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PHI.pdf
in bulk packaging have a lead-to-lead distance of 2.54 millimetres, whereas the distance for types packaged on reel is 5.08 millimetres. handbook, full pagewidth P T A 1 (p) h h A H 2 H1 W 2 H 0 L W0 W 1 W MBH795 F1 F2 D 0 t1
in „Kurze Frage zwecks Vorwiderstand für Sensor.“ · Mikrocontroller und Digitale Elektronik ·
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A4973-Datasheet.pdf
6 V CC 9 10 15 16 SUPPLY STANDBY MODES MODE 14 VBB PHASE 7 UVLO & TSD G ENABLE 8 L U N BRAKE 1 I PWMLATCH + 11 R – SENSE Q 2 BLANKING S R S GROUND 4 VCC RC 12 + – 5 3 2 13 REF GROUND V TH C T R T 4973DS, Rev. 1 A4973 Full-Bridge PWM Motor Driver Description (continued) When a logic low
in „DC-Motor Driver IC gesucht“ · Mikrocontroller und Digitale Elektronik ·
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arm.pdf
1 2 3 4 5 6 7 8 V1V L1L X1X 30BQ040 100MHz/30R/3A N1N1 PIX10PIV10A PIV10K PILPIL102 PIVIN2 FBPIN106 A DC inputPIX102 BOOSTIN10 A 9..24V P4X103 7 C2 C1C1 PIX104 PION / OFF 10n L2L 3.3V power supply 733-334 4 C0 DR127-470-R 3A max. 8IGND4 1 PIGND8 SW PIN101 PIL2PIL202 VCC LM2676S-ADJ 2 0 0K V2V C1 C2C 32 C3 I2 C4C4 R1R1 R2R2 TGL34-33A 10u 100n 100n 4k7 56 0A C0 31 VKV3V3 I1 0 1 30BQ040 P1 C5C5 C1 C6 VA P2 330u C2 330u 2 R3R3
in „ARM Board Layout“ · Platinen ·
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139cll.pdf
R R IL5 Z U R 100 Hz CASE SIZE 100 Hz 5 min tan 10 kHz ORDERING CODE (V) (μF) L x W x H 105 °C (μA) 100 Hz () MAL2139....... (mm) (mA) 100 14.3 x 6.2 x 6.9 79 4.3 0.24 3.0 63101E3 6.3 220 14.3 x 7.6 x 8.2 120 5.8 0.24 1.4 63221E3 68 14.3 x 6.2 x 6.9 71 4.4 0.20 2.9 64689E3 10 150 14.3 x 7.6 x 8.2
in „Tantal vs Kerko“ · Analoge Elektronik und Schaltungstechnik ·
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PDF-Demo_Board.pdf
CONNECTIONS Device LEDs RS-232 S1 S2 S3 Pot LCD EEPROM Buzzer ICD Temp Y1/Y2 R16 Sensor 18-pin RB3:RB0 N/A MCLR RA4 RB0 RA0 N/A N/A N/A RB6/RB7 N/A Yes 28-pin RB3:RB0 RC6/RC7 MCLR RA4 RB0 RA0 RA3:RA1 RC3/RC4 RC2 RB6/RB7 RC3/RC4 Yes RD3:
in „PIC steuert LED sehr seltsam“ · Mikrocontroller und Digitale Elektronik ·
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Datei
reni_v0.67.c
, iAnswer[i]); else output(DBG9, " %04x", iAnswer[i]); output(DBG2, "\n"); return iAns; } void measure_dynamic(int iFirstvalue) { int i, j, iTime; output(DBG2, "START MEASURE\n"); for(i=0; g_iPkt_count<g_iPkt_max; i++) { // number of packets // wait for the transfer
in „Schreiben eines USB-Treibers mit libusb-win32“ · Softwareentwicklung ·
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Hewlett_Packard_Operating_and_Service_Manuals_for_HP361XA_30W_Bench_Series_DC_Power_Supplies.pdf
