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FZ 82 1000 6.3V

Catalog Datasheet MFG & Type PDF Document Tags

fz 79 1500 6.3v

Abstract: fz 69 1500 6.3v ELECTROLYTIC CAPACITORS CONDUCTIVE POLYMER ALUMINUM ELECTROLYTIC CAPACITORS FT FZ Chip type , 56 82 10 22 39 47 82 8.2 18 22 47 ØD (mm) L(mm) 6.3 8 6.3 8 10 8 10 8 10 , (SV) 8.2 10 18 22 39 47 56 82 WV 0.3 max. Series Code PART NUMBER SYSTEM (See , 195 235 410 57 126 154 329 WV(SV) 10 15 22 33 39 47 68 82 100 120 150 150 180 220 270 330 470 680 4(5.2) 6.3(8.2) 10(11.5) 16(18.4) 20(23) 4 × 5.4 4 × 5.4 5
SAMWHA
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fz 79 1500 6.3v

Abstract: fz 69 1500 6.3v 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 , 680 22 47 120 220 470 10 15 33 68 150 150 330 22 39 82 100 180 22 47 10 4 5 , for 1000 hours at 105° C. In case 25WV is applied 20V) Leakage current Capacitance change ESR , Negative Polarity R L: 4.5 max. Negative DIMENSIONS WV(SV) F 4 (5.2) 6.3 (8.2
SAMWHA
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FZ 73 capacitor 1500 6.3V

Abstract: FZ 89 1500 6.3V 56 68 82 100 120 150 180 220 270 330 390 470 560 680 820 1000 1200 1500 2700 3300 , 1000 1500 2700 3300 100 150 220 270 330 390 470 560 680 1200 82 150 220 330 470 680 820 1000 1200 1500 47 56 68 100 120 150 270 330 390 470 560 680 39 82 100 180 270 , 12.3 8.2 13 12 16 16 16 24 24 24 24 Reel(Taping Code : VR) SOLID TYPES (1) The , 26 26 26 3 Q'ty/Reel(pcs) 2000 1500 1000 1000 1000 400 500 400 ØD×L 4×5.4 5×5.9
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FZ 73 capacitor 1000 6.3V

Abstract: FZ 76 capacitor 1000 6.3V /10V OS-CON 25 0 -20 10 0 200 500 1000 2000 -40 Time (h) ESR (m at 100kHz) 100000 Aluminum electrolytic capacitor 330F/10V 10000 25 0 -20 1000 -40 100 0 200 500 1000 Time (h) 2000 Application 76 Capacitance Change (% at 120Hz , 20 10 25 0 -20 200 500 1000 Time (h) 2000 Aluminum electrolytic capacitor 330F/10V 25 0 -40 10 20 30 40 0 0 -20 200 500 1000 Time (h) 2000
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FZ 73 capacitor 1000 6.3V FZ 76 capacitor 1000 6.3V FZ 76 1000 6.3V FZ 82 capacitor 1000 6.3V sanyo os-con sl FZ 77 1000 6.3v 6SVP100M 10V47F 10V330F
Abstract: . UNIT MAX 21 21 7.5 7.5 0.86 * PVin 6 1000 125 V A / Phase kHz °C ELECTRICAL , Range 270 900 1000 1100 Vin = 6.8V, Vin slew rate max = 1V/μs, Note 4 Vramp Min , -1R0M100A (TDK) Efficiency (%) 98 96 94 92 90 88 86 84 82 80 78 76 74 0 1 2 3 4 , 500 600 700 800 900 1000 EXTERNAL SYNCHRONIZATION IR3892 incorporates an internal phase lock , R3 C3 R5 Zf Fb E/A R6 Comp Ve FZ = 75% × FLC FZ = 0.75 × VREF International Rectifier
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JESD22-A115A JESD22-A114F JESD22-C101D
Abstract: BiasGnd Rbot 604 Co=10X22uF/ 0805/X5R/6.3V R8 7.5 K C4 8.2 nF Comp LGnd R10 57.6 , 700 800 900 1000 1100 1200 1300 1400 1500 Fsw (kHz)   Figure 6: PVcc v International Rectifier
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P1827 5M-1994
Abstract: 6 1000 125 V A / Phase kHz °C ELECTRICAL CHARACTERISTICS Unless otherwise specified , Rt = 23.2K, Note 4 Frequency Range 270 900 1000 1100 Vin = 6.8V, Vin slew rate max = , 4.2 4.2 4.7 Efficiency (%) 98 96 94 92 90 88 86 84 82 80 78 76 74 0 1 2 , 23.2 Freq (KHz) 300 400 500 600 700 800 900 1000 EXTERNAL SYNCHRONIZATION IR3892 , , place the zero before the LC filter resonant frequency pole: FZ ï'½ 75% ï'´ FLC FZ ï'½ 0.75 ï International Rectifier
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FZ 73 capacitor 1500 6.3V

