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PDF
MAX491.pdf
and 4 MAX488–MAX491 MAX1480 data sheets. X A A RO R B 120Ω DATA IN / DE 3 8 DI Z 120Ω 4 D Y DATA OUT X A M NOTE: RE AND DE ON MAX489/MAX491 ONLY. / 1 8 Figure 23. Line Repeater for MAX488–MAX491 4 X A M 14 __
in „MAX491 -Defekt??“ · Mikrocontroller und Digitale Elektronik ·
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PDF
0900766b80718482.pdf
@ +25°C a Size Part Number μA @ 25ºC 120 Hz 100 kHz Size Part Number μA @ 25ºC 120 Hz 100 kHz f µF Max Max Max µF Max Max Max u 2.5 Volt Rating at +85ºC (1.7 Volt Rating at +125ºC) **6 Volt Rating at +85ºC (4 Volt Rating at +125ºC) S 100.0 T T491T107(1)2R5A(2) 2.5 24.0 3.9 15.0 C T491C156(1)006A(2) 0.9
in „Kemet Kondensatoren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
0900766b80718482.pdf
@ +25°C a Size Part Number μA @ 25ºC 120 Hz 100 kHz Size Part Number μA @ 25ºC 120 Hz 100 kHz f µF Max Max Max µF Max Max Max u 2.5 Volt Rating at +85ºC (1.7 Volt Rating at +125ºC) **6 Volt Rating at +85ºC (4 Volt Rating at +125ºC) S 100.0 T T491T107(1)2R5A(2) 2.5 24.0 3.9 15.0 C T491C156(1)006A(2) 0.9
in „Kemet Kondensatoren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
maxim_481_483_491.pdf
, see the MAX253 and X MAX488–MAX491 A RO R A 120 / RE B DATA IN 3 DE 8 DI Z 120 4 D Y DATA OUT X A NOTE: RE AND DE ON MAX489/MAX491 ONLY. / 1 8 Figure 23. Line Repeater for MAX488–MAX491 4 X A M 14 _____________
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PDF
MAX485.pdf
, see the MAX253 and X MAX488–MAX491 A RO R A 120 / RE B DATA IN 3 DE 8 DI Z 120 4 D Y DATA OUT X A NOTE: RE AND DE ON MAX489/MAX491 ONLY. / 1 8 Figure 23. Line Repeater for MAX488–MAX491 4 X A M 14 _____________
in „Kommunikation mit PC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX1487-MAX491.pdf
and 4 MAX488–MAX491 MAX1480 data sheets. X A A RO R B 120Ω DATA IN / DE 3 8 DI Z 120Ω 4 D Y DATA OUT X A M NOTE: RE AND DE ON MAX489/MAX491 ONLY. / 1 8 Figure 23. Line Repeater for MAX488–MAX491 4 X A M 14 __
in „SPI Recihweite über RS422 (MAX490) erhöhen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX481_422.pdf
MAX253 and 4 MAX488–MAX491 MAX1480 data sheets. X A A M RE R B 120Ω DATA IN / DE 3 Z 8 DI D Y 120Ω DATA OUT 4 X A M NOTE: RE AND DE ON MAX489/MAX491 ONLY. / 1 8 Figure 23. Line Repeater for MAX488–MAX491
in „Problem mit MAX481 Transmitter“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MAX485.pdf
MAX253 and 4 MAX488–MAX491 MAX1480 data sheets. X A A M RE R B 120Ω DATA IN / DE 3 Z 8 DI D Y 120Ω DATA OUT 4 X A M NOTE: RE AND DE ON MAX489/MAX491 ONLY. / 1 8 Figure 23. Line Repeater for MAX488–MAX491
in „STM32 UART Kommunikation -> Langsamer uC Tod“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Kemet_Tantalum_Chip_Capacitors__F3102TA_.pdf
tance µA@25ºC %@+25ºC µF Max 120HzMax µF Size PartNumber Max 120HzMax 100kHz Max Max 10VoltRatingat+85ºC(7VoltRatingat+125ºC) 20VoltRatingat+85ºC(13VoltRatingat+125ºC) 33.0 D T491D336(1)010AS 3.3 6. 0.8 33.0 V T491V336(1)010AS
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PDF
DOKUMENTATION_MSP430-F2013.pdf
