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ET0700G0DM6-EMERGINGDISPLAY.pdf
ELECTRPARAMETERACTERISSYMBOL CONDITION MIN. TYP. MAX. UNIT REMARK POWER SUPPLY VCC-VSS=3.3V DRIVERT FOR LED ICC LED B/L=O↓ ⎯ (160) (200) mA PARAMETER SYMBOL CONDITION MIN. TYP. MAX. UNIT REMARK . CURRENT FOR LED ICC VLED B/L=ONV ⎯ (600) (780) mA ly DRIVER n 4 5.1 AC ELECTRICAL CHARACTERISTICS O n L → i o A a t . MAR.09
in „LCD Display / Controller eines Schweißgerätes prüfen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Cinni-Regler_V1-1a-Partlist.pdf
B80C800DIP 0,190 € 0,190 € C1 1 X2 Kond. 8x20x28, RM 22,5mm X2 150n/275V~ C22.5B8 1 Reichelt MP3-X2 150N 0,780 € 0,780 € C2 0 Alu-Elko rad. D8x17, RM 3,5mm 220µ/35V E3,5-8 1 Reichelt RAD FC 220/35 0,260 € 0,000 € C3 0 Alu-Elko rad. D8x17, RM 3,5mm 220µ/35V E3,5-8 1 Reichelt RAD FC 220/35 0,260 € 0,000 € C4 1
in „Vorstellung Drehzahlregler mit Triac in Steckergehäuse“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Vergleichsliste.pdf
UPC1355C TDA1352 ECG750 MC1355P ECG778A UA1458P MC1458P LM1458N CA1458E UPC1458C ECG779A MC1344P ECG780 LM3064H CA3064T ECG781 CA3076T SN76676L ECG783 LM3064N CA3064E ULN2264A M5135P ECG784 CA3020 ECG785 CA3035 ECG786 CA3043 ECG787 CA3088E DM88 ECG788 CA3089E HA1137 TDA1200 KB4402 AN377 LM3089N LM3189N
in „ECG45 was ist das?“ · Analoge Elektronik und Schaltungstechnik ·
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Leiterplatte eines elektronischen Geräts mit Display und Kühlkörper
BETTER R1201 R9 D10 R6 R5 R4 R3 R2 R1 K3 K8 K4 K5 K6 K7 L707 L708 L710 L711 L712 L713 L714 L715 L716 L717 L718 L719 L720 L721 L722 L723 L724 L725 L726 L727 L728 L729 L730 L731 L732 L733 L734 L735 L736 L737 L738 L739 L740 L741 L742 L743 L744 L745 L746 L747 L748 L749 L750 L751 L752 L753 L754 L755 L756 L757 L758 L759 L760 L761 L762 L763 L764 L765 L766 L767 L768 L769 L770 L771 L772 L773 L774 L775 L776 L777 L778 L779 L780 L781 L782 L783 L784 L785 L786 L787 L788 L789
in „Induktions Platte tot PCB Analyse“ · Analoge Elektronik und Schaltungstechnik · · Platinenfotos
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Bild
Leiterplatte eines elektronischen Geräts mit Display und Kühlkörper
BETTER 1234 PASS R1201 R5 R6 R7 R8 R9 R10 R11 K2 K3 K4 K8 L705 L706 L707 L708 L709 L710 L711 L712 L713 L714 L715 L716 L717 L718 L719 L720 L721 L722 L723 L724 L725 L726 L727 L728 L729 L730 L731 L732 L733 L734 L735 L736 L737 L738 L739 L740 L741 L742 L743 L744 L745 L746 L747 L748 L749 L750 L751 L752 L753 L754 L755 L756 L757 L758 L759 L760 L761 L762 L763 L764 L765 L766 L767 L768 L769 L770 L771 L772 L773 L774 L775 L776 L777 L778 L779 L780 L781 L782 L783 L784 L785 L786
in „Induktions Platte tot PCB Analyse“ · Analoge Elektronik und Schaltungstechnik · · Platinenfotos
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PDF
CONOX.pdf
