JAJSO66A December 2023 – January 2024 TPS61289
PRODUCTION DATA
The TPS61289 has an internal cycle-by-cycle current limit to prevent the inadvertent application of a large switching current.
In boost mode, the TPS61289 adopts a cycle-by-cycle valley current limit method. Current limit detection occurs during the off-time by sensing of the voltage drop across the integrated high-side MOSFET. The high-side MOSFET is turned off immediately as soon as the switch valley current triggers the limit threshold. The switch valley current limit can be set by a resistor from the ILIM pin to ground. The relationship between the valley current limit and the resistor is shown in Equation 3.
where
For instance, the valley current limit in boost mode is 20A if the RLIM is 20kΩ. ILIM pin can not be left floating or connected to VCC.
In buck mode, the TPS61289 adopts a cycle-by-cycle peak current limit method. Current limit detection occurs during the on-time by sensing of the voltage drop across the integrated high-side MOSFET. The high-side MOSFET is turned off immediately as soon as the switch peak current triggers the limit threshold. The switch peak current limit can be set by a resistor from the ILIM pin to ground. The relationship between the peak current limit and the resistor is shown in Equation 4.
where
For instance, the peak current limit in buck mode is 20A if the RLIM is 20kΩ. ILIM pin can not be left floating or connected to VCC.