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AN1379 Datasheet(PDF) 3 Page - STMicroelectronics

Part # AN1379
Description  Z01 and ACS behavior compared under fast voltage transients
PDF  10 Pages
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Manufacturer  STMICROELECTRONICS [STMicroelectronics]
Direct Link  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

AN1379 Datasheet(HTML) 3 Page - STMicroelectronics

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AN1379
ACS: an overvoltage protected AC device
Doc ID 8317 Rev 5
3/10
Then, the switch turns on in breakover mode [2] [3]. Such an event is particularly stressful
on the semiconductor especially so if the current and its rate of increase are both high. The
worst case occurs when ACSs are driving low resistance, non inductive loads (only a few
tens of µH as a series parasitic inductance).
For example, Figure 3 and Figure 4 have been recorded with a thermal active door lock
system at a low temperature controlled by an ACS108-5TA device. The 2 kV surge is super-
imposed on the 230 V, 50 Hz mains and synchronized with its peak value, as shown in
Figure 3. Figure 4 shows the device turn on in this mode. As the load was previously off, its
resistance is cold and equals 150 ohm. In this case, the current rises at a rate of 100 A/µs
and reaches 15 A. Such transient surges would damage Triacs, but not ACSs, as they are
designed to turn on in breakover mode. The varistor is then no longer needed in parallel
across ACSs, unlike Triacs. The difference between ACS and Triac + varistor is that, with the
ACS, the load is switched on during a half or one mains cycle. This can be accepted as such
events happen a few times in the system's life.
Figure 3.
2 kV surge on the mains
Figure 4.
ACS breakover
VAC (500 V/div)
Iout (5 A/div)
VAC (200 V/div)
Iout (5 A/div)



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