Method and Apparatus for Protecting Charging Devices from Surges and Lightening Strikes
First Claim
1. A system for protecting an electrically charged vehicle from a power surge, the system comprising:
- an electrically powered vehicle having a length and four wheels, each wheel being powered by a separate electric motor, the motors being powered by both a capacitor and a battery, a contact brush for deliverying current to the capacitor, an energy switch for selectively opening or closing a circuit between the capacitor and battery;
a charging station including a rail segment, the rail segment being approximately ⅓
of the length of the electrically powered vehicle, a ground circuit and a ground switch for selectively connecting the rail segment to ground, an up-charge transformer, a feed capacitor, a power line, the up-charge transformer and feed capacitor being electrically coupled to one another, a first switch for selectively completing a circuit between the power line and the up-charge transformer, a second switch for selectively completing a circuit between the feed capacitor and the rail segment;
first and second sensors, the first sensor being activated when the vehicle is at a predetermined distance from the charging station, activation of the first sensor closing the first switch to permit charging of the up-charge transformer, the second sensor detecting when the rail segment is completely underneath the electrically powered vehicle, activation of the second sensor opening the ground circuit to disconnect the rail segement from ground and closing the second switch to connect the rail segment to the feed capacitor and thereby power the rail, activation of the second sensor further opening the energy switch to disconnect the capacitor and battery so as to protect the battery from damage in the event of a power surge.
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Accused Products
Abstract
Disclosed is a method and apparatus for charging electrically powered devices. In accordance with the invention, the device is powered by two storage or charge receiving devices. One of these devices is capable of receiving a substantial charge very rapidly while the other device requires a longer time to receive a charge. The advantage is that the powered device can be used almost instantly and continually while at the same time rebuilding electrical charge. The present invention further relates to a system for protecting the charging device from being damaged from an electrical surge, such as from a lightening strike.
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Citations
6 Claims
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1. A system for protecting an electrically charged vehicle from a power surge, the system comprising:
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an electrically powered vehicle having a length and four wheels, each wheel being powered by a separate electric motor, the motors being powered by both a capacitor and a battery, a contact brush for deliverying current to the capacitor, an energy switch for selectively opening or closing a circuit between the capacitor and battery; a charging station including a rail segment, the rail segment being approximately ⅓
of the length of the electrically powered vehicle, a ground circuit and a ground switch for selectively connecting the rail segment to ground, an up-charge transformer, a feed capacitor, a power line, the up-charge transformer and feed capacitor being electrically coupled to one another, a first switch for selectively completing a circuit between the power line and the up-charge transformer, a second switch for selectively completing a circuit between the feed capacitor and the rail segment;first and second sensors, the first sensor being activated when the vehicle is at a predetermined distance from the charging station, activation of the first sensor closing the first switch to permit charging of the up-charge transformer, the second sensor detecting when the rail segment is completely underneath the electrically powered vehicle, activation of the second sensor opening the ground circuit to disconnect the rail segement from ground and closing the second switch to connect the rail segment to the feed capacitor and thereby power the rail, activation of the second sensor further opening the energy switch to disconnect the capacitor and battery so as to protect the battery from damage in the event of a power surge.
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2. A system for protecting an electrically charged vehicle from a power surge, the system comprising:
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an electrically powered vehicle, the vehicle powered by both a capacitor and a battery, a contact brush for deliverying current to the capacitor, an energy switch for selectively opening or closing a circuit between the capacitor and battery; a charging station including a rail segment and a power line, a switch for selectively completing a circuit between the power line and the rail segment; a sensor, the sensor detecting the relative position between the vehicle and charging station, activation of the sensor closing the switch to permit charging of the rail segment by the power line, activation of the first sensor further opening the energy switch to disconnect the capacitor and battery so as to protect the battery from damage in the event of a power surge. - View Dependent Claims (3, 4, 5)
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6. A method for protecting an electrically charged vehicle from a power surge, the vehicle including a battery and a capacitor that are selectively connected via a energy switch, the method employing a series of charging stations with each charging station including a rail segment, a power line, and a switch for selectively coupling the rail segment and power line, the method comprising the following steps:
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closing the energy switch to power the vehicle by both the battery and capacitor; driving the electric vehicle between successive charging stations; detecting when vehicle is completely over a charging station and thereafter; closing the switch between the rail segment and power line to thereby permit charging of the rail segment by the power line; opening the energy switch to disconnect the capacitor and battery so as to protect the battery from damage in the event of a power surge.
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Specification