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Part Manufacturer Description Datasheet Download Buy Part
LT1113ACJ8 Linear Technology IC DUAL OP-AMP, 1500 uV OFFSET-MAX, CDIP8, HERMETIC SEALED, CERDIP-8, Operational Amplifier
LT1169ACJ8 Linear Technology IC DUAL OP-AMP, 1500 uV OFFSET-MAX, CDIP8, HERMETIC SEALED, CERDIP-8, Operational Amplifier
LTC1051IS Linear Technology IC DUAL OP-AMP, 1500 uV OFFSET-MAX, PDSO, Operational Amplifier
LT1365CN14 Linear Technology IC QUAD OP-AMP, 1500 uV OFFSET-MAX, 70 MHz BAND WIDTH, PDIP14, Operational Amplifier
LT1365CS16 Linear Technology IC QUAD OP-AMP, 1500 uV OFFSET-MAX, 70 MHz BAND WIDTH, PDSO16, Operational Amplifier
LT1113ACS8 Linear Technology IC DUAL OP-AMP, 1500 uV OFFSET-MAX, PDSO8, 0.150 INCH, PLASTIC, SO-8, Operational Amplifier

FZ 89 1500 6.3V Datasheets Context Search

Catalog Datasheet MFG & Type PDF Document Tags
REALTEK 1186

Abstract: EM329 BA3948 bh7880 WN0113 WN0103 M78A ICH4 ADP3205 WN0127
Text: E 1 M3 BANIAS 2 3 4 A 1 2 1 2 C79 0.1uF 10V RK 1 2 1 C37 0.22uF 10V FZ 2 C80 0.1uF 10V RK 2 1 C38 0.22uF 10V FZ 2 1 C39 0.22uF 10V FZ 1 2 C40 0.22uF 10V FZ 2 1 C41 0.22uF 10V FZ C57 2 1 2 1 C42 0.22uF 10V FZ C58 1 2 1 2 10uF 6.3V 2012 RM C59 1 2 10uF 6.3V 2012 RM C60 2 1 10uF 6.3V , FZ 1 2 C44 0.22uF 10V FZ 1 2 C45 0.22uF 10V FZ 2 1 C46 0.22uF 10V FZ 2 1 C47 0.22uF 10V FZ 1 2 C48 0.22uF 10V FZ 2 1 C49 0.22uF 10V FZ 2 1 C50 0.22uF 10V FZ 2 1 C51 0.22uF 10V FZ 1 2 C52 0.22uF 10V FZ C81


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PDF VB161AX IEEE1394 1/16W 2SC4617 2SC4617 2SK3019 REALTEK 1186 EM329 BA3948 bh7880 WN0113 WN0103 M78A ICH4 ADP3205 WN0127
2012 - fz 79 1500 6.3v

Abstract: fz 69 1500 6.3v FZ 88 1500 6.3V FZ 1500 6.3V fz 59 1500 6.3v HiCAP E series 6.3v conductive polymer FZ series fz 79 1500 fz 75 1500 6.3v
Text: CONDUCTIVE POLYMER ALUMINUM ELECTROLYTIC CAPACITORS FZ Chip type, Guaranteed at 105° C 5000 hours Series Hi-CAP ·Series has long life time than the FA Series ·Suitable for use in flat panel TV set and the others industrial equipments, etc ·Complied to the RoHS directive Item Operating , ELECTROLYTIC CAPACITORS FZ Series Table 1. FZ (SMD type) Series Characteristics List WV 4 4 4 4 4 6.3 6.3 , 4130 740 1970 2570 3220 4130 700 740 1100 2200 2760 3020 3770 1060 2460 2760 2670 3430 1450 1890 1500


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PDF 100kHz) 120Hz, 300kHz 100kHz 120Hz 10kHz 500kHz fz 79 1500 6.3v fz 69 1500 6.3v FZ 88 1500 6.3V FZ 1500 6.3V fz 59 1500 6.3v HiCAP E series 6.3v conductive polymer FZ series fz 79 1500 fz 75 1500 6.3v
FZ 73 capacitor 1500 6.3V

