MULTI-LAYER HIGH-Q CAPACITORS
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1 MULTI-LAYER HIGH- CAPACITORS These lines of multilayer capacitors have been developed for High- and microwave applications. The S-Series (R03S, R07S, R4S, R5S) capacitors give an ultra-high performance, and exhibit NP0 temperature characteristics. The L-Series (R05L) capacitors give mid-high performance, and exhibit NP0 temperature characteristics. The E-Series (S42E, S48E, S58E) capacitors give excellent high- performance from HF to Microwave frequencies. Typical uses are high voltage, high current applications. They are offered in chip (Ni barrier or Non-Magnetic Pt.-Ag) or in Non-Magnetic leaded form. The W-Series (R05W) capacitors offer a large capacitance value in an ultra-small 020 package size. These exhibit a X7R temperature characteristic. RoHS compliance is standard for all unleaded parts (see termination options box). HOW TO ORDER 252 S48 E 470 K V 4 E VOLTAGE (DC) 6R3 = 6.3 V 60 = 6 V 250 = 25 V 500 = 50 V 20 = 200 V 25 = 250 V 50 = 500 V 02 = 000 V 52 = 500 V 202 = 2000 V 252 = 2500 V 362 = 3600 V 502 = 5000 V 722 = 7200 V CASE SIZE R03 (0005) R05 (020) R07 (0402) R4 (0603) R5 (0805) S42 () S48 (2525) S58 (3838) CAPACITANCE (pf) st two digits are significant; third digit denotes number of zeros, R = decimal. 00 = 0 pf 0 = 00 pf DIELECTRIC S = Ultra High NPO L = High NPO E = Ultra High NPO, High Voltage, High Power, W= X7R TOLERANCE A = ± 0.05 pf B = ± 0.0 pf C = ± 0.25 pf D = ± 0.50 pf F = ± % G = ±2% J = ±5% K = ± 0% For tolerance availability, see chart. TERMINATION Nickel Barrier V = Ni/Sn (Green) T = Ni/SnPb G = Ni/Au (Green) Non-Mag* U = Cu/Sn (Green) C = Cu/SnPb Leaded (All Non-Mag)* = Microstrip 2 = Axial Ribbon 3 = Axial Wire 4 = Radial Ribbon 5 = Radial Wire Part Number written: 252S48E470KV4E MARKING 3 = Cap Code & Tolerance 4 = No Marking 6 = EIA Code (Marking on 0805 and larger only) PACKAGING S = Bulk W = Waffle Pack Y = Paper 5 Reel T = Paper 7 Reel *R = Paper 3 Reel Z = Embossed 5 Reel E = Embossed 7 Reel *U = Embossed 3 Reel Tape specifications conform to EIA RS48 * - Not available for all MLCC - Call factory for info. 7
2 LOW ESR / HIGH- CAPACITOR SELECTION CHART Cap. Value EIA Size Miniature Size - Portable Electronics 0005 (R03S) 020 (R05) 0402 NPO X7R* (R05L) (R05W) (R07S) 0603 (R4S) 0805 (R5S) RF Power Applications (S42E) 2525** (S48E) 3838** (S58E) Capacitance pf Code Voltage 0. 0R 0.2 0R2 6 V 25 V 50/200 V 250 V 500V 000V 0.3 0R3 6 V 25 V 50/200 V 250 V 250 V 500V 000V 0.4 0R4 6 V 25 V 50/200 V 250 V 250 V 500V 000V 0.5 0R5 6 V 25 V 50/200 V 250 V 250 V 500V 000V 0.6 0R6 6 V 25 V 50/200 V 250 V 250 V 500V 000V 0.7 0R7 6 V 25 V 50/200 V 250 V 250 V 500V 000V 0.8 0R8 6 V 25 V 50/200 V 250 V 250 V 500V 000V 0.9 0R9 6 V 25 V 50/200 V 250 V 250 V 500V 000V.0 R0 6 V 25 V 50/200 V 250 V 250 V 500V 000V 2500V 3600V 7200V. R 6 V 25 V 50/200 V 250 V 250 V 500V 000V.2 R2 A 6 V 25 V 50/200 V 250 V 250 V 500V 000V.3 R3 6 V 25 V 50/200 V 250 V 250 V 500V 000V 2500V 3600V 7200V.4 R4 6 V 25 V 50/200 V 250 V 250 V 500V 000V.5 R5 B 6 V 25 V 50/200 V 250 V 250 V 500V 000V 2500V 3600V 7200V.6 R6 6 V 25 V 50/200 V 250 V 250 V 500V 000V.7 R7 C 6 V 25 V 50/200 V 250 V 250 V 500V 000V.8 R8 6 V 25 V 50/200 V 250 V 250 V 500V 000V 2500V 3600V 7200V.9 R9 D 6 V 25 V 50/200 V 250 V 250 V 500V 000V 2.0 2R0 6 V 25 V 50/200 V 250 V 250 V 500V 000V 2. 