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HVLED101TR bảng dữ liệu(PDF) 23 Page - STMicroelectronics |
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HVLED101TR bảng dữ liệu(HTML) 23 Page - STMicroelectronics |
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23 / 36 page ![]() When VCC drops below VCC-OFF, the IC moves to low consumption mode and activates the high-voltage startup to recover a sufficient VCC level (VCC-ON). 6.6.2 High-voltage startup The high-voltage startup unit is intended to charge the VCC capacitor to a voltage that is at least equal to VCC-ON. This unit is invoked: • at startup • during low consumption to maintain the VCC level • during TART time to maintain the VCC level • in case of iOVP to discharge the input capacitor. Two different charging currents are provided depending on the operating condition as summarized in the table below. The charging current automatically shuts down when VCC reaches approximately 19 V. Table 8. HVSU activation summary Operating condition VCC range OFF ICHG-H ICHG-L All states if VHVSU < VHV-START Any X Startup (initial phase) 0 V ... VCC-LOW X Startup (IC startup) VCC-LOW ... VCC-ON X Active mode VCC-OFF ... VCC-ON X Input OVP VCC-OFF ... VCC-AMR X Low consumption mode (LC) VCC-ON ... VCC-OFF (falling) X VCC recover during LC mode VCC-OFF ... VCC-ON (rising) X Deep low consumption mode (DLC) Any X 6.7 Parameter selection Some internal parameters of the device can be programmed selecting the value of the time constant (TauCFGn) associated with the RC network placed between DLY/CFG and GND. Once the VCC has risen for the first time above VCC-ON, the DLY/CFG pin is pre-charged up to the VDLY-BIAS and then released. The DLY/CFG capacitor CCFG is then discharged by RDLY to define a time constant that is internally detected to configure the internal parameters as per the following table. Table 9. Programming configuration TauCFGn (µs) CFG iOVP BrOut KHV DC Det. IBLEED @ iOVP 30 µs ... 45 µs CFG1 ON Low High Low ON 100 µs ... 140 µs CFG2 OFF OFF Low Low N.A. 300 µs ... 410 µs CFG3 ON High High High ON 860 µs ... 1.2 ms CFG4 OFF Low Low Low N.A. > 2.05 ms CFG5 ON Low High Low OFF If the detected time is shorter than 20 µs the IC does not start, while if the time is not detected within an approximate time of 2.05 ms, the IC autonomously proceeds into ramp-up state and sets CFG5. In this phase, the HVSU unit is active to prevent program errors. The following table summarizes the suggested combination of RDLY and CCFG to obtain both delay time and configuration programming. HVLED101 Parameter selection DS14143 - Rev 2 page 23/36 |
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