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Showing Results For: MLCCs - Multilayer Ceramic Capacitors

MLCCs - Multilayer Ceramic Capacitors

MLCCs - Multilayer Ceramic Capacitors

Multilayer ceramic capacitors, also called MLCCs, are uniquely designed capacitors manufactured to embed a multilayer structure. This construction consists of metal conducting layers and a ceramic substance. The capacitor is insulated by ceramic layers, which helps to prevent heat loss and raises the product's efficiency. Multilayer capacitors are used for various applications because of their excellent thermal stability, strong ripple current capacity, and exceptionally low ESR (Equivalent Series Resistance) and ESL (Equivalent Series Inductance).

How do multilayer ceramic capacitors work?

The many ceramic layers and conductive electrodes stacked on top of each other make up the multilayer ceramic capacitor (MLCC). The conducting electrodes are between each layer of ceramic material. The several ceramic layers used in MLCC serve as a dielectric.

Do ceramic capacitors degrade over time?

When employing ceramic capacitors, designers must consider aging, a phenomenon where the capacitance decreases over time. Capacitors from any manufacturer experience aging, which is correlated with the dielectric's material qualities.

Does voltage matter on a ceramic capacitor?

A general rule is designed that the voltage of ceramic capacitors should be derated by at least 25% as a baseline, but in contexts where voltage ripple effects will be present, this should be increased to at least 50%.

Typical Applications

Aluminum polymer capacitors provide several benefits for electronic applications due to their structure. This technology is very intriguing for many applications that permit a significant ripple current because of its low ESR, low ESL values, and high anticipated lifetime. Polymer capacitors are used in a wide range of applications, including:

 

  • Power supplies
  • Computer motherboards
  • Domestic appliances
  • Coupling or blocks
  • Smoothing
  • Decoupling or bypassing
  • Noise filtering

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GCM155R71H103KA55J, Murata
100065 In Stock
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50000 +
£ 0.0041
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GRM155R60J106ME05J, Murata
80072 In Stock
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40000 +
£ 0.013
Wurth Elektronik
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885012004010, Wurth Elektronik
14598 In Stock
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885012104004, Wurth Elektronik
30039 In Stock
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GCM1555C1H120FA16J, Murata
100055 In Stock
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£ 0.010
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GRM155R60J475ME47J, Murata
80074 In Stock
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GRM155R71H472KA01J, Murata
100084 In Stock
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GRM21BR71C475KE51K, Murata
20098 In Stock
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£ 0.021
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GRM21BZ7YA475KE15K, Murata
20100 In Stock
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£ 0.061
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885012004003, Wurth Elektronik
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885012104003, Wurth Elektronik
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8853522130111, Wurth Elektronik
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8853522140011, Wurth Elektronik
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8853622100171, Wurth Elektronik
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885012004009, Wurth Elektronik
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885012204006, Wurth Elektronik
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GCM155R71H472KA37J, Murata
100068 In Stock
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£ 0.0030
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GCM1885C2A102FA16D, Murata
3118 In Stock
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£ 0.060
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£ 0.056
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£ 0.047
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GRM155R61E105KA12J, Murata
100078 In Stock
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GRM158R60J226ME01D, Murata
16087 In Stock
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£ 0.088
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GRM188R61E225KA12J, Murata
20089 In Stock
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£ 0.013
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GRM188Z71C475KE21D, Murata
8092 In Stock
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4000 +
£ 0.053
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885012004007, Wurth Elektronik
30028 In Stock
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885012104001, Wurth Elektronik
30036 In Stock
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885012104008, Wurth Elektronik
30043 In Stock
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New Items
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LLA219R70J105MA01L, Murata

LLA219R70J105MA01L, Murata

Murata LLx Series Surface mount termination low ESL Suitable for high-speed microprocessor and high-frequency digital equipment 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.
New items
QM036D106MAT2A, AVX

QM036D106MAT2A, AVX

AVX 0603 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 Capacitance for X7R varies under the influence of electrical operating conditions such as voltage and frequency 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 Reduced noise X5R versions available
New items
GRM21BR60G476ME15L, Murata

GRM21BR60G476ME15L, Murata

Murata GRM 0805 X5R, X7R and Y5V Dielectric Murata GRM Series high dielectric constant type are small in size and large capacitance values in a multi-layer structure High reliability with no polarity Excellent solderability is achieved by the Tin plating at the external electrodes Applications in decoupling and smoothing circuits and clamp snubber circuits for rated voltages higher than 200V 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.
New items
885012105007, Wurth Elektronik

885012105007, Wurth Elektronik

Wurth Elektronik 0402 WCAP-CSGP Series, X5R Dielectric Multilayer Ceramic Chip Capacitors High performance ceramic High Capacitance stability Minimal ageing Copper, Tin and Nickel termination High electrical precision and stability ceramic Operating Temperature: -55°C to +85°C Reflow soldering recommended
New items
GRM21BC81C106ME15L, Murata

GRM21BC81C106ME15L, Murata

Murata offers many types of capacitors as Ceramic, Polymer Aluminum Electrolytic, Trimmer , Supercapacitor (EDLC), Single Layer Microchip, Variable
New items
C3216X7R1H475K160AE, TDK

C3216X7R1H475K160AE, TDK

The TDK soft termination C series, commercial grade of TDK's multilayer ceramic chip capacitor, is a product incorporating a conductive resin layer into the terminal electrodes. The resin layer protects the ceramic body from cracks by relieving stress caused by thermal shock and board flexure. C0G type having excellent stable temperature and DC-bias characteristics is also available X8R and X8L types whose operating temperature are up to 150 degree Celsius are available
New items
C3225X5R1H106K250AB, TDK

C3225X5R1H106K250AB, TDK

The TDK general type C series, commercial grade of TDK's multilayer ceramic chip capacitor, is a surface mounted component for which multilayer dielectrics and inner electrodes are stacked alternately. It is used in various applications such as power supply circuit, mobile devices, general electronics equipment's such as AV equipment, telecommunications equipment, home appliances, computer equipment, personal equipment, industrial robots under a normal operation and use condition. The monolithic structure ensures superior mechanical strength and high reliability. Outstanding frequency characteristics such as low ESR and low ESL by the simple structure Low self heating value and high resistance to ripple on account of the low ESR No polarity
New items
C5750X7S2A226M280KB, TDK

C5750X7S2A226M280KB, TDK

The TDK middle voltage C series, commercial grade of TDK's multilayer ceramic chip capacitor, is a product having a high withstanding voltage characteristic. The line-up is voltage rating of 100V to 630V with capacitance range up to 22μF. It is used in applications such as Wireless charging units, DC to DC converter, Inverter, Decoupling, smoothing, snubber and resonant circuits of high voltage circuits. A monolithic structure ensures superior mechanical strength and reliability C0G type having excellent stable temperature and DC-bias characteristics is also available
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