The Tokyo Tech InfoSyEnergy Research and Education Consortium, the Tokyo Tech Academy of Energy and Informatics (Head of Consortium and Academy Director Manabu Ihara, Prof.), and several companies ...
A novel coordination polymer-based photocatalyst for CO 2 reduction exhibits unprecedented performance, giving scientists at Tokyo Tech hope in the fight against global warming. Made from abundant ...
A technology for the three-dimensional integration of processing units and memory, as reported by researchers from Tokyo Tech, has achieved the highest attainable performance in the whole world, ...
A new D-band CMOS transceiver chipset with 56 GHz signal-chain bandwidth achieves the highest transmission speed of 640 Gbps for a wireless device realized with integrated circuits, as reported by ...
The Global Scientific Information and Computing Center (GSIC) at Tokyo Tech started operation of its next-generation supercomputer, TSUBAME 4.0, on April 1. Since TSUBAME1.0 started operation in April ...
Scientists at Tokyo Tech have developed an advanced phase-locked loop (PLL) 1 frequency synthesizer that can drastically cut power consumption. This digital PLL could be an attractive building block ...
Scientists at the Tokyo Institute of Technology (Tokyo Tech) have come up with a new technique to evaluate the mechanical forces generated in polymer crystallization as they cool down from their ...
Fuel cells offer a promising solution for clean energy by combining hydrogen and oxygen to generate electricity, with only water and heat produced as byproducts. They consist of an anode, a cathode, ...
Emeritus Professor Fumio Koyama of Tokyo Institute of Technology (Specially Appointed Professor at the Institute of Innovative Research) has been selected as the recipient of the 2024 IEEE Nick ...
世界最速の640 Gbpsの伝送速度を達成するCMOS送受信ICを開発 次世代無線通信での周波数候補であるD帯(110-170 GHz)で動作 超高速通信を用いた新サービスの創出や次世代通信インフラへの応用を ...
A movable seawall system, capable of generating sufficient electricity to raise gates and protect ports against tsunamis, has been proposed by researchers from Tokyo Tech. The system has been found ...
独自のナノカプセル化手法により超難溶性ポリマーを水溶化 水溶化によるポリマーの詳細な構造解析と物性評価を達成 カプセルからの取り出しでポリマーフィルムを簡便に作製 東京工業 ...
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