Abstract: FZ 89 1500 6.3V FZ 77 1500 6.3v FZ 51 1500 6.3V FZ 89 capacitor 1500 6.3V fz 79 1500 6.3v FZ 73 capacitor 470 16V fz 69 1000 16v FZ 73 capacitor 1000 6.3V FZ 75 capacitor 1500 6.3V
Text: 26 26 26 3 Q'ty/Reel(pcs) 2000 1500 1000 1000 1000 400 500 400 ØD×L 4×5.4 5×5.9 , 1500 9 332 230 49 1000 8 12 332 230 49 Size 8 10 30 250 , 6000 3200 3200 1500 24000 24000 12800 12800 6000 W L CUTTING PACKING QUANTITY(PCS , 400 250 6000 6000 4000 3200 1500 24000 24000 16000 12800 6000 Temperature on the , 150 180 220 270 330 470 560 680 820 1200 1500 2.5(3.3) 6.3(8.2) 10(11.5) 16(18.4


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PDF 2540DPI 175LPI 100kHz FZ 73 capacitor 1500 6.3V FZ 89 1500 6.3V FZ 77 1500 6.3v FZ 51 1500 6.3V FZ 89 capacitor 1500 6.3V fz 79 1500 6.3v FZ 73 capacitor 470 16V fz 69 1000 16v FZ 73 capacitor 1000 6.3V FZ 75 capacitor 1500 6.3V
2010 - fz 79 1500 6.3v

Abstract: fz 69 1500 6.3v fz 79 470 ctx125 FZ 82 1000 6.3V fz 79 1500 fz 69 HiCAP E series 6.3v conductive polymer
Text: 2009.10.21 14:4 36 001 refine-4 2540DPI 175LPI T CONDUCTIVE POLYMER ALUMINUM ELECTROLYTIC CAPACITORS CONDUCTIVE POLYMER ALUMINUM ELECTROLYTIC CAPACITORS FT FZ Chip type , 474 580 664 943 1202 400 550 700 1150 1700 2120 1500 1835 2100 2980 3800 1300 1800 , CONDUCTIVE POLYMER ALUMINUM ELECTROLYTIC CAPACITORS FZ Series FN Table 1. FZ (SMD type) Series , 3020 3770 1060 2460 2760 2670 3430 1450 1890 1500 0.15 0.12 0.12 0.12 0.12 0.12 0.12


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PDF 2540DPI 175LPI 5000hrs 100kHz) 300kHz 100kHz 120Hz fz 79 1500 6.3v fz 69 1500 6.3v fz 79 470 ctx125 FZ 82 1000 6.3V fz 79 1500 fz 69 HiCAP E series 6.3v conductive polymer
2012 - FZ 73 capacitor 1500 6.3V

Abstract: FZ 89 1500 6.3V FZ 87 1500 6.3V FZ 89 capacitor 1500 6.3V FZ 82 capacitor 1000 6.3V 59PR9874 fz 69 1000 16v international rectifier FZ 88 1500 6.3V
Text: 97 96 95 94 Efficiency (%) 93 92 91 90 89 88 87 86 85 2.5 5 7.5 10 12.5 15 17.5 20 22.5 25 Iout (A , 1500 0.4 130 SYMBOL VCC_UVLO_Start VCC_UVLO_Stop Enable_UVLO_Start Enable_UVLO_Stop , /Fs 0 BB_threshold Fb > Vref, Sw duty cycle 0 PVCC Fs_CP VCC = 3.3V, Fs = 1500 kHz , 1200 1300 1400 1500 Fsw (kHz) Figure 6: PVcc v/s Switching Frequency (Fsw) with Vcc=3.3V 13 , : SWITCHING FREQUENCY VS. EXTERNAL RESISTOR (RT) Fsw (kHz) 250 300 400 450 500 600 800 1000 1500 RT


