> ## Content Index
> Fetch the complete content index at: https://www.industrialbriefs.com/llms.txt
> Use this file to discover other available public pages before exploring further.

# Beyond Reach Labs Opens Brooklyn Facility for Advanced Solar Arrays
- URL: https://www.industrialbriefs.com/brooklyn-facility-solar-arrays/
- Published: 2026-09-17T00:01:25.000Z
- Updated: 2026-09-17T00:01:24.000Z
- Description: Beyond Reach Labs has opened a new facility in Brooklyn to manufacture advanced solar arrays for space applications, signaling new opportunities for the aerospace manufacturing sector.
- Author: IndustrialBriefs
- Tags: manufacturing, engineering, policy

![IB_KEY_FACTS:[{"stat":"16,000 square feet","label":"Size of Beyond Reach Labs' new facility","sublabel":"Located at Industry City, Brooklyn"},{"stat":"10x power","label":"Potential power generation increase","sublabel":"Flarewing arrays can generate up to 10 times more power than traditional panels"},{"stat":"2027","label":"Full production target","sublabel":"At least 10 units per day planned by end of 2027"}]](https://industrial-briefs.ghost.io/favicon.ico)

Beyond Reach Labs, a Brooklyn-based aerospace company founded by SpaceX veterans, has inaugurated a 16,000-square-foot research and manufacturing facility at Industry City. This strategic development aims to revolutionize solar array technology for space stations and orbital data centers.

**What Happened**  
Beyond Reach Labs' new facility will focus on developing Flarewing, a patent-pending solar array architecture. This innovative system promises to deliver significantly more electrical power in orbit while minimizing launch volume. The Flarewing can compress to the size of a dining table for launch and expand to the length of a football field once deployed in space, generating up to 10 times more power per launch than traditional solar panels. The arrays will be available in configurations ranging from 8 kilowatts to 200 kilowatts, suitable for a variety of applications from small research platforms to large commercial space stations.

The company aims to complete ground qualification of its smaller Flarewing-S system by the end of 2026, followed by customer integration in early 2027\. By the end of 2027, Beyond Reach Labs plans to produce at least 10 units per day from its new Brooklyn facility.

**What This Means for Your Business**  
For AECM and government contracting professionals, Beyond Reach Labs' expansion represents a significant opportunity in the aerospace manufacturing sector. The facility's location in Brooklyn, a departure from the traditional Southern California aerospace hubs, indicates a shift that could diversify geographic opportunities for suppliers and contractors. The development of high-efficiency solar arrays like Flarewing aligns with federal initiatives to enhance space infrastructure, potentially opening doors to government contracts and funding.

The potential for increased power generation with reduced launch volume offers a competitive edge for companies involved in satellite and space station projects. This technology could streamline compliance with federal energy efficiency standards while reducing operational costs in space.

**What US Operators Should Watch**  
Key timelines to monitor include the ground qualification of Flarewing-S by the end of 2026 and the subsequent customer integration in 2027\. Companies in the aerospace supply chain should look for procurement windows related to the production of these solar arrays, as Beyond Reach Labs ramps up to produce 10 units daily by late 2027\. Additionally, monitoring federal funding opportunities for advanced space technology could provide strategic advantages.

---

*Source: https://pulse2.com/beyond-reach-labs-opens-16000-square-foot-brooklyn-facility-to-build-solar-arrays-for-space-stations-and-orbital-data-centers/.* [*Read the original story ->*](https://pulse2.com/beyond-reach-labs-opens-16000-square-foot-brooklyn-facility-to-build-solar-arrays-for-space-stations-and-orbital-data-centers/?ref=industrialbriefs.com)