DASY8/6 Module WPT V2.0: Enhanced and Fast WPT Compliance Testing
SPEAG released DASY8/6 Module WPT V2.0, which integrates the new MAGPy Version 2 with the DASY8/6 system and provides 8-times faster, more accurate, and total field (magnetic and electric field) compliance testing of sources emitting any periodic signals (<10 MHz) against the basic restrictions.
The latest version of our DASY8/6 Module WPT, V2.0, is now based on MAGPy Version 2 and takes full advantage of this stand-alone product. Evaluating wireless power transfer (WPT) systems has never been so quick and easy with maximum precision:
8× faster measurements, as the new probes allow assessment of the eight isotropic magnetic (H-)field probes (23 sensors plus phase) at each robot position;
Simultaneous measurement of the incident electric (E-)field with its integrated isotropic E-field sensor;
Evaluation of periodic signals with non-sinusoidal waveforms and duty cycles;
Evaluation of all basic restriction quantities, now also including the local non-averaged induced E-field required by ISED;
Conversion of the measured H-field distribution into a Maxwell field and calculation of the fields in the standardized phantom without loss of precision (Tier 4 of IEC 63184);
Conservative estimation of the fields induced in the tissue by the incident E-field according to Christ et al. (Bioelectromagnetics, 43(7), 2022).
This user video shows how the MAGPy Version 2 probe, integrated with DASY8/6 Module WPT V2.0, is used to determine compliance for wireless power transfer devices.
Another important advantage is the dual use of the MAGPy system as a hand-held system (MAGPy Version 2) and as part of Module WPT (DASY8/6 Module WPT V2.0), as customers only need to buy and calibrate one device.
If you have any suggestions or would like to receive further information, please contact us at info@speag.swiss.
cSAR3D is now 10 times faster, measures and displays the specific absorption rate (SAR) three times per second, and offers validated measurements from 300 MHz – 10 GHz.
SPEAG is pleased to announce the release of SEMCAD X Matterhorn V19.2, our full-wave 3D electromagnetic (EM) simulation software and specialized subpackage of Sim4Life. The new version not only comes with an improved user experience and a smoother look and feel but also with important new features, refinements, and bug fixes.
SPEAG has released DASY6 Module mmWave V2.2 together with the MEO and API Options. Version 2.2 fulfills all requirements of the Final Draft of the IEC/IEEE 63195-1/-2 and offers the necessary features for MIMO testing and for testing automation above 6 GHz.
SPEAG is delighted to announce the release of MAGPy V1-0, our first high-end handheld system that empowers users to demonstrate compliance in the very close near field of wireless power transfer systems and other high-current industrial systems. MAGPy V1-0 meets all requirements of the latest draft of IEC/IEEE63184 PAS.
Breakthrough in computational electromagnetics by the IT’IS Foundation leads to SPEAG’s second-generation device for dielectric characterization of samples with limited size or volume.
SPEAG’s new cDASY6 Module WPT is the first-ever solution to demonstrate compliance with the basic restrictions of any magnetic source according to the latest IEC/IEEE63184 DPAS draft. The module is based on SPEAG’s new MAGPy product line.
In October, FCC issued new interim procedures for demonstrating compliance between 6 – 10 GHz. Just a few weeks later, we are happy to provide a scientifically rigorous solution that enables DASY6 users to meet these new requirements.
SPEAG are pleased to announce SEMCAD X Matterhorn V19.0, ourfull-wave 3D electromagnetic (EM) simulation softwareand specialized subpackage of Sim4Life V6.0.
With the release of cSAR3D V4.0, SPEAG introduces the novel X10 Combiner for high-resolution measurements. It enables SAR and absorbed power density testing from 6 – 10 GHz while also improving the overall measurement accuracy..
This website applies cookies to personalize your experience and to make our site easier to navigate. By visiting the site, you are agreeing to this use and to our Privacy Policy.