2002-04-11T20:07:20.000 \header System = GRS Author = mward Institution = UofAz Start_time = 04/11/02 20:00 Stop_time = 04/11/02 21:50 Send_time = Thu Apr 11 20:07:20 GMT 2002 \text Purpose: Stop thermostatic control of the GRS CEB by duty-cycling the CEB heater. Expected result: The GRS CEB heater duty-cycle will be terminated. Why it is needed: To change the GRS EEPROM sequences to change the duty cycle. Commands to be sent: /home/grs2001/software/SC_Commands/Post-MOI_1/bce_bcf/c01grs_ceb_htr_duty_stop 2400, immediate, CHG_ANALOG, CEB_AGND_SPARE2, COMPARE_SETTING, 0 2701, immediate, CHG_ANALOG, CEB_PS2_TEMP, COMPARE_SETTING, 0 1327, immediate, CEB_HTR, OFF 2400, + 0-1 , CHG_ANALOG, CEB_AGND_SPARE2, COMPARE_SETTING, 0 2701, + 0-1 , CHG_ANALOG, CEB_PS2_TEMP, COMPARE_SETTING, 0 1327, + 0-1 , CEB_HTR, OFF6, 0 2: immediate, CHG_GPA_HTR, 2, 0 2002-04-11T20:24:50.000 \header System = GRS Author = mward Institution = UofAz Start_time = 04/11/02 20:00 Stop_time = 04/11/02 21:50 Send_time = Thu Apr 11 20:24:50 GMT 2002 \text Purpose: Load GRS EEPROM sequences to setup for CEB duty cycle and temperature control. Expected result: Sequences 31b and 32b will be populated with the sequences that duty cycle the Why it is needed: In order to eliminate/reduce the effect of orbital (and other) temperature Commands to be sent: /home/grs2001/software/SC_Commands/Post-MOI_1/bce_bfl/c01grs_s31b_ceb_duty_on_ 3131, immediate, CHG_SEQ, 48, B-31, 4 0: immediate, CHG_CEB_INT, 0, 10000, 1, 0 1: immediate, CHG_ANALOG, CEB_AGND_SPARE2, SEQUENCE, 160, 0 2: immediate, CEB_HTR, ON, 0 3: immediate, CHG_ANALOG, CEB_AGND_SPARE2, COMPARE_SETTING, 1, 0 2002-04-11T20:24:50.000 \header System = GRS Author = mward Institution = UofAz Start_time = 04/11/02 20:00 Stop_time = 04/11/02 21:50 Send_time = Thu Apr 11 20:24:50 GMT 2002 \text Purpose: Load GRS EEPROM sequences to setup for CEB duty cycle and temperature control. Expected result: Sequences 31b and 32b will be populated with the sequences that duty cycle the Why it is needed: In order to eliminate/reduce the effect of orbital (and other) temperature Commands to be sent: /home/grs2001/software/SC_Commands/Post-MOI_1/bce_bfl/c01grs_s32b_ceb_duty_off 3132, immediate, CHG_SEQ, 48, B-32, 4 0: immediate, CHG_CEB_INT, 0, 10000, 1, 0 1: immediate, CHG_ANALOG, CEB_AGND_SPARE2, SEQUENCE, 159, 0 2: immediate, CEB_HTR, OFF, 0 3: immediate, CHG_ANALOG, CEB_AGND_SPARE2, COMPARE_SETTING, 1, 0 2002-04-11T20:46:44.000 \header System = GRS Author = mward Institution = UofAz Start_time = 04/11/02 20:00 Stop_time = 04/12/02 19:30 Send_time = Thu Apr 11 