IP Library Granted Patent US 9,281,186
Granted Patent B2
US 9,281,186 · App. 13/437,378 · Granted Mar 8, 2016

Colored photovoltaic modules and methods of construction

Inventor: Gerald R. Wootton (Cambridge, CA)
Assignee: ATS AUTOMATION TOOLING SYSTEMS INC.
H01L21/02535H01L21/0262H01L21/02532H01L31/02H01L31/048H01L31/055Y02E10/52
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Quick Facts
Patent No.
US 9,281,186
App. No.
13/437,378
Granted
Mar 8, 2016
Kind
B2
Abstract

A colored photovoltaic module and method for its production, where the module includes: a photovoltaic cell; and an appearance modifying film, encapsulant or glazing; where the appearance modifying film, encapsulant or glazing includes: a light-control film; graphic material; a phosphor; a dichroic film; nano-particles; micro-dots; metal flakes; paint; an additive material for 3-D printing, Selective Laser Augmentation (SLA) or Selective Laser Sintering (SLS); or any combination thereof.

Claims (12)

1. A coloured colored photovoltaic (PV) module comprising:

a photovoltaic cell; and

an appearance modifying system that interacts with at least a portion of the incident light on the photovoltaic cell to cause a modified visual appearance to an observer, wherein the appearance modifying system spatially demultiplexes incident light to provide a power-creating component and an appearance-modifying component and wherein the appearance-modifying component is substantially directed to the observer, the appearance modifying component comprising a plurality of facets provided to a glazing and embedded elements provided to photovoltaically inactive areas, wherein the spatially demultiplexing comprises configuring the facets and embedded elements such that the facets refract light reflecting off the embedded elements substantially toward the observer.

2. The colored photovoltaic module according to claim 1 wherein the appearance modifying system further comprises a film, encapsulant or glazing.

3. The colored photovoltaic module according to claim 2 wherein the film, encapsulant, or glazing comprises a pattern configured to provide further spatial demultiplexing.

4. The colored photovoltaic module according to claim 1 wherein the appearance modifying system further comprises: a light-control film; graphic material; a phosphor; a dichroic film; nano-particles; micro-dots; metal flakes; paint; an additive material for 3-D printing, Selective Laser Augmentation (SLA) or Selective Laser Sintering (SLS); or any combination thereof.

5. The colored photovoltaic module according to claim 1 wherein the appearance modifying system further modifies the reflection, photoluminescence, scattering, perspective, optical properties, or any combination thereof of the photovoltaic cell.

6. The colored photovoltaic module according to claim 5 wherein modifying the photoluminescence comprises modifying the fluorescence, phosphorescence, quantum conversion, or any combination thereof of the photovoltaic cell.

7. The colored photovoltaic module of claim 6 , wherein a portion of the light produced by the photoluminescent material is absorbed by the photovoltaic cell, thereby increasing module efficiency through photon conversion.

8. The colored photovoltaic module of claim 1 , wherein the appearance modifying system is further configured to spatially align with photovoltaically inactive portions of the photovoltaic module.

9. The colored photovoltaic module of claim 1 , wherein the appearance-modifying system substantially directs the appearance-modifying component in one or more relatively narrow spectral bands generally aligned to the peak spectral responses of human vision receptors.

10. The colored photovoltaic module of claim 1 , wherein the spatial demultiplexing comprises aligning the embedded element to the incident light but approximately normal to the observer.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 22, 2012
From: WOOTTON, GERALD R.
To: ATS AUTOMATION TOOLING SYSTEMS INC.
Reel/Frame 028424/0470 →
Continuity (2)
Provisional Application 61470422 · Mar 31, 2011
Related Publication 20120247541A1 · Oct 4, 2012