IP Library Granted Patent US 10,398,962
Granted Patent B2
US 10,398,962 · App. 15/893,126 · Granted Sep 3, 2019

Electrically powered transport vehicle with a lighting system

Inventors: Jukka Rautiainen (Cupertino, CA); Levi Jacob Price (Sunnyvale, CA); Oliver Riihiluoma (San Francisco, CA); Asa Weiss (Santa Rosa, CA); Angus Peart (San Francisco, CA); Barrett Heyneman (San Jose, CA); Shelby Noonan (Los Gatos, CA); Chris Rieger (Brookfield, AU); John Ulmen (Emerald Hills, CA)
Assignee: Boosted, Inc.
A63C17/017A63C17/0006A63C17/01A63C17/015A63C17/12A63C17/26B60L11/1868B60L11/1877H01M2/1083A63C2203/12A63C2203/14A63C2203/42B32B5/245B32B17/062B32B17/064B32B17/066
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Quick Facts
Patent No.
US 10,398,962
App. No.
15/893,126
Granted
Sep 3, 2019
Kind
B2
Abstract

A personal transport system is provided including, in an embodiment, an electrically powered vehicle, a companion remote control, and a companion mobile phone application. The vehicle includes an operator-supporting deck, one or more deck-mounted trucks, one or more axle-mounted wheels on each of the one or more trucks, one or more batteries, and a deck lighting system. The one or more batteries power a motor configured to drive the wheels by way of a pulley system, at least one battery of which is disposed under a battery enclosure. The battery enclosure has a first light indicator system, and the companion remote control has a second light indicator system, each of which is configured for communicating with the operator. The deck lighting system includes a light strip of light-emitting diodes disposed in a groove of the deck configured to change state to communicate with the operator or others sharing a road.

Claims (75)

1. An electrically powered personal transport vehicle, comprising:

a deck configured to support a weight of an operator standing on the deck while operating the personal transport vehicle;

one or more trucks mounted to a bottom of the deck, each of the trucks including an axle;

one or more wheels mounted on each axle of the trucks;

one or more batteries to power a motor configured to drive the wheels; and

a deck lighting system built into the personal transport vehicle configured to cooperate with

i) a companion remote control to provide audible signals or haptic vibrations,

ii) one or more output devices to provide audible signals or haptic vibrations attached to or built into the personal transport vehicle,

iii) a helmet configured to provide audible signals or haptic vibrations, or

iv) a combination thereof,

wherein one or more lights of the deck lighting system are configured to communicate as follows selected from a group consisting of

i) change state of the one or more lights to communicate with the operator to give the operator navigational directions,

ii) change state of the one or more lights to communicate with the operator to provide the operator guidance on upcoming hazards,

iii) turn on the one or more lights to externally communicate a physical presence of the personal transport vehicle and the personal transport vehicle's intended navigational route to other vehicles on a road or people on a sidewalk, and

iv) any combination of these three.

2. The personal transport vehicle of claim 1 ,

wherein the deck lighting system built into the personal transport vehicle includes a light strip of a single color of LEDs embedded in a perimeter of the deck, where the light strip of single color of LEDs is part of the one or more lights, and

wherein a light control module cooperating with the light strip of the single color of LEDs is configured to cause lighting effects as follows selected from a group consisting of i) lighting the perimeter of the deck with a constant intensity, ii) lighting the perimeter of the deck by fading into the constant intensity, iii) lighting the perimeter of the deck with one or more flashes from a first intensity to a second intensity, iv) lighting the perimeter of the deck in a breath from the first intensity through the second intensity and back to the first intensity, v) sweeping light around the perimeter of the deck in a clockwise or a counterclockwise direction, vi) sweeping light from a front of the deck to a back of the deck simultaneously along both sides of the deck, vii) sweeping light from the back of the deck to the front of the deck simultaneously along both sides of the deck, or viii) a combination thereof.

3. The personal transport vehicle of claim 2 ,

wherein the light control module cooperates with the light strip in the deck lighting system to cause the lighting effects of the light strip of the single color of LEDs that correspond to operations on the personal transport vehicle selected from a group consisting of i) powering on the personal transport vehicle, ii) powering off the personal transport vehicle, iii) turning on the deck lighting system, iv) turning off the deck lighting system, v) beginning to charge the personal transport vehicle, vi) ongoing charging of the personal transport vehicle, vii) a fully charged personal transport vehicle, viii) pairing the personal transport vehicle to an external device for wireless communication between the personal transport vehicle and the external device, ix) indicating a mode of operation of the personal transport vehicle, or x) a combination thereof.

