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 Data Sheet No. PD10041C
Series PVI5013R
Photovoltaic Isolator
Solid-State Opto-Isolated MOSFET Gate Driver Dual-Channel, 5V, 1.0A
General Description
The PVI5013R Photovoltaic Isolator is a dual-channel, 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 PVI5013R is ideally suited for applications requiring high-current and/or high voltage switching with optical isolation between the low-level driving circuitry and highenergy or high- voltage load circuits. It can be used for directly driving gates of power MOSFETs. The dualchannel 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. PVI5013R employs a fast turn-off circuitry. PVI5013R Photovoltaic Isolators are packaged in an 8pin, molded DIP package with either through-hole or surface-mount (gull-wing) terminals. It is available in standard plastic shipping tubes or on tape-and-reel. Please refer to Part Identification information opposite.
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
Part Identification
PVI5013R PVI5013RS PVI5013RS-T Reel through-hole surface-mount surface-mount, Tape and
Series PVI5013R
Electrical Specifications (-40C TA +85C unless otherwise specified) INPUT CHARACTERISTICS
Minimum Input Current (see figure 1) Input Current Range (see figure 1) Maximum Continuous Input Current @ TA=+25C LED Forward Voltage Drop @ 5mA, TA=+25C (see figure 3) Maximum Reverse Voltage Maximum Reverse Current @ -7V DC, TA=+25C
Limits
5.0 3.0 to 25 40 1.4 7.0 10
Units
mA mA mA V V A
OUTPUT CHARACTERISTICS
Minimum Forward Voltage Maximum Reverse Current
Limits
8.0 10
Units
VDC ADC
COUPLED CHARACTERISTICS
Minimum Output Voltage @ ILED = 5mA, RL = 10M @ TA=0C to +70C (see figures 1 and 2) Maximum Output Voltage @ ILED = 5mA, RL = 10M @ TA=0C to +70C (see figures 1 and 2) Maximum Voltage Differential Between Outputs @ ILED = 5mA, RL = 10M Typical Output Short-Circuit Current @ ILED = 5mA, @ TA=+25C (see figures 1 and 2) Maximum Turn-On Time @ ILED = 5mA, CLOAD = 200pF (see figure 4) Max. Turn-Off Time @ ILED = 5mA, CLOAD = 200pF (see figure 4) Off-State Clamping Resistance: minimum maximum
Limits
3 8 1.0 1.0 5 0.25 100 3300
Units
V V V A ms ms
GENERAL CHARACTERISTICS
Minimum Dielectric Strength, Input-Output Minimum Dielectric Strength, Output-to-Output Minimum Insulation Resistance, Input-to-Output @TA=+25C, 50%RH, 100VDC Maximum Capacitance, Input-Output Maximum Pin Soldering Temperature (10 seconds maximum) 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
www.irf.com
Series PVI5013R
10 9
20 18
1.2 ILED=5mA
Output Short-Circuit Current (uA)
Open Circuit Voltage
8 16
1.1
Output Voltage (VDC)
Norm a lized O utput
RL=10M
7 6 5 4 3 2 1 0 0 5 10 15 20 25 30 35 40 14 12 10 8 6 4 2 0
1.0
0.9 Output Voltage 0.8
0.7 Short-Circuit Current 0.6 0.5 -40
Short Circuit Current
-20
0
20
40
60
80
100
Input Current (mA) Figure 1. Typical Output Characteristics
Ambient Temperature (deg. C) Figure 2. Typical Variation of Output
20
Response Tim e (m icroseconds)
CAUTION: provide current limiting so that 25 mA maximum steadystate control current rating is not exceeded
5000 ILED=5mA Ton
16
Input Current (m A)
limit
d +85 deg. C
limit
1000
TYPICAL
12
and -40 deg. C
500
8
Min. device an
4
Max. device
100 Toff 50 100
0
0
0.5
1.0
1.5
2.0
200
300
400
500
LED Forward Voltage Drop (Volts DC)
Load Capacitance (pF)
Figure 3. Input Characteristics (Current Controlled)
Figure 4. Typical Response Time
www.irf.com
3
Series PVI5013R
Case Outlines
01-2004 03
01-2005 03
12/15/2000
4
www.irf.com


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