This housing holds multiple antennas and attaches to a separate electronics unit, mounting under a drone to complete the system.
Learn more about EAGLE👉 https://zurl.co/4yhwi
#EAGLE #Ombra #DefenseTech #SBIR #STTR
Exciting News!🚀
Ombra, in collaboration with the University of Texas, announces it has been selected to create Biomanufacturing for Space Technology and Resource Utilization, aka BIO-STAR.
➡️ Want the full story? Click here to read the official press release: https://zurl.co/Y41VC
#BIOSTAR #STTR #SpaceForce #DefenseTech
Exciting News!🚀
Ombra, in collaboration with the University of Texas, announces it has been selected to create Biomanufacturing for Space Technology and Resource Utilization, aka BIO-STAR.
➡️ Want the full story? Click here to read the official press release: https://zurl.co/Y41VC
#BIOSTAR #STTR #SpaceForce #DefenseTech
Exciting News!🚀
Ombra, in collaboration with the University of Texas, announces it has been selected to create Biomanufacturing for Space Technology and Resource Utilization, aka BIO-STAR.
➡️ Want the full story? Click here to read the official press release: https://zurl.co/Y41VC
#BIOSTAR #STTR #SpaceForce #DefenseTech
When I'm not in booth 3551 at #imewest talking about PADT, Inc.'s services and the products we sell and support, I'll be involved in two conference presentations.
On Tuesday, (Feb 7) from 1:15 PM - 2:00 PM I'll be talking about the novel optimization tool PADT developed as part of our @NASA #sttr ]we did: https://imewest23.mapyourshow.com/8_0/sessions/session-details.cfm?scheduleid=96
Then, on Wednesday (Feb 8) from 10:15 AM - 11:00 AM I'll be moderating a panel on #workforcedevelopment for #AdvancedManufacturing
https://imewest23.mapyourshow.com/8_0/sessions/session-details.cfm?scheduleid=14
PADT has been working with NASA, ASU, and Purdue to bring biologically inspired algorithms to generative design based shape optimization for parts made with Additive Manufacturing. Recently, we have coupled structural, thermal, and fluids simulation in one solver that uses a unique, bio-inspired optimization approach to solve multiphysics problems and take 3D Printed functional components to more adventurous parts of the design space - lighter, stronger, and with higher performance. In this presentation, we will update the audience on where we are in producing a useful software tool that connects different solvers and drives toward novel shapes. We will discuss the algorithm, how the different software products are connected, the user process, and several real-world test cases we have run. We will also summarize how this new approach is enabled by and takes advantage of metal and polymer additive manufacturing.