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capacitor c1 220uF

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Abstract: 8 C1 and CE2 is as bypass capacitor, it needs to be 0.1uF or larger, and as close to U1 as , C7 1uF 2 U1 2 1 1 CB2 220uF Rin 0.3R 1 1 CN1 1 Output capacitor , 2 2 C1 1uF CE2 22uF C1 and CE2 is as bypass capacitor, it can be 0.1uF or larger. Put , =2.5V Input capacitor minimum value is 470uF, for better transient response it should be larger. CB1, CB2, CE1 is optional and puts as close to U1 as possible 1 1 2 CB1 220uF CB2 220uF 1 ... Champion Microelectronic
Original
datasheet

5 pages,
169.81 Kb

PS08 104 K capacitor CM8562-SOP8 N252 1000uf capacitor CM8562 capacitor c1 220uF capacitor 470uF for capacitor 220UF TEXT
datasheet frame
Abstract: (0805) Taiyo Yuden LMK212BJ105MG LMK212BJ105MG 0.1uF ceramic capacitor (0805) 220uF 35V aluminum electrolytic capacitor Sanyo 35MV220CA 35MV220CA 220uF 10V aluminum electrolytic capacitor Sanyo 10MV220CA 10MV220CA 4700pF ceramic , CPE modem 24V INPUT C2 1uF 10V 13 R1 200k 2 20 VP C4 220uF 35V CA D1 CMPSH-3 19 VL BST ILIM COMP C1 8.2nF DH 18 17 16 LX C3 0.1uF T1 1:1 Lpri = , OUT 1 POK FB B2 15 14 N1B 3,4, 9,10 11,12 C5 220uF 10V CA R3 22 3 4 ... Maxim Integrated Products
Original
datasheet

2 pages,
14.35 Kb

capacitor 220uF 40v 1K resistor datasheet 2.2uF 10V electrolytic capacitor 17 220 capacitor 35MV220CA 5v Electrolytic capacitor Datasheets for capacitor 220UF 9956A resistor 0805 electrolytic capacitor 1uF 25v 1k ohm resistor capacitor 220uf/35v 2N3904 capacitor c1 220uF 220uF 10v Q2 220uF 10v 220uf, 25v electrolytic capacitor dual 2N3904 NPN Transistor 4k resistor 220uF TEXT
datasheet frame
Abstract: driven without stability or slew issues. A 220uF AC coupling capacitor is recommended at the output to , 220uF capacitor coupled with the 150W termination forms a highpass filter which blocks the DC while , 220uF RINA/Y4 CVOUT2/YOUTB RINB/Y5 ROUT/YOUTC GINB/Y7 GOUT/YOUTD BINA/C1 BINB/C2 , capacitor s Quad 4th-order reconstruction or dual anti-aliasing filter s 41dB stopband , TRANSCONDUCTANCE ERROR AMP RINA/Y4 RINB/Y5 TRANSCONDUCTANCE ERROR AMP BINA/C1 BINB/C2 ­ 4th ... Micro Linear
Original
datasheet

15 pages,
178.17 Kb

ML6431 ML6429CS-1 ML6429 74XX 128 channels analog multiplexer rgb-Composite Sync tv modulator DIGITAL CLOCK USING 74XX IC TEXT
datasheet frame
Abstract: without stability or slew issues. A 220uF AC coupling capacitor is recommended at the output to reduce , capacitor Quad 4th-order reconstruction or dual anti-aliasing filter 41dB stopband attenuation at 27MHz , * CVINUB/Y3* RINA/Y4 RINB/Y5 GINA/Y6 GINB/Y7 BINA/C1 BINB/C2 A/B MUX 1 MUX MUX MUX MUX SYNC TIMER , -Pin SOIC (S24) A/B MUX CVINF/Y1 CVINUA/Y2 CVINUB/Y3 GND VCC RINA/Y4 RINB/Y5 GINA/Y6 GINB/Y7 BINA/C1 BINB , video input. 5 6 7 8 9 10 11 12 13 GND VCC RINA/Y4 RINB / Y5 GINA/Y6 GINB/Y7 BINA/C1 BINB/C2 SWAP ... Fairchild Semiconductor
Original
datasheet

15 pages,
161.36 Kb

ML6429 TEXT
datasheet frame
Abstract: 220uF AC coupling capacitor is recommended at the output to reduce power consumption. Analog , achievable with peaking capacitor · Quad 4th-order reconstruction or dual anti-aliasing filter · 41dB , /Y2* CVINUB/Y3* MUX TRANSCONDUCTANCE ERROR AMP BINA/C1 BINB/C2 ­ 4th-ORDER FILTER , 17 VCCORGB GINA/Y6 9 16 GOUT/YOUTD GINB/Y7 10 15 BOUT/COUT BINA/C1 , luma video input for Bank 11 BINA/C1 Filtered analog BLUE video or chroma video input for ... Fairchild Semiconductor
Original
datasheet