4. The personal transport vehicle of claim 2 ,

wherein the lighting effects of the light strip of the single color of LEDs correspond to turning on the deck lighting system and include lighting the perimeter of the deck by fading into the constant intensity when the deck lighting system is turned on, and

wherein the lighting effects of the light strip of the single color of LEDs correspond to turning off the deck lighting system and include fading out from the constant intensity when the deck lighting system is turned off.

5. The personal transport vehicle of claim 2 ,

wherein the light control module cooperating with the light strip is configured to cause the lighting effects of the light strip of the single color of LEDs to correspond to powering on the personal transport vehicle and include lighting the perimeter of the deck in a first breath from the first intensity through the second intensity and back to the first intensity when powering on the personal transport vehicle, and

wherein the lighting effects of the light strip of the single color of LEDs correspond to powering off the personal transport vehicle and include lighting the perimeter of the deck in a second breath from the first intensity through the second intensity and back to the first intensity when powering off the personal transport vehicle, where the single color of the LEDs is white.

6. The personal transport vehicle of claim 2 ,

wherein the light control module cooperating with a battery circuit for the one or more batteries is configured to cause the lighting effects of the light strip of the single color of LEDs correspond to charging the personal transport vehicle and include lighting the perimeter of the deck in a first breath from the first intensity through the second intensity and back to the first intensity when beginning to charge the personal transport vehicle,

wherein the lighting effects of the light strip of the single color of LEDs correspond to ongoing charging of the personal transport vehicle and include lighting the perimeter of the deck at the first intensity for a duration of the ongoing charging of the personal transport vehicle, and

wherein the lighting effects of the light strip of the single color of LEDs correspond to the charged personal transport vehicle and include lighting the perimeter of the deck in a second breath from the first intensity through the second intensity and back to the first intensity when the personal transport vehicle is charged.

7. The personal transport vehicle of claim 2 ,

wherein the lighting effects of the light strip of the single color of LEDs correspond to a selection of a mode of operation of the personal transport vehicle and include lighting the perimeter of the deck in a predetermined sequence of flashes for the selection of the mode.

8. The personal transport vehicle of claim 1 ,

wherein the deck lighting system built into the personal transport vehicle includes a light strip of multiple different colors of LEDs embedded in a perimeter of the deck, where the light strip of multiple different colors of LEDs is part of the one or more lights,

wherein a light control module cooperating with the light strip of the multiple different colors of LEDs is configured to cause colored lighting effects including lighting the perimeter of the deck with a constant intensity, lighting the perimeter of the deck by fading into the constant intensity, lighting the perimeter of the deck with one or more flashes from a first intensity to a second intensity, lighting the perimeter of the deck in a breath from the first intensity through the second intensity and back to the first intensity, sweeping light around the perimeter of the deck in a clockwise or counterclockwise direction, sweeping light from a front of the deck to a back of the deck simultaneously along both sides of the deck, sweeping light from the back of the deck to the front of the deck simultaneously along both sides of the deck, or a combination thereof, and

wherein the light strip of the multiple different colors of LEDs is further configured to vary in color about one or more portions of the perimeter of the deck in combination with the lighting effects.

9. The personal transport vehicle of claim 8 ,

wherein a light control module cooperating with motor control circuit is configured to cause the lighting effects of the light strip of the multiple different colors of LEDs to correspond to braking the personal transport vehicle and include lighting a back portion of the perimeter of the deck red and the multiple different colors of LEDs are Red Green Blue (RGB) LEDs.

10. An electrically powered personal transport system, comprising:

an electrically powered personal transport vehicle, that includes

a deck configured to support a weight of an operator standing on the deck while operating the personal transport vehicle;

one or more trucks mounted to a bottom of the deck, each of the trucks including an axle;

one or more wheels mounted on each axle of the trucks;

one or more batteries to power a motor configured to drive the wheels by way of a drive system, at least one battery of the one or more batteries disposed under a battery enclosure having a first light indicator system configured for communicative lighting for communicating with the operator; and

a deck lighting system built into the personal transport vehicle, the deck lighting system including a light strip of i) a single color of LEDs, ii) multiple different colors of LEDs, or iii) a combination of both, disposed in one or more grooves in a perimeter of the deck,

wherein one or more LEDs of the light strip are configured to communicate as follows selected from a group consisting of

i) change state of one or more of the LEDs to communicate with the operator to give the operator navigational directions,

ii) change state of one or more of the LEDs to communicate with the operator to provide the operator guidance on upcoming hazards,

iii) turn on one or more of the LEDs to externally communicate a physical presence of the personal transport vehicle and the personal transport vehicle's intended navigational route to other vehicles on a road or people on a sidewalk; and

iv) any combination of these three; and

a companion remote control for the personal transport vehicle configured to allow the operator to activate the LEDs and having a second light indicator system also configured for communicating with the operator.