“z” changed to upper case “Z”. Vhys(B_IT-)AX specification increased from 180mV to 210mV. MIN and MAX percentages for “calibrated DCO frequencies - tolerance over supply voltage VCC” corrected from 2.5% to 3.0% to match the specified frequency ranges. SLAS491C Production data sheet release for MSP430x20x2I and MSP430x20x2T. SLAS491D Changed fACLK to 0 Hz inLPM4 test conditions on page 23. SLAS491E Changed T maximum for programmed devices to 150C (page 20) stg SLAS491F Added ADC10 data transfer registers to Peripheral File Map
in „MSP430 2013 XOUT/XIN ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
FMMT491.pdf
still air conditions. Issue 5 - November 2007 2 www.zetex.com © Zetex Semiconductors plc 2007 FMMT491 Characteristics Issue 5 - November 2007 3 www.zetex.com © Zetex Semiconductors plc 2007 FMMT491 Electrical characteristics (at T amb = 25°C unless otherwise stated). Parameter Symbol Min. Typ. Max.
in „Wozu diese Schaltung? Funtkionsweise? LEDs in Kfz.“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MRGN-900_Schaltnetzgeraet.pdf
display 142*482*335 0~60V 0~15A Digital 0.1±2bit mm display Betrieb: 230 V ~ 50 Hz Restwelligkeit: max. 1 % Funktionsumgebung: (0 ~ 40) °C & max. 80 % RH E.T.T. Electronic Toys Trading GmbH Kreuzstraße 65/66 38118 Braunschweig Nachdruck oder Vervielfältigung nur mit ausdrücklicher Genehmigung 542-490
in „J-FET N-Channel mit gößer 70V Drain / Source Spannung für Konstantstromsenke“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LED_WEISS_5MM_18000_MCD_TYP15.pdf
tie bar is recommended. · Recommended soldering conditions Dip Soldering Soldering Pre-Heat 120°C Max. Temperature 350°C Max. Pre-Heat Time 60 seconds Max. Soldering Time 3 seconds Max. Solder Bath 260°C Max. Position No closer than 3 mm from the Temperature base of the epoxy bulb. Dipping Time 10 seconds
in „LED Helligkeit mit 8-bit steuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Ldiode.pdf
8142 2864 11, info@lasercomponents.com Great Britain: LASER COMPONENTS (UK) Ltd., Phone: +44 1245 491 499, Fax: +44 1245 491 801, info@lasercomponents.co.uk France: OPTOPHOTONICS sa, Phone: +33 1 3959 5225, Fax: +33 1 3959 5350, info@optophotonics.fr AlGaInP Visible Laser Diode ADL-63054TL DATE:2005
in „[Laserdiode] Schaltung und Dimensionierung zweier Transistoren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
adl-66505tl.pdf
Components Nordic AB Laser Components USA, Inc. Tel: +49 8142 2864 – 0 Tel: +33 1 39 59 52 25 Tel: +44 1245 491 499 Tel: +46 31 703 71 73 Tel: +1 603 821 – 7040 Fax: +49 8142 2864 – 11 Fax: +33 1 39 59 53 50 Fax: +44 1245 491 801 Fax: +46 31 703 71 01 Fax: +1 603 821 – 7041 info@lasercomponents.com info@lasercomponents.fr
in „Laser-Diode in Kühlkörper einlöten (oder wird's ihr zu heiß?)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
211-1-PLEXIGLAS-GS-XT-de.pdf
Formungstemperatur 160 – 175 150 – 160 150 – 160; 140 – 150; °C - 140 – 150; 140 – 150 Oberflächentemperatur, max., 200 180 - °C - (IR-Strahler-Erwärmung) Dauergebrauchstemperatur, max. 80 70 70; 70; 70; 65 °C - Rückformungstemperatur > 80; > 80; > 75; > 70 > 80; > 80; > 90 > 80; > 80 °C - Zündtemperatur 425 430
