Lifetime Characteristics of Nanocomposite Enameled Wire Under Surge Voltage Application
|
|
|
- Marylou Preston
- 10 years ago
- Views:
Transcription
1 F E A T U R E A R T I C L E Lifetime Characteristics of Nanocomposite Enameled Wire Under Surge Voltage Application Key Words: nanofiller, enameled wire, repetitive surges, partial discharge (PD), time to breakdown Introduction ith the growing market of inverter-fed motors in industrial applications, the rated capacity, and hence the W rated voltage, are going to increase. Inverter-fed motors are characterized by adjustable speed drives using power electronics devices such as IGBT (insulated gate bipolar transistor), so that the magnet wires of inverter-fed motors are exposed to repetitive surge voltages with short rise-times of several tens or hundreds of nanoseconds, referred to as inverter surges. The inverter surge voltages give rise to novel and critical problems for the electrical insulation design and reliability even for low-voltage motor windings [1] [3]. The inverter surge voltages may cause PD with an increase in the operating voltage in inverter-fed motors. Therefore, PD characteristics of magnet wires become crucial to determine the electrical insulation reliability and breakdown lifetime of inverter-fed motors. One technical countermeasure to improve the electrical insulation performance of inverter-fed motors is to increase the breakdown lifetime of magnet wires, even under PD exposure, i.e., the development of PD-resistant enameled wires. PD-resistant enameled wires filled with inorganic materials (e.g., metal oxides based on Si, Ti, Al, Cr, or Zr) have been developed to have longer breakdown lifetimes than those of conventional enameled wires. Microcomposites such as SiO 2, TiO 2, Al 2 O 3 [4] and mica-based wires [5] contributed to the PD-resistant enameled wires. Recently, nanocomposites such as fumed silica [6], layered silicate [7], TiO 2 [8] are expected to be used for PD-resistant enameled wires as one of the potentially wide applications of nanotechnology [9]. The lifetime characteristics of nanocomposite enameled wires have been experimentally confirmed [10], [11]. However, their physical mechanisms of longer breakdown lifetime have not yet been clarified, especially under surge-voltage application. From the above background, we have been investigating the PD inception, propagation, and breakdown (BD) characteristics of nanocomposite and conventional enameled wires under surgevoltage application [7], [12], [13]. In this article, we focus on the Naoki Hayakawa Department of Electrical Engineering and Computer Science, Nagoya University, Japan Hitoshi Okubo EcoTopia Science Institute, Nagoya University, Japan V-N characteristics exhibited longer times to breakdown for nanocomposite enameled wires and the PD resistance increased with increasing nanofiller concentration. BD lifetime characteristics of nanocomposite enameled wires under repetitive surge-voltage application. First, we measured the relationship between the surge-breakdown voltage, V, and the total number of PD generated, N, (V-N characteristics) under surge-voltage application, and verified the longer BD lifetime of nanocomposite enameled wires as a function of nanofiller content. Second, we investigated the time transition of the remaining thickness of enameled layers from the viewpoint of the V-N characteristics, and we discussed the mechanisms of longer BD lifetime for the nanocomposite enameled wires. Experimental Setup Figure 1 shows the experimental setup for the measurement of V-N characteristics of the twisted-pair samples. The inverter surgegeneration circuit consists of direct current (DC) high voltage /07/$25/ 2008IEEE IEEE Electrical Insulation Magazine
2 Figure 3. Cross section of test samples. Figure 1. Experimental setup. supply, high-voltage semiconductor switch, pulse generator, and coaxial cable. This circuit can generate damped oscillating surge voltages with different surge parameters such as polarity, peak value, rise-time, repetition rate, and pulse width. In this article, the polarity of the applied surge voltage was unipolar, the peak value, V, was 2 kv peak 4 kv peak, the rise-time, t r, was 120 ns, the repetition rate, f, was 10,000 pps, and the pulse width was 10 µs, respectively. In order to discuss the time transition of the remaining thickness of the enameled layers, more simplified point contact samples as shown in Figure 2(b) were used, where V was set at 1.5 times the PD inception voltage (PDIV) and f was 5000 pps. Nanocomposite enameled wires were composed of an inner polyesterimide (EI) layer with layered silicate nanocomposite and the outer polyamideimide (AI) layer, as shown in Figure 3, the preparation of which is given in [11]. The nanofiller concentration, X, was 0 wt% 5 wt%, the thickness of the enamel coating was 15 µm for the EI layer, 5 µm for the AI layer, and 20 µm in total. PD signals were detected by PD light intensity using a photo multiplier tube (PMT). The detected PD light intensity signals were recorded by an oscilloscope (2.5 GHz, 20 GS/s, 64 Mword) and analyzed by the partial discharge current pulse waveform analysis (PD-CPWA) method [14]. PD-CPWA is a PD detection/analysis system developed for the purpose of pursuing the transition of PD current pulse waveforms. It was applied to the PD light intensity waveforms by the PMT in this article. After the repetitive surge-voltage application for fixed time duration, the total number of PD generated, N, was evaluated by the PD-CPWA. The surface condition of the point contact samples was analyzed by a scanning electron microscope (SEM) and a digital microscope. The remaining enamel thickness and its time variation were evaluated with a resolution of 1 µm. In addition, the temperature on the enameled wires and its time variation under repetitive surge-voltages were measured by an infrared thermograph. All experiments were done