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Labornetzteil-Prototyp-4-neue-Schaltung.pdf
S R 3 IC7 1 7 SV1 T 8 3 REF 3 GND GND 6 2 2 1 1N4148 OP07 D5 5 4 AGND D U-POT 5 N 1 n V- 2 R A C 1 R18 R 0 SV2 REF 22k 3 1 x 3k3 GND 2 C C R19 1 R27 Rx2 I-POT GND E E 1 2 3 4 5 6 7 8 128.27 0 1 KK2 C 5 KK1 R 1 C C 4 1D 8 2 C T1 T2 4 D 4 C R 2 D 2 C R 32R
in „Labornetzteil mit getakteter Vorregelung - Überschwinger“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Data_Sheet_TLE49x5L_Family_V1_5.pdf
Turn-OFF induction BRP 5 16 – 20 – 10 – 10 6 – 6 3 mT Hysteresis (B – B ) ∆B 2 6 20 40 2 10 1 5 mT OP RP H Junction Temperature Tj= 85 °C Turn-ON induction BOP 6.5 17.5 10 20 – 6 10 – 3 6 mT Turn-OFF induction BRP 4.5 15 – 20 – 10 – 10 6 – 6 3 mT Hysteresis (B – B ) ∆B 2 5.5 20 40 2 10 1 5 mT OP RP H
in „Welcher Hall-Effekt-Sensor“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Infineon-TLE49X5L.pdf
Turn-OFF induction BRP 5 16 – 20 – 10 – 10 6 – 6 3 mT Hysteresis (B – B ) ∆B 2 6 20 40 2 10 1 5 mT OP RP H Junction Temperature Tj= 85 °C Turn-ON induction BOP 6.5 17.5 10 20 – 6 10 – 3 6 mT Turn-OFF induction BRP 4.5 15 – 20 – 10 – 10 6 – 6 3 mT Hysteresis (B – B ) ∆B 2 5.5 20 40 2 10 1 5 mT OP RP H
in „Transistorzündung umrüsten auf Hallsensor“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Infineon-BFP650-DS-v02_00-EN.pdf
bipolar transistor Electrical characteristics 42 39 0.15GHz 36 33 0.45GHz 30 27 24 0.90GHz B [21 1.50GHz G 1.90GHz 18 15 2.40GHz 3.50GHz 12 5.50GHz 9 6 10.00GHz 3 0 0 20 40 60 80 100 120 140 160 180 C [mA] Figure12 Maximumpowergain G max=f(IC),CE=3 V,f= parameterinGHz 42 39 0.15GHz 36 33 0.45GHz 30 27 0.90GHz B24 1.50GHz [21 G 1.90GHz 18 2.40GHz 15 3.50GHz 12 5.50GHz 9 10.00GHz 6 3 0 0.5 1 1.5 2 2.5 3 3.5 4 4.5 5 V [V] CE Figure13 Maximumpowergain G =f(V ), I =70 mA,f= parameterinGHz max CE C Datasheet
in „keysight ads bjt transistor (Bipolartransistor) Parameter“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Infineon-BFP650-DS-v02_00-EN.pdf
bipolar transistor Electrical characteristics 42 39 0.15GHz 36 33 0.45GHz 30 27 24 0.90GHz B [21 1.50GHz G 1.90GHz 18 15 2.40GHz 3.50GHz 12 5.50GHz 9 6 10.00GHz 3 0 0 20 40 60 80 100 120 140 160 180 C [mA] Figure12 Maximumpowergain G max=f(IC),CE=3 V,f= parameterinGHz 42 39 0.15GHz 36 33 0.45GHz 30 27 0.90GHz B24 1.50GHz [21 G 1.90GHz 18 2.40GHz 15 3.50GHz 12 5.50GHz 9 10.00GHz 6 3 0 0.5 1 1.5 2 2.5 3 3.5 4 4.5 5 V [V] CE Figure13 Maximumpowergain G =f(V ), I =70 mA,f= parameterinGHz max CE C Datasheet
in „Clapp Oszillator mit oder ohne Bandpassfilter“ · HF, Funk und Felder ·
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PDF
ad620.pdf
Upgrades for AD620 30,000 Part Comment L25,000 AD8221 Better specs at lower price C IN-AMPMP L (3 OP-07s) AD8222 Dual channel or differential out F20,000 F AD8226 Low power, wide input range M15,000 AD8220 JFET input P O AD620A AD8228 Best gain accuracy R10,000 AD8295 +2 precision op amps or differential