in „Luftspalt in den Ferritkern einbringen, welche Folie, Material“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
semicon.pdf
CAP 10uF / 35V tantal 695D106X0035G2T NTC 7343 1500 x 10uF / 35V tantal T491D106K035AT Vishay 7343 250 x 22uF / 10V tantal TAJB226K010R 3528 1500 x 22uF / 10V tantal TMC1AC226KLRH 3528 1000 x 22uF / 16V tantal T491C226M016RS Kemet 6032 500 x 22uF / 20V tantal T491D226M016AS Kemet 7343 470 x 33uF / 16V tantal T491D336M016AS Kemet 7343 500 CAP 68uF / 16V tantal TAJD686K016R AVX 7343 2000 x 150uF / 4V tantal T491D157K004AS Kemet 7343 50 x 220uF / 4V tantal TMCME0G227KTR Hitachi 7343 500 Passzív alkatrészek / ellenállás
in „4" TFT für 7,97€“ · Markt ·
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PDF
R3112x_SERIES_Ricoh.pdf
1 Output Current 2 Product Code −V DET[V] V HYS[V] SS 1[µA] SS 2[µA] OUT 1[mA] OUT 2[mA] Min. Typ. Max. Min. Typ. Max. Condi- Typ. Max. Condi- Typ. Max. Condi- Min. Typ. Conditions Min. Typ. tions tions tions R3112x091A/C 0.882 0.900 0.918 0.027 0.045 0.063 0.6 2.0 0.05 0.9 R3112x101A/C 0.980 1.000 1.020
in „IC von Tiefentladungsschutz identifizieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
0279834120.pdf
connection switch Y 5 n sectionneur principal F 2 t 0 / t 1 2 e 1 M l Flur W a floor atelier 3 l Spannweite max.(m) 1 p Hubmotor span max. (m) Hängesteuergerät Typ W s z portée max. (m) 0 suspended control paneltype H (Klammerwerte bei Kaltleiter) hoist motor 1 boîte de commande 5 W15 (mm²) 1 STH 0 n / (values
in „Kran Motor polumschaltbar Klemmenbrett Belegung unklar“ · Haus & Smart Home ·
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PDF
FT232R.pdf
Feature Pb Free Solder Process Non-Pb Free Solder Process Average Ramp Up Rate (T ts T )p 3°C / second Max. 3°C / Second Max. Preheat - Temperature Min (T sin.) 150°C 100°C - Temperature Max (T Max.) s 200°C 150°C - Time (tsMin to s Max) 60 to 120 seconds 60 to 120 seconds Time Maintained Above Critical
in „AD7190 Clock“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
FT232R.pdf
Feature Pb Free Solder Process Non-Pb Free Solder Process Average Ramp Up Rate (T ts T )p 3°C / second Max. 3°C / Second Max. Preheat - Temperature Min (T sin.) 150°C 100°C - Temperature Max (T Max.) s 200°C 150°C - Time (tsMin to s Max) 60 to 120 seconds 60 to 120 seconds Time Maintained Above Critical
in „Bite um Kontrolle meines Schaltplans und Layoutes“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS_FT232R.pdf
Feature Pb Free Solder Process Non-Pb Free Solder Process Average Ramp Up Rate (T ts T )p 3°C / second Max. 3°C / Second Max. Preheat - Temperature Min (T sMin.) 150°C 100°C - Temperature Max (T sax.) 200°C 150°C - Time (tsMin to s Max) 60 to 120 seconds 60 to 120 seconds Time Maintained Above Critical Temperature
in „Power via USB - Entstörung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
M12021PB_SM_PANASONIC_EN.pdf
1nput Impedance 300 ohms min. 40pF max. 300 ohms min. 40pF max. 300 ohms min. 40pF max. Vertical Input Sync Signal: Active Polarity Positive Positive Positive Pulse Rate 60.0Hz 60.0Hz 60.0Hz Amplitude Low;0+ Q.4V· Low;0+0.4V Low;0+0.4V -