in atmospheric air at room temperature. Experimental Results and Discussion A. V-N Characteristics PD characteristics from PD inception to BD were measured using twisted pair samples under repetitive surge-voltage application. Figure 4 shows typical applied-voltage and PD lightintensity waveforms. Within the experimental conditions in this article, PD always was generated twice per single surge-voltage application, i.e., at each rise-time and fall-time of the surge-voltage waveform, and finally resulted in BD. PD at the fall-time of the surge voltage was attributed to surface charging on the enameled wire caused by PD during the rise-time of the surge voltage [15]. Figure 5 shows the time variations of the PD light intensity and Figure 2. Structure of test samples. Figure 4. Applied voltage and PD light intensity waveforms. (Twisted pair sample, V=2 kvpeak, f=10000 pps). March/April 2008 Vol. 24, No. 2 23
3 Figure 5. Time variation of PD light intensity and temperatures on a conventional enameled wire from PD inception to BD under the repetitive surge voltage. (Twisted pair sample, V=3 kv peak, f=1000 pps). temperatures at different points on a conventional enameled wire from PD inception to BD under the repetitive-surge voltage, V, of 3 kv peak and repetition rate of 1000 pps. Both PD light intensity and temperature were almost constant from PD inception to BD, which also was confirmed under the other applied surge-voltage conditions and for nanocomposite enameled wires. Figure 6 shows V-N characteristics under repetitive-surge voltage application, where N is the total number of PD generated and not the total number of surge voltage application. Each plot in Figure 6 corresponds to the result of one test sample, at which the statistical scatter of N on each regression line is small. Figure 6 shows that the total number of PD generated, N, decreased with increasing applied voltage V. The regression lines were expressed by equation (1) [16]: Figure 7. Normalized N as a function of nanofiller concentration. (Twisted pair sample, f=10000 pps). V = K N 1/n (1) where K is constant and n is the life exponent. Figure 7 shows N of nanocomposite enameled wires normalized by N of unfilled Figure 8. n value as a function of nanofiller concentration. (Twisted pair sample, f=10000 pps). wires tested under the same conditions as a function of nano-filler concentration, X. The normalized N for 5 wt% was 31 at V = 2.5 kv peak (1.7 PDIV PDIV), and reached as high as 1000 when extrapolated to 1.5 kv peak, around the PDIV. Figure 8 shows the value of n as a function of nanofiller concentration. The exponent n increased linearly with increasing nanofiller concentration. Figure 6. V-N characteristics under repetitive surge voltage application. (Twisted pair sample, f=10000 pps). B. Time Variation of Remaining Enamel Thickness After the repetitive surge-voltage application to point contact samples, the surface condition was analyzed by SEM and digital microscope. Figure 9 shows the SEM images of the cross-section of nanocomposite enameled wires with X = 2.5 wt%, exposed to repetitive 2.9 kv peak surge voltages for 1 hour (N = 36x10 6 ). The original thickness (20 µm) of the enamel coating was confirmed, i.e., not deteriorated around the contact point. However, the enameled wire was deteriorated by about 5 µm in depth for about 500 µm along the periphery of the wire on both sides of 24 IEEE Electrical Insulation Magazine
4 Figure 9. SEM images of nanocomposite enameled wire (X=2.5 wt%) after repetitive surge voltage application with PD. (Point contact sample, V=2.9 kvpeak for 1 hour, f=5000 pps, N= ). the contact point. The remaining enamel thickness corresponded to the thickness of AI layer in Figure 9, whereas the EI layer with nanocomposites was not deteriorated. Figure 10 shows the surface condition of nanocomposite enameled wire (X = 1 wt%), observed by the digital microscope after repetitive surge-voltage application with PD for 0.5 hours (N = 18x10 6 ). The lower image in Figure 10 gives the longitudinal profile of the remaining enamel thickness along the red line in the upper picture. The maximum remaining thickness was 11.0 µm, which means deterioration of the EI layer. The deterioration profile of the nanocomposite enameled wire was relatively wide and flat, compared with that of conventional enameled wire shown in Figure 11 with a similar maximum remaining thickness. Figure 12 shows the variation of the remaining thickness for nanocomposite (X = 1 wt%) and conventional enameled wires at V = 1.5 PDIV. The remaining enamel thickness was defined as the maximum value in longitudinal profile of each sample after a fixed time duration of repetitive surge-voltage application. In the case of conventional enameled wires, the remaining thickness decreased linearly with the increase in total number of PD generated, N, and the enamel thickness was eventually bridged, i.e. BD. On the other hand, in the case of nanocomposite enameled wires, the remaining enamel thickness decreased gradually in the first stage of deterioration, reached a plateau at about 13 µm, and decreased again finally resulting in BD. In other words, due to the plateau stage of deterioration, the time to BD of nanocomposite enameled wire was about five times longer than that of a conventional one in Figure 12. Figure 13 shows the applied surge voltage dependence of the deterioration process for nanocomposite (X = 5 wt%), enameled wires. The plateau level became deeper with increasing applied surge voltage. The plateau in deterioration process could be attributed to the contribution of nanofiller in the EI layer, i.e., the resistance to repetitive PD events. The resistance to deterioration in depth could have brought about the expansion of deterioration in the Figure 10. Surface condition of nanocomposite enameled wire (X=1 wt%) after surge voltage application with PD. (Point contact sample, V= 2.9 kvpeak, for 0.5 hours, f=5000 pps, N= ). Figure 11. Surface condition of conventional enameled wire after surge voltage application with PD. (Point contact sample, V= 3.4 kvpeak, for 0.22 hours, f=5000 pps, N= ). March/April 2008 Vol. 24, No. 2 25
