| Topologie | Abwärtswandler |
The output voltage transient of a buck regulator during a load current step is often a key performance specification. While there are many types of control topologies addressing special design challenges for non isolated DC/DC converter, including Voltage-mode control, peak current mode control, constant on-time (COT) control, D-CAP2 control mode a variation of adaptive constant-on time control mode, advanced emulated current mode (AECM).No single control topology is a good fit for all applications. The various control modes each has unique advantages. This note, we will provide a performance comparison of DC/DC converters operating in three different modes: PCM control mode, D-CAP2™ control mode (a derivative of constant on-time), and AECM control mode. These three control modes were all used widespread, none of these control modes require loop compensation which making the design simple.
Artikel Nr. | Datenblatt | Simulation | Downloads | Status | Produktserie | L(µH) | IRP,40K(A) | ISAT,10%(A) | ISAT,30%(A) | RDC max.(mΩ) | fres(MHz) | Montageart | Muster | |
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![]() | WE-LHMI SMT Speicherdrossel, 4.7 µH, 5.35 A | Status Aktivi| Produktion ist aktiv. Erwartete Lebenszeit: >10 Jahre. | ProduktserieWE-LHMI SMT Speicherdrossel | Induktivität4.7 µH | Performance Nennstrom5.35 A | Sättigungsstrom 17.5 A | Sättigungsstrom @ 30%15.5 A | Gleichstromwiderstand40 mΩ | Eigenresonanzfrequenz22 MHz | MontageartSMT |