Claims
- 1. A resonance based pressure transducer system, insertable into a living body for the in vivo measurement of pressure, comprising
a pressure sensor (2) having a mechanical resonator (16), the resonance frequency of which is pressure dependent; and a source of ultrasonic energy (4); wherein the sensor (2) is mechanically coupled to said source (4) of ultrasonic energy, and wherein the sensor and the source of ultrasonic energy are provided on a common, elongated member (6) at a distal end thereof.
- 2. The resonance pressure transducer system as claimed in claim 1, wherein the sensor (2) is mounted on said source (4) of ultrasonic energy.
- 3. The resonance pressure transducer system as claimed in claim 1, wherein the common, elongated member is a wire (6).
- 4. The resonance pressure transducer system as claimed in claim 3, wherein said source of ultrasonic energy (4) is attached to said wire (6).
- 5. The resonance pressure transducer system as claimed in claim 1, wherein the sensor (2) and said source of ultrasonic energy (4) are both attached to a wire (6), and mounted adjacent to each other.
- 6. The resonance pressure transducer system as claimed in claim 1, wherein said source of ultrasonic energy (4) is a piezo-electric element, capable of generating oscillations of a frequency in the range of 10 kHz to 100 MHz.
- 7. The resonance pressure transducer system as claimed in claim 6, further comprising electrical connections (10) for enabling applying a voltage to said piezo-electric element.
- 8. The resonance pressure transducer system as claimed in claim 1, wherein said sensor (2) comprises a membrane (18), a beam (16) attached to said membrane (18) by a suspension element (20), said beam (16) being housed within an evacuated chamber (23).
- 9. The resonance pressure transducer system as claimed in claim 1, wherein the resonance frequency of said sensor (2) has a quality factor (Q) exceeding 10.
- 10. The resonance pressure transducer system as claimed in claim 1, wherein excitation of said source (4) of ultrasonic energy uses pulses having a duration not exceeding the period time corresponding to the resonance frequency of the sensor (2).
- 11. The resonance pressure transducer system as claimed in claim 1, wherein excitation of said source (4) of ultrasonic energy uses sine waves, swept in a frequency range encompassing the resonance frequency of the sensor (2).
- 12. The resonance pressure transducer system as claimed in claim 1, wherein said sensor (2) comprises a cell (14), having a bottom and side walls, forming a box-like structure.
- 13. The resonance pressure transducer system as claimed in claim 12, wherein an open end of the cell (14) is closed by a thin membrane (18) thus forming a vacuum cavity, in which a mechanical resonator (16) is provided.
- 14. The resonance pressure transducer system as claimed in claim 8, wherein the beam (16) has a unique resonance frequency, the magnitude of which is variable in dependence of the strain in the material from which the beam is made.
- 15. A pressure measurement system, comprising
an AC power supply capable of delivering AC power in the frequency range of 10 kHz to 100 MHz; a resonance based pressure transducer system as claimed in claim 1; and a control unit for controlling a supply mode of said AC power, and for analyzing a resonance signal emitted from said resonance based pressure transducer system.
Priority Claims (1)
Number |
Date |
Country |
Kind |
00850051.4 |
Mar 2000 |
EP |
|
Parent Case Info
[0001] This application claims the benefit of priority of European application 00850051.4, filed Mar. 21, 2000, and U.S. provisional application 60/199,349, filed Apr. 25, 2000. The entire contents of both of these applications are incorporated herein by reference.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60199349 |
Apr 2000 |
US |