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PDF
Anleitung_Interruptcontroller.pdf
nn") ; 133 printf ( "▯▯▯▯▯▯▯▯▯▯nn") ; printf ( "▯▯▯▯▯▯▯▯▯▯nn") ; 135 InterruptProcessed=XFALSE; g 137 g 139 return XST SUCCESS; 141 g 143 /∗ function : Init PowerPC for Interrupthandling ∗/ 145 void SetupInterruptSystem () 147 f 149 /∗ I n i t i a l i z e the PPC exception table ∗/ 151 XExc Init ()
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OURDSO_V2.pdf
194 VCCIO2 9 119 3 3 P1 U9 C2 202 VCCIO2 25 GND GND 124 6 6 VCCIO2 GND GND 0 0 DCLK 1 2 DATA 8 DATA VCC 1 U8E 104 36 GND GND 140 k k CONF_DONE 3 4 DCLK 16 DCLK VCC 2 C4 TDI 19 TDI 109 VCCIO3 38 GND GND 153 1 1 nCONFIGS 5 6 nCE nCS 7 nCS VCC 9 TDO 16 TDO C6
in „Oszilloskop aus STM32 und FPGA“ · Mikrocontroller und Digitale Elektronik ·
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Datei
PC.txt
BlAdr: 000c00 Adr: 1b9 Val: 20 ASC: BlAdr: 000c00 Adr: 1ba Val: 65 ASC: e BlAdr: 000c00 Adr: 1bb Val: 6E ASC: n BlAdr: 000c00 Adr: 1bc Val: 74 ASC: t BlAdr: 000c00 Adr: 1bd Val: 66 ASC: f BlAdr: 000c00 Adr: 1be Val: 65 ASC: e BlAdr: 000c00 Adr: 1bf Val: 72 ASC: r BlAdr: 000c00 Adr: 1c0 Val: 6E ASC: n BlAdr: 000c00 Adr: 1c1 Val: 65 ASC: e BlAdr: 000c00 Adr: 1c2 Val: 6E ASC: n BlAdr: 000c00 Adr: 1c3 Val: FF ASC: ÿ BlAdr: 000c00 Adr: 1c4 Val: 0D ASC: BlAdr: 000c00 Adr: 1c5 Val: 0A ASC: BlAdr: 000c00 Adr: 1c6 Val: 4D ASC: M BlAdr: 000c00 Adr: 1c7 Val: 65 ASC: e BlAdr
in „SD-Karte mit PIC18F2685 beschreiben, am PC auslesen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
display.asm
zu je 16 Stellen ; !RESET | |_| | VCC Memoryadr.: Zeile1: 00 und Zeile2: 40h ; (RX)PD0 | | PB7(SCK) n.c. ; (TX)PD1 | | PB6(MISO) n.c. ; XTAL2 | | PB5(MOSI)----- Display pin 4 RS ; XTAL1 | | PB4 ----- Display pin 6 Enable ; (INT0)PD2 | | PB3(OC1) ----- Display pin 14 ; (INT1)PD3 | | PB2 ----- Display
in „LCD Routine Funktioniert nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
33963.pdf
OF 8 SECONDS READ EPROM DATA YES LATCH DATA VBAT>VBP NO DECREMENT ADDRESS YES NO ADDRESS 31 052694 6/11 DS1633 HARDWARE INTERFACE FOR PROGRAMMING Figure 3 12V VCC PROGRAM REGISTER 5K D Q VBAT Q D DS1633 INTERFACE TO PROGRAMMING CIRCUITRY I/O SIGNAL TIMING Figure 4 CYCLE N CYCLE N+1 tTS REC tREC WRITE
in „[V] 2St Dallas DS1633 Ladechip TO220 3 Pin für“ · Markt ·
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PDF
Transistortester092k.pdf
2493 Idealwert: 2500 Probe's trennen Test 5 RH1- RH2- RH3- 470kΩ (Isolation) Idealwert: 0 0 0 0 Test 6 RH1+ RH2+ RH3+ 470kΩ (Isolation) 4995 4995 4995 Idealwert: 5001 Test 7 TP1- RL1+ TP2- RL2+ TP3- RL3+ Pinwiderstand Low 132 132 137 Test 8 TP2+ RL1- TP2- RL2+ TP3- TP3+ Pinwiderstand High 151 151 151
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Bausatz_PC-Lueftersteuerung.PDF