rHl'H^:- 4'-14 V()o.!i4 ^-t- # 4 ^5144 4-^-;r 4 e.|#(Ripple) ^ ^s(Noise) : -?-i 4'^K -<j 4 4 - 200 /.N rm.s / 2 mV p p(10 Hz 10 MHz) "14 E36I0A: ¥.'.45 V V.'^=8 V I.N^2 A Ii.^-3 A E.3611A: V".-35 V V"--20 V I"i=0.85 A W^\.b A •y4-n- - 200 iu.\ rms / I mA p-p(10 Hz-10 MHz)"l';V E3612A: V";-.120 V V"-=60
in „Gebrauchtes Labornetzteil HP Agilent“ · Mechanik, Gehäuse, Werkzeug ·
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Datei
IPBP_1.bas
THEN GOTO ERRORRL IF RL > 40 THEN GOTO ERRORRL P = 20 - RL: K = K - P: AA = 4.074959531968# REM DATA 2.3398,1.5384,1.2922,1.1839,1.1266,1.0925,1.0705,1.0556,1.0449,1.0371,1.0311,5.0174 XE = 2.3398: U = AA * 2: GOSUB SUCHEN1A IF K < Y THEN N = 2: GOTO WEITER4: ELSE XE = 1.5384: U = AA * 3: GOSUB SUCHEN1A
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bs1Appnotes.pdf
by 10 into two let w2 = w2*10 ' parts to avoid an overflow. let w2 = w2/w3 ' Calculate percentage. serout 0,N2400,(#w2," percent",10,13) pause 1000 ' Update once a second. goto Duty ' Handle overflows by skipping calculations
in „Smartcard-Kode-Schloss mit PIC16F84“ · Mikrocontroller und Digitale Elektronik ·
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uc3842.pdf
300 150 300 ns OUTPUT SECTION SINK = 20 mA 0.1 0.4 0.1 0.4 Output Low Level SINK = 200 mA 1.5 2.2 1.5 2.2 V Output High Level SOURCE = 20 mA 13 13.5 13 13.5 SOURCE = 200 mA 12 13.5 12 13.5 Rise Time TJ= 25°C, CL= 1 nF (5) 50 150 50 150 (5) ns
in „Reparatur Schaltnetzteil“ · Mikrocontroller und Digitale Elektronik ·
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ZXLD1362.pdf
50 100 150 200 Temperature (C) Lx on-resistance vs die temperature 1.6 1.4 ) s m 1.2 O ( 1 7V c 9V a 0.8 12V s >20V s 0.6 - n O 0.4 0.2 0 -50 0 50 100 150 200 Die Temperature (C) Issue 1 - December 2007 19 www.zetex.com ZXLD1362 Application notes Setting nominal average output current
in „MAX16832 v. ZXLD1362 (LED Treiber)“ · Mikrocontroller und Digitale Elektronik ·
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zxld1366.pdf
11 LEDs A t 13 LEDs e 15 LEDs r u1.040 t p u O 1.020 1.000 0.980 0 10 20 30 40 50 60 Supply Voltage (V) ZXLD1366 Output Current Deviation L=150μH 10% 8% 6% ) ( 4% n t i 2% e D n 0% e u -2% 01 LEDs C 03 LEDs u
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XTR105U-4-20mA-current-transmitter.pdf
CURRENT vs TEMPERATURE UNDER-SCALE CURRENT vs TEMPERATURE 29 2.40 With External Transistor ) 28 ) A A 2.35 ( ( n 27 n e V+ = 36V r 2.30 u u C 26 e l V+ = 7.5V a c S 2.25 r 25 r v V+ = 24V d O U 2.20 24 V+ = 7.5V to 36V 23 2.15 –75 –50 –25 0 25 50 75 100 125 –75
in „[V] Verschiedene SMD-IC's“ · Markt ·
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B400_NTC-02_Serie.pdf
100⎠ – 1 × 100% or Z ≈ X + Y. following interpolation laws When: (extended “Steinhart and Hart”): (A + B ⁄ T + C ⁄ T + D ⁄ T ) TC = temperature coefficient R (T) = R ref× e (1) ∆T = temperature deviation, R 2 R 3 R –1 T (R) = ⎝ 1+ B1ln-- - + C 1n -- -+ D 1ln -- -⎠ (2) then: ∆T = - - Rref R ref R ref
