Technical Documents
Specifications
Brand
STMicroelectronicsProduct Type
Power Management Development Kit
Power Management Function
Power Management
For Use With
STNRG Family of Digital Controllers
Kit Classification
Evaluation Board
Featured Device
STNRG388A
Kit Name
Evaluation Board
Standards/Approvals
RoHS
Country of Origin
Italy
Product Details
The STEVAL-ISA165V1 is a product evaluation board, designed to demonstrate the performance of the SRK2001 synchronous rectification controller. The SRK2001 implements a control scheme specific for secondary-side synchronous rectification in LLC resonant converters that use a transformer with center-tap secondary winding for full-wave rectification. It provides two high-current gate-drive outputs (for driving N-channel power MOSFETs). Each gate driver is controlled separately and an interlock logic circuit prevents the two synchronous rectifier (SR) MOSFETs from conducting simultaneously. Device operation is based on adaptive algorithms for both turn-on and turn-off of SR MOSFETs. During fast load transitions or during above resonance operation, a further turn-off mechanism is provided, based on a ZCD_OFF comparator that triggers the gate drive circuit for very fast MOSFET turn-off.
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P.O.A.
Stock information temporarily unavailable.
1
Technical Documents
Specifications
Brand
STMicroelectronicsProduct Type
Power Management Development Kit
Power Management Function
Power Management
For Use With
STNRG Family of Digital Controllers
Kit Classification
Evaluation Board
Featured Device
STNRG388A
Kit Name
Evaluation Board
Standards/Approvals
RoHS
Country of Origin
Italy
Product Details
The STEVAL-ISA165V1 is a product evaluation board, designed to demonstrate the performance of the SRK2001 synchronous rectification controller. The SRK2001 implements a control scheme specific for secondary-side synchronous rectification in LLC resonant converters that use a transformer with center-tap secondary winding for full-wave rectification. It provides two high-current gate-drive outputs (for driving N-channel power MOSFETs). Each gate driver is controlled separately and an interlock logic circuit prevents the two synchronous rectifier (SR) MOSFETs from conducting simultaneously. Device operation is based on adaptive algorithms for both turn-on and turn-off of SR MOSFETs. During fast load transitions or during above resonance operation, a further turn-off mechanism is provided, based on a ZCD_OFF comparator that triggers the gate drive circuit for very fast MOSFET turn-off.