ISL95712HRZ

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ISL95712HRZ

+物料清單

IC REG CTRLR MULTIPH 1OUT 52QFN

  • 製造商美國瑞薩電子公司

  • 製造商部分 #ISL95712HRZ

  • 包裹 QFN-50

  • 有存貨1699

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90-日售後保障

正品保證

規格

屬性 價值
Package Tube
ProductStatus Active
Applications Controller, AMD Fusion™ SVI 2.0 CPU GPU
Voltage-Input 4.75V ~ 5.25V
NumberofOutputs 1
Voltage-Output Adj to 1.55V
OperatingTemperature -10°C ~ 100°C
MountingType Surface Mount
Package/Case 52-VFQFN Exposed Pad

概述

Description

The ISL95712HRZ is a digital multiphase controller designed for efficient power management in computing and telecommunications applications. It supports multiple outputs and phases, providing precise voltage regulation for processors and other critical components. The controller is capable of operating in various configurations, including single-phase, dual-phase, and triple-phase modes, allowing for flexibility in design and performance scalability.
Key features of the ISL95712HRZ include dynamic voltage scaling, which enhances power efficiency by adjusting the output voltage according to the load requirements. It also integrates advanced features such as fault protection, power-saving modes, and real-time monitoring via a PMBus interface, enabling users to fine-tune performance and ensure reliability.
The ISL95712HRZ is commonly used in laptops, servers, and other devices that require robust power regulation for high-performance computing. Its compact design and high efficiency make it a popular choice for modern electronic systems where space and energy savings are critical. Overall, the ISL95712HRZ represents a versatile solution for managing power in complex digital environments.

Equivalent

The ISL95712HRZ is a multiphase PWM controller used for managing power in computing devices. Equivalent products include:
1. Intersil (Renesas) ISL95866 - Similar multiphase controller with enhanced features.
2. Infineon IR35201 - Offers similar functionalities with digital control.
3. ON Semiconductor NCP81233 - A comparable multiphase buck controller.
4. Maxim Integrated MAX17005 - Another alternative with comparable features.
Compatibility depends on the specific system requirements and design considerations. Always check the datasheet for detailed specifications.

Features

The ISL95712HRZ is a digital hybrid multi-phase controller designed for computing and graphic applications. Key features include:
1. Multi-Phase Capability: Supports up to four phases, optimizing load distribution and improving thermal performance.
2. Wide Input Voltage Range: Compatible with a wide range of input voltages, enhancing its versatility for different systems.
3. Dynamic Phase Control: Dynamically adjusts the number of active phases based on the load, improving efficiency.
4. Adaptive Body Diode Conduction: Minimizes body diode conduction loss, enhancing efficiency, especially at light loads.
5. Integrated Drivers: Contains integrated MOSFET drivers, reducing the need for external components and simplifying design.
6. PMBus Interface: Features a PMBus interface for digital communication, allowing for remote monitoring and control.
7. Flexible Configuration: Offers a wide range of programmable settings to tailor performance for specific applications.
8. Fault Protection: Includes overcurrent, overvoltage, and overtemperature protection features to ensure reliable operation.
9. Compact Package: Available in a small package for space-constrained applications.
These features make the ISL95712HRZ suitable for applications requiring efficient power management and precise control.

Pinout

The ISL95712HRZ is a power supply controller used for microprocessor applications. It typically comes in a 4mm x 4mm, 32-lead QFN package. This IC is designed to provide a complete power solution for Intel IMVP8 compliant systems, particularly for laptops and ultrabooks.
The key functions of the ISL95712HRZ include regulating the output voltage, managing load line requirements, and providing various power-saving modes to optimize efficiency. It features integrated MOSFET drivers and supports dynamic voltage scaling, which is crucial for adapting to varying load conditions and helping to extend battery life in portable devices.
The ISL95712HRZ supports multiple phases which allows for efficient power distribution and thermal management. It also includes over-current protection (OCP), under-voltage lockout (UVLO), and other fault protections to ensure safe operation under different conditions. This controller is typically used in conjunction with discrete MOSFETs to complete the power regulation circuit.

Manufacturer

The ISL95712HRZ is manufactured by Renesas Electronics Corporation. Renesas is a leading global semiconductor company that specializes in the design and development of a wide range of microcontrollers, analog, power, and SoC (System on Chip) products. The company serves a variety of industries including automotive, industrial, home electronics, and information communication technology. Renesas is known for providing solutions that enable the efficient and effective implementation of electronic systems, offering products that help enhance performance, reliability, and energy efficiency in various applications.

Application

The ISL95712HRZ is a multiphase PWM controller primarily used in computing and graphics applications. It is designed for voltage regulation in high-performance processors and graphics cards. Key application areas include:
1. Desktop and laptop computers for powering CPUs and GPUs.
2. Servers, where efficient and precise power delivery to processors is crucial.
3. Gaming systems and workstations, providing stable power for high-performance graphics.
4. Any electronic system requiring precise control of multiple power phases for better energy efficiency and thermal management.
These applications benefit from the ISL95712HRZ's capabilities in delivering efficient power management and enhanced performance.

Package

The ISL95712HRZ is typically available in a 32-lead 5x5 mm QFN (Quad Flat No-leads) package. This package type is known for its compact size, excellent thermal performance, and suitability for high-frequency applications.