IP Library Granted Patent US 11,601,735
Granted Patent B2
US 11,601,735 · App. 17/199,665 · Granted Mar 7, 2023

Light charging system for wireless alarm detectors

Inventor: Tomasz Lisewski (Gdansk, PL)
Assignee: Carrier Corporation
H04Q9/02G08B13/04G08B13/19619G08B13/19626G08B29/181H02J7/00H04Q2209/886
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Quick Facts
Patent No.
US 11,601,735
App. No.
17/199,665
Granted
Mar 7, 2023
Kind
B2
Abstract

A detector includes a housing having a window. A detection engine is configured to detect an event external to the housing. A battery is connected to the detection engine and configured to supply power thereto. A solar cell is configured to generate electricity when exposed to a light received through the window. The solar cell is arranged in the housing and electrically connected to the battery.

Claims (30)

1. A detector comprising:

a housing having a window;

a detection engine configured to detect an event external to the housing;

a battery connected to the detection engine and configured to supply power thereto;

a solar cell configured to generate electricity when exposed to a light received through the window, the solar cell arranged in the housing and electrically connected to the battery;

a mirror separate from the window and arranged within the housing, the mirror oriented to direct the light from the window onto the solar cell; and

a controller is in communication with the battery and the solar cell, the controller configured to generate an ON command in response to a low battery condition associated with the battery and/or a low-light condition detected by the solar cell.

2. The detector of claim 1 , wherein the window is a convex lens configured to concentrate the light onto the solar cell.

3. The detector of claim 1 , wherein the solar cell is a photovoltaic cell.

4. The detector of claim 1 , wherein the detection engine includes an alarm and a sensor in communication with the controller, the sensor is configured to detect an event corresponding to at least one of a glass breakage, a vibration, a motion and/or a noise, and the controller is configured to activate the alarm in response to the event.

5. An alarm system comprising:

a light source;

a light switch in communication with the light source and configured to increase light from the source in response to an ON command; and

a detector including:

a housing having a window;

a detection engine configured to detect an event external to the housing, the detection engine in communication with the light switch, wherein the detection engine is configured to send the ON command to the light switch in response to a low battery condition associated with the battery and/or a low-light condition detected by the solar cell;

a battery connected to the detection engine and configured to supply power thereto;

a solar cell configured to generate electricity when exposed to a light received through the window, the solar cell arranged in the housing and electrically connected to the battery; and

a mirror separate from the window and arranged within the housing, the mirror oriented to direct the light from the window onto the solar cell.

6. The alarm system of claim 5 , wherein the detection engine includes an alarm and a sensor in communication with a controller, the sensor configured to detect an event corresponding to at least one of a glass breakage, a vibration, a motion and/or a noise, the controller activating the alarm in response to the event.

7. The alarm system of claim 5 , wherein the detection engine includes a controller configured to send an OFF command to the light switch in response to the battery achieving a desired charge.

8. The alarm system of claim 5 , wherein the light command is a wireless signal to the light switch.

9. A method of operating an alarm detector comprising:

powering a detection engine with a rechargeable battery, wherein the detection engine is configured to detect an event corresponding to at least one of a glass breakage, a vibration, a motion and/or a noise;

recharging the battery with a solar cell, wherein the recharging step includes directing a light onto a mirror separate from a window receiving the light, and reflecting the light with the mirror onto the solar cell; and

turning on a light source with the detection engine in response to a low battery condition associated with the battery and a low-light condition detected by the solar cell.

10. The method of claim 9 , wherein the turning on step is performed wirelessly.

11. The method of claim 9 , wherein the recharging step includes concentrating a light onto the solar cell.

12. The method of claim 9 , wherein the detection engine includes an alarm and a sensor in communication with a controller, comprising the steps of detecting with the sensor an event corresponding to at least one of a glass breakage, a vibration, a motion and/or a noise, and activating the alarm in response to the event.

13. The method of claim 9 , comprising the step of sending an OFF command to a light switch in response to the battery achieving a desired charge.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 10, 2025
From: CARRIER CORPORATION; CARRIER GLOBAL CORPORATION; CARRIER FIRE & SECURITY EMEA; CARRIER FIRE & SECURITY, LLC; CARRIER CANADA CORPORATION; CLIMATE, CONTROLS & SECURITY ARGENTINA S.A.; KIDDE IP HOLDINGS , INC.; KIDDE LTD.; KIDDE PRODUCTS LTD.; CARRIER TRANSICOLD AUSTRIA GMBH; CARRIER TRANSICOLD FRANCE SCS
To: KIDDE FIRE PROTECTION, LLC
Reel/Frame 072829/0172 →
Continuity (3)
Continuation 16717086 · Dec 17, 2019
Provisional Application 62790107 · Jan 9, 2019
Related Publication 20210204041A1 · Jul 1, 2021