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AN308 Datasheet(PDF) 13 Page - STMicroelectronics

Part # AN308
Description  TRIAC analog control circuits for inductive loads
PDF  16 Pages
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Manufacturer  STMICROELECTRONICS [STMicroelectronics]
Direct Link  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

AN308 Datasheet(HTML) 13 Page - STMicroelectronics

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AN308
Solutions summary for inductive load control
13/16
A.2
Triggering synchronized by the mains voltage
See Figure 12 part B for the schematic diagram.
A.2.1
Resistive load
No fault over the whole adjustment range.
A.2.2
Inductive load
The following two cases should be considered:
●
Turn-on delay angle
θ > load lag, ϕ (in full-cycle control)
Correct synchronization of the triggering pulses enables balanced conduction for all
variations up to the load lag angle. Some applications use this principle (for example,
200 V – 100 V rms step-down circuit).
●
Turn-on delay angle
θ < ϕ.
Triggering occurs before the lag angle is reached. The TRIAC will conduct for an angle
α > 180°. It is blocked after the gate pulse of the following half-cycle. The current does
not flow for next bias cycle. The circuit thus acts as a rectifier.
A.2.3
Circuit characteristics
Advantages of the circuit:
●
Accuracy of the triggering pulses.
●
Current operation with a resistive load (but circuit complex, previous circuit preferred)
●
Excellent operation for power variation circuits limiting conduction to small angles with
inductive loads.
Disadvantages of the circuit:
●
Connection by 3 wires - it is necessary to have access to the mains terminals.
●
Power is dissipated permantly by the passive components.
●
Impossible to adjust the delay angle to values close to or lower than the load phase
shift. This circuit cannot be used for inductive loads where a variation close to the
highest conduction angle is required.



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