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ISL6334C VR11.1, 4-Phase PWM Controller with Light Load Efficiency Enhancement and Load Current Monitoring Features

VIN (min) (V) 3
VIN (max) (V) 12
VOUT (min) (V) 0.5
VOUT (max) (V) 1.6
IOUT (max) (A) ≥130

The ISL6334B, ISL6334C control microprocessor core voltage regulation by driving up to 4 interleaved synchronous-rectified buck channels in parallel. This multiphase architecture results in multiplying channel ripple frequency and reducing input and output ripple currents. Lower ripple results in fewer components, lower cost, reduced power dissipation, and smaller implementation area.

Microprocessor loads can generate load transients with extremely fast edge rates and require high efficiency at light load. The ISL6334B, ISL6334C utilizes Intersil's proprietary Active Pulse Positioning (APP), Adaptive Phase Alignment (APA) modulation scheme, active phase adding and dropping to achieve and maintain the extremely fast transient response with fewer output capacitors and high efficiency from light to full load.

The ISL6334B, ISL6334C is designed to be compliant to Intel VR11.1 specifications. It accurately reports the load current via IMON pin to the microprocessor, which sends an active low PSI# signal to the controller at low power mode. The controller then enters 1- or 2-phase operation with diode emulation option to reduce magnetic core and switching losses, yielding high efficiency at light load. After the PSI# signal is de-asserted, the dropped phase(s) are added back to sustain heavy load transient response and efficiency.

Today's microprocessors require a tightly regulated output voltage position versus load current (droop). The ISL6334B, ISL6334C senses the output current continuously by utilizing patented techniques to measure the voltage across the dedicated current sense resistor or the DCR of the output inductor. The sensed current flows out of FB pin to develop the precision voltage drop across the feedback resistor for droop control. Current sensing circuits also provide the needed signals for channel-current balancing, average overcurrent protection and individual phase current limiting. A NTC thermistor's temperature is sensed via TM pin and internally digitized for thermal monitoring and for integrated thermal compensation of the current sense elements.

A unity gain, differential amplifier is provided for remote voltage sensing and completely eliminates any potential difference between remote and local grounds. This improves regulation and protection accuracy. The threshold-sensitive enable input is available to accurately coordinate the start-up of the ISL6334B, ISL6334C with any other voltage rail. Dynamic-VIDTM technology allows seamless on-the-fly VID changes. The offset pin allows accurate voltage offset settings that are independent of VID setting.

ISL6334C 特点
ISL6334C 芯片订购指南
芯片型号 产品状态 温度范围 封装尺寸图 潮湿敏感度等级MSL 美元价格US $
ISL6334CCRZ 量产 民用级 40 Ld QFN 1 4.00
ISL6334CCRZ-T 量产 民用级 40 Ld QFN T +R 1 4.00
ISL6334CIRZ 量产 工业级 40 Ld QFN 1 4.33
ISL6334CIRZ-T 量产 工业级 40 Ld QFN T +R 1 4.33
ISL6334C 应用技术支持与电子电路设计开发资源下载
  1. ISL6334C 数据资料 datatSheet 下载.PDF
  2. Power 电源管理器件产品选型指南 . pdf