in „CRT Monitor gegen VGA Monitor tauschen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
M12021PB_SM_PANASONIC_EN.pdf
1nput Impedance 300 ohms min. 40pF max. 300 ohms min. 40pF max. 300 ohms min. 40pF max. Vertical Input Sync Signal: Active Polarity Positive Positive Positive Pulse Rate 60.0Hz 60.0Hz 60.0Hz Amplitude Low;0+ Q.4V· Low;0+0.4V Low;0+0.4V -
in „Heidenhain Monitor BE 212 für TNC 351“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
APPCHP7.pdf
the maximum pulse power dissipation is limited either by the maximum temperature difference Tj-mb max (Eq. 2), or by the maximum junction temperature T jmax and so by analogy with Eqs. 3 and 4: Tj −mb max P tot maxK , 7 Zthj −mb when T mb ≤ Tmb K and: Fig. 10 Three limit cases of rectangular pulse loads
in „2N3055 , was sind aktuelle Alternativen ?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
APPCHP7.pdf
the maximum pulse power dissipation is limited either by the maximum temperature difference Tj-mb max (Eq. 2), or by the maximum junction temperature T jmax and so by analogy with Eqs. 3 and 4: Tj −mb max P tot maxK , 7 Zthj −mb when T mb ≤ Tmb K and: Fig. 10 Three limit cases of rectangular pulse loads
in „Lineares Netzteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ds232bv16.pdf
Dimensions 9 7 32 Pin # 1 FTDI FT232BM 7 9 XXYY 0.8 1 0.37 +/- 0.07 12 +/- 1 X . 0.09 Min 0.09 Min M / 0.2 Max 0.16 Max 0 + 1 1 0.25 0.35 +/- 0.05 0.05 Min 0.2 Min 0.15 Max 0.6 +/- 0.15 The FT232BM is supplied in a 32 LD LQFP package as standard. This package has a 7mm x 7mm body ( 9mm x 9mm including leads
in „kleiner FET“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
datenblatt_von_FT232BL.pdf
7 2 Pin # 1 FTDI FT232BL 7 9 XXYY 0.8 1 0.37 +/- 0.07 1o o 2 +/- 1 5 . 0.09 Min 0.09 Min 0 X / 0.2 Max 0.16 Max 1 M + 1 0.25 0.35 +/- 0.05 0.05 Min 0.2 Min 0.15 Max 0.6 +/- 0.15 The FT232BL is supplied in a 32 pin lead free LQFP package. This package has a 7mm x 7mm body ( 9mm x 9mm including leads )
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PDF
A200_FT232BL.pdf
7 2 Pin # 1 FTDI FT232BL 7 9 XXYY 0.8 1 0.37 +/- 0.07 1o o 2 +/- 1 5 . 0.09 Min 0.09 Min 0 X / 0.2 Max 0.16 Max 1 M + 1 0.25 0.35 +/- 0.05 0.05 Min 0.2 Min 0.15 Max 0.6 +/- 0.15 The FT232BL is supplied in a 32 pin lead free LQFP package. This package has a 7mm x 7mm body ( 9mm x 9mm including leads )
in „Schaltplan für FT 232BL überprüfen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Katalog_2013-14__365.pdf
33.3 30.6 25.8 21.3 14.3 8.88 4 Nenndrehzahl min -1 4300 4310 4840 3970 4490 4500 3580 5 Nennmoment (max.Dauerdrehmoment) mNm 11.8 12.2 12.2 12.3 12.4 12.3 12.4 6 Nennstrom (max.Dauerbelastungsstrom) A 0.807 0.654 0.583 0.520 0.420 0.279 0.184 7 Anhaltemoment mNm 32.9 33.5 35.9 31.4 34.1 33.4 28.8 8 Anlaufstrom
in „suche Datenblatt von einem Maxon Motor siehe Bild im Anhang“ · Mikrocontroller und Digitale Elektronik ·
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PDF
FT2232_datasheet.pdf
