IP Library › Granted Patent US 12,747,836
Granted Patent B2
US 12,747,836 · App. 18/219,737 · Granted Sep 29, 2026

LED lamp and misuse warning module thereof

Inventors: Aiming Xiong (Jiaxing, CN); Junren Chen (Jiaxing, CN); Lin Zhou (Jiaxing City, CN); Haibo You (Jiaxing City, CN); Hechen Hu (Jiaxing City, CN); Hao Zhang (Jiaxing City, CN)
Assignee: JIAXING SUPER LIGHTING ELECTRIC APPLIANCE CO., LTD
F21K9/278F21K9/272F21K9/275F21V3/061F21V15/015F21V23/003F21V23/005F21V23/023F21V25/02F21V25/04F21V29/70H05B45/00H05B45/10H05B45/20H05B45/37H05B45/50H05B45/59H05K1/00F21V23/02F21V29/83F21Y2103/10F21Y2115/10H05K1/147H05K2201/10106Y02B20/30
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Quick Facts
Patent No.
US 12,747,836
App. No.
18/219,737
Granted
Sep 29, 2026
Kind
B2
Abstract

A misuse warning module, including a detection circuit and a warning circuit is provided. The detection circuit is electrically connected to the power circuit of the LED lamp to detect the type of external power supply signal and the current level in the power loop and output the detection signal. The warning circuit is configured to generate a misuse warning based on the detection signal to prompt the user that the LED lamp is connected to an incompatible external power supply.

Claims (37)

1 . A misuse warning module, comprising:

a detection circuit, electrically connected to a power loop of a LED lamp, and configured to detect a type of an external power supply signal and current level of the power loop to generate a detection signal; and

a warning circuit, configured to receive the detection signal and generate a warning when the LED lamp is not properly installed,

wherein the type of the external power supply signal is provided by at least two of a commercial power grid, a DC power supply, and an electronic ballast.

2 . The misuse warning module of claim 1 , wherein the detection circuit comprising:

a first detection circuit, electrically connected to the power loop of the LED lamp, and configured to detect the current level of the power loop, output a first detection signal when the current level is greater than a set threshold, and output a second detection signal when the current level is lower than or equal to the set threshold.

3 . The misuse warning module of claim 2 , wherein the detection circuit further comprises:

a second detection circuit, electrically connected to an input of an external power supply, and configured to output a third detection signal when the external power supply signal is provided by the DC power supply.

4 . The misuse warning module of claim 3 , wherein the detection circuit further comprises:

a third detection circuit, electrically connected to the input of the external power supply, and configured to output a fourth detection signal when the external power supply signal is provided by the electronic ballast, wherein the third detection circuit determines whether the external power supply signal is provided by the electronic ballast by detecting at least one of frequency, phase, and amplitude of the external power supply signal.

5 . The misuse warning module of claim 4 , wherein the first detection circuit comprises:

a detection pulse generating module, configured to generate a pulse signal;

a switching circuit, coupled to the power loop, and configured to conduct or cut off based on the pulse signal; and

a detection determining circuit, configured to detect the current level of the power loop when the switching circuit is conducted, output the first detection signal when the current level is greater than the set threshold and output the second detection signal when the current level is lower than or equal to the set threshold.

6 . The misuse warning module of claim 5 , wherein the switching circuit is configured to conduct based on the first detection signal and/or the third detection signal.

7 . The misuse warning module of claim 5 , wherein the warning circuit is configured to instruct the switching circuit to be intermittently conducted based on the second detection signal and/or the fourth detection signal to cause the LED light to flash.

8 . The misuse warning module of claim 5 , wherein the switching circuit is configured to cut off based on the second detection signal and/or the fourth detection signal, and the warning circuit is configured to generate the warning based on the second detection signal and/or fourth detection signal.

9 . The misuse warning module of claim 8 , wherein the warning circuit comprises at least one of: a buzzer, a warning light, wherein the buzzer or the warning light is configured to generate a warning based on the second detection signal.

10 . The misuse warning module based on claim 5 , wherein the misuse warning module further comprises a current limiting circuit, connected in series to the power loop, for conducting the power loop based on the first detection signal and/or third detection signal, and intermittently conducting the power loop based on the second detection signal and/or the fourth detection signal to make the LED light flash.

