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 Data Sheet No. PD10048B
Series PVI5033R
Photovoltaic Isolator
Solid-State Opto-Isolated MOSFET Gate Driver Dual-Channel, 5V, 5A
General 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 GaAlAs 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 dr ive 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
Telecommunications Load Distribution Industrial Controls Instrumentation and Measurement Electronic Ballast
Part Identification
PVI5033R PVI5033RS PVI5033RS-T thru-hole SMT SMT, Tape and Reel
PVI5033R
Electrical Specifications (-40C TA +85C unless otherwise specified) INPUT CHARACTERISTICS
Min. Input Current (See Fig.1) Input Current Range (See Fig. 1) Max. Continuous Input Current @ TA=+25C LED Forward Voltage Drop @ 5mA, TA=+25C (See Fig. 3) Max. Reverse Voltage Max. Reverse Current @ -7VDC, TA=+25C
Limits
5.0 3.0 to 25 40 1.4 7.0 10
Units
mA mA mA V V A
OUTPUT CHARACTERISTICS
Min. Forward Voltage Max. Reverse Current
Limits
8.0 10
Units
VDC ADC
COUPLED CHARACTERISTICS
Min. Output Voltage @ ILED = 10mA, RL = 10M @ TA=0C to +70C (See Fig. 1 & 2) Max. Output Voltage @ ILED = 10mA, RL = 10M @ TA=0C to +70C (See Fig. 1 & 2) Max. Voltage Differential Between Outputs @ ILED = 5mA, RL = 10M Min. Output Short-Circuit Current @ ILED = 10mA, @ TA=+25C (See Fig. 1 & 2) Max. Turn-On Time @ ILED = 5mA, CLOAD = 200pF (See Fig. 4) Max. Turn-Off Time @ ILED = 5mA, CLOAD = 200pF (See Fig. 4) Off-State Clamping Resistance: minimum maximum
Limits
5 10 1.0 5 2.5 .5 350 1500
Units
V V V A ms ms
GENERAL CHARACTERISTICS
Min. Dielectric Strength, Input-Output Min. Dielectric Strength, Output-to-Output Min. Insulation Resistance, Input-to-Output @TA=+25C, 50%RH, 100VDC Max. Capacitance, Input-Output Max. Pin Soldering Temperature (10 seconds max.) Ambient Temperature Range: Operating Storage
Limits
3750 1200 1012 5.0 +260 -40 to +85 -40 to +125
Units
VRMS VDC pF C C C
Connection Diagram
1 8 (+)
2
7 (-)
3
6 (+)
4
5 (-)
2
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PVI5033R
10
30
Output Shor t-Circuit Current (uA)
1.4 1.3 1.2
Open-Circuit Voltage
9
27 24
ILED=5mA
Output Voltage (VDC)
8 7 6 5 4 3 2 1 0 0 10 20 30 40
RL=10Mohms
18 15 12 9 Short-Circuit Current 6 3 0 Input Current (mA)
p
21
Nor malized Output
1.1 1.0 0.9 0.8 0.7 0.6 0.5 -40 -20 0 25 40 60 85 100
Output Voltage
Short-Circuit Current
Ambient Temperature (deg. C)
Figure 1. Typical Output Characteristics
Figure 2. Typical Variation of Output
20
CAUTION: provide current limiting so that 25 mA maximum steadystate control current rating is not exceeded
7000 6000
16
ILED=5mA
Response Time (s)
g. C limit
C limit
Input Current (mA)
5000 4000 3000 2000 1000 0
Ton
TYPICAL
12
Min. devi ce an
4
Max. devic e an
8
d -40 deg.
d +85 de
Toff
0 200 400 600 800 1000
0
0
0.5
1.0
1.5
2.0
LED Forward Voltage Drop (Volts DC)
Load Capacitance (pF)
Figure 3. Input Characteristics (Current Controlled)
Figure 4. Typical Response Time
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3
PVI5033R
Case Outlines
01-2004 03
01-2005 03
8/9/2000
4
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