in „Probleme mit AD620 EKG“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
WebenchReportsServlettps5450-02.pdf
Mode CCM General Conduction Mode 14. Pout 60.0 W General Total output power 15. D1 Tj 113.733 degC Op_Point D1 junction temperature 16. Vout OP 12.0 V Op_Point Operational Output Voltage 17. Cross Freq 12.597 k Hz Op_point Bode plot crossover frequency 18. Duty Cycle 36.162 % Op_point Duty cycle 19. Efficiency 92.88 % Op_point Steady state efficiency 20. IC Tj 93.821 degC Op_point IC junction temperature 21. ICThetaJA 30.0 degC/W Op_point IC junction-to-ambient thermal resistance 22. IOUT_OP 5.0 A Op_point Iout operating
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P82B96_7.pdf
Product data sheet - P82B96_6 Modifications: • Table 1 ÒOrdeirng informatio: changed type number from ÒP82B96TD/S410Ó to ÒP82B96TD/S900Ó • Table 2 ÒOrdeirng option: changed type number from ÒP82B96TD/S410Ó to ÒP82B96TD/S900Ó • Figure 3 ÒPin conguration for SO8: changed type number from ÒP82B96TD/S410Ó to ÒP82B96TD/S900Ó • Table 4 ÒLimitingaluesÓ, Conditions column for symbol T: changed from ÒP82B96TD/S410Ó j to ÒP82B96TD/S900Ó • Table 5 ÒChaarcteristic, Table note [1]: changed from ÒP82B96TD/S410Ó to ÒP82B96TD
in „18 x SHT11 an welchem Mikrocontroller“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RFM12.pdf
27.Jul 07 10:14 Meas Type Equipment under Test 55 Manufacturer OP Condition Operator Test Spec Time Domain Scan (1 Range) Scan Start: 400 MHz Scan Stop: 440 MHz Detector: Trace 1: MAX PEAK Transducer: Start
in „bidirektionale RS232 Funkbrücke mit RFM12“ · Projekte & Code ·
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AD1937.pdf
...7 Control Registers............................................................................ 27 Timing Specifications ..................................................................8 Definitions................................................................................... 27 Timing Diagrams
in „Aktives Filter simulieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
07506_einbauanleitung.pdf
Stralingshoek: 160° De plus-kabel met zekeringhouder wordt via de kapcontactschakelaar aangesloten op de ongeschakelde klem 30 of Geluidsniveau: ca. 100 dB rechtstreeks op 12Vplus (na ofop de zekeringkastvan hetvoertuig). Sluit de massakabel (–) aan op een origineel massapunt Functiecontrolelampje voor
in „Schalten Per Reed Kontakt für Marderabwehr KFZ? Geht das“ · Fahrzeugelektronik ·
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PDF
2012_02-RIAA.pdf
des cellules à bobine mobile. fixée par R3 et R4. Celle de l’ampli op IC1A C1, de 0 à 10 nF. 66 05-2012 elektor Audio & hAute-fidÉlitÉ Graphiquedeperformances avec la platine MC/MM EPS110650-2seule; +0.4 +0.2 instrument du test : AudioPrecisionTwoCascadePlus2722 -0 Dual
in „Empfehlung für Phono-Vorverstärker-Schaltplan?“ · Analoge Elektronik und Schaltungstechnik ·
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Schaltplan und Oszilloskop-Simulation einer Verstärkerschaltung
