ✻ °C/W SO-14 Surface-Mount 100 ✻ °C/W ✻ Specification same as XTR105P and XTR105U. NOTES:(1) Describes accuracy of the 4mA low-scale offset current. Does not include input amplifier effects. Can be trimmed
in „[V] Verschiedene SMD-IC's“ · Markt ·
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PDF
MOC3041.pdf
sec °C M Junction Temperature Range T All -40 to +100 °C , J M Isolation Surge Voltage V ISO All 7500 Vac(pk) C (peak AC voltage, 60Hz, 1 sec duration) 3 3 Total Device Power Dissipation @ 25°C PD All 250 mW M Derate above 25°C 2.94 mW/°C , M EMITTER O Continuous Forward Current F All 60 mA 3 4 Reverse
in „Triac am atmega anstelle MOC3041 und BTA08-400“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
94874_MOC3043_OptoTriac.pdf
sec °C M Junction Temperature Range T All -40 to +100 °C , J M Isolation Surge Voltage V ISO All 7500 Vac(pk) C (peak AC voltage, 60Hz, 1 sec duration) 3 3 Total Device Power Dissipation @ 25°C PD All 250 mW M Derate above 25°C 2.94 mW/°C , M EMITTER O Continuous Forward Current F All 60 mA 3 4 Reverse
in „Triac Probleme mit MOC3043“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
4N25.pdf
@AT 25°C 150 (non-M), 120 (-M) mW Derate above 25°C PD 2.0 (non-M), 1.41 (-M) mW/°C DETECTOR V Collector-Emitter Voltage CEO 30 V Collector-Base Voltage VCBO 70 V Emitter-Collector Voltage VECO 7 V Detector Power DissipationA@ T = 25°C P 150 mW Derate above 25°C D 2.0 (non-M), 1.76 (-M) mW/°C © 2003 Fairchild Semiconductor Corporation Page 2 of 15 5/7/03 GENERAL PURPOSE 6-PIN PHOTOTRANSISTOR OPTOCOUPLERS 4N25 4N26 4N27 4N28 4N35 4N36 4N37 H11A1
in „optocoupler beschaltung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Si4838DY.pdf
1.3 Continuous Source Current (Diode Conduction) S TA= 25 °C 3.5 1.6 Maximum Power Dissipationa PD W TA= 70 °C 2.2 1 T , T Operating Junction and Storage Temperature Range J stg - 55 to 150 °C THERMAL RESISTANCE RATINGS Parameter Symbol Typical Maximum Unit t ≤ 10 s 29 35 Maximum Junction-to-Ambient RthJA Steady State 67 80 °C/W Maximum Junction-to-Foot (Drain) Steady State RthJF 13 16 Notes: a. Surface Mounted on 1" x 1" FR4 board. Document Number: 71359 www.vishay.com S09-0221-Rev. D, 09-Feb-09 1 Si4838DY Vishay Siliconix
in „Verpolungsschutz Mosfet dimensionieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LM2660_DC_Inverter.pdf
Features S The LM2660/LM2661 CMOS charge-pump voltage con- n Inverts or doubles input supply voltage w verter inverts a positive voltage in the range ofn Narrow SO-8 and Mini SO-8 Package t uses two low cost capacitors to provide 100 mA of outputypical output resistance h current without the cost, size
in „Negative Betriebsspannung erzeugen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
_D03019040G-00_-3.pdf
(mm) 01~09 01~09 A0~A9 100~109 K0~K9 200~209 V0~V9 300~309 10~19 10~19 B0~B9 110~119 L0~L9 210~219 W0~W9 310~319 20~29 20~29 C0~C9 120~129 M0~M9 220~229 X0~X9 320~329 30~39 30~39 D0~D9 130~139 N0~N9 230~239 Y0~Y9 330~339 40~49 40~49 E0~E9 140~149 P0~P9 240~249 Z0~Z9 340~349 50~59 50~59 F0~F9 150~159
in „Leiser Gerätelüfter in 35x35 gesucht“ · Mechanik, Gehäuse, Werkzeug ·
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PDF
LM2621.pdf
L M March 2005 6 2 1 L LM2621 o w Low Input Voltage, Step-Up DC-DC Converter n n 1.09 mm Package Height p General Description n Up to 2 MHz Switching Frequency u The LM2621 is a high efficiency, step-up DC-DC swn 1.2V to 14V Input Voltage
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PDF
ATGmeo5c.pdf
preload force (oz) NM 2 J NM J = total system inertia (oz-in-s ) J = motor inertia (oz-in-s ) 2 Motor W M Load 2 JLS = lead screw inertia (oz-in-s ) W = load weight (oz) F = frictional force (oz) N L WL u = coefficient of friction JNL JL g = gravitational constant (386 in/s ) 2 Speed: w M = w (N /N )M
in „Schrittmotor-Treiber Stepper Motor Pacific Scientific Powermax II“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datenblatt_Relais__JQX-115F.pdf
12.7mm x 15.7mm CONTACT DATA COIL Contact arrangement 1A, 1B, 1C 2A, 2B, 2C Coil power Approx. 400mW 1) Contact resistance 100m max.(at 1A 6VDC) Contact material See ordering info. Contact rating 12A/16A 250VAC 8A 250VAC (Res. load) COIL DATA at 23 Max.switchingvoltage 440VAC / 300VDC Pick-up Drop-out
in „Relais Verklebt? Falsche Ausgewählt?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LM2661.pdf