5 Acknowledgment The authors express their sincere thanks to Toshiba Corporation, Power & Industrial Systems R & D Center, Mie, Japan, for their cooperation in this work. Figure 12. Remaining enamel thickness as a function of total number of PD generated, N. (Point contact sample, f=5000 pps). Figure 13. Applied surge voltage dependence of deterioration process for nanocomposite enameled wires. (Point contact sample, f=5000 pps). peripheral and longitudinal directions of nanocomposite enameled wires, as was shown in Figures 9 and 10. Conclusions We obtained and quantitatively evaluated V-N characteristics and the time variation of remaining thickness of nanocomposite enameled wires under repetitive surge-voltage application. The main results can be summarized as follows: V-N characteristics exhibited longer times to breakdown for nanocomposite enameled wires, and the PD resistance increased with the increasing nanofiller concentration. In the case of conventional enameled wires, the remaining enamel thickness decreased linearly with the time of voltage application, i.e., with increasing total number of PD generated, N, and the enamel thickness was eventually bridged, i.e., BD. In the case of nanocomposite enameled wires, the remaining thickness reached a plateau after a gradual deterioration in the first stage, which could contribute to the longer time to BD compared to that of conventional enameled wires. The resistance to deterioration in depth could have brought about the expansion of deterioration in the peripheral and longitudinal directions of nanocomposite enameled wires. References [1] M. Kaufhold, K. Schäfer, K. Bauer, and M. Rossmann, Medium and high power drive systems: Requirements and suitability proof for winding insulation systems, INSUCON, 2006, pp [2] G. C. Montanari, A. Cavallini, and A. Caprara, PD activity and ageing of power-electronics controlled motors, in Proc. Int. Symp. Elect. Insul. Mater., Kitakyushu, Japan, 2005, pp [3] H. Okubo, N. Hayakawa, and G. C. Montanari, Technical development on partial discharge measurement and electrical insulation techniques for low voltage motors driven by voltage inverters, IEEE Trans. Dielect. Elect. Insul., vol. 14, no. 6, pp , [4] R. J. Beeckman, J. J. Harber, and S. J. Wentz, Studies on magnet wire degradation with inverter driven motors, Elect./Electron. Insul. Conf., Chicago, 1997, pp [5] R. Brutsch and P. Weyl, A new winding wire for inverter drive motors, INSUCON, pp , [6] S. Ul. Haq, S. H. Jayaram, E. A. Cherney, and L. C. Simon, Partial discharge erosion of nano-filled enameled wires subjected to high frequency waveforms, in Proc. IEEE Int. Symp. Elect. Insul., Toronto, ON, Canada, 2006, pp [7] K. Inuzuka, H. Inano, N. Hayakawa, T. Hirose, M. Hamaguchi, and H. Okubo, Partial discharge characteristics of nanocomposite enameled wire for inverter fed motor, 2006 Annu. Rep. Conf. Elect. Insul. Dielect. Phenomena, Kansas City, 2006, pp [8] G. Zhang, G. Wu, L. Tong, and E. He, Study of nanofiller in the corona-resistant Magnetic wire insulation performance of inverterfed motor, in Proc. Int. Symp. Elect. Insul. Mater., Kitakyushu, Japan, 2005, pp [9] J. K. Nelson, The promise of dielectric nanocomposites, in Proc. IEEE Int. Symp. Elect. Insul., Toronto, ON, Canada, 2006, pp [10] H. Kikuchi, Y Yukimori, and S. Itonaga, Inverter surge voltage resistance enameled wire for high reliability inverter-fed motor, Hitachi Cable Review, no. 21, pp , [11] T. Ozaki, T. Imai, F. Sawa, T. Shimizu, and F. Kanemitsu, Partial discharge resistant enameled wire, in Proc. Int. Symp. Elect. Insul. Mater., Kitakyushu, Japan, 2005, pp [12] N. Hayakawa, H. Inano, K. Inuzuka, M. Morikawa, and H. Okubo, Partial discharge propagation and degradation characteristics of magnet wire for inverter-fed motor under surge voltage application, in Annu. Rep. Conf. Elect. Insul. Dielect. Phenomena, Kansas City, 2006, pp , [13] N. Hayakawa, M. Morikawa, and H. Okubo, Partial discharge inception and propagation characteristics of magnet wire for inverter-fed motor under surge-voltage application, IEEE Trans. Dielect. Elect. Insul., vol. 14, no. 1, pp , [14] H. Okubo and N. Hayakawa, A novel technique for partial discharge and breakdown investigation based on current pulse waveform analysis, IEEE Trans. Dielect. Elect. Insul., vol. 12, no. 4, pp , [15] N. Hayakawa, H. Inano, and H. Okubo, Partial discharge inception characteristics by different measuring methods in magnet wire under surge voltage application, in Annu. Rep. Conf. Elect. Insul. Dielect. Phenomena, Vancouver, BC, Canada, 2007, pp [16] IEC 61251: Electrical insulating materials - A.C. voltage endurance evaluation. IEC, Geneva, IEEE Electrical Insulation Magazine
6 Naoki Hayakawa was born on September 9, He received the Ph.D. degree in 1991 in electrical engineering from Nagoya University. Since 1990, he has been at Nagoya University. He currently is an associate professor at the Department of Electrical Engineering and Computer Science. From 2001 to 2002, he was a guest scientist at the Forschungszentrum Karlsruhe, Germany. He is a member of IEEE and the IEE of Japan. Hitoshi Okubo was born on October 29, He received the Ph.D. degree in 1984 in electrical engineering from Nagoya University. He joined Toshiba Corporation, Japan, in 1973 and was a manager of its HV laboratory. From 1976 to 1978, he was at the RWTH Aachen, Germany, and the TU Munich, Germany. In 1989 he was an associate professor at Nagoya University. He currently is a professor at Nagoya University in the EcoTopia Science Institute. He is a member of IEEE, IEE of Japan, VDE, and CIGRE. Are You Covered? Term Life Plans from the IEEE Financial Advantage Program With four term-life programs (term life, 10-year level term, 20-year level term, and level term to age 65) to choose from, IEEE term life insurance plans provide group rates generated through the buying power of the entire IEEE membership and the comfort of knowing your family s financial security is taken care of. Affordable and competitive rates negotiated specifically for IEEE Members Generous benefit amounts No exclusions after the policy has been effective for two years Additional discounts available For more information, call IEEE (4333) or visit IEEE membership must be maintained without a break in service to continue using the insurance policy. The IEEE Financial Advantage Program Tools to Secure Your Tomorrow March/April 2008 Vol. 24, No. 2 27