Diagram 2: Type Series 8M - ~/ 'II t v / / /j / / 'tI / ) V 1 I I . // ~ j / / 1/ / V / 1/ / .I / / J ./ l/ c V 1~ > ~ 1/ , ) , I II . / I f / / ) ~ / / / I V / ~ 7 / / / / co 5kV u t en 2kV ~ ::r 0> 1kV ( )3 CD en -· c.v 500V - .L I\:) s: 50V 1mA 7.6 Diagram 3: Type Series 12M / / /) If I .I~ II IV ~ II ) V IJ , , / / l/ ) 1 / / / II 1/ / I / )/ / Ie l/ b V~ ~1I f / I) ) / 1 / / 1/ 'oJ [ / / v 7 1/ / II / / / Ij I j I\J 0 5kV U f ~ 'J 2kV ~ (') :s- O> m 1kV 340 VB (') 300 VB ::!. 250 VB (f) 240 VB (') 220 VB ~ I 500V
in „Bauteilidentifikation (siehe Bild)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Elma.pdf
200 4.8 TP690 160 0 5.5 160 TP690H TP695H 760 600 5.8 / 7.4 T700 160 0 6.7 160 T700H 560 400 6.9 T780 250 0 8.6 250 T780H 650 400 8.9 T820H 1050 250 800 10.2 T890 300 0 12.2 300 T890H 1100 800 12.7 T1040H 2000 400 1600 24.6 T1060H 2800 800 2000 38.5 LC20H 95 35 60 2.3 LC 30 35 0 2.6 35 LC 30H 95 60
in „Elma Ultraschallgenarator macht Probleme“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Elma.pdf
200 4.8 TP690 160 0 5.5 160 TP690H TP695H 760 600 5.8 / 7.4 T700 160 0 6.7 160 T700H 560 400 6.9 T780 250 0 8.6 250 T780H 650 400 8.9 T820H 1050 250 800 10.2 T890 300 0 12.2 300 T890H 1100 800 12.7 T1040H 2000 400 1600 24.6 T1060H 2800 800 2000 38.5 LC20H 95 35 60 2.3 LC 30 35 0 2.6 35 LC 30H 95 60
in „VEVOR JPS-20A Ultrasonic cleaner repariert“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
CY7C64613.pdf
3.1 Pin Diagrams (continued) 4 3 1 0 L L D Y Y G T T L L R D R A / / T T / / / L L F # # / C/ 1 0 0 0 O S S N D R 1 0 T T x x A B A A R W T T I NI T R / / / / N 7 6 5 4 N 3 2 1 0 Y Y1 Y L C G C C C C C C C G C C C C C C D D D T V N N N P
in „Verkaufe CY7C64613-52NC“ · Markt ·
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PDF
CY7C64613_1.pdf
3.1 Pin Diagrams (continued) 4 3 1 0 L L D Y Y G T T L L R D R A / / T T / / / L L F # # / C/ 1 0 0 0 O S S N D R 1 0 T T x x A B A A R W T T I NI T R / / / / N 7 6 5 4 N 3 2 1 0 Y Y1 Y L C G C C C C C C C G C C C C C C D D D T V N N N P
in „Logikanalzyer mit FT232BL“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lm393.pdf
VDC VIN Input voltage -0.3 to +36 VDC PD Maximum power dissipation, TA=25⋅C (still-air) F package 780 mW N package 1160 mW D package 780 mW 2 Output short-circuit to ground Continuous I Input current (V <-0.3V)3 50 mA IN IN DC TA Operating temperature range LM193/193A -55 to +125 ⋅C LM293/293A -25 to
in „200Khz Signal verstärken“ · Analoge Elektronik und Schaltungstechnik ·
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Jahresrundspruchplan_2018.pdf
R U N D S P R U C H P L A N 2 0 1 8 Tag MEZ/ Station Frequenz Mode Relais Art des Tag MEZ/ Station Frequenz Mode Relais Art des MESZ (MHz) Rundspruchs MESZ (MHz) Rundspruchs Deutschland- DARC-Amateurfunkzentrum So 10.00 DL6HOM
in „Junge Menschen für den Amateurfunk begeistern“ · HF, Funk und Felder ·
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PDF
mkp_b32714h_718h.pdf
dimensions P1 Ordering code I I 2) ESR ESL 3) tan tan Pcs./ R RMS,max RMS,max typ typ w x h x l (composition see 70 °C 85 °C 85 °C max max MOQ below) 10 kHz 10 kHz 10 kHz 1 kHz 10 kHz µF mm mm A A m nH 10-3 10 -3 V = 500 V DC, V = 400 V DC R,85 °C op,100 °C 3.3 9.0x18.0x31.5 – B32714H5335+000