2 Stückliste Stück Bauteil Wert/Bezeichnung Stück Bauteil Wert/Bezeichnung 4 R1, R11, 1 kΩ 1 C2 10 nF R12, R15 1 C3 68 nF 2 R2, R3 330 Ω 2 D1, D4 1N4936 2 R4, R8 100 kΩ 2 D2, D3 1N4148 1 R5 470 kΩ 1 LED1 LED 5mm rot 3 R6, R9, R10 3,9 kΩ 1 T1 BC548 1 R7 6,8 kΩ 1 T2 BD 137-16 1 R13 0,68 Ω 1 IC1 TL084
in „Bausatz PC-Lüftersteuerung modifizieren für höhere Leistung“ · Platinen ·
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PDF
verfahren_zur_darstellung_von_segelflugpolaren.pdf
Ableitung dieses Polynoms: p’(i) = b+ ic(x-xi+3d(i-x)² i i Die zweite Ableitung des Polynoms: p’’(i) =2c+6 i(x-x)i i Es sei h =ix i+1 xi Mit (1) erhält man: (U.1) ai= y i wobei gilt ( i=0,1,...,n ) c −c Aus (4) folgert man: 2c = 2c+6 d h und somit (U.2) d = i 1 i i+1 i i i i 3h i 1 Aus (2) und (4) schließt
in „AVR: Interpolation? Splines?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STM32F107-SK-SCH-revA.pdf
_MOSI/TIM1_CH3N8 TDOIN TRESIN GND C77 470pF 100nF 47uF/6.3V/TANT TDOIN 3 STM32F103C8T6(PGM) 6 6 R3 1 6 47k C87 R76 R78 ) C81 5 C 4 R13 AUDIO_OUT_L R24 TRIM 10k 10k m + 8 V AN_TR , C55 N 3 33k 2.2uF/6.3V 10k 330R +C54
in „Cortex M3 STM32F107VC beim Reset passiert nichts“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Vollfarbsteuerung_C.c
, 129, 133, 137, 141, 146, 150, 154, 159, 163, 168, 172, 177, 182, 187, 192, 197, 202, 207, 212, 217, 222, 228, 233, 238, 244, 249, 255, 261, 267, 272, 278, 284, 290, 296, 302, 309, 315, 321, 328, 334, 341, 347, 354
in „UART-Interrupt wird nicht ausgelöst“ · Mikrocontroller und Digitale Elektronik ·
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PDF
eGC.pdf
FPGA_CONF_D6 PIIC20IO_L62N_D6_2 D7 PIIC60A6PGA_CONF_D7 FPGA_CONF_D7 PIIC20IO_L48P_D7_2 3V3 PIIC20IO_L64P_D8_2 XCFxxP PIIC20IO_L64N_D9_2 PIIC20IO_L13N_D10_2 I2 I2 PIIC20IO_L14P_D11_2 3V3 R898 R909 PIIC20IO_L14N_D12
in „[Suche] Interessierte(n) an Projekt (ARM/FPGA)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
duspol_analog_plus.pdf
aus- zeigt, wenn beide Drucktaster betätigt werden. - Die LED bzw. das Tauchspulmesswerk müssen N DUSPOL analog plus gelegt. Es lassen sich mit diesem Gerät bei Gleich- Ebenfalls wird ab ca. 200 V der Vibrationsmotor in die Außenleiterspannung anzeigen. Operating manual Bruksanvisning Bevor Sie den
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PDF
Testpunkte_M65p55.pdf
exceptional strength and durability S M .120 [3.0] .032 [.8] Pad Layout T .072 [1.8] .120 [3.0] T [1.6] .064 [1.6] SPECIFICATIONS E Material: S .015 (.38) Phosphor Bronze, Silver Plate CAT. NO. 5019 - 1000 pieces per reel CAT. NO. 5029 - 5000 pieces per reel T Tape & Reel Spec’s: 12mm Wide, 4mm Pitch
in „Gehäuse von z.B. Jung für eigene Elektronik“ · Mikrocontroller und Digitale Elektronik ·
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PDF
STTH16L06C.pdf
0.104 0.116 G1 E L6 15.25 15.75 0.600 0.620 G L7 6.20 6.60 0.244 0.259 L9 3.50 3.93 0.137 0.154 M 2.6 typ. 0.102 typ. Diam. 3.75 3.85 0.147 0.151 5/8 STTH16L06C Figure 15: D PAK Package Mechanical Data DIMENSIONS REF. Millimeters
