ULTRASOUND DEVICE WITH PIEZOELECTRIC MICROMACHINED ULTRASONIC TRANSDUCERS
Ultrasound devices including piezoelectric micromachined ultrasonic transducers (PMUTs) are described. Frequency tunable PMUT arrays are provided. The PMUTs may be formed on the same substrate or a different substrate than an integrated circuit substrate. The PMUTs may be formed in a variety of ways and from various suitable piezoelectric materials.
1 . An ultrasound device, comprising:
an integrated multi-substrate die including a piezoelectric micromachined ultrasonic transducer (PMUT) substrate, a transmit circuitry substrate, and a receive circuitry substrate coupled together.
2 . The ultrasound device of claim 1 , wherein the transmit circuitry substrate comprises transmit circuitry and the receive circuitry substrate comprises receive circuitry implemented in a different node than the transmit circuitry.
3 . The ultrasound device of claim 2 , wherein the transmit circuitry is implemented in a larger node than the receive circuitry.
4 . The ultrasound device of claim 3 , wherein the transmit circuitry is configured to implement voltages greater than those implemented by the receive circuitry.
5 . The ultrasound device of claim 1 , wherein the PMUT substrate comprises a frequency tunable PMUT array.
6 . The ultrasound device of claim 5 , wherein the frequency tunable PMUT array comprises PMUTs of different dimensions.
7 . The ultrasound device of claim 6 , wherein the PMUTs of different dimensions have different thicknesses.
8 . The ultrasound device of claim 6 , wherein the frequency tunable PMUT array comprises a PMUT having multiple excitation electrodes of different dimensions.
9 . The ultrasound device of claim 8 , wherein the PMUT having multiple excitation electrodes of different dimensions has a first electrode configured to excite a first area of the PMUT and a second electrode configured to excite a second area of the PMUT greater than the first area.
10 . The ultrasound device of claim 9 , wherein the transmit circuitry substrate comprises transmit circuitry configured to individually excite the first electrode or the second electrode.
11 . An ultrasound device, comprising:
an integrated multi-substrate die including a piezoelectric micromachined ultrasonic transducer (PMUT) substrate coupled with an integrated circuit (IC) substrate.
12 . The ultrasound device of claim 11 , wherein the IC substrate is a complementary metal oxide semiconductor (CMOS) substrate comprising CMOS circuitry.
13 . The ultrasound device of claim 11 , wherein the PMUT substrate comprises a frequency tunable PMUT array.
14 . The ultrasound device of claim 13 , wherein the frequency tunable PMUT array comprises PMUTs of different dimensions.
15 . The ultrasound device of claim 14 , wherein the PMUTs of different dimensions have different thicknesses.
16 . The ultrasound device of claim 13 , wherein the frequency tunable PMUT array comprises a PMUT having multiple excitation electrodes of different dimensions.
17 . The ultrasound device of claim 16 , wherein the PMUT having multiple excitation electrodes of different dimensions has a first electrode configured to excite a first area of the PMUT and a second electrode configured to excite a second area of the PMUT greater than the first area.
18 . The ultrasound device of claim 17 , wherein the IC substrate comprises transmit circuitry configured to individually excite the first electrode or the second electrode.
19 . An ultrasound device, comprising:
a substrate
an integrated circuit formed in the substrate; and
a layer of thin film piezoelectric micromachined ultrasonic transducers (PMUTs) integrated with the substrate.
20 . The ultrasound device of claim 19 , wherein the thin film PMUTs of the layer of thin film PMUTs lack a transducing gap.
21 . The ultrasound device of claim 19 , wherein the thin film PMUTs of the layer of thin film PMUTs are frequency tunable.
22 . The ultrasound device of claim 21 , wherein a thin film PMUT of the layer of thin film PMUTs includes multiple selectable electrodes configured to excite different regions of the PMUT.