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PDF iP1827 5V16V 125oC FZ 73 capacitor 1500 6.3V FZ 89 1500 6.3V FZ 87 1500 6.3V FZ 89 capacitor 1500 6.3V FZ 82 capacitor 1000 6.3V 59PR9874 fz 69 1000 16v international rectifier FZ 88 1500 6.3V
2011 - fz 79 1500 6.3v

Abstract: fz 79 470 fz 69 1500 6.3v fz 79 1500 fz 59 1500 6.3v FZ 88 1500 6.3V FZ 1500 6.3V FZ 79
Text: CONDUCTIVE POLYMER ALUMINUM ELECTROLYTIC CAPACITORS FZ Chip type, Guaranteed at 105 C 5000hrs Series Hi-CAP Series has long life time than the FA Series Suitable for use in flat panel TV set and the others industrial equipments, etc Complied to the RoHS directive Item Operating , ELECTROLYTIC CAPACITORS FZ Series Table 1. FZ (SMD type) Series Characteristics List WV 4 4 4 4 4 6.3 6.3 , 4130 740 1970 2570 3220 4130 700 740 1100 2200 2760 3020 3770 1060 2460 2760 2670 3430 1450 1890 1500


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PDF 5000hrs 100kHz) 120Hz, 300kHz 100kHz 120Hz 10kHz 500kHz fz 79 1500 6.3v fz 79 470 fz 69 1500 6.3v fz 79 1500 fz 59 1500 6.3v FZ 88 1500 6.3V FZ 1500 6.3V FZ 79
2011 - FZ 89 1500 6.3V

Abstract: LGA 2011 LGA 1150 FZ 87 1500 6.3V FZ 73 capacitor 1500 6.3V 120v to 5v buck converter FZ 75 capacitor 1500 6.3V tapped inductor buck converter 121k 1kv capacitor sr8 regulator
Text: 97 96 95 94 Efficiency (%) 93 92 91 90 89 88 87 86 85 2.5 5 7.5 10 12.5 15 17.5 20 22.5 25 Iout (A , 1500 0.4 130 SYMBOL VCC_UVLO_Start VCC_UVLO_Stop Enable_UVLO_Start Enable_UVLO_Stop , /Fs 0 BB_threshold Fb > Vref, Sw duty cycle 0 PVCC Fs_CP VCC = 3.3V, Fs = 1500 kHz , 1200 1300 1400 1500 Fsw (kHz) Figure 6: PVcc v/s Switching Frequency (Fsw) with Vcc=3.3V 13 June , : SWITCHING FREQUENCY VS. EXTERNAL RESISTOR (RT) Fsw (kHz) 250 300 400 450 500 600 800 1000 1500 RT


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PDF iP1827 5V16V 125oC FZ 89 1500 6.3V LGA 2011 LGA 1150 FZ 87 1500 6.3V FZ 73 capacitor 1500 6.3V 120v to 5v buck converter FZ 75 capacitor 1500 6.3V tapped inductor buck converter 121k 1kv capacitor sr8 regulator
2011 - FZ 87 1500 6.3V

Abstract: FZ 89 capacitor 1500 6.3V FZ 89 1500 6.3V FZ 73 capacitor 1500 6.3V LGA 2011 LGA 1150 SMD code V12
Text: 90 89 88 87 86 85 2.5 5 7.5 10 12.5 15 17.5 20 22.5 25 Iout (A) Vo=1.8V Vo=3.3V Vin=12V Vcc=3.3V No , ) Dmin (ctrl) Dmax Note 3 Note 3 Note 3 450 1350 75 1 500 1500 0.4 130 , > Vref, Sw duty cycle 0 PVCC Fs_CP VCC = 3.3V, Fs = 1500 kHz, Cload = 2.2uF 5.7 6.15 Fs , 1200 1300 1400 1500 Fsw (kHz) Figure 6: PVcc v/s Switching Frequency (Fsw) with Vcc=3.3V 13 , : SWITCHING FREQUENCY VS. EXTERNAL RESISTOR (RT) Fsw (kHz) 250 300 400 450 500 600 800 1000 1500 RT


