Features: • USB 2.0 compliant (high speed and full speed)• RON is 5.5 typical @ VCC = 3.0V• Low bit-to-bit skew• Low Crosstalk: 40dB @ 500 Mbps• Off Isolation: 35dB @ 500 Mbps• Near-Zero propagation delay: 250ps• Switching speed: 9ns• Channel On Capa...
PI3USB10LP-A: Features: • USB 2.0 compliant (high speed and full speed)• RON is 5.5 typical @ VCC = 3.0V• Low bit-to-bit skew• Low Crosstalk: 40dB @ 500 Mbps• Off Isolation: 35dB @ 5...
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Storage Temperature ....................................................65 to +150
Supply Voltage to Ground Potential ................................0.5V to +4.6V
DC Input Voltage .....................................................0.5V to VCC +0.5V
DC Output Current .......................................................................120mA
Power Dissipation ...........................................................................0.5W
Note: Stresses greater than those listed under MAXIMUM RATINGS may cause permanent damage to the device. Thisis 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 specifi cation is not implied. Exposure to absolute maximum rating conditions for extended periods may affect reliability.
The PI3USB10LP-A is a single differential channel 2:1 multiplexer/ demultiplexer USB 2.0 Switch. Industry leading advantages include a propagation delay of less than 250ps, resulting from its low channel resistance and I/O capacitance. The device multiplexes differential outputs from a USB Host device to one of two corresponding outputs. The switch is bidirectional and offers little or no attenuation of the high-speed signals at the outputs. PI3USB10LP-A is designed for low bit-to-bit skew, high channel-to-channel noise isolation and is compatible with various standards, such as High Speed USB 2.0 (480 Mb/s).
The PI3USB10LP-A offers overvoltage protection per the USB 2.0 specifi cation. With the chip powered on or off, all I/O pins can withstand a short to Vbus (5V +/-10%). This feature can only be offered if a 100-ohm pull up resistor is placed between VCC pin to the power supply.