C322
Part | Datasheet |
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C320C222K5R5CA (pdf) |
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C320C153K1R5CA |
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C320C152K2R5CA |
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C320C104K5R5CA |
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C320C473K1R5CA |
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C320C683K1R5CA |
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C320C104K1R5CA |
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C320C153K5R5CA |
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C320C223K5R5CA |
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C320C333K5R5CA |
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C322C104K1R5CA |
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C330C104K2R5CA |
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C322C683K5R5CA |
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C322C473K1R5CA |
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C322C154K5R5CA |
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C322C224K5R5CA |
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C330C683K2R5CA |
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PDF Datasheet Preview |
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Multlayer Ceramic Capacitors MULTILAYER CERAMIC CAPACITORS/AXIAL & RADIAL LEADED Multilayer ceramic capacitors are available in a variety of physical sizes and configurations, including leaded devices and surface mounted chips. Leaded styles include molded and conformally coated parts with axial and radial leads. However, the basic capacitor element is similar for all styles. It is called a chip and consists of formulated dielectric materials which have been cast into thin layers, interspersed with metal electrodes alternately exposed on opposite edges of the laminated structure. The entire structure is fired at high temperature to produce a monolithic block which provides high capacitance values in a small physical volume. After firing, conductive terminations are applied to opposite ends of the chip to make contact with the exposed electrodes. Termination materials and methods vary depending on the intended use. TEMPERATURE CHARACTERISTICS Ceramic dielectric materials can be formulated with Class III General purpose capacitors, suitable a wide range of characteristics. The EIA standard for by-pass coupling or other applications in which ceramic dielectric capacitors RS-198 divides ceramic dielectric losses, high insulation resistance and dielectrics into the following classes: stability of capacitance characteristics are of little or no importance. Class III capacitors are similar to Class Class I Temperature compensating capacitors, suitable for resonant circuit application or other applications where high Q and stability of capacitance characteristics are required. Class I capacitors have II capacitors except for temperature characteristics, which are greater than ± Class III capacitors have the highest volumetric efficiency and poorest stability of any type. predictable temperature coefficients and are not effected by voltage, frequency or time. They are made KEMET leaded ceramic capacitors are offered in from materials which are not ferro-electric, yielding the three most popular temperature characteristics: superior stability but low volumetric efficiency. Class I C0G Class I, with a temperature coefficient of 0 ± capacitors are the most stable type available, but have 30 ppm per degree C over an operating the lowest volumetric efficiency. temperature range of - 55°C to + 125°C Also known as “NP0” . Class II Stable capacitors, suitable for bypass or coupling applications or frequency discriminating circuits where Q and stability of capacitance characteristics are not of major importance. Class II capacitors have temperature characteristics of ± 15% or less. They are made from materials which are X7R Class II, with a maximum capacitance change of ± 15% over an operating temperature range of - 55°C to + 125°C. Z5U Class III, with a maximum capacitance change of + 22% - 56% over an operating temperature range of + 10°C to + 85°C. ferro-electric, yielding higher volumetric efficiency but less stability. Class II capacitors are affected by Specified electrical limits for these three temperature temperature, voltage, frequency and time. characteristics are shown in Table SPECIFIED ELECTRICAL LIMITS PARAMETER Dissipation Factor Measured at following conditions C0G 1 kHz and 1 vrms if capacitance > 1000 pF 1 MHz and 1 vrms if capacitance 1000 pF X7R 1 kHz and 1 vrms* or if extended cap range vrms Z5U 1 kHz and vrms Dielectric Strength times rated DC voltage. Insulation Resistance IR At rated DC voltage, whichever of the two is smaller Temperature Characteristics Range, °C Capacitance Change without DC voltage * 1 MHz and 1 vrms if capacitance 100 pF on military product. Table I TEMPERATURE CHARACTERISTICS Pass Subsequent IR Test ORDERING INFORMATION C 320 C 102 M 1 R 5 T A* CERAMIC CASE SIZE See Table Above SPECIFICATION C Standard CAPACITANCE, CODE Expressed in Picofarads pF First Two Digits Significant Figures Third Digit Number of Zeros Use 9 for thru pF. Example 2.2pF 229 CAPACITANCE TOLERANCE D pF K ±10% F ±1% G ±2% M ±20% P 0%, +100% J ±5% Z -20, +80% *Part Number Example C320C102M1R5CA 14 digits no spaces FAILURE RATE A Not Applicable TERMINATION MATERIAL T 100% Tin H SnPb C 100% Sn Not recommended for new design INTERNAL CONSTRUCTION 5 Standard DIELECTRIC EIA Designation G C0G NP0 Ultra-Stable R X7R Stable U Z5U General Purpose RATED VOLTAGE 2 200 F 1500 1 100 G 2000 5 50 Z 2500 C 500 H 3000 D For packaging information, see pages 40, and KEMET Electronics Corporation, P.O. Box 5928, Greenville, S.C. 29606, 864 963-6300 CERAMIC CONFORMALLY COATED/RADIAL “STANDARD & HIGH VOLTAGE GOLDEN MAX” OPTIONAL CONFIGURATIONS BY LEAD SPACING The preferred lead wire configurations are shown on page However, additional configurations are available. All available options, including those on page 9, are shown below grouped by lead spacing. Lead Spacing ± C315 MAX. MAX. C316 MAX. MAX. C320 MAX. MAX. C324 MAX. MAX. C326 MAX. MAX. Lead Spacing ± MIN. |
More datasheets: C322C104K5R5CA | C322C333K5R5CA | C322C154M5U5CA7301 | C330C103G2G5CA | C322C182J2G5CA | C333C564K5R5CA | C317C100J2G5CA7301 | C333C104M5U5CA | C317C120J5G5CA | C330C104K5R5CA7301 |
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