in „[V] MKP-Kondensatoren 4 µF und 100 nF mit 1 kV Spannungsfestigkeit“ · Markt ·
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PDF
180520-da-01-en-PLCC_4LED_ASMT_QTB0_0AA02_RGB.pdf
AlInGaPRed - 40 E InGaNBlue N 435 T 00.6 mE 430 AlInGaP E TC 35 TV ED 25 AlInGaP E0.0.4 RA 320 I CR 25 L 0.4 AF 15 InGaN R 0.2 W 210 F 15 00.0 5 InGaN 100 380 430 480 530 580 630 680 730 780 5 0 1 2 3 4 0.0 WAVELENGTH-nm 0 FORWARDVOLTAGE-V 380 430 480 530 580 630 680 730 780 0 1 2 3 4 WAVELENGTH-nm FORWARDVOLTAGE-V
in „PWM RGB-Led Beleuchtung“ · Mikrocontroller und Digitale Elektronik ·
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cdj350.pdf
H D C ( CN952 T D 3 1 3 1 T D D D K N 1445-A -T B B G N D S3 0 3 0 G N D S D E - M F R 1 1 F R LD 780 2 9 2 9 LD 780 V Y F D 2 2 F D G N D S2 8 2 8 G N D S G N S I S T R 3 3 T R V R 780P D 2 7 2 7 P D T T D 4 4 T D A 2 6 2 6 A _A UART A 5 5 N C 2 5 2 5 A _B (LAND) O N C B L M G N D 6 6 G N D S C 2 4
in „Diode (1SS352) in CD-Player ersetzen“ · Mikrocontroller und Digitale Elektronik ·
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Datei
main.c
sin_tab[250]={512,524,537,550,563,576,588,601,614,626,639,651,664,676,688,700,712,724,735,747,758,769,780,791,802,812,823,833,843,852,862,871,880,889,898,906,914,922,929,937,944,951,957,963,969,975,980,985,990,994,998,1002,1006,1009,1012,1014,1017,1019,1020,1022,1022,1023,1023,1023,1023,1022,1022,1020,1019,1017,1014,1012,1009,1006,1002,998,994,990,985,980,975,969,963,957,951,944,937,929,922,914,906,898,889,880,871,862,852,843,833,823,812,802,791,780,769,758,747,735,724,712,700,688,676,664,651,639,626,614,601,588,576,563,550,537,524,512,499,486,473,460,447,435,422,409,397,384,372,359,347,335,323,311,299,288,276,265,254,243,232,221,211,200,190,180,171,161,152,143,134,125,117,109,101,94,86,79,72,66,60,54,48,43,38,33,29,25,21,17,14,11,9,6,4,3,1,1,0,0,0,0,1,1,3,4,6,9,11,14,17,21,25,29,33,38,43,48,54,60,66,72,79,86,94,101,109,117,125,134,143,152,161,171,180,190,200,211,221,232,243,254,265,276,288,299,311,323,335,347,359,372,384,397,409,422,435,447,460,473,486,499
in „PWM zu Sinus“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Remote_IAR.c
software overhead // after the second half of the bit is greater, so the values are lower OutputLow(780); // If "1" send output low first, // ~780us OutputHigh(32); // Then output high, count 32 // interrupts } else { OutputHigh(35); // If "0" send output high first, // count 35 interrupts OutputLow(765); // Then output low, ~780us } Command = Command << 1; // Take next bit } TACTL = TACLR; // Stop and clear TA } unsigned int TestRetransmit(void) { if (P1IFG == 0) { // Has P1 interrupt occured? return RETRANSMIT; // If not,
in „MSP430 im LPM“ · Mikrocontroller und Digitale Elektronik ·
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Marantz_2245_Schematic_HiRes_ALL.pdf
