IP Library Granted Patent US 8,800,701
Granted Patent B1
US 8,800,701 · App. 12/590,072 · Granted Aug 12, 2014

Electric vehicle with onboard electricity production

Inventor: Lawrence Sadler (Palmetto, FL)
Assignee: L.R.S. Innovations, Inc.
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Quick Facts
Patent No.
US 8,800,701
App. No.
12/590,072
Granted
Aug 12, 2014
Kind
B1
Abstract

An internal combustion engine, an electricity production unit, batteries and an electric motor combine to provide for an extremely high mileage vehicle which has an extremely long driving range between the vehicle requiring re-fueling. Because the vehicle utilizes petroleum based fuel to power the internal combustion engine the vehicle can be fueled at any location which commercially provides petroleum fuels to the public. The electricity production unit electricity output while being powered by a very low horsepower internal combustion engine. Amplification of amperage and/or voltage of the electricity produced by the electricity production unit preferably occurs by passing the electricity through batteries prior to being utilized by the electric motor to propel the vehicle. Assemblies of the present invention may be easily installed at a very reasonable cost in existing vehicles.

Claims (25)

1. An electric vehicle with onboard electricity production comprising:

an electricity production unit to generate electricity;

mechanical means to power the electricity production unit;

multiple power storage units to store electricity generated by the electricity production unit, wherein continuously each power storage unit is individually cycled through being connected to the electricity production unit for a charging interval in order to receive electricity; and

an electric motor to propel the electric vehicle, wherein the electric motor receives electricity simultaneously from each of the power storage units to propel the electric vehicle.

2. The electric vehicle with onboard electricity production defined in claim 1 , wherein the mechanical means to power the electricity production unit further comprises an internal combustion engine capable of producing low horsepower rotation of the electricity production unit.

3. The electric vehicle with onboard electricity production defined in claim 1 , further comprising:

means to combine the electricity simultaneously received from the multiple power storage units into an enhanced electric current, wherein the enhanced electric current has a voltage which is greater than a voltage of each individual power storage unit and which is greater than a voltage of the electricity generated by the electricity production unit.

4. The electric vehicle with onboard electricity production defined in claim 1 , further comprising:

means to combine the electricity simultaneously received from the multiple power storage units into an enhanced electric current, wherein the enhanced electric current has an amperage which is greater than an amperage of each individual power storage unit and which is greater than an amperage of the electricity generated by the electricity production unit.

5. The electric vehicle with onboard electricity production defined in claim 1 , further comprising:

means to combine the electricity simultaneously received from the multiple power storage units into an enhanced electric current, wherein the enhanced electric current has a voltage and an amperage which are both greater than a voltage and an amperage of each individual power storage unit and which are both greater than a voltage and an amperage of the electricity generated by the electricity production unit.

6. A conversion package to be installed in an existing vehicle chassis to convert the existing vehicle to an extremely high efficiency electric vehicle with onboard electricity production, the conversion package comprising:

an electricity production unit to create electricity;

an internal combustion engine to power the electricity production unit;

multiple power storage units to store electricity generated by the electricity production unit, wherein continuously each power storage unit is individually cycled through being connected to the electricity production unit for a charging interval in order to receive electricity;

an electric motor to propel the electric vehicle, wherein the electric motor receives electricity simultaneously from each of the power storage units to propel the electric vehicle; and

a wiring harness to provide for connection of all applicable components of the conversion package and applicable components of the existing vehicle and to provide operator control of the electric vehicle with onboard electricity production.

7. The conversion package defined in claim 6 , further comprising:

means to combine the electricity simultaneously received from the multiple power storage units into an enhanced electric current, wherein the enhanced electric current has a voltage which is greater than a voltage of each individual power storage unit and which is greater than a voltage of the electricity generated by the electricity production unit.

8. The conversion package defined in claim 6 , further comprising:

means to combine the electricity simultaneously received from the multiple power storage units into an enhanced electric current, wherein the enhanced electric current has an amperage which is greater than an amperage of each individual power storage unit and which is greater than an amperage of the electricity generated by the electricity production unit.

9. The conversion package defined in claim 6 , further comprising:

means to combine the electricity simultaneously received from the multiple power storage units into an enhanced electric current, wherein the enhanced electric current has a voltage and an amperage which are both greater than a voltage and an amperage of each individual power storage unit and which are both greater than a voltage and an amperage of the electricity generated by the electricity production unit.

10. The conversion package defined in claim 6 further, comprising isolation means to provide for briefly isolating each power storage unit during at least a portion of a charging period of a standard electricity acceptance method, thereby returning each power storage unit to a predefined uniform charged condition.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 16, 2026
From: SADLER, LAWRENCE R
To: LRS INNOVATIONS GROUP LLC
Reel/Frame 074972/0355 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 14, 2012
From: SADLER, LAWRENCE R.
To: L.R.S. INNOVATIONS, INC.
Reel/Frame 028204/0171 →