Case Studies in On-Line Measurement of PD in Motors Fed by Voltage Source PWM Drives
Case Studies in On-Line Measurement of PD in Motors Fed by Voltage Source PWM Drives G.C. Stone, I. Culbert, H.G. Sedding Qualitrol-Iris Power Mississauga, Ontario, Canada Abstract On-line partial discharge
A Practical Guide to Dielectric Testing
Chroma Systems Solutions, Inc. A Practical Guide to Dielectric Testing 19032 Series Electrical Safety Analyzer & 19050 Series Hipot Tester AC/DC/IR/SCAN Keywords: Dielectric tests, insulation resistance
PARTIAL DISCHARGE INCEPTION TESTING ON LOW VOLTAGE MOTORS
PARTIAL DISCHARGE INCEPTION TESTING ON LOW VOLTAGE MOTORS Copyright Material IEEE Paper No. PCIC-2004-27 Dennis Bogh Senior Member, IEEE GE - Motors 18628 182nd Ave NE Woodinville, WA 98077 USA Jeff Coffee
Investigation of the Residual-charge Technique for Diagnosis of Water-tree Deteriorated Cross-linked Polyethylene Cable
Investigation of the Residual-charge Technique for Diagnosis of Water-tree Deteriorated Cross-linked Polyethylene Cable Dr. Uchida Katsumi*, Youichi Katou*, Dr. Hiroyuki Kon, Dr. Kazuo Watanabe and Takenori
SPACE CHARGE ACCUMULATION UNDER THE EFFECTS OF TEMPERATURE GRADIENT ON SOLID DIELECTRIC DC CABLE
ISBN 978--658-9 Proceedings of the 6 th International Symposium on High Voltage Engineering Copyright c 9 SAIEE, Innes House, Johannesburg SPACE CHARGE ACCUMULATION UNDER THE EFFECTS OF TEMPERATURE GRADIENT
HOW GOOD ARE ELECTRICAL DIAGNOSTIC TESTS TO PREDICT WATER TREES IN HV CABLES AN EVALUATION USING OPTICAL MICROSCOPY
Journal of ELECTRICAL ENGINEERING, VOL. 56, NO. 1-2, 25, 31 35 HOW GOOD ARE ELECTRICAL DIAGNOSTIC TESTS TO PREDICT WATER TREES IN HV CABLES AN EVALUATION USING OPTICAL MICROSCOPY Motaheruddin Ahmed Mohammad
Harmonics and Noise in Photovoltaic (PV) Inverter and the Mitigation Strategies
Soonwook Hong, Ph. D. Michael Zuercher Martinson Harmonics and Noise in Photovoltaic (PV) Inverter and the Mitigation Strategies 1. Introduction PV inverters use semiconductor devices to transform the
Bourns Resistive Products
Bourns Resistive Products Diverse Requirements Drive Innovations to Pulse Resistors Introduction Countless circuits depend on the protection provided by one of the most fundamental types of passive components:
F05D Meeting on Damped AC Voltage Testing
October 28 th, 2008 from 03.30-5.30 pm in San Antonio, TX Agenda F05D Damped AC Voltage Testing 1 Agenda F05D Damped AC Voltage Testing Welcome: Introduction On-site testing voltages e.g. IEC 60060-3 High
Product Safety Considerations for Insulation Coordination of Low- Voltage Equipment. Scott Aldous, Compliance Engineer
Product Safety Considerations for Insulation Coordination of Low- Voltage Equipment Scott Aldous, Compliance Engineer What is Insulation Coordination? From IEC 60664-1, Edition 1.2: So what does that mean
Nano Meter Stepping Drive of Surface Acoustic Wave Motor
Proc. of 1st IEEE Conf. on Nanotechnology, Oct. 28-3, pp. 495-5, (21) Maui, Hawaii Nano Meter Stepping Drive of Surface Acoustic Wave Motor Takashi Shigematsu*, Minoru Kuribayashi Kurosawa*, and Katsuhiko
SPACE CHARGE MEASUREMENTS IN XLPE INSULATED MID VOLTAGE CABLE: CORRELATION WITH CABLE PERFORMANCE
SPACE CHARGE MEASUREMENTS IN XLPE INSULATED MID VOLTAGE CABLE: CORRELATION WITH CABLE PERFORMANCE Idalberto TAMAYO, Univ. Politècnica de Catalunya (ETSEIAT), (Spain), [email protected] Jordi ÒRRIT,
Development of a 500-kV DC XLPE Cable System
by Satoru Maruyama *, Noboru Ishii *, Michihiro Shimada *, Shinji Kojima * 2, Hideo Tanaka * 3, Mitsumasa Asano * 4, Tetsuya Yamanaka * 4, and Shin ichi Kawakami * 4 This paper describes development work
Calculating Creepage and Clearance Early Avoids Design Problems Later Homi Ahmadi
Calculating Creepage and Clearance Early Avoids Design Problems Later Homi Ahmadi One of the most common errors uncovered by product safety engineers stems from manufacturers and designers failing to fully
3.3 kv IGBT Modules. Takeharu Koga Yasuhiko Arita Takatoshi Kobayashi. 1. Introduction. 2. Specifications of 3.3 kv IGBT Module
3.3 kv IGBT Modules Takeharu Koga Yasuhiko Arita Takatoshi Kobayashi A B S T R A C T Fuji Electric has developed a 3.3 kv-1.2 ka IGBT module in response to market needs for inverters suitable for industrial
EMI in Electric Vehicles
EMI in Electric Vehicles S. Guttowski, S. Weber, E. Hoene, W. John, H. Reichl Fraunhofer Institute for Reliability and Microintegration Gustav-Meyer-Allee 25, 13355 Berlin, Germany Phone: ++49(0)3046403144,
White Paper. Safety Considerations When Using Optocouplers and Alternative Isolators for Providing Protection Against Electrical Hazards.
Safety Considerations When Using Optocouplers and Alternative Isolators for Providing Protection Against Electrical Hazards White Paper Introduction Optocouplers and alternative isolation technologies
Design and Simulation of Soft Switched Converter Fed DC Servo Drive
International Journal of Soft Computing and Engineering (IJSCE) ISSN: 2231-237, Volume-1, Issue-5, November 211 Design and Simulation of Soft Switched Converter Fed DC Servo Drive Bal Mukund Sharma, A.
TAN δ (DELTA) CABLE TESTING OVERVIEW AND ANSWERS TO FREQUENTLY ASKED QUESTIONS. What Is Tan δ, Or Tan Delta?