20:46:44 GMT 2002 \text Purpose: Start thermostatic control of the GRS CEB by duty-cycling the CEB heater. Expected result: The GRS CEB heater will duty-cycle at 50% (4.8 watts) in order to maintain the CEB_PS2_TEMP between 11C and 11.05C. The duty-cycling will start at 11C or Why it is needed: In order to eliminate/reduce the effect of orbital (and other) temperature Commands to be sent: /home/grs2001/software/SC_Commands/Post-MOI_1/bce_bcf/c01grs_ceb_htr_duty_init 2707, immediate, CHG_ANALOG, CEB_PS2_TEMP, COLLECTION, 3 2712, immediate, CHG_ANALOG, CEB_PS2_TEMP, OUT_OF_RANGE, 0 2722, immediate, CHG_ANALOG, CEB_PS2_TEMP, LESS_COMPARE_VALUE, 16218 2723, immediate, CHG_ANALOG, CEB_PS2_TEMP, GREATER_COMPARE_VALUE, 16222 1472, immediate, CHG_CEB_INT, 0, 1000, 1 2415, immediate, CHG_ANALOG, CEB_AGND_SPARE2, COLLECTION, 1 2750, immediate, CHG_ANALOG, CEB_AGND_SPARE2, SEND_RATE, 100 2410, immediate, CHG_ANALOG, CEB_AGND_SPARE2, LESS_COMPARE_VALUE, 1000 2717, immediate, CHG_ANALOG, CEB_PS2_TEMP, SEQUENCE, 161 2702, + 60 , CHG_ANALOG, CEB_PS2_TEMP, COMPARE_SETTING, 1PARE_VALUE, 2499, + 54000 , CHG_ANALOG, CEB_OS_TEMP_A, LESS_COMPARE_VALUE, 2910 2500, + 54000 , CHG_ANALOG, CEB_OS_TEMP_A, GREATER_COMPARE_VALUE, 2914 1128, + 54060 , EXEC_SEQ, 28, 1CTION, 6 2371, + 35 , CHG_ANALOG, CEB_OS_TEMP_A, LESS_COMPARE_VALUE, 1481 2376, + 35 , CHG_ANALOG, CEB_OS_TEMP_A, GREATER_COMPARE_VALUE, 1485 1148, + 55 , EXEC_SEQ, 48, 1 1128, + 60 , EXEC_SEQ, 28, 1 1403, + 420 , DOOR, Open, 1, 1 2488, + 4020 , CHG_ANALOG, CEB_MNT_RNG_TEMP_A, OUT_OF_RANGE, 2 2489, + 4020 , CHG_ANALOG, CEB_MNT_RNG_TEMP_A, COLLECTION, 6 2438, + 4020 , CHG_ANALOG, CEB_MNT_RNG_TEMP_A, LESS_COMPARE_VALUE, 2024 2428, + 4020 , CHG_ANALOG, CEB_MNT_RNG_TEMP_A, GREATER_COMPARE_VALUE, 1115, + 4040 , EXEC_SEQ, 15, 1 2458, + 4040 , CHG_ANALOG, GAMMA_GPA_TEMP, OUT_OF_RANGE, 2 2459, + 4040 , CHG_ANALOG, GAMMA_GPA_TEMP, COLLECTION, 6 2451, + 4040 , CHG_ANALOG, GAMMA_GPA_TEMP, LESS_COMPARE_VALUE, 6347 2454, + 4040 , CHG_ANALOG, GAMMA_GPA_TEMP, GREATER_COMPARE_VALUE, 6357 1117, + 4060 , EXEC_SEQ, 17, 1 2468, + 4060 , CHG_ANALOG, CEB_IS_TEMP_B, OUT_OF_RANGE, 3 2485, + 4060 , CHG_ANALOG, CEB_IS_TEMP_B, GREATER_COMPARE_VALUE, 4095 2475, + 4060 , CHG_ANALOG, CEB_IS_TEMP_B, SEQUENCE, 153 2471, + 4060 , CHG_ANALOG, CEB_IS_TEMP_B, COMPARE_SETTING, 2 2065, + 4060 , CHG_ANALOG, CEB_IS_TEMP_A, OUT_OF_RANGE, 3 2426, + 4060 , CHG_ANALOG, CEB_IS_TEMP_A, GREATER_COMPARE_VALUE, 4484 2418, + 4060 , CHG_ANALOG, CEB_IS_TEMP_A, SEQUENCE, 155 2052, + 4060 , CHG_ANALOG, CEB_IS_TEMP_A, COMPARE_SETTING, 2 1128, + 4065 , EXEC_SEQ, 28, 1Contingency