ON Semiconductor NCP5392MNR2G
- Part Number:
- NCP5392MNR2G
- Manufacturer:
- ON Semiconductor
- Ventron No:
- 3314025-NCP5392MNR2G
- Description:
- IC CTLR BUCK 2/3/4PHASE 40QFN
- Datasheet:
- NCP5392MNR2G
ON Semiconductor NCP5392MNR2G technical specifications, attributes, parameters and parts with similar specifications to ON Semiconductor NCP5392MNR2G.
- Mounting TypeSurface Mount
- Package / Case40-VFQFN Exposed Pad
- Surface MountYES
- Operating Temperature0°C~85°C
- PackagingTape & Reel (TR)
- JESD-609 Codee3
- Pbfree Codeyes
- Part StatusObsolete
- Moisture Sensitivity Level (MSL)1 (Unlimited)
- Number of Terminations40
- Terminal FinishMATTE TIN
- ApplicationsController, Intel VR11, VR11.1, AMD CPU
- Terminal PositionQUAD
- Terminal FormNO LEAD
- Peak Reflow Temperature (Cel)NOT SPECIFIED
- Number of Functions1
- Terminal Pitch0.5mm
- Reach Compliance Codeunknown
- Reflow Temperature-Max (s)NOT SPECIFIED
- Pin Count40
- Number of Outputs4
- Input Voltage-Nom5V
- Analog IC - Other TypeSWITCHING CONTROLLER
- Voltage - Input4.75V~5.25V
- Voltage - Output0.375V~1.6V
- Control TechniquePULSE WIDTH MODULATION
- Switcher ConfigurationPUSH-PULL
- Switching Frequency-Max1000kHz
- Height Seated (Max)1mm
- Length6mm
- Width6mm
- RoHS StatusROHS3 Compliant
NCP5392MNR2G Overview
ON Semiconductor is a well-known brand in the electronic components industry, with a reputation for producing high-quality and reliable products. One of their latest offerings is a PMIC - Voltage Regulators - Special Purpose chip, designed for use in a variety of applications. This chip falls under the PMIC - Voltage Regulators - Special Purpose category, which is known for its versatility and efficiency in regulating voltage for different purposes. The package/case of this chip is a 40-VFQFN Exposed Pad, which is a small and compact form factor that allows for easy integration into different electronic devices. This makes it suitable for use in a wide range of applications, including controllers, Intel VR11, VR11.1, and AMD CPUs. Its versatile nature and compatibility with different devices make it a popular choice among electronic manufacturers. One of the key features of this chip is its terminal form, which is NO LEAD. This means that it does not have any lead components, making it more environmentally friendly and compliant with regulations. Additionally, this chip boasts a single function, making it easy to use and integrate into electronic systems. When it comes to reflow temperature, the maximum temperature for this chip is NOT SPECIFIED. This means that it can withstand high temperatures without compromising its performance, making it suitable for use in various environments. Furthermore, this chip has four outputs, providing flexibility and options for different voltage requirements. The switcher configuration for this chip is PUSH-PULL, which is a common type of switching topology used in power converters. This configuration allows for efficient conversion of power, making the chip more energy-efficient and reliable. Its maximum switching frequency is 1000kHz, ensuring fast and accurate voltage regulation. In terms of physical specifications, the height seated (Max) for this chip is 1mm, making it a compact and space-saving option for electronic devices. This is especially important in today's technology-driven world, where miniaturization is a key factor in product design. Lastly, this chip is also ROHS3 compliant, meaning it meets the Restriction of Hazardous Substances directive and is safe for use in electronic devices. This is an important aspect for both manufacturers and consumers, as it ensures the safety and sustainability of electronic products. In conclusion, the ON Semiconductor PMIC - Voltage Regulators - Special Purpose chip is a highly versatile and efficient component that offers a range of features and benefits. Its small form factor, compatibility with different devices, and compliance with regulations make it a top choice for electronic manufacturers. With its high performance and reliability, this chip is sure to meet the demands of various electronic applications.
NCP5392MNR2G Features
Widely used in Controller, Intel VR11, VR11.1, AMD CPU applications
SWITCHING CONTROLLER analog IC
NCP5392MNR2G Applications
There are a lot of Rochester Electronics, LLC NCP5392MNR2G Specialized Voltage Regulators applications.
