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AN1966 Datasheet(PDF) 2 Page - STMicroelectronics |
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AN1966 Datasheet(HTML) 2 Page - STMicroelectronics |
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2 / 14 page ![]() Why overvoltage protection is required AN1966 2/14 1 Why overvoltage protection is required In a typical circuit (see Figure 1.), a surge voltage superimposed on the network voltage can turn the TRIAC on by exceeding its breakdown voltage. Under these conditions, because of its internal structure, only a part of the TRIAC is effectively turned on and the TRIAC can thus withstand only a very low di/dt. This explains the high risk of component damage when TRIACs are used to drive purely resistive loads. The di/dt can, in this case, reach very high values (> 100 A/µs) since only the inductance of the connections limits the current rate of increase. Figure 1. Typical TRIAC application circuit without overvoltage protection (risk of damage) VMAINS + accidental overvoltage R A2 A1 G Triggering at zero voltage Control |
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