R769 J753 SJ2513 AUX C759 10k 5k1 1k5 680 R773 R780 R782 L R023 10 R755 56 H768 6k8 1k2 8k2 16 22k H756 H758 R776 R786 J015 H001 R R012 1k R751 R762 27k 100 TINE J751 470k C754 R758 2k2 3.94 J755 37 L S002-3F S002-3R S002-1R C751 C761 500p 220k 100n
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PDF
TC1602E-01T.pdf
variable). VR Asignal for selecting registers: 1: Data Register (for read and write) 20~50K V0 4 RS H/L 0: Instruction Register (for write), Busy flag-Address Counter (for read). R/W = “H”: Read mode. 5 R/W H/L R/W = “L”: Write mode. VSS VSS 6 E H/L An enable signal for writing or reading data. 7~14 DB0~DB7 H/L 8-bit bi-directional data bus. Note:Adjust V0 to VSS as an initial setting. When the module is 15 LED+ +4.2V Power supply for Backlight. operational, readjust V0 for optimal display appearance. 16 LED
in „At xmeg 128 (3,3V) mit LCD Display (5V) verbinden (in C)“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Simulation eines LC-Filters mit S-Parametern
options measplxfmt=cartesian .step param kf list 1.5 .9 .param kf .step param Z0 list 2.5 50 und 780 Ohm .param Z0 50 .param Ri 50 .param Ri Z0 .param ind1 10u .param ind2 200u .param M12 ksqrt(ind1*ind2) .param S2 = ind2-M12 .meas M12 param M12 .meas s1 param s1 .meas s2 param s2 LL Ri in1 L1 L1 L2
in „Bitte um eine kleine Denkhilfe“ · Analoge Elektronik und Schaltungstechnik · · Screenshots
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PDF
TC2004A-03.pdf
Adjusting voltage for LCD driving (variable). VR A signal for selecting registers: 2~ 50K V0 4 RS H/L 1: Data Register (for read and write) 0: Instruction Register (for write), Busy flag-Address Counter (for read). 5 R/W H/L R/W = “H”: Read mode. R/W = “L”: Write mode. VSS VSS An enable signal for writing or reading data. 6 E H/L 7~14 DB0~DB7 H/L 8-bit bi-directional data bus. Note:Adjust V0 to VSS as an initial setting. When the module is operational, readjust V0 for optimal display appearance. 15 LED+ +5.0V Power supply for
in „HD47780 Character LCD Module Display 20X4 Zeichen Blau“ · Markt ·
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PDF
24fc256.pdf
Packaging Specification located at http://www.microchip.com/packaging 4X ș1 R1 H R c SEATING PLANE C L ș (L1) 4X ș 1 DETAIL B Units MILLIMETERS Dimension Limits MIN NOM MAX Number of Terminals N 8 e Pitch 0.65 BSC Overall Height A – – 1.10 Standoff A1 0.00 – 0.15 Molded Package Thickness A2 0.75 0.85
in „Wodtke HP-S5 HP Er3 EEPROM Schreib-/Lesefehler“ · Haus & Smart Home ·
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PDF
GLENS08620-1.pdf
Ø A Ø C D Thread Size B Thread UNEF-2A In. mm. In. mm. In. mm. 5 .540 13.72 .640 16.26 .3125-.05P-1L-2B .245 6.22 .250-32 6 .600 15.24 .700 17.78 .375-.05P-1L-2B .290 7.37 .3125-32 7 .680 17.27 .780 19.81 .4375-.05P-1L-2B .390 9.91 .4375-28 8 .750 19.05 .850 21.59 .5000-.05P-.1L-2B .445 11.30 .5000-28 9 .810 20.57 .910 23.11 .5625-.05P-.1L-2B .500 12.70 .5625-24 10 .880 22.35 .980 24.89 .6250-.05P-1L-2B .560 14.22 .6250-24 13 1.050 26.67 1.150 29.21 .8125-.1P-.2L-2B .650 16.51 .6875-24 16 1.240 31.50 1.340 34.04 1.000-.1P-.2L-2B .805 20.45