Server DDR Power
Set Top Box
Two-Way Pagers
Termination
Digital Still Cameras
Telecom/Datacom
Car Navigation Displays
PDAs, Pocket PCs
Wireless Computers
Portable DVD
ON Semiconductor is a well-known brand in the electronic components industry, with a reputation for producing high-quality and reliable products. One of their latest offerings is a PMIC - Voltage Regulators - Special Purpose chip, designed for use in a variety of applications. This chip falls under the PMIC - Voltage Regulators - Special Purpose category, which is known for its versatility and efficiency in regulating voltage for different purposes. The package/case of this chip is a 40-VFQFN Exposed Pad, which is a small and compact form factor that allows for easy integration into different electronic devices. This makes it suitable for use in a wide range of applications, including controllers, Intel VR11, VR11.1, and AMD CPUs. Its versatile nature and compatibility with different devices make it a popular choice among electronic manufacturers. One of the key features of this chip is its terminal form, which is NO LEAD. This means that it does not have any lead components, making it more environmentally friendly and compliant with regulations. Additionally, this chip boasts a single function, making it easy to use and integrate into electronic systems. When it comes to reflow temperature, the maximum temperature for this chip is NOT SPECIFIED. This means that it can withstand high temperatures without compromising its performance, making it suitable for use in various environments. Furthermore, this chip has four outputs, providing flexibility and options for different voltage requirements. The switcher configuration for this chip is PUSH-PULL, which is a common type of switching topology used in power converters. This configuration allows for efficient conversion of power, making the chip more energy-efficient and reliable. Its maximum switching frequency is 1000kHz, ensuring fast and accurate voltage regulation. In terms of physical specifications, the height seated (Max) for this chip is 1mm, making it a compact and space-saving option for electronic devices. This is especially important in today's technology-driven world, where miniaturization is a key factor in product design. Lastly, this chip is also ROHS3 compliant, meaning it meets the Restriction of Hazardous Substances directive and is safe for use in electronic devices. This is an important aspect for both manufacturers and consumers, as it ensures the safety and sustainability of electronic products. In conclusion, the ON Semiconductor PMIC - Voltage Regulators - Special Purpose chip is a highly versatile and efficient component that offers a range of features and benefits. Its small form factor, compatibility with different devices, and compliance with regulations make it a top choice for electronic manufacturers. With its high performance and reliability, this chip is sure to meet the demands of various electronic applications.
NCP5392MNR2G Features
Widely used in Controller, Intel VR11, VR11.1, AMD CPU applications
SWITCHING CONTROLLER analog IC
NCP5392MNR2G Applications
There are a lot of Rochester Electronics, LLC NCP5392MNR2G Specialized Voltage Regulators applications.
Server DDR Power
Set Top Box
Two-Way Pagers
Termination
Digital Still Cameras
Telecom/Datacom
Car Navigation Displays
PDAs, Pocket PCs
Wireless Computers
Portable DVD
NCP5392MNR2G More Descriptions
NCP5392 Series 12 V 1 MHz 2/3/4-Phase VR11.1 Controller - QFN-40
DC/DC Cntrlr Dual-OUT Step Down 1000kHz 40-Pin QFN EP T/R
NCP5392MNR2G, DC-DC Controller Quad, 5.25 V Step-Down, 1000 kHz, 40-Pin, QFN | ON Semiconductor NCP5392MNR2G
Switching Controller, Voltage-mode, 1000kHz Switching Freq-Max
Current Mode PWM Controller 40-Pin QFN EP T/R
2/3/4-Phase VR11.1 Buck Controller
French Electronic Distributor since 1988
NCP5392MNR2G, SHIFT REGISTERS;
The NCP5392 provides up to a 4-phase buck solution which combines differential voltage sensing differential phase current sensing and adaptive voltage positioning to provide accurately regulated power for both Intel and AMD processors. Dual-edge pulse width modulation combined with inductor current sensing reduces system cost by providing the fastest initial response to dynamic load events. Dual-edge multiphase modulation reduces the total bulk and ceramic output capacitance required to meet transient regulation specifications. A high performance operational error amplifer is provided to simplify compensation of the system. Dynamic Reference Injection further simplifies loop compensation by eliminating the need to compromise between closed loop transient response and Dynamic VID performance.
DC/DC Cntrlr Dual-OUT Step Down 1000kHz 40-Pin QFN EP T/R
NCP5392MNR2G, DC-DC Controller Quad, 5.25 V Step-Down, 1000 kHz, 40-Pin, QFN | ON Semiconductor NCP5392MNR2G
Switching Controller, Voltage-mode, 1000kHz Switching Freq-Max
Current Mode PWM Controller 40-Pin QFN EP T/R
2/3/4-Phase VR11.1 Buck Controller
French Electronic Distributor since 1988
NCP5392MNR2G, SHIFT REGISTERS;
The NCP5392 provides up to a 4-phase buck solution which combines differential voltage sensing differential phase current sensing and adaptive voltage positioning to provide accurately regulated power for both Intel and AMD processors. Dual-edge pulse width modulation combined with inductor current sensing reduces system cost by providing the fastest initial response to dynamic load events. Dual-edge multiphase modulation reduces the total bulk and ceramic output capacitance required to meet transient regulation specifications. A high performance operational error amplifer is provided to simplify compensation of the system. Dynamic Reference Injection further simplifies loop compensation by eliminating the need to compromise between closed loop transient response and Dynamic VID performance.
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