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ST1L08SPUR Datenblatt(PDF) 11 Page - STMicroelectronics

Teilenummer ST1L08SPUR
Bauteilbeschribung  800 mA ultra low drop, high PSRR voltage regulator
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Hersteller  STMICROELECTRONICS [STMicroelectronics]
Direct Link  http://www.st.com
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ST1L08
Application information
DocID026624 Rev 2
11/21
6
Application information
6.1
Thermal and short-circuit protections
The ST1L08 is self-protected from short-circuit condition and overtemperature. When the
output load is higher than the one supported by the device, the output current increases
until the limit of typically 1.8 A is reached, at this point the current is kept constant even
when the load impedance is zero.
Thermal protection acts when the junction temperature reaches 165 °C typical. At this point
the output of the IC shuts down. As soon as the junction temperature falls below the
thermal hysteresis value the device starts working again.
In order to calculate the maximum power that the device can dissipate, keeping the junction
temperature below the TOP, the following formula is used:
Equation 1
6.2
Output voltage setting for ADJ version
In the adjustable version, the output voltage can be set from 0.5 V up to 4 V, by connecting
a resistor divider between the ADJ pin and the output, thus allowing remote voltage
sensing.
The resistor divider should be selected using the following equation:
Equation 2
The resistors to be used, should have values in the range from 10 kΩ to 100 kΩ.
Lower values can also be suitable, but they increase current consumption.
6.3
Bias pin voltage requirements
The bias input is designed for low drop applications. The bias pin must be at least 2.7 V,
and at least 1.5 V higher than the output, to ensure proper biasing to the N-channel power
pass transistor.
If VIN supply voltage meets these requirements, the bias pin can be tied to VIN.
6.4
External capacitors requirements
The regulator is designed to be stable with ultra low ESR ceramic capacitors on the input
and the output. The suggested minimum value of the input, bias and output capacitors is
1 μF. The input capacitor must be connected as closer as possible to the VIN terminal. The
output capacitor must also be connected as closer as possible to the output pin.


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