S2006FS221V Teccor Electronics, Inc., S2006FS221V Datasheet - Page 175

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S2006FS221V

Manufacturer Part Number
S2006FS221V
Description
Thyristor Product Catalog
Manufacturer
Teccor Electronics, Inc.
Datasheet
Application Notes
Figure AN1007.5
Optocoupled Driver Circuits
Random Turn-on, Normally Open
Many applications use optocouplers to drive thyristors. The com-
bination of a good optocoupler and a triac or alternistor makes an
excellent, inexpensive solid state relay. Application information
provided by the optocoupler manufacturers is not always best for
application of the power thyristor. Figure AN1007.6 shows a stan-
dard circuit for a resistive load.
Figure AN1007.6
A common mistake in this circuit is to make the series gate resis-
tor too large in value. A value of 180
cation circuit by optocoupler manufacturers. The 180
on limiting the current to 1 A peak at the peak of a 120 V line
input. This is good for protection of the optocoupler output triac,
as well as the gate of the power triac on a 120 V line; however, it
must be lowered if a 24 V line is being controlled, or if the R
(resistive load) is 200 W or less. This resistor limits current for
worst case turn-on at the peak line voltage, but it also sets turn-
on point (conduction angle) in the sine wave, since triac gate cur-
rent is determined by this resistor and produced from the sine
©2002 Teccor Electronics
Thyristor Product Catalog
V
CC
120 V ac
R
Load
in
1
2
Normally Closed Switch Circuit
Optocoupled Circuit for Resistive Loads (Triac or
Alternistor)
Q2008L4
0.02 µF
BS08D
Triac
6
4
51 k
180
is shown in a typical appli-
Load Could Be
in Either Leg
G
(4) IN4004
PS2502
MT2
MT1
R
L
Neutral
is based
120 V
60 Hz
Hot
+
L
AN1007 - 3
wave voltage as illustrated in Figure AN1007.2. The load resis-
tance is also important, since it can also limit the amount of avail-
able triac gate current. A 100
choice in most 120 V applications with loads greater than 200 W
and optocouplers from Quality Technologies or Vishay with opto-
coupler output triacs that can handle 1.7 A
few microseconds at the peak of the line. For loads less than
200 W, the resistor can be dropped to 22
gate resistor is too large in value, the triac will not turn on at all or
not turn on fully, which can cause excessive power dissipation in
the gate resistor, causing it to burn out. Also, the voltage and dv/
dt rating of the optocoupler's output device must be equal to or
greater than the voltage and dv/dt rating of the triac or alternistor
it is driving.
Figure AN1007.7 illustrates a circuit with a dv/dt snubber network
included. This is a typical circuit presented by optocoupler manu-
facturers.
Figure AN1007.7
This “T” circuit hinges around one capacitor to increase dv/dt
capability to either the optocoupler output triac or the power triac.
The sum of the two resistors then forms the triac gate resistor.
Both resistors should then be standardized and lowered to
100
much gate current as possible without exceeding the instanta-
neous current rating of the opto output triac or triac gate junction.
By having 100
capacitor, the optocoupler output triac and power triac can be
protected against di/dt produced by the capacitor. Of course, it is
most important that the capacitor be connected between proper
terminals of triac. For example, if the capacitor and series resis-
tor are accidentally connected between the gate and MT2, the
triac will turn on from current produced by the capacitor, resulting
in loss of control.
For low current (mA) and/or highly inductive loads, it may be nec-
essary to have a latching network (3.3 k
directly across the power triac. The circuit shown in Figure
AN1007.8 illustrates the additional latching network.
V
CC
. Again, this sum resistance needs to be low, allowing as
R
in
1
2
for current limit in either direction from the
Optocoupler Circuit for Inductive Loads (Triac or
Alternistor)
6
4
gate resistor would be a better
0.1 µF
100
C
1
+ 0.047 µF) connected
100
PK
. Remember that if the
G
http://www.teccor.com
(I
TSM
MT2
Z
MT1
+1 972-580-7777
L
rating) for a
Neutral
120 V
60 Hz
Hot
AN1007

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