in „Temperatur Messung mit Mega8 und NTC-Widerstand 4,7k“ · Analoge Elektronik und Schaltungstechnik ·
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B400_NTC-02_Serie.pdf
100⎠ – 1 × 100% or Z ≈ X + Y. following interpolation laws When: (extended “Steinhart and Hart”): (A + B ⁄ T + C ⁄ T + D ⁄ T ) TC = temperature coefficient R (T) = R ref× e (1) ∆T = temperature deviation, R 2 R 3 R –1 T (R) = ⎝ 1+ B1ln-- - + C 1n -- -+ D 1ln -- -⎠ (2) then: ∆T = - - Rref R ref R ref
in „NTC Berechnung nach Steinhart and Hart, 2. Gleichung geht nicht!“ · Mikrocontroller und Digitale Elektronik ·
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ICM7226.pdf
FREQUENCY TIME UNIT OSCILLATOR RANGE FREQUENCY PERIOD RATIO INTERVAL COUNTER FREQUENCY 0.01s/1 Cycle D2 D2 D1 D2 D1 D2 0.1s/10 Cycle D3 D3 D2 D3 D1 D3 1s/100 Cycle D4 D4 D3 D4 D1 D4 10s/1K Cycle D5 D5 D4 D5 D1 D5 External N/A N/A N/A N/A N/A N/A 10 ICM7226A, ICM7226B Overflow Indication When timing repetitive
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quarzfilter_rev2a.pdf
2490 '---- Ausgabe der Daempfungswerte --------- 2500 PRINT TAB(5)"A(db) -fr +fr fnr Bbr" 2510 FOR I=1 TO 20 2520 X1=N1(I) :GOSUB 2140 :N1$=X$ 2530 X1=N2(I) :GOSUB 2140 :N2$=X$ 2540 X1=N3(I) :GOSUB 2140 :N3$=X$ 2550 X1=N4(I) :GOSUB 2140 :N4$=X$ 2560 ATT$=STR$(-INT(5*I
in „DDR- Oszilloskop OG2-30/ OG2-31 Restauration“ · Analoge Elektronik und Schaltungstechnik ·
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quarzfilter_rev2a.pdf
2490 '---- Ausgabe der Daempfungswerte --------- 2500 PRINT TAB(5)"A(db) -fr +fr fnr Bbr" 2510 FOR I=1 TO 20 2520 X1=N1(I) :GOSUB 2140 :N1$=X$ 2530 X1=N2(I) :GOSUB 2140 :N2$=X$ 2540 X1=N3(I) :GOSUB 2140 :N3$=X$ 2550 X1=N4(I) :GOSUB 2140 :N4$=X$ 2560 ATT$=STR$(-INT(5*I
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Quarzfilter_Rev2b.pdf
2490 '---- Ausgabe der Daempfungswerte --------- 2500 PRINT TAB(5)"A(db) -fr +fr fnr Bbr" 2510 FOR I=1 TO 20 2520 X1=N1(I) :GOSUB 2140 :N1$=X$ 2530 X1=N2(I) :GOSUB 2140 :N2$=X$ 2540 X1=N3(I) :GOSUB 2140 :N3$=X$ 2550 X1=N4(I) :GOSUB 2140 :N4$=X$ 2560 ATT$=STR$(-INT(5*I
in „Schmalbandiges LC-Filter, praktischer Aufbau“ · HF, Funk und Felder ·
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PDF
Quarzfilter_Rev2b.pdf
2490 '---- Ausgabe der Daempfungswerte --------- 2500 PRINT TAB(5)"A(db) -fr +fr fnr Bbr" 2510 FOR I=1 TO 20 2520 X1=N1(I) :GOSUB 2140 :N1$=X$ 2530 X1=N2(I) :GOSUB 2140 :N2$=X$ 2540 X1=N3(I) :GOSUB 2140 :N3$=X$ 2550 X1=N4(I) :GOSUB 2140 :N4$=X$ 2560 ATT$=STR$(-INT(5*I
in „Messen von Quarz-Parametern - Probleme“ · HF, Funk und Felder ·
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AN_106f.pdf
1µF 100Ω – 750Ω* IN2 OUT RTN 470Ω EN GND 50Ω 10k 22Ω 5.62Ω* 1k A = 10 10k 90.9Ω* TRIM A = 1 200k A = 100 100Ω 5V –5V TRIM TRIM 5V 10k 0.1µF S1 S2 GAIN FS OUTPUT TRIM NOTES* Q1 = 2N6485. GROUND CASE LO LO 1 1V TRIM A = 1