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PDF iP1827 5V16V 125oC FZ 87 1500 6.3V FZ 89 capacitor 1500 6.3V FZ 89 1500 6.3V FZ 73 capacitor 1500 6.3V LGA 2011 LGA 1150 SMD code V12
2008 - fz 69 1500 6.3v

Abstract: fz 79 1500 6.3v fz 79 1500 6.3V FZ 1500 6.3V
Text: CONDUCTIVE POLYMER ALUMINUM ELECTROLYTIC CAPACITORS FZ Chip type, Gurranteed at 105° C 5000hrs Series Hi-CAP ·Series has long Life time than the FA Series ·Suitable for use in flat panel TV set(PDP,LCD) and the others industrial equipments, etc ·Complied to the RoHS directive Item , ALUMINUM ELECTROLYTIC CAPACITORS FZ Series Table 1. FZ (SMD type) Series Characteristics List WV 4 4 , 3430 1450 1890 1500 Dissipation factor 120Hz 0.15 0.12 0.12 0.12 0.12 0.12 0.12 0.12 0.12 0.12 0.1


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PDF 5000hrs 100kHz) 120Hz, 300kHz 100kHz 120Hz fz 69 1500 6.3v fz 79 1500 6.3v fz 79 1500 6.3V FZ 1500 6.3V
2010 - fz 69 1500 6.3v

Abstract: fz 79 1500 6.3v FZ 88 1500 6.3V FZ 79 FZ series fz 79 1500
Text: CONDUCTIVE POLYMER ALUMINUM ELECTROLYTIC CAPACITORS FZ Chip type, Guaranteed at 105 C 5000hrs Series ° Hi-CAP ·Series has long life time than the FA Series ·Suitable for use in flat panel TV set(PDP,LCD) and the others industrial equipments, etc ·Complied to the RoHS directive Item , CAPACITORS FZ Series Table 1. FZ (SMD type) Series Characteristics List WV 4 4 4 4 4 6.3 6.3 6.3 6.3 , 1970 2570 3220 4130 700 740 1100 2200 2760 3020 3770 1060 2460 2760 2670 3430 1450 1890 1500


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PDF 5000hrs 120Hz, 100kHz) 300kHz 100kHz 120Hz fz 69 1500 6.3v fz 79 1500 6.3v FZ 88 1500 6.3V FZ 79 FZ series fz 79 1500
2012 - FZ 89 1500 6.3V

Abstract: FZ 77 1500 6.3v v126
Text: Circuit iP1837 97 96 95 94 93 92 91 90 89 88 87 3.5 7 10.5 14 17.5 21 24.5 28 31.5 35 Iout (A , ) Dmin (ctrl) Dmax Note 3 Note 3 Note 3 450 1350 75 1 500 1500 0.4 130 , > Vref, Sw duty cycle 0 PVCC Fs_CP VCC = 3.3V, Fs = 1500 kHz, Cload = 2.2uF 5.5 6 Fs , OPERATING CHARACTERISTICS (40°C 125°C) Icc (Standby) 600 560 520 480 440 [mA] 95 92 89 86 83 80 77 74 71 , 1100 1200 1300 1400 1500 Fsw (kHz) Figure 6: PVcc v/s Switching Frequency (Fsw) with Vcc=3.3V 14


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PDF iP1837 5V16V 125oC FZ 89 1500 6.3V FZ 77 1500 6.3v v126
2011 - zf 200

