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TPS61253_016 Folha de dados(PDF) 17 Page - Texas Instruments

Nome de Peças TPS61253_016
Descrição Electrónicos  TPS6125x 3.5-MHz High Efficiency Step-Up Converter In Chip Scale Packaging
PDF  37 Pages
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Fabricante Electrônico  TI1 [Texas Instruments]
Página de início  http://www.ti.com
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TPS61253_016 Folha de dados(HTML) 17 Page - Texas Instruments

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TPS61253, TPS61254, TPS61256, TPS61258, TPS61259, TPS612592
www.ti.com
SLVSAG8G – SEPTEMBER 2011 – REVISED JUNE 2016
Product Folder Links: TPS61253 TPS61254 TPS61256 TPS61258 TPS61259 TPS612592
Submit Documentation Feedback
Copyright © 2011–2016, Texas Instruments Incorporated
Feature Description (continued)
9.3.3 Load Disconnect and Reverse Current Protection
Regular boost converters do not disconnect the load from the input supply and therefore a connected battery will
be discharged during shutdown. The advantage of TPS6125x is that this converter disconnects the output from
the input of the power supply when it is disabled (so called true shutdown mode). In case of a connected battery
it prevents it from being discharged during shutdown of the converter.
9.3.4 Softstart
The TPS6125x device has an internal softstart circuit that limits the inrush current during start-up. The first step
in the start-up cycle is the pre-charge phase. During pre-charge, the rectifying switch is turned on until the output
capacitor is charged to a value close to the input voltage. The rectifying switch is current limited (approximately
200 mA) during this phase. This mechanism is used to limit the output current under short-circuit condition.
Once the output capacitor has been biased to the input voltage, the converter starts switching. The soft-start
system progressively increases the on-time as a function of the input-to-output voltage ratio. As soon as the
output voltage is reached, the regulation loop takes control and full current operation is permitted.
9.3.5 Undervoltage Lockout
The under voltage lockout circuit prevents the device from malfunctioning at low input voltages and the battery
from excessive discharge. It disables the output stage of the converter once the falling VIN trips the under-voltage
lockout threshold VUVLO which is typically 2.0V. The device starts operation once the rising VIN trips VUVLO
threshold plus its hysteresis of 100 mV at typically 2.1 V.
9.3.6 Thermal Regulation
The TPS6125x device contains a thermal regulation loop that monitors the die temperature during the pre-charge
phase. If the die temperature rises to high values of about 110 °C, the device automatically reduces the current
to prevent the die temperature from increasing further. Once the die temperature drops about 10 °C below the
threshold, the device will automatically increase the current to the target value. This function also reduces the
current during a short-circuit condition.
9.3.7 Thermal Shutdown
As soon as the junction temperature, TJ, exceeds 140°C (typ.) the device goes into thermal shutdown. In this
mode, the high-side and low-side MOSFETs are turned-off. When the junction temperature falls below the
thermal shutdown minus its hysteresis, the device continuous the operation.
9.4 Device Functional Modes
9.4.1 Power Save Mode
The TPS6125x integrates a power save mode to improve efficiency at light load. In power save mode the
converter only operates when the output voltage trips below a set threshold voltage.
It ramps up the output voltage with several pulses and goes into power save mode once the output voltage
exceeds the set threshold voltage.
The PFM mode is left and PWM mode entered in case the output current can not longer be supported in PFM
mode.



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