TAN δ (DELTA) CABLE TESTING OVERVIEW AND ANSWERS TO FREQUENTLY ASKED QUESTIONS What Is Tan δ, Or Tan Delta? Tan Delta, also called Loss Angle or Dissipation Factor testing, is a diagnostic method of testing
IEC 1000-4-2 ESD Immunity and Transient Current Capability for the SP72X Series Protection Arrays
IEC 00-4-2 ESD Immunity and Transient Current Capability for the SP72X Series Protection Arrays Application Note July 1999 AN9612.2 Author: Wayne Austin The SP720, SP721, SP723, and SP724 are protection
Influence of the Socket on Chip-level ESD Testing
266 PIERS Proceedings, Guangzhou, China, August 25 28, 2014 Influence of the Socket on Chip-level ESD Testing Yu Xiao 1, Jiancheng Li 2, Jianfei Wu 2, Yunzhi Kang 3, and Jianwei Su 1 1 P. O. Box 9010,
DDX 7000 & 8003. Digital Partial Discharge Detectors FEATURES APPLICATIONS
DDX 7000 & 8003 Digital Partial Discharge Detectors The HAEFELY HIPOTRONICS DDX Digital Partial Discharge Detector offers the high accuracy and flexibility of digital technology, plus the real-time display
Line Reactors and AC Drives
Line Reactors and AC Drives Rockwell Automation Mequon Wisconsin Quite often, line and load reactors are installed on AC drives without a solid understanding of why or what the positive and negative consequences
NEMA Magnet Wire Thermal Class Ratings
NEMA Magnet Wire Thermal Class Ratings How to Use Them, and How They are Derived Ron Beeckman Essex Group, Inc. Thermal Class of Magnet Wire is Based upon: Temperature Index: (ASTM): A number which permits
Application Bulletin AB-2 Isolator High Voltage Safety Standards
Application Bulletin AB-2 Isolator High Voltage Safety Standards IsoLoop Isolators have exceptional high-voltage performance and meet applicable safety standards. The standards summarized in this Bulletin
Electrical tests on PCB insulation materials and investigation of influence of solder fillets geometry on partial discharge
, Firenze, Italy Electrical tests on PCB insulation materials and investigation of influence of solder fillets geometry on partial discharge A. Bulletti, L. Capineri B. Dunn ESTEC Material and Process
SUITABILITY OF DIFFERENT TEST VOLTAGES FOR ON-SITE TESTING OF XLPE CABLE SYSTEMS
SUITABILITY OF DIFFERENT TEST VOLTAGES FOR ON-SITE TESTING OF XLPE CABLE SYSTEMS Michael Hensel HIGHVOLT Prüftechnik Dresden GmbH 2 3 Content 1 Introduction Test parameters and their significance Differences
Closed Loop PWM Control for Induction Motor Drive Using Dual Output Three Phase Inverter
Closed Loop PWM Control for Induction Motor Drive Using Dual Output Three Phase Inverter Archana.P 1, Karthick.R 2 Pg Scholar [PED], Department of EEE, CSI College of Engineering, Ketti, Tamilnadu, India
An Ethernet Cable Discharge Event (CDE) Test and Measurement System
An Ethernet Cable Discharge Event (CDE) Test and Measurement System Wei Huang, Jerry Tichenor ESDEMC Technology LLC Rolla, MO, USA [email protected] Abstract A Cable Discharge Event (CDE) is an electrostatic
A Practical Guide to Free Energy Devices
A Practical Guide to Free Energy Devices Device Patent No 29: Last updated: 7th October 2008 Author: Patrick J. Kelly This is a slightly reworded copy of this patent application which shows a method of
GUIDE FOR TESTING POWER TRANSFORMERS
GUIDE FOR TESTING POWER TRANSFORMERS Routine test 11/11/02 Pagina 1 di 10 INDEX Introduction... 3 1 Dielectric tests Separate-source voltage withstand test... 4 2 Induced voltage test... 5 3 Voltage ratio
Composite Electromagnetic Wave Absorber Made of Permalloy or Sendust and Effect of Sendust Particle Size on Absorption Characteristics
PIERS ONLINE, VOL. 4, NO. 8, 2008 846 Composite Electromagnetic Wave Absorber Made of Permalloy or Sendust and Effect of Sendust Particle Size on Absorption Characteristics K. Sakai, Y. Wada, and S. Yoshikado
MOBILE SYSTEM FOR DIAGNOSIS OF HIGH VOLTAGE CABLES (132KV/220KV) VLF-200 HVCD
MOBILE SYSTEM FOR DIAGNOSIS OF HIGH VOLTAGE CABLES (132KV/220KV) VLF-200 HVCD VERY LOW FREQUENCY (VLF) - PARTIAL DISCHARGES AND TANGENT DELTA HV/EHV POWER CABLES DIAGNOSTIC AND ON-SITE FIELD TESTING WITH
Simulation and Analysis of PWM Inverter Fed Induction Motor Drive
Simulation and Analysis of PWM Inverter Fed Induction Motor Drive C.S.Sharma, Tali Nagwani Abstract Sinusoidal Pulse Width Modulation variable speed drives are increasingly applied in many new industrial
Objectives. Electric Current
Objectives Define electrical current as a rate. Describe what is measured by ammeters and voltmeters. Explain how to connect an ammeter and a voltmeter in an electrical circuit. Explain why electrons travel
Avoiding AC Capacitor Failures in Large UPS Systems
Avoiding AC Capacitor Failures in Large UPS Systems White Paper #60 Revision 0 Executive Summary Most AC power capacitor failures experienced in large UPS systems are avoidable. Capacitor failures can
An extended EMC study of an electrical powertrain for transportation systems
European Association for the Development of Renewable Energies, Environment and Power Quality (EA4EPQ) International Conference on Renewable Energies and Power Quality (ICREPQ 12) Santiago de Compostela
Offshore Platform Powered With New Electrical Motor Drive System
Offshore Platform Powered With New Electrical Motor Drive System Authors: Jan O. Lamell, M.Sc E.E. ABB Automation Technologies Presenters: Thomas Johansson, M.Sc E.E. ABB Automation Technologies Timothy
THE OKONITE COMPANY. Ramsey, New Jersey 07446. 201.825.0300. Fax: 201.825.3524. www.okonite.com
THE OKONITE COMPANY Ramsey, New Jersey 07446. 201.825.0300. Fax: 201.825.3524. www.okonite.com Since its founding in 1878, the cornerstone of The Okonite Company s philosophy has been the complete evaluation
Why Buy HVI VLF Products?