in „Netzspannung messen.“ · Mikrocontroller und Digitale Elektronik ·
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sl11hspec.pdf
The diagrams below indicate pin assignments for the SL11H 28-pin PLCC Package. 3.1 SL11H Pin Layout nRD NC VDD1 NC A0 M/S D7 26 4 nWR 5 3 2 1 28 27 25 D6 nCS 6 24 D5 ALE 7 23 D4 VDD2 8 SL11H 22 GND DATA+ 9 28 PLCC 21 D3 DATA- 10 20 D2 19 GND 11 13 14 15 16 17 D1 12 18 VDD1 X2 INTRQ D0 CLK/X1 nRST GND
in „[V] SL11H, USS720E ua.“ · Markt ·
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Transistor_Database.pdf
2N109 GE-P 35V 0.15A 0.165W 2N1304 GE-N 25V 0.3A 0.15W 10MHz 2N1305 GE-P 30V 0.3A 0.15W 5MHz 2N1307 GE-P 30V 0.3A 0.15W B>60 2N1613 SI-N 75V 1A 0.8W 60MHz 2N1711 SI-N 75V 1A 0.8W 70MHz 2N1893 SI-N 120V 0.5A 0.8W 2N2102 SI-N 120V 1A 1W <120MHz 2N2148 GE-P 60V 5A 12.5W 2N2165 SI-P 30V 50mA 0.15W 18MHz 2N2166 SI-P 15V 50mA 0.15W 10MHz 2N2219A SI-N 40V 0.8A 0.8W 250MHz 2N2222A SI-N 40V 0.8A 0.5W 300MHz 2N2223
in „Bauteilebeschaffung !!“ · Mikrocontroller und Digitale Elektronik ·
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Transistor_Database.pdf
2N109 GE-P 35V 0.15A 0.165W 2N1304 GE-N 25V 0.3A 0.15W 10MHz 2N1305 GE-P 30V 0.3A 0.15W 5MHz 2N1307 GE-P 30V 0.3A 0.15W B>60 2N1613 SI-N 75V 1A 0.8W 60MHz 2N1711 SI-N 75V 1A 0.8W 70MHz 2N1893 SI-N 120V 0.5A 0.8W 2N2102 SI-N 120V 1A 1W <120MHz 2N2148 GE-P 60V 5A 12.5W 2N2165 SI-P 30V 50mA 0.15W 18MHz 2N2166 SI-P 15V 50mA 0.15W 10MHz 2N2219A SI-N 40V 0.8A 0.8W 250MHz 2N2222A SI-N 40V 0.8A 0.5W 300MHz 2N2223
in „Transistor-Datenbank“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
avr200.asm
;**** A P P L I C A T I O N N O T E A V R 2 0 0 ************************ ;* ;* Title: Multiply and Divide Routines ;* Version: 1.1 ;* Last updated: 97.07.04 ;* Target: AT90Sxxxx (All AVR Devices) ;* ;* Support
in „Suche Routine zum Dividieren zweier 16 Bit Zahlen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Avr200.asm
;**** A P P L I C A T I O N N O T E A V R 2 0 0 ************************ ;* ;* Title: Multiply and Divide Routines ;* Version: 1.1 ;* Last updated: 97.07.04 ;* Target: AT90Sxxxx (All AVR Devices) ;* ;* Support
in „16 Bit Zahl am LCD in decimal Form ausgeben“ · Mikrocontroller und Digitale Elektronik ·
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Datei
avr200.asm
;**** A P P L I C A T I O N N O T E A V R 2 0 0 ************************ ;* ;* Title: Multiply and Divide Routines ;* Version: 1.1 ;* Last updated: 97.07.04 ;* Target: AT90Sxxxx (All AVR Devices) ;* ;* Support
in „Eine Frage bzg. Macro in AVR-Assembler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
E416-E1-02_ZX1_Series_Datasheet.pdf
