IP Library Granted Patent US 12688391
Granted Patent B2
US 12688391 · App. 18/845,231 · Granted Jul 21, 2026

Communication control method for communication device, item management equipment, and item management system

Inventors: Yoshiyuki Ueda (Tokyo, JP); Kazuya Hirata (Tokyo, JP); Mitsutoshi Sakagami (Tokyo, JP)
Assignee: SATO CORPORATION
G06K19/07327G06K7/10168G06K19/0701G06K19/0708G06K19/0709G06K19/0717G06K19/077H04W4/80H02J50/001
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Quick Facts
Patent No.
US 12688391
App. No.
18/845,231
Granted
Jul 21, 2026
Kind
B2
Abstract

A communication control method for a communication device includes (i) blocking communication of the communication device with a wireless device by causing a metal-containing member to be close to the communication antenna among a plurality of antennas, or by covering at least a part of the communication antenna with the metal-containing member; (ii) charging a capacitor by the communication device, based on energy acquired by an energy acquisition antenna of the communication device, regardless of whether the communication device can communicate with the wireless device, to keep a voltage of the capacitor equal to or higher than the predetermined value; and (iii) resuming communication of the communication device with the wireless device when the metal-containing member is stopped from being close to the communication antenna or when at least a part of the communication antenna is stopped from being covered with the metal-containing member.

Claims (38)

1 . A communication control method for a communication device that includes a plurality of antennas and a capacitor, the plurality of antennas including a communication antenna for communicating with a wireless device and an energy acquisition antenna for acquiring energy from surrounding radio waves, the capacitor being charged based on energy acquired by the energy acquisition antenna, wherein the communication device communicates with the wireless device when a voltage of the capacitor is equal to or higher than a predetermined value,

the method comprising:

blocking communication of the communication device with the wireless device by causing a metal-containing member to be close to the communication antenna among the plurality of antennas, or by covering at least a part of the communication antenna with the metal-containing member;

charging the capacitor by the communication device, based on energy acquired by the energy acquisition antenna, regardless of whether the communication device can communicate with the wireless device, and thereby keeping a voltage of the capacitor equal to or higher than the predetermined value; and

resuming communication of the communication device with the wireless device, when the metal-containing member is stopped from being close to the communication antenna, or when at least a part of the communication antenna is stopped from being covered with the metal-containing member.

2 . The communication control method according to claim 1 , wherein

the communication device includes a sensor that detects movement of the communication device or an ambient temperature, and

the method comprising, by the wireless device, communicating with the communication device, and thereby acquiring data detected by the sensor.

3 . The communication control method according to claim 1 , wherein

communication between the communication device and the wireless device is made in accordance with Bluetooth (registered trademark) Low Energy.

4 . A communication control method for a communication device that includes a plurality of antennas and a capacitor, the plurality of antennas including a communication antenna for communicating with a wireless device and an energy acquisition antenna for acquiring energy from surrounding radio waves, the capacitor being charged based on energy acquired by the energy acquisition antenna, wherein the communication device communicates with the wireless device when a voltage of the capacitor is equal to or higher than a predetermined value,

the method comprising:

blocking communication of the communication device with the wireless device by causing a radio wave shield member to be close to the communication antenna among the plurality of antennas, or by covering at least a part of the communication antenna with the radio wave shield member;

charging the capacitor by the communication device, based on energy acquired by the energy acquisition antenna, regardless of whether the communication device can communicate with the wireless device, and thereby keeping a voltage of the capacitor equal to or higher than the predetermined value; and

resuming communication of the communication device with the wireless device when the radio wave shield member is stopped from being close to the communication antenna or when at least a part of the communication antenna is stopped from being covered with the radio wave shield member.

5 . The communication control method according to claim 4 , wherein

the radio wave shield member is a radio wave absorbing body.

6 . The communication control method according to claim 4 , wherein

the communication device includes a sensor that detects movement of the communication device or an ambient temperature, and

the method comprising, by the wireless device, communicating with the communication device, and thereby acquiring data detected by the sensor.

7 . An item management device comprising:

an item attachment device including a linear member and a biasing member, the linear member having one end that is attached to an item, the biasing member biasing the linear member from the one end in a first direction;

a communication device attached to the linear member; and

a device accommodation part that can accommodate the communication device and includes a metal-containing member fixed inside, wherein

the communication device comprises a plurality of antennas and a capacitor, the plurality of antennas including a communication antenna for communicating with a wireless device and an energy acquisition antenna for acquiring energy from surrounding radio waves, the capacitor being charged based on energy acquired by the energy acquisition antenna, wherein the communication device communicates with the wireless device when a voltage of the capacitor is equal to or higher than a predetermined value,

when external force is not applied to the item against biasing force in the first direction generated by the biasing member, the communication device is accommodated in the device accommodation part, and when external force is applied to the item against the biasing force in the first direction generated by the biasing member, the communication device is enabled to exit from the device accommodation part, and

the item management device is configured in such a way that when the communication device is accommodated in the device accommodating part, the communication antenna among the plurality of antennas is close to the metal-containing member, or at least a part of the communication antenna is covered with the metal-containing member.

8 . An item management system comprising:

the item management device according to claim 7 ;

a wireless device wirelessly communicating with the communication device; and

a measurement device configured to acquire a result of whether communication by the wireless device with the communication device is possible over time, and, based on the result, measure a frequency at which the wireless device is able to communicate with the communication device.

9 . The item management device according to claim 7 , wherein

the communication device includes a sensor that detects movement of the communication device or an ambient temperature, and

the wireless device is configured to communicate with the communication device to acquire data detected by the sensor.

10 . An item management system comprising:

the item management device according to claim 9 ;

a wireless device wirelessly communicating with the communication device; and

a measurement device configured to acquire a result of whether communication by the wireless device with the communication device is possible over time, and, based on the result, measure a frequency at which the wireless device is able to communicate with the communication device.