PVI5033RS-T
PVI5033RS-T is Photovoltaic Isolator manufactured by International Rectifier.
Description
The PVI5033R Photovoltaic Isolator is a dualchannel, opto-isolated driver capable of directly driving gates of power MOSFETs or IGBTs. It utilizes a monolithic integrated circuit photovoltaic generator of novel construction as its output. The output is controlled by radiation from a Ga Al As light emitting diode (LED) which is optically isolated from the photovoltaic generator. The PVI5033R is ideally suited for applications requiring high-current and/or high voltage switching with optical isolation between the low-level driving circuitry and high-energy or high- voltage load circuits. It can be used for directly driving gates of power MOSFETs. The dual- channel configuration allows its outputs to drive independent discrete power MOSFETs, or be connected in parallel or in series to provide higher-current drive for power MOSFETs or higher-voltage drive for IGBTs. PVI5033R employs a fast turn-off circuitry. PVI5033R Photovoltaic Isolators are packaged in an 8-pin, molded DIP package with either thru-hole or “gull-wing” terminals. It is available in standard plastic shipping tubes or on tape-and-reel. Refer to Part Identification information.
Features
! ! ! ! ! ! Monolithic construction 3,750 VRMS I/O isolation 1,200 VDC output-to-output isolation Dual-Channel application flexibility Solid-State Reliability UL Recognized and BABT Certified
Applications
! Telemunications ! Load Distribution ! Industrial Controls ! Instrumentation and Measurement ! Electronic Ballast
Part Identification
PVI5033R PVI5033RS PVI5033RS-T thru-hole SMT SMT, Tape and Reel
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PVI5033R
Electrical Specifications (-40°C ≤ TA ≤ +85°C unless otherwise specified) INPUT CHARACTERISTICS Limits
Min. Input Current (See Fig.1) Input Current Range (See Fig. 1) Max. Continuous Input Current @ TA=+25°C LED Forward Voltage Drop @ 5m A, TA=+25°C (See Fig. 3) Max. Reverse Voltage Max. Reverse Current @ -7VDC, TA=+25°C 5.0 3.0 to 25 40 1.4 7.0 10
Units m A m A m A V V µA
OUTPUT CHARACTERISTICS...