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About anilkrpandey

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Area of specialization:
Electromagnetic Design and Simulation, RF, Microwave, Antennas and Optic
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Anil Pandey is currently a master level technical leader in RnD field.He also worked 4 year as Scientist in Indian Space research organization (ISRO). He received his Bachelor of Engineering (ECE) in 2001 from Kumaon University, Nainital, and Master of Technology (Microwave Engineering) from Indian Institute of Technology (IIT-BHU), Varanasi in 2003. He has more than 16 years’ experience in Antenna Design, RF, Microwave, Signal Integrity and Power Integrity analysis for high speed systems. His areas of interest are antenna design, signal integrity, power integrity, EMI/EMC and RF/Microwave circuits. Anil Pandey has served as a reviewer for many international journals, such as IET, ACES and Antenna Journal and has been. He has delivered invited talks in various conferences and institutions including IIT Jodhpur, SSPL Delhi etc. He has more than 40 international and Nation research publications to his credit. He is author of book titled "Practical Microstrip and Printed Antenna Design". Apart from academics, his hobbies are creative writing and reading books.
RF and Microwave


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2nd June 2020 15:25
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15th April 2020
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Recent Entries

Capacitive RF MEMS Switch Design and Simulation

by anilkrpandey on 14th October 2017 at 13:25
The switching is required in many applications at low as well as at high frequency. RF MEMS switches are the specific micromechanical switches that are designed to operate at RF to mmWave frequencies. MEMS switches usages some mechanical movement to achieve a closed or open circuit in the Radio Frequency transmission lines. GaAs FET switches do not have sufficient isolations to minimize cross interference and signal jamming from channels is close proximity. MEMS switches provide high isolation

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RFID Tag and Reader Antennas

by anilkrpandey on 26th March 2017 at 16:24
RFID stands for Radio-Frequency Identification. The RFID device provides a unique identifier for that object and just as a bar code or magnetic strip the RFID device must be scanned to retrieve the identifying information.

RFID System Working Principal (details in Book "Practical Microstrip and Printed Antenna Design")

A RFID system has three parts:

A scanning antenna
A transceiver with a decoder to interpret the data
A transponder

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Updated 1st November 2019 at 10:46 by anilkrpandey

RF & Microwave Designs

Helix (Helical) Antenna Design

by anilkrpandey on 13th March 2017 at 12:36

The helix antenna is a travelling wave antenna, which means the current travels along the antenna and the phase varies continuously. Helix antennas (also commonly called helical antennas) invented by John Kraus give a circular polarized wave. Helix antennas are referred to as axial-mode helical antennas. The benefits of this helix antenna are it has a wide bandwidth, is easily constructed, has real input impedance, and can produce circularly polarized fields.

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Printed Conformal Antennas Design

by anilkrpandey on 1st March 2017 at 03:46
In many applications pertaining to missile, satellite, spacecraft and aircraft a directive antenna mounted on a curved body is required. Conforming the antenna to the surface save space and is often essential for structural reasons. An antenna that conforms to a surface whose shape is determined by considerations other than electromagnetic; for example, aerodynamic or hydrodynamic called conformal Antenna. Microstrip antenna technology is most suitable for conformal applications because of their

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Updated 1st November 2019 at 10:43 by anilkrpandey

RF & Microwave Designs

Time Domain Reflectometry (TDR) Analysis of Transmission Lines

by anilkrpandey on 18th February 2017 at 04:32

Time Domain Reflectometry is the analysis of conductor lines (interconnects)by sending a pulsed signal into the conductor and then examining the reflection of that pulse. A TDR transmits a short rise time pulse along the conductor. If the conductor is of a uniform impedance and is properly terminated, the entire transmitted pulse will be absorbed in the far-end termination and no signal will be reflected toward the TDR. Any impedance discontinuities will cause

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Updated 18th February 2017 at 06:35 by anilkrpandey

Signal Integrity and Power Integrity