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PI3USB10MZKE Datasheet(PDF) 3 Page - Pericom Semiconductor Corporation |
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PI3USB10MZKE Datasheet(HTML) 3 Page - Pericom Semiconductor Corporation |
3 / 6 page 3 PI3USB10M 4.2V, Wide Bandwidth, 2-Channel, 2:1 Mux/DeMux USB 2.0 Switch with Single Select PS8799B 03/16/06 Capacitance (T A = 25°C, f = 1MHz) Parameters(3) Description Test Conditions(1) Typ.(2) Max. Units CIN Input Capacitance VIN = 0V 2 3 pF COFF Port I Capacitance, Switch OFF 4 6 CON Switch Capacitance, Switch ON 7.5 9.5 Notes: 1. For max. or min. conditions, use appropriate value specified under Electrical Characteristics for the applicable device type. 2. Typical values are at VCC = 3.3V, TA = 25°C ambient and maximum loading. 3. This parameter is determined by device characterization but is not production tested. Dynamic Electrical Characteristics Over the Operating Range Parameters Description Test Conditions Min. Typ.(2) Max. Units XTALK Crosstalk RL = 50Ω, f = 250 MHz -31 dB OIRR OFF Isolation -39 BW Bandwidth -3dB RL = 50Ω 700 MHz Switching Characteristics Parameters Description Test (1) Conditions Min. Typ. Max. Units tPD Propagation Delay(2,3) See Test Circuit for Electrical Character- istics - 0.25 ns tPZH, tPZL Line Enable Time - SEL to YN, NI0, IN 0.5 - 15.0 tPHZ, tPLZ Line Disable Time - SEL to YN, NI0, IN 0.5 - 9.0 tSK(o) Output Skew between center port to any other port(2) - 0.1 0.2 tSK(p) Skew between opposite transitions of the same output (tPHL - tPLH) (2) - 0.1 0.2 Notes: 1. For max. or min. conditions, use appropriate value specified under Electrical Characteristics for the applicable device type. 2. Guaranteed by design. 3. The switch contributes no propagational delay other than the RC delay of the On-Resistance of the switch and the load capacitance. The time constant for the switch alone is of the order of 0.25ns for 10pF load. Since this time constant is much smaller than the rise/fall times of typical driving signals, it adds very little propagational delay to the system. Propagational delay of the bus switch when used in a system is determined by the driving circuit on the driving side of the switch and its interactions with the load on the driven side. 06-0014 |
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