IP Library Granted Patent US 11,534,139
Granted Patent B2
US 11,534,139 · App. 16/843,445 · Granted Dec 27, 2022

Ultrasonic diagnostic device and ultrasonic diagnostic system

Inventors: Naoto Adachi (Yokohama, JP); Naoto Yoneda (Yokohama, JP); Mari Kobayashi (Yokohama, JP); Masaya Tamamura (Yokohama, JP); Amane Inoue (Yokohama, JP)
Assignee: SOCIONEXT INC.
A61B8/4411A61B8/4455A61B8/4472A61B8/4477A61B8/461A61B8/56A61B8/5207
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Quick Facts
Patent No.
US 11,534,139
App. No.
16/843,445
Granted
Dec 27, 2022
Kind
B2
Abstract

An ultrasonic diagnostic device includes a probe configured to transmit an ultrasonic wave to a subject and to receive the ultrasonic wave reflected by the subject; an image processor configured to convert ultrasonic image data based on the ultrasonic wave received by the probe, into digital data; a main body configured to output the digital data output from the image processor; and a connector configured to electrically connect and disconnect the image processor with respect to the main body.

Claims (43)

1. An ultrasonic diagnostic device comprising:

a probe configured to transmit an ultrasonic wave to a subject and to receive the ultrasonic wave reflected by the subject;

an image processor configured to convert ultrasonic image data based on the ultrasonic wave received by the probe, into digital data;

a main body configured to output the digital data output from the image processor;

a connector configured to electrically connect and disconnect the image processor with respect to the main body; and

an attaching/detaching mechanism configured to attach and detach a first housing with respect to a second housing, the attaching/detaching mechanism including paired elongated structures disposed on sides of the first housing and the second housing,

wherein the probe and the image processor are contained in the first housing, and

wherein the main body is contained in the second housing,

and

wherein the attaching/detaching mechanism can be transitioned into:

a first state where an electrical connection between the image processor and the main body via the connector is established, and the first housing is mechanically coupled with the second housing,

a second state where the electrical connection between the image processor and the main body via the connector is cut off, and the first housing is mechanically coupled to the second housing, in response to the first housing being pulled in a direction away from the second housing with a predetermined force when the attaching/detaching mechanism is in the first state, and

a third state where the electrical connection between the image processor and the main body via the connector is cut off, and the first housing is mechanically decoupled from the second housing, in response to the first housing being pulled in the direction away from the second housing with a force greater than the predetermined force when the attaching/detaching mechanism is in the second state.

2. The ultrasonic diagnostic device as claimed in claim 1 , wherein when in the second state, the first housing is mechanically coupled to the second housing by the attaching/detaching mechanism such that there is a gap between the first housing and the second housing.

3. An ultrasonic diagnostic device comprising:

a probe configured to transmit an ultrasonic wave to a subject and to receive the ultrasonic wave reflected by the subject;

an image processor configured to convert ultrasonic image data based on the ultrasonic wave received by the probe, into digital data;

a main body configured to output the digital data output from the image processor;

a connector configured to electrically connect and disconnect the image processor with respect to the main body; and

an attaching/detaching mechanism configured to attach and detach a first housing with respect to a second housing, the attaching/detaching mechanism including paired elongated structures disposed on sides of the first housing and the second housing,

wherein the probe and the image processor are contained in the first housing, and

wherein the main body is contained in the second housing, and

wherein the attaching/detaching mechanism can be transitioned into:

a state where an electrical connection between the image processor and the main body via the connector is established, and the first housing is mechanically coupled with the second housing,

a state where the electrical connection between the image processor and the main body via the connector is cut off, and the first housing is mechanically decoupled from the second housing, and,

a state where the electrical connection between the image processor and the main body via the connector is cut off, and the first housing is mechanically coupled to the second housing, and

wherein when in the state where the electrical connection between the image processor and the main body via the connector is cut off, the first housing is mechanically coupled to the second housing by the attaching/detaching mechanism such that there is a gap between the first housing and the second housing.

4. An ultrasonic diagnostic system comprising:

an ultrasonic diagnostic device; and

a terminal device,

wherein the ultrasonic diagnostic device includes:

a probe configured to transmit an ultrasonic wave to a subject and to receive the ultrasonic wave reflected by the subject,

an image processor configured to convert ultrasonic image data based on the ultrasonic wave received by the probe, into digital data,

a main body configured to output the digital data output from the image processor, to the terminal device,

a connector configured to electrically connect and disconnect the image processor with respect to the main body, and

an attaching/detaching mechanism configured to attach and detach a first housing with respect to a second housing, the attaching/detaching mechanism including paired elongated structures disposed on sides of the first housing and the second housing,

wherein the probe and the image processor are contained in the first housing, and

wherein the main body is contained in the second housing, and

wherein the attaching/detaching mechanism can be transitioned into:

a state where an electrical connection between the image processor and the main body via the connector is established, and the first housing is mechanically coupled with the second housing,

a state where the electrical connection between the image processor and the main body via the connector is cut off, and the first housing is mechanically decoupled from the second housing, and

a state where the electrical connection between the image processor and the main body via the connector is cut off, and the first housing is mechanically coupled to the second housing,

wherein when in the state where the electrical connection between the image processor and the main body via the connector is cut off, the first housing is mechanically coupled to the second housing by the attaching/detaching mechanism such that there is a gap between the first housing and the second housing.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 12, 2025
From: SOCIONEXT INC.
To: ABLIC INC.
Reel/Frame 070195/0425 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 8, 2020
From: ADACHI, NAOTO; YONEDA, NAOTO; KOBAYASHI, MARI; TAMAMURA, MASAYA; INOUE, AMANE
To: SOCIONEXT INC.
Reel/Frame 052347/0141 →
Continuity (2)
Continuation PCTJP2017037497 · Oct 17, 2017
Related Publication 20200229790A1 · Jul 23, 2020