in „Philips TV 47PFL9664H/12 Hintergrundbeleuchtung defekt“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Optisches_Schloss_11_2015_Sch.pdf
R52 1 47R der LED-Ströme 330k Pegel: Schwarz = 0 (low) D21 ... D30 R53 C63 C62 C61 A D61 Batterie 6V...8V 1 1 1 100nF 122uF 1 1uF 1 SMBJ8 2 1 Pegel : Muster = 1 (high) UND-Verknüfpung 12.2k R1 1 D1 D11 8 x high -> Out = high 1 2 1 U1A Stift162 220R BPW34A R21 D21 R11 110k 2 =1 3 2 1 1 330k SWITCH CD4077B
in „einfache Mustererkennung - Phototransistor/diode“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
SERVICE_LOCK_CMD 0b11111001 // Service lock command 0xFA (See RP 9.2.3 Apendix B) /*********** G E N E R A L O P E R A T I O N C O N S T A N T S **********/ #define MAX_ACK_TIME 20// Mesured in ms is the MAX time NMRA standar says the motor should be turned on for ACK (NMRA RP 9.2.3 part D) #define
in „DCC Lokdecoder PIC16F628“ · Mikrocontroller und Digitale Elektronik ·
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Datei
imgres.htm
<!doctype html><html lang="de"><head> <script nonce="GWJAvcnNrN33aUc3zO3N+Q==">(function(){window.google={kEI:'qBSNW_OeJcWjwALnmaoo',kEXPI:'0,1353746,58,1958,582,435,280,344,2006,730,326,63,286,726,26,1,70,2668178,1294,7105,180,3382,1716,1604,197,548,1299,314,893,633,1770,1137,4239,556,1334,3650,314,744,1744,328,5033,10931,279,1191,14056,867,317,6732,2445,2646,23,770,845,4693,3536,4481,2196,368,1213,2102,2314,1963,1228,1067,44,1331,260,1259,1182,618,512,92,1444,15,560,1119,2,579,727,610,1612,210,1361,1712,4,1877,730,938,1158,662,632,8,298,1237,35,222,551,1232,883,137,279,2,1717,2744,37,488,22,604,2,1396,1032,65,3,774,858,614,2374,4,49,248,229,1115,37,32,535,515,334,130,659,1,7,2,441,234,386,8,762,240,82,7,28,463,243,377,29,402,860,117,16,451,7,62,7,74,149,339,1216,92,7,429,441,388,2039,169,34,313,11,20,340,180,46,71,866,601,395,162,540,132,204,171,530,168,99,147,24,1030,358,90,144,280,184,111,2,480,10,47,98,178,95,175,527,1,8,21,2,20,109,108,101,116,2,787,125,84,6,5,656,5999651,2554,110,5598594,298,490,324,567,293,225,296,44,309,629,7,1281,81,112,66,241,52,229,1275,420,54,103,524,9,69,94,67,169,73,10,4,23,105,3,82,6,291,23,292,178,267,37,56,106,188,73,68,122,93,6,223,34,379,170,109,19,23,90,359,52,51,301,48,6,39,9,12,116,38,100,33,109,13,2,46,18,33,76,17,59,147,13,38,49,15,24,39,26,84,60,219,47,112,23,219,9,44,79,3,3,27,56,104,158,1,57,235,13,25,112,3,12,40,91,26,3,3,69,30,22,6,8,14,122,9,27,25,5,63,18,56,104,77,34,1,383064,3880128,63,1219547,39,111,21,6,31,6,30,12,39,24,27,12,70,30,56,18,6,3,6,12,75
in „Anschlussplan Thermoschalter / Electrolux Herd Thermo-Schalter 387207902“ · Haus & Smart Home ·
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PDF
OZ960_O2MICRO.pdf
I W _ _ D D P L D L D D 3 A 0 N P P N 3 1 6 S U Z R 1 U O F F R A A T V N S D N E T B M 8 1 C O E S V G R R F C R 5 1 2 3 4 5 6 7 8 9 0 1 K u s u 0 1 1 s 2 . 2 C . n C 1 5 0 e h T R l g R a r n B 3 E . z 7 1 . 3 i H K 1 2 9 . C 0 .
