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Abstract: TVPO-2066 L0305 "rtdw 3Mn WW 330n HOOU Mm â- â- WIPJ WM •WPJ CWUCNT BFFEREtaS ¡MM W SYSTEM, Ifflfl ' STEREO, CTI (KB IC(T , LM 3177 0132421Û2 IC901 IC901 IC TDA 8153 • 013242802 IC1001 IC1001 IC LM 7SL06 7SL06 • 0ia?40852 IC1003 IC1003 IC MDA 2062 - , iC LM 2901 -013206302 IC1102 IC1102 tCOTU2S43. 0135*0352 IC1103 IC1103 IC LM 317T - 0132421Û? iCl 104 IC TPU 2732 • ... OCR Scan
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6 pages,
464.64 Kb

TDA 4501 tr1007 TDA 8390 A TDA 2066 ic lm 2901 CI 7805 pin diagram 2066 TVPO ic901 IC 7805 pin diagram ic 7805 317t BC54BB PM5518 BC54b datasheet abstract
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Abstract: level depending on the power demand. Vin Qb Vout 1 Cs N:1 Ls 6 5 7 Lm C Q , inductors, Ls and Lm. One of these inductors, Lm, represents the magnetizing inductance of the transformer , this inductor will either make it disappear from the circuit (Lm is fully short-circuited by a , 3.2.2 LLC elements used in the reference design · Transformer: o Primary inductance Lm= 430 uH o , 2 220n 22n 330n 220p 100p C4 1 10u/50V C40 C42 C46, C47 C49 C5, C32 C50 C51 ... Original
datasheet

25 pages,
1078 Kb

NCS1002 resonant full bridge schematic SMD resistors LLC resonant transformer pc817 smd precision, 200uH inductor NCP1397 resistor smd 103 NCP1605 SMD TRANSISTOR Y1 SMD resistor 01R polyester capacitor 68n SMD resistors 2r2 TND399/D NCP1605 TND399/D abstract
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Abstract: tp41c tp219 E13001 8 10 11 12 TP42 19 J B 2DC-0005D100 2DC-0005D100 B Ü "O (H o ¡S £ S ... OCR Scan
datasheet

2 pages,
1430.17 Kb

tx 2b rx 2b ft232r FT232RL FTSH-105-01-F-D FTSH-105-01-F-D- LD29150DT33R MBRS240LT3G TSW-10 TSW-102-07-G-S 2DC-0005-D100 AS0B226 2DC-0005D100 2DC-0005D100 abstract
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Abstract: CQ1265RT V DC - Np Ns Lm Vo Figure 4. Startup circuit Drain Icc Cr Ids Sync IOP , eo N a ( V o + V FO ) V co = - ­ V Fa Ns where Lm is , R208 1k 0.25 W VR201 VR201 30k C101 330n/275VAC Box Capacitor C102 220uF / 400V , 5.1k 0.25 W D205 EGP20D EGP20D 2A, 200V R208 1k 0.25 W VR201 VR201 30k C101 330n , 1k 0.25 W VR201 VR201 30k BD101 BD101 GSIB660 GSIB660 18V, 1W Bridge Diode Capacitor C101 330n ... Original
datasheet

44 pages,
1200.16 Kb

TRANSISTOR c104 NTC 5D-11 EER4042 ZD102 REGULATOR CQ0765RT cq1265rt schematic diagram FSCQ0565RT FSCQ0765RT FSCQ0965RT FSCQ1265RT FSCQ1465RT FSCQ1565RT FSCQ1565RP FSCQ0565RT abstract
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Abstract: R str FSCQ-Series Ca1 Ca2 Np + CDC VDC Ns ­ Lm Drain Figure 4. , Output power where Lm is the primary side inductance of the transformer, and Ns and Na are the number , Capacitor BD101 BD101 C101 330n/275VAC Box Capacitor C102 220uF/400V Electrolytic C103 , BD101 BD101 C101 330n/275VAC Box Capacitor C102 220uF/400V Electrolytic C103 10uF/50V , Bridge Diode Capacitor BD101 BD101 C101 330n/275VAC Box Capacitor C102 220uF/400V ... Original
datasheet

