Claims
- 1. An ultrasonic endoscopic probe including a control section and a distal end at which a rotatable ultrasonic transducer is located, comprising:a compartment in which said ultrasonic transducer is rotatably mounted; a cover which covers the ultrasonic transducer and through which acoustic energy is received by the transducer; an acoustic coupling material, located in said compartment, for coupling ultrasonic energy between said transducer and said cover; and a sheet of material, located between said transducer and said cover, which enables said transducer to rotate when contacting said cover through said sheet without sticking to said cover.
- 2. The ultrasonic endoscopic probe of claim 1, wherein said sheet of material comprises a polymeric membrane.
- 3. The ultrasonic endoscopic probe of claim 1, further comprising an acoustic lens, attached to the surface of said transducer between said transducer and said cover, wherein said sheet of material is located between said acoustic lens and said cover.
- 4. The ultrasonic endoscopic probe of claim 3, wherein said sheet of material adheres to said acoustic lens while sliding against said cover.
- 5. The ultrasonic endoscopic probe of claim 4, wherein said acoustic lens comprises an RTV compound and said sheet of material comprises a Mylar membrane.
- 6. The ultrasonic endoscopic probe of claim 4, wherein the surface of said acoustic lens which faces said cover is dome shaped, and wherein said sheet of material exhibits the shape of a contact lens.
- 7. An ultrasonic endoscopic probe including a control section and a distal end at which a rotatable ultrasonic transducer assembly is located, comprising:a compartment in which said ultrasonic transducer assembly is rotatably mounted; a cover formed of a cover material which covers the ultrasonic transducer assembly and through which acoustic energy is received by the transducer assembly; and a sliding member, located between said transducer assembly and said cover and having a relatively low frictional affinity toward said cover material and a relatively high frictional affinity toward said transducer assembly, which enables said transducer assembly to rotate without sticking to said cover.
- 8. The ultrasonic endoscopic probe of claim 7, wherein said sliding member is comprised of a solid material.
- 9. The ultrasonic endoscopic probe of claim 8, wherein said sliding member comprises a polymeric membrane.
- 10. The ultrasonic endoscopic probe of claim 8, wherein said solid material is the same material as said cover material.
- 11. The ultrasonic endoscopic probe of claim 7, wherein said transducer assembly further comprises an acoustic lens, attached to the surface of a transducer between said transducer and said cover, wherein said sliding member is located between said acoustic lens and said cover.
- 12. The ultrasonic endoscopic probe of claim 11, wherein said sliding member adheres to said acoustic lens while sliding against said cover.
- 13. The ultrasonic endoscopic probe of claim 12, wherein said acoustic lens comprises an RTV compound and said sliding member comprises a polymeric material.
- 14. The ultrasonic endoscopic probe of claim 11, wherein the surface of said acoustic lens which faces said cover is dome shaped, and wherein said sliding member exhibits a dome shape.
- 15. The ultrasonic endoscopic probe of claim 7, wherein said rotatable ultrasonic transducer assembly comprises an array transducer assembly.
- 16. The ultrasonic endoscopic probe of claim 15, further comprising an acoustic coupling fluid located in said compartment.
Priority Claims (1)
Number |
Date |
Country |
Kind |
9511497 |
Jun 1995 |
GB |
|
Parent Case Info
This is a division of U.S. patent application Ser. No. 09/060,408, filed Apr. 14, 1998, which is a division of U.S. patent application Ser. No. 08/655,393, filed May 30, 1996, now U.S. Pat. No. 5,762,067.
US Referenced Citations (4)
Number |
Name |
Date |
Kind |
5127410 |
King et al. |
Jul 1992 |
|
5320104 |
Fearnside et al. |
Jun 1994 |
|
5402793 |
Gruner et al. |
Apr 1995 |
|
5465724 |
Sliwa, Jr. et al. |
Nov 1995 |
|