Abstract: 1400 v124 LGA 2011 LGA 1150
Text: 96 95 94 93 92 91 90 89 88 87 3.5 7 10.5 14 17.5 21 24.5 28 31.5 35 Iout (A) Vo=3.3V Vo=1.8V Vin , ) Dmin (ctrl) Dmax Note 3 Note 3 Note 3 450 1350 75 1 500 1500 0.4 130 , > Vref, Sw duty cycle 0 PVCC Fs_CP VCC = 3.3V, Fs = 1500 kHz, Cload = 2.2uF 5.5 6 Fs , OPERATING CHARACTERISTICS (40°C 125°C) Icc (Standby) 600 560 520 480 440 [mA] 95 92 89 86 83 80 77 74 71 , 1100 1200 1300 1400 1500 Fsw (kHz) Figure 6: PVcc v/s Switching Frequency (Fsw) with Vcc=3.3V 14


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PDF iP1837 5V16V 125oC zf 200 1400 v124 LGA 2011 LGA 1150
2011 - LGA 2011 LGA 1150

Abstract: FZ 51 1500 6.3V FZ 89 1500 6.3V V123 39 marking PCDC1008-R215EMO FZ 87 1500 6.3V
Text: 96 95 94 93 92 91 90 89 88 87 3.5 7 10.5 14 17.5 21 24.5 28 31.5 35 Iout (A) Vo=3.3V Vo=1.8V Vin , ) Dmin (ctrl) Dmax Note 3 Note 3 Note 3 450 1350 75 1 500 1500 0.4 130 , > Vref, Sw duty cycle 0 PVCC Fs_CP VCC = 3.3V, Fs = 1500 kHz, Cload = 2.2uF 5.5 6 Fs , OPERATING CHARACTERISTICS (40°C 125°C) Icc (Standby) 600 560 520 480 440 [mA] 95 92 89 86 83 80 77 74 71 , 1100 1200 1300 1400 1500 Fsw (kHz) Figure 6: PVcc v/s Switching Frequency (Fsw) with Vcc=3.3V 14


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PDF iP1837 5V16V 125oC LGA 2011 LGA 1150 FZ 51 1500 6.3V FZ 89 1500 6.3V V123 39 marking PCDC1008-R215EMO FZ 87 1500 6.3V
2013 - cap fz 79 1500 uf 6.3v

Abstract: FZ 89 1500 6.3V FZ 73 capacitor 1000 6.3V PCMB065T-2R2MS FZ 77 1500 6.3v IR3891
Text: DC-DC Converters BASIC APPLICATION 5V < Vin< 21V 93 91 89 87 Efficiency [%] PG2 PG1 Boot2 , *Vin 4 1500 125 UNITS PVin Vin V CC Boot to SW VO IO FS TJ V A/phase kHz °C Maximum SW1 , , Vin=Pvin=12V Note 4 270 100 3 200 86 200 270 540 1350 1.0 300 600 1500 1.02 1.80 3.15 0.75 SYMBOL Ishort , the efficiency measurement. VOUT (V) 1.0 1.2 1.8 3.3 5.0 97 95 93 91 89 87 85 83 81 79 77 75 73 71 69 , 93 91 89 87 85 83 81 79 77 75 73 71 69 0.4 0.6 0.8 1.0 1.2 1.4 1.6 1.8 2.0 2.2 2.4 2.6 2.8 3.0 3.2


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PDF IR3891 cap fz 79 1500 uf 6.3v FZ 89 1500 6.3V FZ 73 capacitor 1000 6.3V PCMB065T-2R2MS FZ 77 1500 6.3v IR3891
2011 - LGA 2011 LGA 1150

Abstract: MARKING code VO SMD fet
Text: Circuit iP1837 97 96 95 94 93 92 91 90 89 88 87 3.5 7 10.5 14 17.5 21 24.5 28 31.5 35 Iout (A , ) Dmin (ctrl) Dmax Note 3 Note 3 Note 3 450 1350 75 1 500 1500 0.4 130 , > Vref, Sw duty cycle 0 PVCC Fs_CP VCC = 3.3V, Fs = 1500 kHz, Cload = 2.2uF 5.5 6 Fs , OPERATING CHARACTERISTICS (40°C 125°C) Icc (Standby) 600 560 520 480 440 [mA] 95 92 89 86 83 80 77 74 71 , 1100 1200 1300 1400 1500 Fsw (kHz) Figure 6: PVcc v/s Switching Frequency (Fsw) with Vcc=3.3V 14