amplifier https://www.mikrocontroller.net/topic/55801047472615 V4 input R1 470k V3_3 220k 1N4148 D2 op_input U1 MCP6001 output R3 100 GPIO27 .options reltol=1e-6 .options savebias.txt .options plotwinsize=0 .options cshunt=1e-14 .options ptantau=1u .options gmin=1e-10 V[op_input] V[gpio27] 2.56V 2.48V
in „PiPico Oszilloskop“ · Offtopic · · Screenshots
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Datei
z80.asm
= (24<<10) .equ OP_PUSH16 = (25<<10) .equ OP_IFNZ = (26<<10) .equ OP_IFZ = (27<<10) .equ OP_IFNC = (28<<10) .equ OP_IFC = (29<<10) .equ OP_IFPO = (30<<10) .equ OP_IFPE = (31<<10) .equ OP_IFP = (32<<10) .equ OP_IFM = (33
in „CP/M auf ATmega88“ · Mikrocontroller und Digitale Elektronik ·
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Datei
avr-m8_z80.asm
= (24<<10) .equ OP_PUSH16 = (25<<10) .equ OP_IFNZ = (26<<10) .equ OP_IFZ = (27<<10) .equ OP_IFNC = (28<<10) .equ OP_IFC = (29<<10) .equ OP_IFPO = (30<<10) .equ OP_IFPE = (31<<10) .equ OP_IFP = (32<<10) .equ OP_IFM = (33
in „CP/M auf ATmega88“ · Mikrocontroller und Digitale Elektronik ·
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thermistor.pdf
ohmresistor. in still air and www.circuitcellar.com/online CIRCUITCELLAR ONLINE August 2000 3 I use OP27 precision op-amps T (°C) R Tohm) V1(V) V OUT(V) N because of their low noise and low 25.11 1101.0 –0.1101 4.796 1965 (9) offset voltage. Because of negative 30.13 911.3 –0.0911 1.951 799 feedback,
in „regelbare Konstantstromquelle“ · Mikrocontroller und Digitale Elektronik ·
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Spiegel-Motor.pdf
R13 C11 2,2698MHz IC1 27P 4,7K Q1 2 15 XTAL2 CP-OUT R15 1K C12 3 14 27P XTAL1 CP-IN + 16 VCC C10 1µ50V C161 GND STROBO 13 BA4558 5 GND +5V 7 100n LD 12 OV1OP2 6 4 N1 R14 68K GND n5 N2 P/S 11 start C 1 11 6 FG-IN 33/45 10 560K
in „UV-Laserdrucker“ · Platinen ·
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PDF
blueline-w.pdf
:8 h $00-$07 MUX1:16 (linke Hälfte) e 1x16(8+8) $40-$47 (rechte Hälfte) o 1x20 $00-$13 v 1x40 $00-$27 n 2x8 $00-$07 $40-$47 r 2x12 $00-$0B $40-$4B d 2x16 $00-$0F $40-$4F Ä 2x20 $00-$13 $40-$53 e 2x24 $00-$17 $40-$57 c 4x16 $00-$0F $40-$4F $10-$1F $50-$5F n $00-$13 $40-$53 $14-$27 $54-$67 Kontroller HD44780 c 4x20 $00-$13 $20-$33 $40-$53 $60-$73 Kontroller KS0073 T $00-$27 $40-$67 - - 1. Kontroller (Enable 1) 4x40 - - $00-$27 $40-$67 2. Kontroller (Enable 2) 3 DOTMA TRIX LCD´S POWER-ON-RESET Standard Value The internal Power-On-Reset works only at following Item Symbol
in „LCD 204B-NLW & AtMega32“ · Mikrocontroller und Digitale Elektronik ·
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vestel_17mb95m_r2-1_sch.pdf
1 1 1 1 1 1 1 1 1 9 8 7 6 5 4 3 2 1 N SAM BASED 30070519 1 R80 2 1n C 10k 50V MEGA_DCR_OUT 2 S56 1 OP_PIN9 R220 PANEL_VCC 33k OP_PIN9 R79 19" TO 22" DOUBLE LVDS FFC OPTIONS 1 10k 2 LVDS OUT C P N P N U4 V 9 _ _ _ _ R241 L I _ _ L L _ _ _ _ _ _ _ _ L L _ _ _ _ _ _ PANEL_VCC 33k OP_PIN10 MSD8WB9BX N _
