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LM5145 Datasheet(PDF) 17 Page - Texas Instruments |
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LM5145 Datasheet(HTML) 17 Page - Texas Instruments |
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17 / 60 page ![]() VOUT HO-SW Low Dropout Mode PWM Mode Approximately 99% Duty Cycle VIN one tOFF skip two tOFF skip three tOFF skip up to 15 tOFF skip up to 15 tOFF skip Figure 6-2. Dropout Mode Operation 6.3.2 High-Voltage Bias Supply Regulator (VCC) The LM25139 contains an internal high-voltage VCC bias regulator that provides the bias supply for the PWM controller and the gate drivers for the external MOSFETs. The controller is rated to an input voltage up to 42V. However, when the input voltage is below the VCC setpoint level, the VCC voltage tracks VIN minus a small voltage drop. The VCC regulator output current limit is 210mA (typical). At power up, the controller sources current into the capacitor connected at the VCC pin. When the VCC voltage exceeds 3.8V (typical) and the EN pin is above 1V, the soft-start sequence begins. The output remains active unless the VCC voltage falls below the VCC UVLO falling threshold of 3.5V (typical) or EN is switched to a low state. Connect a ceramic capacitor from VCC to PGND. The recommended range of the VCC capacitor is from 2.2µF to 10µF. 6.3.3 Precision Enable (EN) The EN pin can be connected to a voltage as high as 42V. The LM25139 has a precision enable function. When the EN voltage is greater than 1V, switching is enabled. If the EN voltage is below 0.5V, the LM25139 is in shutdown with an IQ of 2.3μA (typical) current consumption from VIN. When the EN voltage is between 0.5V and 1V, the LM25139 is in standby mode, the VCC regulator is active, and the controller is not switching. When the controller is in standby mode, the input quiescent current is 30μA (typical). Enable the LM25139 with a voltage greater than 1V. However, many applications benefit from using a resistor divider RUV1 and RUV2, as shown in Figure 6-3, to establish a precision input UVLO. TI recommends to avoid leaving the EN pin floating. Use Equation 2 and Equation 3 to calculate the UVLO resistors given the required input turn-on and turn-off voltages. RUV1= VINON −VINOFF IHYS (2) RUV2= RUV1×VEN VINON − VEN (3) www.ti.com LM25139 SLVSJ80 – OCTOBER 2025 Copyright © 2025 Texas Instruments Incorporated Submit Document Feedback 17 Product Folder Links: LM25139 |
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