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OPB350.pdf
only. Schematic for OCB100 PCBoard D3 D2 0.1µf Blue 5.6 V R10 R17 J1 - Pin 1 R11 C4 R1 1 R2 3 VDD 4 LM324 D5 GP4/AN3 GP3/MCLR J1 - Pin 4 U1 Green 5 7 Optical Device GP2/ANU2 GP0/AN0 J1 - Pin 3 2 GP5/T1CKI GP1/AN1 J1 - Pin 5 R13 R14 Vss R6 8 R12 U3 C1 D4 D1 LM324 R3 Green Red U1 0.1µf J1 - Pin 2 J2 J1 R5 1 2 3 1 Vcc C2 LM324 Q1 2 Logic Out A R4 U1 R8 R16 R15 C3 0.1µf R9 3 Logic Out B 0.1µf 4 Calibrate 5 Analog Out R7 6 Ground J1 - Pin 6 J1 = JST connector S6B-ZR(LF)(SN) OCB100-MC24 OPTEK reserves the right to make changes
in „IR- Lichtschranken (Photomicrosensor) Omron“ · Analoge Elektronik und Schaltungstechnik ·
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US4843344.pdf
45] Date ofPatent: Jun.2 7,1989 [54] HIGH VOLTAGE AMPLIFIER 3,947,727 3/1976 Stewart . . 330/264 [75] Invento? Mason E Cox, Shelby, N-Y- 4,296,382 10/1981 Hoover . . . 330/264 - _ - 4,317,0552/1982Yoshida et a1. . 330/264 [7] Asslgnee' r°g°eE1l1°°“§'§°s’Inc" 4370615 1/1983 Whistlerta1.. 324/457 y“ o
in „Hochspannungs OPV Fehler/Vorschlag?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
dissassembly.txt
Microchip Technology Omniscient Code Generator (Lite mode) build 54009" 2: 3: opt pagewidth 120 4: 5: opt lm 6: 7: processor 16F876 8: clrc macro 9: bcf 3,0 10: endm 11: clrz macro 12: bcf 3,2 13: endm 14: setc macro 15: bsf 3,0 16: endm 17: setz macro 18: bsf 3,2 19: endm 20: skipc macro 21: btfss 3,0 22:
in „[C] XC8 verschwendet Speicher“ · Mikrocontroller und Digitale Elektronik ·
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Anemometer.pdf
+8V LM78L05 +5V R9 R10 +5V 0 0 1 1 BT1 +5V C7 C1 8 JP1 JP2 12V C5 IC1 R7 25V 16V 4 100n NMEA ETAL 1 D2 D3 T1 R8 10k 2x 1N4148 +5V BC547 +5V P1 C4 50k IC5 R4 100n UGN3503U 5k6 6 1 IC1.B 7 C6 5 20 R6 +5V k 1µ 1 RC0 11 1 3 16V P2 MCLR RC1 12 R11 IC2 13 K4 k RC2 14 K3 IC1 = LM358 1 RC3 K2 2 H1 4k7 RC4 15 RS H1 2 RA0/AN0 RC5 16 R/W +5V H2 3 17 EN H2 P4 RA1/AN1 RC6/TX 4 RA2/AN2 RC7/RX 18 1 5 RA3/VREF K5 50k 6 2 x 16 R5 2 7 RA4/T0 21 D7 5k6 RA5/AN4 RB0/INT 3 IC1.A 1 RB1 22 D6
in „Kleiner leichter Wind(richtungs)messer gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
d045050.pdf
+8V LM78L05 +5V R9 R10 +5V 0 0 1 1 BT1 +5V C7 C1 8 JP1 JP2 12V C5 IC1 R7 25V 16V 4 100n NMEA ETAL 1 D2 D3 T1 R8 10k 2x 1N4148 +5V BC547 +5V P1 C4 50k IC5 R4 100n UGN3503U 5k6 6 1 IC1.B 7 C6 5 20 R6 +5V k 1µ 1 RC0 11 1 3 16V P2 MCLR RC1 12 R11 IC2 13 K4 k RC2 14 K3 IC1 = LM358 1 RC3 K2 2 H1 4k7 RC4 15 RS H1 2 RA0/AN0 RC5 16 R/W +5V H2 3 17 EN H2 P4 RA1/AN1 RC6/TX 4 RA2/AN2 RC7/RX 18 1 5 RA3/VREF K5 50k 6 2 x 16 R5 2 7 RA4/T0 21 D7 5k6 RA5/AN4 RB0/INT 3 IC1.A 1 RB1 22 D6
in „windrichtung / windgeschwindigkeit“ · Mikrocontroller und Digitale Elektronik ·
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NWT500-AD9957-_____.pdf