11. The personal transport system of claim 10 ,

wherein the deck is formed of a deck core, a sidewall around a perimeter of the deck core, a top laminate over both the deck core and the sidewall, and a bottom laminate under both the deck core and the sidewall,

wherein the sidewall is formed of a top sidewall layer, a bottom sidewall layer, and a middle sidewall layer between the top sidewall layer and the bottom sidewall layer, and

wherein a first groove in the perimeter of the deck is disposed between the deck core and the middle sidewall layer as well as between the top sidewall layer and the bottom sidewall layer.

12. The personal transport system of claim 11 ,

wherein a light blocking film is disposed between the deck lighting system and the bottom laminate configured to block light emission from a bottom surface of the deck, and

wherein grip tape over the light strip is configured to assist in securing the light strip to the deck.

13. The personal transport system of claim 10 ,

wherein a light control module cooperating with the light strip of the single color of LEDs, the multiple different colors of LEDs, or a combination of both LEDs, is configured for lighting effects including lighting the perimeter of the deck with a constant intensity, lighting the perimeter of the deck by fading into the constant intensity, lighting the perimeter of the deck with one or more flashes from a first intensity to a second intensity, lighting the perimeter of the deck in a breath from the first intensity through the second intensity and back to the first intensity, sweeping light around the perimeter of the deck in a clockwise or counterclockwise direction, sweeping light from a front of the deck to a back of the deck simultaneously along both sides of the deck, sweeping light from the back of the deck to the front of the deck simultaneously along both sides of the deck, or a combination thereof.

14. The personal transport system of claim 13 ,

wherein the lighting effects of the light strip of the single color of LEDs is white LEDs and the multiple different colors of LEDs are RGB LEDs, where the white LEDs, the RGB LEDs, or a combination of both LEDs correspond to operations to i) indicate a powering on the personal transport vehicle, ii) indicate a powering off the personal transport vehicle, iii) cooperate with an ambient light sensor to turn on the deck lighting system and turn off the deck lighting system, iv) cooperate with a motor circuit to indicate a braking of the personal transport vehicle, v) cooperate with a battery circuit to indicate a beginning to charge the one or more batteries of the personal transport vehicle, vi) cooperate with the battery circuit to indicate ongoing charging of the batteries of the personal transport vehicle, vii) cooperate with the battery circuit to indicate a fully charged battery of the personal transport vehicle, viii) cooperate with a wireless communication circuit of the personal transport vehicle to indicate a pairing of the personal transport vehicle to an external device for wireless communication between the personal transport vehicle and the external device, ix) to indicate a mode of operation of the personal transport vehicle, or x) a combination thereof.

15. The personal transport system of claim 10 ,

wherein both the first light indicator system of the battery enclosure and the second light indicator system of the companion remote control includes a primary multiple different colored LED and a secondary linear LED array,

wherein the primary multiple different colored LED of the first light indicator system and the primary multiple different colored LED of the second light indicator system are configured to communicate with the operator in concert by way of the communicative lighting, and

wherein the secondary linear LED array of the first light indicator system and the secondary linear LED array of the second light indicator system are also configured to communicate with the operator in concert by way of the communicative lighting.

16. The personal transport system of claim 10 ,

wherein a companion mobile phone application for the personal transport vehicle resident in a mobile computing device is configured to wirelessly communicate, via a wireless communication circuit of the mobile computing device with i) a wireless communication circuit of the personal transport vehicle, ii) a wireless communication circuit of the companion remote control, or iii) any combination of both the wireless communication circuit of the personal transport vehicle and the wireless communication circuit of the companion remote control, and

wherein the companion mobile phone application is configured to turn the deck lighting system on or off and

allow the operator to select one or more operational modes for the personal transport vehicle including i) a utility mode to make settings changes to personal transport vehicle, ii) a ride mode to set acceleration and deceleration thresholds for the personal transport vehicle, and iii) a mood mode that includes a number of light based indicators to indicate any of 1) the operator's mood and 2) customize an appearance of the personal transport vehicle when those light based indicators are activated.

