Minimizing simultaneous switching noise at reduced power with constant-voltage power transmission lines for high-speed signaling

Signal and power integrity are crucial for ensuring high performance in high speed digital systems. As the operating frequency of digital systems increases, the power and ground bounce created by simultaneous switching noise (SSN) has become a limiting factor for the performance of these devices. SS...

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Hauptverfasser: Telikepalli, S., Swaminathan, M., Keezer, D.
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description Signal and power integrity are crucial for ensuring high performance in high speed digital systems. As the operating frequency of digital systems increases, the power and ground bounce created by simultaneous switching noise (SSN) has become a limiting factor for the performance of these devices. SSN is caused by parasitic inductance that exists in the power delivery network (PDN), and voltage fluctuations on the power and ground rails can lead to reduced noise margins and can limit the maximum frequency of a digital device. A new PDN design has been suggested that achieves significantly reduced SSN [1] by replacing the power plane structure with a power transmission line (PTL). In this paper, a new power delivery scheme called Constant Voltage Power Transmission Line (CV-PTL) is shown to significantly reduce switching noise while also lowering power consumption. This concept has been demonstrated through theory, simulation, and measurements.
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1948-3295
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source IEEE Electronic Library (IEL) Conference Proceedings
subjects Noise
Power delivery network
Power supplies
power transmission line
Power transmission lines
Resistors
simultaneous switching noise
Switches
Transmission line measurements
Vehicles
title Minimizing simultaneous switching noise at reduced power with constant-voltage power transmission lines for high-speed signaling
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