IP Library › Granted Patent US 12,234,977
Granted Patent B2
US 12,234,977 · App. 18/193,646 · Granted Feb 25, 2025

Flame retardant lamp

Inventors: Xun Chen (Xiamen, CN); Zhangxun Weng (Xiamen, CN); Xia Li (Xiamen, CN); Yvbing Zhu (Xiamen, CN); Kongjing Lin (Xiamen, CN); William Joseph Tadda, Jr. (Kenosha, WI)
Assignee: POWER ON TOOLS CO., LTD
F21V25/10F21V23/0457F21V25/12F21V33/0076H05B45/18H05B45/30H05B45/56H05B47/28
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Quick Facts
Patent No.
US 12,234,977
App. No.
18/193,646
Granted
Feb 25, 2025
Kind
B2
Abstract

A flame retardant lamp includes a lamp body, a printed circuit board (PCB), a power supply, a light-emitting plate, a controller, a driving circuit, and a first temperature sensor. The PCB, the power supply, and the light-emitting plate are disposed inside the lamp body, the controller and the driving circuit are disposed on the PCB, and the first temperature sensor is disposed on the light-emitting plate. The controller is electrically connected to the light-emitting plate through the driving circuit, the first temperature sensor is electrically connected to an input end of the controller, and the power supply is electrically connected to a power supply end of the PCB.

Claims (37)

1. A flame retardant lamp, comprising:

a lamp body;

a printed circuit board (PCB);

a power supply;

a light-emitting plate;

a controller;

a driving circuit; and

a first temperature sensor;

wherein the PCB, the power supply, and the light-emitting plate are disposed inside the lamp body, the controller and the driving circuit are disposed on the PCB, and the first temperature sensor is disposed on the light-emitting plate;

the controller is electrically connected to the light-emitting plate through the driving circuit, the first temperature sensor is electrically connected to an input end of the controller, and the power supply is electrically connected to a power supply end of the PCB;

the controller is configured to execute a computer program stored therein to execute following steps:

obtaining a temperature value of the light-emitting plate through the first temperature sensor at every preset time period;

comparing a first temperature value of the light-emitting plate at a first current moment with a second temperature value of the light-emitting plate at a first last moment, and generating a first comparison result; and

when determining that a light-transmitting surface of the lamp body is covered according to the first comparison result, controlling the driving circuit to stop driving, and then turning off the light-emitting plate.

2. The flame retardant lamp according to claim 1 , wherein a step of when determining that the light-transmitting surface of the lamp body is covered according to the first comparison result, controlling the driving circuit to stop driving, and then turning off the light-emitting plate is as follows:

when determining that a difference between the first temperature value of the light-emitting plate at the first current moment and the second temperature value of the light-emitting plate at the first last moment is greater that a first preset threshold or a change rate between the first temperature value of the light-emitting plate at the first current moment and the second temperature value of the light-emitting plate at the first last moment is greater than a second preset threshold according to the first comparison result, determining that that the light-transmitting surface of the lamp body is covered, controlling the driving circuit to stop driving, and then turning off the light-emitting plate.

3. The flame retardant lamp according to claim 1 , wherein the flame retardant lamp further comprises a second temperature sensor, and the second temperature sensor is disposed on the PCB; the second temperature sensor is electrically connected to an output end of the controller.

4. The flame retardant lamp according to claim 3 , wherein the controller further executes following steps:

obtaining a temperature value inside the lamp body through the second temperature sensor; and

when determining that the temperature value inside the lamp body is greater than a third preset threshold, controlling the driving circuit to stop driving, and then turning off the light-emitting plate.

5. The flame retardant lamp according to claim 1 , wherein the flame retardant lamp further comprises a key module, the key module is disposed on an outer portion of the lamp body, and the key module is electrically connected to the input end of the controller.