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PDF
MCP1700.pdf
V = 1.8V 45 R TJ= +125°C IR = 0.1 mA A 40 1.795 OUT ( TJ= +25°C V t 35 ( e 30 g 1.790 r T J - 40°C l T J - 40°C TJ= +125°C C 25 o 1.785 d t u 20 p r 15 u 1.780 G O 10 1.775 T J +25°C 5 0 1.770 0 25 50 75 100 125 150 175 200 225 250 2.0 2.5 3.0 3.5 4.0 4.5 5.0 5.5 6.0 Load Current (mA) Input Voltage
in „ESP-01 mit LiPo betreiben“ · Mikrocontroller und Digitale Elektronik ·
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Datei
par.txt
; L2d;2;2;0;50;1;\'b0C;2;0;0;0;Pumpen Heizkreispumpe 6 Freigabedifferenz; L3;2;50;1;100;1;\'b0C;50;0;0;0;Pumpen Boiler 1-6 Freigabetemperatur; L4;2;5;0;300;1;Min;5;0;0;0;Pumpen Nachlaufzeit Zirkulationspumpe; L5;2;50;1;100;1;\'b0C;50;0;0;0;Pumpen externer Heizkreis Freigabetemperatur; L8;2;54;1;100;1;\'b0C;54;0;0;0;R\'fccklauf R\'fccklaufanhebung Pumpe ein unter; L9;2;66;1;100;1;\'b0C;66;0;0;0;R\'fccklauf R
in „Hargassner Pelletheizung Betriebsdatenerfassung“ · Haus & Smart Home ·
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PDF
MG_Model_B__C___D_3_phase_kw.pdf
85.0 82.0 3390 3.10 610 280 310 MG90SB2-D1 1 1.50 5.35 / 3.10 0.80 0.86 0.90 83.0 85.0 84.0 3470 4.10 780 270 330 MG90LC2-D1 1 2.20 7.70 / 4.45 0.85 0.89 0.91 84.5 85.5 84.0 3470 6.00 780 280 330 MG100LC2-D1 1 3.00 10.8 / 6.20 0.80 0.88 0.89 85.0 85.0 84.0 3430 8.10 800 280 370 MG112MB2-D1 1 3.00 10.2 /
in „3Phasen Motoer an FU - Lagergeräusche?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
tr_p_td71l.pdf
30.5 15.0 31.5 6.0 350 3.0 0.315¡¨ 1.201¡¨ 0.591¡¨ 1.240¡¨ 0.236¡¨ 13.780 ¡¨ 0.118¡¨ TD76L TD120L 12.9 37.5 14.0 41.3 10.3 68.0 3.0 0.508 ¡¨ 1.476¡¨ 0.551¡¨ 1.626¡¨ 0.406¡¨ 2.677¡¨ 0.118¡¨ TD140L 19.5 48.2 19.3 51.2 12.2 270.0 5.0 TD79L 0.768¡¨ 1.898¡¨ 0.760 ¡¨ 2.008¡¨ 0.480¡¨ 10.630¡¨ 0.197¡¨ TD106L 19.6 47.8 19.2 52.0 12.2 270.0 5.0 0.772¡¨ 1.882¡¨ 0.756 ¡¨ 2.047¡¨ 0.480¡¨ 10.630¡¨ 0.197¡¨ Secondary Burden & Output Volta ge Graph TD71V/L TD77V/L TD76V/L TD79L, TD106V/L 16 T A E H W A T R A N S
in „Cadsoft Eagle“ · Platinen ·
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PDF
T130-6-DataSheet__1_.pdf
) 100 ID OD )i 90 % y 80 l b 70 e 60 r 0.4 N I P 50 H a 40 Le i H = DC Magnetizing Force (Oe) T I 30 N = Number of Turns Ht % 20 I = DC Current (A) L = EffectivePath Length (cm) OD (nom. - bare core) 33.02 mm 1.300 in 10 e (max
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PDF
T130-6-DataSheet__1___1_.pdf
) 100 ID OD )i 90 % y 80 l b 70 e 60 r 0.4 N I P 50 H a 40 Le i H = DC Magnetizing Force (Oe) T I 30 N = Number of Turns Ht % 20 I = DC Current (A) L = EffectivePath Length (cm) OD (nom. - bare core) 33.02 mm 1.300 in 10 e (max
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PDF
XLampXBD.pdf
% ( 80 r e w o 60 5000K - 10000K CCT P t 3700K - 5000K CCT n i 40 2600K - 3700K CCT d a R e 20 i t l e 0 R 380 430 480 530 580 630 680 730 780 Wavelength (nm) 100% ) % ( e 80% w P Royal Blue t n 60% Blue i a Green R v 40% t Red-Orange l R Red 20% 0% 380 430 480 530 580 630 680 730 780 Wavelength (nm