C5 C24 C25 C28 C32 C36 C40 104 104 104 104 104104 104 104 104 104 104 D 1 GND S1 U1 SW SPST D1 +12 LM7805CT 5V_OUT L1 +5 L2 +5-AD8307 J1 1 Vin +5V 3 4.7uH 4.7uH SS24 D C89 C93 PHONEJACK C15 C16 C88 N C17 C18 C91 C22 C26 C30 C6 C7 C61 G 104 104 220uF/25V 104 104 100uF/25V 100uF/25V 104 104 104 104 104
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Vergleichsliste.pdf
ECG937M LF357N ECG938 LM308AH ECG938M LM308N-8 ECG939 L121 ECG940 NE536T UA740CH ECG941 UA741HC LM741H TBA222 ECG941D LM741CN ECG941M UA741TC-8 MC1741CP-8 TDA0741D ECG941S T.B.A ECG941SM T.B.A. ECG942 LM381N LM381AN ECG943 LM393N
in „ECG45 was ist das?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
lm25117.pdf
Product Sample & Technical Tools & Support & Folder Buy Documents Software Community LM25117,LM25117-Q1 SNVS714F –APRIL 2011–REVISED AUGUST 2015 LM 25117/Q 1W ideInputR angeSynchronousB uckC ontrollerW ithA nalogC urrent M onitor 1 Features 3 Description • LM25117-Q1 is Qualified for Automotive
in „DC-DC Wandler mit MCP42010“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Wlan-SW4_S01_Funk433MHz.pdf
2Euro P 2 3 1 2 3 1 BAV70 10S8050 0,02€/100 SOT23 (A4s), BAS70-05 10S7454 0,08€/100 SOT23 Schottky (75s) +Ub D2_Tuya USB+5V D3_Tuya PS1_Fast-Start-Up X2 ncBAV70 ncBAV70 5 OUT L-ACin 1 3 2 3 8 4 LM1117-3,3V O C K5 Relais 1um 10A 5Vdc 89,3mA 55R 5Pin 3 GND N-ACin 2 2 N N Relais 12VDC 270R 45mA 0,54W 2um
in „Tuya Motorsteuerung Rollo Fenster Garage Gewächshaus Auf Zu APP WLAN+433MHz 7-32Vdc 10A 2Ch 4Ch“ · Projekte & Code ·
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Datei
Bauteilliste.txt
/2V8 E3,5-8 rcl (46.99 12.7) R0 C10 3F/2V8 E3,5-8 rcl (46.99 3.81) R0 C11 100n C1206 rcl (26.67 31.75) MR180 D1 SK36A DO214AA diode (2.54 21.59) MR270 D2 SK36A DO214AA diode (22.86 20.32) MR0 F1 Polyfuse 1.6A TE5 fuse (26.67 35.56) R180 H1 M3 3,2-PAD holes (48.26 33.02) R0 H2 M3 3,2-PAD holes (5.08 33.02) R0 IC1 LM317 317TL v-reg (16.51 33.02) R90 IC2 L272M DIL08 linear (10.16 21.59) R0 IC3 L272M DIL08 linear (43.18 21.59) R0 JP1 JP1 jumper (26.67 39.37) R270 L1 10uH BC12 inductors (40.64 39.37) R0 LED1 grün CHIPLED
in „Puffer für DCC-Dekoder mit Superkondensatoren“ · Projekte & Code ·
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RCV420.pdf
applications where V+ V– Ref In 16 4 12 RCV420 92k 300k 99k 11.5k –In 1 15 Rcv f B R S 14 Rcv Out 75 11 Ref Out CT 2 10 RefBf R S 1.01k +10V 75 Ref 8 Ref Trim +In 3 7 Ref Noise Reduction 300k 100k 13 5 Rcv Ref Com Com InternationalAirportIndustrialPark • MailingAddress:POBox11400,Tucson,AZ85734 • StreetAddress
in „Frage zu 4-20mA Receiver RCV420“ · Mikrocontroller und Digitale Elektronik ·
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QEagleBeta.pdf
model for QSpice. Beispiel – Example: QopAmp.txt * Devices: * AD8519 CA3130 CA3140 LF356 * LF357 LF411 LM308 LM308A * LM111 LM219 LM709A LM741 * LM358 LM833 LM13700 LPV358 * MC1458 OP07 OP27 OPA603 * OP290 TEB1033 TL062 TL072 * TL082 TLC272 .SUBCKT LM741 1 2 99 50 28 * *Features: *Improved performance over industry standards *Plug-in replacement for LM709,LM201,MC1439,748 *Input and output overload protection * ****************INPUT STAGE************** IOS 2 1 20N *^Input offset current ... Seite 30 QEAGLE 2.2.6 Mehrfach Operationsverstärker - Multiple
