BEGIN:VCALENDAR
VERSION:2.0
METHOD:PUBLISH
BEGIN:VEVENT
ORGANIZER:MAILTO:
DTSTART:20140528T140000Z
DTEND:20140528T150000Z
LOCATION:Online - Webex
SUMMARY:Adoption of 3D Gesture Technology using Microchip’s MGC3130
DESCRIPTION;ENCODING=QUOTED-PRINTABLE:Click here to view the Webinar video. pJRGvJQ.png The MGC3130 is a multi award winning 3D Gesture Controller based on Microchip&#39;s patented GestIC® technology. Using E-Field the MGC3130 provides pre-categorised gestures and X/Y/Z positional data which is available via I2C to the host . Today’s webinar will explain how the GestIC solution works and how the MGC3130 may be interfaced to various hosts including an 8-Bit PIC® microcontroller and a typical single board computer. Time will be spent looking at the Software Development Kit (SDK) and supporting documentation of the MGC3130 plus we will show how one of Microchip’s Field Applications Engineers rapidly built his own sensor electrode and interfaced the MGC3130 to a PIC MCU. Presenter: Thomas Lindner Thomas Lindner joined the GestIC Team in Gilching, Germany in 2012. As the head of the Application Engineering team, he is responsible for MGC3130 application development, development tools and all related documentation. He and his team are also in charge of the GestIC technical support for Microchip FAEs, Distributors and customers. RoadTest Plus Want to explore the potential of the 3D Gesture-Controlled MGC3130 Hillstar Dev Kit and potentially win a valuable prize? 3D Gesture-Controlled MGC3130 Hillstar Dev Kit .
X-ALT-DESC;FMTTYPE=text/html:<html><body><div style="padding-bottom:5px;font-size:1.1em;font-weight:bold;"><a class="jive-link-video-small" href="https://www.element14.com/community/videos/12279/l/adoption-of-3d-gesture-technology-using-microchip-s-mgc3130">Click here to view the Webinar video.</a></div><div style="padding-bottom:5px;"><a href="http://i.imgur.com/pJRGvJQ.png"><a href="http://i.imgur.com/pJRGvJQ.png">pJRGvJQ.png</a></a><strong>The MGC3130 is a multi award winning 3D Gesture Controller based on Microchip&#39;s patented GestIC® technology.</strong> Using E-Field the MGC3130 provides pre-categorised gestures and X/Y/Z&nbsp; positional data which is available via I2C to the host . Today’s webinar will explain how the GestIC solution works and how the MGC3130 may be interfaced to various hosts including an 8-Bit PIC® microcontroller and a typical single board computer. Time will be spent looking at the Software Development Kit (SDK) and supporting documentation of the MGC3130 plus we will show how one of&nbsp; Microchip’s&nbsp; Field Applications Engineers rapidly built his own sensor electrode and interfaced the MGC3130 to a PIC MCU.</div><div style="padding-bottom:5px;font-size:1.2em;font-weight:bold;">Presenter: Thomas Lindner</div><div style="padding-bottom:5px;">Thomas Lindner joined the GestIC Team in Gilching, Germany in 2012. As the head of the Application Engineering team, he is responsible for MGC3130 application development, development tools and all related documentation. He and his team are also in charge of the GestIC technical support for Microchip FAEs, Distributors and customers.</div><div style="padding-bottom:5px;font-size:1.2em;font-weight:bold;">RoadTest Plus</div><div style="padding-bottom:5px;">Want to explore the potential of the <a class="jive-link-roadTest" href="https://www.element14.com/community/roadTests/1305/l/3d-gesture-controlled-mgc3130-hillstar-dev-kit">3D Gesture-Controlled MGC3130 Hillstar Dev Kit</a> and potentially win a valuable prize?&nbsp; <a class="jive-link-roadTest" href="https://www.element14.com/community/roadTests/1305/l/3d-gesture-controlled-mgc3130-hillstar-dev-kit">3D Gesture-Controlled MGC3130 Hillstar Dev Kit</a>.</div></body></html>
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