AC16DGM Teccor Electronics, AC16DGM Datasheet - Page 173

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AC16DGM

Manufacturer Part Number
AC16DGM
Description
Manufacturer
Teccor Electronics
Datasheet

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7
Introduction
Since the SCR and the triac are bistable devices, one of their
broad areas of application is in the realm of signal and power
switching. This application note describes circuits in which these
thyristors are used to perform simple switching functions of a
general type that might also be performed non-statically by vari-
ous mechanical and electromechanical switches. In these appli-
cations, the thyristors are used to open or close a circuit
completely, as opposed to applications in which they are used to
control the magnitude of average voltage or energy being deliv-
ered to a load. These latter types of applications are described in
detail in “Phase Control Using Thyristors” (AN1003).
Static AC Switches
Normally Open Circuit
The circuit shown in Figure AN1007.1 provides random (any-
where in half-cycle), fast turn-on (<10 µs) of AC power loads and
is ideal for applications with a high-duty cycle. It eliminates com-
pletely the contact sticking, bounce, and wear associated with
conventional electromechanical relays, contactors, and so on. As
a substitute for control relays, thyristors can overcome the differ-
ential problem; that is, the spread in current or voltage between
pickup and dropout because thyristors effectively drop out every
half cycle. Also, providing resistor R
cuits are operable over a much wider voltage range than is a
comparable relay. Resistor R
(I
control device and load resistance (R
than the peak supply voltage divided by the peak gate current
rating of the triac. If R
at the beginning of each cycle, and phase control of the load will
result with consequent loss of load voltage and waveform distor-
tion. For inductive loads, an RC snubber circuit, as shown in Fig-
ure AN1007.1, is required. However, a snubber circuit is not
required when an alternistor is used.
Figure AN1007.2 illustrates an analysis to better understand a
typical static switch circuit. The circuit operation occurs when
switch S
ing condition. Current flow will be through load R
gate to MT1 junction of the thyristor. When this current reaches
the required value of I
the conduction state and the voltage from MT2 to MT1 will be V
As the current approaches the zero crossing, the load current will
fall below holding current turning the triac Q
refired in the next half cycle. Figure AN1007.3 illustrates the volt-
age waveform appearing across the MT2 to MT1 terminals of Q
Note that the maximum peak value of current which S
©2002 Teccor Electronics
Thyristor Product Catalog
GTM
) peaks. Its resistance plus any contact resistance (R
1
is closed, since the triac Q
1
GT
is set too high, the triacs may not trigger
Thyristors Used as AC Static Switches and Relays
, the MT2 to MT1 junctions will switch to
1
is provided to limit gate current
1
1
L
is chosen correctly, the cir-
will initially be in the block-
) should be just greater
1
device off until it is
L
, S
1
, R
1
will carry
1
C
, and
) of the
AN1007 - 1
1
T
.
.
would be 25 mA since Q
tionally, no arcing of a current value greater than 25 mA when
opening S
important also to note that the triac Q
and III, the more sensitive and most suitable gating modes for tri-
acs. The voltage rating of S
must be equivalent to or greater than line voltage applied.
Figure AN1007.1
Figure AN1007.2
AC Voltage Input
120 V rms, 60 Hz
R
1
1
I
V
GTM
will occur when controlling an inductive load. It is
IN
V
(R
V
Basic Triac Static Switch
Analysis of Static Switch
RMS
L
+ R
Control
Device
Reed
Switch
Load
C
R
Load
) Where I
L
R
1
L
Rating of Triac
S
has a 25 mA maximum I
1
1
(mechanical switch or reed switch)
GTM
R
100
1
AN1007
is Peak Gate Current
1
S
1
is operating in Quadrants I
Triac
+
-
100
I
I
GT
GT
R
2
Q2008L4
http://www.teccor.com
R
Q
1
1
For
Inductive
Loads
C
0.1 µF
+1 972-580-7777
G
V
1
GT
GT
rating. Addi-
MT2
MT1

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