FTDI 7 9 FT22 32L D XXYY 0.22+/- 0.05 0.5 1.0 0.24 +/- 0.07 1o +/- 1 2 . 0.09 Min 0.09 Min 0 X / 0.2 Max 0.16 Max 1 M + 1 0.25 0.22 +/- 0.05 0.05 Min 0.2 Min 0.15 Max 0.6 +/- 0.15 The FT2232D is supplied in a 48 pin lead (Pb) free LQFP package. This package has a 7mm x 7mm body (9mm x 9mm including leads
in „AVR-Programmierung via USB mit FT2232“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS_FT232R_v104.pdf
Feature Pb Free Solder Process Non-Pb Free Solder Process Average Ramp Up Rate (T ts T )p 3°C / second Max. 3°C / Second Max. Preheat - Temperature Min (TSMin.) 150°C 100°C - Temperature Max (T Sax.) 200°C 150°C - Time (t Min to t Max) 60 to 120 seconds 60 to 120 seconds S S Time Maintained Above Critical
in „Mosfet für FT232R“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
FT_232RL.pdf
Feature Pb Free Solder Process Non-Pb Free Solder Process Average Ramp Up Rate (T ts T )p 3°C / second Max. 3°C / Second Max. Preheat - Temperature Min (TSMin.) 150°C 100°C - Temperature Max (T Sax.) 200°C 150°C - Time (t Min to t Max) 60 to 120 seconds 60 to 120 seconds S S Time Maintained Above Critical
in „ATMega8L an USB per max232“ · Mikrocontroller und Digitale Elektronik ·
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PDF
FT232R.pdf
Feature Pb Free Solder Process Non-Pb Free Solder Process Average Ramp Up Rate (T ts T )p 3°C / second Max. 3°C / Second Max. Preheat - Temperature Min (TSMin.) 150°C 100°C - Temperature Max (T Sax.) 200°C 150°C - Time (t Min to t Max) 60 to 120 seconds 60 to 120 seconds S S Time Maintained Above Critical
in „Daten für Drucker abfangen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS_FT232R_v104.pdf
Feature Pb Free Solder Process Non-Pb Free Solder Process Average Ramp Up Rate (T ts T )p 3°C / second Max. 3°C / Second Max. Preheat - Temperature Min (TSMin.) 150°C 100°C - Temperature Max (T Sax.) 200°C 150°C - Time (t Min to t Max) 60 to 120 seconds 60 to 120 seconds S S Time Maintained Above Critical
in „FT232R Frage Bezug auf Masse“ · Mikrocontroller und Digitale Elektronik ·
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PDF
FT232RL.pdf
Feature Pb Free Solder Process Non-Pb Free Solder Process Average Ramp Up Rate (T ts T )p 3°C / second Max. 3°C / Second Max. Preheat - Temperature Min (TSMin.) 150°C 100°C - Temperature Max (T Sax.) 200°C 150°C - Time (t Min to t Max) 60 to 120 seconds 60 to 120 seconds S S Time Maintained Above Critical
in „RS232 (Bus) Pegel Probleme“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS_FT232R_v102.pdf
Feature Pb Free Solder Process Non-Pb Free Solder Process Average Ramp Up Rate (T ts T )p 3°C / second Max. 3°C / Second Max. Preheat - Temperature Min (TSMin.) 150°C 100°C - Temperature Max (T Sax.) 200°C 150°C - Time (t Min to t Max) 60 to 120 seconds 60 to 120 seconds S S Time Maintained Above Critical
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Datei
test7.c
480, 481, 481, 482, 482, 483, 483, 484, 484, 485, 485, 486, 487, 487, 488, 488, 489, 489, 490, 490, 491, 491, 492, 492, 493, 493, 494, 494, 495, 495, 496, 496, 497, 497, 498, 498, 499, 499, 500, 500, 501, 502, 502, 503, 503, 504, 504, 505, 505, 506, 506, 507, 507, 508, 508, 509, 509, 510, 510, 511, 511
