See datasheet for actual packaging/pinout drawings

Packaging

Package | PIN:

RHF | 24

Temp:

I (-40 to 85)

ECO Plan:

Green (RoHS & no Sb/Br)

TPS65290LMRHFR


Ultra-Low Power Management IC (PMIC)

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Qty.Price
1 - 9 $ 4.38
10 - 24 $ 3.94
25 - 99 $ 3.59
100 - 249 $ 3.24
250 - 499 $ 2.92
500 - 749 $ 2.47
750 - 999 $ 2.08
1000 - 9999 $ 1.75

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Texas Instruments TPS65290LMRHFR

The TPS65290 device is a power-managemant integrated circuit (PMIC) designed to operate in applications dependent on efficient power management over a wide range of system load conditions ranging from fractions of a microamp to a few hundred milliamps. The device operates over a wide 2.2-V to 5-V input-voltage range and incorporates a very low-quiescent-current always-on power supply, a 500-mA buck-and-boost converter, a 150-mA low-dropout regulator (LDO) and eight power-distribution switches. The always-on supply features three different factory selectable options: 30-mA buck converter with 300-nA quiescent current, 10-mA LDO with 400-nA quiescent current, and 10-mA zero IDDQ drop with 100-nA quiescent current. The buck-boost converter employs PFM or PWM operation with forced PWM option, for maximum overall efficiency. A designer can use the switches to support different configurations for the various loads supported by the TPS65290 device. For energy-harvesting applications, the device integrates a programmable input-voltage monitor to allow for connection and disconnection of the different power blocks and switches without the intervention of the master processor.

To maximize control flexibility, the TPS65290 device includes a factory-selectable choice between SPI and I2C interfaces. To minimize PC board footprint and reduce bill of materials (BOM) components and cost, the PMIC internally includes resistive dividers (boost-buck, LDO, VIN monitor), I2C pullup resistors, SPI pulldown resistors, boost-buck compensation, and an interrupt pullup resistor. Completion of a comprehensive multi-rail solution for efficient flow meter, handheld industrial, fitness, and other long-term data-acquisition systems requires only low-cost ceramic capacitors and power inductors.

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