IP Library Granted Patent US 7,766,838
Granted Patent B2
US 7,766,838 · App. 10/511,184 · Granted Aug 3, 2010

Ultrasonic probe in body cavity

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Quick Facts
Patent No.
US 7,766,838
App. No.
10/511,184
Granted
Aug 3, 2010
Kind
B2
Abstract

To miniaturize a probe, increase the channel number, and improve the flexibility of a flexible section, an ultrasound probe includes a transducer unit having a plurality of channels arranged for transmitting and receiving an ultrasound wave, and flexible circuit board is connected to the respective channels of the transducer unit in which a signal line for supplying a transmission signal and extracting a reception signal to/from transducer unit is provided. The flexible circuit board forms at least two channel blocks which are formed by dividing the plurality of channels and are spirally wound individually.

Claims (18)

1. An ultrasound probe comprising:

a transducer unit including a plurality of transducers for transmitting and receiving an ultrasound respectively located in correspondence with adjacent positions of transmission and reception; and

a flexible circuit board of at least one layer located in correspondence with said positions of transmission and reception, in which signal lines for supplying a transmission signal and for extracting a reception signal to/from said positions are installed;

wherein the flexible circuit board includes a first part which extends from the transducer unit in a longitudinal direction of the plurality of transducers and a second part which is connected to the first part and extends at predetermined angle with respect to the longitudinal direction extension of the first part so as to form a bend at the predetermined angle with respect to the first part;

wherein the flexible circuit board has slits in the longitudinal direction dividing signal lines of the flexible circuit board into a plurality of sections of the flexible circuit board, and each section of the flexible circuit board which is divided by at least one of the slits of the flexible circuit board is individually spirally wound around a longitudinal axis which is different from another longitudinal axis around which another section of the flexible circuit board is individually spirally wound; and

wherein a length of the portions of the first part in the longitudinal direction gradually decrease as the portion becomes closer to an inner side of the bend.

2. An ultrasound probe comprising:

a transducer unit including a plurality of transducers for transmitting and receiving an ultrasound; and

a flexible circuit board of at least one layer being connected with each of said transducers, in which signal lines for supplying a transmission signal and for extracting a reception signal to/from said plurality of transducers are installed;

wherein the flexible circuit board includes a first part which extends from the transducer unit in a longitudinal direction of the plurality of transducers and a second part which is connected to the first part and extends at predetermined angle with respect to the longitudinal direction extension of the first part so as to form a bend at the predetermined angle with respect to the first part;

wherein the flexible circuit board has slits in the longitudinal direction dividing signal lines of the flexible circuit board into a plurality of sections, and each section of the flexible circuit board which is divided by at least one of the slits of the flexible circuit board is individually spirally wound around a longitudinal axis which is different from another longitudinal axis around which another section of the flexible circuit board is individually spirally wound; and

wherein a length of the portions of the first part in the longitudinal direction gradually decrease as the portion becomes closer to an inner side of the bend.

3. An ultrasound probe comprising:

a transducer unit including a plurality of transducers for transmitting and receiving an ultrasound; and

a flexible circuit board of at least one layer being connected with each of said transducers, in which signal lines for supplying a transmission signal and for extracting a reception signal to/from said plurality of transducers are installed;

wherein the flexible circuit board includes a first part which extends from the transducer unit in a longitudinal direction of the plurality of transducers and a second part which is connected to the first part and extends at predetermined angle with respect to the longitudinal direction extension of the first part so as to form a bend at the predetermined angle with respect to the first part;

wherein the flexible circuit board has slits in the longitudinal direction dividing signal lines of the flexible circuit board into a plurality of sections, and each section of the flexible circuit board which is divided by at least one of the slits of the flexible circuit board is individually spirally wound around a longitudinal axis which is different from another longitudinal axis around which another section of the flexible circuit board is individually spirally wound; and

wherein a member is provided around each spirally wound section of the flexible circuit board.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 2, 2016
From: HITACHI MEDICAL CORPORATION
To: HITACHI, LTD.
Reel/Frame 040545/0254 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 27, 2005
From: YAGI, TOMOYUKI; ITO, TAKASHI; IZUMI, MIKIO
To: HITACHI MEDICAL CORPORATION
Reel/Frame 017048/0082 →