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Most of the development effort involved repurposing and integrating existing technologies and some existing commercial products, but several systems required a new approach. The goal was to provide near-instant communication capabilities for first responders.
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These lightweight, portable drones, equipped to serve as mobile communication base stations, were developed by a consortium of major telecommunications carriers. In Japan, a new system is being deployed that uses high-powered tethered drones to restore emergency communications within minutes of first responders' arrival on the scene. They count on cellular and internet services to coordinate the delivery of time-critical care to victims and restore essential services such as drinking water, food, and electricity. When natural disasters occur, restoring communications is essential for first responders. Rescue Drones Provide Life-Saving Communications for First Responders The company says that it expects to expand into other segments, beginning with lighting and server power, with future plans for renewable-energy systems and EVs.įor additional information, datasheets, and application notes, visit.
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All CGD's H1 Series transistors come with low-profile, low-inductance DFN packages that incorporate a Kelvin pin for optimized high-frequency, low-noise operation.ĬGD is initially targeting consumer applications that include mobile chargers, adapters for laptops, gaming and all-in-one (AIO) computers, and, in general, SMPS for consumer apps. It reduces power losses by up to 50%, as compared to a legacy silicon die.
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The result is a single-die solution that can be driven using standard, low-cost MOSFET drivers that requires no external protection components. The company’s unique fabrication technology also enabled the integration of several smart sense and protection features. Their benign, MOSFET-like characteristics facilitate upgrades of existing designs by replacing their silicon-based power devices. All H1 devices have a 3-V threshold voltage, real 0-V turnOFF, and a unique gate structure that can tolerate input voltages as high as 20 V. CGD’s H1 Series are single-chip eMode HEMT devices, based on the company's ICeGaN technology, which combines the ease-of-use offered by cascode configurations with the simplicity of single-die enhancement-Mode (normOFF) HEMTs.