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ルネサス エレクトロニクス株式会社 (Renesas Electronics Corporation)
Advanced Double-Ended PWM Controller

パッケージ情報

CADモデル:View CAD Model
Pkg. Type:QSOP
Pkg. Code:MLK
Lead Count (#):16
Pkg. Dimensions (mm):4.9 x 3.9 x 1.47
Pitch (mm):0.6

環境及び輸出分類情報

Moisture Sensitivity Level (MSL)2
Pb (Lead) FreeYes
ECCN (US)EAR99
HTS (US)8542.39.0090
RoHS (ISL6742BAAZA-T)ダウンロード

製品スペック

Pkg. TypeQSOP
Lead Count (#)16
Carrier TypeReel
Moisture Sensitivity Level (MSL)2
Pb (Lead) FreeYes
Pb Free CategoryPb-Free 100% Matte Tin Plate w/Anneal-e3
Temp. Range (°C)-40 to +105°C
Control ModeVoltage, Peak Current, or Average Current Mode
Duty Cycle (%)100 - 100
FET Driver Output Current (Max) (A)0.01
Length (mm)4.9
MOQ2500
No-Load Operating Current7.5 mA (typ), 12mA (max)
Output Per Driver UGATE Source|Sink0.01|0.01
PWMs (#)4
Parametric CategoryHalf-Bridge & Hard-Switched Full Bridge Controllers
Pitch (mm)0.6
Pkg. Dimensions (mm)4.9 x 3.9 x 1.47
Qualification LevelStandard
Switching Frequency (KHz)2000 - 2000
Thickness (mm)1.47
Topology CharacteristicHalf-Bridge or Full Bridge (Telecom) Hard SW
Topology [Rail 1]Double-Ended
UVLO Falling (V)7
UVLO Rising (V)8.75
VBIAS (Max) (V)20
Width (mm)3.9

説明

The ISL6742B is a high-performance double-ended PWM controller with advanced synchronous rectifier control and current limit features. It is suitable for both current- and voltage-mode control methods. The ISL6742B includes complemented PWM outputs for Synchronous Rectifier (SR) control. The complemented outputs may be dynamically advanced or delayed relative to the main outputs using an external control voltage. Its advanced current sensing circuitry employs sample and hold methods to provide a precise average current signal. Suitable for average current limiting, a technique which virtually eliminates the current tail-out common to peak current limiting methods, it is also applicable to current sharing circuits and average current mode control. This advanced BiCMOS design features an adjustable oscillator frequency up to 2MHz, internal over-temperature protection, precision dead time control and short propagation delays. Additionally, multipulse suppression ensures alternating output pulses at low duty cycles where pulse skipping may occur.