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Schottky_crossreference.pdf
MBR4035PT 40CPQ035 MBR4045PT 40CPQ045 MBR4050PT 40CPQ050 MBR4060PT MBR4060WT MBR735 MBR735 MBR745 MBR745 MBRS130L 10BQ030 MBRS140 10BQ040 MBRS140 CMSH1-40 MBRS340 30BQ040 S100 10MQ100N S310 30BQ100 SB1100 11DQ10 SB140 11DQ04 SB150 11DQ05 SB160 11DQ06 SB3100 31DQ10 SB330 31DQ03 SB340 31DQ04 SB350 31DQ05 Schottky
in „Ersatztyp für Schottky Diode 11dq06“ · Mikrocontroller und Digitale Elektronik ·
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MBRS140T3-D.pdf
MBRS140T3 Preferred Device Surface Mount Schottky Power Rectifier . . . employing the Schottky Barrier principle in a large area metal–to–silicon power diode. State–of–the–art geometry features epitaxial
in „Target: Meldung im Layouteditor: Gehäuse bitte überprüfen“ · Platinen ·
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LTC1174.pdf
10 145 2 LTC1174HV-5 5 5V 12 160 LB OUT SW † 135mA AT 13 180 L1A V = 9V GND † 100 H IN 4 L1B 3 2 MBRS140T3 100 H MBRS140T3 + 100 F* CTX100-4 L1A 16V L1B 4 1 + 100 F* –VOUT 16V –5V 1174 T135mA AT V = 9V IN 9V to 12V, –12V Outputs INPUT VOLTAGE 4V TO 12.5V * AVX TAJD226K035 ** WIMA MKS2 + 22 F* † 6 0.1
in „DC/DC Wandler LTC1174 Verhalten bei Shutdown?“ · Mikrocontroller und Digitale Elektronik ·
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behringer_nu3000.pdf
1 8 100 7 10 MBRS1100TR DSCH SHDN 1 0R25 R40 D9 D6 R 1k 1 8 SFST COMP 9 0540 0540 T ACGND 0 4 R17 R36 2 D22 D41 E 1 2 0 1 T3 1 MBRS1100TR R43 P R 1 2 R 7 4403 4148 O 0 C19 R121 6 10/50 D35 SHUT ACGND VREF VCC MBRS1100TR ACGND F+18V C DCPA kR38 0 R29 D30 C 2 E C11 R12 C32 4 1 D82 R P 470p 560p MBRS1100TR OPEN O D83 4k7 VREF 1 T16 OPEN R122 MCR100-6 IC3-C TR4-D D36 C58 1k IC3-A ACGND D34 D24 470/25 6 - + 11 4148 4148 8 VH R34 R31 R26 1 13 8 - 7 10 1 MBRS1100TR 4 C226 C225 0 5 470k 470k 39k + -
in „[S] Schematic Behringer NX3000“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
lt1305-1504096.pdf
s Output Line Regulation 1.8V < V < 6V 0.06 0.15 %/V IN VCESAT Switch Saturation Voltage ISW = 1A 140 280 mV Switch Leakage Current VSW = 5V, Switch Off 0.1 10 A Peak Switch Current VIN 2V 1.35 2 2.35 A 1.20 2.50 A VIN 5V 1.15 2.15 A LBI Trip Voltage (Note 2) 1.21 1.24 1.27 V LBI Input Bias Current
in „[V] Konvolut (16) ältere LinearTech StepUps LT1302, 1305, SO8 (10€)“ · Markt ·
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Datei
easymx4_traegerboard_parts.txt
-MELF DMELF diodes_1 1 625-BYG21M-E3 D6 1N4007-MELF 1N4007-MELF DMELF diodes_1 1 625-BYG21M-E3 D7_MBRS140T3 MBRS320T3 MBRS320T3 SMC diode 1 863-MBRS320T3G E7 10uF CAP_TANTALUMB/3528_WAVE EIA3528-21/B-W microbuilder 1 581-TAJB106K016 E8 10uF CAP_TANTALUMB/3528_WAVE EIA3528-21/B-W microbuilder 1 581-TAJB106K016
in „Schaltungsentwurf benötige Meinungen und Verbesserungsvorschläge.“ · Platinen ·