11 . The misuse warning module of claim 5 , wherein the misuse warning module further comprises a current limiting circuit, connected in series to the power loop and configured to conduct the power loop based on the first detection signal and/or third detection signal, and cut off the power loop based on the second detection signal and/or fourth detection signal, the warning circuit is configured to generate the warning based on the second detection signal and/or the fourth detection signal.

12 . The misuse warning module of claim 11 , wherein the warning circuit comprises at least one of a buzzer or a warning light, wherein the buzzer or the warning light is configured to generate a warning based on the second detection signal.

13 . An LED lamp, comprising:

at least two pins, a first pin and a second pin, configured to receive an external driving signal;

a power supply module, electrically connected to the first pin and the second pin, and configured to execute power conversion of the external driving signal to generate a driving signal;

an LED module, configured to receive the driving signal to light up;

an installation detection module, configured to detect current in a power loop and determine whether to limit the current of the power loop based on the current level of the power loop;

an impedance adjusting module, electrically connected to the first pin and the second pin, and configured to adjust impedance of the power loop to affect the determination of the installation detection module, wherein when a first resistor is connected in series in the power loop, the installation detection module limits the current of the power loop and the LED lamp cannot be lit normally; and when at least two or more of the LED lamps are connected in parallel, the installation detection module does not limit the current of the power loop and the plurality of the LED lights are lit normally; and

wherein, the external power supply signal is supplied to the LED lamp through the power loop, and the first resistor is connected in series with the plurality of LED lamps,

wherein the installation detection module comprises:

a detection pulse generating module, configured to generate a pulse signal;

a switching circuit, coupled to the power loop, and configured to conduct or cut off based on the pulse signal; and

a detection determining circuit, configured to detect current level of the power loop when the switching circuit is conducted and output the first detection signal when the current level is greater than a set threshold,

wherein the switching circuit is turned on based on the first detection signal.

14 . The LED lamp of claim 13 , wherein the resistance of the first resistor is 100-500 ohms.

15 . The LED lamp of claim 13 , wherein the impedance adjusting module comprises a first capacitor, a first pin of the first capacitor is electrically connected to the first pin, and a second pin of the first capacitor is electrically connected to the second pin.

16 . The LED lamp of claim 15 , wherein the capacitance of the first capacitor is 30-50 nF.