45 pages,
1356.3 Kb

transistor dp c201 CQ0765R schematic SMPS 24V diode zd201 cq0565R CQ0765 thermal fuse 115 250V 2A cq1265 CQ1565RP REGULATOR CQ0765RT cq0565rt CQ0765RT circuit diagram FSCQ0565RTYDTU FSCQ1465RT/FSCQ1565RT/FSCQ1565RP FSCQ1465RT/FSCQ1565RT/FSCQ1565RP abstract
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Abstract: Circuit T1 D1 C2 LR + RL LM M2 CR D2 Figure 4. Power Stage of the LLC , frequencies using Thompson's Equations 1 and 2: fr1 + fr2 + 1 2 · p · Lr · Cr 1 2·p· (Lr ) Lm) · , schematic. CR (eq. 1) VIN LR LM RAC (eq. 2) Figure 5. Substitutive Schematic of the , Design of the resonant tank components i.e. Lr, Lm, and Cr is always compromise between maximum load , converter operation under overload will be degraded. 2. The Lm/Lr = k ratio will also significantly ... Original
datasheet

19 pages,
1393.46 Kb

IND-FLT-2u2-10A smps resonant llc full bridge smps resonant llc SIC 470n K 275V SIC 330n K 275V VJ1206y223kxb varistor 10R LLC resonant converter application note KZH Series KZH 2200PF M 2E3 500 Y1/X1 B1 LLC resonant full bridge schematic R46X AND8257/D NCP1395 AND8257/D abstract
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Abstract: Figure 4. + C1 M1 Control Circuit T1 D1 C2 LR + RL LM M2 CR D2 Figure , 1 2 · p · Lr · Cr 1 2·p· (Lr ) Lm) · Cr This topology behaves like a frequency dependent divider which is shown in the Figure 5 schematic. CR (eq. 1) VIN LR LM RAC (eq. 2 , i.e. Lr, Lm, and Cr is always compromise between maximum load changes, maximum acceptable operating , overload will be degraded. 2. The Lm/Lr = k ratio will also significantly influence shape of the gain ... Original
datasheet

19 pages,
722.65 Kb

resonant full bridge schematic resonant full bridge schematic zcs CV 275 K 10 capacitor polyester 1u 630v self resonant driver PFC buck converter design SIC 330n K 275V DIODE e5 SMD smps resonant llc optocoupler IC PC817 LLC resonant converter application note AND8257/D NCP1395 AND8257/D abstract
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Abstract: V DC - Np Ns Lm Vo Figure 4. Startup circuit Drain Cr Ids Sync Icc + V ds , - ­ V Fa Ns where Lm is the primary side inductance of the transformer, Ns and Na are the , C203 1000u F 35V V R 201 30k R 201 1k 0.25W C101 330n F 275V A C 18 C205 1000u , D205 EGP20D EGP20D 2A, 200V R208 1k 0.25 W VR201 VR201 30k C101 330n/275VAC Box ... Original
datasheet

24 pages,
723.55 Kb

c945 applications circuit diagram smps with mosfet EER 3540 EER3540 FSCQ0765RTYDTU ka5q0765 forward reverse schematic diagram KA5Q0765R DZ 431 str TV SMPS 817A OPTO-coupler optocoupler 817a REGULATOR CQ0765R datasheet abstract
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Abstract: LVcc VCC Np HVCC Lm Ns RT CON CDL VIN Vo Ns VDL Control IC D2 , R110 1M C111 330n/ 275VAC 275VAC LVCC HVCC Line Filter R108 open R107 2.2k U2 C108 , Semiconductor Corporation FSFR series · 1.0.3 R201 10k R202 1k C104 open R103, 0 C110 330n ... Original
datasheet

17 pages,
949.38 Kb

390VDC bobbin EER3542 CT 5D-9 EER-3542 EER3542 fairchild Resonant IC 140W FSFR1900 FSFR2000 FYP2010DN tda audio vs 50v EER3542 core an4151 tda audio over 100w datasheet abstract
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Abstract: Half-Bridge Resonant Converter July 2009 D1 Cr Llk LVcc VCC Np HVCC Lm Ns RT , R109 1M R112 10k U4 ZD101 ZD101 6.8V R110 1M C111 330n/ 275VAC 275VAC LVCC HVCC Line Filter , 1k 9 VCTR D212 FYP2010DN FYP2010DN C104 open CS R103, 0 C110 330n/ 275VAC 275VAC NTC 5D-9 F101 ... Original
datasheet