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LM2621.pdf
, Tantalum D1 Motorola MBRS140T3 L Vishay/Dale ILS-3825-03 9 www.national.com 2 6 2 EXAMPLE 3. 3.3V/0.5A SEPIC Regulator L 10093422 U1 National LM2621MM C1 Vishay/Sprague 595D226X06R3B2T, Tantalum C2 Vishay/Sprague 595D686X0010C2T, Tantalum D1 Motorola MBRS140T3 L1, L2 Coilcraft DT1608C-682 C S Vishay/Vitramon VJ1210Y105M , Ceramic www.national.com 10 L M Physical Dimensions inches (millimeters) 2 unless otherwise noted 6 2 1 L w n p u t V l a g e , t
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Schaltplan und Oszilloskop-Simulation eines LT1776 Schaltkreises
L1, 3.3uF, R1, 20k, C2, 10uF, C3, 10uF, U1, R2, 1k, C1, 100p, R3, 22k, C5, 0.0022uF, L2, 68uF, D1, MBRS140, L3, 3.3uF, R4, 15k, C7, 10uF, C8, 10uF, R5, 3k, R6, 400, 27V, 24V, 21V, 18V, 15V, 12V, 9V, 6V, 3V, 0V, 270uF, 275uF, 280uF
in „step down überschwingen beim einschalten“ · Analoge Elektronik und Schaltungstechnik · · Screenshots
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Bild
Schaltplan und Oszilloskop-Simulation eines Netzteils
SUPPLY L1 2.2u R1 20k Vin C4 10u C3 10u C2 100n U1 LT1776 Vic SW L2 68u L3 3.3u FB R4 15k C8 10u D1 MBRS140 C7 10u R6 400 GND R3 1k2 C1 100p C5 0.0022u V1
in „step down überschwingen beim einschalten“ · Analoge Elektronik und Schaltungstechnik · · Screenshots
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Schaltplan einer Audio-Endstufe mit Transformator und Netzteil
C16 10u 25v, L3, L4, 1616FPS 68u, C17, C18, C19, C20, C21, C22, C23, J6 +5.5...+18V, J5, VD1, QQ1, MBRS140, TEC 2-1222WI, R21 56k, C10 10v, R17 27k, C7 470n 16v, DA2.2, R20 30k 0.1, C9 33p, R28 51R
in „Instrumentenverstärker mit Übertrager?“ · Analoge Elektronik und Schaltungstechnik · · Schaltpläne
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PDF
MAX5035-Datasheet.pdf
for the input peak-to- B240 Central Semiconductor peak ripple of 100mV or less yielding an ESR and MBRS240, MBRS1540 ON Semiconductor capacitance value of 80mΩ and 51µF, respectively. Low-ESR, ceramic, multilayer chip capacitors are recom- 30BQ060 IR B360A Diodes, Inc. mended for size-optimized application
in „KICAT Footprint SO8E oder SO8N“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Values.txt
13 16Mhz 13 10 13 0.1u 13 0 12 TLC5940-PWPOTV 12 SR104 12 IRFP460 12 IRF540 12 HD-H103 12 BL 12 BD140 12 AMP 12 7-SEG_SA10-21 12 74LS08N 12 47µ 12 4052D 12 35701331 12 27pF 12 27k 12 2,2n 12 22µ 12 1N4446 12 1,8k 12 1.2 12 10 µF 11 TOBU3 11 RS232 11 MEGA8-AI 11 IR 11 4.7u 11 4,7µ 11 39 11 33K 11 2u2
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
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Pingu920-0.8.0.pdf