) Appearance Connection method Cable length Sensing distance Model NPN output PNP output Pre-wired 2 m ZX1-LD50A61 2M ZX1-LD50A81 2M 5 m 50 ± 10 mm ZX1-LD50A61 5M ZX1-LD50A81 5M 40 60 Pre-wired connector0.5 m ZX1-LD50A66 0.5M ZX1-LD50A86 0.5M 2 m ZX1-LD100A61 2M ZX1-LD100A81 2M Pre-wired 100 ± 35 mm 5 m ZX1-LD100A61 5M ZX1-LD100A81 5M 65 135 Pre-wired connector0.5 m ZX1-LD100A66 0.5M ZX1-LD100A86 0.5M 2 m ZX1-LD300A61 2M ZX1-LD300A81 2M Pre-wired 300 ± 150 mm 5 m 150 450 ZX1-LD300A61 5M ZX1-LD300A81 5M Pre-wired
in „Microcontroller oder AD-Wandler für ZX1 gesucht“ · Mikrocontroller und Digitale Elektronik ·
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SA57251.PDF
– 17.8 29.7 A -28 – 20.0 33.3 A -30 – 21.4 35.7 A -33 – 23.7 39.5 A -36 – 28.8 48.0 A -50 – 54.0 89.9 A SS2 consumption current 2 VOUT = output voltage + 0.5 V -20 – 3.8 7.6 A (ON/OFF is OFF) -25 – 3.9 7.7 A -28 – 3.9 7.8 A -30 – 3.9 7.8 A -33 – 4.0 7.9 A -36 – 4.0 7.9 A -50 – 4.2 8.3 A DRIVEH DRIVE pin output current VDRIVE= VOUT – 0.4 V -20 – –1.9 –2.9 mA (HIGH) -25 – –2.7 –4.0 mA -28 – –2.7 –4.0 mA -30 – –3.5 –5.3 mA
in „Reichelt: Was ich gerne im Programm hätte“ · Mikrocontroller und Digitale Elektronik ·
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Datenblatt.pdf
. Other special selections are available on request. 1.2 Features n High accuracy and reliability n Long-term stability n Positive temperature coefficient; n Virtually linear characteristics fail-safe behavior 1.3 Quick reference data Table 1. Quick reference
in „KTY82/120,215“ · Analoge Elektronik und Schaltungstechnik ·
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an-937_gateDrive.pdf
8 Q3 4 3 10 IN+ A VCC 3.3k OUT 7 R5 EMITTER R4 1K D1 EN 6 C1 1K 3.9V C3 0.1 5 6 10 IN- 3 C VEE 5 HCPL2200 2N2222 3.9V UNDERVOLTAGE OUTPUT SINGLE TO SPLIT LOCK-OUT BUFFER POWER SUPPLY Figure 15a: Optoisolated driver with
in „Gatekapazität (FET)“ · Analoge Elektronik und Schaltungstechnik ·
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asus-p701-unlocked.pdf
K WV T K K A A B C A A F E G H K J K WV U T R P N M L K WV U T R P N M K J Y WU R P N M L J N M N M N M A N M N M N M N M B V N M G 1 NC37 1 NC38 1 NC39 1 NC40 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6 7 8 9 0 1 2 3 4 5 6
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an44fa.pdf
E C CHARACTERIST ICS V Pin Characteristics V Pin Characteristics Feedback Pin Characteristics C 2.0 C 500 200 400 150 1.5 300 100 VFB ADJUSTED FOR 1.0 V ≥ 2.5V ) IC= 0 AT C = 2V ) FB 200 START OF A 50 A0.5 A FREQUENCY SHIFTING ( ( ( 100 N 0 N 0 N 0 R R R R U U–100 C–50 SLOPE ≈400k C0.5 C –200 –100
in „Festspannungsregler, Alternativen ?“ · Analoge Elektronik und Schaltungstechnik ·
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LQ092B5DW02.pdf
the display function. 【Note】 X,Y,Z directions are shown as follows: Z X Y LCY10021-19 D S 3 . 0 2 n 2 l H D w V H ( H T 0 c V V T 0 0 h H d w V h T 0 1 c T ) D T n S 、 6 . D 1 1 0 m H u H ( H H r 2 s V V D f D 0 T 0 0 ・ e c v 1 2 l D a D H r S s w S s D T 8 H f l . h 0 V 1 a 0 T D p 1 0 n S w i p .