in „Vestel TV Board 17MB95M zwei SMD Bauteile finden“ · Analoge Elektronik und Schaltungstechnik ·
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LT1006.pdf
single supply designs, andhighgaincharacteristicsuntiltheoutputissaturated. such as the LM124, LM158, OP-20, OP-21, OP-220, In dual supply operations, the output stage is crossover OP-221, OP-420: distortion free. a)Whentheinputismorethanadiodedropbelowground, Sincetheoutputcannotgoexactlytoground,butcanonly
in „Probleme mit Peakdetector“ · Mikrocontroller und Digitale Elektronik ·
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AD8132.pdf
theAD8132usestwo feedback loops as compared to the single loop of conventional β2 = R G2R +G2 ) F2 op amps. Although this provides significant freedom to create The feedback factor, β1, is for the side that is driven, and the various novel circuits, basic op amp theory can still be used to feedback factor
in „Schutzbeschaltung für ADC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Platte_neu_2.pdf
/P1A RC5/D+/VP 24 BRAKE_LIGHT N DC/DC CONVERTER 100n 47u -15V_T1 E 18 VUSB RC4/D-/VM 23 LCD_ON OP_2_HIGH_SIDE_RIGHT G E6DW24R15-15 DB4 19 RD0/SPP0 RD3/SPP3 22 DB7 1 IC2A +15V_T2 DB5 20 RD1/SPP1 RD2/SPP2 21 DB6 3 GND 8 RD7 2 +5V PIC18F4455_40 74HC08N 2 7 +15V_T2 R8 T2 T6 3 6 -15V MOSFET +15V 8 k 0
in „Schaltung H-Brücke mit µC und Zubehör“ · Mikrocontroller und Digitale Elektronik ·
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Bild
Schaltplan einer Steuerung mit IC201 und Lüftersteuerung
R7211, 15K, 0.65V, R7203, 10K, VR7201, 7V, R7202, 10K, 0V, R7253, 0V, R7204, SHORT, C7219, 0.01, FAN, OP+12, R7204, FAN, R7205, +12V, D7207, R7246, R7245, R7206, R7207, 27k, 27k, 2SC1815-BL/GR, -12V, IC201, PAC006, VEE, DC1, OP-12, MTC, GND, VOLT, FANCTRL, VL, VCC, 10K, TP1, 7V, R7251, 0, -12V, D7210, RB4140
in „[S]Pioneer - PAC006B Schutzschaltung / Chip gesucht“ · Markt · · Schaltpläne
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ne5532_3_4_AppNote.pdf
five stages is the values of C5 and C6, which are responsible for setting the center frequency of op amps and show their use in some audio applications. each stage. Linear pots are recommended for R9. To simplify use of this circuit, a component value table is provided, which lists center frequencies
in „Phono Verstärker“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AN142_Audio_circuits_using_the_NE5532-3-4.pdf
five stages is the values of C5 and C6, which are responsible for setting the center frequency of op amps and show their use in some audio applications. each stage. Linear pots are recommended for R9. To simplify use of this circuit, a component value table is provided, which lists center frequencies
in „Einfacher RIIA-Entzerrvorverstärker Schaltplan gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TLE4905L.pdf
