Startseite Energiemanagement AC/DC- und DC/DC-Controller (externer FET)

UCC24624

AKTIV

Synchroner Hochfrequenz-Dual-Gleichrichtercontroller für LLC-Wandler

Produktdetails

Vin (max) (V) 26 Operating temperature range (°C) -40 to 125 Control mode VDS sensing Topology LLC Rating Catalog Features Automatic Standby Mode, Dual Channel, Proportional gate drive, Synchronous Rectifier, USB C/PD compatible
Vin (max) (V) 26 Operating temperature range (°C) -40 to 125 Control mode VDS sensing Topology LLC Rating Catalog Features Automatic Standby Mode, Dual Channel, Proportional gate drive, Synchronous Rectifier, USB C/PD compatible
SOIC (D) 8 29.4 mm² 4.9 x 6
  • 230-V VD pins rating
  • 23-ns turn-off delay to support LLC operating above resonant frequency and up to 625-kHz switching frequency
  • Proportional gate drive to extend the SR conduction time
  • Adjustable turn-off threshold for minimum body diode conduction
  • Automatic standby mode detection with 180 µA of low standby current
  • Wide 4.25-V to 26-V VDD operation range with internal clamp
  • Adaptive turn-on delay for better DCM ring rejection
  • Two-channel interlock to prevent shoot-through
  • Integrated 1.5-A source and 4-A sink capability gate driver for N-channel MOSFETs
  • 8-pin SOIC package
  • 230-V VD pins rating
  • 23-ns turn-off delay to support LLC operating above resonant frequency and up to 625-kHz switching frequency
  • Proportional gate drive to extend the SR conduction time
  • Adjustable turn-off threshold for minimum body diode conduction
  • Automatic standby mode detection with 180 µA of low standby current
  • Wide 4.25-V to 26-V VDD operation range with internal clamp
  • Adaptive turn-on delay for better DCM ring rejection
  • Two-channel interlock to prevent shoot-through
  • Integrated 1.5-A source and 4-A sink capability gate driver for N-channel MOSFETs
  • 8-pin SOIC package

The UCC24624 high-performance synchronous rectifier (SR) controller is dedicated for LLC resonant converters to replace the lossy diode output rectifiers with SR MOSFETs and improve the overall system efficiency.

The UCC24624 SR controller uses drain-to-source voltage sensing method to achieve on and off control of the SR MOSFET. Proportional gate drive is implemented to extend the SR conduction time, minimize the body diode conduction time. To compensate for the offset voltage caused by the SR MOSFET parasitic inductance, the UCC24624 implements an adjustable positive turn-off threshold to accommodate different SR MOSFET packages. UCC24624 has a built-in 475-ns on-time blanking and a fixed 650-ns off-time blanking to avoid SR false turn-on and turn-off. UCC24624 also integrates a two-channel interlock function that prevents the two SRs from being on at the same time. With 230-V voltage-sensing pins and 28-V ABS maximum VDD rating, it can be directly used in converters with output voltage up to 24.75 V. The internal clamp allows the controller to support 36-V output voltage easily by adding an external current limiting resistor on VDD.

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The UCC24624 high-performance synchronous rectifier (SR) controller is dedicated for LLC resonant converters to replace the lossy diode output rectifiers with SR MOSFETs and improve the overall system efficiency.

The UCC24624 SR controller uses drain-to-source voltage sensing method to achieve on and off control of the SR MOSFET. Proportional gate drive is implemented to extend the SR conduction time, minimize the body diode conduction time. To compensate for the offset voltage caused by the SR MOSFET parasitic inductance, the UCC24624 implements an adjustable positive turn-off threshold to accommodate different SR MOSFET packages. UCC24624 has a built-in 475-ns on-time blanking and a fixed 650-ns off-time blanking to avoid SR false turn-on and turn-off. UCC24624 also integrates a two-channel interlock function that prevents the two SRs from being on at the same time. With 230-V voltage-sensing pins and 28-V ABS maximum VDD rating, it can be directly used in converters with output voltage up to 24.75 V. The internal clamp allows the controller to support 36-V output voltage easily by adding an external current limiting resistor on VDD.

