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Schottky_crossreference.pdf
BAT54C BAT54C MBR4045PT MBR4045WT BAT54S BAT54S MBR4045PT 40CPQ045 SB150 MBR150 MBR4060PT 40CPQ060 SB160 MBR160 MBR735 MBR735 SB340 MBR340 MBR745 MBR745 SB350 MBR350 MBRB035 MBRB035 SB360 MBR360 MBRB045 MBRB045 SB3H100
in „Ersatztyp für Schottky Diode 11dq06“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MBR735-MBR760.pdf
MBR735 - MBR745 50 MBR750 & MBR760 10 , TJ=125°C , T 10 N E PULSE WIDTH = 300 s E R R U U C C 1 J =125°C D S S A TJ=25°C R R W E V E R R 1 E P F P R I S M U L O A O I 0.1 E N M A MBR735 - MBR745 A TJ=75
in „TVS-Diode und Sicherung“ · Analoge Elektronik und Schaltungstechnik ·
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MBR735-MBR760.pdf
MBR735 - MBR745 50 MBR750 & MBR760 10 , TJ=125°C , T 10 N E PULSE WIDTH = 300 s E R R U U C C 1 J =125°C D S S A TJ=25°C R R W E V E R R 1 E P F P R I S M U L O A O I 0.1 E N M A MBR735 - MBR745 A TJ=75
in „Gleichrichter an Schaltnetzteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
mbr1090c.pdf
MBR1090CT thru MBR10100CT New Product Vishay Semiconductors formerly General Semiconductor Dual High-Voltage Schottky Rectifiers Reverse Voltage 90 to 100V Forward Current 10A TO-220AB Features 0.415 (10.54
in „Dual High-Voltage Schottky Rectifiers 10A“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LT1930.pdf
DIODE SELECTION + C2 ASchottkydiodeisrecommendedforusewiththeLT1930/ SHUTDOWN R2 LT1930A.TheMotorolaMBR0520isaverygoodchoice. Wheretheswitchvoltageexceeds20V,usetheMBR0530 R1 C3 GND 1930 F06 (a30Vdiode).Wheretheswitchvoltageexceeds30V,use the MBR0540 (a 40V diode). These diodes are rated to handleanaverageforwardcurrentof0.5A.Inapplications
in „Step up UND down DCDC für uC Versorgung - Empfehlung?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
XL4001_datasheet.pdf
maximum input voltage) Mount Hole 20V 30V 40V 50V 60V 1A 1N5817 1N5818 1N5819 1N5820 1N5821 1N5822 MBR320 MBR330 MBR340 MBR350 MBR360 SK32 SK33 SK34 SK35 SK36 3A 30WQ03 30WQ04 30WQ05 31DQ03 31DQ04 31DQ05 SR302 SR303 SR304 SR305 SR306 Rev 1.2 www.xlsemi.com 6 Datasheet 2A 150kHz 40V Buck DC/DC Converter
in „DC-DC LED Treiber PWM Anschlussprobleme TC420“ · Mikrocontroller und Digitale Elektronik ·
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XL6009.pdf
maximum input voltage) Mount Hole 20V 30V 40V 50V 60V 1A 1N5817 1N5818 1N5819 1N5820 1N5821 1N5822 MBR320 MBR330 MBR340 MBR350 MBR360 SK32 SK33 SK34 SK35 SK36 3A 30WQ03 30WQ04 30WQ05 31DQ03 31DQ04 31DQ05 SR302 SR303 SR304 SR305 SR306 1N5823 1N5824 1N5825 SR502 SR503 SR504 SR505 SR506 5A SB520 SB530 SB540
in „Step-Up Wandler arbeitet nicht mit Schmitt-Trigger“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
XL6009_1_1.pdf
maximum input voltage) Mount Hole 20V 30V 40V 50V 60V 1A √ 1N5817 1N5818 1N5819 √ 1N5820 1N5821 1N5822 √ MBR320 MBR330 MBR340 MBR350 MBR360 √ SK32 SK33 SK34 SK35 SK36 3A √ 30WQ03 30WQ04 30WQ05 √ 31DQ03 31DQ04 31DQ05 √ SR302 SR303 SR304 SR305 SR306 √ 1N5823 1N5824 1N5825 √ SR502 SR503 SR504 SR505 SR506 5A √
