IP Library Granted Patent US 12669595
Granted Patent B2
US 12669595 · App. 18/587,352 · Granted Jun 30, 2026

Probe capable of self-inspection, ultrasonic imaging system having the same, and method of controlling the same

Inventors: Minsoo Na (Seoul, KR); Hwanseung Yu (Seoul, KR)
Assignee: SAMSUNG MEDISON CO., LTD.
G01S7/52004A61B8/4472A61B8/54A61B8/58
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Quick Facts
Patent No.
US 12669595
App. No.
18/587,352
Granted
Jun 30, 2026
Kind
B2
Abstract

Disclosed is a probe including a first transmitter provided to generate a first transmission signal, a second transmitter provided to generate a second transmission signal, a receiver provided to receive the first transmission signal generated from the first transmitter or the second transmission signal generated from the second transmitter, a signal attenuator provided to attenuate the first transmission signal or the second transmission signal, a first switching element provided to transmit the first transmission signal to the signal attenuator or to transmit the second transmission signal transmitted through the signal attenuator to the receiver, a second switching element provided to transmit the second transmission signal to the signal attenuator or to transmit the first transmission signal transmitted through the signal attenuator to the receiver, a first node provided between a first transducer and the first switching element, a second node provided between a second transducer and the second switching element, and a controller configured to control the first switching element and the second switching element, wherein the signal attenuator is connected between the first node and the second node.

Claims (75)

1 . A probe comprising:

a first transmitter provided to generate a first transmission signal for obtaining an ultrasound image through a first transducer or inspecting operating states of the first transmitter and a receiver;

a second transmitter provided to generate a second transmission signal for obtaining the ultrasound image through a second transducer or inspecting operating states of the second transmitter and the receiver;

a signal attenuator provided to attenuate the first transmission signal or the second transmission signal;

the receiver provided to receive the first transmission signal through the signal attenuator, or the second transmission signal through the signal attenuator;

a first switching element provided to transmit the first transmission signal to the signal attenuator or to transmit the second transmission signal transmitted through the signal attenuator to the receiver;

a second switching element provided to transmit the second transmission signal to the signal attenuator or to transmit the first transmission signal transmitted through the signal attenuator to the receiver;

a first node provided between the first transducer and the first switching element;

a second node provided between the second transducer and the second switching element; and

a controller configured to control the first switching element and the second switching element,

wherein the signal attenuator is connected between the first node and the second node.

2 . The probe according to claim 1 , wherein

the controller inspects at least one of first operating states of the first transmitter and the receiver and second operating states of the second transmitter and the receiver.

3 . The probe according to claim 1 , wherein

the controller, in order to inspect the first operating states of the first transmitter and the receiver, controls the first switching element such that the first transmitter and the signal attenuator are connected, and controls the second switching element such that the receiver and the signal attenuator are connected.

4 . The probe according to claim 1 , wherein

the controller, in order to inspect the second operating states of the second transmitter and the receiver, controls the first switching element such that the receiver and the signal attenuator are connected, and controls the second switching element such that the second transmitter and the signal attenuator are connected.

5 . The probe according to claim 1 , wherein

the controller determines whether the first operating states of the first transmitter and the receiver are normal based on first waveform information of the first transmission signal detected by the receiver.

6 . The probe according to claim 1 , wherein

the controller determines whether the second operating states of the second transmitter and the receiver are normal based on second waveform information of the second transmission signal detected by the receiver.

7 . The probe according to claim 1 , further comprising

an input device provided to obtain a command for performing at least one of a first inspection mode for inspecting the first operating states of the first transmitter and the receiver and a second inspection mode for inspecting the second operating states of the second transmitter and the receiver.

8 . The probe according to claim 7 , wherein

the controller, based on the command for performing the first inspection mode obtained through the input device, controls the first switching element such that the first transmitter and the signal attenuator are connected, and controls the second switching element such that the receiver and the signal attenuator are connected.

9 . The probe according to claim 7 , wherein

the controller, based on the command for performing the second inspection mode obtained through the input device, controls the first switching element such that the receiver and the signal attenuator are connected, and controls the second switching element such that the second transmitter and the signal attenuator are connected.

