IP Library › Granted Patent US 10,743,757
Granted Patent B2
US 10,743,757 · App. 16/125,782 · Granted Aug 18, 2020

Ultrasonic transducer

Inventors: Kazuhiko Komiyama (Saitama, JP); Yasunobu Hasegawa (Saitama, JP)
Assignee: NIHON DEMPA KOGYO CO., LTD.
A61B3/1005A61B3/0008A61B8/10A61B8/4281A61B8/4416A61B8/4483A61B8/4494G01N29/2437G01N29/28
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Quick Facts
Patent No.
US 10,743,757
App. No.
16/125,782
Granted
Aug 18, 2020
Kind
B2
Abstract

An ultrasonic transducer includes a piezoelectric element in round shape, an acoustic lens, and an acoustic matching layer. The piezoelectric element generates an ultrasonic sound wave. The acoustic matching layer decreases a reflection of the ultrasonic sound wave from a subject. The piezoelectric element has a center having a hole through which an optical fiber that guides a light of a light source passes. The ultrasonic transducer transmits and receives the ultrasonic sound wave while emitting the light. The acoustic lens has a material using a resin with a withstand voltage, mainly polymethylpentene. The acoustic matching layer has a thickness set to λ/4 by not applying a polyparaxylylene coating for ensuring the withstand voltage on the acoustic matching layer. The optical fiber has a distal end configured not to pass through the acoustic lens. The piezoelectric element and the acoustic matching layer have shapes in a planar surface.

Claims (29)

1. An ultrasonic transducer, comprising:

a piezoelectric element in a round shape that generates an ultrasonic sound wave having a wavelength λ;

an acoustic lens that converges the ultrasonic sound wave; and

an acoustic matching layer that decreases a reflection of the ultrasonic sound wave from a subject,

wherein the piezoelectric element has a center having a hole through which an optical fiber that guides a light of a light source passes,

the ultrasonic transducer transmits and receives the ultrasonic sound wave while emitting the light,

the acoustic lens has a material using a resin with a withstand voltage, mainly polymethylpentene,

the acoustic matching layer has a thickness set to λ/4 by not applying a polyparaxylylene coating for ensuring the withstand voltage on the acoustic matching layer,

the optical fiber has a distal end configured not to pass through the acoustic lens, and

the piezoelectric element and the acoustic matching layer have shapes in a planar surface.

2. An ultrasonic transducer, comprising:

a piezoelectric element in a round shape that generates an ultrasonic sound wave;

an acoustic lens that converges the ultrasonic sound wave; and

an acoustic matching layer that decreases a reflection of the ultrasonic sound wave from a subject,

wherein the piezoelectric element has a center having a hole through which an optical fiber that guides a light of a light source passes,

the ultrasonic transducer transmits and receives the ultrasonic sound wave while emitting the light,

the optical fiber is disposed such that a distal end of the optical fiber does not pass through the acoustic lens, and

the acoustic lens has a color of transparency or semitransparency and a shape in a depressed surface such that the light of the distal end of the optical fiber reaches the subject.

3. An ultrasonic transducer, comprising:

a piezoelectric element in a round shape that generates an ultrasonic sound wave having a wavelength λ;

an acoustic lens that converges the ultrasonic sound wave; and

an acoustic matching layer that decreases a reflection of the ultrasonic sound wave from a subject,

wherein the piezoelectric element has a center having a hole through which an optical fiber that guides a light of a light source passes,

the ultrasonic transducer transmits and receives the ultrasonic sound wave while emitting the light,

the acoustic lens has a material using a resin with a withstand voltage, mainly polymethylpentene,

the acoustic matching layer has a thickness set to λ/4 by not using a polyparaxylylene coating for ensuring the withstand voltage of the acoustic matching layer,

the piezoelectric element and the acoustic matching layer have shapes in a planar surface,

the optical fiber is disposed such that a distal end of the optical fiber does not pass through the acoustic lens, and

the acoustic lens is transparent or semitransparent and has a shape in a depressed surface such that the light of the distal end of the optical fiber reaches the subject.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 19, 2018
From: KOMIYAMA, KAZUHIKO; HASEGAWA, YASUNOBU
To: NIHON DEMPA KOGYO CO., LTD.
Reel/Frame 046905/0284 →
Priority Claims (1)
JP 2017-187485 · Sep 28, 2017 · national
Continuity (1)
Related Publication 20190090734A1 · Mar 28, 2019