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HVLED001A 数据表(PDF) 25 Page - STMicroelectronics |
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HVLED001A 数据表(HTML) 25 Page - STMicroelectronics |
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25 / 30 page ![]() DocID029000 Rev 2 25/30 HVLED001A Application information 30 7.5 Protections A comprehensive set of protections is embedded to ensure a high level of reliability of the final application using a limited number of components. 7.5.1 Overcurrent protection (OCP) To prevent any damage to active components in case of inductor's saturation the MOSFET is immediately turned off by fast OCP protection. At this occurrence the IC temporarily enters the stop state for a time equal to TOCP. 7.5.2 Input overvoltage protection (I-OVP) Disturbances of the input voltage like surges or bursts may increase the voltage applied to the transformer primary side. Worst, an excessive input voltage could be applied to the application. These occurrences may result into MOSFET’s damages during the off state when the drain voltage rises to Vin plus reflected voltage, eventually above the maximum absolute rating of the MOSFET itself. An input voltage higher than VSurge, measured by HVSU structure, immediately stops the IC. If the extra voltage diminishes before Tsurge the device restarts immediately without activating the startup procedure, otherwise the low consumption mode is entered until the input voltage returns below the safety threshold. An internal hysteresis improves the noise rejection of this feature. In the latter case the ART activates the startup procedure. 7.5.3 Brownout protection (BO) The current sourced by the ZCD pin's negative clamp during the on time is compared to a minimum value to determine whether the input voltage is lower than the input range specification (brownout protection). If a value lower than IBO for a time longer than TBO, managed by the ART, is detected the IC is stopped for Trec and then restarted. When the protection is triggered, the ART performs the autoreloading procedure after Trec. The brownout protection is active during the active mode, but blanked during the soft-start. 7.5.4 Optocoupler failure protection (OFP) This protection detects either the absence of the optocoupler control (no pull-down) or the overload condition for more than a time equal to TOFP and switches off the application putting the device in the low consumption mode. This prevents the output power from a rising above excessive values due to the loss of control. The ART manages the TOFP interval and performs the auto-reloading procedure after Trec. The OFP is active during the active mode, but blanked during the soft-start. 7.5.5 Output overvoltage protection (oOVP) In case of the ZCD sampled voltage is well above the VREF,PSR voltage (around 3 V) OTA provides an extra sink current ( 2 mA typ.) to the FB pin to speed up the energy transfer reduction and limiting the output voltage overshooting. |
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