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PI3C6800 Datasheet(PDF) 2 Page - Pericom Semiconductor Corporation |
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PI3C6800 Datasheet(HTML) 2 Page - Pericom Semiconductor Corporation |
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2 / 5 page ![]() 2 PS8191D 05/03/00 12345678901234567890123456789012123456789012345678901234567890121234567890123456789012345678901212345678901234567890123456789012123456789012 12345678901234567890123456789012123456789012345678901234567890121234567890123456789012345678901212345678901234567890123456789012123456789012 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 PI3C6800 2.5V/3.3V,2-Port,10-BitBusSwitchwith PrechargedOutputsforLiveInsertion ElectricalCharacteristics(OverRecommendedOperatingFree-airTemperatureRange) Storage Temperature ........................................ 65°Cto+150°C Supply Voltage Range .......................................... 0.5Vto4.6V DC Input Voltage(1) ...............................................0.5Vto+7V Input Clamp Current, IIK (V1< 0) .....................................50mA DC Output Current ......................................................... 120mA Power Dissipation(2) ..........................................................0.5W Note: Stresses greater than those listed under MAXIMUM RATINGS may cause permanent damage to the device. This is a stress rating only and functional operation of the device at these or any other conditions above those indicated in the operational sections of this specification is not implied. Exposure to absolute maximum rating conditions for extended periods may affect reliability. Notes: 1. Input and output negative-voltage ratings may be exceeded if the input and output clamp-current ratings are observed. 2. Maximum package power dissipation is calculated using a junction temperatue of 150°C and a board trace length of 750 mils. Absolute Maximum Ratings Over Free-Air Temperature Range* (Above which the useful life may be impaired. For user guidelines, not tested.) Notes: * Measured by the voltage drop between the A and B terminals at the indicated current through the switch. On-state resistance is determined by the lower of the voltages of the two (A or B) terminals. This is the increase in supply current for control input. All typical values are at VCC = 3.3V, TA = 25°C. s r e t e m a r a Pn o it p i r c s e Ds n o it i d n o C t s e T. n i Mp y T . . x a Ms ti n U V K I e g a tl o V e d o i D p m al CV C C I , V 0 . 3 = N I 8 1 =mA 2 . 1 V II t n e rr u C t u p n IV C C , V 6 . 3 =V N I V = C C D N G r o5 ± µA IO t n e rr u C t u p t u OV C C V , V 4 . 2 = V S A I B , V 0 . 3 = O 0 =5 2 . 0A m I C C y l p p u S r e w o P t n e c s ei u Q t n e rr u C V C C I , V 6 . 3 = O , 0 =V N I V = C C D N G r o0 6 20 0 5 µA ∆I C C r e p t n e rr u C y l p p u S r e w o P t u p n I V C C , V 6 . 3 =V 7 . 2 t a t u p n i e n O t a r e h t OV C C D N G r o 5 . 2A m C N I e c n a ti c a p a C t u p n IV C C V 0 =5 . 3 F p C F F O e c n a ti c a p a C B / AV C C , V 0 =ff O h c ti w S0 . 5 R N O * e c n a t si s e R N O h c ti w SV C C V 0 . 3 = V N I I , 0 = N I 4 6 =A m5 7 Ω V N I I , V 4 . 2 = N I 0 3 =A m0 . 85 1 V N I I , V 4 . 2 = N I 5 1 =A m0 . 85 1 . n i Mp y T . s ti n U V C C e g a tl o v y l p p u S3 . 23 . 3 V V S A I Be g a tl o v y l p p u S3 . 1C C V V H I e g a tl o v t u p n i l e v el - h g i H2 V L I e g a tl o v t u p n i l e v el - w o L8 . 0 TA e r u t a r e p m e t ri a - e e rf g n it a r e p O0 4 5 8C ° RecommendedOperatingConditions |
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