MHz switching frequency-based devices enable miniaturization of the DC-DC converter and EMI filters
Achieving EMI conducted emission compliance for automobiles with a single stage filter. By Nicola Rosano, Sr. Strategic FA/System Engineer at Vicor
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A full brick package developed by TDK-Lambda, the PF1500B-360, is for high voltage distributed power architectures
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As the industry moves to accelerate the transition to decarbonisation, there is a shift in demand towards installing energy infrastructure systems featuring DC fast chargers (DCFC), solar inverters and battery energy storage systems (BESS).
Adopting SiC-based power stages is critical in reducing power losses, increasing power density and reducing cooling costs, advises the distributor.
Typical applications for onsemi EliteSiC devices include UPS, DC/DC converters, boost inverters, solar inverters, electric vehicle charging stations and industrial power systems. These devices are Pb−free, halide free and RoHS-compliant.
Farnell now stocks the EliteSiC Power, single N-channel with typical low gate charge of 56nC and low effective output capacitance (typically 79pF) and a junction temperature of 175°C.
There is also the EliteSiC MOSFET NXH006P120MNF2 which consists of a 6m /1200V SiC MOSFET half bridge and a thermistor in an F2 package. It is available with or without pre−applied thermal interface material (TIM) and solderable or press−fit pins.
Adrian Cotterill, global product segment leader, transistors and WBG at Farnell, said: “This is a key addition to Farnell’s portfolio that will ensure energy infrastructure systems are developed using the highest calibre, best-of-breed components . . . highly optimised SiC products [which] meet the latest performance requirements of energy infrastructure end applications.”
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