in „Step-Up Wandler arbeitet nicht mit Schmitt-Trigger“ · Analoge Elektronik und Schaltungstechnik ·
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XL6009.pdf
maximum input voltage) Mount Hole 20V 30V 40V 50V 60V 1A √ 1N5817 1N5818 1N5819 √ 1N5820 1N5821 1N5822 √ MBR320 MBR330 MBR340 MBR350 MBR360 √ SK32 SK33 SK34 SK35 SK36 3A √ 30WQ03 30WQ04 30WQ05 √ 31DQ03 31DQ04 31DQ05 √ SR302 SR303 SR304 SR305 SR306 √ 1N5823 1N5824 1N5825 √ SR502 SR503 SR504 SR505 SR506 5A √
in „6-9V auf 12V booster“ · Analoge Elektronik und Schaltungstechnik ·
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XLSEMI-XL1509.pdf
maximum input voltage) Mount Hole 20V 30V 40V 50V 60V 1A √ 1N5817 1N5818 1N5819 √ 1N5820 1N5821 1N5822 √ MBR320 MBR330 MBR340 MBR350 MBR360 √ SK32 SK33 SK34 SK35 SK36 3A √ 30WQ03 30WQ04 30WQ05 √ 31DQ03 31DQ04 31DQ05 √ SR302 SR303 SR304 SR305 SR306 Rev 2.0 www.xlsemi.com 10 Datasheet 2A150KHz40VBuck DC toDC
in „Schaltregler Design Aufschwinger?“ · Analoge Elektronik und Schaltungstechnik ·
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LM2576-D.pdf
100 mH V out 2 3 GN 5 ON /OFF 7.0 V − 40 V C D Unregulated in Cout DC Input 100 mF D1 1000 mF Load MBR360 Cin − 1000 mF, 25 V, Aluminium Electrolytic D1ut − Schottky, MBR360 L1 − 100 mH, Pulse Eng. PE−92108 R1 − 2.0 k, 0.1% R2 − 6.12 k, 0.1% Adjustable Output Voltage Versions Feedback Vin 4 LM2576 L1
in „Platine als Kühlkörper“ · Platinen ·
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PDF
LM2576_On.PDF
100 mH V out 2 3 GN 5 ON /OFF 7.0 V − 40 V C D Unregulated in Cout DC Input 100 mF D1 1000 mF Load MBR360 Cin − 1000 mF, 25 V, Aluminium Electrolytic D1ut − Schottky, MBR360 L1 − 100 mH, Pulse Eng. PE−92108 R1 − 2.0 k, 0.1% R2 − 6.12 k, 0.1% Adjustable Output Voltage Versions Feedback Vin 4 LM2576 L1
in „Ruhige negative Spannung“ · Analoge Elektronik und Schaltungstechnik ·
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LED_Power_Supply_Cheng_Liang_P360W24V.pdf
(1) 9 1 1nF, 1kV +24V B C? 0.47R, 1/2W 3 T2 2 D11 B þÿ4.7µF, 50V 11 W Base6Driving Transformer ADL MBR20200PT 1 3 C 5 L1 R_Shunt C? R , 10 6 þÿ3 x 1000µF, 35V, 105°C . 7 þÿ44µH (3) 18-25mOhm 5 9 4 þÿ3.3µF, 335J, 400V, CBB22 +24V 1 4 12 7 2 3 8 C1 8 5 2 GND R? 10 4.7n, 2kV C? 3 1 D? R2 R? R? 3 D? R? 330k, 1/2W 2 15R (2) 15R (2) 15R (2) 1nF, 1kV 1N4007 5.1R, 1/2W FR157? 14 4 D10 +24V Q2 ADL MBR20200PT 1 P13009 (1) +24V C? R? 3 þÿNummerierung der Anschlüsse des Transformators T1 von oben betrachtet: 0.47R, 1/2W þÿNummerierung der Anschlüsse des Transformators T2 von oben betrachtet: von links
in „Halbbrücken-Gegentaktwandler Ansteuerung“ · Analoge Elektronik und Schaltungstechnik ·
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xminilab-schematics-2.1.pdf