in „QSPICE von Mike Engelhardt“ · Analoge Elektronik und Schaltungstechnik ·
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project.pdf
2 2 Vin c Boost 3 0 R 0 R 5 R SPST F B Switch 1 L1 1 IN OUT 3 2 1 BT1 C1 C2 O F D 1 N C N 22uH NPI75C G VIN_MEAS 12V_BATT D D O N G y C4 C5 C6 C7 A 100uF 100nF t 2 2 2 k 4 A 7 5 4 LM2678-5.0 h D 100uF 100nF 2 LF33 100nF 100uF 3 E 4 E 1 R S D L D L 1 1 GND GND PWR_FLAG SWD GND GND GND 4 Power Supply
in „Schaltplan so richtig? STM32F407VG“ · Mikrocontroller und Digitale Elektronik ·
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PDF
project.pdf
2 2 Vin c Boost 3 0 R 0 R 5 R SPST F B Switch 1 L1 1 IN OUT 3 2 1 BT1 C1 C2 O F D 1 N C N 22uH NPI75C G VIN_MEAS 12V_BATT D D O N G y C4 C5 C6 C7 A 100uF 100nF t 2 2 2 k 4 A 7 5 4 LM2678-5.0 h D 100uF 100nF 2 LF33 100nF 100uF 3 E 4 E 1 R S D L D L 1 1 GND GND PWR_FLAG SWD GND GND GND 4 Power Supply
in „Schaltplan so richtig? STM32F407VG“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LB_LT_M673_Pb_free.pdf
viewing angle: Lambertian Emitter (120°) Technologie: InGaN technology: InGaN optischer Wirkungsgrad: 2 lm/W (blau), optical efficiency: 2 lm/W (blue), 8lm/W (true green) 8 lm/W (true green) Gruppierungsparameter: Lichtstärke, grouping parameter: luminous intensity, Wellenlänge wavelength Verarbeitungsmethode
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PDF
Ostam__LY_P47K.pdf
587 nm (gelb) technology: InGaAlP Abstrahlwinkel: Lambertscher Strahler (120°) optical efficiency: 6 lm/W (yellow), Technologie: InGaAlP 5 lm/W (super-red) optischer Wirkungsgrad: 6 lm/W (gelb), grouping parameter: luminous intensity, 5 lm/W (super-rot) wavelength Gruppierungsparameter: Lichtstärke, assembly
in „Reverse Mount LED in gelb“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PC817.pdf
iok<->, ambient temperature vs. ambient temperature -.. 5 80 2 70 .+ 60 P t; 40 3 & 4 20 -30 0 25 55 75 100 125 -30 0 25 55 75 100 125 Ambient temperature Ta (“C) Ambient temperature Ta (‘C) (Fig. 3) Collectopower dissipation (Fig. 4) Total powerdissipation vs. ambient temperature vs. ambient temperature r -30 0 25 50 75 100 125 -30 0 25 50 75 100 125 Ambient temperature Ta (‘C ) Ambient temperature Ta (‘C) (Fig. 5) Peak forward current z vs. duty ratio .5 PulsewidthS ps 2 2000 Ta=25’C 1000 i 500 2 200 ; 100 m” 50 2
in „Ist dieser Optokoppler geeignet? ( PC817 )“ · Mikrocontroller und Digitale Elektronik ·
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lf444.pdf
Description Features w The LF444 quad low power operational amplifier provides⁄4supply current of a LM148200 µA/Amplifier (max) P many of the same AC characteristics as the industry stan-w input bias current: 50 pA (max) o dard LM148 while greatly improving the DC characterisn High gain bandwidth: 1 MHz w of the LM148. The amplifier has the same bandwidth, sn High slew rate: 1 V/µs r rate, and gain (10 kΩ load) as the LM148 and only dran Low noise voltage for low power J one fourth the supply current of the LM148
