DSCXXA065LP DIODES | Alldatasheet
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diodes.com Announcement New Product The DIODES Advantage These low-loss devices boost power density and efficiency, reducing cooling needs in compact designs. Diodes Incorporated has extended its silicon carbide (SiC) portfolio with a series of five high-performance low figure-of-merit (FOM) 650V SiC Schottky diodes. Rated at 4A, 6A, 8A, 10A, and 12A, the DSCxxA065LP series is packaged in the ultra-thermally efficient T-DFN8080-4 and is designed for high-efficiency power switching applications, such as DC-to-DC and AC-to- DC conversion, renewable energy, data centers (especially those that process heavy artificial intelligence (AI) workloads), and industrial motor drives. These SiC Schottky diodes offer superior power switching performance compared to silicon alternatives. They have negligible switching losses due to the absence of reverse recovery current and their low capacitive charge (QC), making them suitable for high-speed switching circuits. Their low forward voltage (VF) minimizes conduction losses and further increases overall power efficiency. These combine to provide an exceptionally low FOM, expressed as: FOM= QC x VF The devices’ compact and low-profile T-DFN8080-4 (typ. 8mm x 8mm x 1mm) surface mount package incorporates a large underside heat pad, providing reduced thermal resistance. This benefits circuit designs with increased power density, reduced overall solution size, and a lower cooling budget. T-DFN8080-4 is an ideal alternative for TO252 (DPAK). DSCxxA065LP ▪ Exceptionally Low FOM (QC x VF) Enables higher system efficiency designs, reducing running and cooling costs ▪ Minimal Reverse Leakage Current (IR = 20µA Max.) Minimizes heat dissipation ▪ High Temperature Operation up to 175°C Enhances system reliability in harsh environments ▪ Forward Voltage Positive Temperature Coefficient Ensures operational stability and supports device paralleling ▪ High Surge Current Capability Boosts robustness ▪ Totally Lead-Free and Fully RoHS Compliant Promotes environmentally responsible designs April 2025 The Diodes logo is a registered trademark of Diodes Incorporated in the United States and other countries. All other trademarks are the property of their respective owners. © 2025 Copyright Diodes Incorporated. All Rights Reserved. Applications Circuit Functions ▪ Power factor correction ▪ AC/DC & DC/DC converters ▪ Solar inverters ▪ Switched-mode power supplies ▪ AI server PSU, data centers ▪ Uninterruptible power supplies ▪ Motor drives ▪ PFC boost diodes ▪ Reverse-polarity protection ▪ Electrical over-stress protection ▪ Free-wheeling diodes ▪ Snubber circuits 650V SiC Schottky Diodes with Exceptionally Low FOM Provide Highest Efficiency for Power Solutions
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(Max.) IR (Typ.) IR (Max.) QC CT FOM Qc x Vf TJ Package V A A V µA µA nC pF °C DSC04A065LP 650 4 29 1.5 0.11 20 6 193 9 -55 to +175 T-DFN8080-4 DSC06A065LP 650 6 38 1.5 0.27 20 8 295 12 -55 to +175 T-DFN8080-4 DSC08A065LP 650 8 47 1.5 0.1 20 12 414 18 -55 to +175 T-DFN8080-4 DSC10A065LP 650 10 55 1.5 0.19 20 14 516 21 -55 to +175 T-DFN8080-4 DSC12A065LP 650 12 55 1.7 0.19 20 14 516 23.8 -55 to +175 T-DFN8080-4 Orderable Part Number Package Packing Quantity Carrier DSC04A065LP-13 T-DFN8080-4 2,500 Reel DSC06A065LP-13 T-DFN8080-4 2,500 Reel DSC08A065LP-13 T-DFN8080-4 2,500 Reel DSC10A065LP-13 T-DFN8080-4 2,500 Reel DSC12A065LP-13 T-DFN8080-4 2,500 Reel April 2025 DSCxxA065LP Typical Application PFC boost converter diode in SMPSU Exceptionally low FOM enables higher system efficiency See respective datasheets for test conditions DSC08A065LP