IP Library › Granted Patent US 12,738,151
Granted Patent B2
US 12,738,151 · App. 18/763,307 · Granted Sep 15, 2026

Sensor device, holster sensing system, and video-recording system

Inventor: Ming-Zong Wu (Taipei City, TW)
Assignee: Getac Technology Corporation
G08C19/06
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Quick Facts
Patent No.
US 12,738,151
App. No.
18/763,307
Granted
Sep 15, 2026
Kind
B2
Abstract

A sensor device, a holster sensing system, and a video-recording system are provided. The sensor device includes a control unit and a sensing module. The sensing module includes a reference coil set and an induction coil set that are arranged in a stacked structure. The sensing device is fixed on a holster. The induction coil set is configured to be adjacent to the holster. The control unit determines whether a gun is in the holster according to an inductance change between a sensing value generated by the induction coil set and a reference level provided by the reference coil set. In an application of the video-recording system, the control unit transmits a trigger signal to a recording device if the gun is determined to be pulled out of the holster according to the inductance change, so that the recording device is activated to start recording.

Claims (27)

1 . A holster sensing system, comprising:

a holster for accommodating a gun, wherein the gun comprises a sensing metal; and

a sensor device disposed on the holster, wherein the sensor device corresponds in position to the sensing metal when the gun is accommodated into the holster;

wherein the sensor device comprises:

a control unit;

a sensing module electrically connected with the control unit, the sensing module comprising a reference coil set and an induction coil set; and

a power unit electrically connected with the control unit, wherein the power unit is controlled by the control unit to supply current signals to the sensing module, such that the induction coil set and the reference coil set are enabled to induce a magnetic field;

wherein an inductive area of the reference coil set is smaller than an inductive area of the induction coil set, the induction coil set of the sensing module is adjacent to the holster, and the reference coil set is distant from the holster; wherein the control unit determines whether the sensing metal disposed on the gun is present in the holster based on a physical quantity difference between a sensing value generated by the induction coil set and a reference level provided by the reference coil set.

2 . The holster sensing system according to claim 1 , wherein the reference coil set comprises two first coils disposed on two sides of a first substrate, the induction coil set comprises two second coils disposed on two sides of a second substrate, and the reference coil set and the induction coil set are arranged in a stacked structure.

3 . The holster sensing system according to claim 2 , wherein the physical quantity difference is an inductance change between the induction coil set and the reference coil set, and the control unit determines whether the sensing metal is present according to an electrical signal formed by the inductance change.

4 . The holster sensing system according to claim 1 , wherein the sensing module of the sensor device implements a proximity sensor or a differential inductive switch; wherein the power unit supplies the current signals to the reference coil set and the induction coil set of the sensing module, and the reference coil set and the induction coil set form two different effective sensing ranges for respectively generating a reference inductance and an inductive inductance.

5 . The holster sensing system according to claim 1 , wherein the sensing metal approaches or moves away from a side of the induction coil set, inductances formed by the induction coil set and the reference coil set are subject to change, and the inductance of the induction coil set is lower or higher than the inductance of the reference coil set, so as to generate the physical quantity difference received by the sensing module and output a sensing result.

6 . The holster sensing system according to claim 5 , wherein the control unit generates a trigger signal in response to determining that the gun is pulled out of the holster based on the sensing result, and enables the sensor device to enter a power-saving mode in response to determining that a period of time during which the gun is pulled out of the holster exceeds a time threshold.

7 . A video-recording system, comprising:

a recording device comprising a communication module and a photographing module;

a holster for accommodating a gun, wherein the gun comprises a sensing metal; and

a sensor device disposed on the holster, wherein the sensor device corresponds in position to the sensing metal when the gun is accommodated into the holster;

wherein the sensor device comprises:

a control unit;

a sensing module electrically connected with the control unit, the sensing module comprising a reference coil set and an induction coil set; and

a power unit electrically connected with the control unit, wherein the power unit is controlled by the control unit to supply current signals to the sensing module, such that the induction coil set and the reference coil set are enabled to induce a magnetic field;

wherein an inductive area of the reference coil set is smaller than an inductive area of the induction coil set, the induction coil set of the sensing module is adjacent to the holster, and the reference coil set is distant from the holster; wherein the control unit determines whether the sensing metal disposed on the gun is present in the holster based on a physical quantity difference between a sensing value generated by the induction coil set and a reference level provided by the reference coil set;

wherein the sensing metal approaches or moves away from a side of the induction coil set, an inductance generated by the induction coil set is lower or higher than an inductance generated by the reference coil set, and the sensing module receives the physical quantity difference and outputs a sensing result; wherein when the sensing result shows that the gun is pulled out of the holster, the control unit transmits a trigger signal to the communication module of the recording device, so as to activate the photographing module to start recording.

8 . The video-recording system according to claim 7 , wherein the physical quantity difference is an inductance change between the induction coil set and the reference coil set, and the control unit determines whether the sensing metal is present according to an electrical signal formed by the inductance change.

9 . The video-recording system according to claim 7 , wherein the sensing module of the sensor device implements a proximity sensor or a differential inductive switch; wherein the power unit supplies the current signals to the reference coil set and the induction coil set of the sensing module, and the reference coil set and the induction coil set form two different effective sensing ranges for respectively generating a reference inductance and an inductive inductance.

10 . The video-recording system according to claim 7 , wherein the reference coil set comprises two first coils disposed on two sides of a first substrate, the induction coil set comprises two second coils disposed on two sides of a second substrate, and the reference coil set and the induction coil set are arranged in a stacked structure.

11 . The video-recording system according to claim 7 , wherein the sensing module outputs the sensing result upon receiving the physical quantity difference; wherein when the sensing result shows that the gun is pulled out of the holster, the control unit transmits the trigger signal to activate the recording device to start recording; wherein the control unit enables the sensor device to enter a power-saving mode when the control unit determines that a period of time during which the gun is pulled out of the holster exceeds a time threshold.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 3, 2024
From: WU, MING-ZONG
To: GETAC TECHNOLOGY CORPORATION
Reel/Frame 067907/0151 →
Priority Claims (1)
CN 202311265500.3 · Sep 27, 2023 · national
Continuity (2)
Provisional Application 63527527 · Jul 18, 2023
Related Publication 20250029481A1 · Jan 23, 2025
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