in „Frage zu Interrupt“ · Mikrocontroller und Digitale Elektronik ·
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Datei
test7.c
480, 481, 481, 482, 482, 483, 483, 484, 484, 485, 485, 486, 487, 487, 488, 488, 489, 489, 490, 490, 491, 491, 492, 492, 493, 493, 494, 494, 495, 495, 496, 496, 497, 497, 498, 498, 499, 499, 500, 500, 501, 502, 502, 503, 503, 504, 504, 505, 505, 506, 506, 507, 507, 508, 508, 509, 509, 510, 510, 511, 511
in „Frage zu Interrupt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DSS9180MDC.pdf
Schutzgrad IP00 safety qualities IP00 Isolierstoffklasse B heat resistance class B Umgebungstemperatur max. +45 °C ambient temperature max. + 45 deg C Prüfspannung Wicklung-Welle 4 kV ~ test voltage windings-shaft 4 kV ~ Frequenz 50/60 Hz frequency 50/60 Hz Drehwinkel 320 ° angle of rotation 320° Schaltbild
in „Verständnisproblem Dreiphasentransformator“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
2_3_34S_d.pdf
Umgebungstemperatur [°C] -20...+40 M[Nm] Schutzart IP40, 12 10 optional IP65 (Wellendurchführung: IP40) 8 Max. Axialbelastung [N] 180 6 Max. Radialbelastung [N] 180 4 150 V Max. AxialbelastungMontage [N] 400 2 Masse [kg] 2,6 4,0 5,5 90 V 0 Motorlänge(L) [mm ] 114 152 190 0 500 1000 1500 2000 n [min ] Dauerbetriebx. 90V Max. 150V Durchmesser Welle(D) [mm ] 12 12 14 TechnischeDatenInkrementalencoder Auflösung [Ink/U] 40.000 Betriebsspannung [V] 5(±10%) Stromaufnahme [mA ] 100 Signalspezifikation RS422 TechnischeÄnderungenvorbehalten06
in „Servomotor ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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Datei
fehler.txt
/../../../include/omniORB4/seqTemplatedefns.h: In member function ‘void _CORBA_Bounded_Sequence<T, max>::operator>>=(cdrStream&) const’: ../../../../../include/omniORB4/seqTemplatedefns.h:119: error: ‘pd_len’ was not declared in this scope ../../../../../include/omniORB4/seqTemplatedefns.h:119: error
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PDF
ltc485.pdf
VOL Receiver Output Low Voltage O = 4mA, VID –200mV 0.4 V I Three-State (High Impedance) Output V = Max, 0.4V V 2.4V 1 A OZR CC O Current at Receiver R IN Receiver Input Resistance –7V V CM 12V 12 k LTC485ff 2 LTC485 U SWITCHI G CHARACTERISTICS The denotes the specifications which apply over the full
in „IR mit langer Leitung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
020-01-428-010-EH-0409.pdf
E F 2 Electrical Characteristic MECHANICAL DIMENSION Part IR Vout Acc.Class Imin Imax R L δ DCR A(max) B(max) C(max) D(max) E(max) F(max) G(max) H(±1) Numbe (A) (V) (%) (Ω) (%) ( ' )Ω) (A) (A) mm / inch SW65-6-655-U 0.025~5A 0.498 0.5 0.025 15 100 -0.440 12.0 43 SW65-6-605-U 0.03~6A 3.998 0.2 0.03 20
in „Current Transformer“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LP2980.pdf
NOM) L OUT ON/OFF Symbol Parameter Conditions Typ LP2980AI-XX LP2980I-XX Units (Note 6) (Note 6) Min Max Min Max ΔV O Output Voltage Tolerance IL= 1 mA −0.50 0.50 −1.0 1.0 %V 1 mA < IL< 50 mA −0.75 0.75 −1.5 1.5 NOM −2.5 2.5 −3.5 3.5 Output Voltage VO(NOM)+ 1V 0.007 0.014 0.014 %/V Line Regulation 0.032
