(çi̥taꜜtɕi) is a Japanese multinational conglomerate corporation headquartered in Chiyoda, Tokyo, Japan. It is the parent company of the Hitachi Group (Hitachi Gurūpu) and had formed part of the Nissan zaibatsu and later DKB Group and Fuyo Group of companies before DKB and Fuji Bank (the core Fuyo Group company) merged into the Mizuho Financial Group. As of 2020, Hitachi conducts business ranging from IT, including AI, the Internet of Things, and big data, to infrastructure.
Hitachi is listed on the Tokyo Stock Exchange and Nagoya Stock Exchange and its Tokyo listing is a constituent of the Nikkei 225 and TOPIX Core30 indices. It is ranked 38th in the 2012 Fortune Global 500 and 129th in the 2012 Forbes Global 2000.
Hitachi was founded in 1910 by electrical engineer Namihei Odaira (1874–1951) in Ibaraki Prefecture. The company's first product was Japan's first induction motor, initially developed for use in copper mining.
The company began as an in-house venture of Fusanosuke Kuhara's mining company in Hitachi, Ibaraki. Odaira moved headquarters to Tokyo in 1918. Odaira coined the company's toponymic name by superimposing two kanji characters: hi meaning "sun" and tachi meaning "rise".
World War II had a significant impact on the company with many of its factories being destroyed by Allied bombing raids, and discord after the war. Founder Odaira was removed from the company and Hitachi Zosen Corporation was spun out. Hitachi's reconstruction efforts after the war were hindered by a labor strike in 1950. Meanwhile, Hitachi went public in 1949.
Hitachi America, Ltd. was established in 1959.
The Soviet Union started to produce air conditioners in 1975. The Baku factory was established under the license of the Japanese company, Hitachi. Volumes of production of air conditioners in the USSR were small, about 500,000 per year. However air conditioners were a matter of great pride. Mainly window air conditioners were produced. Most of the output was exported.
Hitachi Europe, Ltd. was established in 1982.
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The development of new industrial applications has diverted the focus of research towards compacter and faster rotatory drives. These requirements push the classical ball-bearings of electric motors to the limits in terms of operational lifetime and fricti ...
The objective of this PhD thesis is the development of a microfluidic platform for the real-time measurements of the mechanical properties of biological analytes at the single entity level.The systems developed for these purposes consist of piezoelectrical ...
EPFL2022
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In this work, we report the concept and experimentally demonstrate the first tunable ferroelectric (Fe) junctionless (JL) transistor (Fe-JLFET), capable of emulating the functionality of biological tri-partite synapses, which is an artificial three-termina ...