Abstract: FZ 89 1500 6.3V * Vin * Fm * Select: R3 = 4.22 k C4 1 ; C4 7.84 nF, Select : C4 8.2 nF 2 * FZ 1 * R 3 , BiasGnd PGnd Comp C4 8.2 nF C7 2.2nF R10 57.6 R8 7.5 K PGood Rbot 604 Co=10X22uF/ 0805/X5R/6.3V , 6.45 6.4 PVcc (V) 6.35 6.3 6.25 6.2 6.15 200 300 400 500 600 700 800 900 1000 1100 , : SWITCHING FREQUENCY VS. EXTERNAL RESISTOR (RT) Fsw (kHz) 250 300 400 450 500 600 800 1000 1500 RT , Fz 75 % FLC Fz 0.75 * 1 2 Lo * C o (22) FZ F POLE Frequency Use equations
International Rectifier
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FZ 73 capacitor 1500 6.3V FZ 89 1500 6.3V FZ 87 1500 6.3V FZ 89 capacitor 1500 6.3V 59PR9874 fz 69 1000 16v 5V16V 1827PBF

FZ 87 1500 6.3V

Abstract: FZ 89 capacitor 1500 6.3V * Vin * Fm * Select: R3 = 4.22 k C4 1 ; C4 7.84 nF, Select : C4 8.2 nF 2 * FZ 1 * R 3 , Vosp PGD Rt iP1827 Vosm Voso Fb BiasGnd PGnd Comp C4 8.2 nF C7 2.2nF R10 57.6 R8 7.5 K PGood , 6.45 6.4 PVcc (V) 6.35 6.3 6.25 6.2 6.15 200 300 400 500 600 700 800 900 1000 1100 , : SWITCHING FREQUENCY VS. EXTERNAL RESISTOR (RT) Fsw (kHz) 250 300 400 450 500 600 800 1000 1500 RT , Fz 75 % FLC Fz 0.75 * 1 2 Lo * C o (22) FZ F POLE Frequency Use equations
International Rectifier
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SMD code V12 LGA 2011 LGA 1150

FZ 89 1500 6.3V

Abstract: LGA 2011 LGA 1150 * Vin * Fm * Select: R3 = 4.22 k C4 1 ; C4 7.84 nF, Select : C4 8.2 nF 2 * FZ 1 * R 3 , Comp C4 8.2 nF C7 2.2nF R10 57.6 R8 7.5 K PGood Rbot 604 Co=10X22uF/ 0805/X5R/6.3V Rt 36.5 , 6.45 6.4 PVcc (V) 6.35 6.3 6.25 6.2 6.15 200 300 400 500 600 700 800 900 1000 1100 , : SWITCHING FREQUENCY VS. EXTERNAL RESISTOR (RT) Fsw (kHz) 250 300 400 450 500 600 800 1000 1500 RT , , place the zero before the LC filter resonant frequency pole: VREF H(s) dB Fz 75 % FLC Fz
International Rectifier
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120v to 5v buck converter FZ 75 capacitor 1500 6.3V tapped inductor buck converter 121k 1kv capacitor sr8 regulator

varistor svc 561 14

Abstract: Z5U 103M 1KV -82% over the temperature range of -30 to 85. All class II capacitors vary in capacitance 2012(0805 , , Minidisk, MP3 Player -30 to 85 +22, -82% -30 to 85 Multi Layer Ceramic Capacitors 5 SMD , ~-82% Operating Temperature -30~85 Capacitance Tolerance -20~+80%(±20%) Dissipation , (330) 39(390) 47(470) 56(560) 68(680) 82(820) 100(101) 120(121) 150(151) 180(181) 220(221) 270(271) 330(331) 390(391) 470(471) 560(561) 680(681) 820(821) 1000(102) 1200(122) 1500(152
SAMWHA
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varistor svc 561 14 Z5U 103M 1KV samwha capacitor part numbers SVC 561 14 varistor 472m varistor svc 471 14

