Modular electric charging apparatus
11159033 · 2021-10-26
Inventors
Cpc classification
B60L53/18
PERFORMING OPERATIONS; TRANSPORTING
H02J7/0013
ELECTRICITY
Y02T10/70
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
B60L53/35
PERFORMING OPERATIONS; TRANSPORTING
H02G5/04
ELECTRICITY
H01R25/14
ELECTRICITY
Y02T90/12
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
Y02T90/14
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
B60L53/30
PERFORMING OPERATIONS; TRANSPORTING
Y02T10/7072
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
International classification
H02J7/00
ELECTRICITY
H02G5/04
ELECTRICITY
B60L53/35
PERFORMING OPERATIONS; TRANSPORTING
B60L53/18
PERFORMING OPERATIONS; TRANSPORTING
Abstract
Improvements in a modular electric charging apparatus are disclosed. The modular electric charging apparatus provides a universal base system that can be used to install an electrical power system. The universal base system allows cabinets provided from different manufacturers to be connected by electrical wiring into their unique cabinets. A below grade structure of an open frame structure is used for setting and casting concrete around the open frame. The open frame is set at a level with a desired finished surface with a trench canal and the concrete can be poured into both sides of the open frame. The modular electric charging apparatus also uses a canal that extends from a base of the cabinet. The canal is easily cut to a length or multiple canals can be placed in series for extending the length. Buss bars are set and are secured in an insulated spacer within the canal for use in connecting to a plurality of above ground charging stations.
Claims
1. A modular electric charging apparatus comprising: a cable trench form for an electric charger support stand to support an electrical junction box; a canal configured to be integrated into a support frame for said electric charger support stand, wherein said canal is supported on a plurality of support frames and; at least two insulated spacers within said canal, wherein said at least two insulated spacers having slots for supporting buss bars, wires or cables, said buss bars connecting said electrical junction box and providing electrical energy from said electrical junction box to a plurality of vehicle charging stations.
2. The modular electric charging apparatus according to claim 1, wherein said buss bars, wires or cables provide connections to said plurality of vehicle charging stations at any locations along said canal.
3. The modular electric charging apparatus according to claim 1, wherein said cable trench form for said electric charger support stand is cast into concrete.
4. The modular electric charging apparatus according to claim 3, wherein said at least two insulated spacers extend between sides of said canal and support side walls of said canal.
5. The modular electric charging apparatus according to claim 1, wherein said canal and said buss bars are expandable without effecting said electrical junction box.
6. The modular electric charging apparatus according to claim 1, wherein the modular electric charging apparatus provides power distribution for a group consisting of electric vehicle service equipment, electric vehicle chargers, battery energy storage systems, back-up electrical generation systems, utility grid systems and DC rail transportation systems.
7. The modular electric charging apparatus according to claim 1, further includes a mounting plate that is configured to cover a top of said cable trench form.
8. The modular electric charging apparatus according to claim 7, wherein said mounting plate is changeable.
9. The modular electric charging apparatus according to claim 1, wherein at least one second electrical junction box is connected to said buss bars, wires or cables.
10. The modular electric charging apparatus according to claim 9, wherein said at least one a second electrical junction box is configured to be mounted on said canal at any location along said canal.
11. The modular electric charging apparatus according to claim 1, wherein said at least two insulating spacers have at least three slots.
12. The modular electric charging apparatus according to claim 1, wherein said plurality of support frames have voids to allow for concrete to pass therethrough.
13. The modular electric charging apparatus according to claim 1, wherein said cable trench form has voids to allow for concrete to pass therethrough.
14. The modular electric charging apparatus according to claim 13, wherein a top of said cable trench form is cast at grade or below finished grade.
15. The modular electric charging apparatus according to claim 1, wherein said cable trench form has a plurality of supporting ribs that are configured to support said canal.
16. The modular electric charging apparatus according to claim 1, wherein said cable trench form is permanently cast in place.
17. The modular electric charging apparatus according to claim 1, wherein said canal is configured to be shortened or extended.
18. The modular electric charging apparatus according to claim 1, wherein said at least two insulated spacers support said buss bars on a bottom and two sides of said buss bars.
19. The modular electric charging apparatus according to claim 18, wherein a height of said buss bars is adjustable to change a power transmission capacity.
20. The modular electric charging apparatus according to claim 1, wherein said cable trench form further includes a step for a recess for a cover.
Description
BRIEF DESCRIPTION OF THE SEVERAL VIEWS OF THE DRAWING(S)
(1)
(2)
(3)
(4)
(5)
DETAILED DESCRIPTION OF THE INVENTION
(6) It will be readily understood that the components of the present invention, as generally described and illustrated in the drawings herein, could be arranged and designed in a wide variety of different configurations. Thus, the following more detailed description of the embodiments of the system and method of the present invention, as represented in the drawings, is not intended to limit the scope of the invention, but is merely representative of various embodiments of the invention. The illustrated embodiments of the invention will be best understood by reference to the drawings, wherein like parts are designated by like numerals throughout.