in „Keine angaben über erforderliche Kühlung bei 100W LED“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
JSMSEMI-S8050.pdf
to S8550 B 1.200 1.400 1 Base C 0.890 1.110 Collector Current: IC=0.5A 2 Emitter D 0.370 0.500 G 1.780 2.040 A L H 0.013 0.100 J 0.085 0.177 3 Top View B S K 0.450 0.600 1 2 L 0.890 1.020 MARKING: J3Y S 2.100 2.500 V G V 0.450 0.600 All Dimension in mm C H D K J MAXIMUM RATINGS (T A=25 Cunless otherwise
in „Relaischaltung entwerfen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD8253.pdf
AD8253 Data Sheet Parameter Conditions Min Typ Max Unit SettlingTime 0.001% ΔOUT = 10V step G = 1 780 ns G = 10 880 ns G =100 1.8 μs G = 1000 1.8 μs Slew Rate G = 1 20 V/μs G = 10 20 V/μs G = 100 12 V/μs G = 1000 2 V/μs Total Harmonic Distortion + Noise f = 1 kHz, L= 10 kΩ, ±10V, −110 dB G = 1, 10 Hz
in „2 Fragen zur Verstärkerschaltung“ · Analoge Elektronik und Schaltungstechnik ·
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Bild
Bestückte grüne Leiterplatte mit Elektrolytkondensatoren
, C764, C765, C766, C767, C768, C769, C770, C771, C772, C773, C774, C775, C776, C777, C778, C779, C780, C781, C782, C783, C784, C785, C786, C787, C788, C789, C790, C791, C792, C793, C794, C795, C796, C797, C798, C799, C800, L270, L271, R1700, R2703, R2704, R2705, R2711, R2712, R2713, R2714, R2715, R2716
in „Sonos Play 5 - klackendes Geräusch aus Speaker“ · Analoge Elektronik und Schaltungstechnik · · Platinenfotos
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Bild
Bestückte grüne Leiterplatte mit Elektrolytkondensatoren
, C764, C765, C766, C767, C768, C769, C770, C771, C772, C773, C774, C775, C776, C777, C778, C779, C780, C781, C782, C783, C784, C785, C786, C787, C788, C789, C790, C791, C792, C793, C794, C795, C796, C797, C798, C799, C800, L270, L271, R1700, R2703, R2704, R2705, R2711, R2712, R2713, R2714, R2715, R2716
in „Sonos Play 5 - klackendes Geräusch aus Speaker“ · Analoge Elektronik und Schaltungstechnik · · Platinenfotos
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Bild
Bestückte grüne Leiterplatte mit Elektrolytkondensatoren
, C764, C765, C766, C767, C768, C769, C770, C771, C772, C773, C774, C775, C776, C777, C778, C779, C780, C781, C782, C783, C784, C785, C786, C787, C788, C789, C790, C791, C792, C793, C794, C795, C796, C797, C798, C799, C800, L270, L271, R1700, R2703, R2704, R2705, R2711, R2712, R2713, R2714, R2715, R2716
in „Sonos Play:5 Reparatur Bauteile gesucht“ · Analoge Elektronik und Schaltungstechnik · · Platinenfotos
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PDF
PRC1602A.pdf