in „Ic´s (unbekannt) für den Tft monitor gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
OZ960.pdf
I W _ _ D D P L D L D D 3 A 0 N P P N 3 1 6 S U Z R 1 U O F F R A A T V N S D N E T B M 8 1 C O E S V G R R F C R 5 1 2 3 4 5 6 7 8 9 0 1 K u s u 0 1 1 s 2 . 2 C . n C 1 5 0 e h T R l g R a r n B 3 E . z 7 1 . 3 i H K 1 2 9 . C 0 .
in „BenQ FP71Bildschirm fällt nach einiger Zeit aus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
OZ960.pdf
I W _ _ D D P L D L D D 3 A 0 N P P N 3 1 6 S U Z R 1 U O F F R A A T V N S D N E T B M 8 1 C O E S V G R R F C R 5 1 2 3 4 5 6 7 8 9 0 1 K u s u 0 1 1 s 2 . 2 C . n C 1 5 0 e h T R l g R a r n B 3 E . z 7 1 . 3 i H K 1 2 9 . C 0 .
in „Monitor defekt!“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
mls-1.pdf
signal must be adjusted in order to fulflll the second clause. For an MSL signal h is given by: X XP h (n) = 1 ( y(k)x(k ¡ n) ¡ y(k)) P + 1 k=1 k=1 where P is the periodicity of the sequence. In matrix form the deconvolution term for a 7 sample sequence can be written: 0 1 0 10 1 h 1 x1 x2 x3 x4 x5 x6 x7
in „Simulation mit Audiosignale“ · Digitale Signalverarbeitung / DSP / Machine Learning ·
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PDF
mls-1.pdf
signal must be adjusted in order to fulflll the second clause. For an MSL signal h is given by: X XP h (n) = 1 ( y(k)x(k ¡ n) ¡ y(k)) P + 1 k=1 k=1 where P is the periodicity of the sequence. In matrix form the deconvolution term for a 7 sample sequence can be written: 0 1 0 10 1 h 1 x1 x2 x3 x4 x5 x6 x7
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PDF
HX8352-A.pdf
(CGMN3*12/16.8)+ V6 (VgN5-VgN6)*(1-CGMN3)*(20.8/25.6) V37 VgN4+(VgN3-VgN4)*(17/23) VgN6+(VgN5-VgN6)*(CGMN3*9.6/16.8)+ 5 (VgN5-VgN6)*(1-CGMN3)*(18.4/25.6) V36 VgN4+(VgN3-VgN4)*(16/23) V4 VgN6+(VgN5-VgN6)*(CGMN3*7.2/16.8)+ (VgN5-VgN6)*(1-CGMN3)*(16/25.6) V35 VgN4+(VgN3-VgN4)*(15/23) VgN6+(VgN5-VgN6)*(CGMN3*4.8/16.8)+ V3 (VgN5-VgN6)*(1-CGMN3)*(11.2/25.6) V34 VgN4+(VgN3-VgN4)*(14/23) VgN6+(VgN5-VgN6)*(CGMN3*2.4/16.8)+ V2 (VgN5
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PDF
SMDJ12A_TVS_Diode.pdf
R T @ I pp Current pp @V R UNI BI (Volts) MIN MAX (mA) (V) (A) (µA) SMDJ5.0A SMDJ5.0CA RDE DDE 5.0 6.40 7.00 10 9.2 326.1 800 X SMDJ6.0A SMDJ6.0CA RDG DDG 6.0 6.67 7.37 10 10.3 291.3 800 X SMDJ6.5A SMDJ6.5CA RDK DDK 6.5 7.22 7.98 10 11.2 267.9 500 X SMDJ7.0A SMDJ7.0CA PDM DDM 7.0 7.78 8.60 10 12.0 250.0
in „Frage zu TVS Diode -> Hält sie einen ESD aus?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
3260__1_.pdf
