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LDBL20 数据表(PDF) 9 Page - STMicroelectronics |
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LDBL20 数据表(HTML) 9 Page - STMicroelectronics |
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9 / 19 page ![]() LDBL20 Application information DocID028296 Rev 1 9/19 6 Application information 6.1 Soft-start function The LDBL20 has an internal soft-start circuit. By increasing the startup time up to 100 µs, without the need of any external soft-start capacitor, this feature keeps the regulator inrush current at startup under control. 6.2 Output discharge function The LDBL20 integrates a MOSFET connected between VOUT and GND. This transistor is activated when the EN pin goes to low logic level and has the function to quickly discharge the output capacitor when the device is disabled by the user. The device is available with or without the auto-discharge feature. See Table 6: "Order code". 6.3 Input output capacitors The LDBL20 requires external capacitors to assure the regulator control loop stability. Any good quality ceramic capacitor can be used but, the X5R and the X7R are suggested since they guarantee a very stable combination of capacitance and ESR overtemperature. Locating the input/output capacitors as closer as possible to the relative pins is recommended. The LDBL20 requires an input capacitor with a minimum value of 1 μF. This capacitor must be located as closer as possible to the input pin of the device and returned to a clean analog ground. The control loop of the LDBL20 is designed to work with an output ceramic capacitor. This capacitor must meet the requirements of minimum capacitance and equivalent series resistance (ESR), as shown in Figure 17: "Stability area vs (COUT, ESR)". To assure stability, the output capacitor must maintain its ESR and capacitance in the stable region, over the full operating temperature range. The LDBL20 shows stability with a minimum effective output capacitance of 220 nF. However, to keep stability in all operating conditions (temperature, input voltage and load variations), a minimum output capacitor of 0.47 µF is recommended. The suggested combination of 1 μF input and output capacitors offers a good compromise among the stability of the regulator, optimum transient response and total PCB area occupation. |
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