CASSINI
Cassini MIMI Investigation at Fundamental Technologies
List of Tables in This Section
I. Hong and Armstrong Technical Report
- Measured values of the magnetic field z component (Gauss)
- Calculated values of the magnetic field z component (Gauss)
- Absolute difference values of the magnetic field z component (Gauss)
- Relative difference values of the magnetic field z component
- Coordinates of the starting positions in the E detector
- Coordinates of the starting positions in the F detector
- Geometric factors of E and F detectors with different energies in two different magnetic simulations (cm2sr)
- Coefficients for each modeled polygon plane of the Cassini/MIMI/LEMMS system
- Number of vertexes and the coordinates (x, y, z) of each vertex in the corresponding polygon plane given in the previous table
- Distributions of escaped electrons of different energies from the E detector with the first magnetic field simulation
- Distributions of escaped electrons of different energies from the F detector with the first magnetic field simulation
II. Historical MIMI Notes/Memos
- Kirsch calculation of ion responses for proposed MIMI 180º end detectors, as of Sept. 29-Oct. 1, 1992 Team Meeting at CESR
- Logic table for channels E1, E2, E3, E4, P1, P2, P3, P4, P5, A1, A2, and M1 (Kirsch calculation, Oct. 1992)
- Discriminator thresholds, LEMMS B, C, and D detectors (Kirsch 12/92)
- Logic table for 18 channels, proposed revision 12/92
- Individual thresholds for design purposes (12/92)
- Thickness and threshold parameters (12/92)
- LEMMS_II, Thickness and threshold parameters, and logic table for 18 channels (5/93)
- LEMMS_III, Thickness and threshold parameters, and logic table for 18 channels (5/93)
- Summary of LEMMS measurement characteristics (6/93)
- MIMI LEMMS 180 degree end provisional thickness and threshold parameters (6/93)
- Logic table for proton channels (6/93)
- Logic table for alpha and medium channels (6/93)
- Summary of passbands in July 13, 1993, provisional design
- Cassini MIMI LEMMS 0 degree end, July 13, 1993, provisional design (enhanced Galileo EPD)
- Logic table for electron and proton channels (7/13/93)
- Logic table for helium and medium channels (7/13/93)
- Cassini MIMI LEMMS detector logic design, LEMMS_J, July 12, 1993 version, 180 degree end
- Logic table for electron and proton channels (7/12/93)
- Logic table for helium and medium channels (7/12/93)
- MIMI/LEMMS simplified geometrical factor summary for 180 degree end, 3/8/95 version
- MIMI/LEMMS passband summary, 0 degree end, 3/8/95 version
- Absorber stack, 3/8/95
- Logic definition, 3/8/95
- MIMI LEMMS 180 degree end passband summary, 3/8/95 version
- Stack parameters, 3/8/95
- Logic definitions, 3/8/95
- MIMI LEMMS 180 degree end (obverse) passband summary, 3/8/95 version
- Stack parameters, 3/8/95
- Logic definitions, 3/8/95
- Presentation materials from MIMI Team Meeting, Oct.