10 . The probe according to claim 7 , further comprising

an inspection switch connected between the first node and the second node,

wherein the controller closes the inspection switch based on the command for performing the first inspection mode or the second inspection mode obtained through the input device.

11 . The probe according to claim 10 , wherein

the controller opens the inspection switch based on a command for ending the first inspection mode or the second inspection mode obtained through the input device.

12 . The probe according to claim 1 , wherein

the receiver comprises:

a first receiver provided to receive the second transmission signal generated from the second transmitter, and

a second receiver provided to receive the first transmission signal generated from the first transmitter,

the first switching element transmits the first transmission signal to the signal attenuator or transmit the second transmission signal transmitted through the signal attenuator to the first receiver, and

the second switching element transmits the second transmission signal to the signal attenuator or transmit the first transmission signal transmitted through the signal attenuator to the second receiver.

13 . A method of controlling a probe comprising:

generating, from a first transmitter, a first transmission signal for obtaining an ultrasound image through a first transducer or inspecting operating states of the first transmitter and a receiver;

generating, from a second transmitter, a second transmission signal for obtaining the ultrasound image through a second transducer or inspecting operating states of the second transmitter and the receiver;

attenuating, by a signal attenuator, the first transmission signal or the second transmission signal;

receiving, by the receiver, the first transmission signal through the signal attenuator, or the second transmission signal through the signal attenuator;

transmitting, based on an operation of a first switching element, the first transmission signal to the signal attenuator, or the second transmission signal transmitted through the signal attenuator to the receiver; and

transmitting, based on an operation of a second switching element, the second transmission signal to the signal attenuator, or the first transmission signal transmitted through the signal attenuator to the receiver,

wherein the signal attenuator is connected between a first node between the first transducer and the first switching element and a second node between the second transducer and the second switching element.

14 . The method of controlling the probe according to claim 13 , further comprising

inspecting at least one of first operating states of the first transmitter and the receiver and second operating states of the second transmitter and the receiver.

15 . The method of controlling the probe according to claim 14 , wherein

the inspecting of the first operating states comprises:

controlling the first switching element such that the first transmitter and the signal attenuator are connected; and

controlling the second switching element such that the receiver and the signal attenuator are connected.

16 . The method of controlling the probe according to claim 14 , wherein

the inspecting of the second operating states comprises:

controlling the first switching element such that the receiver and the signal attenuator are connected, and

controlling the second switching element such that the second transmitter and the signal attenuator are connected.

17 . The method of controlling the probe according to claim 14 , wherein

the inspecting of the first operating states comprises determining whether the first operating states of the first transmitter and the receiver are normal based on first waveform information of the first transmission signal detected by the receiver.

18 . The method of controlling the probe according to claim 14 , wherein

the inspecting of the second operating states comprises determining whether the second operating states of the second transmitter and the receiver are normal based on second waveform information of the second transmission signal detected by the receiver.

19 . The method of controlling the probe according to claim 13 , further comprising

obtaining, through an input device, a command for performing at least one of a first inspection mode for inspecting the first operating states of the first transmitter and the receiver and a second inspection mode for inspecting the second operating states of the second transmitter and the receiver.

20 . An ultrasonic imaging system comprising:

a probe; and

an ultrasonic imaging device provided to communicate wirelessly with the probe, wherein the probe comprises:

a first transmitter provided to generate a first transmission signal for obtaining an ultrasound image through a first transducer or inspecting operating states of the first transmitter and a receiver;

a second transmitter provided to generate a second transmission signal for obtaining the ultrasound image through a second transducer or inspecting operating states of the second transmitter and the receiver;

a signal attenuator provided to attenuate the first transmission signal or the second transmission signal;

the receiver provided to receive the first transmission signal through the signal attenuator, or the second transmission signal through the signal attenuator;

a first switching element provided to transmit the first transmission signal to the signal attenuator or to transmit the second transmission signal transmitted through the signal attenuator to the receiver;

a second switching element provided to transmit the second transmission signal to the signal attenuator or to transmit the first transmission signal transmitted through the signal attenuator to the receiver;

a first node provided between the first transducer and the first switching element;

a second node provided between the second transducer and the second switching element; and

a controller configured to control the first switching element and the second switching element, and

wherein the signal attenuator is connected between the first node and the second node.