2R 6 V 25 V 50/200 V 250 V 250 V 500V 000V 2.2 2R2 6 V 25 V 50/200 V 250 V 250 V 500V 000V 2500V 3600V 7200V 2.4 2R4 6 V 25 V 50/200 V 250 V 250 V 500V 000V 2.7 2R7 6 V 25 V 50 V 250 V 250 V 500V 000V 2500V 3600V 7200V 3.0 3R0 6 V 25 V 50 V 250 V 250 V 500V 000V 3.3 3R3 6 V 25 V 50 V 250 V 250 V 500V 000V 2500V 3600V 7200V 3.6 3R6 6 V 25 V 50 V 250 V 250 V 500V 000V 3.9 3R9 6 V 25 V 50 V 250 V 250 V 500V 000V 2500V 3600V 7200V 4.3 4R3 6 V 25 V 50 V 250 V 250 V 500V 000V 4.7 4R7 6 V 25 V 50 V 250 V 250 V 500V 000V 2500V 3600V 7200V 5. 5R 6 V 25 V 50 V 250 V 250 V 500V 000V 5.6 5R6 B 6 V 25 V 50 V 250 V 250 V 500V 000V 2500V 3600V 7200V 6.2 6R2 6 V 25 V 50 V 250 V 250 V 500V 000V 6.8 6R8 C 6 V 25 V 50 V 250 V 250 V 500V 000V 7.5 7R5 6 V 25 V 50 V 250 V 250 V 500V 000V 2500V 3600V 7200V 8.2 8R2 6 V 25 V 50 V 250 V 250 V 500V 000V D 9. 9R 6 V 25 V 50 V 250 V 250 V 500V 000V V 25 V 50 V 250 V 250 V 500V 000V 2500V 3600V 7200V 0 6 V 25 V 50 V 250 V 250 V V 25 V 50 V 250 V 250 V 500V 000V 2500V 3600V 7200V 3 30 F 6 V 25 V 50 V 250 V 250 V 500V 000V V 25 V 50 V 250 V 250 V 500V 000V 2500V 3600V 7200V 6 60 G 6 V 25 V 50 V 250 V 250 V 500V 000V V 50 V 250 V 250 V 500V 000V 2500V 3600V 7200V V 50 V 250 V 250 V 500V 000V J V 50 V 250 V 250 V 500V 000V 2500V 3600V 7200V V 50 V 250 V 250 V 500V 000V K 25 V 50 V 250 V 250 V 500V 000V 2500V 3600V 7200V V 50 V 250 V 250 V 500V 000V V 50 V 250 V 250 V 500V 000V 2500V 3600V 7200V * The R05W parts, which are X7R, can only be provided with K tolerance. Consult factory for Non-Standard values. 8
3 LOW ESR / HIGH- CAPACITOR SELECTION CHART Cap. Value EIA Size F G J K Miniature Size - Portable Electronics 0005 (R03S) 020 (R05) 0402 NPO X7R* (R05L) (R05W) (R07S) 0603 (R4S) 0805 (R5S) RF Power Applications (S42E) 2525** (S48E) 3838** (S58E) Capacitance Tolerance pf Code Voltage V 250 V 250 V 500V 000V V 250 V 250 V 500V 000V 2500V 3600V 7200V V 250 V 250 V 500V 000V V 250 V 250 V 500V 000V 2500V 3600V 7200V V 250 V 250 V 500V 000V V 250 V 250 V 500V 000V 2500V 3600V 7200V V 250 V 250 V 500V 000V V 250 V 250 V 500V 000V 2500V 3600V 7200V V 250 V 250 V 500V 000V V 250 V 250 V 500V 000V 2500V 3600V 7200V V 250 V 250 V 500V 000V V 250 V 250 V 500V 000V 2500V 3600V 7200V 0 6 V 250 V 500V V 500V 2500V 3600V 5000V V 500V V 500V 2500V 3600V 5000V V 500V V 500V 2500V 3600V 5000V V 500V V 250 V 500V 2500V 3600V V V 2500V 3600V V V 500V 3600V V V 500V 3600V V V 500V 500V 2500V V V 000V 2500V V V 50V 000V 2500V V V 50V 000V 000V G V V 50V 000V 000V J 000V 000V V 000V K 500V 000V V 300V 000V V 500V V V V 500V V V * The R05W parts, which are X7R, can only be provided with K tolerance. Consult factory for Non-Standard values. 9