Step-up 12V to 36V 300mA

Abstract: LDNB s · CC The zero fZ = 1 2 · · RC · CC is about 70kHz. 3460fb 5 LT3460/LT3460 , ­40 10 100 FREQUENCY (kHz) 1 Figure 2. 5V to 12V Step-Up Converter ­360 1000 3460 F03 , ­30 ­315 ­40 R1 FB = VOUT R1+ R2 1 10 100 FREQUENCY (kHz) ­360 1000 3460 F04 , before fZ, the phase margin will be small. Figure 3 is the Bode plot of the feedback loop gain measured , + C1 VIN D1 SW 39.2k SHDN C2 4.7F 6.3V FB 84 VIN = 3.6V 82 VIN =
Linear Technology
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LT3460 Step-up 12V to 36V 300mA LDNB led driver pwm 350mA CONVERTER 350MA SOT23 Cross Reference LT3460ES5 LT3460/LT3460-1 LT3460-1 3460/LT3460-1 LT1945 LT1961
Abstract: + 1 s â'¢ CC The zero fZ = 1 2 â'¢ â'¢ RC â'¢ CC is about 70kHz. 3460fb 5 LT3460 , FREQUENCY (kHz) â'"360 1000 3460 F03 Without the feed-forward capacitor, the transfer function from , + R2 1 10 100 FREQUENCY (kHz) â'"360 1000 3460 F04 With the feed-forward capacitor CF , ) The feedback loop gain T(s) = K3 â'¢ GP(s) â'¢ GC(s). If it crosses over 0dB far before fZ, the phase , Converter + C1 VIN D1 SW 39.2k SHDN C2 4.7µF 6.3V FB 84 VIN = 3.6V 82 Linear Technology
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LTC3400/LTC3400B LTC3401/LTC3402 LT3461/LT3461A LT3464 LT3465/LT3465A

FZ 76 capacitor 1000 16V

Abstract: FZ 78 1000 16v compensation for most applications. fZ = The LT3460/LT3460-1 uses peak current mode control. The current , over 0dB far before fZ, the phase margin will be small. Figure 3 is the Bode plot of the feedback loop , ­45 PHASE (DEG) ­90 PHASE ­135 ­180 ­225 ­270 ­315 1 10 100 FREQUENCY (kHz) ­360 1000 3460 F03 VIN , ) ­90 ­135 ­180 ­225 ­270 ­315 ­360 1000 3460 F04 Without the feed-forward capacitor, the transfer , Converter VIN 2.7V TO 4.2V L1 10H 90 D1 VOUT 5V EFFICIENCY (%) 88 86 84 82 80 78 76 74 C1: TAIYO YUDEN X5R
Linear Technology
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FZ 76 capacitor 1000 16V FZ 78 1000 16v GMK107BJ105 TA07A IC marking CF lt1615 marking 650KH

