Types MCM and MIN SMT Clad RF Capacitors

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Multilayer High Power, High Temperature Mica and PTFE Capacitors Specifications actual size Capacitance Range: Voltage Ratings: Temperature Range: Capacitance Tolerance: Dielectric Strength: Insulation Resistance: Aging Rate: Marking: Design Kits for Engineers MIN300VKIT 300 Vdc 5 pieces each 3 ratings 3.3 50 pf MCM500VKIT2 Nonmagnetic to 500 Vdc 5 pieces each 0 ratings 0 000 pf MCM000VKIT3 kvdc 5 pieces each 7 ratings 00 750 pf Types MCM and MIN SMT clad PTFE and mica capacitors are top performers for high power applications requiring low inductance at high frequencies and can operate at temperatures up to 200 ºC and voltages to 000 Vdc. Choosing from 6 different configurations offers easy mounting with options for surface mount as well as through-hole and mechanical assembly. To assure high current capability in the smallest capacitors, low-capacitance ratings use polytetrafluorethylene (PTFE) that has ultra-low dielectric absorption - better than polypropylene, polystyrene and NPO ceramic. Highlights 200 ºC rated with no voltage derating Wave solderable No cracking or delaminating CTE 8 ppm/ºc compatible with FR4 PCBs Highly thermal conductive package Gull-wing terminal minimizes stress Typical 00 pf ESR, < mω @ 00 MHz Nonmagnetic for minimal RF loss Very low ESL for excellent by-pass action Ultra stable: no change with (t), (V) and (f) Exact capacitance with tolerances from ±0.25 pf RoHS Compliant MCM MIN to 500 pf to 350 pf 300 to 000 Vdc 300 Vdc 55 ºC to +200 ºC with no voltage derating ±0.25pF, ±0.5 pf, ± pf, ±0.5%, ±%, ±2%, ±5% 200% of rated voltage for 5 seconds 000 MΩ µf Need not exceed 00,000 MΩ at 25 ºC None MIN - Capacitance in pf and ID letters CD MCM - Capacitance, ID letters CD and voltage if other than 500 when space permits RoHS Compliant - marked in green inkmin Applications RF Power Amplifiers Lasers Mobile Radio Plasma generators MRI Coils RF Medical Equipment Land Mobile antennas 27 to 900 MHZ

Ratings Available Capacitance (pf) Part Numbering System Voltage Ratings (Vdc) 300 500 *000 MIN02 Dielectric - 2.9 X PTFE 3-9.9 X PTFE or Mica 0-60 X Mica 6-20 X Mica 2-80 X Mica 8-240 X Mica 24-300 X Mica 30-350 X Mica MCM0-7 X X PTFE 8-32 X X PTFE or Mica 33-250 X X Mica 25-500 X X Mica 50-750 X X Mica 75-000 X Mica 00-280 X Mica 28-500 X Mica *000 V available in MCM0-00 and -009 style MCM0 00 C D 0 J T F or MIN02 Terminal Temperature Rated Capacitance RoHS Type "dash" Configuration Coefficient * Voltages Capacitance Tolerance* Packaging Compliant (mica only) (Vdc) (pf) ( pf or %) MCM0 MIN02 00 2 002 009,2 00 C D E C = 300 Vdc D = 500 Vdc F = 000 Vdc 090 = 9 9R2 = 9.2 00 = 0 0 = 00 (75) = 75 A = ± pf 2-200 pf B = ±0.25 pf - 50 pf D = ±0.5 pf - 00 pf E = ±0.5 % > 00 pf F = ± % > 33 pf T = Tape Blank = Bulk Blank = Not specified F = Compliant Most Popular Series, other's available, consult factory Surface mount and T&R 2 kv 02 = 000 G = ±2% > pf J = ±5% > pf Capacitance Temperature K = ±0% > pf Style Range Characteristic C pf to 20 pf ±200 ppm/ºc D 2 pf to 56 pf ±00 ppm/ºc Measured at MHz E 57 pf to 500 pf 20 to +00 ppm/ºc for 000 pf and *TC code letter is left blank for PTFE items khz for >000 pf 2

Typical Performance Data Types MCM and MIN SMT Clad RF Capacitors click here to see additional rating charts ESR vs. Frequency for 470 pf 0. ESR (Ω) 0.0 0.00 0 00 000 0000 f(mhz) Current Rating (IRMS) for 470 pf at 60 ºC Rise 00 RMS Current (Amps) 0 0 00 000 0000 f(mhz) 3

