HTS magnetic bearings are inherently stable without an active feedback system. They provide low frictional losses, no wear and allow operation at high rotational speed without lubrication. So they are very promising for use in motors, generators and turbines. We designed and constructed an HTS radia
Progress in HTS sampler development
β Scribed by H. Suzuki; T. Hato; M. Maruyama; H. Wakana; K. Nakayama; Y. Ishimaru; O. Horibe; S. Adachi; A. Kamitani; K. Suzuki; Y. Oshikubo; Y. Tarutani; K. Tanabe; T. Konno; K. Uekusa; N. Sato; H. Miyamoto
- Book ID
- 103890797
- Publisher
- Elsevier Science
- Year
- 2005
- Tongue
- English
- Weight
- 400 KB
- Volume
- 426-431
- Category
- Article
- ISSN
- 0921-4534
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β¦ Synopsis
This paper describes an overview of our plan and recent progress on the HTS sampler development with the aim of demonstrating its potential performance of a bandwidth over 100 GHz using a compact cryocooler. Several changes from the NECΓs former work have been made in the device fabrication process, the circuit design and the system design. We employed the HTS circuit process with a lower ground-plane structure, and improved the circuit design and the related packaging technology, which enabled a higher bandwidth. We have focused on observing 50 GHz waveforms by the sampler as the mid-point goal, and then succeeded in observing a 45 GHz sinusoidal waveform in magnetically coupled current measurement and a 50 GHz waveform in voltage measurement with a high-frequency module. An onchip sampler observing short-duration sampling pulse was also designed and the observation was successfully demonstrated.
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