C C C PD0 BS1 20 S PD5 P P P P P P P P APT2012SGC VDD 21 S D3 22 D +2.048V 1 1 1 1 1 1 1 1 +5V D4 MBR0520LT1 1 R23 360k R24 EXT GRN C8 23 3 44.1kHz BW 1-5V 3.00k 1 1 2 3 4 5 6 7 8 D2 APT2012EC +10V 3.3u 24 0 1 2 U5 25 5 AWG R25 3 J3 RED 26 3 U3D - 13 360k CON8 1 V+ OUT 5 27 2 14 CON3 CAP+ 6 28 1 + 12
in „Stromversorgung mit LM7805 (Xminilab)“ · Mikrocontroller und Digitale Elektronik ·
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PDF
xminilab-schematics-2.1.pdf
C C C PD0 BS1 20 S PD5 P P P P P P P P APT2012SGC VDD 21 S D3 22 D +2.048V 1 1 1 1 1 1 1 1 +5V D4 MBR0520LT1 1 R23 360k R24 EXT GRN C8 23 3 44.1kHz BW 1-5V 3.00k 1 1 2 3 4 5 6 7 8 D2 APT2012EC +10V 3.3u 24 0 1 2 U5 25 5 AWG R25 3 J3 RED 26 3 U3D - 13 360k CON8 1 V+ OUT 5 27 2 14 CON3 CAP+ 6 28 1 + 12
in „Auswerten symmetrischer potentialfreier Leitungen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
xminilab-schematics-2.1.pdf
C C C PD0 BS1 20 S PD5 P P P P P P P P APT2012SGC VDD 21 S D3 22 D +2.048V 1 1 1 1 1 1 1 1 +5V D4 MBR0520LT1 1 R23 360k R24 EXT GRN C8 23 3 44.1kHz BW 1-5V 3.00k 1 1 2 3 4 5 6 7 8 D2 APT2012EC +10V 3.3u 24 0 1 2 U5 25 5 AWG R25 3 J3 RED 26 3 U3D - 13 360k CON8 1 V+ OUT 5 27 2 14 CON3 CAP+ 6 28 1 + 12
in „ATXmega - Pin Eingang oder Ausgang“ · Mikrocontroller und Digitale Elektronik ·
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Schaltplan eines LM2576HV Step-Down-Wandlers
LM2576HV Fixed Output 1 Feedback 4 Output L1 100 µH 2 VOUT CIN 100 µF COUT 1000 µF LOAD GND 3 ON/OFF 5 D1 MBR360 VIN UNREGULATED DC INPUT
in „Step-down converter Design: Bitte um Review“ · Platinen · · Screenshots
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PDF
LM2576.pdf
CIN — 100 µF, 75V, Aluminum Electrolytic COUT — 1000 µF, 25V, Aluminum Electrolytic D — Schottky, MBR360 1 L1 — 100 µH, Pulse Eng. PE-92108 R1 — 2k, 0.1% R2— 6.12k, 0.1 % Adjustable Output Voltage Version DS011476-8 where VREF = 1.23V, R1 between 1k and 5k. FIGURE 2. 9 www.national.com LM2576 Series
in „Netzteil selbstbau“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM2576.pdf
CIN — 100 µF, 75V, Aluminum Electrolytic COUT — 1000 µF, 25V, Aluminum Electrolytic D1 — Schottky, MBR360 L1 — 100 µH, Pulse Eng. PE-92108 R1 — 2k, 0.1% R2 — 6.12k, 0.1% Adjustable Output Voltage Version 01147608 where VREF= 1.23V, R1 between 1k and 5k. FIGURE 2. www.national.com 10 L M 2 LM2576 Series
in „Schaltnetzteilverbrauch“ · Mikrocontroller und Digitale Elektronik ·
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PDF
NSC-LM2576-5.pdf
CIN — 100 µF, 75V, Aluminum Electrolytic COUT — 1000 µF, 25V, Aluminum Electrolytic D — Schottky, MBR360 1 L1 — 100 µH, Pulse Eng. PE-92108 R1 — 2k, 0.1% R2— 6.12k, 0.1 % Adjustable Output Voltage Version DS011476-8 where VREF = 1.23V, R1 between 1k and 5k. FIGURE 2. 9 www.national.com LM2576 Series
in „KFZ Spannung mit LM2576 Diode vor die Spule?“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
od-info.txt
