Features: 10A maximum ICCT current over an expanded control voltage range (VIN = 2.6V, VCC = 4.3V) Lower Capacitance: Con = 6.5pF Typ 6.0 typical On Resistance (RON)−3dB bandwidth: > 720MHz Low power consumption (1A maximum) Packaged in: Pb-Free 8-lead MicroPakTM(1.6mm by 2.1mm) Pb-Fre...
FSUSB31: Features: 10A maximum ICCT current over an expanded control voltage range (VIN = 2.6V, VCC = 4.3V) Lower Capacitance: Con = 6.5pF Typ 6.0 typical On Resistance (RON)−3dB bandwidth: > 720...
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10A maximum ICCT current over an expanded control voltage range (VIN = 2.6V, VCC = 4.3V)
Lower Capacitance: Con = 6.5pF Typ
6.0 typical On Resistance (RON)
−3dB bandwidth: > 720MHz
Low power consumption (1A maximum)
Packaged in:
Pb-Free 8-lead MicroPakTM (1.6mm by 2.1mm)
Pb-Free 8-lead US8
8kV ESD performance
Power OFF protection when VCC = 0V, D+, D pins can tolerate up to 4.3V
Symbol |
Parameter |
Rating |
VCC | Supply Voltage |
−0.5V to +4.6V |
VS | DC Input Voltage1 |
−0.5V to +4.6V |
VIN | DC Switch Voltage1 HSD D+, D− |
−0.5V to VCC + 0.3V −0.5V to +4.6V |
DC Input Diode Current |
−50mA | |
DC Output Current |
50mA | |
Storage Temperature |
−65°C to +150°C | |
ESD (Human Body Model) All Pins I/O to GND |
8 KV 8 KV |
The FSUSB31 is Dual SPST isolation switch. This part is optimized for switching between two HS (480Mbps) sources or a HS and FS (12Mbps) source that meets USB2.0 specifications. The FSUSB31 also has special circuitry on the D +, D − pins that allows it to withstand an over voltage condition. This part also features very low quiescent current even when the control voltage is lower than the VCC supply. This feature services mobile handset applications well allowing for direct interface with the baseband processor general purpose I/Os. FSUSB31 applications involve switching in portables and consumer applications such as cell phones, digital cameras and notebooks with hubs or controllers. The wide bandwidth (>720MHz) of this switch exceeds the bandwidth needed to pass the 3rd harmonic resulting in signals with minimum edge and phase distortion. Superior channel-tochannel crosstalk also results with minimal interference.