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SI2401 Datasheet(PDF) 11 Page - List of Unclassifed Manufacturers |
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SI2401 Datasheet(HTML) 11 Page - List of Unclassifed Manufacturers |
11 / 74 page Si2401 Preliminary Rev. 0.9 11 Bill of Materials: Si2401/10 Chipset Component Value Supplier(s) C1, C2 33 pF, Y2, X7R, ±20% Panasonic, Murata, Vishay C3 10 nF, 250 V, X7R, ±20% Venkel, SMEC C4 1.0 µF, 50 V, Tant/Elect, ±20% Venkel, SMEC C5, C6, C50 0.1 µF, 16 V, X7R, ±20% Venkel, SMEC C7 2.7 nF, 50 V, X7R, ±20% Venkel, SMEC C8, C9 680 pF, Y2, X7R, ±10% Panasonic, Murata, Vishay C10 0.01 µF, 16 V, X7R, ±20% Venkel, SMEC C40, C411 33 pF, 16 V, X7R, ±20% Venkel, SMEC C51 0.22 µF, 16 V, X7R, ±20% Venkel, SMEC D1, D22 Dual Diode, 225 mA, 300 V, CMPD2004S Central Semiconductor FB1, FB2 Ferrite Bead, BLM21AG601SN1 Murata Q1, Q3 NPN, 300 V, MMBTA42 OnSemi, Fairchild Q2 PNP, 300 V, MMBTA92 OnSemi, Fairchild Q4, Q5 NPN, 80 V, 330 mW, MMBTA06 OnSemi, Fairchild RV1 Sidactor, 275 V, 100 A Teccor, Protek, ST Micro R1 1.07 k Ω, 1/2 W, 1% Venkel, SMEC, Panasonic R2 150 Ω, 1/16 W, 5% Venkel, SMEC, Panasonic R3 3.65 k Ω, 1/2 W, 1% Venkel, SMEC, Panasonic R4 2.49 k Ω, 1/2 W, 1% Venkel, SMEC, Panasonic R5, R6 100 k Ω, 1/16 W, 5% Venkel, SMEC, Panasonic R7, R8 20 M Ω, 1/16 W, 5% Venkel, SMEC, Panasonic R9 1 M Ω, 1/16 W, 1% Venkel, SMEC, Panasonic R10 536 Ω, 1/4 W, 1% Venkel, SMEC, Panasonic R11 73.2 Ω, 1/2 W, 1% Venkel, SMEC, Panasonic R12, R133 0 Ω, 1/16 W Venkel, SMEC, Panasonic R15, R164 0 Ω, 1/16 W Venkel, SMEC, Panasonic U1 Si2401 Silicon Labs U2 Si3010 Silicon Labs Y11,5 4.9152 MHz, 20 pF, 100 ppm, 150 Ω ESR ECS Inc., Siward Z1 Zener Diode, 43 V, 1/2 W, BZX84C43 On Semi Notes: 1. In STB applications, C40, C41, and Y1 can be removed when using the 27 MHz clock input feature. See "Clock Generation Subsystem" on page 20. 2. Several diode bridge configurations are acceptable. For example, a single DF04S or four 1N4004 diodes may be used. 3. 56 Ω, 1/16 W, 1% resistor may be substituted for R12–R13 (0 Ω) to decrease emissions. 4. Murata BLM21AG601SN1 may be substituted for R15–R16 (0 Ω) to decrease emissions. 5. To ensure compliance with ITU specifications, frequency tolerance must be less than 100 ppm including initial accuracy, 5-year aging, 0 to 70 °C, and capacitive loading. 50 ppm initial accuracy crystals typically satisfy this requirement. |
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