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TPS5110PW

Updated: 2026-08-01

Overview

The TPS5110PW is a synchronous buck controller IC developed by Texas Instruments, designed for high-efficiency power conversion in computing systems. It integrates dual MOSFET drivers to minimize external component count while delivering precise voltage regulation. The device operates at an adjustable switching frequency (typically 200-600 kHz), enabling designers to optimize for efficiency or component size. As a critical component in voltage regulator modules (VRMs), the TPS5110PW provides stable power to processors and core logic circuits. Its compact TSSOP-16 (PW) package makes it suitable for space-constrained applications. The controller supports input voltages from 5V to 28V, making it versatile for various computing platforms.

Structure and Working Principle

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The TPS5110PW employs a voltage-mode control architecture with feed-forward compensation for rapid load transient response. The IC contains two integrated gate drivers that directly control external N-channel MOSFETs in a synchronous rectification topology. This design significantly reduces conduction losses compared to traditional diode-based solutions. Internal circuitry includes a precision reference (0.7V ±1%), error amplifier, and PWM comparator that regulate the output voltage through duty cycle modulation. The device features soft-start functionality to prevent inrush current during power-up. Protection mechanisms include overcurrent detection (using lower MOSFET RDS(on) sensing), overvoltage protection (OVP), and undervoltage lockout (UVLO).

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Key Features

The TPS5110PW offers several advanced features that distinguish it in power management applications. Its adjustable switching frequency (200-600 kHz) allows optimization for efficiency or component size. The device provides 2A gate drive current for fast MOSFET switching, reducing transition losses. A power-good output signal indicates when the regulated voltage is within specification. Notable technical specifications include ±1% reference voltage accuracy over temperature and a wide input voltage range (5V to 28V). The IC supports multiple output voltage configurations through external resistor dividers. Thermal shutdown protection prevents damage from excessive junction temperatures, making the design robust for demanding computing environments.

Application Areas

The primary application for TPS5110PW is in power supply systems for notebook computers and desktop motherboards. It's commonly used in voltage regulator modules (VRMs) that power CPUs, GPUs, and chipset components. The controller is particularly suitable for generating low-voltage, high-current supplies (typically 0.7V-3.3V at currents up to 25A). Secondary applications include industrial control systems, networking equipment, and embedded computing platforms that require efficient DC-DC conversion. The device's wide input voltage range makes it adaptable to various power architectures. In B2B contexts, the TPS5110PW is often specified in power supply designs for OEM computer manufacturers and industrial electronics providers.

Maintenance and Precautions

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Proper implementation of the TPS5110PW requires attention to several design considerations. Adequate PCB thermal management is essential, as the device may require heatsinking in high-current applications. The layout should minimize parasitic inductance in high-current paths (input capacitors, MOSFETs, and output filters) to prevent voltage spikes and ensure stable operation. Designers should follow the manufacturer's recommended layout guidelines, particularly for the gate drive traces and feedback network. Input bypass capacitors should be placed as close as possible to the IC's VIN pin. Regular inspection of solder joints and thermal performance is recommended in field applications, especially in environments with thermal cycling or vibration.

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B2B Procurement Guide

When procuring TPS5110PW for B2B applications, verify the manufacturer's part number suffix to ensure correct package type (PW for TSSOP-16). Check for RoHS compliance if required for your market. Consider purchasing from authorized distributors to guarantee genuine components, as counterfeit ICs are a known issue in the electronics supply chain. For volume purchases (typically 1,000+ units), negotiate pricing based on projected annual usage. Lead times may vary (commonly 8-12 weeks for large orders), so plan procurement accordingly. Evaluate alternative part numbers (like TPS5110PWP for tape-and-reel packaging) if they better suit your production process. Always request samples for prototype verification before committing to large orders.

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