Takiba
Akira Takiba, Kanagawa-Ken JP
Patent application number | Description | Published |
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20120068755 | LEVEL SHIFTER - According to one embodiment, a level shifter includes a high-side switch and a low-side switch. The high-side switch is connected between a high-potential power supply and a connection point and turned on in accordance with an input signal. The low-side switch is connected between the connection point and a low-potential power supply and turned on in accordance with an input signal. A ratio between ON resistance of the high-side switch and ON resistance of the low-side switch is set in accordance with a signal difference between an output signal and the input signal. The output signal is outputted to the connection point. | 03-22-2012 |
20130015883 | CMOS LOGIC INTEGRATED CIRCUITAANM HORI; ChikahiroAACI Kanagawa-kenAACO JPAAGP HORI; Chikahiro Kanagawa-ken JPAANM Takiba; AkiraAACI Kanagawa-kenAACO JPAAGP Takiba; Akira Kanagawa-ken JP - A CMOS logic integrated circuit includes a level shifter and a CMOS logic circuit. The level shifter converts a signal of a first logic level to a signal of a second logic level. The signal of the first logic level changes between a first low potential and a first high potential higher than the first low potential. The signal of the second logic level changes between the first low potential and a second high potential higher than the first high potential. The CMOS logic circuit includes a first N-channel type MOSFET and a second N-channel type MOSFET. The second N-channel type MOSFET is connected in series with the first N-channel type MOSFET. A first signal of the first logic level is input into a gate of the first N-channel type MOSFET. A second signal of the second logic level has an inversion relationship with the first signal. | 01-17-2013 |
20140118049 | LEVEL SHIFT SWITCH AND ELECTRONIC DEVICE WITH THE SAME - According to one embodiment, in a level shift switch, a first input signal is inputted into a first input-output terminal, a first output signal is outputted from a second input-output terminal, a second input signal is inputted into the second input-output terminal, a second output signal is outputted from the first input-output terminal. The level shift switch includes a transmission circuit, a first MOSFET, a second MOSFET, and a first one-shot pulse generation circuit. | 05-01-2014 |
Akira Takiba, Yokohama-Shi JP
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20130002332 | BUS SWITCH CIRCUIT - A bus switch circuit according to an embodiment includes a signal transmission circuit connected between a first terminal and a second terminal. The bus switch circuit includes a first switch element controlled by a first control signal. The bus switch circuit includes a second switch element controlled by a second control signal. The bus switch circuit includes a delay signal generating circuit that outputs a delay signal based on a first signal varying with a first voltage applied to the first terminal and a second signal varying with a second voltage applied to the second terminal. The bus switch circuit includes a control signal generating circuit that outputs the first control signal and the second control signal based on the first signal, the second signal, and the delay signal. | 01-03-2013 |
Akira Takiba, Kanagawa JP
Patent application number | Description | Published |
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20140361637 | BUS SWITCHING CIRCUIT - A bus switching circuit includes a bus switching element which is connected between a first input/output terminal and a second input/output terminal, a first switching element which is connected between the second input/output terminal and a first voltage wiring, and a second switching element which is connected between the second input/output terminal and the first voltage wiring, the second switching element having an internal resistance to an electric current flowing therethrough which is larger than that of the first switching element. The bus switching circuit further includes a signal generation circuit which controls the first switching element and the second switching element by outputting the first control signal and the second control signal based on a result of the comparison between a first voltage applied to the first input/output terminal and a first threshold value. | 12-11-2014 |