to 128 in many partitioning tools). Note that the first sector is still reserved for a protective MBR in the GPT specification. It prevents MBR-only partitioning tools from mis-recognizing and overwriting GPT disks. GPT is always a better choice than MBR, especially on modern hard‐ ware with a UEFI boot loader. DOS-type (MBR) A DOS-type partition table can describe an unlimited number of par‐ titions. In sector 0 there is room for the description of 4 parti‐ tions (called `primary'). One of these may be an extended parti
in „USB3-to-SATA Adapter - Fake oder Treiber Problem?“ · PC Hard- und Software ·
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Bild
Schaltplan eines 25W DVD Netzteils
C2 47uF/400V R1 C3 47uF/60V D1 UF4003 33V/0.06A TR1 12V/0.5A L2 20uH D5 UF4002 C9 220uF/25V GND D6 MBR360 L3 20uH 3.3V/1A C10 470uF/10V GND 5.8V/2A L4 4.7uH C11 470uF/10V GND D7 IR90SQ045 C8 470uF/25V 7V C7 1000uF/10V GND RT1 5236/5R BR1 2A/400V CY1 2.2nF CY2 2.2nF Y1 R2 200 D2 1N4148 D4 UF4006 C4 47uF
in „Hameg HMO3524 Netzteil defekt“ · Analoge Elektronik und Schaltungstechnik · · Schaltpläne
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LM202575x-xx_e-Spannungsregler.pdf
Mode Operation) (Continued) 5 7 / M VR Schottky Fast Recovery 2 1A 3A 1A 3A 5 5 20V 1N5817 1N5820 L M MBR120P MBR320 2 SR102 SR302 7 5 30V 1N5818 1N5821 H MBR130P MBR330 The followingThe following V 11DQ03 31DQ03 diodes are aldiodes are all SR103 SR303 rated to 100V rated to 100V 40V 1N5819 IN5822 MBR140P MBR340 11DF1 31DF1 MUR110 MURD310 11DQ04 31DQ04 HER102 HER302 SR104 SR304 50V MBR150 MBR350 11DQ05 31DQ05 SR105 SR305 60V MBR160 MBR360 11DQ06 31DQ06 SR106 SR306 FIGURE 8. Diode Selection Guide Inductor
in „12V auf 5V per PWM?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
FAT32_Know-How.txt
First read MBR of card | | | Master Boot Record MMC card 512 Bytes per Sector Offset 0 1 2 3 4 5 6 7 8 9 A B C D E F 00000000 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 00 ................ 00000010 00 00 00 00 00
in „MMC/SD Adresse“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PSpice_LibraryguideOrCAD.pdf
MBR340M MBR340M DIODE.OLB Diodes and Rectifiers MBR340P MBR340P DIODE.OLB Diodes and Rectifiers MBR350 MBR350 DIODE.OLB Diodes and Rectifiers MBR3520 MBR3520 DIODE.OLB Diodes and Rectifiers MBR3535 MBR3535 DIODE.OLB Diodes and Rectifiers MBR3545 MBR3545 DIODE.OLB Diodes and Rectifiers MBR3545H MBR3545H DIODE.OLB Diodes and Rectifiers MBR3545H1 MBR3545H1 DIODE.OLB Diodes and Rectifiers MBR360 MBR360 DIODE.OLB Diodes and Rectifiers MBR4020
in „pSpice - Bauteil hinzufügen.“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
SmartMedia_Format.pdf
gives flexibility in the memory usage Physical Structure Logical Structure Sector0 0 Block Bad Block MBR ~ Sector31 Sector32 1 Block CIS Block PBR,FAT, Dir ~ Sector63 2 Block MBR 002 Cluster ~ Sector95 3 Block PBR,FAT, Dir 003 Cluster Sector96 ~ Sector127 Bad Block 004 Cluster Sector128 4 Block ~ Sector159
