The growing interest in and expanding applications of small satellite constellation networks necessitates effective and reliable high-bandwidth communication between spacecraft. The applications of these constellations (such as navigation or imaging) rely on the precise measurement of timing offset between the spacecraft in the constellation. The CubeSat Laser Infrared CrosslinK (CLICK) mission is being developed by the Massachusetts Institute of Technology (MIT), the University of Florida (UF), and NASA Ames Research Center. The second phase of the mission (CLICK-B/C) will demonstrate a crosslink between two CubeSats (B and C) that each host a \u3c 2U laser communication payload. The terminals will demonstrate full-duplex spacecraft-to-spa...
Miniaturized satellites such as CubeSats continue to improve their capabilities to enable missions t...
We present the results of an architectural trade study and prototype implementation of an optical tr...
CubeSat sensor performance continues to improve despite the limited size, weight, and power (SWaP) a...
The CubeSat Laser Infrared CrosslinK (CLICK) mission will demonstrate technology to advance the stat...
The CubeSat Laser Infrared CrossLink (CLICK) mission goal is to demonstrate a low cost, high data ra...
© COPYRIGHT SPIE. The CubeSat Laser Infrared CrosslinK mission is a joint Massachusetts Institute of...
NASA’s Optical Communications and Sensors Demonstration (OCSD) program and described in previous pre...
CubeSat Handling of Multisystem Precision Time Transfer (CHOMPTT) is a demonstration of precision gr...
The CubeSat Laser Infrared CrosslinK (CLICK-A) is a risk-reduction mission that will demonstrate a m...
The Cubesat Laser Infrared CrosslinK (CLICK) mission is a technology demonstration of10 Mbps downlin...
The CubeSat Laser Infrared CrosslinK (CLICK) mission will demonstrate technology to advance the stat...
Here we present the evolution of a university nanosatellite mission, demonstrating state of the art ...
Free-space optical (FSO) communication technology has the potential to provide power-efficient commu...
Thesis: S.M., Massachusetts Institute of Technology, Department of Aeronautics and Astronautics, 201...
CubeSats are excellent platforms to rapidly perform simple space experiments. Several hundreds of Cu...
Miniaturized satellites such as CubeSats continue to improve their capabilities to enable missions t...
We present the results of an architectural trade study and prototype implementation of an optical tr...
CubeSat sensor performance continues to improve despite the limited size, weight, and power (SWaP) a...
The CubeSat Laser Infrared CrosslinK (CLICK) mission will demonstrate technology to advance the stat...
The CubeSat Laser Infrared CrossLink (CLICK) mission goal is to demonstrate a low cost, high data ra...
© COPYRIGHT SPIE. The CubeSat Laser Infrared CrosslinK mission is a joint Massachusetts Institute of...
NASA’s Optical Communications and Sensors Demonstration (OCSD) program and described in previous pre...
CubeSat Handling of Multisystem Precision Time Transfer (CHOMPTT) is a demonstration of precision gr...
The CubeSat Laser Infrared CrosslinK (CLICK-A) is a risk-reduction mission that will demonstrate a m...
The Cubesat Laser Infrared CrosslinK (CLICK) mission is a technology demonstration of10 Mbps downlin...
The CubeSat Laser Infrared CrosslinK (CLICK) mission will demonstrate technology to advance the stat...
Here we present the evolution of a university nanosatellite mission, demonstrating state of the art ...
Free-space optical (FSO) communication technology has the potential to provide power-efficient commu...
Thesis: S.M., Massachusetts Institute of Technology, Department of Aeronautics and Astronautics, 201...
CubeSats are excellent platforms to rapidly perform simple space experiments. Several hundreds of Cu...
Miniaturized satellites such as CubeSats continue to improve their capabilities to enable missions t...
We present the results of an architectural trade study and prototype implementation of an optical tr...
CubeSat sensor performance continues to improve despite the limited size, weight, and power (SWaP) a...