S. Anbarasu

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This paper describes that improving the life time of sensor by optimizing the energy utilized by the sensor. It is very difficult to replace the battery and also it is very expensive.The energy efficient communication is achieved by choosing the perfect modulation scheme and optimizing the Signal to Noise Ratio. The work also focused on optimal SNR exists(More)
Single crystals of 8-HydroxyQuinoline (8-HQ) and Benzophenone substituted 8-HydroxyQuinoline (B8-HQ) are grown by slow evaporation of acetone at room temperature. Coloured crystals of 8-HQ and B8-HQ with good optical quality of dimensions 54 × 3 × 1.5 mm and 27 × 3 × 1 mm are harvested. Single crystal X-ray diffractometer was utilized to measure the unit(More)
It is so complicate to present clock generator for GALS (Globally Asynchronous Locally Synchronous) MPSoCs (Multiprocessor Systems-onchip) and here we are going to produce ADPLL (All-Digital Phase-Locked Loop) clock generator that consumes very low power of 2.7 mW and it has very small chip area of 0.0078 mm. These ADPLL clock generators are used in(More)
We Propose Balanced, Localized, Robust, Dynamic state changing and energy efficient spanning tree approaches for Wireless sensor networks which we call Balanced energy Efficient Spanning Tree with Sleep scheduling(BEESP-SS). In this paper first we construct the spanning tree based on RNG(Relative Neighborhood Graph) after that we find the minimum spanning(More)
In the cation of the title mol-ecular salt, C5H6N3O2 (+)·C2HO4 (-), the dihedral angle between the aromatic ring and the nitro group is 3.5 (3)°; in the anion, the dihedral angle between the CO2 and CO2H planes is 10.5 (2)°. In the crystal, the anions are linked into [100] chains by O-H⋯O hydrogen bonds. The cations cross-link the chains by way of N-H⋯O(More)
The title mol-ecular salt, C5H6N3O2 (+) ·H2NO3S(-), was obtained from the reaction of sulfamic acid with 2-amino-5-nitro-pyridine. A proton transfer from sulfamic acid to the pyridine N atom occurred, resulting in the formation of a salt. As expected, this protonation leads to the widening of the C-N-C angle of the pyridine ring, to 122.9 (3)°, with the(More)
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