TIOB2 A4 138 A5 6 5 RESET 70 PA23/TXD2/IRQ3 A5 139 4 3 PA24/SCK2/PCK1 A6 A6 TWI-D 71 PA25/TWD/IRQ2 A7 140 A7 2 1 TWI-CK 72 PA26/TWCK/IRQ1 Check http://www.mikrocontroller.net/topic/126683 A8 141 A8 R3 1k MCCK 73 PA27/MCCK/TCLK3 A9 142 A9 MCCDA 74 PA28/MCCDA/TCLK4 for current schematics A10 143 A10 R4 MCDA0
in „"Pingu920" - ARM9 Linux Embedded zum selbst Löten“ · Mikrocontroller und Digitale Elektronik ·
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Pingu920-0.9.2.pdf
TIOB2 A4 138 A5 6 5 RESET 70 PA23/TXD2/IRQ3 A5 139 4 3 PA24/SCK2/PCK1 A6 A6 TWI-D 71 PA25/TWD/IRQ2 A7 140 A7 2 1 TWI-CK 72 PA26/TWCK/IRQ1 Check http://www.mikrocontroller.net/topic/126683 A8 141 A8 R3 1k MCCK 73 PA27/MCCK/TCLK3 A9 142 A9 MCCDA 74 PA28/MCCDA/TCLK4 for current schematics A10 143 A10 R4 MCDA0
in „"Pingu920" - ARM9 Linux Embedded zum selbst Löten“ · Mikrocontroller und Digitale Elektronik ·
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project__2_.pdf
1 2 3 4 5 6 7 8 G A J D1 i VDD MBRS140T3 / BAT254 V C1 Vishay 595D686X0010C2T C3 Rf1 U2 68uF Cap 150K 7 8 L2 33pF BOOT SW Vin A R2 4 DT1608C-682 C4 A BSS84 Res2 D2 FB 6.8uH 595D226X06R3B2T / Case C Cond. Q1 1K R3 33uF Diode GND Res2 2
in „LCD + nRF24L01 = EMV/HF Probleme?“ · HF, Funk und Felder ·
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PDF
LT1300.pdf
CD54-100 74 C1 =AVX TPSD107M010R0100 1 10 100 500 OR SANYO OS-CON 16SA100M LOAD CURRENT (mA) D1 =MBRS130LT3 LT1300 TA2 OR 1N5817 1 LT1300 W W W U U W U ABSOLUTE MAXIMUM RATINGS PACKAGE/ORDER INFORMATION V INltage .............................................................. 10V TOP VIEW ORDER PART
in „Regulierte 3.3v spannung bei 3.7v batterie?“ · Analoge Elektronik und Schaltungstechnik ·
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LM2594HVM-5.0_Datenblatt.pdf
Schottky V tky Recovery Recovery 20V All of 1N5817 All of these these diodes are SR102 diodes are MBRS130 rated to at1N5818 rated to at 30V least 60V. SR103 least 60V. 11DQ03 MBRS140 MURS120 1N5819 MUR120 40V 10BQ040 10BF10 SR104 HER101 10MQ040 11DQ04 11DF1 50V MBRS160 SR105 or 10BQ050 MBR150 more 10MQ060 11DQ05 MBRS1100 MBR160 10MQ090 SB160 SGL41-60 11DQ10 SS16 FIGURE 11. Diode Selection Table Block Diagram DS012439-21 FIGURE 12. Ground —Circuit ground. Application Information Output —Internal switch. The voltage
in „Idee für ein ||transportables|| Handyladegerät“ · Analoge Elektronik und Schaltungstechnik ·
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drv103.pdf
110 +VS= 30V 105 +VS= 40V (Absolute Maximum) 3.3 100 –60 –10 40 90 140 –60 –10 40 90 140 Temperature (°C) Temperature (°C) DRV103 5 SBVS029A TYPICAL CHARACTERISTICS (Cont.) At T = +25°C and V = +24V, unless otherwise noted. C S OSCILLATOR FREQUENCY MINIMUM DELAY vs JUNCTION
in „PWM Signal wie stell ich das ein?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM2575TADJ.PDF
