IP Library Granted Patent US 11,909,431
Granted Patent B2
US 11,909,431 · App. 17/117,956 · Granted Feb 20, 2024

Capsule-type endoscope capable of two-way communication

Inventors: Youn Tae Kim (Daejeon, KR); Jong Jin Baek (Jeollanam-do, KR); Ji Won Park (Gwangju, KR); Min Gu Kang (Gwangju, KR)
Assignee: Industry-Academic Cooperation Foundation, Chosun University
H04B1/1638A61B1/00016A61B1/041A61B90/98H04B13/005
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Quick Facts
Patent No.
US 11,909,431
App. No.
17/117,956
Granted
Feb 20, 2024
Kind
B2
Abstract

A capsule-type endoscope capable of two-way communication includes an RFID receiving antenna receiving an RFID signal, a first matching circuit for impedance matching with the RFID receiving antenna, a human body communication electrode comprised of a ground electrode and a signal electrode transmitting a signal for human body communication, and a second matching circuit for impedance matching with the human body communication electrode.

Claims (26)

1. A capsule-type endoscope capable of two-way communication, comprising:

an RFID receiving antenna receiving an RFID signal;

a first matching circuit for impedance matching with the RFID receiving antenna;

a human body communication electrode comprised of a ground electrode and a signal electrode transmitting a signal for human body communication;

a second matching circuit for impedance matching with the human body communication electrode;

a first switch for opening and closing a connection between the RFID receiving antenna and the first matching circuit; and

a second switch opening and closing a connection between the signal electrode of the human body communication electrode and the second matching circuit;

wherein the first switch connects the RFID receiving antenna and the first matching circuit when the RFID signal is received, and opens a connection between the signal electrode of the human body communication electrodes and the second matching circuit when the human body communication signal is transmitted, and

the second switch connects the signal electrode of the human body communication electrode and the second matching circuit when the human body communication signal is transmitted, and opens a connection between the RFID receiving antenna and the first matching circuit when the RFID signal is received.

2. The capsule-type endoscope capable of two-way communication of claim 1 , wherein the RFID receiving antenna and the signal electrode are provided as a single integrated electrode, and

the capsule-type endoscope further comprises:

a third switch selectively connecting the integrated electrode to one of the first matching circuit and the second matching circuit; and

a fourth switch opening and closing a connection between the ground electrode and the second matching circuit.

3. The capsule-type endoscope capable of two-way communication of claim 1 , wherein the RFID receiving antenna is formed of a material having conductivity, outside or inside of the capsule-type endoscope.

4. The capsule-type endoscope capable of two-way communication of claim 1 , wherein the RFID receiving antenna has a rounded, elliptical, quadrangular loop antenna, meander line antenna, or helical structure.

5. A capsule-type endoscope capable of two-way communication, comprising:

an RFID receiving antenna receiving an RFID signal;

a first matching circuit for impedance matching with the RFID receiving antenna;

a human body communication electrode comprised of a ground electrode and a signal electrode transmitting a signal for human body communication;

a second matching circuit for impedance matching with the human body communication electrode,

wherein the RFID receiving antenna and the signal electrode are provided as a single integrated electrode, and

the capsule-type endoscope further comprises:

a third switch selectively connecting the integrated electrode to one of the first matching circuit and the second matching circuit; and

a fourth switch opening and closing a connection between the ground electrode and the second matching circuit,

wherein when the RFID signal is received, the third switch connects the integrated electrode to the first matching circuit, and the fourth switch opens the connection between the ground electrode and the second matching circuit; and

when the human body communication signal is transmitted, the third switch connects the integrated electrode to the second matching circuit, and the fourth switch connects the ground electrode and the second matching circuit.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 10, 2021
From: KIM, YOUN TAE; BAEK, JONG JIN; PARK, JI WON; KANG, MIN GU
To: INDUSTRY-ACADEMIC COOPERATION FOUNDATION, CHOSUN UNIVERSITY
Reel/Frame 055543/0926 →
Priority Claims (1)
KR 10-2019-0164955 · Dec 11, 2019 · national
Continuity (1)
Related Publication 20210184712A1 · Jun 17, 2021