14 pages,
147.57 Kb

tv modulator ML6431 ML6429CS-1 ML6429 Capacitor 0.33 p 74XX TEXT
datasheet frame
Abstract: without stability or slew issues. A 220uF AC coupling capacitor is recommended at the output to reduce , (Figure 9). 8 DC COUPLED APPLICATIONS The 220uF capacitor coupled with the 150 termination forms a , /YOUTD BINA/C1 BINB/C2 BOUT/COUT SYNCIN 23 SYNCOUT 24 A/B MUX 1 220uF 75 R/Y , ML6429 ML6429 220uF GINA/Y6 ROUT/YOUTC GINB/Y7 GOUT/YOUTD BINA/C1 BOUT/COUT BINB/C2 , mux I 7.1MHz to 8.4MHz cutoffs achievable with peaking capacitor I Quad 4th ... Fairchild Semiconductor
Original
datasheet

15 pages,
152.76 Kb

rgb-Composite Sync ML6431 ML6429CS-1 ML6429 DIGITAL CLOCK USING 74XX IC 74XX TEXT
datasheet frame
Abstract: without stability or slew issues. A 220uF AC coupling capacitor is recommended at the output to reduce , and Without Peaking Capacitor 13 ML6429 ML6429 LEGEND 5V GND C12 1uF FB1 VCCA FB2 C10 1uF 220uF R24 , peaking capacitor Quad 4th-order reconstruction or dual anti-aliasing filter 41dB stopband attenuation at , * CVINUB/Y3* RINA/Y4 RINB/Y5 GINA/Y6 GINB/Y7 BINA/C1 BINB/C2 A/B MUX 1 MUX MUX MUX MUX SYNC TIMER , MUX CVINF/Y1 CVINUA/Y2 CVINUB/Y3 GND VCC RINA/Y4 RINB/Y5 GINA/Y6 GINB/Y7 BINA/C1 BINB/C2 1 2 3 4 5 6 7 ... Micro Linear
Original
datasheet

17 pages,
190.39 Kb

ML6429 TEXT
datasheet frame
Abstract: D1 1N5819 1N5819 4 16V to 40V C2 220uF 16V 1 C1 33uF 63V UPL1V470MEH UPL1V470MEH, ESR = 0.34 , 220uF 10V MBRS130LT3 MBRS130LT3 C1 C2 D1 L1 Nichicon Nichicon Motorola Sumida UPL1J330MEH UPL1J330MEH, ESR = , PGND +5V, 0.5A SW 1N5819 1N5819 COUT 220uF FB SGND Fixed Regulator Shutdown Enable , 1k 1% GND COUT 220uF Adjustable Regulator 4-92 1997 MIC4574 MIC4574 Micrel , output capacitor COUT and the load. Energy is stored in the inductor as the current increases with time ... Micrel Semiconductor
Original
datasheet

7 pages,
76.47 Kb

1N5819 220UF 16V 6V40V 8V18V capacitor 220uF 16V LM2574 low quiescent current converter 0,5a MBR160 MIC4574 UPL1C221MPH Nichicon 07 MIC4574BWM UUX1H470MNT1GS MIC4574BN MIC4574-5.0BWM TTL - 24v Level Converter flyback converter 12v to 18v C55Y5U1H106Z CTX100-2P 16CV470GX TEXT
datasheet frame
Abstract: MIC29502 MIC29502 will remain R5 4.75k U1 MIC29502BU MIC29502BU VDDQ 2.5V IN C1 220uF 6.3V EN OUT C5 C2 C3 C4 220uF 220uF 220uF 220uF 6.3V 6.3V 6.3V 6.3V ADJ GND CR1 1N4148 1N4148 C8 120pF VREF , 2.5V IN C1 220uF 6V OUT C5 C2 C3 C4 220uF 220uF 220uF 220uF 6.3V 6.3V 6.3V 6.3V EN , C1 220uF 6V VCC 3.3V to 12V VREF EN OUT ADJ GND C2 C3 C4 C5 220uF 220uF 220uF , 100k R2 10k C10 220uF 16V C1 0.001uF C9 0.01uF C12 220uF 6.3V C11 220uF 6.3V R3 ... Micrel Semiconductor
Original
datasheet