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PDF iP1837 5V16V 125oC LGA 2011 LGA 1150 MARKING code VO SMD fet
2010 - fz 79 1500 6.3v

Abstract: fz 69 1500 6.3v fz 79 470 fz 79 1500 FZ 79 FZ 75 1000 6,3V FZ Series
Text: 2009.10.21 14:4 38 001 refine-4 2540DPI 175LPI T CONDUCTIVE POLYMER ALUMINUM ELECTROLYTIC CAPACITORS CONDUCTIVE POLYMER ALUMINUM ELECTROLYTIC CAPACITORS FZ Series FN Table 1. FZ (SMD type) Series Characteristics List Low ESR, high ripple current Designed for surface mounting on Notebook PC Complied to the RoHS directive F ØD(mm) L(mm) 4 4 4 4 4 6.3 , 3220 4130 700 740 1100 2200 2760 3020 3770 1060 2460 2760 2670 3430 1450 1890 1500


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PDF 2540DPI 175LPI 300kHz 100kHz 120Hz fz 79 1500 6.3v fz 69 1500 6.3v fz 79 470 fz 79 1500 FZ 79 FZ 75 1000 6,3V FZ Series
2007 - KIT34716

Abstract: KIT34716EPEVBE 50V 100uf PMEG2010EA CON10A MC34716 KT34716UG QFN-26
Text: , the Frequency of Zero 1 and Zero 2 in the compensation network are equal to FLC FLC = 1 = FZ 1 = FZ 2 2 LX Co X RF = 1 2 * C F FZ 1 FZ 1 = 1 2 * RF C F CS = FZ 2 = 1 2 * R1CS 1 2 * R1 FZ 2 Using the 34716, Rev. 3.0 Freescale Semiconductor 7 Component Selection , Schatzbogen 7 81829 Muenchen, Germany +44 1296 380 456 (English) +46 8 52200080 (English) +49 89 92103 559


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PDF KT34716UG KIT34716EPEVBE) KIT34716 KIT34716EPEVBE 50V 100uf PMEG2010EA CON10A MC34716 KT34716UG QFN-26
Not Available

Abstract: No abstract text available
Text: Airflow Includes biasing loss as well as inductor losses and stray PCB losses 89 88 87  86 , 700 800 900 1000 1100 1200 1300 1400 1500 Fsw (kHz)  Figure 6: PVcc v


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PDF iP1827 iP1827Â
2010 - FZ 75 capacitor 1500 6.3V

Abstract: NX2838 NX2838CMTR 78R12 FZ 1500 6.3V
Text: Condition Min TYP MAX Units 4.4 1500 Ib 0.24 0.54 2000 10 0.3 0.6 1.9 1.7 14 17 30 Ldrv going , % 20.0% Efficiency at Vin=12V (Vout=5V) 60.0% 50.0% 40.0% 30.0% 20.0% 0 500 1000 1500 2000 2500 3000 3500 Iout (mA) 0 500 1000 1500 2000 2500 3000 3500 Iout (mA) Figure , % 50.0% 40.0% 30.0% 20.0% 0 500 1000 1500 2000 2500 3000 3500 Iout (mA) Figure 10 - Efficiency (VIN , compensator with 1 Fz = 2 × × R3 × C1 Fp 1 2 × × R3 × C2 . (11) . (12) transconductance


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PDF NX2838 V/700mA NX2838 700mA. 200kHz FZ 75 capacitor 1500 6.3V NX2838CMTR 78R12 FZ 1500 6.3V
Not Available

