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Current mode enables operation down to 3 V thus is suitable for battery powered applications.
The dual control modes and its wide potential range make it especially suitable for battery characterization.
The techniques presented here provide the framework for building highly power efficient video sensor systems suitable for battery powered, wireless operation.
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Also, lower number of subband switchings make the proposed scheme power-efficient and suitable for battery-operated cognitive radio terminals.
The light source in the sensor consumes less than 5 mW of power and the total power consumption is still low enough to make it suitable for battery-powered devices.
A 20% power supply voltage drop causes only a 3% change in amplifier gain and 0.9-bit resolution degrading for SAR ADC while the on-chip data modulation reduces the chip size, rendering the designed chip suitable for battery-powered applications.
The electrochemical stability window of these polymer electrolytes, as determined by linear sweep voltammetry, extends up to 5 V, suggesting that these electrolytes could be suitable for batteries that use high voltage cathode materials.
But DSPs are power hungry and not suitable for battery-operated communications equipment.
The amplifier consumes 0.6 μA in idle mode, which makes it suitable for battery-powered applications.
Accordingly, the DEGDME-based solution appears to be more suitable for sodium battery applications.
Second, the methods have low computational cost, thus suitable for embedded battery management systems (BMSs) with constrained computing capabilities.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com