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Capstone Turbine Corporation • 21211 Nordhoff Street • Chatsworth • CA 91311 • USA Technical Reference: Component Descriptions - Model 330 MicroTurbine 3. Most likely failures Inverter faults OV, UV, Frequency Ensure connections are tight Inverter Inductor Smooth AC current waveform Ripple produced by IGBT switching High frequency IGBT switching helps reduce ripple 2. Inductance should measure 510-550 uH 3. More component stress is applied with Reduced airflow Increased current 4. Verify operation by Measure open between phases Measure open between phases and neutral Measure open between phases and ground DPC Power Board DC Bus Voltage DC bus voltage range in standby 532 VDC when applied grid voltage is 380 VAC 670 VDC when applied grid voltage is 480 VAC 0 VDC when battery enabled in standalone; no grid voltage 2. DC bus voltage range during normal operation 760 VDC in grid connect mode 750 VDC to 785 VDC during standalone mode 3. DC bus voltage measured at terminals E4 and E5 System Power Supply Primary of power supply powered by DC bus 2. Isolated from DC Bus with fuses F500 and F501 3. Power supply activation Active when DC bus voltage is > 500 VDC Remain active until DC bus voltage is < ~400 VDC 4. Output is 13.8 VDC +/-5% 410012-001 Rev A (Apr 2002) Page 27 of 44 This information is proprietary to Capstone Turbine Corporation. Neither this document nor the information contained herein shall be copied, disclosed to others, or used for any purposes other than the specific purpose for which this document was delivered. Capstone reserves the right to change or modify without notice, the design, the equipment specifications, and/or the contents of this document without incurring any obligation either with respect to equipment previously sold or in the process of construction.PDF Image | Technical Reference Component Descriptions Capstone Model 330 MicroTurbine
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