in „PH Elektrode Filterung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MainBoard.pdf
5 4 3 2 1 USB5V X1 D1 3V3 X2 D2 U1 R1 3V3 TXD0 11 14 TXD Power 7-12V 1N4002 LM1086 5.0V J1 X3 27 U2 RXD 1 6 RTS RXD0 12 Din1 Dout1 13 RXD 3 2 J2 1 2 DDM 1 6 TXD 2 7 CTS RTS0 10 Rout1 2 Rin1 7 RTS 1 IN NUT 5V 1 VCC D- DDP I/O 1 VCC 3 8 CTS0 Din2 L 2Dout2 CTS C1 2 C2 G C3 USB5V 2
in „AT91SAM7X256 - Inbetriebnahme“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PS9530_KM_G_071030.pdf
SMD SEG29 38 77 SEG28 P8.1 60 3 V-OUT YO/I B Y2 2 C307 SEG30 39 76 SEG29 P8.2 61 LD 6 Y3 4 SEG31 40 75 SEG30 P8.3 REF 7 SEG32 74 62 C314 VEE 330n SEG33 41 73 SEG31 P9.0 63 4 D-OUT GND 5 100n Folie 72 SEG32 P9.1 64 D305 SMD CDSMD2 71 SEG33 P9.2 65 TXD LTC1658/SMD LM385/2,5V -5V LC-Display 70 SEG34 P9.3
in „ELV Netzteil "PS 9530" 0-30V/0-10A - Erfahrungen“ · Mikrocontroller und Digitale Elektronik ·
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Testboad_-_Universal.pdf
C9 100NF 3 2 NC SCL AIN0 AIN8 0 3K30 GND SDA VCC 0 AIN1 AIN9 1 K +12V 100NF 9 X AIN2 AIN10 K K1X03 LM2940CT_5V/1A VCC AT24C512 C8 K K AIN3 AIN11/REF F 1 S8 K1X02 D53 IC2 Ain4 VCC n C VCC_i IN OUT IC6 VCC 100NF VCC 4 AIN5 GND µ1 GND_S F 2 N F 1 C7 1 X AIN6 SDA 1 , GND_C K1µ 1N4001 G µ + C A0 VCC K K AIN7
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Elektor_1978-06.pdf
regulators. Pulse Generator. All pulse 999 ms, pulse width isfrom 3 ns video games using hexadecimal The LM 137/LM 237/LM 337 are parameters are programmable to 999 ms both with three digits - width, period, delay, transition of resolution. code. Extremely compact CHIP-8 adjustable 3-terminal negative times
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HCNR200.pdf
Listing. 14 0.001 µF +ILOOP HCNR200 R5 LED 80 k R1 Z1 10 k R4 5.1 V VCC 180 5.5 V HCNR200 0.1 µF PD 1 + LM158 2N3906 - - VOUT R2 + LM158 10 k HCNR200 0.001 µF PD 2 -ILOOP R3 25 2 DESIGN EQUATIONS: VOUT / ILOOP = K3 (R5 R3) / R1 + R3) K3 = K2 / K1 = CONSTANT = 1 NOTE: THE TWO OP-AMPS SHOWN ARE TWO SEPARATE
in „Spannung messen mit Arduino von zwei nicht verbundenen Batteriebänken (Segelboot)“ · Mikrocontroller und Digitale Elektronik ·
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sepic-wanlder.pdf
supply. Output current (IOUT ): 2.5A A Switching frequency f : 330kHz SEPIC Converter Design Example sw LM3478 controller is used in this example. Schematic is Input voltage (V IN 3.0V-5.7V LM3478 controller is used in shown in Figure 5. this example. Schematic is shown in Figure 5. 20194820 FIGURE 5. Schematic
in „Sepic-Wandler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
voltcraft_lsp1403_Maplin_N27GG_Manson_SSP-7080_Extech_382260_psu-adjustable-voltage-0-36-v-dc-0-5-a-80-w_sch.pdf