min. max. min. max. min. max. Junction Temperature Tj= —40 ˚C Turn-ON induction B 7.5 19 10 20 15 27 — 6 10 — 3 6 mT OP Turn-OFF induction BRP 5.5 17 — 20 — 10 — 27 — 15 — 10 6 — 6 3 mT Hysteresis (BOP-RP) BHY 2 6.5 20 40 30 54 2 10 1 5 mT Junction Temperature Tj 25 ˚C Turn-ON induction B 7 18 10 18 14 26 — 6 10 — 3 6 mT OP Turn-OFF induction BRP 5 16 —18 —10 — 26 — 14 — 10 6 — 6 3 mT Hysteresis (BOP-RP) BHY 2 6 20 36 28 52 2 10 1 5 mT Junction Temperature Tj= 85 ˚C Turn-ON induction BOP 6.5 17.5 9 18 13 26 — 6 10 — 3 6
in „Fragen zur Magnetkraft?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tle4905l.pdf
min. max. min. max. min. max. Junction Temperature Tj= —40 ˚C Turn-ON induction B 7.5 19 10 20 15 27 — 6 10 — 3 6 mT OP Turn-OFF induction BRP 5.5 17 — 20 — 10 — 27 — 15 — 10 6 — 6 3 mT Hysteresis (BOP-RP) BHY 2 6.5 20 40 30 54 2 10 1 5 mT Junction Temperature Tj 25 ˚C Turn-ON induction B 7 18 10 18 14 26 — 6 10 — 3 6 mT OP Turn-OFF induction BRP 5 16 —18 —10 — 26 — 14 — 10 6 — 6 3 mT Hysteresis (BOP-RP) BHY 2 6 20 36 28 52 2 10 1 5 mT Junction Temperature Tj= 85 ˚C Turn-ON induction BOP 6.5 17.5 9 18 13 26 — 6 10 — 3 6
in „Frage zu TLE 4905L (Hallsensor)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tle4905l.pdf
min. max. min. max. min. max. Junction Temperature Tj= —40 ˚C Turn-ON induction B 7.5 19 10 20 15 27 — 6 10 — 3 6 mT OP Turn-OFF induction BRP 5.5 17 — 20 — 10 — 27 — 15 — 10 6 — 6 3 mT Hysteresis (BOP-RP) BHY 2 6.5 20 40 30 54 2 10 1 5 mT Junction Temperature Tj 25 ˚C Turn-ON induction B 7 18 10 18 14 26 — 6 10 — 3 6 mT OP Turn-OFF induction BRP 5 16 —18 —10 — 26 — 14 — 10 6 — 6 3 mT Hysteresis (BOP-RP) BHY 2 6 20 36 28 52 2 10 1 5 mT Junction Temperature Tj= 85 ˚C Turn-ON induction BOP 6.5 17.5 9 18 13 26 — 6 10 — 3 6
in „Umdrehungs Sensor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TLE4905.pdf
min. max. min. max. min. max. Junction Temperature Tj= —40 ˚C Turn-ON induction B 7.5 19 10 20 15 27 — 6 10 — 3 6 mT OP Turn-OFF induction BRP 5.5 17 — 20 — 10 — 27 — 15 — 10 6 — 6 3 mT Hysteresis (BOP-RP) BHY 2 6.5 20 40 30 54 2 10 1 5 mT Junction Temperature Tj 25 ˚C Turn-ON induction B 7 18 10 18 14 26 — 6 10 — 3 6 mT OP Turn-OFF induction BRP 5 16 —18 —10 — 26 — 14 — 10 6 — 6 3 mT Hysteresis (BOP-RP) BHY 2 6 20 36 28 52 2 10 1 5 mT Junction Temperature Tj= 85 ˚C Turn-ON induction BOP 6.5 17.5 9 18 13 26 — 6 10 — 3 6
in „Hallsensor TLE 4905 - Schaltung“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Z80int-jmp.asm
instr fetch_nop, op_nop, store_nop ;24 ;NOP instr fetch_nop, op_nop, store_nop ;25 ;NOP instr fetch_nop, op_nop, store_nop ;26 ;NOP instr fetch_nop, op_nop, store_nop ;27 ;NOP instr fetch_nop, op_nop, store_nop ;28 ;NOP
in „CP/M auf ATmega88“ · Mikrocontroller und Digitale Elektronik ·
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Bild
LTspice Simulationsfehlermeldung
lnps01_neg.net Start Time: Wed Feb 12 09:55:46 2025 solver = Normal Maximum thread count: 12 tnom = 27 temp = 27 method = modified trap Instance "U4:M1" Width narrower than recommended for a level 3 MOSFET. Early termination failed to find .op point. (Use ".op noopiter" to skip.) Starting Gmin stepping