Q vs. Frequency 470 pf @ 25 ºC 00000 0000 Porcelain (2525) 000 MC (82) MCM0 ( 4640) Q Q 00 MC (2220) 0 Porcelain (3838) MCH (3838) 0 00 000 0000 f (MHz) MCM0-009 ( 4640) 000 Vdc Porcelain (2525).5 kvdc Porcelain (3838) 2.5 kvdc MC22FF47J 000 Vdc MCH (3838) 2.5 kvdc MC8FD47J 500 Vdc Impedance Z vs. Frequency for 470 pf @ 25 ºC 000 00 Porcelain (3838) MCM0 ( 4640) Z ( ) 0 MC (82) MCH (3838) MC (2220) Porcelain (2525) 0. 0 00 000 0000 f (MHz) MCM0-009 ( 4640) 000 Vdc Porcelain (2525).5 kvdc Porcelain (3838) 2.5 kvdc MC22FF47J 000 Vdc MCH (3838) 2.5 kvdc MC8FD47J 500 Vdc 4

Outline Drawings for Popular Items Types MCM and MIN SMT Clad RF Capacitors MIN02-002 MCM0-00..32.87.093 DIA..207.63.00.28".28.042 T.00 T.020 ±.00.32.604..460.365.203 T (thickness) depending on capacitance value =.065 to.25±.05.00 ±.00 T T (thickness) depending on capacitance value=.0 to.65±.05 MCM0-009 MCM0-00.605.365 ±.00.500.56 REF Terminal A T.203 T.460.45 45º T.00.38 REF.090.020.00.70.00.00.20.73.200 For single plate.50 construction 270 pf or less.062 DIA. 2 Holes.85 For Terminal A.00 ±.00.08 DIA. 2 Holes T (thickness) depending on capacitance value=.0 to.65±.05 T (thickness) depending on capacitance value=.0 to.65±.05 T varies with capacitance 5

Standard Minimum Quantities Bulk Pack: 00 pieces per bag Reel Pack: 500 pieces per reel Tape Specifications Solder Profile Tape Dimensions (mm) Case W A B P F t MIN02-002 < 50 pf MIN02-002 50 pf 6 5.56 8.8 8 7.5 2.6 6 5.66 8.0 8 7.5 3.20 Note: 24 mm tape for MCM0-009 and 32 mm tape for MCM0-004 are available upon request. 260 Specifications: 220-260 ºC 300 Reflow Soldering Method Peak 230-260 ºC Lead free finish Case and Terminal Material: Silver plated, copper flashed, brass Temperature ºC Temperature ºC 200 50 00 50 0 300 250 200 50 00 30 0 sec. max. Pre-Heat Soldering Cooling 50 50 90 200 Time (seconds) Wave Soldering Method 220-260 ºC 5 sec. max. Peak 230-260 ºC 50 0 0 Pre-Heat 20 Soldering Cooling 70 80 Time (seconds) 90 7-9-2008 fixed 6 graphs

Notice and Disclaimer: All product drawings, descriptions, specifcations, statements, information and data (collectively, the Information ) in this datasheet or other publication are subject to change. The customer is responsible for checking, confrming and verifying the extent to which the Information contained in this datasheet or other publication is applicable to an order at the time the order is placed. All Information given herein is believed to be accurate and reliable, but it is presented without any guarantee, warranty, representation or responsibility of any kind, expressed or implied. Statements of suitability for certain applications are based on the knowledge that the Cornell Dubilier company providing such statements ( Cornell Dubilier ) has of operating conditions that such Cornell Dubilier company regards as typical for such applications, but are not intended to constitute any guarantee, warranty or representation regarding any such matter and Cornell Dubilier specifcally and expressly disclaims any guarantee, warranty or representation concerning the suitability for a specifc customer application, use, storage, transportation, or operating environment. The Information is intended for use only by customers who have the requisite experience and capability to determine the correct products for their application. Any technical advice inferred from this Information or otherwise provided by Cornell Dubilier with reference to the use of any Cornell Dubilier products is given gratis (unless otherwise specifed by Cornell Dubilier), and Cornell Dubilier assumes no obligation or liability for the advice given or results obtained. Although Cornell Dubilier strives to apply the most stringent quality and safety standards regarding the design and manufacturing of its products, in light of the current state of the art, isolated component failures may still occur. Accordingly, customer applications which require a high degree of reliability or safety should employ suitable designs or other safeguards (such as installation of protective circuitry or redundancies or other appropriate protective measures) in order to ensure that the failure of an electrical component does not result in a risk of personal injury or property damage. Although all product-related warnings, cautions and notes must be observed, the customer should not assume that all safety measures are indicated in such warnings, cautions and notes, or that other safety measures may not be required. 7