IP Library › Granted Patent US 11,476,800
Granted Patent B1
US 11,476,800 · App. 17/306,462 · Granted Oct 18, 2022

Inline DC feeder DC/DC voltage step-up harness

Inventors: Olee Joel Olson, Jr. (Cornelius, NC); Adam Will Foodman (Charlotte, NC); Bradley Allan Micallef (Davidson, NC)
Assignee: Solar Operations Solutions, LLC
H02S40/36H02M3/02H02S40/32
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Quick Facts
Patent No.
US 11,476,800
App. No.
17/306,462
Granted
Oct 18, 2022
Kind
B1
Abstract

An inline DC feeder DC/DC voltage step-up harness for photovoltaic solar facilities includes a housing, a plurality of PV input connectors, an at least one PV output connector. The housing incorporates a DC/DC converter, and has an input and an output. The plurality of PV input connectors are operatively connected to the housing at the input. The PV output connector is operatively connected to the housing at the output.

Claims (25)

1. An inline DC feeder DC/DC voltage step-up harness for photovoltaic solar facilities, comprising:

a weatherproof housing containing a plurality of DC/DC converters, each having a two-pole input and a two-pole output, wherein the outputs of the DC/DC converters are connected together in parallel in the weatherproof housing and provided as an exterior two-pole output from the weatherproof housing;

wherein each pole of the input of each of the plurality of DC/DC converters is terminated with a PV connector adapted to connect to a corresponding PV connector operatively connected to an existing PV string; and

wherein each pole of the exterior output from the weatherproof housing is terminated with a PV connector adapted to connect to a respective corresponding PV connector operatively connected to a fused DC combiner box.

2. An inline DC voltage step-up system for retrofitting a photovoltaic (PV) solar facility to provide a new, higher-voltage output, the system comprising:

(a) an inline DC feeder DC/DC voltage step-up harness, including:

(i) a weatherproof housing,

(ii) a plurality of DC/DC converters disposed within the weatherproof housing, each DC/DC converter having a two-pole input and a two-pole output,

(iii) wherein the outputs of the DC/DC converters are connected together in parallel in the weatherproof housing and provided as an exterior two-pole output from the weatherproof housing,

(iv) wherein each pole of the input of each of the plurality of DC/DC converters is terminated with a PV connector adapted to connect to a respective corresponding PV connector operatively connected to an existing PV string, and

(v) wherein each pole of the exterior output from the weatherproof housing is terminated with a PV connector; and

(b) a fused DC combiner box having a two-pole input, terminated with PC connectors coupled to the PV connectors of the exterior output of the inline DC feeder DC/DC voltage step-up harness, and an output connected to an inverter.

3. A method of retrofitting a photovoltaic (PV) solar facility to replace an existing lower-voltage module, connected to PV connectors that terminate PV output strings from the PV solar facility, with a new higher-voltage module, the existing lower-voltage module providing output voltage to an inverter at a first voltage, the method comprising:

(a) providing an inline DC feeder DC/DC voltage step-up harness and a first fused DC combiner box, wherein the inline DC feeder DC/DC voltage step-up harness includes:

(i) a weatherproof housing,

(ii) a plurality of DC/DC converters disposed within the weatherproof housing, each DC/DC converter having a two-pole input and a two-pole output,

(iii) wherein the outputs of the DC/DC converters are connected together in parallel in the weatherproof housing and provided as an exterior two-pole output from the weatherproof housing,

(iv) wherein each pole of the input of each of the plurality of DC/DC converters is terminated with a PV connector, and

(v) wherein each pole of the exterior output from the weatherproof housing is terminated with a PV connector; and

(b) disconnecting a second fused DC combiner box from the plurality of PV connectors that terminate PV output strings from the PV solar facility;

(c) after disconnecting, connecting inline DC feeder DC/DC voltage step-up harness to the PV output strings from the PV solar facility by connecting the respective PV connectors together;

(d) connecting the first fused DC combiner box to the output from the weatherproof housing via the respective PV connectors; and

(e) thereafter, providing an output voltage to the inverter at a second voltage, the second voltage being greater than the first voltage.

4. The method of claim 3 , wherein the first fused DC combiner is a replacement combiner.

5. The method of claim 3 , wherein the first voltage is 600 VDC or 1000 VDC, and the second voltage is 1500 VDC.

Assignments (2)
CHANGE OF NAME Recorded Oct 29, 2022
From: SOLAR OPERATIONS SOLUTIONS, LLC
To: ADERIS ENERGY, LLC
Reel/Frame 061586/0581 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 8, 2022
From: OLSEN, OLEE JOEL, JR; FOODMAN, ADAM WILL; MICALLEF, BRADLEY ALLAN
To: SOLAR OPERATIONS SOLUTIONS, LLC
Reel/Frame 059547/0302 →
Continuity (1)
Provisional Application 63018925 · May 1, 2020
Cited By (2)
US 12,191,804 US 12,308,791