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L6701TR 数据表(PDF) 29 Page - STMicroelectronics |
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L6701TR 数据表(HTML) 29 Page - STMicroelectronics |
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29 / 44 page ![]() L6701 13 Output voltage Monitor and Protections 29/44 13 Output voltage Monitor and Protections L6701 monitors through pin VSEN the regulated voltage in order to manage the OVP, UVP and PGOOD (when applicable) conditions. Protections are active also during soft-start (See Section 12 for details) while are masked during D-VID transitions with an additional 32 clock cycle delay after the transition has finished to avoid false triggering. In addition, preliminary over-voltage protection is also provided to protect the load from high- side MOSFET failures before the system turn-ON. 13.1 Under Voltage If the output voltage monitored by VSEN drops more than -400mV below the programmed reference for more than one clock period, the device turns off all MOSFETs driving high the FAULT pin and latches the condition: to recover it is required to cycle Vcc or the EN pin. This is independent by the selected operative mode. 13.2 Preliminary Over Voltage To provide a protection while VCC is below the UVLOVCC threshold is fundamental to avoid damage to the load in case of failed HS MOSFETs. In fact, since the device is supplied from the 12V bus, it is basically “blind” for any voltage below the turn-on threshold (UVLOVCC). In order to give full protection to the load, a preliminary-OVP protection is provided while VCC is within UVLOVCC and UVLOOVP. According to the DAC_SEL pin status, this protection turns-on the low side MOSFETs as long as the FBR pin voltage is greater than 1.9V for VR10 and 2.1V for VR9 and K8 with a 300mV hysteresis (See Table 10). When set, the protection drives the LS MOSFET with a gate-to- source voltage depending on the voltage applied to VCC. This protection depends also on the EN pin status as detailed in Figure 13. Preliminary OVP is always active before UVLOVCC for all operative modes with intervention thresholds dependent on the DAC_SEL pin status. A simple way to provide protection to the output in all conditions when the system is OFF (then avoiding the unprotected red region in Figure 13-Left) consists in supplying the controller through the 5VSB bus with an OR-ing diode solution as shown in Figure 13-Right: 5VSB is always present before +12V and, in case of HS short, the LS MOSFET is driven with 5V assuring a reliable protection of the load. When using the OR-ing diode solution, OR-ing diodes need to be sized according to the device current consumption: the two diodes will then results to be different since the diode connected to the 12V bus needs to carry the current for normal operations (IRMS) and the diode connected to the 5VSB (IRMS-PREOVP) need to carry only the current in case of Pre-OVP protection is active. Device current consumption (IRMS) in normal operations depends on the external MOSFET configuration as follow: Device current consumption when Pre-OVP is active depends on the output filter configuration since LS MOSFETs switching frequency depends on the leakage that is charging the output filter. Test on the bench is required but, for an over-sized solution, the same diode identified for the +12V bus can be used. I RMS 3F SW Q GHS Q GLS + () I CC 3I CCDRx ⋅ 3I BOO Tx ⋅ ++ () + ⋅⋅ = |
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