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CWR06NH155JTA Datasheet(PDF) 2 Page - Vishay Siliconix |
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CWR06NH155JTA Datasheet(HTML) 2 Page - Vishay Siliconix |
2 / 7 page CWR06 www.vishay.com Vishay Sprague Revision: 27-Feb-13 2 Document Number: 40009 For technical questions, contact: tantalum@vishay.com THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000 RATINGS AND CASE CODES μF 4 V 6 V 10 V 15 V 20 V 25 V 35 V 50 V 0.10 A 0.15 A 0.22 AB 0.33 AB 0.47 AB C 0.68 A B B C D 1.0 A B C D E 1.5 A B C D E F 2.2 A B C D E F 3.3 B C D E F G 4.7 B C D E F G H 6.8 C D E F G H 10 D E F G 15 E F G H 22 F G H 33 F G H 47 G H 68 G H 100 H STANDARD RATINGS CAPACITANCE (μF) CASE CODE PART NUMBER MAX. DCL (μA) AT MAX. DF (%) AT MAX. ESR AT + 25 °C 100 kHz ( ) + 25 °C + 85 °C + 125 °C + 25 °C + 85 °C + 125 °C - 55 °C 4 VDC AT + 85 °C; 2.7 VDC AT + 125 °C 2.2 A CWR06C(1)225(2)(3)(4)(5) 1.0 10 12 6 8 8 8.0 4.7 B CWR06C(1)475(2)(3)(4)(5) 1.0 10 12 6 8 8 8.0 6.8 C CWR06C(1)685(2)(3)(4)(5) 1.0 10 12 6 8 8 5.5 10 D CWR06C(1)106(2)(3)(4)(5) 1.0 10 12 8 8 10 4.0 15 E CWR06C(1)156(2)(3)(4)(5) 1.0 10 12 8 10 12 3.5 33 F CWR06C(1)336(2)(3)(4)(5) 2.0 20 24 8 10 12 2.2 68 G CWR06C(1)686(2)(3)(4)(5) 3.0 30 36 10 12 12 1.1 100 H CWR06C(1)107(2)(3)(4)(5) 4.0 40 48 10 12 12 0.9 6 VDC AT + 85 °C; 4 VDC AT + 125 °C 1.5 A CWR06D(1)155(2)(3)(4)(5) 1.0 10 12 6 8 8 8.0 3.3 B CWR06D(1)335(2)(3)(4)(5) 1.0 10 12 6 8 8 8.0 4.7 C CWR06D(1)475(2)(3)(4)(5) 1.0 10 12 6 8 8 5.5 6.8 D CWR06D(1)685(2)(3)(4)(5) 1.0 10 12 6 8 8 4.5 10 E CWR06D(1)106(2)(3)(4)(5) 1.0 10 12 8 10 12 3.5 22 F CWR06D(1)226(2)(3)(4)(5) 2.0 20 24 8 10 12 2.2 47 G CWR06D(1)476(2)(3)(4)(5) 3.0 30 36 10 12 12 1.1 68 H CWR06D(1)686(2)(3)(4)(5) 4.0 40 48 10 12 12 0.9 Notes • Part number definitions: (1) Termination finish: B, C, H, K (2) Capacitance tolerance: J, K, M (3) Failure rate: B, C, D, M, P, R, S, T (4) Surge current (optional): A, B, C (5) Packaging: Blank, /FA, /HR, /PR, /TR (1) 5 % tolerance is not available for the 0.33 μF/50 V design |
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