in „LDO LD1117 100nF?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
326,327,327,328,329,329,330,331,331,332,333,334,334,335,336,336,337,338,339,339,340,341,341,342,343,344,344,345,346,347,347,348,349,349,350,351,352,352,353,354,355,355,356,357,358,358,359,360,361,361,362,363,364,364,365,366,367,367,368,369,370,371,371,372,373,374,374,375,376,377,378,378,379,380,381,381,382,383,384,385,385,386,387,388,389,389,390,391,392,393,393,394,395,396,397,398,398,399,400,401,402,403,403,404,405,406,407,408,408,409,410,411,412,413,413,414,415,416,417,418,419,420,420,421,422,423,424,425,426,427,427,428,429,430,431,432,433,434,435,436,436,437,438,439,440,441,442,443,444,445,446,447,447,448,449,450,451,452,453,454,455,456,457,458,459,460,461,462,463,464,465,466,467,468,469,470,471,472,473,474,475,476,477,478,479,480,481,482,483,484,485,486,487,488,489,490,491,492,493,494,495,497,498,499,500,501,502,503,504,505,506,507,509,510,511,512,513,514,515,516,517,519,520,521,522,523,524,526,527,528,529,530,531,533,534,535,536,537,538,540,541,542,543,545,546,547,548,549
in „HSV RGB Led Dimmer, C Code & Video & Doku“ · Projekte & Code ·
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PDF
SAM9_EVAL-01.pdf
B R445 PC6 VBUS S C15 C16 R431 VBUS S 39R R449 GND U IC491CORE DGND 1n 1n 39R GND U C445 C446 15k 1G14DCK DGND C493 C494 C495 C496 C497 C430 C431 15p 15p 1n 1n 1n 1n 1n -15k -15k 47p 47p 22k8 [6] UC_SPI1I1.#CS1 2 4 1 0 0 1 DGND DGND DGND DGND DGND DGND +3V3 +3V3 JTAG 6 5 5 1 +3V3 C490 C491 C492 R450 R451 R452 R453 X470 100nIC491POWER 100nIC492POWEIRC490POWER 100n 100k 100k 100k 100k ARM_20POLIG_RTCK 3 3 8 1 VREF 3 4 [6] PER_JTAAG.#TRST R454 47R 5 #TRST GND 6 [6] PER_JTAAG.TDI TDI GND
in „AT91RM9200 Bootstrap loader“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PL20C_SL110SL130_Magnetband.pdf
Vibrationsfestigkeit 20 m/s²: 50 Hz...2 kHz Kompatibler Maßstabseinheit SL110, SL130 Abstand Maßstab-Lesekopf max. 1,5 mm berührungslos Kompatible Anzeigeneinheit LH70/71, LG20, LY71/22 Ausgang A/B TTL Linedriver nach (RS422) Lesekopfkabellängen 3, 5, 10, 15, 20, 30m Spannungsversorgung 5 VDC ±5% Leistungsaufnahme
in „Absolute Positionsbestimmung 3m auf 5mm Raster“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
wl_10_serie.pdf
4755, TRÖI und die örtlichen Vorschriften beachten. Bedingungen für Ölpumpe prüfen Saugwiderstand max 0,4 bar(1 Vorlaufdruck max 2 bar(1 (1 Vorlauftemperatur max 60 °C (1An der Pumpe gemessen. Bedingungen für Ölschläuche prüfen Länge 1200 mm Anschluss Ölschlauch G /8" Nenndruck 10 bar Temperaturbelastung
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PDF
Wandler.pdf
°± 0.5° (5A) Nominal CT Ratio : 3000:1 ■ CHARACTERISTIC OF OUTPUT VOLTAGE Inside Diameter : Ø 10mm Max. Capable Current : 10Arms continuous Open Protective Element : 7.5V Applicable Frequency : 10Hz~50KHz ( Rated Voltage : Less than AC600V for low voltage circuit of coated wires G Withstanding Voltage
in „Klappstromwandler mit 1 zu 1 Übersetzung“ · Analoge Elektronik und Schaltungstechnik ·