in „Smartcard-Reader“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lm2731.pdf
For component selection, see Detailed Design Procedure. 8.2 Typical Application D1 100 5 V L1/10PH MBR0520 5 - 12V Boost IN ^y_▯s▯ ]}v VIN U1 SW ) 90 R3 LM2731 ‡;· R1/117K 12V ( SHDN 51K FB 500mA C SHDN (TYP) I GND I E 80 C1 R2 CF C2 GND 2.2PF 13.3K 220pF 4.7PF 70 0 100 200 300 400 500 LOAD CURRENT (
in „[V] 5St. Boost Reg. ADJ TI LM2731XMF 1,6Mhz 1,8A Switch (SOT23-5)“ · Markt ·
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LM3410.pdf
Feedback Input Bias Current - 0.1 1 µA F Switching Frequency LM3410-X 1200 1600 2000 kHz SW LM3410-Y 360 525 680 D LM3410-X 88 92 - MAX Maximum Duty Cycle LM3410-Y 90 95 - % LM3410-X - 5 - DMIN Minimum Duty Cycle % LM3410-Y - 2 - SOT23-5 and eMSOP-8 - 170 330 RDS(ON) Switch On Resistance mΩ LLP-6 190 350
in „Feedback Spannung vom LM3410“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lm2576.pdf
C — 100 μF, 75V, Aluminum Electrolytic IN C OUT— 1000 μF, 25V, Aluminum Electrolytic D 1 Schottky, MBR360 L1— 100 μH, Pulse Eng. PE-92108 R 1 2k, 0.1% R — 6.12k, 0.1% 2 Figure 21. Fixed Output Voltage Versions where V REF= 1.23V, R1 between 1k and 5k Figure 22. Adjustable Output Voltage Version Copyright
in „einstellbare Konstantstromquelle bis 2A Vin bis 27V“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
lm2731.pdf
For component selection, see Detailed Design Procedure. 8.2 Typical Application D1 100 5 V L1/10PH MBR0520 5 - 12V Boost IN ^y_▯s▯ ]}v VIN U1 SW ) 90 R3 LM2731 ‡;· R1/117K 12V ( SHDN 51K FB 500mA C SHDN (TYP) I GND I E 80 C1 R2 CF C2 GND 2.2PF 13.3K 220pF 4.7PF 70 0 100 200 300 400 500 LOAD CURRENT (
in „[V] 13St. LM2731 0.6/1.6-MHz Boost Converters With 22-V Internal FET Switch in SOT-23 (8€)“ · Markt ·
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PDF
lm2731.pdf
For component selection, see Detailed Design Procedure. 8.2 Typical Application D1 100 5 V L1/10PH MBR0520 5 - 12V Boost IN ^y_▯s▯ ]}v VIN U1 SW ) 90 R3 LM2731 ‡;· R1/117K 12V ( SHDN 51K FB 500mA C SHDN (TYP) I GND I E 80 C1 R2 CF C2 GND 2.2PF 13.3K 220pF 4.7PF 70 0 100 200 300 400 500 LOAD CURRENT (
in „[V] 13St. LM2731 0.6/1.6-MHz Boost Converters With 22-V Internal FET Switch in SOT-23 (15€)“ · Markt ·
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PDF
TimerPumpe_S01_CMOS4060.pdf
Timer1_4060 D 1 X0 S1 PS1_IP65 LiFePo4 12,8V 9,2Ah 2 +Vin AC1 4 2 +Vin AC1 4 NC D 8 3 Bat1_LiFePo4 MBR2045 Diode switch Akku Bat1 or Netzteil PS1 7 3 SW-1EIN AC1 OUT+ 4 0/13,8V DC1 049-29 NO Timer 8-20min 12V 4-34mA 16A 1xUm Relais -OK-out 0 2 AC2 OUT- 1 -IN AC2 3 1 -IN AC2 3 COM C 1 PE GND 3 2 5 L N
in „Laufzeitbegrenzung für 12V Pumpe mit Akku, Solarmodul, Step-Up, Zeitschaltuhrbetrieb LED-Anzeige MPP“ · Projekte & Code ·
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PDF
3703fc.pdf