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Technische Dokumentation

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Typ Titel Datum
* Data sheet UCC24624 Dual-Channel Synchronous Rectifier Controller for LLC Resonant Converters datasheet (Rev. C) PDF | HTML 28 Feb 2022
White paper Optimizing a Synchronous Rectification Scheme in CLLLC PDF | HTML 23 Jul 2024
Technical article High-frequency resonant converter design considerations, Part 2 PDF | HTML 21 Dez 2023
Application note Configs of Secondary Rectifier Circuit for LLC Resonant Converter Using UCC24624 PDF | HTML 21 Dez 2021
Application note Design Considerations With Dual-Channel SR Controller UCC24624 04 Jun 2020
Technical article How to reduce audible noise and power consumption at standby in your AC/DC design PDF | HTML 22 Apr 2020
EVM User's guide PFCLLCSREVM-034 User Guide 26 Jul 2019
Technical article Three considerations for achieving high efficiency and reliability in industrial A PDF | HTML 04 Apr 2019
EVM User's guide The UCC24624EVM-015 LLC Gate Driver Evaluation Module (Rev. A) 04 Dez 2018
Application note Improving ZVS and efficiency in LLC converters 05 Nov 2018
Application brief Boosting LLC Resonant Converter Efficiency by Using the UCC24624 23 Okt 2018

Design und Entwicklung

Weitere Bedingungen oder erforderliche Ressourcen enthält gegebenenfalls die Detailseite, die Sie durch Klicken auf einen der unten stehenden Titel erreichen.

Evaluierungsplatine

PFCLLCSREVM034 — AC-zu-isoliertes DC-EVM mit UCC28056B, UCC256404 und UCC24624

PFCLLCSREVM034 is a 168-W AC/DC supply with a transition-mode power-factor-correction front end and isolated half-bridge LLC resonant converter with synchronous rectification. This EVM accepts AC input from 90 Vrms to 264 Vrms and outputs 12-V DC with 168-W full-load output power.

Benutzerhandbuch: PDF
Tochterkarte

UCC24624EVM — UCC24624 LLC Gate-Treiber-Evaluierungsmodul

The UCC24624EVM-015 evaluation module (EVM) is used to convert the output rectifier of a LLC converter from diodes to synchronous rectifiers (SR) FETs to investigate and evaluate the efficiency benefits of using an SR over a rectifier diode.
Benutzerhandbuch: PDF
Simulationsmodell

UCC24624 SIMPLIS Model (Rev. A)

SLUM645A.ZIP (1115 KB) - SIMPLIS Model
Referenzdesigns

TIDA-010080 — AC/DC-Referenzdesign für Analogsteuerung mit 500 W, > 94,5 % Wirkungsgrad für 5G-Telekommunikationsg

Dieses kompakte, hocheffiziente Referenzdesign mit einem Ausgang von 48 VDC und 500 W zielt auf die Stromversorgung von 5G-Telekommunikationsnetzen und industriellen AC/DC-Stromversorgungen ab. Der Schaltkreis besteht aus einer CCM-Schaltung (Continuous Conduction Mode) zur (...)
Design guide: PDF
Schaltplan: PDF
Referenzdesigns

TIDA-010081 — Referenzdesign für AC/DC-Analogsteuerung mit >95 % Wirkungsgrad und 1 kW für 5G-Telekommunikationsgl

This compact, high efficiency reference design with a 54-V DC, 1000-W output targets 5G telecom power and industrial AC/DC power supplies. The circuit consists of a front-end continuous conduction mode (CCM) power factor correction (PFC) circuit based on the UCC28180, followed by a robust LLC (...)
Design guide: PDF
Schaltplan: PDF
Referenzdesigns

PMP21683 — Referenzdesign für 48-V/550-W-Resonanzwandler

This resonant converter reference design takes a 380-V to 420-V DC input and generates a 48-V up to 550-W output. With the UCC256302 driver-integrated resonant converter controller and UCC24624, a two-channel synchronous rectifier (SR) driver, this design can achieve 97.95% peak efficiency.
Test report: PDF
Schaltplan: PDF
Gehäuse Pins CAD-Symbole, Footprints und 3D-Modelle
SOIC (D) 8 Ultra Librarian

Bestellen & Qualität

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  • Qualifikationszusammenfassung
  • Kontinuierliches Zuverlässigkeitsmonitoring
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