Rauschabstrahlung wird durch die Steuerung der Anstiegsgeschwindigkeit des Ausgangsstroms begrenzt. N E E G Das erste Zeichen des Teilenummernsuffixes bestimmt den I D U L B ) N Betriebstemperaturbereich des Geräts; das Suffix „E–“ steht für -40 °C bis +85 °C R B ITE und „L–“ für -40 °C bis +150 °C.
in „Schaltnetzteil TNY Ersatztyp Kompatibel ?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
on-semiconductor-rfp70n06-mosfet.pdf
Figure 3) and Peak Current Capability Curve (Figure 5). ©2005 Fairchild Semiconductor Corporation RFP70N06 Rev. D1 RFP70N06 Typical Performance Curves T C 25 C, Unless Otherwise Specified 1.2 80 E 70 L 1.0 I ) L ( 60 U T M 0.8 N N R 50 I R A 0.6 U 40 I C S I 30 D0.4 R R D E ,D20 W I P0.2 10 0 0 0 25 50
in „DC Wandler wiederbeleben“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TDA2030.pdf
Electricalrcharacteristics Symbol Parameter Test conditions Min. Typ. Max. Unit Vs Sepply voltage ± 6 ± 18 V o l 12 36 b Id Quiescent drain current 40 60 mA O Ib Input bias current 0.2 2 μA V OS Input offset voltage ± 2 ± 20 mV OS Input offset current Vs= ± 18 (Vs = 36) ± 20 ± 200 nA d = 0.5%, f = 40
in „400 Watt-HiFi-Stereo-Power-Verstärker“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Einheiten_deutsch.pdf
Bestrahlungsstärke Strahlstärke W/sr 2 Strahldichte W/(m · sr) 12 Beziehungen und Bemerkungen 1 Pa · s = 1 N · s/m = 1 kg/(s · m) • DIN 1342 1 P = 0,1 Pa · s = 0,1 N · s/m 2 • DIN 1342 1 St = 10 m /s 2 1 J = 1N·m=1W·s=(1/3,6)·10 kW·h=1kg·m/s6 2 2 1 kW · h = 3,6 MJ = 860 kcal 1 eV = 160,218 92 · 10 –21J 1 erg
in „Einheit gigasample??“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ATMega128CAN11_short.pdf
I T T T T ) ) ) ) / / / / C C C C C C C C 0 1 2 D D D D D D D D D D D C F ( ( ( ( ( ( ( ( ( ( ( C N E 0 1 2 3 4 5 6 7 N C 0 1 2 A G A P P P P P P P P G V P P P 6 6 6 6 6 5 5 5 5 5 5 5 5 5 5 4 (1) NC 1 48 PA3 (AD3) (RXD0 / PDI) PE0 2 47 PA4 (AD4) (TXD0 / PDO) PE1 3 INDEX CORNER 46 PA5 (AD5) (XCK0 /
in „ATmega128CAN11“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATMega128CAN11_short.pdf
I T T T T ) ) ) ) / / / / C C C C C C C C 0 1 2 D D D D D D D D D D D C F ( ( ( ( ( ( ( ( ( ( ( C N E 0 1 2 3 4 5 6 7 N C 0 1 2 A G A P P P P P P P P G V P P P 6 6 6 6 6 5 5 5 5 5 5 5 5 5 5 4 (1) NC 1 48 PA3 (AD3) (RXD0 / PDI) PE0 2 47 PA4 (AD4) (TXD0 / PDO) PE1 3 INDEX CORNER 46 PA5 (AD5) (XCK0 /
in „ATmega128CAN11“ · Mikrocontroller und Digitale Elektronik ·
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PDF
A20_Bananapi_Schematic.pdf
E LDO24IN C0805 C0402 C84 IRQ S 2 2 C191 C81 47pF 1 K1 102 49 3 E 2 B D C 4 2 4.7uF/6.3V C0402 C159 C160 3 C0402 R32 THERMAL A K P O P _ N 2 N C O O C0603 GND GND TS-018 S S G N G N V L P D L L 4.7uF/6.3V 10uF-10V 4 47K AVCC R30 150K-1% R31 100K-1% GND C0603 C0805 TS-018 R0402 1 2 3 4