7 pages,
112.41 Kb

TPSD227M006R0100 Tantalum 47uF 6.3V SUD50N02-06 1N4148 micrel 2182 AD8517 Application Note 35 MIC2182 12 VOLT 2 AMP regulator SI4884 MIC29502BU MIC29502 ADJ MIC29502 TEXT
datasheet frame
Abstract: (0805) 220uF 35V aluminum electrolytic capacitor Sanyo 35MV220CA 35MV220CA 470uF 16V aluminum electrolytic , capacitor (0805) 220uF 16V aluminum electrolytic capacitor Sanyo 16MV220HC 16MV220HC 3.3nF ceramic capacitor (0805 , WLL Terminal C4 1uF 10V 24V INPUT C3 4.7uF 35V 13 R1 130k C1 22nF 2 C6 220uF 35V CA D1 CMPSH-3 20 VP ILIM 19 VL BST COMP DH 17 16 C2 220pF C7 , 9 Q2 KSH30 KSH30 R9 46.4k 10 C15 220uF 16V HC R10 10.0k C14 3.3nF R11 18k ... Maxim Integrated Products
Original
datasheet

4 pages,
20.39 Kb

16MV220HC VP2-0116 capacitor 470uf 16v 1206 ELECTROLYTIC capacitor 330 35v capacitor 1000uF/16V capacitor 1000uF 16V description RESISTOR 1210 220uf,16v 914 to-92 capacitor 220uF 50v 6930A 47uf, 16v electrolytic capacitor 0401 transistor 150pf ceramic capacitor 220uF/16v electrolytic capacitor 220uf 16v capacitor 220UF 16V 220uF 16V Electrolytic Capacitor SANYO 220uF 16V SANYO 1000uF 16V CA TEXT
datasheet frame