4 DIELECTRIC CHARACTERISTICS NPO X7R TEMPERATURE COEFFICIENT: UALITY FACTOR / DF: INSULATION RESISTANCE: DIELECTRIC STRENGTH: TEST PARAMETERS: AVAILABLE CAPACITANCE: 0 ± 30ppm / C, -55 to 25 C MHz, Typical 0,000 >0 25 C,WVDC; 25 C IR is 0% of 25 C rating 2.5 X WVDC Min., 25 C, 50 ma max MHz ±50kHz,.0±0.2 VRMS, 25 C Size 0005: pf Size 020: pf Size 0402: pf Size 0603: pf Size 0805: pf Size : pf Size 2525: pf Size 3838: pf ± 5%, -55 to 25 C 6VDC DF KHz, 25 C 0VDC DF KHz, 25 C >500 ΩF* or 0 25 C,WVDC; 25 C IR is 0% of 25 C rating * whichever is less 2.5 X WVDC Min., 25 C, 50 ma max KHz ±50Hz,.0±0.2 VRMS, 25 C 00-0,000 pf MECHANICAL & ENVIRONMENTAL CHARACTERISTICS SPECIFICATION TEST PARAMETERS SOLDERABILITY: Solder coverage 90% of metalized areas Preheat chip to C for 60 sec., dip terminals in rosin flux No termination degradation then dip in Sn ±5 C for 5± sec RESISTANCE TO No mechanical damage Preheat device to C for 60 sec. SOLDERING HEAT: Capacitance change: ±2.5% or 0.25pF followed by C for 60 sec. >500 I.R. >0 G Ohms Dip in 260 ±5 C solder for 0± sec. Measure after 24±2 hour cooling period TERMINAL Termination should not pull off. Linear pull force* exerted on axial leads soldered to each terminal. ADHESION: Ceramic should remain undamaged. * lbs, lbs (min.) PCB DEFLECTION: No mechanical damage. Glass epoxy PCB: 0.5 mm deflection Capacitance change: 2% or 0.5pF Max LIFE TEST: No mechanical damage Applied voltage: 200% rated voltage, 50 ma max. Capacitance change: ±3.0% or 0.3 pf Temperature: 25 ±3 C >500 I.R. > G Ohms Test time: hours THERMAL CYCLE: No mechanical damage. 5 cycles of: 30± /-3 C, Capacitance change: ±2.5% or 0.25pF C, 30± /-0 C, >2000 I.R. >0 G Ohms C Measure after 24±2 hour cooling period HUMIDITY, No mechanical damage. Relative humidity: 90-95% STEADY STATE: Capacitance change: ±5.0% or 0.50pF max. Temperature: 40 ±2 C >300 I.R. G-Ohm Test time: /-0 Hours Measure after 24±2 hour cooling period HUMIDITY, No mechanical damage. Applied voltage:.5 VDC, 50 ma max. LOW VOLTAGE: Capacitance change: ±5.0% or 0.50pF max. Relative humidity: 85±2% Temperature: 40 ±2 C >300 I.R. = G-Ohm min. Test time: /-0 Hours Measure after 24±2 hour cooling period VIBRATION: No mechanical damage. Capacitance change: ±2.5% or 0.25pF Cycle performed for 2 hours in each of three perpendicular directions >000 I.R. 0 G-Ohm Frequency range 0Hz to 55 Hz to 0 Hz traversed in minute. Harmonic motion amplitude:.5mm 0
5 MECHANICAL CHARACTERISTICS Size Units Length Width Thickness End Band 0005 In.06 ± ± ± Max. (0402) mm (0.40 ±0.03) (0.20 ±0.03) (0.20 ±0.03) (0.5 Max.) 020 In.024 ± ± ± Max. (0603) mm (0.60 ±0.03) (0.30 ±0.03) (0.30 ±0.03) (0.20 Max.) 0402 In.040 ± ± ± ±.006 (005) mm (.02 ±0.) (0.5 ±0.) (0.5 ±0.) (0.25 ±.5) 0603 In.062 ± ± / ±.006 (608) mm (.57 ±0.5) (0.8 ±0.5) ( ) (0.35 ±.5) 0805 In.080 ± ± ± ±.00 (202) mm (2.03 ±0.20) (.27 ±0.20) (.02 ±.5) (0.50 ±.25) E-SERIES TERMINATIONS AND LEADS Unleaded Termination Codes V (Ni/Sn), T (Ni/SnPb), U (Cu/Sn non-mag), C (Cu/SnPb non-mag) Microstrip Ribbon Leads (Non-Magnetic), Termination Code e Axial Ribbon Leads (Non-Magnetic), Termination Code 2 W T T L E/B X W T LL L LL LL LL Axial Wire Leads (Non-Magnetic), Termination Code 3 Radial Ribbon Leads (Non-Magnetic), Termination Code 4 Radial Wire Leads (Non-Magnetic), Termination Code 5
