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A leakage-current-compensation circuit is added to suppress the maximum leakage current of 10 nA.
However, the maximum leakage current in the off state is as much as ~9% of the on-state current level.
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By changing the source/drain bias-polarity, electrical properties of the NW-devices can be tuned, whether the lowest possible leakage current, or maximum output current is desirable in a specific logic application.
Note the fact that the maximum capacitance density was obtained at the annealing temperature of 500 °C; the leakage current for this case was studied in detail in the following.
Thus, the situation considered in this paper corresponds to figure 3(b) of Lowes (2009), i.e. the leakage current is zero at the substation and increases linearly reaching its maximum at the train.
In the second application we attempt to find an estimate for the maximum power-up current in circuits where power cut-off or gating techniques are used to reduce leakage current.
This is called leakage current.
AY1C-AgNP showed the maximum leakage of ~70% at a concentration of 60 μM.
A leakage current between the electrodes was measured during annealing.
However, thicker TaN layers show lower leakage current densities.
The only current that can flow from source to drain is a small leakage current.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com