17 pages,
1226.64 Kb

FSFR2000 FSFR1900 fsfr1800 AN4151 300W half bridge 180W LLC resonant converters RC Network 1079 tda 100w tda audio vs 50v SCR C203 tda 400W FSFR1700 NTC 5D-9 datasheet abstract
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6.2K 5% C2 22 m F 25V FUSE Vac R1 68K 5% T 5 6 L6560 L6560 L6560 L6560 7 2 1 C3 330n L6560 L6560 L6560 L6560 7 2 1 C3 330nF R5 10 MOS STP5N80 STP5N80 STP5N80 STP5N80 R4 330 4 D1 BYT13-800 BYT13-800 BYT13-800 BYT13-800 Vo=320V Po=140W 3 2 4 V CC R3 12K 1% 8 LM358 A R7 1.3M 1% + - Figure 4: V MAINS
www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/4047-v3.htm
STMicroelectronics 25/05/2000 9.74 Kb HTM 4047-v3.htm
5% T 5 6 L6560 L6560 L6560 L6560 7 2 1 C3 330nF R5 10 MOS STP5N80 STP5N80 STP5N80 STP5N80 R4 330 4 D1 BYT13-800 BYT13-800 BYT13-800 BYT13-800 R2 1.3M 1% Vo=320V Po=140W Vac R1 68K 5% L1 5 6 L6560 L6560 L6560 L6560 7 2 1 C3 330nF R5 10 MOS STP5N80 STP5N80 STP5N80 STP5N80 R4 330 4 D1 BYT13-800 BYT13-800 BYT13-800 BYT13-800 Vo=320V Po=140W +10% -15% V CC R12 330K R11 62K 1% C5 82 m F/100 F/100 F/100 F/100 m F 385V 3 2 4 V CC R3 12K 1% 8 LM358 A R7 1
www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/4047-v2.htm
STMicroelectronics 14/06/1999 7.92 Kb HTM 4047-v2.htm
L6560 L6560 L6560 L6560 7 2 1 C3 330nF R5 10 MOS STP5N80 STP5N80 STP5N80 STP5N80 R4 330 4 D1 BYT13-800 BYT13-800 BYT13-800 BYT13-800 R2 1.3M 1% Vo=320V Po 7 2 1 C3 330nF R5 10 MOS STP5N80 STP5N80 STP5N80 STP5N80 R4 330 4 D1 BYT13-800 BYT13-800 BYT13-800 BYT13-800 Vo=320V Po=140W + - D95IN264A D95IN264A D95IN264A D95IN264A 3 2 4 V CC R3 12K 1% 8 LM358 A R7 1.3M 1% + - Figure 4: V MAINS = 277VAC 277VAC 277VAC 277VAC, V O
www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/4047.htm
STMicroelectronics 20/10/2000 10.33 Kb HTM 4047.htm
5% T 5 6 L6560 L6560 L6560 L6560 7 2 1 C3 330nF R5 10 MOS STP5N80 STP5N80 STP5N80 STP5N80 R4 330 4 D1 BYT13-800 BYT13-800 BYT13-800 BYT13-800 R2 1.3M 1% Vo=320V Po=140W Vac R1 68K 5% L1 5 6 L6560 L6560 L6560 L6560 7 2 1 C3 330nF R5 10 MOS STP5N80 STP5N80 STP5N80 STP5N80 R4 330 4 D1 BYT13-800 BYT13-800 BYT13-800 BYT13-800 Vo=320V Po=140W +10% -15% V CC R12 330K R11 62K 1% C5 82 m F/100 F/100 F/100 F/100 m F 385V 3 2 4 V CC R3 12K 1% 8 LM358 A R7 1
www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/4047-v1.htm
STMicroelectronics 02/04/1999 7.95 Kb HTM 4047-v1.htm
Vout = 8.4V, C1 = 330nF and R1 = 68k W the soft-start time of the output is about 4R1C1 @ 90ms . Parallel Regulators. 22 m F R1 68K R2 12K C1 330nF 33 m F V OUT VIN 1 2 IN CL GND 4 7 330nF 56 W Figure 30. Example 2. Electrical spec. Vout = 5V and Iout = 4A Using L4955 L4955 L4955 L4955 and 2N3055 2N3055 2N3055 2N3055 FEEDBACK 5V/20A Figure 40. 1 IN GND 2 3 OUT L4955Vxxx D97IN566A D97IN566A D97IN566A D97IN566A V XX LOAD V OUT t 330n circuit current re - circulation. IOUT up to 10A FB 10nF Cf 1/2 LM358 3 2 + 1 - Rf 100K
www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/5235.htm
STMicroelectronics 20/10/2000 30.36 Kb HTM 5235.htm