CCSupply Current (Note 5) 0 5 µA RUN/SS = 0V 0 5 µA IBOOST BOOST Supply Current (Note 5) J ≤ 125°C l 360 500 µA T J> 125°C l 360 800 µA RUN/SS = 0V 0 5 µA Main Control Loop VFB Feedback Voltage (Note 4) 0.792 0.800 0.808 V l 0.788 0.812 V ∆V FB(LINE) Feedback Voltage Line Regulation 9V < VCC < 15V (Note
in „Längs- oder Querregler 40V 250W als Überspannungsschutz für Tiefstellsetzer“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
standard.dio.txt
BAT54 D(Is=.1u Rs=2.2 N=1 Cjo=12p M=.3 Eg=.69 Xti=2 Iave=300m Vpk=30 mfg=Vishay type=Schottky) .model MBR0520L D(Is=82.5n Rs=.115 N=.7228 Cjo=180p M=.63 Eg=.69 Xti=2 Iave=.5 Vpk=20 mfg=OnSemi type=Schottky) .model MBR0530L D(Is=1.55u Rs=.0858 N=1.079 Cjo=180p Eg=.69 Xti=2 Iave=.5 Vpk=30 mfg=OnSemi type=
in „Hilfe bei LTSpice nötig!“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Grundig-DVDP-7000-Service-Manual.pdf
D613 -12VA 1 AOL- 13 N O D2-2 G2 2 AOL+_P 12 G C R150 NC/1.1K 11 NC/MPS1410ES 1% TPC8305 10 4 6 D607 MBR0530 CON2 9 R148 NC/10K EC623 to Speaker 8 MBR0530 7 C615 10u/16V 6 EC622 C144 NC/10n 1uf 5 3 TFT_Power_C 4 10u/16V +5V +12VA AOL- 3 +5V L603 C618 D608 MBR0530 2 to P. 2-14 R621 2 1 20 AOL+_P 1 +3.3V J607 10uH(0805) 1uf C619 L606FB600 10K TV_ENABLE C626 D609 R612 EC624 CON15 1 2 EC618 MBR0530 1.8M 5P to P. 2-8 3 4 100n 4.7u/16V 5 1 10u/16V C6 C5 J606 5 6 U605 NC NC ADAC_SDA 7 8 i 1 ADAC_SCK 9 10 V S R613 TV_AUDIO 2 11 12 4 LT1615 3 200K TV_VIDEO 3 13 14 SHDN FB 4 TV_VIDEO 15 16 D N 5
in „800x480-Farbdisplay mit uC verwenden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Peavey_Semiconductors_Cross_Ref_2009.pdf
2N3642 MPS-6530, MPS-6531 2N3642 70403642 3642 BACKSTAGE 30 (LIMITER) TO-126 TRANSISTOR SJE-5331 SJE-360, SJE-5919 MJE-243 CASE 77 70405331 LEAD CONFIG. MAY DIFFER SJE-5332 SJE-5920, FT-417B MJE-253, MJE-15029 70405332 LEAD CONFIG. MAY DIFFER MJE-243/4 SJE-5331 MJE-243, CASE 77 70405331 + & - 42 VOLT RAILS
in „Transistor Ersatztypen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Peavey_Semiconductors_CrossRef_2010.pdf
2N3642 MPS-6530, MPS-6531 2N3642 70403642 3642 BACKSTAGE 30 (LIMITER) TO-126 TRANSISTOR SJE-5331 SJE-360, SJE-5919 MJE-243 CASE 77 70405331 LEAD CONFIG. MAY DIFFER SJE-5332 SJE-5920, FT-417B MJE-253, MJE-15029 70405332 LEAD CONFIG. MAY DIFFER MJE-243/4 SJE-5331 MJE-243, CASE 77 70405331 + & - 42 VOLT RAILS
in „Transistor Ersatztypen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LM2595.pdf
1N5817 All of All of 1N5820 All of these these these these 20V SR102 SK32 SR302 diodes 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
in „Schaltregler LM2595“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LM2595.pdf
Recovery Recovery SK12 1N5817 1N5820 20V SR102 SK32 SR302 All of All 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 Selection
in „Schaltregler 9-18V input 14-V output“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LM2595.pdf
