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Abstract: No abstract text available
Text: Capacitor Array Capacitor Array IPC BENEFITS OF USING CAPACITOR ARRAYS AVX capacitor arrays offer designers the opportunity to lower placement costs, increase assembly line output through lower component count per board and to reduce real estate requirements.
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transistor w2a
Abstract: 102M 104M capacitor 47 nano 0.04 micro farad ceramic capacitor X7R CAPACITORS color code capacitor 470 micro farads
Text: Capacitor Array Capacitor Array IPC BENEFITS OF USING CAPACITOR ARRAYS AVX capacitor arrays offer designers the opportunity to lower placement costs, increase assembly line output through lower component count per board and to reduce real estate requirements.
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SMD W2A
Abstract: 0.1 micro farad ceramic capacitor capacitor 4700 micro farad 25V SMD W2A 56 1 micro farad COG chip capacitor 1206 1.8 kilo Ohms Resistors W2A smd
Text: Capacitor Array Capacitor Array IPC BENEFITS OF USING CAPACITOR ARRAYS AVX capacitor arrays offer designers the opportunity to lower placement costs, increase assembly line output through lower component count per board and to reduce real estate requirements.
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Untitled
Abstract: No abstract text available
Text: MLCC Tin/Lead Termination “B” General Specifications AVX Corporation will support those customers for commercial and military Multilayer Ceramic Capacitors with a termination consisting of 5% minimum lead. This termination is indicated by the use of a “B” in the 12th
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capacitor 2200 micro farad 50V
Abstract: MLCC CRACK 470 Micro Farads 63V KA 0204
Text: MLCC Tin/Lead Termination “B” General Specifications AVX Corporation will support those customers for commercial and military Multilayer Ceramic Capacitors with a termination consisting of 5% minimum lead. This termination is indicated by the use of a “B” in the 12th
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Untitled
Abstract: No abstract text available
Text: MLCC Tin/Lead Termination “B” General Specifications AVX Corporation will support those customers for commercial and military Multilayer Ceramic Capacitors with a termination consisting of 5% minimum lead. This termination is indicated by the use of a “B” in the 12th
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capacitor 2200 micro farad 25V
Abstract: 680 KILO OHM Surface Mount MLC Capacitors reliability capacitor 47 nano
Text: C0G NP0 Dielectric General Specifications C0G (NP0) is the most popular formulation of the “temperature-compensating,” EIA Class I ceramic materials. Modern C0G (NP0) formulations contain neodymium, samarium and other rare earth oxides. C0G (NP0) ceramics offer one of the most stable capacitor
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30ppm/
capacitor 2200 micro farad 25V
680 KILO OHM
Surface Mount MLC Capacitors reliability
capacitor 47 nano
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capacitor 2200 micro farad 25V
Abstract: capacitor 4700 micro farad 25V capacitor 2200 micro farad 50V capacitor 2200 micro farad 16V 3300 XL capacitor 47 nano "zero ohm" 1808 CAPACITOR 0.22 MICRO FARAD 50 VOLT
Text: X7R Dielectric General Specifications X7R formulations are called “temperature stable” ceramics and fall into EIA Class II materials. X7R is the most popular of these intermediate dielectric constant materials. Its temperature variation of capacitance is within ±15% from
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capacitor 2200 micro farad 100V
Abstract: capacitor 0.001 micro farad 500V 0.001 micro farad capacitor 680 KILO OHM capacitor 2200 micro farad 25V capacitor 47 nano cc cv2 100 170
Text: C0G NP0 Dielectric General Specifications C0G (NP0) is the most popular formulation of the “temperature-compensating,” EIA Class I ceramic materials. Modern C0G (NP0) formulations contain neodymium, samarium and other rare earth oxides. C0G (NP0) ceramics offer one of the most stable capacitor
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capacitor 2200 micro farad 100V
capacitor 0.001 micro farad 500V
0.001 micro farad capacitor
680 KILO OHM
capacitor 2200 micro farad 25V
capacitor 47 nano
cc cv2 100 170
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capacitor 2200 micro farad 25V
Abstract: capacitor 2200 micro farad 50V
Text: X7R Dielectric General Specifications X7R formulations are called “temperature stable” ceramics and fall into EIA Class II materials. X7R is the most popular of these intermediate dielectric constant materials. Its temperature variation of capacitance is within ±15% from
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20rmination
capacitor 2200 micro farad 25V
capacitor 2200 micro farad 50V
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capacitor 2200 micro farad 35V
Abstract: capacitor ceramic 100 nano farad 63 volts 10 micro farad 16V capacitor capacitor 47 nano 470 micro farad capacitor 4.7 micro farad 16V capacitor capacitor 4 micro farad 550
Text: X5R Dielectric General Specifications GENERAL DESCRIPTION • General Purpose Dielectric for Ceramic Capacitors • EIA Class II Dielectric • Temperature variation of capacitance is within ±15% from -55°C to +85°C • Well suited for decoupling and filtering applications
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capacitor 2200 micro farad 16V
Abstract: capacitor 220 micro farad 16 volts 2200 micro farad capacitor 1800 micro farad 16V
Text: X5R Dielectric General Specifications GENERAL DESCRIPTION • General Purpose Dielectric for Ceramic Capacitors • EIA Class II Dielectric • Temperature variation of capacitance is within ±15% from -55°C to +85°C • Well suited for decoupling and filtering applications