AC Socket PCB +7V 1 3 Vin Vout +5V D10 D G C1907 L6 R30 T1 470UF/10V U7 2 1mH C22 220R/1/4W HV 400V LM7805 C20 C21 104 470UF/10V 470UF/10V C3 C2 R3 102/1KV R2 L5 330K/1/4W R4 FGND C23 U9 R36 100K/1W C9 100K/1/4W 470UF/10V LM79L05 2 C26 C28 C30 100UF/50V 470UF/10V L7 470UF/10V 220R/1/4W D1 R7 250V/220UF
in „Voltcraft LSP-1403 Netztgerät zerschossen“ · Mikrocontroller und Digitale Elektronik ·
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Elektronik.pdf
TMC_MISO 14 MISO _ TMC_MISO 14 MISO 5 l 2 15 OA2 6 R100 4 15 OA2 6 R91 R93 a J TMC_MOSI MOSI OA2 10 R98 75m x TMC_MOSI MOSI OA2 10 75m _ TMC_SCLK 16 SCLK OA2 11 TMC110A2 R101 0 TMC_SCLK 16 SCLK OA2 11 TMC010A2 R94 4 18 12 _ 18 12 75m x TMC1_CS CS SRA Vdrive8 75m n TMC0_CS CS SRA Vdrive1 0 BRA 9 10u50v C 42
in „50ns Delay mit STM32H7“ · Mikrocontroller und Digitale Elektronik ·
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Bauteile.pdf
25A 1661 15 ShuntWiderstand R068 68mΩ 1% 82 16 Optokoppler SFH620A-3 5,3kV Pin 99 17 DualKomparator LM393 SMD 17 Treiber IR327 150 19 IGBT IRG4PH30K 720V 10A TO-247 106 20 Mos-Fet STW13NB60 600V 13A 0,54mΩ NKanal 112 21 74xxxx 74HC374ADW SMD 8BitFlipFlop 24 22 Optokoppler BRT23H Pin 15 23 Treiber ST485BDR
in „Elektronik Bauteile Neuwertig , meist Leistungselektronik“ · Markt ·
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17mb70-5-sema_schematics.pdf
6 7 8 AX M 1 2 3 4 5 6 7 8 http://arizanotlari.com R338 C302 100n 16V R333 U22 Near Tuner 100n 16V 75R GS9 F28 LM1117 supply pin VGA_G_IN 75R 10V AE9 SD_G SD_INCM_G AF9 100n 16V R917 1 2 3 2 5V_TUN C303 10V AH9 AG9 100n 8V_VCC 330R IN OUT VGA_B_IN R339 100n AD10 SD_B SD_INCM_B AC10 C512 75R GS5 1 C693
in „LED TV Medion MD 30630 defekt, nicht einmal standby Lampe“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Mech_Elekt_Daten.pdf
1,05 0,96 19,0 0,136 b 0,35 2,85 0,60 0,0374 6,0 7,0 8,1 1,0 1,65 1,50 19,0 0,218 3 UI 39 a 0,47 3,75 1,27 0,085 6,0 7,5 9,1 1,3 1,38 1,65 24,7 0,313 b 0,47 3,75 1,27 0,102 7,5 9,0 10,6 1,3 2,08 2,49 24,7 0,471 3 UI 48 a 0,59 4,56 2,25 0,188 7,5 9,4 11,2 1,6 1,59 2,34 30,4 0,540 b 0,59 4,56 2,25 0,224
in „ltspice kopelfaktoranweisung für Drehstromtrafo“ · Analoge Elektronik und Schaltungstechnik ·
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CMUcam2_manual.pdf
configure the serial port 3rd Party Software 62 Components and Schematic Top Components Sliding Switch LM2940 Green LED 33uF 33uF 33uF 75 MHz Oscillator SX52 Push Button 820 820 AL422B MAX 232 Bottom Components 820 820 .1uF This image is a bot- Camera Bus 4.7K 1.0 uF .1uF Connector tom view of the com- ponents
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MSV30245_Schematic_RevB.pdf
70 A0 J2 0.1uF 15 5 0.1uF P7_5 23 P74/TxD3/SDA3/SRxD3/TA2out/LED4 P20/A0 69 A1 1 GND C2- P7_6 22 P75/RxD3/SCL3/STxD3/TA2in/LED5 P21/A1 68 A2 6 P7_7 21 P76/CLK3/SCK3/TA3out/LED6 P22/A2 67 A3 P77/CTS3/RTS3/SS3/TA3in/LED7 P23/A3 2 14 T1O T1I 11 Y2 P24/A4 66 A4 7 7 T2O T2I 10 P25/A5 65 A5 3 13 R1I R1O 12