A VR SMT THT SMT THT SMT THT SMT THT 20 V SK12 1N5817 SK32 1N5820 SR102 MBRD320 MBR320 SR302 30 V MBRS130LT3 1N5818 SK33 1N5821 MURS320T3 SK13 SR103 MBRD330 MBR330 MURS120T3 MUR120 11DQ03 SR303 11DF1 31DQ03 HER102 40 V MBRS140T3 1N5819 MBRS340T3 1N5822 10BF10 MURD320 MUR320 SK14 SR104 MBRD340 MBR340 30WF10 10BQ040 11DQ04 30WQ04 SR304 MUR420 10MQ040 SK34 31DQ04 50 V MBRS150 MBR150 MBRD350 MBR350 31DF1 10BQ050 SR105 SK35 SR305 HER302 11DQ05 30WQ05 11DQ05 http://onsemi.com 14 LM2575 EXTERNAL COMPONENTS Input Capacitor (C ) (below 0.05 ▯), there is a possibility of an
in „3W Luxeon Led energiesparend dimmen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
drv103.pdf
110 +VS= 30V 105 +VS= 40V (Absolute Maximum) 3.3 100 –60 –10 40 90 140 –60 –10 40 90 140 Temperature (°C) Temperature (°C) DRV103 5 SBVS029A TYPICAL CHARACTERISTICS (Cont.) At T = +25°C and V = +24V, unless otherwise noted. C S OSCILLATOR FREQUENCY MINIMUM DELAY vs JUNCTION
in „Widerstände dimensionieren.“ · Analoge Elektronik und Schaltungstechnik ·
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LCD_Controller.pdf
- 47..68uH/1.2A Nicht mehr als 360 mA einspeisen Coilcraft DO3308P VLED+ merke: U(R1) = 100 mV D1 MBRS140 0R1 = 1 Ampere +12V 0R2 = 0.5 Ampere R2 0.30 R 0R3 = 0.33 Ampere 0R47 = 0.21 Ampere 0R68 = 0.15 Ampere 5 4 VIN CSN 1 1R0 = 0.1 Ampere SW C7 C8 22u/25 22u/25 PAD P 1R5 = 0.067 Ampere 3 DIM GND 2 U3
in „STECCY - ZX-Spectrum-Emulator mit STM32“ · Projekte & Code ·
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AND8391-D.pdf
vs. Ambient Temperature (SOT−223) @ T = 1505C J 180 1.5 160 Power Curve 2.0 oz Cu qJA1.0 oz Cu 1.4 140 Power Curve 1.0 oz Cu 1.3 120 ) 1.2 / 100 ( 1.1 A 80 qJA 2.0 oz Cu q 1 60 0.9 40 0.8 20 T = 25°C A 0 0.7 0 100 200 300 400 500 600 700 COPPER HEAT SPREADER AREA (mm 2) Figure 4. SOT−223 q and P vs.
in „12 Kanäle a 12 x 1W LEDs dimmen /steuern“ · Mikrocontroller und Digitale Elektronik ·
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LT3757_Boost-Sepic-Flyback-Invert.pdf
VFBX = –0.85V 11 μA Oscillator Switching Frequency RT = 41.2k to GND, FBX= 1.6V 270 300 330 kHz RT= 140k to GND, VFBX = 1.6V 100 kHz RT= 10.5k to GND, VFBX= 1.6V 1000 kHz RT Voltage V = 1.6V 1.2 V FBX MinimumOff-Time 220 ns MinimumOn-Time 220 ns SYNC Input Low 0.4 V SYNC Input High 1.5 V SS Pull-Up Current
in „Datenblätter von Linear Technologies“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
nkat20-21.pdf
7696/220 -.250 -.140 -.093 -.069 27 nH 19 1.20 200 1.8 7696/270 -.250 -.140 -.093 -.069 33 nH 18 1.40 170 1.8 7696/330 -.250 -.140 -.093 -.069 39 nH 18 1.70 150 1.8 7696/390 -.250 -.140 -.093 -.069 47 nH 17 2.10 140 1.8
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PDF
lt1157.pdf
Si9956DY VS 7,8 1 IN1 G1 3.3V/150mA LTC1157 2 IN2 G2 5,6 3 GND 2N7002 Si9956DY 4 *20 H 120 F/10V MBRS12OT3 + 1 2 3 2N7002 1M ILIM VIN SW1 *20 H 6 4 39 + AO SW2 ZTX869-M1 180 F LT1111 174k 140k 6V 7 8 1% 1% SET FB GND 105k + 100 F 430k 5 47 1% 6V LTC1157 • TA07 *CTX20-3 COILTRONICS Information furnished
