LCRD will leverage the power of infrared light to send and receive information encoded into invisible laser beams from one location to the next. Once in orbit, LCRD will demonstrate the benefits of using infrared lasers to communicate information from space. These benefits include increased data in a single downlink, as well as reduced size, weight, and power requirements for a communications system on a spacecraft.
As part of the final testing campaign, several LCRD team members integrated the last pieces of hardware, completed final inspections, and conducted launch integration systems tests at the Astrotech Space Operations facility in Titusville, Florida.
Completed in May, these were the last set of Earth-based tests for the payload, ensuring its readiness for launch. Soon, the host spacecraft will be fueled with propellant and prepared for encapsulation and mating with an Atlas V rocket.
Once the spacecraft is thrusted into space and reaches its destination in geosynchronous orbit - 22,000 miles above Earth's surface - LCRD will become NASA's first two-way laser communications relay.
| The content herein, unless otherwise known to be public domain, is Copyright 1995-2026 Space Media Network. All websites are published in Australia and are solely subject to Australian law and governed by Fair Use principles for news reporting and research purposes. |