TPS5410QDRQ1


YeeHing #: Y012-TPS5410QDRQ1
Inventory: 5400

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Description

TPS5410QDRQ1 Texas Instruments - Yeehing Electronics

Automotive 5.5V to 36V, 500kHz Fixed Frequency 1A Buck Converter

Pricing (USD)

Quantity Unit Price
1 — 99 2.689
100 — 249 2.356
250 — 999 1.652
1,000 + 0.93

The above prices are for reference only.

Specifications

Manufacturer Texas Instruments
Product Category Switching Voltage Regulators
RoHS Y
Mounting Style SMD/SMT
Package / Case SOIC-8
Output Voltage 1.23 V to 31 V
Output Current 1 A
Number of Outputs 1 Output
Input Voltage MAX 36 V
Topology Buck
Input Voltage MIN 5.5 V
Switching Frequency 500 kHz
Minimum Operating Temperature - 40 C
Maximum Operating Temperature + 125 C
Qualification AEC-Q100
Series TPS5410-Q1
Packaging Reel
Input Voltage 5.5 V to 36 V
Operating Temperature Range - 40 C to + 125 C
Product Voltage Regulators
Type Voltage Converter
Brand Texas Instruments
Moisture Sensitive Yes
Operating Supply Current 3 mA
Product Type Switching Voltage Regulators
Factory Pack Quantity 2500
Subcategory PMIC - Power Management ICs
Tradename SWIFT
Unit Weight 0.002677 oz

For more information, please refer to datasheet

Documents

TPS5410QDRQ1 Datasheet

More Information

As a member of the SWIFT™ family of DC/DC regulators, the TPS5410 is a high-output-current PWM converter that integrates a low resistance high side N-channel MOSFET. Included on the substrate with the listed features is a high performance voltage error amplifier that provides tight voltage regulation accuracy under transient conditions; an undervoltage-lockout circuit to prevent start-up until the input voltage reaches 5.5 V; an internally set slow-start circuit to limit inrush currents; and a voltage feed-forward circuit to improve the transient response. Using the ENA pin, shutdown supply current is reduced to 18 µA typically. Other features include an active high enable, overcurrent limiting, overvoltage protection and thermal shutdown. To reduce design complexity and external component count, the TPS5410 feedback loop is internally compensated.

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