Wholesale Amplifier ICs - TPS57112CQRTERQ1 Switching Voltage Regulators Automotive IC – Shinzo

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Wholesale Amplifier ICs - TPS57112CQRTERQ1 Switching Voltage Regulators Automotive IC – Shinzo Detail:

♠ Product Description

Product Attribute Attribute Value
Manufacturer: Texas Instruments
Product Category: Switching Voltage Regulators
RoHS:  Details
Mounting Style: SMD/SMT
Package / Case: WQFN-16
Topology: Buck
Output Voltage: 800 mV to 4.5 V
Output Current: 2 A
Number of Outputs: 1 Output
Input Voltage, Min: 2.95 V
Input Voltage, Max: 6 V
Quiescent Current: 515 uA
Switching Frequency: 200 kHz to 2 MHz
Minimum Operating Temperature: - 40 C
Maximum Operating Temperature: + 125 C
Packaging: Reel
Packaging: Cut Tape
Brand: Texas Instruments
Input Voltage: 2.95 V to 6 V
Moisture Sensitive: Yes
Product Type: Switching Voltage Regulators
Shutdown: Shutdown
Factory Pack Quantity: 3000
Subcategory: PMIC – Power Management ICs
Supply Voltage – Min: 2.95 V
Type: Synchronous
Unit Weight: 0.000727 oz

♠TPS57112C-Q1 Automotive 2.95-V to 6-V, 2-A, 2-MHz Synchronous Buck Converter

The TPS57112C-Q1 device is a full-featured 6-V, 2- A, synchronous step-down current-mode converter with two integrated MOSFETs. The TPS57112C-Q1 device enables small designs by integrating the MOSFETs, implementing currentmode control to reduce external component count, reducing inductor size by enabling up to 2-MHz switching frequency, and minimizing the IC footprint with a small 3-mm × 3-mm thermally enhanced QFN package. The TPS57112C-Q1 device provides accurate regulation for a variety of loads with a ±1% voltage reference (Vref) over temperature. The integrated 12-mΩ MOSFETs and 515-μA typical supply current maximize efficiency. Using the enable pin to enter the shutdown mode reduces supply current to 5.5 µA, typical. The internal undervoltage lockout setting is 2.45 V, but programming the threshold with a resistor network on the enable pin can increase the setting. The slowstart pin controls the output-voltage start-up ramp. An open-drain power-good signal indicates when the output is within 93% to 107% of its nominal voltage. Frequency foldback and thermal shutdown protect the device during an overcurrent condition.


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