Function 1 VDD 5.0V Supply voltage for logic 2 VSS 0V Ground 3 V0 Variable voltage for LCD 4 RS H/L H: Instruction codeL: Data 5 R/W H/L H: Read signal L: Write signal 6 E H→L enable signal 7 DB0 H/L Data bits 8 DB1 H/L In case of4 bits instruction, data is transferred 9 DB2 H/L by twice using only 4 buses of D4 – D7 ,and D0 – D3 are not used, first operation is higher order 10 DB3 H/L 4 bits and second is lower 4 bits of 8 11 DB4 H/L bits , but in case of 8 bits instruction, 12 DB5 H/L data is transferred by data by data bus of 13 DB6 H/L D0 – D7 14 DB7 H/L 15 BLA(+) 4.2V Supply voltage
in „LCD Ansteuerung - Fehlersuche“ · Mikrocontroller und Digitale Elektronik ·
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Bild
LTspice Simulation eines Oszillators mit Wellenformen und Schaltplan
Forbeispiel2023-entkoppelt03.raw 0mA 15mA 14mA 13mA 12mA 11mA 10mA 9mA 8mA 7mA 6mA 5mA 4mA 3mA 2mA 1mA 0mA 780mV 770mV 760mV 750mV 740mV 730mV 720mV 710mV 700mV 690mV 680mV 670mV 660mV 13V 12V 11V 10V 9V 8V 7V 6V 5V 4V 3V 2V 1V 0V OW u NW besser als -70dBc, super Arbeitspunkt, Begrenzung der Verst. durch einen
in „LTspice: Add trace -> geht auch Phasenverschiebung?“ · Analoge Elektronik und Schaltungstechnik · · Screenshots
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PDF
RS__2.pdf
Resistance taper 1B 4B General-use Mixer Lever Types Unit:mm 6 5.5 t=2.05 t=2.05 . 3 Dimensions 5 1 L 0.5 (6.6) Length L 1 10 15 Notes 1. Shows the specification recommended by us. 2. Additional product specifications not included in the above list are also available. Contact us for details. For resistance
in „Möglichst großes Schiebepotenziometer mit Mttelstellung“ · Markt ·
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Datei
schemath.txt
RF4800LBS RF4900LBS PHILIPS:CR101 CR105B D2999 90AL990 BX925A EA3405 EA3905 PYE: AP100339 RACAL:17L RCA: AR88D ACR111 RADIO-HOLAND: R7100A REALISTIC:DX150 DX160 DX200 DX300 DX302 ROHDE & SCHWARZ: EK07 ROTER:R107 R1132A RT77/GRC9 SEMCO:SEMICONDA SIGNAL CORPS: BC224 BC458 SOLID STATE: CX203 SOMMERKAMP
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PDF
cycloneIII_3c120_dev_reference_manual.pdf
development board. Figure 1–1. Cyclone III Development Board Block Diagram HSMC Port A HSMC Port B S S D D L 125 MHz L Power USB + XTAL + RJ-45 Measure/ 2.0 S S Jack Display M M C C 2.5V CMOS 2.5V CMOS MAX II 10/100/1000 Device (x32) Ethernet 8MB SRAM 1.8V CMOS 2.5V CMOS Graphics LCD (x32) Cyclone III EP3C120F780
in „[V]erkaufe: Cyclone III FPGA Video Developement Board“ · Markt ·
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Datei
main.c
delay_ms(15); // wait 15 msecs before LCD accepts anything // init LCD (4 bit-mode) // according to SPLC780-docu, set DB4 and DB5, clear all other PORTB |= (1<<PB0) | (1<<PB1); PORTB &= ~((1<<PB2) | (1<<PB3) | (1<<LCD_RS)); lcd_send_enable(); _delay_ms(5); // wait > 4.1 msec lcd_send_enable(); // then send
in „Pollin RFID-Board und LCD ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ISP.txt
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in „Warum ließt AtmelStudio vor Programmieren?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Capture.c
