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Part Manufacturer Description Datasheet BUY
EP9302-IQZ Cirrus Logic Microcontroller visit Digikey
EP9302-CQZ Cirrus Logic Microcontroller visit Digikey
CS8900A-CQ3Z Cirrus Logic LAN Controller, 2 Channel(s), CMOS, PQFP100, LEAD FREE, MS-026, LQFP-100 visit Digikey
CS8900A-IQZ Cirrus Logic LAN Controller, 2 Channel(s), CMOS, PQFP100, LEAD FREE, MS-026, LQFP-100 visit Digikey
CS8900A-IQ3ZR Cirrus Logic LAN Controller, 2 Channel(s), CMOS, PQFP100, LEAD FREE, MS-026, LQFP-100 visit Digikey
CS8900A-IQ3Z Cirrus Logic LAN Controller, 2 Channel(s), CMOS, PQFP100, LEAD FREE, MS-026, LQFP-100 visit Digikey

100+micro+farad+25v+electrolytic+capacitor

Catalog Datasheet MFG & Type PDF Document Tags
Abstract: 2.0 TRANSFER CHARACTERISTICS Slew Rate Open Loop Voltage Gain Gain Bandwidth Product 2 2 VOUT=±25V RL=1K AV=-10V/V VO=±25V RL=1K F=10Hz RL=1K F=1MHz 4 4 - 1.0 96 - 2.5 100 1 - 1.0 96 - , decoupling scheme consists of a 0.1 microfarad ceramic capacitor in parallel with a 4.7 microfarad tantalum , , such as the MSK 161, to place a 30-50 microfarad non-electrolytic capacitor with a low effective series MS Kennedy
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100 microfarad 25v capacitor MIL-PRF-38534 MSK161 MSK161B
Abstract: TRANSFER CHARACTERISTICS Slew Rate Open Loop Voltage Gain Gain Bandwidth Product 2 2 VOUT=±25V RL=1K AV=-10V/V VO=±25V RL=1K F=10Hz RL=1K F=1MHz 4 4 - 1.0 96 - 2.5 100 1 - 1.0 96 - 2.5 100 1 , decoupling scheme consists of a 0.1 microfarad ceramic capacitor in parallel with a 4.7 microfarad tantalum , , such as the MSK 161, to place a 30-50 microfarad non-electrolytic capacitor with a low effective series MS Kennedy
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syncro
Abstract: ±40 RCL=0 AV=-10V/V TJ , Voltage Gain 2 VO=±25V RL=1K F=10Hz 4 96 100 - 96 100 - dB Gain Bandwidth , consists of a 0.1 microfarad ceramic capacitor in parallel with a 4.7 microfarad tantalum capacitor from , MSK 161, to place a 30-50 microfarad non-electrolytic capacitor with a low effective series MS Kennedy
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200 microfarad 25v capacitor 100 microfarad 20v capacitor 161E PA61 ISO-9001
Abstract: right, a 10-microfarad capacitor esr chart is shown for different case sizes. One thing we notice here is as we go towards a higher case size capacitor, 10 microfarad, the ESR is lower. Again, what happens if you keep the same case size and keep increasing the capacitance? For example, 10 microfarad in 2012 case size, has a higher esr compared to a 100-microfarad capacitor. The ESR is lower for the , number of paralleled terminations affect ESL. The figure on the right, what is seen here is the same 10-microfarad National Semiconductor
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capacitor 10 microfarad 1 microhenry inductor 1000 microfarad 25v capacitor capacitor, 1000 microfarad 16v ELLVGG inductor 15 microhenry
Abstract: 400V Supply Voltage (Total) ±300mA Output Current ±25V Differential Input Voltage ±Vcc Common , ±25V of differential input voltages. In applications where this may be violated, external protection , effective decoupling scheme consists of a 0.1 microfarad ceramic capacitor in parallel with a 4.7 microfarad tantalum capacitor for each power supply pin to ground. All power supply decoupling capacitors MS Kennedy
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MSK130 2 microfarad 400v capacitor 220 microfarad 25v capacitor 100 microfarad 400v capacitor capacitor 220 microfarad
Abstract: 400V ±300mA ±25V ±Vcc 21°C/W , can safely handle up to ±25V of differential input voltages. In applications where this may be , oscillation. An effective decoupling scheme consists of a 0.1 microfarad ceramic capacitor in parallel with a 4.7 microfarad tantalum capacitor for each power supply pin to ground. All power supply decoupling MS Kennedy
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MSK131
