On-State Voltage Measurement of High-Side Power Transistors in Three-Phase Four-Leg Inverter for In-Situ Prognostics

Author(s):  
Chondon Roy ◽  
Namwon Kim ◽  
James Gafford ◽  
Babak Parkhideh
2020 ◽  
Author(s):  
Alessio Scanziani ◽  
Abdulla Alhosani ◽  
Qingyang Lin ◽  
Catherine Spurin ◽  
Gaetano Garfi ◽  
...  

2021 ◽  
pp. 002188632110665
Author(s):  
Synnøve Nesse ◽  
Inger G. Stensaker

Organizational crises, especially those of an extreme nature that include threats to survival and mass casualties, are deeply psychologically challenging for leaders. Previous research has focused on the effectiveness of leaders’ crisis management without much consideration for how leaders manage their own crisis reactions. This study was carried out in the crisis management facilities at the headquarters of a multinational energy corporation while a terrorist attack was ongoing in one of its subsidiaries. The unique access and data provide insights into how leaders react to crises and seek support by using different coping strategies. We develop a three-phase model (acceptance, psychological flexibility, and commitment) that illustrates the in-situ creation of a holding environment to support leaders in coping, not choking, under the pressure of a life-threatening crisis.


2018 ◽  
Vol 861 (2) ◽  
pp. 151 ◽  
Author(s):  
Stephan G. Heinemann ◽  
Manuela Temmer ◽  
Stefan J. Hofmeister ◽  
Astrid M. Veronig ◽  
Susanne Vennerstrøm

1994 ◽  
Vol 9 (2) ◽  
pp. 372-376 ◽  
Author(s):  
T. Harada ◽  
T. Kuji

In the process of crystallization of amorphous melt-spun Nd15Fe77Bx (x = 6–14) alloys, it was found that the crystallization behavior strongly depended upon the boron content even in the same equilibrium three-phase coexistence range. The Nd2Fe14B phase was crystallized directly from the amorphous state in the amorphous Nd-Fe-B materials with relatively lower boron content (Nd15Fe77B6 and Nd15Fe77B8 alloys). In contrast, the metastable body-centered-cubic (bcc) α-iron phase crystallized from the amorphous state prior to the crystallization of the Nd2Fe14B phase in the amorphous Nd-Fe-B materials with relatively higher boron content (Nd15Fe77B10, Nd15Fe77B12, and Nd15Fe77B14 alloys). The existence of the metastable bcc α-iron phase in the amorphous matrix was confirmed by TEM studies, magnetic measurements, and in situ observation by x-ray diffraction. The formation of the metastable phase stabilized the amorphous state, increasing the crystallization temperature of the Nd2Fe14B phase.


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