PVI1050N [INFINEON]

Photovoltaic Isolator Single and Dual Channel 5-10 Volt Output; 光电隔离器单通道和双通道5-10伏输出
PVI1050N
型号: PVI1050N
厂家: Infineon    Infineon
描述:

Photovoltaic Isolator Single and Dual Channel 5-10 Volt Output
光电隔离器单通道和双通道5-10伏输出

光电
文件: 总6页 (文件大小:137K)
中文:  中文翻译
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Data Sheet No. PD10054-B  
Series PVI-N  
Photovoltaic Isolator  
Single and Dual Channel  
5-10 Volt Output  
General Description  
Features  
The PVI Series Photovoltaic Isolator generates an  
electrically isolated DC voltage upon receipt of a DC  
input signal. It is 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.  
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!
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!
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Isolated Voltage Source  
Monolithic Construction  
Up to 8µA Output  
Single or Dual Output  
Solid-State Reliability  
The PVI Series 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 device 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. The PVI Series Photovoltaic isolators  
employ fast turn-off circuitry.  
These PVI Series Photovoltaic Isolators are packaged  
in 8-pin, molded DIP packages and available with  
either thru-hole or surface-mount (“gull-wing”) leads,  
in plastic shipping tubes.  
Part Identification  
Applications  
!
!
!
!
Load Distribution  
Industrial Controls  
Current-to-Voltage Conversion  
Custom Solid-State Relay  
PVI1050N  
PVI5050N  
PVI5080N  
thru-hole  
PVI1050NS  
PVI5050NS  
PVI5080NS  
surface-mount  
(gull-wing)  
www.irf.com  
1
Series PVI-N  
Electrical Specifications (-40°C TA +85°C unless otherwise specified)  
INPUT CHARACTERISTICS  
Input Current Range (see figure 4)  
PVI Series  
2.0 to 50  
1.4  
Units  
mA (DC)  
V (DC)  
V(DC)  
Maximum Forward Voltage Drop @ 10mA, 25°C (see figure 5)  
Maximum Reverse Voltage  
7.0  
Maximum Reverse Current @ -7.0V (DC), 25°C  
100  
µA(DC)  
Maximum Pulsed Input Current @ 25°C (see figure 6)  
1.0  
A(peak)  
OUTPUT CHARACTERISTICS  
PVI Series  
8.0 per channel  
10  
Units  
V(DC)  
Maximum Forward Voltage @ 10µA  
Maxiumum Reverse Current @ -10VDC  
µA(DC)  
COUPLED CHARACTERISTICS  
Minimum Open Circuit Voltage @ ILED = 10mA, 25°C, RL = >10MΩ  
(see figures 1 to 2)  
PVI5050N  
PVI5080N  
PVI1050N  
Units  
V (DC)  
5.0  
5.0/channel  
10 series  
Minimum Short Circuit Current @ ILED = 10mA, 25°C (see figures 1 to 2)  
5.0  
8.0  
5.0 /channel  
10 parallel  
µA (DC)  
pF  
Maximum Capacitance (Input/Output)  
1.0  
2.0  
Maximum Ton Time @ ILED=10mA, CLOAD=10pF (See Figure7)  
RL>20MΩ  
300  
160  
90  
µS  
µS  
µS  
µS  
RL=10MΩ  
RL=4.7MΩ  
Maximum Toff Time @ ILED=10mA, CLOAD=10pF (See Figure7)  
220  
PVI5050N/5080N PVI1050N  
Units  
GENERAL CHARACTERISTICS  
VRMS  
Min. Dielectric Strength, Input-Output  
Min. Dielectric Strength, Output-to-Output  
Min. Insulation Resistance, Input-to-Output  
4000  
2500  
VDC  
1200  
1012  
@T =+25°C, 50%RH, 100V  
A
DC  
Max. Pin Soldering Temperature (10 seconds max.)  
Ambient Temperature Range: Operating  
Storage  
+260  
°C  
°C  
°C  
-40 to +85  
-40 to +125  
International Rectifier does not recommend the use of this product in aerospace, avionics, military or life support applications.  
Users of this International Rectifier product in such applications assume all risks of such use and indemnify International  
Rectifier against all damages resulting from such use.  
2
www.irf.com  
Series PVI-N  
8
7
6
5
4
3
2
1
0
40  
8
7
6
5
4
3
2
1
0
40  
35  
30  
25  
20  
15  
10  
5
Open Circuit Voltage  
Open Circuit Voltage  
35  
30  
25  
20  
15  
10  
5
RL=10MΩ  
RL=4.7MΩ  
RL=10MΩ  
RL=4.7MΩ  
RL=2.2MΩ  
RL=1MΩ  
RL=2.2MΩ  
RL=1MΩ  
Short Circuit Current  
Short Circuit Current  
0
0
0
2
4
6
8
10  
12  
14  
16  
18  
20  
0
2
4
6
8
10  
12  
14  
16  
18  
20  
Input Current (mA)  
Input Current (mA)  
Figure 2. PVI15080N Typical Output Characteristics  
Figure 1. PVI5050N, PVI1050N Typical Output Characteristics  
1.8  
1.6  
Short Circuit Current (Isc)  
1.4  
1.2  
Output Voltage (V  
)
oc  
1.0  
0.8  
0.6  
0.4  
0.2  
-40 -30 -20 -10  
0
10 20 30 40 50 60 70 80 90 100  
Forced Air Temperature (°C)  
Ambient Temperature (°C)  
Figure 4. Input Current Derating  
Figure 3. Typical Variation of Output  
CAUTION: Provide current limitin
so that 50mA maximum steady-  
state control current is not  
exceeded.  
LED Forward Voltage Drop (VDC)  
Duty Cycle  
Figure 5. Input Characteristics  
Figure 6. Input Pulse Capability  
www.irf.com  
3
Series PVI-N  
10000  
1000  
100  
R =10M  
L
R =4.7M  
L
Ton  
R =2.2M  
L
Toff  
10  
0
200  
400  
600  
800  
1000  
Load Capacitance (pF)  
Figure 7. Typical Response Time  
Wiring Diagram  
Anode  
(+) 1  
(-) 8  
(-) 8  
DC  
Anode  
(+) 2  
(-) 2  
(+) 7  
(-) 6  
Cathode  
Anode  
(+) 3  
(-) 3  
Cathode  
(+) 5  
PVI5050N  
PVI5080N  
(-) 4  
(+) 5  
Cathode  
PVI1050N  
Application Note:  
The outputs of the PVI1050N (pins 5-6 and 7-8) may be placed in series connection to produce a 10-volt output  
with a 5µA minimum short circuit current. Alternatively, the two ouptut of the PVI1050 may be connected in paral-  
lel to produce a 5.0-volt ouput with a 10µA minimum short circuit current.  
The two outputs of the PVI1050N may be applied separately with a maximum 1200VDC between the outputs.  
Input-to-output isolation to either output is 2500V (RMS).  
4
www.irf.com  
Series PVI-N  
Case Outlines  
PVI1050N  
01-2030 01  
01-2031 01  
PVI1050NS  
www.irf.com  
5
Series PVI-N  
Case Outlines  
PVI5050N/PVI5080N  
01-2013 00 (MS-001AB)  
01-2019 00  
PVI5050NS/PVI5080NS  
Data and specifications subject to change without notice. 10/17/2003  
6
www.irf.com  

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