in „m16C on Chip Programmierung“ · Mikrocontroller und Digitale Elektronik ·
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untitled.pdf
3 3 L y 1 GND GND 3 R k 8 N GND 200 R7 IC1A , 4 D 1 N 4 RB886G / 1SS351 / BAS70 3 R G R15 22 23 6 LM393D R50 200 22 R54 7 BIAS1 N THS6214 IN1 D9 C17 p 1 5 10k G R13 R1 R5 1k n R IC3B 1µ IC1BIAS 1,2k 51||51 R52 7 TR2 C1 10Meg IADJ C X6 T4-1T-X65 0 R3 T1 X2 GND GND C IN1 6 1 1p 3 n.p. GND 2 BIAS1_12 2
in „HF Linearverstärker für Messzwecke“ · HF, Funk und Felder ·
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PDF
ACS712-Datasheet.pdf
( m 100.0 T 0 ( T n 99.8 E –2 S 99.6 –4 99.4 –6 99.2 –8 99.0 –50 –25 0 25 50 75 100 125 150 –50 –25 0 25 50 75 100 125 150 TA(°C) TA(°C) Output Voltage versus Sensed Current Sensitivity versus Sensed Current 5.0 110.00 T (°C) 4.5 108.00 A 4.0 106.00 –40 25 3.5 VCC = 5 V ) 104.00
in „ACS712 genauigkeit“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Allegro-ACS712.pdf
( m 100.0 T 0 ( T n 99.8 E –2 S 99.6 –4 99.4 –6 99.2 –8 99.0 –50 –25 0 25 50 75 100 125 150 –50 –25 0 25 50 75 100 125 150 TA(°C) TA(°C) Output Voltage versus Sensed Current Sensitivity versus Sensed Current 5.0 110.00 T (°C) 4.5 108.00 A 4.0 106.00 –40 25 3.5 VCC = 5 V ) 104.00
in „Schaltung zum Strom messen ohne Widerstand?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ACS712-Datenblatt.pdf
n 99.8 ET e –2 S 99.6 –4 99.4 –6 99.2 99.0 –8 –50 –25 0 25 50 75 100 125 150 –50 –25 0 25 50 75 100 125 150 T A°C) TA(°C) Output Voltage versus Sensed Current Sensitivity versus Sensed Current 5.0 110.00 4.5 108.00 TA(°C) –40 4.0 106.00 25 3.5 VCC= 5 V 104.00 85 )
in „DC Wattmeter 400W 20V 20A selber bauen Assembler ATmega8 Stromsensor ACS712ELC Reichelt“ · Projekte & Code ·
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PDF
PCIM_FINAL.pdf
CONFIDENTIA CONFIDENTI SSu of Insof Instantaneoust Powers of utput Po ers of TThree Phases is Constant 1.75 p o1p o2p ,o3 1.5 P 1.25 po1 po2 po3 1 0.75 0.5 0.25 0 0 60 120 180 240 300 360 CONFIDENTIA CONFIDENTI Sum of Instantaneous Output Currents of Each Su of Instantaneous utput Currents of Each Phase is Constant Phase is Constant io1 o2 o3I 1.75 I 1.5 1.25 io1 io2 o3 1 0.75 0.5 0.25 0 0 60 120 180 240 300 360 DC-AC Inverter Comparison DC-AC Inverter with Fu l-Bridge Boost Converter L VDC S 1 S2 D 1 D2 1:n + Vg C − S3 S4 D 3 D4 V + DC S 1 S 3
in „Warum werden Cùk Wandler so wenig eingesetzt?“ · Analoge Elektronik und Schaltungstechnik ·
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USB_supply.pdf
Fuse F5 = 0R resistor 2.) Fuse F5 = ERF SN020-30, I hold0A2, I =trip 3.) Fuse F5 = MC36195, I hold0A75, I =trip 4.) Fuse F5 = 1R resistor 5.) Fuse F5 = ERF SN050-08, I hold0A5, I =trip measured on board rev. 0002B3 Table showing output voltage dependency from ZD1 temperature. ZD1 3V6 R15 147R 100R VBUS
in „Wie sieht eine Schaltung aus um USB-Spannung(5,04V) auf 2,7V bei einem Strom von 160mA zu bringen?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