Recovery Recovery SK12 1N5817 1N5820 20V SR102 SK32 SR302 All of All 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 Selection
in „5 Volt 1A fürs auto passiv gekühlt gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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LT1170.pdf
FILTER LT1170 SPECIAL TOPOLOGIES DELIVER C3 80 MORE POWER. D1 100 F **DIVIDE VERTICAL POWER SCALE VIN MBR330 * VUC= 30VST FOR LT1172.LT1171, BY FOUR VSW 12V ( 60 BOOST O +C2 R1 1A E FLYBACK LT1170/1/2 TA02 +C3* LT1170 1000 F 1%.7k O 40 100 F FB P GND VC R2 20 BUCK-BOOST 1k 1%24k VO= 5V C1 0 1 F 0 10 20
in „Bei Schaltregler nur Minimum- und Maximum-PowerSwitchStrom angegeben“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ACT2803_Data_Sheet.pdf
IDIS=100uA TH Pack VTDL=57V 270 120mV 120mV 100mV 100mV DIS_HOT + 135 240mV 240mV 200mV 200mV – Ra 90 360mV 360mV 300mV 300mV 67.5 480mV 480mV 400mV 400mV DIS_COLD + NTC – VTDH=5V 54 600mV 600mV 500mV 500mV 45 720mV 720mV 600mV 600mV Figure 4. Thermistor setting Battery Impedance Compensation To avoid the
in „ACT2803 dual cell lipo charger - Problem“ · Analoge Elektronik und Schaltungstechnik ·
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DSM4-19.1-20R.94-W1A-AC-SERVOMOTOR-SYSTEM-ANTRIEBSTECHNIK-MANUAL.pdf
holding brake for DSM motors DSM 4-05 DSM 4-07 DSM 4-09 DSM 4-11 DSM 4-14 DSM 4-19 Holding torque MBr 2.0 Nm 2.5 Nm 9.0 Nm 11.0 Nm 36.0 Nm 85.0 Nm 2 2 2 2 2 2 Armature inertia Br 0.067 kgcm 0.380 kgcm 0.600 kgcm 2.300 kgcm 5.900 kgcm 17.600 kgcm Electrical pickup PBr 12 W 12 W 18 W 21 W 27 W 36 W power
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WX_Station.pdf
IRF7842 R B HEATER_1_0 HEATER_1_1 HEATER_2_2 HEATER_3_2 B U309 LMR64010XMF +12V D311 +36V L301 10µ MBR0540-FAI +12V D303 +24V +24V D307 +12V +24V S1J S1J J301 5 VIN SW 1 R312 DC_IN +12V +12V 1 1 VCC VB 6 6 VB VCC 1 360k 4 EN N FB 3 2 C303 U303 U307 C307 G 3 0µ1 IRS10752 IRS10752 0µ1 C311 2 R309 4 2 4
in „Weller WX/WSM/WHS Serie Kabel Reverse Engineering“ · Mikrocontroller und Digitale Elektronik ·
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MAX5035-Datasheet.pdf
of 80mΩ and 51µF, respectively. Low-ESR, ceramic, multilayer chip capacitors are recom- 30BQ060 IR B360A Diodes, Inc. mended for size-optimized application. For ceramic 7.5 to 56 CMSH3-60 Central Semiconductor capacitors, assume the contribution from ESR and capaci- tor discharge is equal to 10% and 90%, respectively. MBRD360, MBR3060 ON Semiconductor The input capacitor must handle the RMS ripple current 50SQ100, 50SQ80 IR 7.5 to 76 without significant rise in temperature. The maximum MBRM5100 Diodes, Inc. capacitor RMS
in „KICAT Footprint SO8E oder SO8N“ · Mikrocontroller und Digitale Elektronik ·
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Vishay_Diode_Marking.pdf