in „3V Gate-Treiber gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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XMega-FPGA_V0.0.01.pdf
PROG_TDI 4 k 4 k 4 C141 R 1 R1 1 4 k SV100 PROG_SEL_A/B R 1 100n/50V C_SD_MMC_SWITCH/2.5B 2 1 8 D P C J SD140 0V T 0V C 4 VCC T B D B C_SD_FLASH_MISO/2.5B 7 DO D C_SD_FLASH_MOSI/2.5B 3 DI A C_SD_FLASH_SCK/2.5B 5 SCLK C C_SD_CS/2.5B 2 CS 0 3 1 R 6*5 V R 0 VSS + TFP09-2-12B 1C 2 4 100R 0V V C101 5 1A 1Y FPGA_TMS
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M48Z02.pdf
ns tWLQZ WRITE enable low to output Hi-Z 25 50 60 ns AVWH Address valid to WRITE enable high 60 120 140 ns tAVEH Address valid to chip enable high 60 120 140 ns WHQX WRITE enable high to output transition 5 10 10 ns 1. noted).or ambient operating tempArature: T = 0 to 70 °C oCC= 4.75 to 5.5 V or 4.5 to
in „[S] DALLAS DS1220Y-150 NVRAM (NOS)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LM2595.pdf
diodes diodes MBR320 diodes are are are are SK13 rated to 1N5818 rated to rated to 1N5821 rated to 30V MBRS130 SR103 SK33 MBR330 at least at least at least at least 50V. 11DQ03 50V. 50V. 31DQ03 50V. SK14 1N5822 40V MBRS140 1N5819 SK34 SR304 10BQ040 SR104 MBRS340 MBR340 10MQ040 MURS120 11DQ04 MUR120 30WQ04 MURS320 31DQ04 MUR320 50V MBRS160 10BF10 SR105 SK35 30WF10 SR305 30WF10 or 10BQ050 MBR150 MBR360 MBR350 More 10MQ060 11DQ05 30WQ05 31DQ05 FIGURE 11. Diode Selection Table www.national.com 16 Block Diagram DS012565-21 FIGURE 12. current
in „Schaltregler LM2595“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LM2595.pdf
of All of All of these these these MBR320 these diodes diodes diodes diodes SK13 1N5818 1N5821 30V MBRS130 are SR103 are SK33 are MBR330 are rated to rated to rated to rated to at least 11DQ03 at least at least 31DQ03 at least SK14 50V. 50V. 50V. 1N5822 50V. 40V MBRS140 1N5819 SK34 SR304 10BQ040 SR104 MBRS340 MBR340 10MQ040 MURS120 11DQ04 MUR120 30WQ04 MURS320 31DQ04 MUR320 50V MBRS160 10BF10 SR105 SK35 30WF10 SR305 30WF10 or 10BQ050 MBR150 MBR360 MBR350 More 10MQ060 11DQ05 30WQ05 31DQ05 FIGURE 12. Diode
in „Schaltregler 9-18V input 14-V output“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LM2595.pdf
of All of All of these these these MBR320 these diodes diodes diodes diodes SK13 1N5818 1N5821 30V MBRS130 are SR103 are SK33 are MBR330 are rated to rated to rated to rated to at least 11DQ03 at least at least 31DQ03 at least SK14 50V. 50V. 50V. 1N5822 50V. 40V MBRS140 1N5819 SK34 SR304 10BQ040 SR104 MBRS340 MBR340 10MQ040 MURS120 11DQ04 MUR120 30WQ04 MURS320 31DQ04 MUR320 50V MBRS160 10BF10 SR105 SK35 30WF10 SR305 30WF10 or 10BQ050 MBR150 MBR360 MBR350 More 10MQ060 11DQ05 30WQ05 31DQ05 FIGURE 12. Diode
in „5 Volt 1A fürs auto passiv gekühlt gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LT3756.pdf