Features S The LM2660/LM2661 CMOS charge-pump voltage con- n Inverts or doubles input supply voltage w verter inverts a positive voltage in the range ofn Narrow SO-8 and Mini SO-8 Package t uses two low cost capacitors to provide 100 mA of outputypical output resistance h current without the cost, size
in „pegelanpassung analog“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
A200-DATASHEET_MAX756_757.pdf
°C) Lead Temperature (soldering, 10sec)........................... +300°C Plastic DIP (derate 9.09mW/°C above +70°C) .............727mW / SO (derate 5.88mW/°C above +70°C)..........................471mW 6 Stresses beyond those listed under “Absolute Maximum Ratings" may cause permanent damage to the
in „MAX756-Schlechter Wirkungsgrad“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
A200-DATASHEET_MAX756_757.pdf
°C) Lead Temperature (soldering, 10sec)........................... +300°C Plastic DIP (derate 9.09mW/°C above +70°C) .............727mW / SO (derate 5.88mW/°C above +70°C)..........................471mW 6 Stresses beyond those listed under “Absolute Maximum Ratings" may cause permanent damage to the
in „Step-Up Wandler MAX756“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
82546.pdf
operating current 1.627 µs or 3/16 of bit time. The typical power con- sumption is very low with about 10 mW in operational state and in the order of a few microwatts in standby mode. Block Diagram Vcc TD_232 TD_IR Endec RD_232 RD_IR BR/D Baud TD_LED Generator RD_LED Logic S1 S2 RESET Oscillator Vcc_SD GND
in „Transparente, drahtlose Verbindung zweier RS232-Schnittst.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MSP430_Testprogramme.pdf
mov.w #07FFFh,&CCR0 ; initialize CCR0 mov.w #CCIE,&CCTL1 ; enable CCR1 compare interrupt mov.w #03FFFh,&CCR1 ; initialize CCR1 mov.w #CCIE,&CCTL2 ; enable CCR2 compare interrupt mov.w #01FFFh,&CCR2 ; initialize
in „Anfängerfrage: MSP430F2274“ · Mikrocontroller und Digitale Elektronik ·
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PDF
CNY17-2.pdf
µs pulse, 300 pps) IF(pk) -M 1.5 A 4 non -M 3.0 h LED Power Dissipation 25°C Ambient PD -M 120 mW o t Derate Linearly From 25°C non -M 135 t -M 1.41 mW/°C a n non -M 1.8 s DETECTOR s o Detector Power Dissipation @ 25°C PD -M 150 mW r O Derate Linearly from 25°C non -M 200 p -M 1.76 mW/°C o c non
in „Optokoppler CNY17“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Voltageinverter.pdf
Description Features S The LM2662/LM2663 CMOS charge-pump voltage ■oInverts or doubles input supply voltage w inverts a positive voltage in the range of ■.Narrow SO-8 Package i two low cost capacitors to provide 200 mA of output currentutput resistance c without the cost, size, and EMI related to inductor based
in „Das große ADC Quiz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DSS1.pdf
to Component Center 6.35±1.3 D Width of Body 8.5 max. S Deviation along tape, Left or Right 0±1.0 W Carrier Tape Width 18.0±0.5 W 1 Position of Sprocket Hole 9.0 +0,-0.5 Tape Widthwise Shift l Protrusion Length +0.5 -1.0 D 0 Diameter of Sprocket Hole 4.0±0.1 d Lead Diameter 0.6 t1 Total Tape
in „Was ist das?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
batterien.pdf
3,6667 Panasonic 2032 1,20 1 20 3,2 4 190 3 1,00 4021,24 570,0 570,0 141,747 0,51029 143 0,513 4,7500 Panasonic 1216 1,05 1 12,5 1,6 2 25 3 1,00 785,40 75,0 75,0 95,493 0,34377 38 0,135 0,7143 Panasonic 1225 1,15 1 12,5 2,5 1 38 3 1,00 1227,18 114,0 114,0 92,896 0,33442 114 0,410 0,9913 1620 0,64 1
in „Hier mal ein Batterievergleich und Bitte um Beratung bei Batterien“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Mabuchi_Motors_Complete.pdf
OUTPUT TORQUE CURRENT RANGE NOMINAL r/min A r/min A mN·m g·cm W mN·m g·cm A RK-270SH-08550 12~26 24VCONSTANT 6300 0.026 5060 0.11 2.80 28.6 1.48 14.2 145 0.43 RK-270SH-16175 4.5~18.0 9VCONSTANT 7500 0.070 6320 0.37 3.18 32.5 2.10 20.2 206 2.00 UNIT:MILLIMETERS ø1.2
in „12 V Motor aus der Al-ko Mover Einheit M20 Ams1“ · Fahrzeugelektronik ·
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PDF
sp3222_3232e.pdf
Per Package V+ + |V-| (NOTE 1)...........................................20-pin SSOP (derate 9.25mW/ oC above +70 C).....750mW o o I (DC V or GND current).................................±100mAn PDIP (derate 15.2mW/ C above +70 C)....1220mW CC CC 18-pin SOIC (derate 15.7mW/ C above +70 C) ... 1260mW 20-pin TSSOP (derate 11.1mW/ C above +70 C) .. 890mW o o 16-pin SSOP (derate 9.69mW/ C above +70 C).....775mW 16-pin PDIP (derate 14.3mW/oC above +70 C)....1150mW 16-pinWideSOIC(derate11.2mW/ Cabove+70 C) 900mW o o 16-pin TSSOP
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