Circuit Diagram 06 21 X TO-220AB ITO-220AB TO-263AB TO-262AA Factory Designator Week 21st Year 2006 Logo MBR1060 MBRF1060 MBRB1060 Part Number 0621X 0621X 0621X Date Code Circuit Diagram 06 21 X TO-220AC ITO-220AC TO-263AB Factory Designator Week 21st Year 2006 6 21 X Logo 621X Date Code Factory Designator MBR4060PT Part Number Week Circuit Diagram 21st Year 2006 TO-247AD (TO-3P) www.vishay.com Document Number 88912 2 01-Dec-06 PDD Marking Vishay General Semiconductor PLASTIC MELF AND MINIMELF MARKING MELF
in „Unbekanntes Bauteil“ · Mikrocontroller und Digitale Elektronik ·
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marking.pdf
Circuit Diagram 06 21 X TO-220AB ITO-220AB TO-263AB TO-262AA Factory Designator Week 21st Year 2006 Logo MBR1060 MBRF1060 MBRB1060 Part Number 0621X 0621X 0621X Date Code Circuit Diagram 06 21 X TO-220AC ITO-220AC TO-263AB Factory Designator Week 21st Year 2006 6 21 X Logo 621X Date Code Factory Designator MBR4060PT Part Number Week Circuit Diagram 21st Year 2006 TO-247AD (TO-3P) www.vishay.com Document Number 88912 2 01-Dec-06 PDD Marking Vishay General Semiconductor PLASTIC MELF AND MINIMELF MARKING MELF
in „Suche Datenblatt zu S422“ · Mikrocontroller und Digitale Elektronik ·
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marking.pdf
Circuit Diagram 06 21 X TO-220AB ITO-220AB TO-263AB TO-262AA Factory Designator Week 21st Year 2006 Logo MBR1060 MBRF1060 MBRB1060 Part Number 0621X 0621X 0621X Date Code Circuit Diagram 06 21 X TO-220AC ITO-220AC TO-263AB Factory Designator Week 21st Year 2006 6 21 X Logo 621X Date Code Factory Designator MBR4060PT Part Number Week Circuit Diagram 21st Year 2006 TO-247AD (TO-3P) www.vishay.com Document Number 88912 2 01-Dec-06 PDD Marking Vishay General Semiconductor PLASTIC MELF AND MINIMELF MARKING MELF
in „Suche die Bezeichnung eines Bauteils“ · Analoge Elektronik und Schaltungstechnik ·
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88912_Marking_Diodes_Vishay-061201.pdf
Circuit Diagram 06 21 X TO-220AB ITO-220AB TO-263AB TO-262AA Factory Designator Week 21st Year 2006 Logo MBR1060 MBRF1060 MBRB1060 Part Number 0621X 0621X 0621X Date Code Circuit Diagram 06 21 X TO-220AC ITO-220AC TO-263AB Factory Designator Week 21st Year 2006 6 21 X Logo 621X Date Code Factory Designator MBR4060PT Part Number Week Circuit Diagram 21st Year 2006 TO-247AD (TO-3P) www.vishay.com Document Number 88912 2 01-Dec-06 PDD Marking Vishay General Semiconductor PLASTIC MELF AND MINIMELF MARKING MELF
in „Bauteil identifizieren diode, SMC, "G DE 47"“ · Mikrocontroller und Digitale Elektronik ·
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tl431book.pdf
closed loop. Phase margin implies that the total phase rotation of the loop gain T(s) is less than -360° at the cross over frequency f . Gain margin, on the opposite, qualifies the c distance between the loop gain module and the 0-dB axis at a frequency where the total phase rotation is -360°. To ensure
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