BUFFER – + 1.1V – A3 Q2 VC RAMP GND GENERATOR SSCLAMP 50k 100kHz TO 1MHz OSCILLATOR FAULT 10μA OPENLED 140μA LOGIC 1.25V + 1.2V – (LT3756 VREF + + ONLY) – – FREQ FB TSD PROG 2V + A7 B SS RT SYNC (LT3756-1 ONLY) 7 3 37561f 8 LT3756/LT3756-1 OPERATION TheLT3756isaconstant-frequency,currentmodecontrol- of the
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PDF
LM2576-D.pdf
CHARACTERISTICS (Circuit of Figure 15) ) ( 200 1.6 T 180 ) E ( 1.4 R 160 G C TJ= 25°C T 1.2 −40°C T 140 O E 120 V 1.0 S O I 100 T 0.8 25°C Q 80 R Y T 0.6 D 60 S 125°C N ,t0.4 T 40 Vs , 20 0.2 t Is 0 0 0 5 10 15 20 25 30 35 40 0 0.5 1.0 1.5 2.0 2.5 3.0 V , INPUT VOLTAGE (V) SWITCH CURRENT (A) in Figure
in „Platine als Kühlkörper“ · Platinen ·
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LM2576_On.PDF
CHARACTERISTICS (Circuit of Figure 15) ) ( 200 1.6 T 180 ) E ( 1.4 R 160 G C TJ= 25°C T 1.2 −40°C T 140 O E 120 V 1.0 S O I 100 T 0.8 25°C Q 80 R Y T 0.6 D 60 S 125°C N ,t0.4 T 40 Vs , 20 0.2 t Is 0 0 0 5 10 15 20 25 30 35 40 0 0.5 1.0 1.5 2.0 2.5 3.0 V , INPUT VOLTAGE (V) SWITCH CURRENT (A) in Figure
in „Ruhige negative Spannung“ · Analoge Elektronik und Schaltungstechnik ·
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MAX1758.pdf
_________________________ Stand-Alone, Switch-Mode Li+ Battery Charger with Internal 28V Switch M MBRS340 A D1 D2 INPUT 28 DCIN 27 X SUPPLY C7 CSSP 1 0.µ F 0.µ F R1 7 MAX1758 0.05Ω CSSN 26 5 C9 TO 8 0.µ F +C12 +C10 + C11 SYSTEM 0.22µF 22µF 22µF LOAD TO VL 17 1 C13 SHDN VL 4.7µF 5 D3 REF 22 2 ISETIN BST
in „Verständnisfrage Strom für MAX1758“ · Mikrocontroller und Digitale Elektronik ·
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Datei
standard.dio.txt
D(Is=1.55u Rs=.0858 N=1.079 Cjo=180p Eg=.69 Xti=2 Iave=.5 Vpk=30 mfg=OnSemi type=Schottky) .model MBRS1100 D(Is=20.6u Rs=.0079 N=2.303 Cjo=270p M=.575 Eg=.69 Xti=2 Iave=1 Vpk=100 mfg=OnSemi type=Schottky) .model MBRS130L D(Is=772n Rs=.0299 N=.8442 Cjo=290p M=.7 Eg=.69 Xti=2 Iave=1 Vpk=30 mfg=OnSemi type=Schottky) .model MBRS140 D(Is=235n Rs=.109 N=.7760 Cjo=160p M=.6 Eg=.69 Xti=2 Iave=1 Vpk=40 mfg=OnSemi type=Schottky) .model MBRS340 D(Is=22.6u Rs=.042 N=1.094 Cjo=480p M=.61 Eg=.69 Xti=2 Iave=3 Vpk=40 mfg=OnSemi type=Schottky
in „Hilfe bei LTSpice nötig!“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
3971fd.pdf
during Burst Mode op- B230 30 2 500 0.6 eration, the noise is typically very quiet to a casual ear. If B140HB 40 1 1 thisisunacceptable,useahighperformancetantalumor DFLS240L 40 2 500 4 electrolytic capacitor at the output. DFLS140 40 1.1 510 1 Afinalprecautionregardingceramiccapacitorsconcerns DFLS160 60
in „[V] LT3971IDD-5PBF-ND“ · Markt ·
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PDF
sram.pdf