in „DDR3 RAM Datenleitung beliebig anschliessen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Arcam-FMJ-P7.pdf
4K7 MF IC101A TP133 DATA 13 4 RED1 SK109 TX_THERM2 D Q0 5 RED2 1 S0 1 Q1 6 RED3 2 +5VD S1 2 S0 Q2 7 RED4 S1 Q3 S2 3 S2 Q4 9 RED5 IDC2S Q5 10 RED6 TP134 SEL_RED* 14 G Q6 11 RED7 SK110 TX_THERM1 R137 D110 +5VD SK112 15 CLR Q7 12 1 100K MF 1N4148 TP137 uC_+5V +22VD_SW 2 1 2 JP100
in „Bandbreite von analogen Audioschaltungen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Arcam-FMJ-P7.pdf
4K7 MF IC101A TP133 DATA 13 4 RED1 SK109 TX_THERM2 D Q0 5 RED2 1 S0 1 Q1 6 RED3 2 +5VD S1 2 S0 Q2 7 RED4 S1 Q3 S2 3 S2 Q4 9 RED5 IDC2S Q5 10 RED6 TP134 SEL_RED* 14 G Q6 11 RED7 SK110 TX_THERM1 R137 D110 +5VD SK112 15 CLR Q7 12 1 100K MF 1N4148 TP137 uC_+5V +22VD_SW 2 1 2 JP100
in „Bester Audio OPV“ · Analoge Elektronik und Schaltungstechnik ·
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Bild
3D-CAD-Modell einer Leiterplatte mit Bauteilen
N L 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 54 55 56 57 58 59 60 61 62 63 64 65 66 67 68 69
in „Jalousie Steuerung mit Kleinspannung+ESP32“ · Mikrocontroller und Digitale Elektronik · · Layouts
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PDF
Relais-Carlo-Gavazzi-MZP-R2.pdf
Operatingvoltage Rd OperatingvoltageRd value VDC/VACmin.to (1W) VDC/VACmin.to (1W) VDC/VACmin.to (1W) Ω ± % N° Ø mm VDC/VACmax. Ω±10% VDC/VACmax. Ω±10% VDC/VACmax. Ω±10% 40 11 10 736 0.180 2.34 ... 4.05 33 2.76 ... 4.70 47 2.93 ... 5.15 47 41 30 10 1180 0.140 3.92 ... 6.75 82 4.62 ... 7.93 120 4.82 ... 8.44
in „24V Relais ansteuern“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
lm3150.pdf
VOUT /VIN-MAX voltage of 6V. D min= 3.3V/24V = 0.137 4. Determine Inductor Required D max = 3.3V / 6V = 0.55 a. ET = (24-3.3) x (3.3/24) x (1000/500) = 5.7 V µs f = 0.137/ 200 ns = 687 kHz b. From the inductor nomograph a 12A
in „LM3150 zu geringe Ausgangsspannung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
spartan7.pdf
22u 22u C75 C74 C69 C68 GND GND 1 2.5u_5A_ MPLCG0530L2R2 k 3A_BEAD 3A_BEAD 13 13_VIN3 22_FB1 22 7 6 . 7 n 22u 22u 22u 22u 1 5 GND GND GND GND R26 C 1 D R 4 U3 5 5_VINQ 23_COMP1 23 N 10k D C58 68k2 G GND GND GND GND T N 29 9 6 7 U G 22uH 29_EN1 9_BST2 C 4 R1_ 5V 8 V+ OUT 5 -5V_A 2.2u L1 8 L7 10u C137
in „FPGA Board mit FT2232H und Spartan7“ · Projekte & Code ·
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PDF
Gewinde.pdf
N8 - 32 0,164 4,166 3,42 32 0,794 N10 - 24 0190 4,826 3,82 24 1,058 N12 - 24 0,216 5,486 4,47 24 1,058 1/4" - 20 0,250 6,350 5,11 20 1,270 5/16" - 18 0,313 7,938 6,55 18 1,411 3/8" - 16 0,375 9,525 7,95
