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Dive into the research topics where Yosuke Mitani is active.

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Featured researches published by Yosuke Mitani.


symposium on vlsi circuits | 2012

A 10 MHz BW 50 fJ/conv. continuous time ΔΣ modulator with high-order single opamp integrator using optimization-based design method

Kazuo Matsukawa; Koji Obata; Yosuke Mitani; Shiro Dosho

This paper proposes a new power and area efficient circuit configurations, and also an optimization design method for such configurations. Two types of loopfilters are fabricated, one is a third-order integrator with single opamp for mobile TV-tuners (Modulator A) and the other is a fourth-order (Modulator B) for wide-band mobile receivers. Modulator A and Modulator B are fabricated in 65 nm and 40 nm CMOS processes, respectively. Results show that the new filter with an efficient optimization tool is a very powerful way to develop high efficient ΔΣ.


custom integrated circuits conference | 2010

A 69.8 dB SNDR 3 rd -order Continuous Time Delta-Sigma Modulator with an Ultimate Low Power Tuning System for a Worldwide Digital TV-Receiver

Kazuo Matsukawa; Yosuke Mitani; Masao Takayama; Koji Obata; Yusuke Tokunaga; Shiro Sakiyama; Shiro Dosho

This paper presents a 3rd-order continuous time delta-sigma modulator for a worldwide digital TV-receiver whose SNDR is 69.8 dB. An ultimate low power tuning system using RC-relaxation oscillator is developed in order to achieve high yield against PVT variations. A 3rd-order modulator with modified single opamp resonator contributes to cost reduction by realizing very compact circuit. The mechanism to occur 2nd-order harmonic distortion at current feedback DAC was analyzed and a reduction scheme of the distortion enabled the modulator to achieved FOM of 0.18 pJ/conv-step.


asia and south pacific design automation conference | 2009

Design methods for pipeline & delta-sigma A-to-D converters with convex optimization

Kazuo Matsukawa; Takashi Morie; Yusuke Tokunaga; Shiro Sakiyama; Yosuke Mitani; Masao Takayama; Takuji Miki; Akinori Matsumoto; Koji Obata; Shiro Dosho

In system LSIs, costs of analog circuits are getting increased relatively for rapid cost reduction of digital circuits. To satisfy given specifications in the analog design, including low power and small area, designers have to select an optimal solution among large combination of the following alternatives: which architecture should be adopted; what type of transistors should be taken; and whether digitally assisting technologies should be used or not, etc. A design based on experience and intuition cannot lead to the optimum in a short time. A comprehensive approach to the optimization, based on circuit theory, is now required. Convex optimization procedure can solve the formulae which represent circuit performance with over hundreds of design variables. We have constructed optimization environments for pipelined and delta-sigma analog-to-digital converters (ADCs) in consideration of the digitally assisting techniques and layout constraints. Both 12-bit pipelined ADCs and a 5th-order delta-sigma modulator were designed with the optimizer, and achieved top-ranked power efficiency.


Archive | 2004

Power supply for vehicle

Yosuke Mitani


Archive | 2002

Wireless headset and communication system

Toshiyuki Funayama; Mamoru Ito; Tadashi Katsukawa; Toshihiko Ohashi; Yosuke Mitani


symposium on vlsi circuits | 2009

A 5 th -order delta-sigma modulator with single-opamp resonator

Kazuo Matsukawa; Yosuke Mitani; Masao Takayama; Koji Obata; Shiro Dosho; Akira Matsuzawa


Archive | 2005

PLL modulation circuit and polar modulation apparatus

Yosuke Mitani; Shunsuke Hirano


Archive | 2011

DELTA-SIGMA MODULATOR AND WIRELESS COMMUNICATION DEVICE

Yosuke Mitani; Kazuo Matsukawa; Masao Takayama; Shiro Dosho


Archive | 2009

Integrator, resonator, and oversampling a/d converter

Shiro Dosho; Takashi Morie; Kazuo Matsukawa; Yosuke Mitani; Masao Takayama


Archive | 2011

Resonator and oversampling a/d converter

Shiro Dosho; Kazuo Matsukawa; Yosuke Mitani

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Shiro Dosho

Technische Universität Darmstadt

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Shiro Dosho

Technische Universität Darmstadt

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Akira Matsuzawa

Tokyo Institute of Technology

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