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Showing Results For: MLCCs - Multilayer Ceramic Capacitors

MLCCs - Multilayer Ceramic Capacitors


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GRM31B7U3A471JW31L, Murata
2998 In Stock
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£ 0.084
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RCE5C2A220J0DBH03A, Murata
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CGA3E2C0G1H471J080AA, TDK
3998 In Stock
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CGA2B3X7R1V104K050BB, TDK
9998 In Stock
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12061A470JAT2A, AVX
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AC0612MRX7R9BB103, Yageo
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£ 0.076
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CGA4J3C0G2E472J125AA, TDK
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CGA3E2X8R1H223K080AA, TDK
3998 In Stock
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CGA4C4C0G2W221J060AA, TDK
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CGA3E2NP01H182J080AA, TDK
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CGA4J3X8R1C105K125AD, TDK
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CGA4J3X8R1H224K125AD, TDK
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CGA5L3X8R1C475K160AB, TDK
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CGA4J3NP02E103J125AA, TDK
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C2012X7R1V475K125AE, TDK
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CGA2B2NP01H101J050BA, TDK
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CGA4J4X7T2W473M125AE, TDK
17998 In Stock
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C3216X7T2W104K160AE, TDK
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CGA2B2NP01H010C050BA, TDK
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C3225X7R2J473K200AE, TDK
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CGA4J3X8R1E474K125AD, TDK
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CGA6P3X8R1E475K250AB, TDK
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CGA4J3X8R2A473K125AB, TDK
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CGA2B2NP01H150J050BA, TDK
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C2012C0G2W152J085AA, TDK
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GRM2165C2A221JA01D, Murata

GRM2165C2A221JA01D, Murata

Murata GRM 0805 C0G Dielectric Murata GRM Series are small in size and large capacitance values in a multilayer structure . GRM Series Temperature Compensating type is ideal for tuning circuits, oscillating circuits and high frequency filter circuits and power supply damper snubber for rated voltages higher than 200 V Features & Benefits: High reliability with no polarity Excellent solderability is achieved by the Tin plating at the external electrodes 0805 Range Nickel barrier terminations covered with a layer of plated Tin (NiSn). Applications include mobile phones, video and tuner designs, COG/NPO is the most popular formulation of the "temperature compensating", EIA Class I ceramic materials, X7R, X5R formulations are called "temperature stable" ceramics and fall into the EIA Class II materials, Y5V, Z5U formulations are for general purpose use in a limited temperature range, EIA Class II materials; these characteristics are ideal for decoupling applications.
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04025C222JAT2A, AVX

04025C222JAT2A, AVX

AVX 0402 MLCC series The 0402 series of SMD Capacitors are made from the most popular formulation of the “temperature-compensating,” EIA Class I ceramic materials. Available with different dielectric types.
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SR211A560KAR, AVX

SR211A560KAR, AVX

AVX SR Series Radial The SR Series of Radial capacitors from AVX provide a stable use within general purpose applications. A wide range of capacitance, tolerance and voltages boast high reliability and excellent quality. All ceramic models will come as through-hole mounted and epoxy coated. Temperature Coefficient A = C0G (NP0) C = X7R E = Z5U X7R Dielectric
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GRT188R60J106ME13D, Murata

GRT188R60J106ME13D, Murata

Sn plating is applied to the external electrodes: excellent solderability
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06033C104JAT2A, AVX

06033C104JAT2A, AVX

AVX X7R Dielectric Capacitors AVX X7R Dielectric capacitors are called "temperature stable" ceramics and fall into EIA Class II materials. The dielectric chip usage covers a broad range of industrial applications where known changes in capacitance due to applied voltages is acceptable.The AVX Standard Commercial-Grade MLCCs are available in case sizes 0402, 0805, and 0603.
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06035C223KAZ2A, AVX

06035C223KAZ2A, AVX

AVX MLCC Capacitors with FLEXITERM AVX multilayer ceramic capacitors with FLEXITERM are designed to enhance the mechanical flexure and temperature cycling performance of a standard ceramic capacitor with an X7R dielectric.The FLEXITERM technology was developed by AVX to meet the demand for components with enhanced mechanical strength and flexibility when used in harsh environment applications, such as automobiles, and in applications where temperature variation exists. It provides up to 5mm of flexure without internal cracks, 3mm above the 2mm industry standard.These MLCCs reduce circuit board flex failures and offer increased temperature cycling performance of 3,000 cycles and beyond, a base metal electrode system, and automotive and commercial grade product selections. AEC-Q200 qualified. Applications High flexure stress circuit boards Variable temperature applications Automotive applications Approvals AEC-Q200 qualified
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1206Y5000223KXT, Syfer Technology