17. The personal transport system of claim 10 , where the light strip is electrically connected to be powered through one or more access ports in a motor driver unit for the motor.

18. The personal transport system of claim 10 , where the light strip is electrically connected to be powered directly from a main power bus connected to the one or more batteries.

19. The personal transport system of claim 10 , where a light control module cooperating with the light strip is configured to cause the multiple different colors of LEDs to be activated automatically by an impulse from a motor driver unit when signaling breaking lights.

20. The personal transport system of claim 10 , where a light control module cooperating with the light strip is configured to cause the LEDs to be activated automatically i) by sensing a shift in weight of the operator on the deck, ii) by receiving a command from the remote control and iii) any combination of both, to indicate a direction the operator intends to turn the personal transport vehicle.

21. The personal transport system of claim 10 , where a light control module cooperating with an ambient light sensor is configured to receive a signal sent by the ambient light sensor to either increase or decrease an amount of lumens the LEDs need to emit depending on whether the ambient light sensor detects whether it is currently daytime, nighttime, or dusk.

Assignments (14)
RELEASE OF SECURITY INTEREST Recorded Oct 8, 2023
From: WILMINGTON TRUST, NATIONAL ASSOCIATION, AS AGENT
To: NEUTRON HOLDINGS, INC.
Reel/Frame 065180/0812 →
SECURITY INTEREST Recorded Oct 8, 2023
From: NEUTRON HOLDINGS, INC.
To: DIAMETER FINANCE ADMINISTRATON LLC, AS COLLATERAL AGENT
Reel/Frame 065181/0082 →
RELEASE OF SECURITY INTEREST Recorded Jun 8, 2021
From: BANK OF MONTREAL
To: NEUTRON HOLDINGS, INC.
Reel/Frame 056473/0790 →
SECURITY INTEREST Recorded Jun 4, 2021
From: NEUTRON HOLDINGS, INC.
To: WILMINGTON TRUST, NATIONAL ASSOCIATION
Reel/Frame 056484/0244 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 11, 2020
From: OCEAN II PLO LLC
To: NEUTRON HOLDINGS, INC. DBA LIME
Reel/Frame 053462/0089 →
SECURITY INTEREST Recorded May 15, 2020
From: NEUTRON HOLDINGS, INC.
To: BANK OF MONTREAL
Reel/Frame 052675/0304 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 13, 2020
From: OCEAN II PLO LLC
To: NEUTRON HOLDINGS, INC. DBA LIME
Reel/Frame 052652/0868 →
SECURITY INTEREST Recorded May 7, 2020
From: NEUTRON HOLDINGS, INC.
To: UBER TECHNOLOGIES, INC.
Reel/Frame 052605/0731 →
SECURITY INTEREST Recorded Apr 17, 2020
From: BOOSTED, INC.
To: OCEAN II PLO LLC
Reel/Frame 052425/0384 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 16, 2020
From: OCEAN II PLO LLC
To: NEUTRON HOLDINGS, INC. DBA LIME
Reel/Frame 052416/0128 →
SECURITY INTEREST Recorded Mar 2, 2020
From: BOOSTED, INC.
To: RUTAN & TUCKER, LLP
Reel/Frame 051983/0241 →
RELEASE OF SECURITY INTEREST Recorded Dec 26, 2019
From: RUTAN & TUCKER, LLP
To: BOOSTED, INC.
Reel/Frame 051372/0313 →
SECURITY INTEREST Recorded Dec 17, 2019
From: BOOSTED, INC.
To: RUTAN & TUCKER, LLP
Reel/Frame 051305/0459 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 9, 2018
From: RAUTIAINEN, JUKKA; PRICE, LEVI JACOB; RIIHILUOMA, OLIVER; WEISS, ASA; PEART, ANGUS; HEYNEMAN, BARRETT; NOONAN, SHELBY; RIEGER, CHRIS; ULMEN, JOHN
To: BOOSTED, INC.
Reel/Frame 044884/0758 →
Continuity (2)
Provisional Application 62563551 · Sep 26, 2017
Related Publication 20190091554A1 · Mar 28, 2019
Cited By (1)
US 1,107,845