Abstract: 400V ±300mA ±25V ±Vcc 21°C/W , ±25V of differential input voltages. In applications where this may be violated, external protection , effective decoupling scheme consists of a 0.1 microfarad ceramic capacitor in parallel with a 4.7 microfarad tantalum capacitor for each power supply pin to ground. All power supply decoupling capacitors MS Kennedy
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Abstract: Gain Bandwidth Product Rl - 1 K ìì A vâ'" 10V/v V0=±25V R l= 1KQ F=10Hz Rl=1K£2 F=1 MH z , decoupling scheme consists of a 0.1 microfarad ceramic capacitor in parallel with a 4.7 microfarad tantalum , , such as the MSK 161, to place a 30-50 microfarad nonelectrolytic capacitor with a low effective series -
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MSK-161 MSK-161B
Abstract: TYPE Specifications ROGERS 50uF ELECTROLYTICCAPACITOR ON J25' DIA RESISTOR ON 3 OHM M/A-COM
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PH1819-15N POE-15 RF NPN POWER TRANSISTOR 5 WATT 2.4 GHZ 18801 bipolar power transistor wacom
Abstract: LINEAR INTEGRATED CIRCUITS TYPE LM323 3-AMP, 5 VOLT POSITIVE REGULATOR D2717, JANUARY 1983 3-A Output Current Capability 2.5-V Dropout Voltage Thermal Shutdown Protection Internal Current Limiting Protection â'¢ Output Impedance . . . 0.01 à Typ â'¢ Power Dissipation up to 30 W â'¢ Direct Replacement , operation, however if the device is more than four inches from the input filter capacitor, a 1 -microfarad solid-tantalum capacitor should be used at the input. A 0.1 -microfarad capacitor at the output may be used to -
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12 VOLT 2 AMP regulator capacitor 0.1 microfarad 25v Texas Instruments amp diagram 1000 microfarad 35 v 1000 microfarad 25v 1 microfarad capacitor
Abstract: Cerafine file:///C|/APPS/NETSCAPE/DOWNLOAD/CERAFINE.HTM ELNA's Audio Grade CERAFINE Series Capacitors: The Cerafine series of Aluminum electrolyticcapacitor utilizes ELNA's unique ceramic power for it's internal separators. The articlebelow describes the basic property of this ceramic powder. From: ELNA CO. LTD ENGINEERING GROUP The ceramic discussed here is an inorganic insulator usedin capacitors in the form of powder. The raw powder has particle sizes ranging from 0.1 to40um in diameter -
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elna cerafine cerafine ELNA FOR AUDIO elna cerafine capacitor Electrolyte for Capacitors ELNA
Abstract: resistors of nominally equal value and a .01 microfarad decoupling capacitor. The MDRC-1641 is designed for ECL Line Termination to a - 2.0 volt buss. The .01 microfarad decoupling capacitor is for bypassing , microfarad decoupling capacitor. The MDRC-1642 is designed for ECL Pull-down to a - 5.2 volt buss. The .01 microfarad decoupling capacitor is for bypassing voltage transients on the voltage buss. MDRC , 2.0 volts. A .01 microfarad decoupling capacitor bypasses the V ee buss. VEE V cc ^ â'žÂ« VEE -
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0.1 microfarad capacitor voltage rating 100PPM/ MDRC-1643 MDRC-1641-500G
Abstract: nominally equal value and a .01 microfarad decoupling capacitor. The MDRC-1641 is designed for ECL Line Termination to a - 2.0 volt buss. The .01 microfarad decoupling capacitor is for bypassing transients between , a .01 microfarad decoupling capacitor. The MDRC-1642 is designed for ECL Pull-down to a - 5.2 volt buss. The .01 microfarad decoupling capacitor is for bypassing voltage transients on the voltage buss , voltage of - 2.0 volts. A .01 microfarad decoupling capacitor bypasses the V ee buss. ELECTRICAL -
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1000 microfarad capacitor CAPACITOR 1000 MICROFARAD capacitor, 1000 microfarad
Abstract: ATIC The MDRC-1641 circuit contains 11 resistors of nominally equal value and a .01 microfarad , microfarad decoupling capacitor is for bypassing transients between supply voltages. The MDRC-1642 circuit contains 12 resistors of 510H each and a .01 microfarad decoupling capacitor. The MDRC-1642 is designed for ECL Pull-down to a -5 .2 volt buss. The .01 microfarad decoupling capacitor is for bypassing , ) providing a Thevenin equivalent voltage of -2 .0 volts. A .01 microfarad decoupling capacitor bypasses the -