time constant R1C1. For example, if Vout = 8.4V, C1 = 330nF and R1 = 68k W the soft-start time of the 68K R2 12K C1 330nF 33 m F V OUT VIN 1 2 IN CL GND 4 7 OUT 5 ADJ L4955 L4955 L4955 L4955 D97IN605 D97IN605 D97IN605 D97IN605 D1 D2 R LOAD Figure 5 ADJ L4955 L4955 L4955 L4955 PG 6 D97IN562 D97IN562 D97IN562 D97IN562 V O C 1 R 1 C 2 R 2 V O t 330nF 56 W Figure 30. Example 2. Electrical spec ISOLATED FEEDBACK 5V/20A Figure 40. 1 IN GND 2 3 OUT L4955Vxxx D97IN566A D97IN566A D97IN566A D97IN566A V XX LOAD V OUT t 330nF 56 W Vadj during the short circuit current re - circulation. IOUT up to 10A FB 10nF Cf 1/2 LM358 3 2 + 1
www.datasheetarchive.com/files/stmicroelectronics/stonline/books/ascii/docs/5235-v2.htm
STMicroelectronics 14/06/1999 26.71 Kb HTM 5235-v2.htm
time constant R1C1. For example, if Vout = 8.4V, C1 = 330nF and R1 = 68k W the soft-start time of the 68K R2 12K C1 330nF 33 m F V OUT VIN 1 2 IN CL GND 4 7 OUT 5 ADJ L4955 L4955 L4955 L4955 D97IN605 D97IN605 D97IN605 D97IN605 D1 D2 R LOAD Figure 5 ADJ L4955 L4955 L4955 L4955 PG 6 D97IN562 D97IN562 D97IN562 D97IN562 V O C 1 R 1 C 2 R 2 V O t 330nF 56 W Figure 30. Example 2. Electrical spec ISOLATED FEEDBACK 5V/20A Figure 40. 1 IN GND 2 3 OUT L4955Vxxx D97IN566A D97IN566A D97IN566A D97IN566A V XX LOAD V OUT t 330nF 56 W Vadj during the short circuit current re - circulation. IOUT up to 10A FB 10nF Cf 1/2 LM358 3 2 + 1
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STMicroelectronics 02/04/1999 26.75 Kb HTM 5235-v1.htm
of the output voltage, by the time constant R1C1. For example, if Vout = 8.4V, C1 = 330nF and R1 D98IN926 D98IN926 D98IN926 D98IN926 Figure 24. Parallel Regulators. 22 m F R1 68K R2 12K C1 330nF 33 m F R 1 C 2 R 2 V O t 330nF 56 W Figure 30. Example 2. Electrical spec. Vout Vxxx D97IN566A D97IN566A D97IN566A D97IN566A V XX LOAD V OUT t 330nF 56 W Figure 41. C 1 V IN C 2 - circulation. IOUT up to 10A FB 10nF Cf 1/2 LM358 3 2 + 1 - Rf 100K 100K 100
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STMicroelectronics 25/05/2000 28.56 Kb HTM 5235-v3.htm
30 40 50 60 70 t ss (ms) 1 m F 470nF 330nF 220nF 100nF D97IN687 D97IN687 D97IN687 D97IN687 Figure 13. Soft start time vs. Vo and Css 0 2ms/div 0 2 4 5V 6 V O (V) D97IN688 D97IN688 D97IN688 D97IN688 220nF 330nF 470nF 680nF 2 4 6 8 Figure 14. Output rising voltage with Css 680nF, 470nF, 330nF, 220nF. AN938 AN938 AN938 AN938 APPLICATION NOTE 7/20 If the feedback is .1 LM358 + - 1 m F 1 m F 4.7K 100nF 100 100 55m W Rs V+ STPS 745D 220 m F 470 m F 7,8 1 11 4,5,6 13
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STMicroelectronics 14/06/1999 33.63 Kb HTM 5410-v2.htm
30 40 50 60 70 t ss (ms) 1 m F 470nF 330nF 220nF 100nF D97IN687 D97IN687 D97IN687 D97IN687 Figure 13. Soft start time vs. Vo and Css 0 2ms/div 0 2 4 5V 6 V O (V) D97IN688 D97IN688 D97IN688 D97IN688 220nF 330nF 470nF 680nF 2 4 6 8 Figure 14. Output rising voltage with Css 680nF, 470nF, 330nF, 220nF. AN938 AN938 AN938 AN938 APPLICATION NOTE 7/20 If the feedback is .1 LM358 + - 1 m F 1 m F 4.7K 100nF 100 100 55m W Rs V+ STPS 745D 220 m F 470 m F 7,8 1 11 4,5,6 13
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STMicroelectronics 02/04/1999 33.67 Kb HTM 5410-v1.htm

Texas Instruments Cross Reference Results

Texas Instruments Part Industry Part Manufacturer Type Comment Description
LM330-N Buy TLE4274 Buy Infineon Technologies Similar Functionality 3-Terminal Positive Regulator