in „LTSpice 24, Simulation blockiert“ · Analoge Elektronik und Schaltungstechnik · · Screenshots
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PDF
EPOS2_Communication_Guide_En.pdf
Read a data segment of the object initiated with the command “InitiateSegmentedRead”. Request Frame OpCode 0x14 Len USB 1 Len-1 RS232 0 not used [Bit 0…5] – (Low) BYTE ControlByte toggle [Bit 6] Toggle Bit Parameters not used [Bit 7] – (High) BYTE Dummy Byte without meaning Response Frame OpCode 0x00
in „CRC Funktion übersetzen (so das diese auf GCC läuft)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Motorola_MC44353_MC44354_MC44355_1998.pdf
TypicalPerformance d MaximumSpecificationLimit 50 –2.0 –4.0 –6.0 MinimumSpecificationLimit 4521 24 27 30 33 36 39 42 45 48 51 54 57 60 63 66 69 –8.21 24 27 30 33 36 39 42 45 48 51 54 57 60 63 66 69 ChannelNumber ChannelNumber 6 MOTOROLA ANALOG IC DEVICE DATA MC44353 MC44354 MC44355 AUDIO CHARACTERISTICS
in „Pollin ist pleite :-(“ · Offtopic ·
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Datei
All.txt
2 A4 1AMP_P7+4N DIL08 OP AMP 2 A3 1AMP_P7+4N DIL08 OP AMP 2 A2 1AMP_P7+4N DIL08 OP AMP 2 A15 1AMP_P7+4N DIL08 OP AMP 2 A14 1AMP_P7+4N DIL08 OP AMP 2 A13 1AMP_P7+4N DIL08 OP AMP 2 A12 1AMP_P7+4N DIL08 OP AMP 2 A1 1AMP_P7+4N DIL08
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
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PDF
KM416C1204C.pdf
ADDRESS ADDR ADDRESS RAL tRRH tRCS tRCH V IH- W tCPA V IL- tAA tCAC tCAC tCPA AA AA tCAC CPA tOCH tCHO tOEP V IH - tOEA OE tOEA V IL- CAC OEP tDOH DQ0 ~ DQ7 tRAC tOEZ tOEZ tOEZ VOH - VALID VALID VALID VALID VALID VOL - DATA-OUT DATA-OUT DATA-OUT DATA-OUT DATA-OUT tOLZ CLZ CAC tOEP tDOH DQ8 ~ DQ15 tRAC tOEZ
in „Suche DRAM Chips“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LTspiceIV_Anleitung.pdf
...................................................................................................27 1.5.3. DC Sweep ........................................................................................................28 1.5.4. Die Gleichstrom‐Arbeitspunktanalyse (DC op pnt) .....................
in „LTSpice - Anfängerprobleme“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AD7376.pdf
CODE = 40H 01H RAB = 1MV B –42 V = +15V –42 20m Lw HO2 s A W VDD= –15V A W –48 VAMPL= 50mVrms –48 B OP275 RAB= 100kV B OP275 –54 1k 10k 100k 1M 1k 10k 100k 1M FREQUENCY – Hz FREQUENCY – Hz Figure 20. 100 k Gain vs. Frequency Figure 21. –3 dB Bandwidth vs. Figure 22. Clock Feedthrough vs. Code Nominal
in „1-10 V digitales Potentiometer“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AD815.pdf
a differential output voltage feedback 1/2 11 AD815 op amp out of the pair of current feedback op amps in the AD815. 50⍀ 10 This circuit, drawn in Figure 55, can be used as a high power 1k⍀ 50⍀ differential line driver, such as required for ADSL (asymmetrical digital subscriber loop) line driving. 200⍀ 1k⍀ RL Each of the AD815’s op amps is configured as a unity gain follower by the feedback resistors (R )A Each op amp output 151/2 100⍀ AD815 14 also drives the other as a unity gain inverter via the two R sB 16 12 creating a totally
