IJEARST Volume 1, Issue 2, JUNE 2020 Edition


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NEURAL NETWORK BASED EFFICIENT GLAUCOMA DETECTION USING DENET []


Glaucoma is a chronic eye disease that leads to irreversible vision loss. The cup to disc ratio (CDR) plays an important role in the screening and diagnosis of glaucoma.


DESIGNING AN IN EXACT MULTIPLIER WITH LOW POWER BY USING HYBRID HIGH RADIX ENCODING []


Approximate computing forms a design alternative that exploits the intrinsic error resilience of various applications and produces energy-efficient circuits with small accuracy loss.


RELIABLE AND LOW DENSITY BASED ERRRO CORRECTION IN SRAM CELLS []


TCAMs are commonly implemented as standalone devices or as an intellectual property block that is integrated on networking application-specific integrated circuits.


APC AND OMS BASED LUT DESIGN FOR MULTIPLIER APPLICATIONS []


Recently, we have proposed the antisymmetric product coding (APC) and odd-multiple-storage (OMS) techniques for lookup-table (LUT) design for memory-based multipliers tobe used in digital signal processing applications.


AN EFFICIENT AND LOW POWER SAR ADC DESIGN WITH 14.6-FJ/CONVERSION-STEP []


Design of a low power Successive Approximation Register Analog to Digital Converter (SAR ADC) in 45nm CMOS Technology for biopotential acquisition systems is presented. It is designed by using a high threshold voltage (Vt) cell to reduce power dissipation.


DESIGN OF HIGH PERFORMANCE FULL ADDER CIRCUIT USING GDI TRANSISTOR LOGIC2 []


The current age of technology advancement it is necessary to design different new concepts to reduce area of the cell as well as power consumption.


LATENCY OPTIMIZED PARALLEL IN PARALLEL OUT EFFICIENT RB MULTIPLIER []


Low power consumption and smaller area are some of the most important criteria for the fabrication of DSP systems and high performance systems. Optimizing the speed and area of the multiplier is a major design issue.


LOW DENSITY AND LOW COMPLEX MODULAR MULTIPLIERS FOR POLYNOMIALS USING RADIX 16 MODIFIED BOOTH ALGORITHM []


By using irreducible AOP, an effective recursive formulation is proposed implies systolic implementation of these finite field multiplications over GF (2m)



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