Topologie | Abwärtswandler |
Eingangsspannung | 90-265 V |
Ausgang 1 | 72 V / 0.14 A |
IC-Revision | 1.0 |
The MP4053-7/-15 is a high voltage Buck PFC offline LED lighting driver with an integrated 550V MOSFET. In a single seven pin SOIC package, itachieves high power factor (PF) and accurate LED current regulation. MP4053-7/-15 enables low cost, high performance LED driver solutionusing only a few external components.
The MP4053-7 is recommended for up to 5W non-isolated, PFC, non-dimmable LED solutions. The MP4053-15 is recommended for the samesolutions with maximum power rating of 10W.
The MP4053-7/-15 integrates power factor correction (PFC) and valley switching mode to reduce MOSFET switching losses.
The high-side driving mode directly samples the output current every cycle, providing excellent current precision.
To enhance system reliability and safety, the MP4053-7/-15 has multiple internally integrated protection features, including over-voltage protection (OVP), short-circuit protection (SCP), over-current protection (OCP), brown-out protection, over-temperature protection (OTP), cycle-by-cycle current limit, VCC under voltage lockout (UVLO), and auto-restart function.
Artikel Nr. | Datenblatt | Simulation | Downloads | Status | Produktserie | L (µH) | IR (A) | ISAT (A) | fres (MHz) | Version | Z @ 100 MHz (Ω) | Zmax (Ω) | Testbedingung Zmax | IR 2 (mA) | RDC max. (mΩ) | Typ | Muster | |
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7447720222 | SPEC | 8 Dateien | Aktiv i| Produktion ist aktiv. Erwartete Lebenszeit: >10 Jahre. | WE-TI Tonneninduktivität | 2200 | 0.29 | 0.35 | 1.1 | Standard | – | – | – | – | 4730 | – | |||
742792097 | SPEC | 8 Dateien | Aktiv i| Produktion ist aktiv. Erwartete Lebenszeit: >10 Jahre. | WE-CBF SMT-Ferrit | – | 0.7 | – | – | SMT | 1500 | 1800 | 70 MHz | 1000 | 300 | High Current |
Artikel Nr. | Datenblatt | Simulation | |
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7447720222 | SPEC | ||
742792097 | SPEC |
Muster |
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Artikel Nr. | Datenblatt | Simulation | Downloads | Status | Produktserie | L (µH) | IR (A) | ISAT (A) | fres (MHz) | Version | Z @ 100 MHz (Ω) | Zmax (Ω) | Testbedingung Zmax | IR 2 (mA) | RDC max. (mΩ) | Typ | Muster |
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