Abstract: No abstract text available
Text: 1000 1.5 78 1200 1.9 85 150 kHz V % nS 1500 2000 10 2500 umho nA 0.24 , % 50.0% 50.0% 40.0% 40.0% 30.0% 30.0% 20.0% 20.0% 0 500 1000 1500 2000 2500 3000 3500 0 500 1000 1500 2000 2500 3000 3500 Iout (mA) Iout , 500 1000 1500 2000 2500 3000 3500 Iout (mA) Figure 11 - Efficiency (VIN , with 1 Fz = 2 × π × R3 × C1 Fp ≈ transconductance amplifier . (11) 1 2 × π Ã


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PDF NX2838 V/700mA NX2838 700mA. 200kHz
2009 - NX9415

Abstract: No abstract text available
Text: . Zin Zf C1 Vout R3 R2 C3 C2 Gain=gm × Fz = R1 × R3 R1 +R 2 1 2 × π × R , /decade FZ FLC FESR FO FP FESR FO Figure 11 - Bode plot of Type II compensator compensator , divider Figure 13 - Voltage divider Frequency(kHz) 2500 2000 1500 1000 500 0 3 13 23


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PDF NX9415 NX9415 200kHz
NX9415

Abstract: No abstract text available
Text: R3 R2 C3 C2 Gain=gm × Fz = 1 2 × π × R 3 × C1 Fp ≈ R4 R1 × R3 R1 +R 2 , ) a power stage FLC 40dB/decade compensator Gain loop gain 20dB/decade FZ FLC FESR , 13 - Voltage divider Frequency(kHz) 2500 2000 1500 1000 500 0 3 13 23 33 Rt


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PDF NX9415 NX9415 200kHz
2005 - fz 69 1000 16v

Abstract: No abstract text available
Text: the PWM modulator is given by: Copyright  ANPEC Electronics Corp. Rev. A.5 - Mar., 2004 FZ , = V OU T C1 π × R3 × C1 × F S − 1 E rror A m plifier R1 FB Gain R2 FZ , >FO> FZ Use the following equation to calculate R3: R3 = FO VIN The closed loop gain of , gm=900uA/V 2.Place the zero FZ before the LC filter double poles FLC: FZ = 0.75 x FLC Calculate , . 0 69 0. 0 10 D E H 4. 8 0 3. 8 0 5. 8 0 5. 0 0 4. 0 0 6. 2 0 0. 1 89 0. 1 50 0


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PDF APW7061 APW7061 fz 69 1000 16v
2009 - NX9415

Abstract: compensator boost transconductance amplifier schematic circuit diagram adsl modem board MCM-24
Text: R3 R2 C3 C2 Gain=gm × Fz = R1 × R3 R1 +R 2 1 2 × × R 3 × C1 Fp . (7) . , FLC 40dB/decade compensator Gain loop gain 20dB/decade FZ FLC FESR FO FP FESR FO , 2000 1500 1000 500 0 3 13 23 33 Rt(kohm) Figure 15 - Frequency versus Rt resistor


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PDF NX9415 NX9415 200kHz compensator boost transconductance amplifier schematic circuit diagram adsl modem board MCM-24
2007 - KIT34717

Abstract: 10nF cap HDR 2x5 AN1989 CON10A KIT34717EPEVBE PMEG2010EA pot 50k led green 0603
Text: FLC = 1 = FZ 1 = FZ 2 2 LX Co X RF = 1 2 * C F FZ 1 FZ 1 = 1 2 * RF C F CS = FZ 2 = 1 2 * R1CS 1 2 * R1 FZ 2 4. Calculate RS by placing the first pole at the ESR zero , 380 456 (English) +46 8 52200080 (English) +49 89 92103 559 (German) +33 1 69 35 48 48 (French


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PDF KT34717UG KIT34717EPEVBE) KIT34717 10nF cap HDR 2x5 AN1989 CON10A KIT34717EPEVBE PMEG2010EA pot 50k led green 0603
Supplyframe Tracking Pixel