in „Anschluss TFT-LCD-Modul SHARP LQ092B5DW02 vs. LQ092B5DW01“ · Mikrocontroller und Digitale Elektronik ·
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ad630_Datenblatt.pdf
±1.5 ±1.5 ±1.5 mV TMINtoTMAX ±2.0 ±2.0 ±2.5 mV Input Bias Current 100 300 100 300 100 300 nA ResponseTime(−5mVto+5mVStep) 200 200 200 ns Channel Status ISINKtVOL −V S 0.4V 2 1.6 1.6 1.6 mA Pull-UpVoltage (−VS+ 33) (−VS+ 33) (−VS+ 33
in „AD630 Lock In Verstärker board, DC Offset am Ausgang“ · Analoge Elektronik und Schaltungstechnik ·
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DC-DC.pdf
OPERATION A transformer is a device that has two or more magnetically-coupled windings. The basic operation is shown in Figure 26. IA I IA I B B + + + + V A N1 N2 V B V A N1 N2 V B - - - - N2 N1 N2 N1 V B = V A
in „Step UpDown“ · Mikrocontroller und Digitale Elektronik ·
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RX-5052S_sch.pdf
U 1 -5 R 0 -J 8 Q M F 5 1 W 2 -5 R 0 -J 8 Q M F 5 1 W 2 -5 R 0 -J 8 B ; U .K . (5 A -1 2 5 V ) (5 A -2 5 0 V ) (5 A -2 5 0 V ) 2 A U D IO A M P V S 2 0 1 N O N E N O N E U S E E ; C O N T IN E N T A L E U R O P E 3 V O L U M E /
in „Defekte VFD-Anzeige bei JVC Verstärker RX-5052“ · Mikrocontroller und Digitale Elektronik ·
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lt32a1.pdf
L R L R L R L +9V/+12V FB611 AVDD 10 AIN5_L AIN5_R GPIO_1 N N N N N N N N N N N N N N 10 AIN5_R A A A A A A A A A A A A A A R675 C564 1 2 AVDD 13 SP_AIN_R SP_AIN_R 10K 1/10W 2N2 50V 3 4 5 6 7 8 9 0 1 2 3 4 5 6 120R/500mA 13 SP_AIN_L SP_AIN_L 4 4 4 4 4 4 4 5 5
in „Philips LCD TV kein Bild aber Ton [46PFL7655K/02]“ · Haus & Smart Home ·
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AD8551_8552_8554.pdf
50 pA AD8551/AD8554 −40°C ≤T A +125°C 1.0 1.5 nA AD8552 −40°C ≤T A +85°C 160 300 pA AD8552 −40°C ≤T A +125°C 2.5 4 nA Input Offset Current IOS 20 70 pA AD8551/AD8554 −40°C ≤T A +125°C 150 200 pA AD8552 −40
in „Chopper Verstärker“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SK-FM3-176PMC-ETHERNET_v11_schematic_v15.pdf
PIRN306 PISEG204 a A PISEG208 2k7 2k7 i Pin686 P73 JP32 RN4RN 2 c f b PIR120 PIR130 X4X4 d Pin696 P74 PIJP330P1IJPIRN401 PIRN402 PISEG201 Pin83n83SCK1_2 (SCL1) PIX401 a Pin707 P75 JP34 1k0 10 e e g c Pin82n82SOT1_2 (SDA1
in „Problem bei LAN8710A-Inbetriebnahme“ · Mikrocontroller und Digitale Elektronik ·
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TD028STEB1.pdf
- 0.2VDD1 B[5:0], CLK Low VIL DE VDD1, VDD2 Supply Current VDD1 -- 0.7 1.7 mA Note 1 AVDD Supply Current AVDD -- 1.85 4.0 mA Note 2 VGH Supply Current IVDD -- 0.07 0.3 mA VVEE Supply Current IVEE -- 0.05 0.5
in „Frage: TFT LCD Display TD028STEB1 von Toppoly per AVR ansteuern?“ · Mikrocontroller und Digitale Elektronik ·
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150rmi.pdf
VALUE Voltage Surge voltage U s 1.15 x U R Reverse voltage Urev≤ 1 V Current Leakage current After 2 min at R IL2≤ 0.01 CRx U R 3 μA Inductance Case Ø D ≤ 10 mm Typ. 16 nH Equivalent series inductance (ESL) Case Ø D ≥ 12.5 mm Typ. 18 nH Resistance Equivalent series resistance (ESR) Calculated from tan