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Abstract: No abstract text available
Text: X5R Dielectric General Specifications GENERAL DESCRIPTION • General Purpose Dielectric for Ceramic Capacitors • EIA Class II Dielectric • Temperature variation of capacitance is within ±15% from -55°C to +85°C • Well suited for decoupling and filtering applications
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capacitor 6.3v 1800 micro farad equivalent
Abstract: No abstract text available
Text: X5R Dielectric General Specifications GENERAL DESCRIPTION • General Purpose Dielectric for Ceramic Capacitors • EIA Class II Dielectric • Temperature variation of capacitance is within ±15% from -55°C to +85°C • Well suited for decoupling and filtering applications
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Abstract: No abstract text available
Text: X5R Dielectric General Specifications GENERAL DESCRIPTION • General Purpose Dielectric for Ceramic Capacitors • EIA Class II Dielectric • Temperature variation of capacitance is within ±15% from -55°C to +85°C • Well suited for decoupling and filtering applications
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0.001 micro farad capacitor
Abstract: capacitor ceramic 100 nano farad 63 volts
Text: X5R Dielectric General Specifications GENERAL DESCRIPTION • General Purpose Dielectric for Ceramic Capacitors • EIA Class II Dielectric • Temperature variation of capacitance is within ±15% from -55°C to +85°C • Well suited for decoupling and filtering applications
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capacitor 6.3v 1800 micro farad equivalent
Abstract: capacitor 10 micro farad 63V capacitor ceramic 100 nano farad 63 volts
Text: X5R Dielectric General Specifications GENERAL DESCRIPTION • General Purpose Dielectric for Ceramic Capacitors • EIA Class II Dielectric • Temperature variation of capacitance is within ±15% from -55°C to +85°C • Well suited for decoupling and filtering applications
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470 Micro Farads 63V
Abstract: No abstract text available
Text: C0G NP0 Dielectric General Specifications C0G (NP0) is the most popular formulation of the “temperature-compensating,” EIA Class I ceramic materials. Modern C0G (NP0) formulations contain neodymium, samarium and other rare earth oxides. C0G (NP0) ceramics offer one of the most stable capacitor
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470 Micro Farads 63V
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capacitor 2200 micro farad 25V
Abstract: capacitor 47 nano capacitor 6800 micro farad 50V
Text: X7R Dielectric General Specifications X7R formulations are called “temperature stable” ceramics and fall into EIA Class II materials. X7R is the most popular of these intermediate dielectric constant materials. Its temperature variation of capacitance is within ±15% from
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surface Capacitor 1uf 100V 1210 x7r
Abstract: 270nF 600V capacitor 0.015 micro farad 250V CHIP 15nF 50V X7R 0402
Text: X7R Dielectric General Specifications X7R formulations are called “temperature stable” ceramics and fall into EIA Class II materials. X7R is the most popular of these intermediate dielectric constant materials. Its temperature variation of capacitance is within ±15% from
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MIL-STD202
EIA-RS-198.
surface Capacitor 1uf 100V 1210 x7r
270nF 600V
capacitor 0.015 micro farad 250V
CHIP 15nF 50V X7R 0402
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Abstract: No abstract text available
Text: X5R Dielectric General Specifications GENERAL DESCRIPTION • General Purpose Dielectric for Ceramic Capacitors • EIA Class II Dielectric • Temperature variation of capacitance is within ±15% from -55°C to +85°C • Well suited for decoupling and filtering applications
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failure rate avx 0201 ceramic capacitor
Abstract: mica compression trimmer capacitor rf component catalog crimp FPC capacitor 50v 4700 uF elco avx medium power film capacitor dip 40 pin AVX surface mount avx surface mount ceramic 0612a rf-microwave product
Text: A KYOCERA GROUP COMPANY AVX Surface Mount Ceramic Capacitor Products AVX Products Listing PASSIVES CONNECTORS Capacitors Multilayer Ceramic Tantalum Microwave Glass Film Power Film Power Ceramic Ceramic Disc Trimmer BestCap Resistors Chips Arrays Potentiometers
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Designed-539-1501
S-SMTCC00M1201-C
failure rate avx 0201 ceramic capacitor
mica compression trimmer capacitor
rf component catalog
crimp FPC
capacitor 50v 4700 uF elco
avx medium power film capacitor dip 40 pin
AVX surface mount
avx surface mount ceramic
0612a
rf-microwave product
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capacitor 2200 micro farad 25V
Abstract: capacitor 4700 micro farad 25V capacitor 47 nano 470 micro farad capacitor 1 micro farad 560 kilo Ohms Resistors
Text: X7R Dielectric General Specifications X7R formulations are called “temperature stable” ceramics and fall into EIA Class II materials. X7R is the most popular of these intermediate dielectric constant materials. Its temperature variation of capacitance is within ±15% from
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Untitled
Abstract: No abstract text available
Text: C0G NP0 Dielectric General Specifications C0G (NP0) is the most popular formulation of the “temperature-compensating,” EIA Class I ceramic materials. Modern C0G (NP0) formulations contain neodymium, samarium and other rare earth oxides. C0G (NP0) ceramics offer one of the most stable capacitor
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