ITEM NUMBERS AND DESCRIPTION
(7) TABLE-US-00001 10 vehicle charging apparatus 12 mounting plate 13 earth 14 concrete 15 grade 16 electric vehicle chargers 17 vehicle connector 19 buss bar(s) 20 electric vehicle charger support stand 21 supporting ribs 22 canal support(s) 23 canal bottom support 24 voids 25 top openings 26 side openings 27 bottom 28 top surface 40 support frame 41 step 42 canal support(s) 43 canal bottom support 44 voids 46 side 47 bottom 48 top surface 60 insulated spacer 61 side 62 vertical gap 63 slots 64 recess 65 vertical 67 bottom 80 trench/canal 81 wires/cables
(8)
(9) The trench or canal 80 enters into one or both sides of the electric vehicle charger support stand 20. The trench or canal 80 can be cut to a shorter length or multiple sections can be used to extend the length of the trench or canal 80. Utility power cable or connections enter the trench 80 as designated by installation plans and ordinances. A plurality of insulated spacers 60 are shown within the trench 80. The spacers 60 retain the shape of the trench 80 under the pressures of concrete that is poured in and around the trench 80 and also provide insulation and spacing for electrical buss bars 19 that provide electrical power from the electric vehicle chargers 16 along the length of the trench 80. The trench also remains after concrete is poured along the length of the trench 80.
(10) The trench 80 is supported on support frame(s) 40 that also have voids to allow concrete to pass through the support frame(s) 40. Both the support frame(s) 40 and the electric vehicle charger support stand 20 are placed below finished grade in a ground recess. The top of the support frame(s) 40 and the electric vehicle charger support stand 20 may be at grade. This figure shows a plurality of electric vehicle chargers 16 or electrical junction box with vehicle connectors 17 or vehicle charging stations.
(11) The vehicle charging stations can be connected to the buss bar 19 at any location along the length of the buss bar 19 and can be repositioned as needed without requiring demolition changes to the vehicle charging apparatus 10.
(12)
(13) Once concrete is poured the open nature of the electric vehicle charger support stand 20 allows concrete to flow through and around the open void 24 structure. Once the concrete has cured, the cable trench will be locked in place. Cable trench cover to be installed under precast equipment pad and can be removable. This support stand is designed with cutouts for protective bollard placement in up to 4 corner locations as needed, even flow of concrete throughout trench during backfill, and rebar reinforcement. A concrete vibrator should be used during the concrete pour the ensure all air is released from trench cavities or openings 24, 26. It is further contemplated that stud plates or other securing hardware can be installed into or around the electric vehicle charger support stand 20 and cast with the concrete to secure the hardware with the electric vehicle charger support stand 20 as a single unitized structure. All of the forms remain after the concrete has set.
(14)
(15) The support frame 40 is used with concrete that can flow around the support frame 40 and through the voids 44. The support frame 40 has a canal bottom support 43 surface and side canal support 42 surfaces for the canal (not shown). The support stands also are dimensioned to provide required structural wall thickness of concrete. Support stands are designed with cutouts to provide even flow of concrete throughout the trench and rebar reinforcement if required. A concrete vibrator should be used during the concrete pour the ensure all air is released from trench cavities. Cable trench will use a solid or ventilated cover depending on its application.
(16)
(17) The insulated spacer 60 will also separate each bar from making contact with each other. The sides 61 and bottom 67 of the insulated spacer 60 fit within the canal (not shown in this figure) and provide support to the canal when concrete is poured. While the insulated spacer 60 is shown with a recess 64 the insulated spacer 60 can also be made with a solid construction. Further, while vertical gaps or slots 63 for three buss bars is shown more than three slots 63 can be used to support additional buss bars, but the insulated spacer 60 can be constructed with more than three slots 63 and the installer can utilize the desired number of slots and leave some slots 63 open.
(18)
(19) The buss bars are typically about 9′ feet in length and the buss bars 19 rest in the grooves of the insulated spacer 60. To create a longer connection trench, trench couplers are used to join trench canal 80 pieces together. The cable trench 80 will pass through the support frame 40 and electric vehicle charger support stand 20 (not shown in this figure) with some amount of play as they will need to be level upon installation and the cable trench will have minimal pitch to match existing grade 15. In this figure, concrete 14 is shown in the ground cavity and the concrete 14 is shown passing through the voids 44 to secure the components into the ground or earth 13.
(20) While the figures and text show and describe an underground or subterranean electrical buss structure, it is contemplated that it could also exist as an above ground buss chase structures, attached to a solar canopy structures or in a parking structure and may include circuit breakers and disconnects. The system shows a use with vehicle charging stations, the system can also be used for electric vehicle service equipment, battery energy storage systems, back-up electrical generation systems, utility grid systems, DC rail transportation systems and can be upgraded as technology evolves.
(21) Thus, specific embodiments of an electric vehicle charging apparatus have been disclosed. It should be apparent, however, to those skilled in the art that many more modifications besides those described are possible without departing from the inventive concepts herein. The inventive subject matter, therefore, is not to be restricted except in the spirit of the appended claims.