Electrostatically clean solar array

6713670
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Inventors

Stern, Theodore Garry
Krumweide, Duane Eric

Application #

219849

Filed

Aug-14-2002

Published

Mar-30-2004

Current US Class

136/244
136/251
136/292
136/293
244/173
361/217
361/218
438/64
438/66
438/80

International Classes

H01L 031/048; H01L 031/05

Field of Search

136/251 136/244 136/292 136/293 438/64 438/66 438/80 244/173 361/217 361/218

Assignee

Composite Optics, Incorporated (San Diego, CA)

Examiners

Diamond; Alan

Attorney, Agent or Firm

Michael Blaine Brooks, P.C., Brooks; Michael Blaine

US Patent References

4348546   Front surface metal...
4433201   Solar power arrays...
4832755   Glass encapsulatio...
4849028   Solar cell with inte...
5542988   Photocell, its metho...
5919316   Spacecraft solar ar...
6091017   Solar concentrator...
6156967   Modular glass cove...
6177629   Spacecraft solar ar...
6194651   Electrostatic discha...
6243243   Solar array with E...
6260808   Passive electrical g...

Referenced by:

View Backward References

Other References

Stern et al, "Development of an Electrostatically Clean Solar Array Panel," Conference Record of the 28th Photovoltaic Specialists Conference, Anchorage, AK, Sep. 2000.* Stern, T., Krumweide, D., Gaddy, E. and Katz, I., "Development of an Electrostatically Clean Solar Array Panel," Proceedings of the 28th IEEE Photovoltaic Specialists Conference, Anchorage, AK, Sep. 2000.

Citation

Cite This Patent

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Abstract
Provided are methods of manufacturing an electrostatically clean solar array panel and the products resulting from the practice of these methods. The preferred method uses an array of solar cells, each with a coverglass where the method includes machining apertures into a flat, electrically conductive sheet so that each aperture is aligned with and undersized with respect to its matched coverglass sheet and thereby fashion a front side shield with apertures (FSA). The undersized portion about each aperture of the bottom side of the FSA shield is bonded to the topside portions nearest the edges of each aperture's matched coverglass. Edge clips are attached to the front side aperture shield edges with the edge clips electrically and mechanically connecting the tops of the coverglasses to the solar panel substrate. The FSA shield, edge clips and substrate edges are bonded so as to produce a conductively grounded electrostatically clean solar array panel.
 
Claims
We claim:

1. A method of manufacturing an electrostatically clean solar array panel comprised of a substrate having a perimeter surface and edges and an array of solar cells each with substantially rectangular coverglass; the coverglasses having a top side, a bottom side, and a perimeter of four edges, the method comprising the steps of:

machining a plurality of substantially rectangular apertures within a flat, electrically conductive sheet, with each aperture having a perimeter of four edges; the flat sheet having a topside, a bottom side, and four edges; each aperture aligned with a uniquely matched coverglass; each aperture machined from the flat sheet so that each of the four edges of its substantially rectangular perimeter are undersized relative to the perimeter of its matched coverglass; whereby a front-side shield with apertures is fabricated from the flat sheet;



Description
BACKGROUND

1. Field of the Invention

This invention relates to solar array panels and their manufacture and more particularly to electrostatically clean solar array (ECSA) panels and their manufacture.

BACKGROUND

2. Description of Prior Art

Certain space missions need solar arrays that do not affect the electromagnetic environment to allow for the uncorrupted operation of sensitive instruments. Solar arrays with exposed conductors both introduce and absorb current from the surrounding environment, and affect the shape of the plasma sheath that typically surrounds a solar array in earth orbit. Presently, solar arrays typically have electrical circuitry exposed to the extent that it interacts with the ambient plasma. This interaction affects the floating potential and particle trajectories surrounding the spacecraft, and in doing so the affected floating potential and particle trajectories may be sufficient in strength to influence scientific or otherwise sensitive mission readings.
 
  Electrostatic discharge (ESD) protection arrangement for a solar cell assembly (SCA) is suitable for the use as a component of orbiting solar generators....  A crystal of a semiconductor material has an electrically conducting loom assembly embedded therein, whereby the crystal and loom assembly define a unit...