Optimized CMOS analog switch
An improved analog switch for use in an ultrasound elastography probe is disclosed. The improved analog switch results in less heat dissipation compared to prior art analog switches.
1. An analog switch, comprising:
a first butterfly circuit comprising a first thin gate oxide NMOS transistor in series with a second thin gate oxide NMOS transistor, the first butterfly circuit comprising a first terminal and a second terminal, the second terminal directly coupled to a high voltage source;
a second butterfly circuit comprising a third thin gate oxide NMOS transistor in series with a fourth thin gate oxide NMOS transistor, the second butterfly circuit comprising a third terminal directly coupled to the second terminal and a fourth terminal directly coupled to ground.
2. The switch of claim 1 , wherein the on-resistance of the switch is less than 8 Ohms.
3. The switch of claim 1 , wherein the parasitic capacitance of the switch is less than 10 picoFarads.
4. The switch of claim 1 , wherein the high voltage source comprises a peak-to-peak amplitude greater than 200 volts.
5. The switch of claim 1 , wherein the first butterfly circuit requires power supply voltages in a range between −6 volts and +6 volts.
6. The switch of claim 5 , wherein the second butterfly circuit requires power supply voltages in a range between −6 volts and +6 volts.
7. An analog switch, comprising:
a conducting means for connecting a high voltage source to a transceiver; and
a shunting means for shunting current from a terminal of the conducting means to ground;
wherein the on-resistance of the switch is less than 8 Ohms.
8. An analog switch, comprising:
a conducting means for connecting a high voltage source to a transceiver; and
a shunting means for shunting current from a terminal of the conducting means to ground;
wherein the parasitic capacitance of the switch is less than 10 picoFarads.