Very Low Frequency AC Hipots AC testing of cables and electrical apparatus is now easier than ever. Since the introduction of the High Voltage, Inc. line of portable and affordable VLF hipots, there is
Features Benefits Description TO-247AC (Modified) Absolute Maximum Ratings Parameter Max Units
Bulletin PD -.338 rev. B /4 HEXFRED TM HFA5PB6 Ultrafast, Soft Recovery Diode Features Ultrafast Recovery Ultrasoft Recovery Very Low I RRM Very Low Q rr Specified at Operating Conditions Benefits Reduced
Introduction. Harmonics and IEEE 519 Page 1 of 19
Introduction In an ideal power system, the voltage supplied to customer equipment, and the resulting load current are perfect sine waves. In practice, however, conditions are never ideal, so these waveforms
Selecting IHLP Composite Inductors for Non-Isolated Converters Utilizing Vishay s Application Sheet
VISHAY DALE www.vishay.com Magnetics Selecting IHLP Composite Inductors for Non-Isolated Converters INTRODUCTION This application note will provide information to assist in the specification of IHLP composite
Power Quality For The Digital Age INVERTING SOLAR POWER A N E N V IRONME N TA L P OT E N T I A L S W HI T E PA PER. www.ep2000.com 800.500.
Power Quality For The Digital Age INVERTING SOLAR POWER A N E N V IRONME N TA L P OT E N T I A L S W HI T E PA PER Introduction Heat in the System The modern facility has been revolutionized by advancements
A MULTILEVEL INVERTER FOR SYNCHRONIZING THE GRID WITH RENEWABLE ENERGY SOURCES BY IMPLEMENTING BATTERY CUM DC-DC CONERTER
A MULTILEVEL INVERTER FOR SYNCHRONIZING THE GRID WITH RENEWABLE ENERGY SOURCES BY IMPLEMENTING BATTERY CUM DC-DC CONERTER 1 KARUNYA CHRISTOBAL LYDIA. S, 2 SHANMUGASUNDARI. A, 3 ANANDHI.Y 1,2,3 Electrical
DDX 7000 & 8003. Digital Partial Discharge Detectors FEATURES APPLICATIONS
DDX 7000 & 8003 Digital Partial Discharge Detectors The HAEFELY HIPOTRONICS DDX Digital Partial Discharge Detector offers the high accuracy and flexibility of digital technology, plus the real-time display
Yrd. Doç. Dr. Aytaç Gören
H2 - AC to DC Yrd. Doç. Dr. Aytaç Gören ELK 2018 - Contents W01 Basic Concepts in Electronics W02 AC to DC Conversion W03 Analysis of DC Circuits W04 Transistors and Applications (H-Bridge) W05 Op Amps
The full wave rectifier consists of two diodes and a resister as shown in Figure
The Full-Wave Rectifier The full wave rectifier consists of two diodes and a resister as shown in Figure The transformer has a centre-tapped secondary winding. This secondary winding has a lead attached
Automotive Electronics Council Component Technical Committee
AEC - Q101-005 - REV- ATTACHMENT 5 AEC - Q101-005 Rev- CAPACITIVE DISCHARGE MODEL (CDM) ELECTROSTATIC DISCHARGE (ESD) TEST METHOD - 005 DISCRETE COMPONENT CHARGED DEVICE MODEL (CDM) ELECTROSTATIC DISCHARGE
EFFICIENT ELECTRICAL ENERGY TRANSMISSION AND DISTRIBUTION INTERNATIONAL ELECTROTECHNICAL COMMISSION
EFFICIENT ELECTRICAL ENERGY TRANSMISSION AND DISTRIBUTION INTERNATIONAL ELECTROTECHNICAL COMMISSION EFFICIENT ELECTRICAL ENERGY TRANSMISSION AND DISTRIBUTION 1 EFFICIENT ELECTRICAL ENERGY TRANSMISSION
Charged cable event. 1 Goal of the ongoing investigation. 2 Energy sources for the CDE. Content
Charged cable event David Pommerenke, [email protected], 916 785 4550 Last update: Feb.23, 2001 Content Goal Energy sources, which may lead to CDE. Complexity of the different discharge modes. Possible
AN3022. Establishing the Minimum Reverse Bias for a PIN Diode in a High-Power Switch. 1. Introduction. Rev. V2
Abstract - An important circuit design parameter in a high-power p-i-n diode application is the selection of an appropriate applied dc reverse bias voltage. Until now, this important circuit parameter
SYNCHRONOUS MACHINE TESTING WITH MOTOR CIRCUIT ANALYSIS INSTRUMENTATION
SYNCHRONOUS MACHINE TESTING WITH MOTOR CIRCUIT ANALYSIS INSTRUMENTATION Introduction Howard W. Penrose, Ph.D., CMRP Vice President, Engineering and Reliability Services Dreisilker Electric Motors, Inc.
Lab 3 Rectifier Circuits
ECET 242 Electronic Circuits Lab 3 Rectifier Circuits Page 1 of 5 Name: Objective: Students successfully completing this lab exercise will accomplish the following objectives: 1. Learn how to construct
High-ohmic/high-voltage resistors
FEATURES These resistors meet the safety requirements of: UL1676 (range 510 kω to 11 MΩ) EN60065 BS60065 (U.K.) NFC 92-130 (France) VDE 0860 (Germany) High pulse loading capability Small size. APPLICATIONS
Clamp Filters that Suppress Emission Noise Provide Immunity Against Surge Noise
TDK EMC Technology Product Section Clamp Filters that Suppress Emission Noise Provide Immunity Against Surge Noise TDK Shonai Corporation Satoru Saito Reduce Emission Noise from Cables Even if an electronic
1700V Bi-Mode Insulated Gate Transistor (BIGT) on Thin Wafer Technology
1700V Bi-Mode Insulated Gate Transistor (BIGT) on Thin Wafer Technology Munaf Rahimo, Jan Vobecky, Chiara Corvasce ISPS, September 2010, Prague, Czech Republic Copyright [2010] IEEE. Reprinted from the
IEEE802.3poep Study Group Revision of isolation requirements in IEEE802.3 clause 33.