6 E-SERIES TERMINATIONS AND LEADS Termination Size Units L Tol W Tol T E / B Tol In / Max Typ. +/ S42E mm / Max Typ. +/ V,T In / Max Typ. S48E U,C mm / Max Typ. In / Max Typ. S58E mm / Max Typ. For all E-Series Models: OPERATING TEMP. : -55 to +25 C INSULATION RESISTANCE: >000 ΩF or >0 GΩ, whichever is 25 C WVDC TEMPERATURE COEFFICIENT: 0 ± 30ppm / C, -55 to 25 C DISSIPATION FACTOR (TYP.): < MHz Lead Size Units L Tol W Tol T (max) E/B (typ) LL(min) X Tol e Tol In / / / / S42E mm / / / / In / / / / S48E mm / / / / In / / MAX / / S58E mm / / MAX / /- 0.3 In / / / / S42E mm / / / / In / / / / S48E mm / / / / In / / MAX / / S58E mm / / MAX / /- 0.3 S42E S48E In / / #26 AWG,.06 (.406) dia. nominal S58E mm / / S42E S48E In / / / / S58E mm / / / / S42E S48E In / / #26 AWG,.06 (.406) dia. nominal S58E mm / / SERIES RESONANCE CHART 25.0 Typical Series Resonant Frequency (Series Mounted) 0.0 Frequency (GHz).0 R05/020 R07/0402 R4/0603 R5/
7 RF CHARACTERISTICS - L-SERIES ESR vs Frequency: 020/R05L vs Frequency: 020/R05L pf.2 pf 3.3 pf 5.6 pf 8.2 pf 22 pf pf.2 pf 3.3 pf 8.2 pf 5.6 pf 22 pf ESR vs Capacitance: 020/R05L vs Capacitance: 020/R05L MHz MHz MHz MHz MHz MHz MHz MHz
8 S-SERIES RF CHARACTERISTICS VERSUS FREUENCY Equivalent Series Resistance: 0402/R07S Factor: 0402/R07S pf 4.7 pf 0 pf.2 pf 8.2 pf 5 pf pf 4.7 pf.2 pf 8.2 pf 0 pf 5 pf Equivalent Series Resistance: 0603/R4S Factor: 0603/R4S pf 0 pf 5 pf 33 pf 47 pf H pf 0 pf 5 pf 33 pf 47 pf Equivalent Series Resistance: 0805/R5S 4.7 pf 5 pf 47 pf 00 pf 220pF 0000 Factor: 0805/R5S 4.7pF 5pF 47pF 00pF 220pF Frequency (Mhz) Measurements performed on a Boonton 34A Resonant Coaxial Line and represent typical capacitor performance. 4
9 S-SERIES RF CHARACTERISITCS VERSUS CAPACITANCE Equivalent Series Resistance: 0402/R07S Factor: 0402/R07S MHz MHz MHz MHz MHz MHz MHz MHz Equivalent Series Resistance: 0603/R4S Factor: 0603/R4S MHz MHz MHz MHz MHz MHz MHz MHz 0 50 Equivalent Series Resistance: 0805/R5S Factor: 0805/R5S MHz MHz MHz MHz MHz MHz MHz MHz Measurements performed on a Boonton 34A Resonant Coaxial Line and represent typical capacitor performance. 5
10 S42E SERIES RF CHARACTERISTICS VERSUS FREUENCY Equivalent Series Resistance: /S42E 0000 Factor: /S42E.5pF 3.9pF 9.pF 5pF 27pF 82pF pF 3.9pF 9.pF 5pF 27pF 82pF S42E SERIES RF CHARACTERISTICS VERSUS CAPACITANCE S42E Equivalent Series Resistance vs Capacitance, Typical S42E vs. Capacitance, Typical MHz MHz MHz MHz MHz MHz S42E SRF (Series Mount), Typical JTI S42E SRF (GHz) Frequency
11 JTI S48E GRAPHICAL DATA 0 SRF (Shunt Mount), S48E, Typical (Preliminary) JTI S48E SRF Current Rating vs. Capacitance, S48E, Typical (Preliminary) 00 Frequency (GHz) Current Rating (amps) 0 30 MHz 64 MHz 28 MHz As measured on a 8720C VNA, using a Shunt- Through fi xture, and using the S magnitude dip to determine the SRF Solid traces show voltage limited current (Vrms) Dotted traces show power dissipation limited current (Based on 4 Watts Power Dissipation, and 25 degrees C case temp.) S48E vs. Capacitance, Typical (Preliminary) 0.00 S48E ESR vs. Capacitance, Typical (Preliminary) ESR (ohms) 00 0 vs 64 MHz vs 28 MHz ESR vs. 64 MHz ESR vs. 28 MHz As measured on a 4287A LCR meter, using a 6092A fi xture As measured on a 4287A LCR meter, using a 6092A fi xture 7
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