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Bestandsliste_mit_Preisen1.pdf
100V RM=2.5 7 Stk 0,03 € 0,19 € EGRU47PF Kondensator Keramik 47pF 100V RM=5mm 128 Stk 0,03 € 3,84 € K56N5 Kondensator Keramik 56nF 500V RM=5mm 4 Stk 0,03 € 0,13 € EGPU56PF Kondensator Keramik 56pF 100V RM=2.5 169 Stk 0,03 € 5,07 € EGPU6800PF Kondensator Keramik 6.8nF 100V RM=2.5 39 Stk 0,03 € 1,17 € KDPU50.068U
in „Auflösung Elektronik Shop“ · Markt ·
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Bestandsliste.pdf
7Stk 0,03 € 0,19 € 1235 EGRU47PF Kondensator Keramik 47pF 100V RM=5mm 128 Stk 0,03 € 3,84 € 1236 K56N5 Kondensator Keramik 56nF 500V RM=5mm 4Stk 0,03 € 0,13 € 1237 EGPU56PF Kondensator Keramik 56pF 100V RM=2.5 169Stk 0,03 € 5,07 € 1238 EGPU6800PF Kondensator Keramik 6.8nF 100V RM=2.5 39Stk 0,03 € 1,17
in „Auflösung Elektronik Shop“ · Markt ·
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TL431.pdf
V 1.0 mF 1.0 kW V − V Range LM11 Vout * Volume + 0.05 mF 47 k −5.0 V *Thermalloy Tone RX *THM 6024 56 k 10 k 25 k R + V D W Range *Heatsink on x out V *LP Package Figure 28. Linear Ohmmeter Figure 29. Simple 400 mW Phono Amplifier http://onsemi.com 9 TL431, A, B Series, NCV431A, B 150 mH @ 2.0 A Vin 10 V to 20 V TIP115 Vout= 5.0 V I = 1.0 A out 1.0 k 4.7 k 4.7 k 1N5823 + MPSA20 0.01mF 100 k 2200 mF 4.7 k 470 mF + 0.1 mF 2.2 k 10 51 k Figure 30. High Efficiency Step−Down Switching Converter Test Conditions Results Line Regulation Vin 10 V to 20 V, I o 1.0 A 53 mV (1.1%) Load
in „Linenarregeler“ · Analoge Elektronik und Schaltungstechnik ·
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LTC_6240_1_2.pdf
nVP-P en Input Noise Voltage Density f = 1kHz 7 10 nV/√Hz in Input Noise Current Density (Note 8) 0.56 fA/√Hz R Input Resistance Common Mode 1012 Ω IN C IN Input Capacitance f = 100kHz Differential Mode 3.5 pF Common Mode 3 pF V CM Input Voltage Range Guaranteed by CMRR l 0 3.5 V CMRR Common Mode Rejection
in „Meßverstärker für 1/f-Rauschen 0.1 - 10 Hz“ · Analoge Elektronik und Schaltungstechnik ·
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KlangPlusTon_2007-01.pdf
3,51 Ohm Cms: 0,35 mm/N Qms: 4,15 Qms: 4,04 Qms: 3,81 2. Das Frequenzweichen-Schaltbild der Mms: 38,56 g Qes: 0,64 Qes: 0,63 Qes: 1,17 Schmitti Memorial enthält einen kleinen, 12 Vas: 7,65 l Qts: 0,56 Qts: 0,55 Qts: 0,90 aber entscheidenden Fehler. Der Mitteltöner Sd: 125 cm 2 BxL: 10,66 Tm BxL: 5,37
in „Symasym hohe Ausgangsspannung“ · Analoge Elektronik und Schaltungstechnik ·
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Linear_Current_Sense_AN105.pdf