IEEE802.3poep Study Group Revision of isolation requirements in IEEE802.3 clause 33. San Francisco, July 2005 Arkadiy Peker Powerdsine [email protected] Yair Darshan Powerdsine [email protected]
Bipolar Junction Transistor Basics
by Kenneth A. Kuhn Sept. 29, 2001, rev 1 Introduction A bipolar junction transistor (BJT) is a three layer semiconductor device with either NPN or PNP construction. Both constructions have the identical
EMTP STUDIES PERFORMED TO INSERT LONG AC CABLES IN THE FRENCH GRID
Tension (kv) Impedance (Ohms) EMTP STUDIES PERFORMED TO INSERT LONG AC CABLES IN THE FRENCH GRID frequency (Hz) Simon DESCHANVRES Yannick VERNAY RTE, CNER, Substations Department t (ms) EMTP-RV Users Group
New Pulse Width Modulation Technique for Three Phase Induction Motor Drive Umesha K L, Sri Harsha J, Capt. L. Sanjeev Kumar
New Pulse Width Modulation Technique for Three Phase Induction Motor Drive Umesha K L, Sri Harsha J, Capt. L. Sanjeev Kumar Abstract In this paper, various types of speed control methods for the three
Electronics. Discrete assembly of an operational amplifier as a transistor circuit. LD Physics Leaflets P4.2.1.1
Electronics Operational Amplifier Internal design of an operational amplifier LD Physics Leaflets Discrete assembly of an operational amplifier as a transistor circuit P4.2.1.1 Objects of the experiment
Power over Ethernet plus Isolation requirements. David Law 3Com [email protected]
Power over Ethernet plus Isolation requirements David Law 3Com [email protected] Agenda History 10BASE2 and 10BASE5 10BASE-T DTE Power via MDI Analyses of Differences in DTE Power via MDI Recommendation
Diode Circuits. Operating in the Reverse Breakdown region. (Zener Diode)
Diode Circuits Operating in the Reverse Breakdown region. (Zener Diode) In may applications, operation in the reverse breakdown region is highly desirable. The reverse breakdown voltage is relatively insensitive
A bidirectional DC-DC converter for renewable energy systems
BULLETIN OF THE POLISH ACADEMY OF SCIENCES TECHNICAL SCIENCES Vol. 57, No. 4, 2009 A bidirectional DC-DC converter for renewable energy systems S. JALBRZYKOWSKI, and T. CITKO Faculty of Electrical Engineering,
High-Megawatt Converter Technology Workshop for Coal-Gas Based Fuel Cell Power Plants January 24, 2007 at NIST
Session 4a Enjeti 1 High-Megawatt Converter Technology Workshop for Coal-Gas Based Fuel Cell Power Plants January 24, 2007 at NIST Dr. Prasad Enjeti TI TI Professor Power Electronics Laboratory College
On-line PD Monitoring Makes Good Business Sense
On-line PD Monitoring Makes Good Business Sense An essential tool for asset managers to ensure reliable operation, improve maintenance efficiency and to extend the life of their electrical assets. Executive
RC NETWORKS SALES GUIDE
SALES GUIDE INTRODUCTION TO Recent developments in electronic equipment have shown the following trends: Increasing demands for numerical control machines, robotics and technically advanced appliances
2012 San Francisco Colloquium
2012 San Francisco Colloquium http : //www.cigre.org HVDC and Power Electronic Systems for Overhead Line and Insulated Cable Applications B4-8 Trans Bay Cable A Breakthrough of VSC Multilevel Converters
Principles of Adjustable Frequency Drives
What is an Adjustable Frequency Drive? An adjustable frequency drive is a system for controlling the speed of an AC motor by controlling the frequency of the power supplied to the motor. A basic adjustable
A Perspective on On-line Partial Discharge Monitoring to Assess the Insulation Condition of Rotating Machine Stator Winding Insulation
A Perspective on On-line Partial Discharge Monitoring to Assess the Insulation Condition of Rotating Machine Stator Winding Insulation G.C. Stone Iris Power-Qualitrol Mississauga, Canada [email protected]
Exploring the Necessity of the Hot Hipot Test
Exploring the Necessity of the Hot Hipot Test Introduction In an industry comprised of workers with varying electronics knowledge, a Hipot test can seem a daunting task for some. Indeed, many test operators
Cable Solutions for Servo and Variable Frequency Drives (VFD)
Cable Solutions for Servo and Variable Frequency Drives (VFD) Electric drive systems with continuous torque and speed control are widespread today. They allow an optimal adjustment of the drive with respect
A Study of a MV Cable Joint
SERBIAN JOURNAL OF ELECTRICAL ENGINEERING Vol. 7, No. 1, May 2010, 1-11 UDK: 621.315.35:537.212 A Study of a MV Cable Joint Radiša Dimitrijević 1, Neda Pekarić-Nađ 2, Miodrag Milutinov 3 Abstract: Construction
SECTION 2 Transmission Line Theory
SEMICONDUCTOR DESIGN GUIDE Transmission Line Theory SECTION 2 Transmission Line Theory Introduction The ECLinPS family has pushed the world of ECL into the realm of picoseconds. When output transitions
UNINTERRUPTIBLE POWER SUPPLIES >9900AUPS UNINTERRUPTIBLE POWER SUPPLIES
UNINTERRUPTIBLE POWER SUPPLIES 9900A >9900AUPS UNINTERRUPTIBLE POWER SUPPLIES 9900A The 9900A UPS system uses the most advanced IGBT in both the converter and inverter with Digital Signal Processor (DSP)
3.1.1 Full Type Tests & Routine Tests according to Clause 8 2 & 8 3. 4.0 Instructions For Installation, Operation & Maintenance
SPECIFICATION FOR LOW VOLTAGE SWITCHBOARD SEN I N D E X Description 10 STANDARD TECHNICAL REQUIREMENTS 11 Standards 12 General Operating Conditions 13 General Description Of Switchboard 131 Structure 132
Fault location on power cables. Fault location on power cables
Fault location on power cables Fault location on power cables Contents: 1. Introduction 2. Construction of power cables 3. Cable faults 01. Introduction Fault location on communication and power cables
Axial and Radial Leaded Multilayer Ceramic Capacitors for Automotive Applications Class 1 and Class 2, 50 V DC, 100 V DC and 200 V DC
Axial and Radial Leaded Multilayer Ceramic Capacitors for Automotive Applications Class 1 and Class 2, 5 V DC, 1 V DC and 2 V DC DESIGNING For more than 2 years Vitramon has supported the automotive industry
A Design of DC/DC Converter of Photovoltaic Generation System for Streetcars
Journal of International Council on Electrical Engineering Vol. 3, No. 2, pp.164~168, 2013 http://dx.doi.org/10.5370/jicee.2013.3.2.164 A Design of DC/DC Converter of Photovoltaic Generation System for
1 POLE - 5A SLIM POWER RELAY
POWER RELAY POLE - A SLIM POWER RELAY FTR-MY Series RoHS compliant FEATURES Width mm, height mm,(% smaller than NY series) area mm, super slim, low power, compact and light weight.gr. Nominal power: mw
Mineral Insulated Cable A cable for today and tomorrow!
