IL410 Vishay, IL410 Datasheet - Page 8

OPTOCOUPLER, TRIAC, 5300VRMS

IL410

Manufacturer Part Number
IL410
Description
OPTOCOUPLER, TRIAC, 5300VRMS
Manufacturer
Vishay
Datasheets

Specifications of IL410

No. Of Channels
1
Optocoupler Output Type
Phototriac
Input Current
10mA
Output Voltage
600V
Opto Case Style
DIP
No. Of Pins
6
Forward Voltage
1.35V
Isolation Voltage
5.3kV
Voltage - Isolation
5300Vrms
Number Of Channels
1
Voltage - Off State
600V
Output Type
AC, Triac, Zero Cross
Current - Gate Trigger (igt) (max)
6mA
Current - Hold (ih)
500µA
Current - Dc Forward (if)
60mA
Current - Output / Channel
300mA
Mounting Type
Through Hole
Package / Case
6-DIP (0.300", 7.62mm)
Configuration
1
Maximum Continuous Output Current
300 mA
Maximum Input Current
60 mA
Maximum Operating Temperature
+ 100 C
Maximum Power Dissipation
500 mW
Maximum Reverse Diode Voltage
6 V
Maximum Turn-on Time
35 us (Typ)
Minimum Operating Temperature
- 55 C
Mounting Style
Through Hole
Typical Input Voltage
1.16 V
Zero-crossing Circuit
Yes
Zero-crossing Voltage
25 V
Output Device
Triac
Peak Output Voltage (vdrm)
600 V
Maximum Input Voltage
1.35 V
Maximum Output Voltage
420 VAC
Minimum Trigger Current
6 mA (Max)
Approval Bodies
UL Recognised
Rohs Compliant
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Lead Free Status / RoHS Status
Lead free / RoHS Compliant, Lead free / RoHS Compliant
Other names
751-1297-5
IL410GI
IL410GI

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IL410/ IL4108
Vishay Semiconductors
connected to the line by transformers and which are not mechani-
cally interrupted.
In such cases as well as in applications with a resistive load the cor-
responding protective circuits can be neglected.
Control And Turn-On Behavior
The trigger current of the IL410/ IL4108 has a positive
temperature gradient. The time which expires from
applying the control current to the turn-on of the load
current is defined as the trigger delay time (t
the whole this is a function of the overdrive meaning
the ratio of the applied control current versus the trig-
ger current (I
corresponds to that of the individual trigger current of
IL410/4108 turn-on delay times amounts to a few mil-
liseconds only. The shortest times of 5.0 to 10 µs can
be achieved for an overdrive greater or equal than 10.
The trigger delay time rises with an increase in tem-
perature.
For very short control current pulses (t
correspondingly higher control current must be used.
Only the IL410/ IL4108 without zero voltage switch is
suitable for this operating mode.
Zero Voltage Switch
The IL410/ IL4108 with zero voltage switch can only
be triggered during the zero crossing the sine AC volt-
age. This prevents current spikes, e.g. when turning-
on cold lamps or capacitive loads.
Applications
Direct switching operation: The IL410/ IL4108 switch
is mainly suited to control synchronous motors,
valves, relays and solenoids in Grätz circuits. Due to
the low latching current (500 µA) and the lack of an
RC circuit at the output, very low load currents can
easily be switched.
Indirect switching operation: The IL410/ IL4108
switch acts here as a driver and thus enables the driv-
ing of thyristors and triacs of higher performance by
microprocessors. The driving current pulse should not
exceed the maximum permissible surge current of the
IL410/ IL4108. For this reason, the IL410/ IL4108
without zero voltage switch often requires current lim-
iting by a series resistor.
The favorably low latching current in this operating
mode results in AC current switches which can handle
load currents from some milliamperes up to high cur-
rents.
www.vishay.com
8
F
/I
FT
). If the value of the control current
plF
< 500 µs) a
gd
). On
Application Note
• Over voltage protection: A voltage-limiting varistor
(e.g. SIO VS05K250) which directly connected to the
IL410/ IL4108 can protect the component against
overvoltage.
Document Number 83627
Rev. 1.4, 26-Apr-04

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