HTR-India-Products-Wire-Wound-Resistors-Ceramic-Encased-Resistor-HEA-English.pdf
ENCASED TYPE HEA HTR POWER DIMENSIONS (mm) RESISTANCE TYPICAL TYPE RATING * RANGE WEIGHT at L W H d LM PER PC 70°C ±1.5 ±1 ±1 ±0.05 ±1 min max (gms) C-1B 1W 13.0 6.0 6.0 0.8 35 R025 5K6 1.3 C-2A 2.5W 15.0 6.0 6.0 0.8 35 R025 6K8 1.6 C-4 4W 20.0 6.0 6.0 0.8 40 R04 11K 2.0 C-5B 5W 25.0 6.0 6.0 0.8 45 R05
in „Entkopplungs-Widerstand für Weidezaunanlagen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Wlan-SW4_S01_Funk433MHz.pdf
X2 ncBAV70 ncBAV70 BAV70 10S8050 0,02€/100 SOT23 (A4s), BAS70-05 10S7454 0,08€/100 SOT23 Schottky (75s) MP1584EN_PCB_Adj5V (43k+8k2) 2 ~ ~4 4OUT L-ACin 3 O C 8 K5 Relais 1um 10A 5Vdc 89,3mA 55R 5Pin P21,2V 3,1Von 2,9Voff0,8V P4 GND_X1-13 +Ub_X1-14 LM1117-3,3V N N On/Off 5,4/4,5V 8k2 FB D5_Tuya GND 3GND
in „Tuya Motorsteuerung Rollo Fenster Garage Gewächshaus Auf Zu APP WLAN+433MHz 7-32Vdc 10A 2Ch 4Ch“ · Projekte & Code ·
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PDF
Ebay_150W_Boost_Converter_Schematic.pdf
Monitors Power:30W 18SEP,2019 Colortemperature:3000-3500k Operatingvoltage:30-38V ELECTRONIC/UNSORTED LM5069 – Hot Swap Operatingcurrent:1A Controller/LoadSwitch/ Lightoutput:2600-2800lumens Battery Switch Lifeduration:>50,000hours 7MAY,2019 ELECTRONIC/UNSORTED LTC3784 – 1200W PolyphaseBoostConverter 11MAR
in „Mosfet brennt bei höheren Leistung durch(Boost Converter)“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
All.txt
2 IC2 MEGA8-P MEGA8-P DIL28-3 MICROCONTROLLER 2 IC2 MEGA16-P MEGA16-P DIL40 MICROCONTROLLER 2 IC2 LM75SO08 LM75SO08 SO08 I2C Teperature Sensor 2 IC2 LM358 ICL762PD DIL08 Dual Operational Amplifiers 2 IC2 LM358D LM358D SO08 OP AMP also LM158; LM258; LM2904 2 IC2 L297 L297 DIP-20 2 IC2 L272D L272D SO16
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
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PDF
DUE_Faradays_law.pdf
process electronically before send to DUE_A0. For this we adda lowpower supply operational amplifier LM358 to the self-madeArduinoDUEshield. Its jobis to amplify and to shift the U siindl in a way that theoutput voltage of LM358 ishigh enough inmagnitudeand never negative. dB OUTPUT for dt 3 8 ① DUE-Pin A0 INPUT 1,5H try100nF 1 ① LM358 2 4 0V GND DUE GND 1 dA OUTPUT for dt ① 100k DUE-Pin A0 220k R 1k R 3,3k 220pF 500nF GND 1 0V GND DUE 3,7V LM358 Pin8 3,9k Li-Ion Akku GND 1 2k LM358 Pin4 0V If we assemble all components
in „Arduino Due in plain C“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LSV196.pdf
Abstrahlwinkel: horizontal 140°, vertikal 135° technology: InGaAlP Technologie: InGaAlP optical efficiency: 5 lm/W (green), optischer Wirkungsgrad: 5 lm/W (grün), 7 lm/W (super-red), 11 lm/W (orange, yellow) 7lm/W (super-rot), 11 lm/W (orange, gelb) grouping parameter: luminous intensity, Gruppierungsparameter:
in „Welche Bauform hat diese LED“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM24014W.pdf
