IP Library Granted Patent US 11,968,763
Granted Patent B2
US 11,968,763 · App. 18/239,788 · Granted Apr 23, 2024

Solar lamps with radial elements

Inventors: Andrea M. Sreshta (Houston, TX); Anna Ruth Stork (Sherborn, MA)
Assignee: LuminAID LAB, LLC
H05B47/19F21L4/08F21V23/0435F21V23/06F21V31/00H02J7/0047H02J7/0048H02J7/342H02J7/35F21W2111/10F21Y2115/10H02J7/00H02J7/0049
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Quick Facts
Patent No.
US 11,968,763
App. No.
18/239,788
Granted
Apr 23, 2024
Kind
B2
Abstract

A solar-powered lamp is disclosed. The lamp includes a plurality of radiating extensions, each being formed from a plurality of flat panels that can fold relative to each other along lines between respective ones of the plurality of flat panels; and an electronics assembly, wherein the lamp is collapsible, and the flat panels for each of the radiating extensions fold relative to each other as the lamp is collapsed.

Claims (52)

1. A solar-powered lamp, comprising:

a top portion defined by a first rigid outer edge and comprising a flat panel;

a sidewall extending from the first rigid outer edge of the top portion to a second rigid outer edge, the sidewall configured to fold into a plurality of sections to collapse the solar-powered lamp along a vertical central axis extending perpendicular to a surface of the flat panel; and

an electronics assembly contained in a watertight enclosure positioned on the flat panel of the top portion, the electronics assembly comprising:

one or more solar panels,

at least one rechargeable battery, the at least one rechargeable battery arranged to be charged using the one or more solar panels,

a printed circuit board,

a transmitter and receiver, the transmitter and receiver each configured to transmit and to receive, respectively, instructions or data to an external device, and

one or more light emitting devices (LEDs) arranged to direct light from inside the solar-powered lamp out through the plurality of sections, the one or more LEDs arranged to be powered by the at least one rechargeable batteries.

2. The solar-powered lamp of claim 1 , wherein the external device is in another solar-powered lamp.

3. The solar-powered lamp of claim 1 , wherein the external device comprises a portable wireless device, the portable wireless device arranged to control multiple solar-powered lamps.

4. The solar-powered lamp of claim 3 , wherein the portable wireless device is a mobile phone.

5. The solar-powered lamp of claim 3 , wherein the solar-powered lamp is capable of communicating a status of the solar-powered lamp to the portable wireless device using the transmitter, and is further capable of receiving instructions from the portable wireless device using the receiver.

6. The solar-powered lamp of claim 5 , wherein communicating the status comprises wirelessly communicating a status.

7. The solar-powered lamp of claim 5 , wherein the portable wireless device is arranged to provide instructions to control multiple solar-powered lamps simultaneously or sequentially in coordination with each other.

8. The solar-powered lamp of claim 7 , wherein an output of the solar-powered lamp is capable of being remotely controlled based on the communicated status by the portable wireless device executing an application for control of the solar-powered lamp.

9. The solar-powered lamp of claim 8 , wherein the output of the solar-powered lamp comprising an output of the at least one of a number of the one or more LEDs, a color of light emitted by the one or more LEDs, or whether the solar-powered lamp is on or off.

10. The solar-powered lamp if claim 7 , wherein the solar-powered lamp is capable of receiving at the receiver an instruction from the portable wireless device to change a color of light emitted by the one or more LEDs in sequence with another solar-powered lamp.

11. The solar-powered lamp of claim 7 , wherein the solar-powered lamp is capable of transmitting, to the portable wireless device, a state of charge of the at least one rechargeable battery.

12. The solar-powered lamp of claim 11 , wherein the portable wireless device is arranged to display the state of charge of the at least one rechargeable battery to a user.

13. The solar-powered lamp of claim 1 , further comprising:

a charging port for charging the at least one rechargeable battery; and

a removable cap that seals water-tight over the charging port.