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C-1641
Abstract: equal value and a .01 microfarad decoupling capacitor. The MDRC-1641 is designed for ECL Line Termination to a - 2.0 volt buss. The .01 microfarad decoupling capacitor is for bypassing transients between , a .01 microfarad decoupling capacitor. The MDRC-1642 is designed for ECL Pull-down to a - 5.2 volt buss. The .01 microfarad decoupling capacitor is for bypassing voltage transients on the voltage buss , volts. A .01 microfarad decoupling capacitor bypasses the V ee buss. vee V ee ELECTRICAL -
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MIL-STD-202
Abstract: -1641 circuit contains 11 resistors of nominally equal value and a .01 microfarad decoupling capacitor. The MDRC-1641 is designed for ECL Line Termination to a - 2.0 volt buss. The .01 microfarad decoupling , -1642 circuit contains 12 resistors of 510 ohm each and a .01 microfarad decoupling capacitor. The MDRC-1642 is designed for ECL Pull-down to a - 5.2 volt buss. The .01 microfarad decoupling capacitor is for bypassing , ) providing a Thevenin equivalent voltage of - 2.0 volts. A .01 microfarad decoupling capacitor bypasses the -
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0.1 MICROFARAD microfarad capacitor 100 microfarad capacitor, .01 microfarad capacitor 1 microfarad capacitor 30 microfarad
Abstract: microfarad decoupling capacitor. The MDRC-1641 is designed for ECL Line Termination to a - 2.0 volt buss. The .01 microfarad decoupling capacitor is for bypassing transients between supply voltages. MDRC , microfarad decoupling capacitor. The MDRC-1642 is designed for ECL Pull-down to a - 5.2 volt buss. The .01 microfarad decoupling capacitor is for bypassing voltage transients on the voltage buss. MDRC , voltage of - 2.0 volts. A .01 microfarad decoupling capacitor bypasses the VEE buss. 16 R1 1 VCC Vishay Dale
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of 1000 microfarad capacitor 1000 microfarad capacitor 25 volt capacitor, 1000 microfarad and 25 volts datasheet of 1000 microfarad capacitor of 1000 microfarad for capacitor, 1000 microfarad
Abstract: MIL-PRF-38534 CERTIFIED FACILITY FET INPUT HIGH SPEED VOLTAGE FOLLOWER/BUFFER AMPLIFIER M.S.KENNEDY CORP. 4707 Dey Road Liverpool, N.Y. 13088 0033 (315) 701-6751 FEATURES: Industry Wide LH0033/EL2005 Replacement Low Input Offset - 2mV Low Input Offset Drift - 25V/°C FET Input, Low Input , induced oscillation. An effective decoupling scheme consists of a 0.1 microfarad ceramic capacitor in parallel with a 4.7 microfarad tantalum capacitor from each power supply pin to ground. 3 8548-8 Rev MS Kennedy
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2n2907 smd 2N2222 pinout 140MH 2N2222 2N2907 MSK0033 MSK0033B 8001401ZX
Abstract: MIL-PRF-38534 CERTIFIED FACILITY FET INPUT HIGH SPEED VOLTAGE FOLLOWER/BUFFER AMPLIFIER M.S.KENNEDY CORP. 4707 Dey Road Liverpool, N.Y. 13088 0033 (315) 701-6751 FEATURES: Industry Wide LH0033/EL2005 Replacement Low Input Offset - 2mV Low Input Offset Drift - 25V/°C FET Input, Low Input Current - 50pA High Slew Rate - 1500V/S Wide Bandwidth - 140MHz High Output Current - ±100mA Available to , microfarad ceramic capacitor in parallel with a 4.7 microfarad tantalum capacitor from each power supply pin MS Kennedy
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Abstract: input, nominal load and 25° C unless otherwise specified. External, low ESR, 10 microfarad (minimum , 2500LN Single 2V & 2.5V (Without heatsink) MODEL 2500LN Single 2V & 2.5V (With heatsink) Pout % , microfarad (minimum) capacitor across input is recommended for operation. B-138 HOW TO ORDER HOW TO Martek Power
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LW020 LW025 500LFM 200LFM 100LFM B-139
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