1994, Lindau, Germany
- Report on LEMMS passband design
- MIMI LEMMS geometry
- MIMI LEMMS vs. Voyager spectra, part 1
- MIMI LEMMS vs. Voyager spectra, part 2
- MIMI LEMMS vs. Voyager spectra, part 3
- MIMI LEMMS vs. Voyager spectra, part 4
- MIMI LEMMS vs. Voyager spectra, part 5
- MIMI LEMMS vs. Voyager spectra, part 6
- MIMI LEMMS vs. Voyager spectra, part 7
- MIMI LEMMS vs. Voyager spectra, part 8
- MIMI LEMMS vs. Voyager spectra, part 9
- MIMI LEMMS vs. Voyager spectra, part 10
- MIMI LEMMS 0 degree end passband summary, Oct. 5, 1994, version
- MIMI LEMMS 180 degree end (obverse) passband summary, Oct. 6, 1994, version
- Cassini MIMI LEMMS 0 degree end (bidirectional 180 degree channels) Oct. 5, 1994
- LEMMS mechanical and sensor layout
- Electronics design
- Application Specific Integrated Circuits
- DAC (Digital to Analog Converters) registers with their associated addresses
- AC electrical characteristics
- DC characteristics and ratings
- untitled table (commandable9.html)
- Chip no. 001
- Chip no. 002
- untitled table (accumulator5.html)
- 2 untitled tables (accumulator6.html)
- AC electrical characteristics
- DC characteristics and ratings
- INCA sensor design and status
- CHEMS sensor design and status
- 100 keV proton beam incident on the micron detector
- 100 keV proton beam incident on the intertechnique detector
- 200 keV proton beam incident on the intertechnique detector
- 100 keV proton beam incident on the ORTEC detector
- 200 keV proton beam incident on the ORTEC detector
- Measured energies for different ions - micron detector
- Measured energies for different ions - intertechnique detector
- Measured energies for different ions - ORTEC detector
- 100 keV proton beam incident on the Canberra detector
- 100 keV proton beam incident on the STICS detector
- 100 keV proton beam incident on the ORTEC detector
- 200 keV proton beam incident on the Canberra detector
- 200 keV proton beam incident on the STICS detector
- 200 keV proton beam incident on the ORTEC detector
- Main electronics unit
- MIMI mass estimate revision table
- Cassini mass estimate summary
- Desired contingency & MIMI subsystem growth limits
- Mass estimate for the main electronics box
- Mass estimate for the CHEMS sensor box
- Mass estimate for the INCA sensor box
- Mass estimate for the LEMMS subsystem
- Mass estimate for the inter-connecting cables
- MIMI power margin summary
- MIMI power estimate - mode summary
- Cassini power requirements, total
- Cassini power requirements, main electronics
- Cassini power requirements, INCA sensor
- Cassini power requirements, CHEMS sensor
- Cassini power requirements, LEMMS sensor
- Additional tables on MIMI power estimate
- Low voltage power supply output current
- Power use by operational mode
- Telemetry modes and allocations
- Report on LEMMS passband design
- N. Divine memo on numerical models for electron and
proton distributions in Saturn's radiation belts
- Parameter values for Saturn used in the model calculations
- Circumstances of the flybys for 3 spacecraft at Saturn
- Identification of the data profiles used for the Saturn electron model
- Identification of the data profiles used for the Saturn proton model
- Parameter values for the Saturn electron model
- Parameter values for the Saturn proton model
- Summary of range in L and residuals for the Saturn electron model
- Summary of range in L and residuals for the Saturn proton model
- LEMMS passbands design, final version (1995)
- MIMI/LEMMS geometrical factor summary
- Passband summary for 0 degree end
- Absorber stack, 0 degree end
- Logic definition, 0 degree end
- Passband summary for 180 degree end
- Stack parameters for 180 degree end
- Logic definition, 180 degree end
- Passband summary for 180 degree end (obverse)
- Absorber stack, 180 degree end (obverse)
- Logic definition, 180 degree end (obverse)
III. Latest LEMMS Parameters
O degree end, low resolution:
- Oxygen_eff - efficiency file for Z=8, A=16
- Helium_eff - efficiency file for Z=2, A=4
- Proton_eff - efficiency file for Z=1, A=1
- Electron_eff - efficiency file for Z=-A=1
- Logic table
- D4 loss
- B loss
- A loss
- LEMMS0 full
Return to Cassini
MIMI table of contents page.
Return to Fundamental
Technologies Home Page.
Updated 8/8/19, Cameron Crane
QUICK FACTS
Manufacturer: The Cassini spacecraft
was manufactured by NASA's Jet Propulsion Laboratory,
and the Huygens Probe was manufactured by Thales Alenia
Space.
Mission Duration: The Cassini-Huygens mission launched on October 15 1997, and ended on September 15 2017.
Destination: Cassini's destination was Saturn and its moons. The destination of the Huygens Probe's was Saturn's moon Titan.
Orbit: Cassini orbited Saturn for 13 years before diving between its rings and colliding with the planet on September 15th, 2017.
Mission Duration: The Cassini-Huygens mission launched on October 15 1997, and ended on September 15 2017.
Destination: Cassini's destination was Saturn and its moons. The destination of the Huygens Probe's was Saturn's moon Titan.
Orbit: Cassini orbited Saturn for 13 years before diving between its rings and colliding with the planet on September 15th, 2017.