We present novel electric and magnetic field measurement systems utilizing optical technologies, which have been developed, tested, and calibrated in the frequency region up to 2 GHz. They show an advantage over currently available measurement systems in that they are passive, all-dielectric, and EM immune. A detailed analysis of field perturbation by the measuring probes in the near-field region was performed using finite-difference time-domain (FDTD) algorithm for solving Maxwell's equations. Both probes were calibrated using a gigahertz transversal electric and magnetic cell, and the results show a linear response
The goal of this paper is to show that commercial sensors, whose frequency response is not specific...
International audienceNear-field scan is a powerful method to diagnose EMC issues. Some of related a...
Measuring magnetic fields of equipment under test at low frequencies which is received by loop anten...
This paper presents a novel electric field measurement system utilizing optical technology, which ha...
This article describes the frequency response and the applications of the optical electric-field sen...
This article describes an optical sensor that can accurately measure electric-field strength at freq...
Nondestructive evaluation is commonly used in science and industry to evaluate the properties of a m...
Nondestructive evaluation is commonly used in science and industry to evaluate the properties of a m...
Near-field probing is often used to measure the electric and magnetic fields above a printed circuit...
This dissertation presents new characterization methods for high-frequency circuits and devices util...
A novel setup, based on the use of non-invasive dielectric field probes, and employing accurate and ...
Abstract: In this paper, a D-dot electric field sensor and a fiber-optic transmission electric field...
We present two different AC magnetic field sensing configurations exploiting the Faraday effect in t...
This paper presents the design of the optical system of a current sensor with a wide bandwidth and a...
This thesis is focused on a study of CdTe and CdZnTe semiconductor detectors working under high flux...
The goal of this paper is to show that commercial sensors, whose frequency response is not specific...
International audienceNear-field scan is a powerful method to diagnose EMC issues. Some of related a...
Measuring magnetic fields of equipment under test at low frequencies which is received by loop anten...
This paper presents a novel electric field measurement system utilizing optical technology, which ha...
This article describes the frequency response and the applications of the optical electric-field sen...
This article describes an optical sensor that can accurately measure electric-field strength at freq...
Nondestructive evaluation is commonly used in science and industry to evaluate the properties of a m...
Nondestructive evaluation is commonly used in science and industry to evaluate the properties of a m...
Near-field probing is often used to measure the electric and magnetic fields above a printed circuit...
This dissertation presents new characterization methods for high-frequency circuits and devices util...
A novel setup, based on the use of non-invasive dielectric field probes, and employing accurate and ...
Abstract: In this paper, a D-dot electric field sensor and a fiber-optic transmission electric field...
We present two different AC magnetic field sensing configurations exploiting the Faraday effect in t...
This paper presents the design of the optical system of a current sensor with a wide bandwidth and a...
This thesis is focused on a study of CdTe and CdZnTe semiconductor detectors working under high flux...
The goal of this paper is to show that commercial sensors, whose frequency response is not specific...
International audienceNear-field scan is a powerful method to diagnose EMC issues. Some of related a...
Measuring magnetic fields of equipment under test at low frequencies which is received by loop anten...