Ultra-Miniature 01005 Size Accu-P Thin-Film RF Microwave Capacitor ACCU-P TECHNOLOGY The use of silicon oxide, a very low - loss dielectric material, in conjunction with highly conductive electrode metals, results in low ESR and high Q. These high - frequency characteristics change at a slower rate with increasing frequency than for ceramic microwave capacitors. ACCU-P meets the fast - growing demand for low - loss (high - Q) capacitors for use in surface mount technology, especially for the wireless communications market at frequencies up to and above 5.8GHz. ACCU-P is currently unique in its ability to offer very low capacitance values (0.05 pF) and ultra tight capacitance tolerances (0.01 pF). FEATURES APPLICATIONS Ultra Miniature standard 01005 chip size. RF Modules Ultra tight capacitance tolerances (0.01pF). Mobile communications Low ESR and high Q at VHF, UHF and microwave frequencies. Satellite TV TC 30, 60ppm/C. Global positioning systems Nickel/Solder - coated terminations provide excellent solderability and leach Filters resistance. VCOs 10 High insulation resistance: IR 10 Ohm. Matching networks Orientation provides high SRF uniformity. Repeatable C , ESR and Q vs. Frequency parameters, both lot to lot and EFF within lots, for increased production yields. HOW TO ORDER C005 Y X XXX X B S TR Series Voltage Temperature Capacitance Tolerance Accu-P Lead Free Packaging Y = 16V Coefficient (pF) Termination Code 5000 pc reel TR/10K = 10,000 pc reel TR/20K = 20,000 pc reel P/N Example: C 0 0 5 Y K 1 R 0 A B S T R QUALITY AND RELIABILITY Finished parts are tested for standard electrical parameters and visual / mechanical characteristics. Each production lot is 100% Each production lot is evaluated In addition, production is periodically evaluated for: on a sample basis for: evaluated for: Capacitance Dimensions Mechanical stability Q Factor Insulation Resistance Endurance (Life) DWV at 12.5xV Breakdown Voltage Temperature Coefficient RATED ESR Accelerated Damp Heat Load (THB) Solderability Temperature Cycling 1 Ultra-Miniature 01005 Size Accu-P Thin-Film RF Microwave Capacitor ACCU-P 01005 CAPACITANCE RANGE Tolerances Tolerances Z = 0.01pF TC Z = 0.01pF TC Capacitance Voltage Capacitance Voltage Part Number P = 0.02pF J = 30ppm/C Part Number P = 0.02pF J = 30ppm/C pF (V) pF (V) Q = 0.03pF K = 60ppm/C Q = 0.03pF K = 60ppm/C A = 0.05pF A = 0.05pF 0.05 C005YJR05 BSTR Z, P, Q, A J 16 0.90 C005YK0R9 BSTR P, Q, A K 16 0.10 C005YJ0R1 BSTR Z, P, Q, A J 16 0.95 C005YKR95 BSTR P, Q, A K 16 0.15 C005YJR15 BSTR Z, P, Q, A J 16 1.00 C005YK1R0 BSTR P, Q, A K 16 0.20 C005YJ0R2 BSTR Z, P, Q, A J 16 1.10 C005YK1R1 BSTR P, Q, A K 16 0.25 C005YJR25 BSTR Z, P, Q, A J 16 1.20 C005YK1R2 BSTR P, Q, A K 16 0.30 C005YJ0R3 BSTR Z, P, Q, A J 16 1.30 C005YK1R3 BSTR P, Q, A K 16 0.35 C005YJR35 BSTR Z, P, Q, A J 16 1.40 C005YK1R4 BSTR P, Q, A K 16 0.40 C005YJ0R4 BSTR Z, P, Q, A J 16 1.50 C005YK1R5 BSTR P, Q, A K 16 0.45 C005YJR45 BSTR Z, P, Q, A J 16 1.60 C005YK1R6 BSTR P, Q, A K 16 0.50 C005YJ0R5 BSTR Z, P, Q, A J 16 1.70 C005YK1R7 BSTR P, Q, A K 16 0.55 C005YJR55 BSTR P, Q, A J 16 1.80 C005YK1R8 BSTR P, Q, A K 16 0.60 C005YJ0R6 BSTR P, Q, A J 16 1.90 C005YK1R9 BSTR P, Q, A K 16 0.65 C005YJR65 BSTR P, Q, A J 16 2.00 C005YK2R0 BSTR P, Q, A K 16 0.70 C005YJ0R7 BSTR P, Q, A J 16 2.10 C005YK2R1 BSTR P, Q, A K 16 0.75 C005YJR75 BSTR P, Q, A K 16 2.20 C005YK2R2 BSTR P, Q, A K 16 0.80 C005YK0R8 BSTR P, Q, A K 16 2.30 C005YK2R3 BSTR P, Q, A K 16 0.85 C005YKR85 BSTR P, Q, A K 16 2.40 C005YK2R4 BSTR P, Q, A K 16 Intermediate capacitance values are available DIMENSIONS - mm (inches) RECOMMENDED PAD LAYOUT - mm (inches) B1 0.405 0.020 L (0.016 0.001) 0.22 0.215 0.020 0.17 (0.007) (0.009) W (0.0085 0.001) T 0.145 0.020 W T (0.006 0.001) Top (B1): 0.0 +0.10/-0.0 (0.0 +0.004/-0.0) B2 B Bottom (B2): 0.10 0.03 0.20 (0.008) L (0.004 0.001) PACKAGING SPECIFICATION - mm (inches) Standard Packaging: 5,000 / 10,000 / 20,000pcs in 4 / 7 reels Materials: Reel Polystyrene Tape Paper: 8.00 (0.315) Component pitch: 2.00 (0.079) 2.00 (0.079) 4.00 (0.157) 2.00 (0.079) 2.00 (0.079) 2