Circuits and Systems

Circuits and Systems

ISSN Print: 2153-1285
ISSN Online: 2153-1293
www.scirp.org/journal/cs
E-mail: cs@scirp.org
"Design and Optimization of Printed Circuit Board Inductors for Wireless Power Transfer System"
written by Ashraf B. Islam, Syed K. Islam, Fahmida S. Tulip,
published by Circuits and Systems, Vol.4 No.2, 2013
has been cited by the following article(s):
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[2] A Comprehensive Study on Next-Generation Electromagnetics Devices and Techniques for Internet of Everything (IoE)
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[3] Geometrical parameter optimization of planner square-shaped printed spiral coil for efficient wireless power transfer system to biomedical implant application
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[10] Partial discharge detection with on-chip spiral inductor as a loop antenna
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[11] A 6.78-MHz distance-insensitive wireless power transfer system with a dual-coupled L-type matching network
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[12] AC MAGNETIC FLUX DENSITY STANDARDS AND THEIR USE IN METROLOGY
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[14] Etalony Střídavé Magnetické Indukce a Jejich Využití v Metrologii
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[15] Investigation on Temperature Dependent Inductance (TDI) of a planar Multi-Layer Inductor (MLI) down to 4.2 K
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[16] Tuning Range Comparison Between Different Planar Inductors Layouts on PCB
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[17] Improvement of Magnetic Field for Near-Field WPT System Using Two Concentric Open-Loop Spiral Resonators
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[18] Design and integration of planar inductances on PCB application passive type filters
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[19] Thin-Film Flexible Wireless Pressure Sensor for Continuous Pressure Monitoring in Medical Applications
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[20] " Looking Through Walls"–Actuator Position Measurement Through a Conductive Wall
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[21] Computer-Aided Developments: Electronics and Communication: Proceeding of the First Annual Conference on Computer-Aided Developments in …
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[22] Computer-Aided Developments: Electronics and Communication
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[23] Modeling and Simulation of Multilayer Rectangular Coils for Wireless Power Transfer Applications
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[24] 균일한 자기장을 갖는 무선마우스 급전패드 및 리시버 설계
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[25] Inductor design for inkjet-printed electronics
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[26] Design of Multiple-Receiving WPT System Using Ferrite-Embedded LTCC
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[27] Enhancement of Wireless Powering Process
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[28] Design of Free-Positioning Transmitter and Receiver Coils for A Wireless Mouse
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[29] Design of fractal spiral inductor for wireless applications
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[30] Comparative Study of Different Materials for High Frequency Tag Antenna for Radio Frequency Identification (RFID) Applications
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[31] Design of PCB search coils for AC magnetic flux density measurement
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[32] Design Optimization of Multiple-Layer PSCs with Minimal Losses for Efficient and Robust Inductive Wireless Power Transfer
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[33] Textile-based flexible coils for wireless inductive power transmission
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[34] An automated design flow for synthesis of optimal multi-layer multi-shape PCB coils for inductive sensing applications
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[35] Double Layer, Printed, Racetrack Coil Wireless Power Supply with Receiver Coil Phase Shift Arrangement
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[36] CONTACTLESS POWER SUPPLY SYSTEM FOR ROTATING TELEMETRY APPLICATIONS
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[37] Fast numerical method for computing resonant characteristics of electromagnetic devices based on finite-element method
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[38] Fast numerical method for computing resonant characteristics of electromagnetic devices based on finite element method
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[39] The Investigation of Substrate's Dielectric Properties for Improving the Performance of Witricity Devices.
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[40] Simulation of coil separation and angle effects on the mutual inductance for 13.56 MHz WRAP sensors
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[41] PSC Optimization of 13.56-MHz Resistive Wireless Analog Passive Sensors
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[42] High-Q multipath parallel stacked inductor
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[43] A multilayer planar inductor based proximity sensor operating at 4.2 K
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[44] Modelização de antenas de comunicações sem fio na área do corpo e desenvolvimento de uma aplicação para engenharia de reabilitação
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[45] Study of Conical Coil Transmitters in Near-Field Communications
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[46] The investigation of substrate's dielectric properties for improving the performance of witricity devices
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[47] Design and modelling of two-layer inductor on PCB substrate
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[48] Design methodology of a printed WPT system for HF-band mid-range applications considering human safety regulations
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[49] Analysis and Optimization of Three-Resonator Wireless Power Transfer System for Predetermined-Goals Wireless Power Transmission
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[50] Formal method for PSC design optimization of 13.56 MHz resistive Wireless Analog Passive Sensors (rWAPS)
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[51] Performance characterization of variable width square coils for inductive link wireless power transfer
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[52] Hand gesture & proximity sensing using wireless power transfer coil: Analysis and application
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[53] Design and Optimization of Printed Antennas for Wireless Powering
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[54] Brezžična komunikacija kratkega dosega za povezavo z mobilnimi napravami
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[55] A 3-D Stacked High- PI-Based MEMS Inductor for Wireless Power Transmission System in Bio-Implanted Applications
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[56] A 3-D Stacked High-$ Q $ PI-Based MEMS Inductor for Wireless Power Transmission System in Bio-Implanted Applications
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[57] A 3-D Stacked High-Q PI-Based MEMS Inductor for Wireless Power Transmission System in Bio-Implanted Applications
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[58] THE EFFECT OF ELECTROMAGNETIC COUPLING VIA PLANAR SPIRAL INDUCTOR FOR WIRELESS POWER TRANSFER
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[59] Design and Implementation of an ASK Signal Transmission Circuit with Wireless Power
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[60] Impedimetry and potentiometry for the design of paper-based biosensors
[61] Compact Multi-Coil Inductive Power Transfer System with a Dynamic Receiver Position Estimation
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