Programm PwmCycle und PwmDuty) erhält man die Werte: // f-input=100Hz: PwmDuty = 1562; PwmCycle = 780 // // Die Variable PwmCycle hält den Zählerwert von Timer 1 während eines Pulses, die Variable PwmCycle den einer Periode // // Das Programm funktioniert, der Zählerwert beträgt aber ca. nur ein Zweiundreissigstel
in „Puls-Pause-Messung mit PIC18“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Nexys4_DDR_schematic.pdf
_VREFR18 LED4 IO_L5N_T0_AD9N_D12 AUD_SD IO_L5N_T0_3L68DDR_CK_P IO_L5N_T0_AD13NE758JC7 IO_L7P_T1_D09_T18 SW5 IO_L6P_T0_1D13 TMP_INT IO_L6P_T0_3L58DDR_CK_N IO_L6P_T0_D7C8VGA_B2 IO_L7N_T1_D10_N14 LED3 IO_L6N_T0_VREFB16 XA3
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PDF
BT_11608.pdf
36 8 mmCharacter Height LCD Modules - MACROLINE BATRON BT 11608 1 Line x 16 Characters s r l t u a o r M h Dimensions [mm] Dot Size C D L MECHANICAL DATA PIN TABLE Parameter Width x Height x Depth Unit Pin Symbol Signal Description Outline Dimensions 122 x 33 x 11 (with LED: 14) mm 1 VSS GND
in „16X1 LCD... nur 8 Char's“ · Mikrocontroller und Digitale Elektronik ·
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PDF
BT_22008.pdf
BATRON 8 mmCharacter Height LCD Modules - MACROLINE 39 BT 22008 2 Lines x 20 Characters s r l t u a o r M Dimensions [mm] Dot Size h C D L MECHANICAL DATA PIN TABLE Parameter Width x Height x Depth Unit Pin Symbol Signal Description Outline Dimensions 146 x 43 x 10 (with LED: 14) mm 1 VSS GND
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PDF
BT42012.pdf
11788 Tel. 631-951-0800 - Fax 631-9512121 - www.datamodul.com BT 42012 4 Lines x 20 Characters s r l t u c d r o a M Dimensions [mm] Dot Size h D C C L MECHANICAL DATA PIN TABLE Parameter Width x Height x Depth Unit Pin Symbol Signal Description Outline Dimensions 182 x 90 x 11 (with LED: 14) mm 1 V
in „Altes LCD-Display BT42012“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TDA5241.pdf
20.9 –15.5 –10.1 mA II O Ratio of sink to source current 0.9 1.025 1.15 VIL Input voltage level LOW 780 860 940 mV VIH Input voltage level HIGH 2.3 2.4 2.55 V CAP–CPC II Output sink current 1 – 3 mA IO Output source current –100 – –30 mA NOTES: 1. An unstabilized supply can be used; transients of 2 V
in „TDA5241 Brushless DC Driver“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TDA5241.pdf
20.9 –15.5 –10.1 mA II O Ratio of sink to source current 0.9 1.025 1.15 VIL Input voltage level LOW 780 860 940 mV VIH Input voltage level HIGH 2.3 2.4 2.55 V CAP–CPC II Output sink current 1 – 3 mA IO Output source current –100 – –30 mA NOTES: 1. An unstabilized supply can be used; transients of 2 V
in „Frage zum TDA5241 Datenblatt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TDA5241.pdf
20.9 –15.5 –10.1 mA II O Ratio of sink to source current 0.9 1.025 1.15 VIL Input voltage level LOW 780 860 940 mV VIH Input voltage level HIGH 2.3 2.4 2.55 V CAP–CPC II Output sink current 1 – 3 mA IO Output source current –100 – –30 mA NOTES: 1. An unstabilized supply can be used; transients of 2 V
in „PWM Signal + Filter + Brushless Driver“ · Mikrocontroller und Digitale Elektronik ·