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PDF
PCA9532.pdf
driving LED with pull-DD.to V PCA9532 All information provided in this document i© NXP Semiconductors N.V. 2016. All rights reserved. Product data sheet Rev. 4.1 — 22 August 2016 6 of 31 NXP Semiconductors PCA9532 2 16-bit I C-bus LED dimmer 6.3.3 PCS0 - Frequency Prescaler 0 PSC0 is used to program the
in „[V] 5St. 16-bit I2C-bus LED dimmer Treiber NXP PCA9532 (6€)“ · Markt ·
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PDF
PCA9532.pdf
driving LED with pull-DD.to V PCA9532 All information provided in this document i© NXP Semiconductors N.V. 2016. All rights reserved. Product data sheet Rev. 4.1 — 22 August 2016 6 of 31 NXP Semiconductors PCA9532 2 16-bit I C-bus LED dimmer 6.3.3 PCS0 - Frequency Prescaler 0 PSC0 is used to program the
in „[V] 10St. SMD 16-bit I2C LED Treiber NXP PCA9532PW (TSSOP24) (12€)“ · Markt ·
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PDF
PCA9532.pdf
driving LED with pull-DD.to V PCA9532 All information provided in this document i© NXP Semiconductors N.V. 2016. All rights reserved. Product data sheet Rev. 4.1 — 22 August 2016 6 of 31 NXP Semiconductors PCA9532 2 16-bit I C-bus LED dimmer 6.3.3 PCS0 - Frequency Prescaler 0 PSC0 is used to program the
in „[V] 5St. 16-bit I2C-bus LED dimmer Treiber NXP PCA9532 (6€)“ · Markt ·
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PDF
PCA9532.pdf
driving LED with pull-DD.to V PCA9532 All information provided in this document i© NXP Semiconductors N.V. 2016. All rights reserved. Product data sheet Rev. 4.1 — 22 August 2016 6 of 31 NXP Semiconductors PCA9532 2 16-bit I C-bus LED dimmer 6.3.3 PCS0 - Frequency Prescaler 0 PSC0 is used to program the
in „[V] 10St. SMD 16-bit LED I2C Treiber NXP PCA9532D (SO24)“ · Markt ·
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PDF
PCA9532.pdf
driving LED with pull-DD.to V PCA9532 All information provided in this document i© NXP Semiconductors N.V. 2016. All rights reserved. Product data sheet Rev. 4.1 — 22 August 2016 6 of 31 NXP Semiconductors PCA9532 2 16-bit I C-bus LED dimmer 6.3.3 PCS0 - Frequency Prescaler 0 PSC0 is used to program the
in „[V] 10St. SMD 16-bit I2C LED Treiber NXP PCA9532PW (TSSOP24)“ · Markt ·
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PDF
PCA9532.pdf
driving LED with pull-DD.to V PCA9532 All information provided in this document i© NXP Semiconductors N.V. 2016. All rights reserved. Product data sheet Rev. 4.1 — 22 August 2016 6 of 31 NXP Semiconductors PCA9532 2 16-bit I C-bus LED dimmer 6.3.3 PCS0 - Frequency Prescaler 0 PSC0 is used to program the
