REG NASA-LLIS-2496-2010 Lessons Learned High Voltage Power Supply Circuit Failure due to Hollow Core Resistor.pdf
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1、Public Lessons Learned Entry: 2496 Lesson Info: z Lesson Number: 2496 z Lesson Date: 2010-3-24 z Submitted by: Giovanni Rosanova Subject: High Voltage Power Supply Circuit Failure due to Hollow Core Resistor Abstract: On two simultaneous sounding rocket missions, science instrument high voltage powe
2、r supplies experienced in-flight failure. A subsequent investigation discovered that the OHMITE Maxi-Mox series resistors in the power supply circuitry have a hollow core, which, during the rapid ascent of the sounding rocket, did not have sufficient time to properly vent. This resulted in coronal a
3、rcing in the resistor and subsequent failure of the power supplys feedback op-amp. It is recommended that hollow core resistors only be used in situations where they are given sufficient time to reach vacuum prior to high voltage being applied. Description of Driving Event: After the missions were c
4、onducted and the data review indicated science instrument failure, University of Iowa personnel investigated the issue and tried to recreate the problem in their laboratory. The problem manifested itself as a failed op-amp in the feedback control circuitry when the high voltage supplies were placed
5、in vacuum and powered on. The feedback control is achieved through a resistor divider circuit on the output of the supply utilizing a 100Mohm and 100kohm resistor to provide a divide by 1000. This monitor of the output is the input of the drive controlling op-amp (the op-amp that would fail). The 10
6、0MOhm resistor was an OHMITE Maxi-Mox series resistor, which is rated for 10kV. Note: The failure never occurred on the bench in atmosphere, only during vacuum conditions. After multiple tests and a detailed review by a space flight high voltage power supply expert it was pointed out that the Maxi-M
7、ox series resistor was hollow. This resistor uses a hollow ceramic core for the mechanical support in the resistor; the core is hollowed in order to decrease the weight of the resistor. In atmosphere there is sufficient standoff of the voltage between the two ends of the resistor; however, as the am
8、bient pressure decreases the standoff voltage decreases and ultimately could break down. This results in the full voltage of the supply output, 2.5 kV, directly inputting into the feedback op-amp and damaging the op-amp. This failure mode was verified in testing 6 Maxi-mox resistors in vacuum, by se
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