1 / 6

CubeSat for Ions, Neutrals, Electrons and Magnetic Fields

CINEMA. PI Robert Lin, SSL Project Manager Thomas Immel , SSL Systems Engineer Chris Pasma , SSL Mechanical Engineer David Glaser, SSL STEIN Scientist Davin Larson, UCB MAGIC Scientist Tim Horbury , ICL. CubeSat for Ions, Neutrals, Electrons and Magnetic Fields.

paniz
Download Presentation

CubeSat for Ions, Neutrals, Electrons and Magnetic Fields

An Image/Link below is provided (as is) to download presentation Download Policy: Content on the Website is provided to you AS IS for your information and personal use and may not be sold / licensed / shared on other websites without getting consent from its author. Content is provided to you AS IS for your information and personal use only. Download presentation by click this link. While downloading, if for some reason you are not able to download a presentation, the publisher may have deleted the file from their server. During download, if you can't get a presentation, the file might be deleted by the publisher.

E N D

Presentation Transcript


  1. CINEMA PI Robert Lin, SSL Project Manager Thomas Immel, SSL Systems Engineer Chris Pasma, SSL Mechanical Engineer David Glaser, SSL STEIN Scientist Davin Larson, UCB MAGIC Scientist Tim Horbury, ICL CubeSat for Ions, Neutrals, Electronsand Magnetic Fields Imperial College London

  2. GENERAL NOTES 11 UCB currently students on CINEMA team. In collaboration with students at KHU, visiting students from Puerto Rico. Magnetometer from ICL Started a Seminar class devoted to CINEMA Current Mass Budget: Around 2.7 kg, harnessing and redesigns Thermal Model: Analytical at SSL, FEA from KHU, check with Solidworks Launch Provider: Still backup on NPP launch, alternatives

  3. SUBSYSTEMS • Electrical Power • Progress • Building Flight Panels • Vibration and Thermal Cycling of panels • Testing of Battery/ EPS • Issues • Clean Room facilities • Interference with torque coils • Cracked Cell during Thermal Cycle • Next Steps • Finish Flight Panels • Build High Voltage Power Supply • C & DH • Progress • Reviewing Commands • FSW • Issues • Narrow down the amount • Next Steps

  4. SUBSYSTEMS • Radio Communication • Progress • ETUs of both S-band and UHF antennas • NTIA Application • Issues • NTIA process moving slowly • Problems connecting Coaxial Cable to Whip Antenna • Next Steps • Finish NTIA Frequency Assignment • Purchase Radios/ Antennas • Redesign Whip Antenna • ACS • Progress • Torque Coils tested, new wire • Sun Sensors tested, refab of flight parts • Finishing simulation • Issues • Varying settling times in simulation • Next Steps • Integration of ACS and Flight Software • Speed up settling time • Assemble Flight Parts

  5. SUBSYSTEMS • Spacecraft Structure • Progress • ETU built, being used for harnessing, stack integration • Holes drilled into it as needed • Issues • Hard to machine • Next Steps • Slight redesign to make fabrication more precise. • STEIN (SupraThermal Electrons, Ions and Neutrals) • Progress • New detector/ ASIC • Issues • Changes caused by the new hardware • Next Steps • Addressing these

  6. SUBSYSTEMS • MAGIC (MAGnetometer from Imperial College) • Progress • Single axis ETU complete • Triple axis ETU in testing • Issues • Behind Schedule • Next Steps • Integrate with flight software • Other Components • Instrument Interface Board is being assembled. • FPGA code fully simulated, waiting to run on the board. • Harnessing done in Solidworks, working with the mockup chassis

More Related