17 . The LED lamp of claim 16 , wherein the capacitance of the first capacitor is 47 nF.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 25, 2026
From: XIONG, AIMING; CHEN, JUNREN; ZHOU, LIN; HU, HECHEN; YOU, HAIBO; ZHANG, HAO
To: JIAXING SUPER LIGHTING ELECTRIC APPLIANCE CO., LTD
Reel/Frame 074748/0496 →
Priority Claims (71)
CN 201510104823.3 · Mar 10, 2015 · national
CN 201510133689.X · Mar 25, 2015 · national
CN 201510134586.5 · Mar 26, 2015 · national
CN 201510155807.7 · Apr 3, 2015 · national
CN 201510193980.6 · Apr 22, 2015 · national
CN 201510284720.X · May 29, 2015 · national
CN 201510338027.6 · Jun 17, 2015 · national
CN 201510364735.7 · Jun 26, 2015 · national
CN 201510373492.3 · Jun 26, 2015 · national
CN 201510378322.4 · Jun 29, 2015 · national
CN 201510406595.5 · Jul 10, 2015 · national
CN 201510428680.1 · Jul 20, 2015 · national
CN 201510448220.5 · Jul 27, 2015 · national
CN 201510486115.0 · Aug 8, 2015 · national
CN 201510499512.1 · Aug 14, 2015 · national
CN 201510530110.3 · Aug 26, 2015 · national
CN 201510557717.0 · Sep 6, 2015 · national
CN 201510595173.7 · Sep 18, 2015 · national
CN 201510617370.4 · Sep 25, 2015 · national
CN 201510645134.3 · Oct 8, 2015 · national
CN 201510705222.8 · Oct 27, 2015 · national
CN 201510726365.7 · Oct 30, 2015 · national
CN 201510848766.X · Nov 27, 2015 · national
CN 201510903680.2 · Dec 9, 2015 · national
CN 201610044148.4 · Jan 22, 2016 · national
CN 201610050944.9 · Jan 26, 2016 · national
CN 201610051691.7 · Jan 26, 2016 · national
CN 201610085895.2 · Feb 15, 2016 · national
CN 201610087627.4 · Feb 16, 2016 · national
CN 201610098424.5 · Feb 23, 2016 · national
CN 201610120993.5 · Mar 3, 2016 · national
CN 201610132513.7 · Mar 9, 2016 · national
CN 201610142140.1 · Mar 14, 2016 · national
CN 201610177706.4 · Mar 25, 2016 · national
CN 201610281812.7 · Apr 29, 2016 · national
CN 201610327806.0 · May 18, 2016 · national
CN 201610420790.8 · Jun 14, 2016 · national
CN 201610452437.8 · Jun 20, 2016 · national
CN 201610876593.7 · Oct 8, 2016 · national
CN 201610878349.4 · Oct 8, 2016 · national
CN 201610890527.5 · Oct 12, 2016 · national
CN 201610955338.1 · Oct 27, 2016 · national
CN 201610955342.8 · Oct 27, 2016 · national
CN 201610975119.X · Nov 3, 2016 · national
CN 201611057357.9 · Nov 25, 2016 · national
CN 201710036966.4 · Jan 19, 2017 · national
CN 201710158971.2 · Mar 16, 2017 · national
CN 201710170620.3 · Mar 21, 2017 · national
CN 201710258874.0 · Apr 19, 2017 · national
CN 201710295599.X · Apr 28, 2017 · national
CN 201710591551.3 · Jul 19, 2017 · national
CN 201710888946.X · Sep 27, 2017 · national
CN 201711298908.5 · Dec 8, 2017 · national
CN 201810032366.5 · Jan 12, 2018 · national
CN 201810130074.5 · Feb 8, 2018 · national
CN 201810205729.0 · Mar 13, 2018 · national
CN 201810272726.9 · Mar 29, 2018 · national
CN 201810292824.9 · Mar 30, 2018 · national
CN 201810326908.X · Apr 12, 2018 · national
CN 201810752429.4 · Jul 10, 2018 · national
CN 201811005720.1 · Aug 30, 2018 · national
CN 201811053085.4 · Sep 10, 2018 · national
CN 201811277947.1 · Oct 30, 2018 · national
CN 201811441563.9 · Nov 29, 2018 · national
CN 201910412116.9 · May 17, 2019 · national
CN 201910537220.0 · Jun 20, 2019 · national
CN 201910732298.8 · Aug 9, 2019 · national
CN 202110032557.3 · Jan 11, 2021 · national
CN 202110048805.3 · Jan 14, 2021 · national
CN 202110049979.1 · Jan 14, 2021 · national
CN 202110708563.6 · Jun 25, 2021 · national
Continuity (27)
Continuation In Part PCTCN2022071054 · Jan 10, 2022
Continuation In Part 18075549 · Dec 6, 2022
Continuation 17338485 · Jun 3, 2021
Continuation 16667370 · Oct 29, 2019
Continuation In Part 16436454 · Jun 10, 2019
Continuation 16143755 · Sep 27, 2018
Continuation In Part 16106060 · Aug 21, 2018
Continuation 15662094 · Jul 27, 2017
Continuation In Part 15626238 · Jun 19, 2017
Continuation 15373388 · Dec 8, 2016
Continuation In Part 15084483 · Mar 30, 2016
Continuation In Part 14865387 · Sep 25, 2015
Continuation In Part 15065892 · Mar 10, 2016
Continuation In Part 14865387 · Sep 25, 2015
Continuation In Part 15211813 · Jul 15, 2016
Continuation In Part 14865387 · Sep 25, 2015
Continuation In Part 14699138 · Apr 29, 2015
Continuation In Part 15150458 · May 10, 2016
Continuation In Part 14865387 · Sep 25, 2015
Continuation In Part 14699138 · Apr 29, 2015
Continuation In Part 15339221 · Oct 31, 2016
Continuation In Part 15210989 · Jul 15, 2016
Continuation In Part 15066645 · Mar 10, 2016
Continuation In Part 14865387 · Sep 25, 2015
Continuation In Part 15205011 · Jul 8, 2016
Continuation In Part 15150458 · May 10, 2016
Related Publication 20240093841A1 · Mar 21, 2024
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