in „Zusammenschalten möglich? OPV!“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AD815_Rev_D.pdf
a differential output voltage feedback 1/2 11 AD815 op amp out of the pair of current feedback op amps in the AD815. 50⍀ 10 This circuit, drawn in Figure 55, can be used as a high power 1k⍀ 50⍀ differential line driver, such as required for ADSL (asymmetrical digital subscriber loop) line driving. 200⍀ 1k⍀ RL Each of the AD815’s op amps is configured as a unity gain follower by the feedback resistors (R )A Each op amp output 151/2 100⍀ AD815 14 also drives the other as a unity gain inverter via the two R sB 16 12 creating a totally
in „Ausgangsstufe Operationsverstärker“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
marantz-sr8200-9200-service-manual.pdf
PRE OUT 22/50V OP-AMP2/2 7 100 47/25V 5 -15V D CE19 RE19 RE21 RE27 N 9 QE01 22/50V CE40 22/50V OP-AMP2/2 7 G FL 6 NJM2068DD 100p QE03 47/25V 220 220 33 CE25 7 RE05 6 NJM2068DD 470p MAIN IN 10K GND +15V +15V 8.2K CE73
in „MARANZ RC3200 datenkabel belegung gesucht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Elektronik.pdf
C34 C39 C24 0 5 30k dnp 10u 100n 1 R dnp 100n -3V3 GND GND GND GND GND Pt1000: 0-150deg = 0V-2.5V OpAmp1 OpAmp2 Pt1000: 0-150deg = 0V-2.5V 820 +3.3V +3.3V 1 V R65 0.3V - 2.5V GND GND 2 D+ +2V5 +2V5 +2V5 +2V5 N P_diff OpAmp1 d 3 G 1k n 4 4 4 / 4 0 4 i8 R66 1 C R25 R47 V V _ 5 5 R5 R11 U2A R31 R39 U2B
in „50ns Delay mit STM32H7“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TFH-Board_ONE_-_Sys-Doku_-_V2-3.pdf
Sys-Doku - V2-3.doc PalmTec - Mikrocontroller-Lernsysteme Inh.: Prof. Dr. Bernd vom Berg, Mintarder Weg 27, 45219 Essen-Kettwig, www.palmtec.de Schaltplan des TFH-Board ONE - 3 - TFH-Board ONE - Sys-Doku - V2-3.doc PalmTec - Mikrocontroller-Lernsysteme Inh.: Prof. Dr. Bernd vom Berg, Mintarder Weg 27, 45219
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PDF
TFH-Board_ONE_-_Sys-Doku_-_V2-3.pdf
Sys-Doku - V2-3.doc PalmTec - Mikrocontroller-Lernsysteme Inh.: Prof. Dr. Bernd vom Berg, Mintarder Weg 27, 45219 Essen-Kettwig, www.palmtec.de Schaltplan des TFH-Board ONE - 3 - TFH-Board ONE - Sys-Doku - V2-3.doc PalmTec - Mikrocontroller-Lernsysteme Inh.: Prof. Dr. Bernd vom Berg, Mintarder Weg 27, 45219
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PDF
Platte_neu_3.pdf
15V 6 RA3/AN3/VREF+ RB3/AN9/CCP2/VPO 35 C34 + C33 100n 7 RA4/T0CKI/CIOUT/RCV RB2/AN8/INT2/VMO 34 PWM OP_1_HIGH_SIDE_LEFT BAT RA5/AN4/SS/HLVDIN/C2OUT RB1/AN10/INT1/SCK/SCL RPM 47u +15V_T1 +15V_T1 8 RE0/AN5/CK1SPP RB0/AN12/INT0/LFT0/SDI/SDA3 BRAKE_SIGNAL 100n 8 R7 C T1 5 9 RE1/AN6/CK2SPP VDD 32 +5V X 1 X8
in „Schaltung H-Brücke mit µC und Zubehör“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2304140030_SOC-Shenzhen-SinOne-Microelectronics-SC93F8331M16U_C221434.pdf