1206Y5000223KXT, Syfer Technology

Syfer Flexicap 1206 FlexiCap™ has been developed as a result of listening to customers’ experiences of stress damage to MLCCs A proprietary flexible epoxy polymer termination material, that is applied to the device under the usual nickel barrier finish FlexiCapT™ will accommodate a greater degree of board bending than conventional capacitors An additional benefit of FlexiCap™ is that MLCCs can withstand temperature cycling -55ºC to 125ºC in excess of 1000 times without cracking FlexiCap™ may be soldered using your traditional wave or reflow solder techniques and needs no adjustment to equipment or current processes 1206 Range C0G (NP0) is the most popular formulation of the "temperature-compensating", EIA Class I ceramic materials X7R formulations are called "temperature stable" ceramics and fall into EIA Class II materials Y5V formulations are for general-purpose use in a limited temperature range.These characteristics make Y5V ideal for decoupling applications
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SR212A221JAR, AVX

SR212A221JAR, AVX

SR Series C0G dielectric Conformally coated C0G (NP0) Dielectric Capacitors with stable and predictable characteristics over temperature and time, suitable for filtering, sample and hold and timing circuits where high Q and good stability are required.
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C1608C0G2A102J080AA, TDK

C1608C0G2A102J080AA, TDK

TDK C type 0603 series Professional range of TDK multilayer ceramic chip capacitors from the C series. Suitable for high frequency and high density type power supplies due to low ESR and excellent frequency characteristics. Features and Benefits: High capacitance through precision technologies that enable the use of multiple thinner ceramic dielectric layers A monolithic structure ensures superior mechanical strength and reliability Low ESL and excellent frequency characteristics allow for a circuit design that closely conforms to theoretical values Low self-heating and high ripple resistance due to low ESR Applications: Commercial Grade for general applications including General electronic equipment; Mobile communication equipment; Power supply circuit; Office automation equipment; TV, LED displays; Servers, PCs, Notebooks, Tablets.
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12063C225KAZ2A, AVX

12063C225KAZ2A, AVX

AVX 1206 MLCC Series X7R formulations are called “temperature stable” ceramics and fall into EIA Class II materials, and COG (NPO) is the most popular “temperature-compensating” EIA Class I ceramic materials Multilayer Ceramic Capacitors whose temperature variation is within ±15% from -55°C to +125°C The capacitance change is non-linear AVX high voltage chips have advantages of high value, low leakage and small size, thus applications include as snubbers in high frequency power converters, resonators in SMPS and high voltage coupling/DC blocking These high voltage chip designs exhibit low ESRs at high frequencies 1206 Range C0G (NP0) is the most popular formulation of the "temperature-compensating", EIA Class I ceramic materials X7R formulations are called "temperature stable" ceramics and fall into EIA Class II materials Y5V formulations are for general-purpose use in a limited temperature range.These characteristics make Y5V ideal for decoupling applications
New items
1210ZD106KAT2A, AVX

1210ZD106KAT2A, AVX

AVX 1210 MLCC Series X7R formulations are called “temperature stable” ceramics and fall into EIA Class II materials, and COG (NPO) is the most popular “temperature-compensating” EIA Class I ceramic materials Multilayer Ceramic Capacitors whose temperature variation is within ±15% from -55°C to +125°C The capacitance change is non-linear AVX high voltage chips have advantages of high value, low leakage and small size, thus applications include as snubbers in high frequency power converters, resonators in SMPS and high voltage coupling/DC blocking These high voltage chip designs exhibit low ESRs at high frequencies 1210 Range
New items
18121C684MAT2A, AVX

18121C684MAT2A, AVX

AVX 1812 MLCC Series A professional range of 1812 MLCC capacitors from AVX, designed for use in a wide range of applications. Note Sorted in order of dielectric, voltage then capacitance.
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