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首页 > 电子元器件选型 > 耐热支撑装置 > 散热片

530714B00000G

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530714B00000G
已加入BOM:

Heat Sink, 20.3ohm, Fin, U, Transverse, Aluminum, Anodized, ROHS COMPLIANT

市场均价:
¥5.5008
市场总库存:
8,626
生命周期状态: Active
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参考设计

(13)
Ten Output QR Flyback and Buck Converter Reference Design
PMP10822.1: The PMP10822 reference design utilizes two QR flyback, and four buck converters. The efficiency for the 12V and 24V flyback approaches 87%, while the 16V buck converter has efficiency greater than 89%.
Ten Output QR Flyback and Buck Converter Reference Design - PMP10822.10 - TI Tool Folder
PMP10822: The PMP10822 reference design utilizes two QR flyback, and four buck converters. The efficiency for the 12V and 24V flyback approaches 87%, while the 16V buck converter has efficiency greater than 89%.
Ten Output QR Flyback and Buck Converter Reference Design
PMP10822.9: The PMP10822 reference design utilizes two QR flyback, and four buck converters. The efficiency for the 12V and 24V flyback approaches 87%, while the 16V buck converter has efficiency greater than 89%.
Ten Output QR Flyback and Buck Converter Reference Design
PMP10822.6: The PMP10822 reference design utilizes two QR flyback, and four buck converters. The efficiency for the 12V and 24V flyback approaches 87%, while the 16V buck converter has efficiency greater than 89%.
Ten Output QR Flyback and Buck Converter Reference Design
PMP10822.10: The PMP10822 reference design utilizes two QR flyback, and four buck converters. The efficiency for the 12V and 24V flyback approaches 87%, while the 16V buck converter has efficiency greater than 89%.
Ten Output QR Flyback and Buck Converter Reference Design
PMP10822.3: The PMP10822 reference design utilizes two QR flyback, and four buck converters. The efficiency for the 12V and 24V flyback approaches 87%, while the 16V buck converter has efficiency greater than 89%.
Ten Output QR Flyback and Buck Converter Reference Design
PMP10822.8: The PMP10822 reference design utilizes two QR flyback, and four buck converters. The efficiency for the 12V and 24V flyback approaches 87%, while the 16V buck converter has efficiency greater than 89%.
Ten Output QR Flyback and Buck Converter Reference Design
PMP10822.2: The PMP10822 reference design utilizes two QR flyback, and four buck converters. The efficiency for the 12V and 24V flyback approaches 87%, while the 16V buck converter has efficiency greater than 89%.
Ten Output QR Flyback and Buck Converter Reference Design
PMP10822.4: The PMP10822 reference design utilizes two QR flyback, and four buck converters. The efficiency for the 12V and 24V flyback approaches 87%, while the 16V buck converter has efficiency greater than 89%.
Ten Output QR Flyback and Buck Converter Reference Design - PMP10822.9 - TI Tool Folder
PMP10822: The PMP10822 reference design utilizes two QR flyback, and four buck converters. The efficiency for the 12V and 24V flyback approaches 87%, while the 16V buck converter has efficiency greater than 89%.
Ten Output QR Flyback and Buck Converter Reference Design - PMP10822.6 - TI Tool Folder
PMP10822: The PMP10822 reference design utilizes two QR flyback, and four buck converters. The efficiency for the 12V and 24V flyback approaches 87%, while the 16V buck converter has efficiency greater than 89%.
Ten Output QR Flyback and Buck Converter Reference Design
PMP10822.7: The PMP10822 reference design utilizes two QR flyback, and four buck converters. The efficiency for the 12V and 24V flyback approaches 87%, while the 16V buck converter has efficiency greater than 89%.
Ten Output QR Flyback and Buck Converter Reference Design
PMP10822.5: The PMP10822 reference design utilizes two QR flyback, and four buck converters. The efficiency for the 12V and 24V flyback approaches 87%, while the 16V buck converter has efficiency greater than 89%.
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