14. A system comprising:

a first solar-powered lamp comprising:

a first body, the first body configured to be expanded from a collapsed state;

a first electronics assembly contained in a first watertight enclosure, the first electronics assembly comprising:

one or more first solar panels,

at least one first rechargeable battery, the at least one first rechargeable battery arranged to be charged using the one or more first solar panels,

a first printed circuit board,

a first transmitter and a first receiver, the first transmitter and first receiver each configured to transmit and to receive, respectively, data to or instructions from an external device, and

one or more first light emitting devices (LEDs) arranged to direct light from inside the first solar-powered lamp out through at least one wall of the first body, the one or more first LEDs arranged to be powered by the at least one first rechargeable battery; and

a second solar-powered lamp comprising:

a second body, the second body configured to be expanded from a collapsed state;

a second electronics assembly contained in a second watertight enclosure, the second electronics assembly comprising:

one or more second solar panels,

at least one second rechargeable battery, the at least one second rechargeable battery arranged to be charged using the one or more second solar panels,

a second printed circuit board,

a second transmitter and a first receiver, the second transmitter and second receiver each configured to transmit and to receive, respectively, data to or instructions from an external device, and

one or more second light emitting devices (LEDs) arranged to direct light from inside the second solar-powered lamp out through at least one wall of the second body, the one or more second LEDs arranged to be powered by the at least one second rechargeable battery;

wherein the external device is arranged to provide instructions to control the first solar-powered lamp and the second solar-powered lamp.

15. The system of claim 14 , wherein the first body of the first solar-powered lamp comprises:

a top portion defined by a first rigid outer edge and comprising a flat panel; and

a sidewall extending from the first rigid outer edge of the top portion to a second rigid outer edge, the sidewall configured to fold into a plurality of sections to collapse the solar-powered lamp along a vertical central axis extending perpendicular to a surface of the flat panel; and

the first watertight enclosure is positioned on the flat panel of the top portion.

16. The system of claim 14 , wherein a shape of the first body in an expanded state is different than a shape of the second body in an expanded state.

17. The system of claim 14 , wherein a shape of the first body in an expanded state is same as a shape of the second body in an expanded state.

18. The system of claim 14 , wherein the external device is arranged to provide instructions to control a first output of the first solar-powered lamp and a second output of the second solar-powered lamp, and wherein the first and second outputs each comprise an output of the at least one of a number of the one or more first and/or second LEDs, a color of light emitted by the one or more first and/or second LEDs, or whether the first and/or second solar-powered lamp is on or off.

19. The system of claim 14 , wherein the first solar-powered lamp is capable of receiving at the receiver a first instruction from the external device to change a color of light emitted by the one or more first LEDs, and the second solar-powered lamp is capable of receiving at the second receiver a second instruction from the external device to change a color of light emitted by the one or more second LEDs, and the second instruction further includes a timing instruction to change the color of light emitted by the one or more second LEDs in sequence with the change in the color of light emitted by the one or more first LEDs.

20. The system of claim 14 , the first solar-powered lamp further comprising:

a charging port for charging the at least one first rechargeable battery; and

a removable cap that seals water-tight over the charging port.

Assignments (2)
SECURITY INTEREST Recorded Jul 31, 2025
From: TENDER CORPORATION; LUMINAID LAB LLC
To: SOUND POINT AGENCY LLC
Reel/Frame 071890/0492 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 16, 2023
From: SRESHTA, ANDREA M.; STORK, ANNA RUTH
To: LUMINAID LAB, LLC
Reel/Frame 065233/0664 →
Continuity (8)
Continuation 18161301 · Jan 30, 2023
Continuation 17669938 · Feb 11, 2022
Continuation 16942504 · Jul 29, 2020
Continuation 16201291 · Nov 27, 2018
Continuation In Part 15804877 · Nov 6, 2017
Provisional Application 62430192 · Dec 5, 2016
Provisional Application 62417632 · Nov 4, 2016
Related Publication 20240064885A1 · Feb 22, 2024