EHDX WLQZ WRITE enable low to output Hi-Z 25 50 60 ns AVWH Address valid to WRITE enable high 60 120 140 ns tAVEH Address valid to chip enable high 60 120 140 ns t WRITE enable high to output transition 5 10 10 ns WHQX 1. Valid for ambient operating tempArature: T = 0 to 70 °C oCC–= 4.75 to 5.5 V or 4.5
in „EEPROM mit SRAM ersetzen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Grundig-DVDP-7000-Service-Manual.pdf
100u/16V R123 10K Q104B D109 1% 100u/16V Q103B D107 25 18 D108 D106 RLS4148 CBO OT1 CBO OT2 RLS4148 MBRS140T3 Near J60 3 MBRS140T3 DNS9956 23 LDRV1 LD RV2 20 DNS9956 21 PGND +3.3V +3.3VP +12V VPP L105 J601 4 FB1 FB2 11 1 UV_DELAY 6 1 10UH(0805) EC602 2 24 VDD1 47u/10V 3 C628 C623 D110 C133 0.1u VDD 19
in „800x480-Farbdisplay mit uC verwenden“ · Mikrocontroller und Digitale Elektronik ·
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LPSF096064A00-T3_SSD1332_.pdf
Time 15 -- ns DHR Read Data Hold Time 20 -- ns tOH Output Disable Time -- 70 ns tACC Access Time -- 140 ns PW CSL Chip Select Low Pulse Width (read) 120 -- ns Chip Select Low Pulse Width (write) 60 -- ns PW CSH Chip Select High Pulse Width (read) 60 -- ns Chip Select High Pulse Width (write) 60 -- ns
in „Verkaufe OLED Displays FullColor 128*128 bzw. 96*64“ · Markt ·
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PDF
Product_preview_LPSF096064A01-T3__Rev_1_0_.pdf
Time 15 -- ns DHR Read Data Hold Time 20 -- ns tOH Output Disable Time -- 70 ns tACC Access Time -- 140 ns PW CSL Chip Select Low Pulse Width (read) 120 -- ns Chip Select Low Pulse Width (write) 60 -- ns PW Chip Select High Pulse Width (read) 60 -- ns CSH Chip Select High Pulse Width (write) 60 -- ns
in „O-LED Display von SMI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Product_preview_LPSF096064A00-T3__Rev_4.0_.pdf
Time 15 -- ns DHR Read Data Hold Time 20 -- ns tOH Output Disable Time -- 70 ns tACC Access Time -- 140 ns PW CSL Chip Select Low Pulse Width (read) 120 -- ns Chip Select Low Pulse Width (write) 60 -- ns PW CSH Chip Select High Pulse Width (read) 60 -- ns Chip Select High Pulse Width (write) 60 -- ns
in „[V] 2,4GHz Transceiver(CortexM3) Chip-Antenne, Balun.“ · Markt ·
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PDF
MAX710-MAX711.pdf
Regulation STBY = PS, 1.8V to 5V 0.3 %/V Quiescent Current VSTBY = VSHDN = logic high, current measured 100 140 µA into PS pin;LOAD = 0 Standby Quiescent Current VSTBY = 0V 7 16 µA Shutdown Quiescent Current VSHDN = 0V 0.1 5 µA TA= 0°C to +85°C, IREF = 0 1.24 1.28 1.31 Reference Voltage V TA= -40°C to +85°C,
in „Hilfe bei SpulenDimensionierung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TPS_40210.pdf
22 µH, 79 m Ω 2.1 0.35 0.02 Rectifier V f 0.5 V, C = 100 pF 2.3 1 0.50 0.01 Output Capacitor ESR = 140 m Ω 1 0.15 1.90 DCM MOSFET Switch 0.07Ω 6 2.2 0.34 0.96 Sense Resistor 0.017 Ω 2.2 0.08 Inductor 1 µH, 6 m Ω 3 0.06 0.80 Rectifier V = 0.5 V, C = 100 pF 6 1 0.50 0.01 f Output Capacitor ESR = 140 m