Mineral Insulated Cable A cable for today and tomorrow! Bill Davis Technical and Business Development Director If MIC had never been introduced, the industry would be actively pursuing the development
AN1826 APPLICATION NOTE TRANSIENT PROTECTION SOLUTIONS: Transil diode versus Varistor
AN1826 APPLICATION NOTE TRANSIENT PROTECTION SOLUTIONS: Transil diode versus A. BREMOND / C. KAROUI Since the seventies, electronic modules are more and more present in our life. This is the case for our
AORC Technical meeting 2014
http : //www.cigre.org B1-196 AORC Technical meeting 214 Evaluation of Insulating Materials for HVDC Transmission Cable using Space Charge Measurement Y. TANAKA Tokyo City University Japan SUMMARY Some
Power-factor testing of rotating machinery is another valuable test
Feature Power-Factor Testing of Stator Winding Insulation: Understanding the Test Technique and Interpretation of Results Power-factor testing of rotating machinery is another valuable test technique providing
Power System Harmonics
Pacific Gas and Electric Company Power System Harmonics What are power system harmonics? Ideally, voltage and current waveforms are perfect sinusoids. However, because of the increased popularity of electronic
GenTech Practice Questions
GenTech Practice Questions Basic Electronics Test: This test will assess your knowledge of and ability to apply the principles of Basic Electronics. This test is comprised of 90 questions in the following
O&M Service for Megasolar Power Plants and Precise Monitoring Techniques for PV Modules
403 Hitachi Review Vol. 63 (2014), No. 7 Featured Articles O&M Service for Megasolar Power Plants and Precise Monitoring Techniques for PV Modules Tohru Kohno Tetsuharu Ohya Tomoharu Nakamura OVERVIEW:
38 Series - Relay interface modules 0.1-2 - 3-5 - 6-8 - 16 A
38 Series - Relay interface modules 0.1-2 - 3-5 - 6-8 - 16 A 38 SERIES Common features Instant ejection of relay by plastic retaining clip Integral coil indication and protection circuit EMR Electromechanical
Features. Symbol JEDEC TO-220AB
Data Sheet June 1999 File Number 2253.2 3A, 5V,.4 Ohm, N-Channel Power MOSFET This is an N-Channel enhancement mode silicon gate power field effect transistor designed for applications such as switching
Variable Frequency Drive Troubleshooting with U1610A/U1620A
Variable Frequency Drive Troubleshooting with U1610A/U1620A Application Note Electric motors form the backbone of most industrial and manufacturing environments. Variable frequency drives (VFDs) (also
PD Monitor GIS. 24/7 Partial Discharge (PD) monitoring system for Gas Insulated Switchgear. Benefits NEW PRODUCT
NEW PRODUCT PD Monitor GIS 24/7 Partial Discharge (PD) monitoring system for Gas Insulated Switchgear For automatic, continuous monitoring of mission critical GIS assets Benefits The most cost effective
1ED Compact A new high performance, cost efficient, high voltage gate driver IC family
1ED Compact A new high performance, cost efficient, high voltage gate driver IC family Heiko Rettinger, Infineon Technologies AG, Am Campeon 1-12, 85579 Neubiberg, Germany, [email protected]
SELECTION GUIDE. Nominal Input
www.murata-ps.com NKE Series FEATURES RoHS Compliant Sub-Miniature SIP & DIP Styles 3kVDC Isolation UL Recognised Wide Temperature performance at full 1 Watt load, 40 C to 85 C Increased Power Density
Guide to the electrical parameter classifications of IEC 60950 and IEC 62368 safety standards
Guide to the electrical parameter classifications of IEC 60950 and IEC 62368 safety standards Abstract This Guide is an informative listing of selected terms and definitions found in IEC Glossary entry
PRODUCT SPECIFICATION
ipass TM / ipass+ TM 0.8 mm PITCH I/O CONNECTOR SYSTEM EXTERNAL ipass / ipass+ of TABLE OF CONTENTS.0 SCOPE... 3.0 PRODUCT DESCRIPTION... 3. PRODUCT NAME AND SERIES NUMBER(S)... 3. DIMENSION, MATERIALS,
INDUCTION MOTOR PERFORMANCE TESTING WITH AN INVERTER POWER SUPPLY, PART 2
INDUCTION MOTOR PERFORMANCE TESTING WITH AN INVERTER POWER SUPPLY, PART 2 By: R.C. Zowarka T.J. Hotz J.R. Uglum H.E. Jordan 13th Electromagnetic Launch Technology Symposium, Potsdam (Berlin), Germany,
GLOLAB Two Wire Stepper Motor Positioner
Introduction A simple and inexpensive way to remotely rotate a display or object is with a positioner that uses a stepper motor to rotate it. The motor is driven by a circuit mounted near the motor and
