2225C/P (.220 x.250 )

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1 /P (.220 x.250 ) /P (.220 x.250 ) Product Features High Q, High RF Current/Voltage, High RF Power, Low ESR/ESL, Ultra-Stable Perfmance. Product Application Typical Functional Applications: Bypass, Coupling, Tuning, Impedance Matching and D.C. Blocking. Typical Circuit Applications: UHF/VHF RF Power Amplifiers, Antenna Tuning, Plasma Chambers and Medical Equipment. /P Capacitance Table 0.5 0R5 WVDC 3.9 3R9 NP0=C; P90=P WVD C WVDC 0.6 0R R R R V R R R R6 B,C,D R R V 1.1 1R R R R R3 1R4 2500V R2 9R1 2500V R F,G, 1.6 1R6 B,C,D J,K 1.7 1R7 3600V V R R V R F,G, R J,K 2.2 2R V 2.4 2R R R R R F,G, J,K WVDC 1500V V V V V 501 Remark: special capacitance, tolerance and WVDC are available, consult with PASSIVE PLUS. PPIPDATA030718RevA

2 Part Numbering /P (.220 x.250 ) 101 J W 252 X TV C=NP0; P=P90 Capacit 101=10x10 1 =100; 1R0=1.0 Capacitance Tolerance: See below list Add TV f Vertical Orientation Laser Marking Voltage Teration Type Capacitance Tolerance A B C D F G J K Tolerance ±0.05 ±0.1 ±0.25 ±0.5 ±1% ±2% ±5% ±10% /P Lead Type and Dimensions unit: inch (millimeter) Series Term. W L Type/ Outlines Chip Lc to ( to -0.25) Capacit Dimensions Wc.250 ±.015 Thickness Tc.165 (4.19) Overlap B.047 (1.20) LL Lead Dimensions WL Thickness TL Plated Material 100%Sn Solder over Nickel Plating RoHS Compliant 90%Sn10%Pb Tin/Lead Solder over Nickel Plating MS AR Microstrip Axial Ribbon.500 (12.70).240 ±.005 (6.1±.008 (0.2±.004 (0.1 ± 100% Silver RR Radial Ribbon.245 ±.025 (6.22± 0.64).250± (3.81) (10.00).118±.005 (3.0±.012 (0.3± RW AW Radial Wire Axial Wire.787 (20.00).984 (25.00) Dia.=.031±.004 (0.80 ± 0.10) PPIPDATA030718RevA

3 /P (.220 x.250 ) 2225 C /P Non-Magnetic Lead Type and Dimensions unit:inch(millimeter) Series Term. P Type/ Outlines Chip (Non-Mag) Lc to ( to -0.25) Capacit Dimensions Wc.250 ±.015 Thickness Tc.165 (4.19) Overlap B.047 (1.20) LL Lead Dimensions WL Thick -ness TL Plated Material 100%Sn Solder over Plating RoHS Compliant MN AN Microstrip (Non-Mag) Axial Ribbon (Non-Mag).500 (12.70).240 ±.005 (6.1±.008 (0.2±.004 (0.1± 100% Silver FN RadialRibbon (Non-Mag).245 ±.025 (6.22± 0.64).250 ± (3.81) (10.00).118 ±.005 (3.0±.012 (0.3± RN Radial Wire(Non-Mag).787 (20.00) Dia.=.031±.004 (0.80 ± 0.10) BN.984 (25.00) Axial Wire (Non-Mag) Note: Non-Mag means no magnetic materials. All leads are attached with high temperature solder and parts are RoHS Compliant. PPIPDATA030718RevA

4 Perfmance /P (.220 x.250 ) Item Specifications Quality Fact (Q) Greater than 10,000 at 1MHz. Insulation Resistance (IR) Test Voltage: 500V at rated WVDC at rated WVDC. Voltage Dielectric Withstanding Voltage (DWV) Capacits are designed and manufactured to meet the requirements of MIL-PRF and MIL-PRF-123. Environmental Tests See Voltage Table. 250% of Voltage f 5seconds, Voltage 500VDC 150% of Voltage f 5seconds, 500VDC<Voltage 1250VDC 120% of Voltage f 5 seconds, Voltage>1250VDC Operating Temperature Range -55 to +200 Temperature coefficient (TC) Capacitance Drift Piezoelectric Effects Teration Type C: 0±30ppm/ ; P: +90±20ppm/ ±0.02% ±0.02, whichever is greater. None See Teration Type Table. Item Specifications Method Thermal shock Moisture resistance Humidity (steady state) Life DWV: the initial value IR: Shall not be less than 30% of the initial value. Capacitance change: no me than 0.5% 0.5, whichever is greater. DWV: the initial value IR: the initial value Capacitance change: no me than 0.3% 0.3, whichever is greater. IR: Shall not be less than 30% of the initial value. Capacitance change: no me than 2.0% 0.5, whichever is greater. MIL-STD-202, Method 107, Condition A. At the imum rated temperature (-55 and 125 ) stay 30, the time of removing shall not be me than 3 utes. Perfm the five cycles. MIL-STD-202, Method 106. MIL-STD-202, Method 103, Condition A, With 1.5 Volts D.C. applied while subjected to an environment of 85 with 85% relative humidity f 240 hours imum. MIL-STD-202, Method 108, f 2000 hours, at 125, 200% of Voltage f Capacits, Voltage 500VDC; 120% of Voltage f Capacits, 500VDC<Voltage 1250VDC; 100% of Voltage f Capacits, Voltage>1250VDC. Teral strength Fce : 20lbs typical, 10 lbs., Duration time: 5 to 10 seconds. MIL-STD-202, Method 211A, Test condition A. Applied a fce and maintained f a period of 5 to 10 seconds. The fce shall be in the direction of the axes of the terations. PPIPDATA030718RevA

5 /P Perfmance Curves /P (.220 x.250 ) ESR vs Capacitance Q vs Capacitance Series Resonance vs Capacitance Current Rating vs Capacitance The current depends on voltage limited: The current depends on power dissipation limited: Note: If the thermal resistance of mounting surface is 15 C /W, then a power dissipation of 4 W will result in the current limited. We can calculate the current limited. PPIPDATA030718RevA

6 Recommended Land Pattern Dimensions /P (.220 x.250 ) When mounting the capacit to substrate, it's imptant to carefully consider that the amount of solder (size of fillet) used has a direct effect upon the capacit once it's mounted. 1) The greater the amount of solder, the greater the stress to the elements. This may cause the substrate to break crack. 2) In the situation where two me devices are mounted onto a common land, be sure to separate the device into exclusive pads by using soldering resist. Hizontal Mounting Orientation EIA A B C Hizontal Vertical Mounting Orientation EIA A B C Vertical Tape & Reel Specifications Orientation EIA A0 B0 K0 W P0 P1 T F Qty Min Qty /reel Tape material Hizontal Plastic Hizontal Orientation PPIPDATA030718RevA

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