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48-TQFN,L48
Integrated Circuits (ICs)

ISL6265CHRTZ-T

Obsolete
Renesas Electronics Corporation

MULTI-OUTPUT CONTROLLER WITH INTEGRATED MOSFET DRIVERS FOR AMD SVI CAPABLE MOBILE CPUS

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48-TQFN,L48
Integrated Circuits (ICs)

ISL6265CHRTZ-T

Obsolete
Renesas Electronics Corporation

MULTI-OUTPUT CONTROLLER WITH INTEGRATED MOSFET DRIVERS FOR AMD SVI CAPABLE MOBILE CPUS

Deep-Dive with AI

DocumentsDatasheet

Technical Specifications

Parameters and characteristics for this part

SpecificationISL6265CHRTZ-T
ApplicationsController, AMD SVI Capable Mobile CPU
Mounting TypeSurface Mount
Number of Outputs3
Package / Case48-WFQFN Exposed Pad
Supplier Device Package48-TQFN (6x6)
Voltage - Output [Max]1.55 V
Voltage - Output [Min]0.5 V

Pricing

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Description

General part information

ISL6265C Series

The ISL6265C is a multi-output controller with embedded gate drivers. A single-phase controller powers the Northbridge (VDDNB) portion of the CPU. The two remaining controller channels can be configured for two-phase or individual single-phase outputs. For uniplane CPU applications, the ISL6265C is configured as a two-phase buck converter. This allows the controller to interleave channels to effectively double the output voltage ripple frequency, and thereby reduce output voltage ripple amplitude with fewer components, lower component cost, reduced power dissipation, and smaller area. For dual-plane processors, the ISL6265C can be configured as independent single-phase controllers powering VDD0 and VDD1. The heart of the ISL6265C is the patented R3Technology™, Intersil’s Robust Ripple Regulator modulator. Compared with the traditional buck regulator, the R3Technology™ has a faster transient response. This is due to the R3modulator commanding variable switching frequency during a load transient. The Serial VID Interface (SVI) allows dynamic adjustment of the Core and Northbridge output voltages independently and in combination from 0. 500V to 1. 55V. Core and Northbridge output voltages achieve a 0. 5% system accuracy over-temperature. A unity-gain differential amplifier is provided for remote CPU die sensing. This allows the voltage on the CPU die to be accurately regulated per AMD mobile CPU specifications. Core output current sensing is realized using lossless inductor DCR sensing. All outputs feature overcurrent, overvoltage and undervoltage protection.

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Technical documentation and resources