Archived Files

Abstract Saved from Date Saved File Size Type Download
switching, specify C1 as a 220uF, low equivalent series resistance (ESR) capacitor. This input capacitor inductor (L1) enables a low start-up voltage for IC1. IC1's 15uF, low-ESR output capacitor (C2) minimizes current in this inductor to 100mV/R3. IC2's 470uF, low-ESR output capacitor (C3) reduces output ripple to values for C1 and C3. Figure 2 shows the overall conversion efficiency for different input voltages
/datasheets/files/maxim/0002/appno029.htm
Maxim 04/04/2001 7.52 Kb HTM appno029.htm
No abstract text available
/download/46010935-390978ZC/picpro1.doc
Microchip 31/01/2000 31 Kb DOC picpro1.doc
principally across C1 then we chose a capacitor with a high working voltage and a small impedence (i.e. big 220uF D2 400VDC 400VDC 2.2uF C1 D1 120 R2 Q1 GND -1.2V 26 TEST 36 22pF RESET OSCOUT VPP AVDD knee of the voltage-current characteristic. The bigger the capacitor value is, the higher the current 2 220Volt R1 56 Q1 BDX54S BDX54S C2 220uF 16V C3 220uF 16V D3 6.2V C4 470uF 25V R2 120 -1.2V GND D1 D2 C1 2.2uF 400VDC 400VDC Figure 3. Power Supply Circuit BURST MODE TRIAC CONTROL BY USING
/datasheets/files/stmicroelectronics/stonline/books/ascii/docs/6434-v3.htm
STMicroelectronics 25/05/2000 15.71 Kb HTM 6434-v3.htm
across C1 then we chose a capacitor with a high working voltage and a small impedence (i.e. big capacity 220Volt R1 56 Q1 BDX54S BDX54S C2 220uF 16V C3 220uF 16V D3 6.2V C4 470uF 25V R2 120 -1.2V GND D1 D2 C1 2.2uF C3 16V 220uF D2 400VDC 400VDC 2.2uF C1 D1 120 R2 Q1 GND -1.2V 26 TEST 36 22pF RESET OSCOUT VPP AVDD AVSS 31 of the voltage-current characteristic. The bigger the capacitor value is, the higher the current necessary to use a power resistor rather than a big capacitor because the diode block a half wave of the
/datasheets/files/stmicroelectronics/stonline/books/ascii/docs/6434.htm
STMicroelectronics 20/10/2000 16.23 Kb HTM 6434.htm
switching, specify C1 as a 220uF, low equivalent series resistance (ESR) capacitor. This input capacitor inductor (L1) enables a low start-up voltage for IC1. IC1's 15uF, low-ESR output capacitor (C2) minimizes current in this inductor to 100mV/R3. IC2's 470uF, low-ESR output capacitor (C3) reduces output ripple to values for C1 and C3. Figure 2 shows the overall conversion efficiency for different input voltages
/datasheets/files/maxim/0004/appno070.htm
Maxim 04/04/2001 7.53 Kb HTM appno070.htm
C3 16V 220uF D2 400VDC 400VDC 2.2uF C1 D1 120 R2 Q1 GND -1.2V 26 TEST 36 22pF RESET OSCOUT VPP AVDD AVSS 31 Vrms. Figure 3 displays the circuit: The mains voltage drops principally across C1 then we chose a capacitor with a high working voltage and a small impedence (i.e. big capacity) in order to have enough characteristic. The bigger the capacitor value is, the higher the current possible to supply will be. The zener use a negative voltage regulator as shown in fig. 4. 1 2 220Volt R1 56 Q1 BDX54S BDX54S C2 220uF 16V C3 220uF
/datasheets/files/stmicroelectronics/stonline/books/ascii/docs/6434-v2.htm
STMicroelectronics 14/06/1999 13.87 Kb HTM 6434-v2.htm
C3 16V 220uF D2 400VDC 400VDC 2.2uF C1 D1 120 R2 Q1 GND -1.2V 26 TEST 36 22pF RESET OSCOUT VPP AVDD AVSS 31 Vrms. Figure 3 displays the circuit: The mains voltage drops principally across C1 then we chose a capacitor with a high working voltage and a small impedence (i.e. big capacity) in order to have enough characteristic. The bigger the capacitor value is, the higher the current possible to supply will be. The zener use a negative voltage regulator as shown in fig. 4. 1 2 220Volt R1 56 Q1 BDX54S BDX54S C2 220uF 16V C3 220uF
/datasheets/files/stmicroelectronics/stonline/books/ascii/docs/6434-v1.htm
STMicroelectronics 02/04/1999 13.91 Kb HTM 6434-v1.htm
analog input Connected to external capacitor to determine Trem (remote control delay) timing. Trem (on to operational. Tpor 10 program. analog input Connected to external capacitor for Power-on-reset timing. Cpor = tor on pin 10. With 2.2 m F/16V F/16V capacitor on pin 10, 400msec turn on delay is achieved. e) The power 44 220UF/200V 2 69 1K 1 45 1000UF/25V 1000UF/25V 1 70 330R 1 46 2.2UF 1 71 10,1/4W 2 47 1.5NF 1 72 470R 1 48 BRIDGE F1 3.5A C31 4.7nF C1 .22uF/250V A.C C2 .22uF/250V A.C LF01 R4 10 R2 6.8K R5 10 R6 470 C6 .1uF C5
/datasheets/files/stmicroelectronics/stonline/books/ascii/docs/6412.htm
STMicroelectronics 20/10/2000 27.48 Kb HTM 6412.htm
Connected to external capacitor to determine Trem (remote control delay) timing. Trem (on to off) is 8ms Tpor 10 program. analog input Connected to external capacitor for Power-on-reset timing. Cpor = 2.2 adjusting the value of the charging capaci- tor on pin 10. With 2.2 m F/16V F/16V capacitor on pin 10, 400msec 1 67 3.3K 1 43 47NF 3 68 5 MOHM 1 44 220UF/200V 2 69 1K 1 45 1000UF/25V 1000UF/25V 1 70 330R 1 46 2.2UF 1 . continued BILL OF MATERIAL TSM111 TSM111 12/18 D1 BRIDGE F1 3.5A C31 4.7nF C1 .22uF/250V A.C
/datasheets/files/stmicroelectronics/stonline/books/ascii/docs/6412-v3.htm
STMicroelectronics 23/06/2000 26.09 Kb HTM 6412-v3.htm
analog input Connected to external capacitor to determine Trem (remote control delay) timing. Trem (on to operational. Tpor 10 program. analog input Connected to external capacitor for Power-on-reset timing. Cpor = tor on pin 10. With 2.2 m F/16V F/16V capacitor on pin 10, 400msec turn on delay is achieved. e) The power 44 220UF/200V 2 69 1K 1 45 1000UF/25V 1000UF/25V 1 70 330R 1 46 2.2UF 1 71 10,1/4W 2 47 1.5NF 1 72 470R 1 48 BRIDGE F1 3.5A C31 4.7nF C1 .22uF/250V A.C C2 .22uF/250V A.C LF01 R4 10 R2 6.8K R5 10 R6 470 C6 .1uF C5
/datasheets/files/stmicroelectronics/stonline/books/ascii/docs/6412-v2.htm
STMicroelectronics 14/06/1999 24.25 Kb HTM 6412-v2.htm