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LM2901DR

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LM2901DR
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Comparator, 4 Func, 15000uV Offset-Max, 1300ns Response Time, BIPolar, PDSO14, LEAD FREE, SOIC-14

市场均价:
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市场总库存:
2,364
生命周期状态: Obsolete
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LM2901 ON Semiconductor 也适用于 MC3302DR2G ,LM2901NG ,NCV2901DTBR2G 等其余30个型号

参考设计

(9)
High-Eff 2Stage Univ Input Pwr Supply Using Trans Mode PFC/LLC Resonant Conv Reference Design
PMP8920: Low EMI, high efficiency, high power factor and reliable power supply are main focus of the PMP8920 design for telecom applications. Transient mode (TM) power factor correction (PFC) with UCC28051 and LLC series resonant converter (SRC) with UCC25600 are applied in PMP8911. In addition, synchronous rectifier (SR) IC UCC24610 is applied to LLC output rectifier stage. Low EMI is expected with zero voltage switching on TM-PFC and LLC-SRC switches. An overall 91% efficiency is achieved at 100W full load. In addition, several protections are embedded into this design which includes input under-voltage protection, input over-voltage protection, output over-voltage protection, and output hic-cup over-power protection.
Sync Buck for Global Systems for Mobile (GSM) (6.5V @ 7.5A)
PMP1908.2: This design implements three sync buck converters with remote sensing and built-in-test (BIT) functionality. Overall efficiency is greater than 90%.
Sync Buck for Global Systems for Mobile (GSM) (1.4V @ 3.2A)
PMP1908.1: This design implements three sync buck converters with remote sensing and built-in-test (BIT) functionality. Overall efficiency is greater than 90%.
PMP8920 High-Eff 2Stage Univ Input Pwr Supply Using Trans Mode PFC/LLC Resonant Conv Reference Design | TI.com
PMP8920: Low EMI, high efficiency, high power factor and reliable power supply are main focus of the PMP8920 design for telecom applications. Transient mode (TM) power factor correction (PFC) with UCC28051 and LLC series resonant converter (SRC) with UCC25600 are applied in PMP8911. In addition, synchronous rectifier (SR) IC UCC24610 is applied to LLC output rectifier stage. Low EMI is expected with zero voltage switching on TM-PFC and LLC-SRC switches. An overall 91% efficiency is achieved at 100W full load. In addition, several protections are embedded into this design which includes input under-voltage protection, input over-voltage protection, output over-voltage protection, and output hic-cup over-power protection.
PMP1908 Sync Buck for Global Systems for Mobile (GSM) (3.3V @ 6A) | TI.com
PMP1908: This design implements three sync buck converters with remote sensing and built-in-test (BIT) functionality. Overall efficiency is greater than 90%.
Sync Buck for Global Systems for Mobile (GSM) (1.4V @ 3.2A) - PMP1908.1 - TI Tool Folder
PMP1908: This design implements three sync buck converters with remote sensing and built-in-test (BIT) functionality. Overall efficiency is greater than 90%.
Sync Buck for Global Systems for Mobile (GSM) (3.3V @ 6A)
PMP1908.3: This design implements three sync buck converters with remote sensing and built-in-test (BIT) functionality. Overall efficiency is greater than 90%.
Sync Buck for Global Systems for Mobile (GSM) (6.5V @ 7.5A) - PMP1908.2 - TI Tool Folder
PMP1908: This design implements three sync buck converters with remote sensing and built-in-test (BIT) functionality. Overall efficiency is greater than 90%.
PMP1908 Sync Buck for Global Systems for Mobile (GSM) (3.3V @ 6A) | TI.com
PMP1908: This design implements three sync buck converters with remote sensing and built-in-test (BIT) functionality. Overall efficiency is greater than 90%.
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