in „Ersatz für Kondensator im Schaltnetzteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Speedballmanual_02-03-14.pdf
sink mounting kit ( ) 8—HLMP-6000 red LED ( ) 2—TIP-50 transistor ( ) 2—MJE350 transistor ( ) 2—2N2222A transistor ( ) 2—2N2907A transistor ( ) 4- 22.1k 3/4W metal film resistor (red, red, brown, red, brown) ( ) 2—31.6 ohm 1/8W metal film resistor
in „150V DC für Röhrenverstärker erzeugen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AD9235.pdf
N H 1 E O C C 0 H R T S F A 2 Ω F R 0 1 X 3 . C N L C 0 E G V µ 8 0 3 6 3 . 1 4 C 0 7 8 1 1 F N R 6 µ G P C 0 6 8 F C 1 2 3 4 3 . V C 0 7 1 µ 3 . C 0 1 1 2 B2A3 3 4 4 F N 1 2 4 5 9 0 2 3 1 S 1 1 1 0 0
in „Einstellen eines ADCs“ · Mikrocontroller und Digitale Elektronik ·
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Bi8921.pdf
I o l r L e C o u T B m i p L r C F e F ) T m . A F 9 G 1 X E r I u ( L i t F P 6 s M 0 1 0 . . 2 1 e ” b L 7 m C C R . t N N V 2 p Y Y 1 S S S V H - e e . n u g u 1 3 m ] l s t C ( 2 n T 0 u r n O Y N Y N 9 s e 2 p I S o V V H L i r a 0 E o n F B V
in „pollin kamera au-85“ · Mikrocontroller und Digitale Elektronik ·
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Bestandsliste.pdf
Topswitch 45-75W 1Stk 1,89 € 1,89 € 1994 TOTX178 Transistor Sender LWL Toslink 1Stk 1,79 € 1,79 € 1995 2SC3788 Transistor Si-N Vid-E hi-def 200V 0.1A 3Stk 0,83 € 2,50 € 1996 2N2222 Transistor SI-NPN 30V 0.8A 31 Stk 0,37 € 11,32 € 1997 2N2222A Transistor SI-NPN 30V 0.8A 59 Stk 0,19 € 11,21 € 1998 BFY39 Transistor
in „Auflösung Elektronik Shop“ · Markt ·
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cmx602b_3_.pdf
signal similar to that used by BT but without a line reversal (section 6.1.2a) or by a Ringing Pulse Alerting Signal (section 6.1.2b). The U.K. CCA (Cable Communications Association) specification TW/P&E/312 precedes the FSK signals by a 200 to 450ms
in „EM92547 Caller ID FSK Decoder, Rufnummernanzeige“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Datenblatt__CMX602B_ds-1627030.pdf
signal similar to that used by BT but without a line reversal (section 6.1.2a) or by a Ringing Pulse Alerting Signal (section 6.1.2b). The U.K. CCA (Cable Communications Association) specification TW/P&E/312 precedes the FSK signals by a 200 to 450ms
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HBD855-D_Thyristor_Theory.pdf
56 V 2 W 2 W μF 2 W 3 e MC1458 2N3904 CURRENT 1W 5 W m SET GATE CURRENT − V o 1N 0.001 1N 0.002 1N R5 SW S2 2 5932A μF 5932A μF 5932A c + 10 V + 10 V − V1 20 V o 1 5 82 90 mA MR856 1.5 W m 4N35 1 k 2N 120 70
in „Ansteuerschaltung Thyristor und Triac“ · Analoge Elektronik und Schaltungstechnik ·
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3703fc.pdf
Pull-Down R vs Driver Peak Source Current vs DS(ON) Temperature Temperature Supply Voltage 3.0 3.0 1.6 2.8 VCC= 10V VCC = 10V 1.4 2.5 ) 2.6 A ( 1.2 T N 2.4 N R ) 1.0 R 2.0 U 2.2 ( U C 2.0 N C C S0.8 C 1.5 U 1.8 D U O R 0.6 S K 1.6 K 1.0 E 0.4 E P 1.4 P 0.2 0.5 1.2 1.0 0 0 –50 –25 0 25 50 75 100 125 150
in „Längs- oder Querregler 40V 250W als Überspannungsschutz für Tiefstellsetzer“ · Analoge Elektronik und Schaltungstechnik ·