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A sintered Mg2Si target was subjected to ArF‐excimer pulsed laser deposition for preparing Mg2Si droplets on an unheated silicon substrate. Transmission electron microscopy observation revealed that droplets deposited on a chemically treated porous silicon substrate were inhomogeneous, and contained at least two precipitate phases of magnesium silicide. One was identified as cubic β‐phase Mg2Si precipitates...
Power integrity has became a serious issue in the advanced CMOS digital systems, because power supply noise must be suppressed to guarantee normal logic operation and its stability. Therefore, chip-package-board co-design has become important by taking into consideration the total impedance seen from the chip. Especially, parallel resonance peaks in the power distribution network (PDN) due to the...
Power integrity is a serious issue in the in the modern CMOS digital systems, because power supply noise excited in core circuits induces logic instability and electromagnetic radiation. Therefore, chip-package co-design is becoming important by taking into consideration the total impedance of power distribution network (PDN) seen from the chip. Especially, parallel resonance peaks in the PDN due...
Power integrity design has been becoming important in the advanced CMOS digital systems, because power supply noise induces logic instability and electromagnetic radiation. Especially, anti-resonance peaks in power distribution network (PDN) due to the chip-package interaction induce the unwanted power supply fluctuation, and result in large electromagnetic radiation. In this paper, power supply noises...
Power integrity design has become a critical issue in digital electronic systems, as advanced CMOS LSIs operate at higher clock frequency and at lower supply voltage. Power supply fluctuation excited by core circuits or I/O buffer circuits induces logic instability and electromagnetic radiation. Therefore, total impedance of power distribution network (PDN) must be taking into consideration in the...
Power integrity is a serious issue in the modern CMOS digital systems, because power supply noise excited in core circuits induces logic instability and electromagnetic radiation. Therefore, chip-package co-design is becoming important by taking into consideration the total impedance of power distribution network (PDN) seen from the chip. Especially, parallel resonance peaks in the PDN due to the...
Power integrity design has been becoming important in the advanced CMOS digital systems, because power supply noise induces logic instability and electromagnetic radiation. Especially, anti-resonance peaks in power distribution network (PDN) due to the chip-package interaction induce the unwanted power supply fluctuation, and result in large electromagnetic radiation. In this paper, effects of damping...
Power integrity design is a critical issue for advanced CMOS LSIs which operate at higher clock frequency and at lower supply voltage. Power supply fluctuation excited by core circuits or I/O buffer circuits induces logic instability and electromagnetic radiation. Therefore, total impedance of power distribution network (PDN) must be designed as low as possible in the chip-package-board co-design...
Power integrity is a serious issue in the modern CMOS digital systems, because power supply noise excited in core circuits induces logic instability and electromagnetic radiation. Therefore, chip-package co-design is becoming important by taking into consideration the total impedance of power distribution network (PDN) seen from the chip. Especially, parallel resonance peaks in the PDN due to the...
As CMOS LSIs operate at higher clock frequency and at lower supply voltage, power integrity is becoming a critical issue to maintain digital electronic systems more stable. Power supply fluctuation excited by core circuits or I/O circuits induces logic instability and electromagnetic radiation. Therefore, total impedance of power distribution network (PDN) must be taking into consideration in the...
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