0×35 LT1797 + 0.1µF SETTLES TO 1% IN 2µs, BZX84C6V8 1V OUTPUT STEP VZ= 6.8V 0.003Ω 1% 3W (–42V TO –56V) – + 1797 TA01 LOAD SENSE This amplifier configuration is essentially the comple- tance (1k Ω in this circuit). In this circuit, the output volt- mentary implementation to the classic high-side configu
in „'High Side' Strom Messen - Geht das so ?“ · Analoge Elektronik und Schaltungstechnik ·
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AN105.pdf
0×35 LT1797 + 0.1µF SETTLES TO 1% IN 2µs, BZX84C6V8 1V OUTPUT STEP VZ= 6.8V 0.003Ω 1% 3W (–42V TO –56V) – + 1797 TA01 LOAD SENSE This amplifier configuration is essentially the comple- tance (1k Ω in this circuit). In this circuit, the output volt- mentary implementation to the classic high-side configu
in „High-Side Strommessung AVR (Shunt)“ · Mikrocontroller und Digitale Elektronik ·
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ttester.pdf
8MHz PD1(PCINT24/TXD0) serial 6 R 6 C8 PD2(PCINT26/RXD1) 16 10k 33k 12 17 T1 XTAL2 PD3(PCINT27/TXD1) MPSA65 10−30p PD4(PCINT28/OC1B) 18 10k 6 3 19 1 k R17 PD5(PCINT29/OC1A) 20 R12 Ubat R 3 VCC PD6(OC2B/ICP) R8 T2 27k PD7(PCINT31/OC2A) 21 680 1 10 8 470k 2 GND LED1 Test BC547 VCC 1 R 0 +5V MCP1702−5.0 C9
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ttester.pdf
8MHz PD1(PCINT24/TXD0) serial 6 R 6 C8 PD2(PCINT26/RXD1) 16 10k 33k 12 17 T1 XTAL2 PD3(PCINT27/TXD1) MPSA65 10−30p PD4(PCINT28/OC1B) 18 10k 6 3 19 1 k R17 PD5(PCINT29/OC1A) 20 R12 Ubat R 3 VCC PD6(OC2B/ICP) R8 T2 27k PD7(PCINT31/OC2A) 21 680 1 10 8 470k 2 GND LED1 Test BC547 VCC 1 R 0 +5V MCP1702−5.0 C9
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ttester.pdf
8MHz PD1(PCINT24/TXD0) serial 6 R 6 C8 PD2(PCINT26/RXD1) 16 10k 33k 12 17 T1 XTAL2 PD3(PCINT27/TXD1) MPSA65 10−30p PD4(PCINT28/OC1B) 18 10k 6 3 19 1 k R17 PD5(PCINT29/OC1A) 20 R12 Ubat R 3 VCC PD6(OC2B/ICP) R8 T2 27k PD7(PCINT31/OC2A) 21 680 1 10 8 470k 2 GND LED1 Test BC547 VCC 1 R 0 +5V MCP1702−5.0 C9
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ttester.pdf
8MHz PD1(PCINT24/TXD0) serial 6 R 6 C8 PD2(PCINT26/RXD1) 16 10k 33k 12 17 T1 XTAL2 PD3(PCINT27/TXD1) MPSA65 10−30p PD4(PCINT28/OC1B) 18 10k 6 3 19 1 k R17 PD5(PCINT29/OC1A) 20 R12 Ubat R 3 VCC PD6(OC2B/ICP) R8 T2 27k PD7(PCINT31/OC2A) 21 680 1 10 8 470k 2 GND LED1 Test BC547 VCC 1 R 0 +5V MCP1702−5.0 C9
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AoE3_chapter9.pdf
0.2,5 0.77 tt f,e3 TPS789, 90xx - - - - - 5 - - - 5 • • - - Δ - - - 2.7-10 1.5-3.0 0.1, 0.05 3 0.017 56 3 1000 4.7 0.2,5 0.56 TPS788xx - - - - - 5 - - - 2 • • s - Δ - - - 2.7-13.5 2.5,3.3 0.15 3tt 0.017 56f,e1all 1000 4.7 0.2,5 1.09 ADP667 - - 8 8 - - - - • 1 • - - - x v - • 3.5-16.5 1.3-16 0.25 4tt 0.02
in „Labornetzgerät - Fragen zum Schaltplan“ · Analoge Elektronik und Schaltungstechnik ·