LCD SPECIF1CATIONFOR Dot Matrix LCD Unit (240 X 64 dot, Reflective Positive type, with LCD and MODEL LM240 CUSTOMER-S APPROVAL DATE H ima Department General Manager Engineering Department” 2 . . SHARP CORPORATION MODEL PAGE 1 LM24014W Application This data sheet is to introduce the specification of the Dot-Matrix LCD Unit LM24014W . (240 64 dot, STN Positive LCD controller and 2. Construction and Outline Construction : 240 64 full dot graphic display unit Outline : See Fig. 6 . : See Fig. 6 and Table. . Connection There
in „Datenblatt für Sharp LCD“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Mehrere LM2596S Spannungsregler-ICs
LM2596S JM75RA -12 P+ S3 A4
in „[V] Schaltregler 4x LM2676S-5.0 und 4x LM2596S-12 (10€)“ · Markt · · Fotos
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PDF
OLIMEX-stm32-p107-schematic.pdf
40 GND1 TXN 19 RX+ N 4 5 N 1 1:1 C26 4 V- 100nF WKUP R 100nF n n n 50 GND2 RXP 18 RX- ( 9 1 ( 3 TD+ 75 75 1 100nF C2+ x F F F GND3 RXN 0 C50 0 2 TCT 4 R30 TAMPER x F F TD- R 5 5 C2- m 9 VCCA1 RIP 29 ) 100nF ) R54 330R AG AG 4 2 R27 NA 330R ) R32 13 VCCA2 COL 59 R55 1.5k KG KG GREEN 5 USART3_TX 11 T1IN
in „Streuung der ADC-Werte beim STM32“ · Mikrocontroller und Digitale Elektronik ·
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PDF
INA111_BB.pdf
°C, S = ±15V, unless otherwise noted. OFFSETVOLTAGEWARM-UPvsTIME INPUT BIAS CURRENT vs TEMPERATURE 75 300 10n I b ) ) µ 50 200 µ 1n e e ) IOS n n ( h 25 100 h n 100p C C e O O u t 0 0 t C 10p p G≥10 p a - - B t–25 –100 t u 1p d d n r G=1 r I e–50 –200 e 0.1p R R –75 –300 0.01p 0 1 2 3 4 5 –75 –50 –25
in „INA111 als Verstärker für Solarzelle?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ina111.pdf
°C, S = ±15V, unless otherwise noted. OFFSETVOLTAGEWARM-UPvsTIME INPUT BIAS CURRENT vs TEMPERATURE 75 300 10n I b ) ) µ 50 200 µ 1n e e ) IOS n n ( h 25 100 h n 100p C C e O O u t 0 0 t C 10p p G≥10 p a - - B t–25 –100 t u 1p d d n r G=1 r I e–50 –200 e 0.1p R R –75 –300 0.01p 0 1 2 3 4 5 –75 –50 –25
in „"Hallsonde für Oszilloskop" im Eigenbau?!“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AN-694_Motor_DC_PWM.pdf
conduction interval is increased by cally restart. changing the duty cycle of the control signal (75% as shown Another unique feature of the LMD18200 is the provision of in the figure), the conduction time for the A2,B1 pair is an early warning flag of excessive operating temperature. correspondingly
in „DC Motor Controller mit AtMega328 PWM + current limiting“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Descriptions.txt
PHOENIX 10 FEMALE PRINT CONNECTOR 10 AVR ISP-6 Serial Programming Header 9 WAGO 9 TRIAC 9 OP AMP also LM158; LM258; LM2904 9 Octal BUFFER and LINE DRIVER, 3-state 9 DIL/CODE SWITCH 9 8-bit SHIFT REGISTER, output latch 9 3-line to 8-line DECODER/DEMULTIPLEXER 8 Tuxgraphics LCD display 16x2 characters reflective
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·