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GP-B Post-Flight Analysis—Final Report - Gravity Probe B - Stanford ...

GP-B Post-Flight Analysis—Final Report - Gravity Probe B - Stanford ...

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Table 10-4. RMS Temperature Variations in 3 mHz Band About Roll (C)— Worst case estimateFLL DAC DAS BKT_ELEC BKTSQUID 1 0.00155 0.00155 0.00310 0.00155 0.0000023SQUID 2 0.00155 0.00155 0.00310 0.00155 0.0000023SQUID 3 0.00155 0.00310 0.00387 0.00155 0.0000023SQUID 4 0.00155 0.00232 0.00387 0.00155 0.0000023Table 10-5. RE Bias Temperature CoefficientsPer A001 (Heifetz, Silbergliet) - May 2004R1G1 equivalents (mV/K)FLL DAC DAS BKT_ELEC BKTSQUID 1 0.47 0.25 1.30 0.0158 3.11std. error 0.20 0.09 0.08 0.0066 0.06SQUID 2 0.39 0.28 1.40 no data 8.02std. error 0.14 0.18 0.04 no data 0.12SQUID 3 1.50 0.05 0.94 no data 4.23std. error 0.24 0.22 0.27 no data 0.08SQUID 4 2.12 1.59 0.71 0.0125 9.71std. error 0.32 0.32 0.15 0.0155 0.1510.5 SRE Software=RANGE 2 =GAIN 6=GAIN 5The SQUID and Science Telescope Software (SSW) residing in the RAD6000-based processor performs theinstrument control functions and telemetry processing required to operate the SQUID electronicsinstrumentation in the forward SRE boxes as well as the Telescope Readout Electronics (TRE) subsystem. Thecode is written in ADA and runs in the processor on a VxWorks real time operating system.The code image is 750 KB; with data storage and scratchpad space, the code occupied about 79% of the 3 MBstatic RAM aboard the RAD6000 processor.The primary functions performed by the SSW are:1. Handshake interface with MSS2. Command router sends commands to applications3. SQUID and science telescope science and ATC data processing4. Commands to SQUID and ST5. Raw / processed telemetry from SQUID / ST6. Payload Processor checks and memory scrub<strong>Gravity</strong> <strong>Probe</strong> B — <strong>Post</strong> <strong>Flight</strong> Analysis • Final <strong>Report</strong> March 2007 297

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