相关 SFR 的读写操作由 OPINX 和 OPREG 两个寄存器进行控制,各 Option SFR 的具体位置由 OPINX 确定,如下表所示: 符号 地址 说明 7 6 5 4 3 2 1 0 OP_HRCR 83H@FFH 系统时钟改变寄存器 OP_HRCR[7:0] OP_CTM0 C1H@FFH Customer Option 寄存器ENWDT ENXTL SCLKS[1:0] DISRSTDISLVR LVRS[1:0] OP_CTM1 C2H@FFH Customer Option 寄存器VREFS - - - IAPS[1:0] - - OP_HRCR (83H@FFH) 系统时钟改变寄存器
in „Saunasteuerung "smart" machen - Taster aus Tastenfedern / Kontaktfedern kapazitiv“ · Haus & Smart Home ·
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SC93F8331M16U_C221434.pdf
相关 SFR 的读写操作由 OPINX 和 OPREG 两个寄存器进行控制,各 Option SFR 的具体位置由 OPINX 确定,如下表所示: 符号 地址 说明 7 6 5 4 3 2 1 0 OP_HRCR 83H@FFH 系统时钟改变寄存器 OP_HRCR[7:0] OP_CTM0 C1H@FFH Customer Option 寄存器ENWDT ENXTL SCLKS[1:0] DISRSTDISLVR LVRS[1:0] OP_CTM1 C2H@FFH Customer Option 寄存器VREFS - - - IAPS[1:0] - - OP_HRCR (83H@FFH) 系统时钟改变寄存器
in „Saunasteuerung "smart" machen - Taster aus Tastenfedern / Kontaktfedern kapazitiv“ · Haus & Smart Home ·
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sbfa002.pdf
(3) OP AMP typ typ typ max max at 10kHz C CM MODEL (MHz) (kHz) (V/ s) ( V) ( V/°C) (nV/√Hz) (pF) OPA177 0.6 3 0.2 10 ±0.1 8 1 OPA27 8 30 1.9 25 ±0.6 2.7 1 OPA2107 dual(2) 4.5 280 18 500 ±5 8 4 (2) OPA602 6
in „Rechteck Sinus“ · Analoge Elektronik und Schaltungstechnik ·
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opa2134.pdf
Output Amplitude 0.01 1 VO= 10Vrms VS= ±18V THD < 0.01% RL = 2kW RL = 2kW OPA134 – 11.7Vrms f = 1kHz OP176 – 11.1Vrms ) ) 0.1 ( 0.001 ( e e o o N VS= ±16 N D D 0.010 H 0.0001 H OPA134 OPA134 T T OP176 VS= ±17 VS= ±18 0.001 0.00001 0.0005 Baseline 20 100 1k 10k 20k 0.1 1 10 20 Frequency (Hz) Output Amplitude
in „Unerwünschtes Rauschen bei Allpassfiltern“ · Analoge Elektronik und Schaltungstechnik ·
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OPAmp_Layout.pdf
good thermoelectric voltage cancellation on the PCB presents difficulties. It is best to use a dual op amp, so theFResistors have to be on both sides of the R G R F op amp, while G connects both sides; the distances VREF between resistors are too large to be practical (thermal + U1 V gradient is not constant
in „Transimpedanzwandler für Photodiode“ · Analoge Elektronik und Schaltungstechnik ·
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STM32F10xxx__20xxx__21xxx_L1xxxx_Cortex-M3_programming_manual.pdf
store with immediate offset, pre-indexed immediate offset, or post-indexed immediate offset. Syntax op{type}{cond} Rt, [Rn {, #offset}]; immediate offset op{type}{cond} Rt, [Rn, #offset]!; pre-indexed op{type}{cond} Rt, [Rn], #offset; post-indexed opD{cond} Rt, Rt2, [Rn {, #offset}]; immediate offset, two words opD{cond} Rt, Rt2, [Rn, #offset]!; pre-indexed, two words opD{cond} Rt, Rt2, [Rn], #offset; post-indexed, two words where: • ‘op’ is either LDR (load register) or STR (store register) • ‘type’ is one of
in „Einstieg in STM32 : STM32F103C8T6 --> Kompilieren und Flashen?“ · Mikrocontroller und Digitale Elektronik ·