6. The flame retardant lamp according to claim 5 , wherein the flame retardant lamp further comprises a voltage sampling circuit; an input end of the voltage sampling circuit is electrically connected to the power supply, and an output end of the voltage sampling circuit is electrically connected to the input end of the controller.

7. The flame retardant lamp according to claim 6 , wherein the flame retardant lamp further comprises an indicator light module, and the indicator light module is disposed on the outer portion of the lamp body; the indicator lamp module is electrically connected to an output end of the controller.

8. The flame retardant lamp according to claim 7 , wherein the controller further executes following steps:

when detecting a startup request through the key module, obtaining a voltage value of a battery through the voltage sampling circuit;

when determining that the voltage value of the battery is greater than a preset value, controlling the driving circuit to turn on the light-emitting plate; and

when determining that the voltage value of battery is less than the preset value, controlling the light emitting plate to be in an off state, and displaying a current voltage of the battery through the indicator light module.

9. The flame retardant lamp according to claim 1 , wherein the flame retardant lamp further comprises a third temperature sensor, the third temperature sensor is disposed on an inner wall of the light-transmitting surface of the lamp body, and the third temperature sensor is electrically connected to the input end of the controller; the controller further executes following steps:

obtaining a temperature value at the light-transmitting surface of the lamp body through the third temperature sensor at every preset time period;

comparing a first temperature value at the light-transmitting surface of the lamp body at a second current moment with a second temperature value at the light-transmitting surface of the lamp body at a second last moment, and generating a second comparison result; and

when determining that a difference between the first temperature value at the light-transmitting surface of the lamp body at the second current moment and the second temperature value at the light-transmitting surface of the lamp body at the second last moment is greater than the first preset threshold or a change rate between the first temperature value at the light-transmitting surface of the lamp body at the second current moment and the second temperature value at the light-transmitting surface of the lamp body at the second last moment is greater than the second preset threshold according to the second comparison result, controlling the driving circuit to stop driving, and then turning off the light-emitting plate.

10. The flame retardant lamp according to claim 1 , wherein the flame retardant lamp further comprises a fourth temperature sensor and a fifth temperature sensor, the fourth temperature sensor is disposed on an inner wall of the light-transmitting surface of the lamp body, and the fifth temperature sensor is disposed on the lamp body and is distal from the light-transmitting surface of the lamp body; both the fourth temperature sensor and the fifth temperature sensor are electrically connected to the input end of the controller; and the controller further executes following steps:

obtaining a temperature value at the light-transmitting surface of the lamp body through the fourth temperature sensor and obtaining a temperature value of an outer side of the lamp body through the fifth temperature sensor at every preset time period;

comparing a first temperature value at the light-transmitting surface of the lamp body at a second current moment with a second temperature value at the light-transmitting surface of the lamp body at a second last moment to obtain a first temperature change condition at the light-transmitting surface of the lamp body at the second current moment, where the first temperature change condition is a temperature change value or a change rate of temperature values;

comparing a first temperature value of the outer side of the lamp body at a third current moment with a second temperature value of the outer side of the lamp body at a third last moment to obtain a second temperature change condition at the outer side of the lamp body at the third current moment;

when the first temperature change condition is greater than a third preset threshold and the second temperature change condition is less than or equal to the third preset threshold, turning off the light emitting plate; and

when both the first temperature change condition and the second temperature change condition are greater than the third preset threshold, controlling the light emitting plate to work on.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 31, 2023
From: CHEN, XUN; WENG, ZHANGXUN; LI, XIA; ZHU, YVBING; LIN, KONGJING; TADDA JR, WILLIAM JOSEPH
To: POWER ON TOOLS CO., LTD
Reel/Frame 063181/0724 →
Priority Claims (1)
CN 202210640159.4 · Jun 8, 2022 · national
Continuity (1)
Related Publication 20230400177A1 · Dec 14, 2023
References Cited (2)
US 20100315004A1 · Horng · 2010 [cited by examiner]
US 20130033180A1 · Horng · 2013 [cited by examiner]