1mh 15A 50KHZ inductor

Abstract: schematic diagram ac regulator =1.5V MAX UNITS 1.5 1000 mA mA V mmho 0.1 50 TDB Ton TYP 0.7 500 GM Tr , R4 FZ 75%FLC Optional FZ 0.753 Gain(dB) FZ The transfer function (Ve / VOUT) is , the gain at zero cross frequency. 10 FZ = 3.6KHz R4 = 17.8K C9 2.4nF; Choose C9 =2.2nF One , local feedback and its asymptotic gain plot. FZ = 1 For: Lo = 1.1mH Co = 990mF H(s) dB , =5.0V,Vout=1.6V 92 Efficiency (%) 90 88 86 84 82 80 0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16
International Rectifier
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IRU3138 1mh 15A 50KHZ inductor schematic diagram ac regulator DI-22 BAT54 IRF7456 IRF7460 PD94701 200KH 400KH 14-PIN
Abstract: 42 67 36 63 68 61 54 57 46 51 39 5V 103 61 94 50 82 49 76 41 65 68 66 57 63 , capacitor introduces a zero (Equation 5) and pole (Equation 6) in the system: fZ = Table 7. Cross , calculated value, a standard value can be selected to obtain the best transient performance. fC = fZ , dynamic response without the CFF capacitor. Therefore, CFF = 1000 pF. C FF = 1 × 2 × Ï' à , bode plot and load dynamic response with CFF = 1000 pF. From Table 7, fC (cross frequency) = 45 kHz Analog Devices
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ADP2118 EVAL-ADP2118 CRCW060310R0FKEA CRCW060310K0JKTA CRCW060310K0FKEA M20-9990245
Abstract: 1000 1000 1000 1000 1000 1000 1000 CCP (pF) 150 100 100 68 10 8.2 4.7 150 100 100 , 580 8.2 8.1 8.0 7.9 7.8 â'"20 0 20 40 60 80 TEMPERATURE (°C , input power is applied, connect EN to PVIN. 1400 1200 1000 INTERNAL REGULATOR (VREG) The , Rev. A | Page 16 of 24 ISAT (A) 13.7 11.4 9.8 8.2 7.1 6.1 36 27.5 25.6 18.6 17 13.5 12 , . fZ = RBOT + RTOP × 1 + RC × CC × s 1.07 V × VIN _ RISING â' 1.17 V × VIN _ FALLING Analog Devices
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ADP2384 MO-220-WGGD 04-28-2014-C CP-24-12 ADP2384ACPZN-R7 ADP2384-EVALZ

FZ 89 1500 6.3V

Abstract: FZ 77 1500 6.3v * Vin * Fm * Select: R3 = 4.22 k C4 1 ; C4 7.84 nF, Select : C4 8.2 nF 2 * FZ 1 * R 3 , 6.45 6.4 6.35 6.3 PVcc (V) 6.25 6.2 6.15 6.1 6.05 6 5.95 200 300 400 500 600 700 800 900 1000 , : SWITCHING FREQUENCY VS. EXTERNAL RESISTOR (RT) Fsw (kHz) 250 300 400 450 500 600 800 1000 1500 RT , the zero before the LC filter resonant frequency pole: VREF H(s) dB Fz 75 % FLC Fz 0.75 * 1 2 Lo * C o (22) FZ F POLE Frequency Use equations (20), (21) and (22) to
International Rectifier
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FZ 77 1500 6.3v v126 P1837 1837PBF

zf 200

Abstract: 1400 v124 * Vin * Fm * Select: R3 = 4.22 k C4 1 ; C4 7.84 nF, Select : C4 8.2 nF 2 * FZ 1 * R 3 , 6.45 6.4 6.35 6.3 PVcc (V) 6.25 6.2 6.15 6.1 6.05 6 5.95 200 300 400 500 600 700 800 900 1000 , : SWITCHING FREQUENCY VS. EXTERNAL RESISTOR (RT) Fsw (kHz) 250 300 400 450 500 600 800 1000 1500 RT , the zero before the LC filter resonant frequency pole: VREF H(s) dB Fz 75 % FLC Fz 0.75 * 1 2 Lo * C o (22) FZ F POLE Frequency Use equations (20), (21) and (22) to
International Rectifier
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zf 200 1400 v124

LGA 2011 LGA 1150

Abstract: FZ 51 1500 6.3V * Vin * Fm * Select: R3 = 4.22 k C4 1 ; C4 7.84 nF, Select : C4 8.2 nF 2 * FZ 1 * R 3 , 6.45 6.4 6.35 6.3 PVcc (V) 6.25 6.2 6.15 6.1 6.05 6 5.95 200 300 400 500 600 700 800 900 1000 , : SWITCHING FREQUENCY VS. EXTERNAL RESISTOR (RT) Fsw (kHz) 250 300 400 450 500 600 800 1000 1500 RT , H(s) dB Fz 75 % FLC Fz 0.75 * 1 2 Lo * C o (22) FZ F POLE Frequency Use , CPOLE: (19) 1 Fz 2 * R3 * C 4 (20) C POLE 1 1 *R3*Fs C4 1 *R3*Fs (24
International Rectifier
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FZ 51 1500 6.3V PCDC1008-R215EMO 39 marking V123
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