in „Problem mit dem Hochsetzsteller (TPS 40210)“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
Devices.txt
194 R-EU_R1206 189 R-EU_R0603 189 C2,5-3 182 C-EU050-025X075 156 R-EU_0207/12 143 WIREPAD2,54/1,1 140 R-EU_0207/2V 131 BC337-40 128 1N4004 125 C2.5/2 123 LEDP-LCC-2 122 CPOL-EUE2.5-5 117 C-EU050-024X044 112 R-EU_M1206 112 1N4148 100 R-EU_M0805 100 PINHD-1X2 100 PINHD-1X1 96 BC547 94 R-EU_0204/2V 84
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
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Datei
All.txt
SCHOTTKY-DIODEDO35-7 DO35-7 Schottky Diode 1 D6 SAL41B SAL41B Package not confirmed (obsolete) 1 D6 MBRS360T3 SCHOTTKY-DIODESMC SMC Schottky Diode 1 D6 MBRS240 MBRS240 SMB 1 D6 LED5 LED5 LED3 1 D6 LED3MM LED3MM LED3MM LED 1 D6 LED3MM LED3MM LED 1 D6 L44 BAS40-04 SOT23 Silicon Schottky Diodes 1 D6 glb LEDSMT1206
in „[KiCad] Bibliotheksaufbau - Konzeptideen gesucht“ · Platinen ·
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EVK1104_revA.pdf
PX55 79 PX55 R3 VDDIN 142 VDDIN O PX56 78 PX56 33n 100n 33n 100n 4.7u 33n 100n 33n 100n 33n 100n 0R 140 B 76 PX57 144 GNDCORE B B B B II I I I I II I I I I PX57 57 PX58 0R R4 GNDPLL U U U U GG E E E E EE G G G G PX58 56 PX59 Close to 118 _ _ _ _ __ _ _ _ _ __ _ _ _ _ PX59 VDDANA/GNDANA Production VDDANA
in „Problem mit SD Karte an AT32UC3A3256“ · Mikrocontroller und Digitale Elektronik ·
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lm3478.pdf
Amplifier Output CurrentSource, V = 1.4V, V = 0V 110 µA EAO COMP FB (Source/ Sink) 80/ 50 µA (min) 140/ 180 µA (max) Sink, V = 1.4V, V = 1.4V −140 µA COMP FB −100/ −85 µA (min) −180/ −185 µA (max) V Error Amplifier Output VoltageUpper Limit 2.2 V EAO Swing VFB = 0V 1.8 V(min) COMP Pin = Floating 2.4
in „Frage zu Datenblatt LM3478“ · Analoge Elektronik und Schaltungstechnik ·
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BB_Schem_75839_b.pdf
GND SGND INTVCC C10 C8 C9 1 C11 100pF 4.7uF CR2 100uF 100uF 6 11 4 TH5 VOSENSE BG 2 D4 R4 Si4420DY MBRS140T3 HDR1 C12 1000pF 300 B 7 SENSE- PGND 10 1 2 3 GND B 8 SENSE+ EXTVCC 9 TH6 HDR1 LTC1435/SO GND GND TH7 HDR1 GND C13 R5 100pF 32.4K R6 20K A A Power Supply GND Size Root: <Name5> Document Number Rev
in „PHILIPS VP5500 VoIP Telefon bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
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cyc_c5v1-1299412.pdf
Speed Grade -7 Speed Grade -8 Speed Grade Symbol Unit Min Max Min Max Min Max INSU 2.417 — 2.779 — 3.140 — ns INH 0.000 — 0.000 — 0.000 — ns OUTCO 2.000 3.724 2.000 4.282 2.000 4.843 ns t — 3.645 — 4.191 — 4.740 ns XZ ZX — 3.645 — 4.191 — 4.740 ns INSUPLL 1.417 — 1.629 — 1.840 — ns INHPLL 0.000 — 0.000
in „BMW Nightvision (FLIR PathfindIR) "Wärmebildkamera"“ · Mikrocontroller und Digitale Elektronik ·