in „[V] 5St. SMD 16-bit LED I2C Treiber NXP PCA9532D (SO24) (8€)“ · Markt ·
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PDF
PCA9532.pdf
driving LED with pull-DD.to V PCA9532 All information provided in this document i© NXP Semiconductors N.V. 2016. All rights reserved. Product data sheet Rev. 4.1 — 22 August 2016 6 of 31 NXP Semiconductors PCA9532 2 16-bit I C-bus LED dimmer 6.3.3 PCS0 - Frequency Prescaler 0 PSC0 is used to program the
in „[V] 10St. SMD 16-bit LED I2C Treiber NXP_PCA9532PW.112 (TSSOP24) (12€)“ · Markt ·
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PDF
PCA9532.pdf
driving LED with pull-DD.to V PCA9532 All information provided in this document i© NXP Semiconductors N.V. 2016. All rights reserved. Product data sheet Rev. 4.1 — 22 August 2016 6 of 31 NXP Semiconductors PCA9532 2 16-bit I C-bus LED dimmer 6.3.3 PCS0 - Frequency Prescaler 0 PSC0 is used to program the
in „[V] 10St. SMD 16-bit LED I2C Treiber NXP_PCA9532PW.112 (TSSOP24) (10€)“ · Markt ·
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PDF
PCA9532.pdf
driving LED with pull-DD.to V PCA9532 All information provided in this document i© NXP Semiconductors N.V. 2016. All rights reserved. Product data sheet Rev. 4.1 — 22 August 2016 6 of 31 NXP Semiconductors PCA9532 2 16-bit I C-bus LED dimmer 6.3.3 PCS0 - Frequency Prescaler 0 PSC0 is used to program the
in „[V] 10St. SMD 16-bit LED I2C Treiber NXP_PCA9532PW.112 (TSSOP24) (12€)“ · Markt ·
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PDF
Sager_D87P_Service_Manual_Part4.pdf
B18 USBP5- USBP5+ [20] R13 VCC3_3 VCC1_5 K19 AA21 VSS VSS K22 HI11 H USBP5N C17 USBP6+ USBP5- [20] V19 VCC3_3 VCC1_5 M15 AA24 VSS VSS K24 HLSTBF K23 USBP6P D17 USBP6- USBP6+ [20] W15 VCC3_3 VCC1_5 N15 VCC1.5S AB5 VSS VSS L10 [6] HLSTBF HLSTBS J24 HI_STBF USBP6N A16 USBP7+ USBP6
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PDF
Taiwan-Semiconductor-SMCJ.pdf
otherwise noted) Fig.5 Maximum Non-repetitive Forward Surge Current (1000 T 8.3ms Single Half Sine Wave N UNIDIRECTIONAL ONLY R R C E G U S R 100 A W O F A E , M I 10 1 10 100 NUMBER OF CYCLES AT 60 Hz 6 Version: Q1812 SMCJ5.0(A) - SMCJ170(A) Taiwan Semiconductor PACKAGE OUTLINE DIMENSIONS DO-214AB (SMC)
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PDF
3260.pdf
voltages of 3.5 to 24 volts. Noise radiation is limited by control of the output current slew rate. Y D L N P U A I U O R C The first character of the part number suffix determines the device S G T N operating temperature range; suffix ‘E–’ is -40°C to +85°C and ‘L–’ is ( N -40°C to +150°C. Three package styles
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