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AN437 bảng dữ liệu(PDF) 2 Page - STMicroelectronics

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Giải thích chi tiết về linh kiện  RC snubber circuit design for TRIACs
PDF  18 Pages
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nhà sản xuất  STMICROELECTRONICS [STMicroelectronics]
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AN437 bảng dữ liệu(HTML) 2 Page - STMicroelectronics

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Snubber circuit functions and drawback
AN437
2/18
1
Snubber circuit functions and drawback
1.1
Turn-off improvement
1.1.1
TRIAC turn-off reminder
When a TRIAC switches from on-state to off-state, the current passes through zero and the
supply voltage is reapplied instantaneously across the structure. In certain conditions, the
component is not able to block this voltage and then turns on spontaneously.
Indeed, a TRIAC can be compared to two Thyristors mounted in back-to-back and coupled
with a single control area. To trigger the two Thyristors, the control area overlaps the two
conduction areas.
During the conduction time, a certain quantity of charges is injected into the structure.
These charges disappear by recombination during the current decrease and by extraction
after the turn-off with the reverse recovery current (refer to Figure 1). Nonetheless, an
excess of charge remains, particularly in the neighboring regions of the gate, which can
induce the triggering of the other conduction area when the mains voltage is reapplied
across the TRIAC (refer to Figure 2).
A spurious triggering depends on:
The slope of the decreasing current, called the turn-off dI/dt or dI/dtOFF. This parameter
determines the quantity of charges which remains, when the current drops to zero, and
which could be injected in the gate area or in the opposite Thyristor.
The slope of the reapplied voltage, called the turn-off dV/dt or dV/dtOFF. This parameter
defines the capacitive current which could be injected through the gate.
Figure 1.
TRIAC turn-off on inductive
load - suitable turn-off
Figure 2.
TRIAC turn-off on inductive
load - spurious triggering
V
T (100 V/div)
I
T (10 mA/div)
V
Mains (100 V/div)
Recovery current
V
T (50 V/div)
I
T (10 mA/div)
dV/dt
OFF
dI/dt
OFF



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