1589%3b-16QFN-1-3x3(2EP)%3b-%3b-16.jpg
Image shown is a representation only. Exact specifications should be obtain- ed from the product data sheet.

Monolithic Power Systems Inc. NB677GQ-Z

Manufacturer Part Number : NB677GQ-Z
Manufacturer : Monolithic Power Systems Inc.
Description : IC REG BUCK SYNC 24V 8A
Lead Free Status / RoHS Status : Lead free / RoHS Compliant
Datasheet : NB677GQ-Z.PDF NB677GQ-Z PDF
Download Datasheet : NB677GQ-Z Details.PDF NB677GQ-Z PDF
EDA / CAD Models : NB677GQ-Z by SnapEDA
Quantity:
1 153 7626584 Monolithic-Power-Systems-Inc/NB677GQ-Z 7626584
Topology:Step-Down (Buck) Synchronous (1), Linear (LDO) (1)
Function:Any Function
Frequency - Switching:500kHz
Voltage/Current - Output 1:3.3V, 8A
Voltage/Current - Output 2:3.3V, 100mA
Voltage/Current - Output 3:-
w/LED Driver:No
w/Supervisor:No
w/Sequencer:No
Voltage - Supply:5.5 V ~ 24 V
Operating Temperature:-40~C ~ 125~C
Mounting Type:Surface Mount
Package / Case:14-VFQFN Exposed Pad
Supplier Device Package:16-QFN (3x3)

Overview

Embark on a journey of advanced power management with the NB677GQ-Z, a pioneering creation by Monolithic Power Systems Inc. As a leading member of the PMIC - Voltage Regulators - Linear + Switching category, this Power Management IC (PMIC) redefines precision and efficiency by seamlessly integrating both linear and switching voltage regulators, addressing the intricate power delivery demands of contemporary electronic systems.

Features

1. Quad-Output Power Excellence: Immerse yourself in the versatility of a quad-output power solution embedded within the NB677GQ-Z. Seamlessly integrating both linear and switching voltage regulators ensures optimal efficiency across diverse load conditions, delivering peak performance in dynamic operational environments.

2. Programmable Output Voltage: Tailor your power supply precisely to your application needs with programmable output voltage, providing adaptability and customization for electronic systems requiring distinct voltage levels. Achieve optimal performance and efficiency with a tailored power delivery solution.

3. Advanced Power Sequencing: Experience the sophistication of advanced power sequencing capabilities, enhancing system reliability through controlled and synchronized activation of multiple power supply outputs. This ensures seamless operation, particularly in complex setups with varying power requirements.

4. Ultra-Fast Transient Response: Navigate dynamic load changes effortlessly with ultra-fast transient response. This feature ensures swift and precise adjustment to sudden shifts in power requirements, maintaining stability and reliability in the face of varying operational conditions.

5. Comprehensive Fault Protection: Safeguard your system with comprehensive fault protection mechanisms, including overcurrent and thermal protection. The NB677GQ-Z remains resilient under challenging operating conditions, ensuring long-term reliability and system integrity.

Applications

1. Telecommunications Infrastructure: Power your communication networks confidently with the NB677GQ-Z, delivering stable and efficient voltage regulation for uninterrupted connectivity in telecommunications infrastructure.

2. Industrial Control Systems: Navigate the dynamic demands of industrial environments with confidence. The NB677GQ-Z provides robust power management for industrial automation, robotics, and control systems, ensuring stability in complex settings.

3. Server Power Supplies: Enhance the performance of server power supplies with the NB677GQ-Z, optimizing quad-output power dynamics and advanced power sequencing for reliable and efficient power delivery in data centers.

4. Automotive Electronics: Meet the stringent requirements of automotive electronics with the NB677GQ-Z, offering precise and efficient power regulation for a variety of vehicle systems. Contribute to the evolution of intelligent and energy-efficient vehicles.

5. Renewable Energy Systems: Contribute to sustainable energy solutions with the NB677GQ-Z in renewable energy applications, providing reliable and efficient power regulation for solar inverters and other green energy systems.

Request for Quotation

Technical Parameters of NB677GQ-Z

Topology:Step-Down (Buck) Synchronous (1), Linear (LDO) (1)
Function:Any Function
Frequency - Switching:500kHz
Voltage/Current - Output 1:3.3V, 8A
Voltage/Current - Output 2:3.3V, 100mA
Voltage/Current - Output 3:-
w/LED Driver:No
w/Supervisor:No
w/Sequencer:No
Voltage - Supply:5.5 V ~ 24 V
Operating Temperature:-40~C ~ 125~C
Mounting Type:Surface Mount
Package / Case:14-VFQFN Exposed Pad
Supplier Device Package:16-QFN (3x3)

Product Details

Overview

Embark on a journey of advanced power management with the NB677GQ-Z, a pioneering creation by Monolithic Power Systems Inc. As a leading member of the PMIC - Voltage Regulators - Linear + Switching category, this Power Management IC (PMIC) redefines precision and efficiency by seamlessly integrating both linear and switching voltage regulators, addressing the intricate power delivery demands of contemporary electronic systems.

Features

1. Quad-Output Power Excellence: Immerse yourself in the versatility of a quad-output power solution embedded within the NB677GQ-Z. Seamlessly integrating both linear and switching voltage regulators ensures optimal efficiency across diverse load conditions, delivering peak performance in dynamic operational environments.

2. Programmable Output Voltage: Tailor your power supply precisely to your application needs with programmable output voltage, providing adaptability and customization for electronic systems requiring distinct voltage levels. Achieve optimal performance and efficiency with a tailored power delivery solution.

3. Advanced Power Sequencing: Experience the sophistication of advanced power sequencing capabilities, enhancing system reliability through controlled and synchronized activation of multiple power supply outputs. This ensures seamless operation, particularly in complex setups with varying power requirements.

4. Ultra-Fast Transient Response: Navigate dynamic load changes effortlessly with ultra-fast transient response. This feature ensures swift and precise adjustment to sudden shifts in power requirements, maintaining stability and reliability in the face of varying operational conditions.

5. Comprehensive Fault Protection: Safeguard your system with comprehensive fault protection mechanisms, including overcurrent and thermal protection. The NB677GQ-Z remains resilient under challenging operating conditions, ensuring long-term reliability and system integrity.

Applications

1. Telecommunications Infrastructure: Power your communication networks confidently with the NB677GQ-Z, delivering stable and efficient voltage regulation for uninterrupted connectivity in telecommunications infrastructure.

2. Industrial Control Systems: Navigate the dynamic demands of industrial environments with confidence. The NB677GQ-Z provides robust power management for industrial automation, robotics, and control systems, ensuring stability in complex settings.

3. Server Power Supplies: Enhance the performance of server power supplies with the NB677GQ-Z, optimizing quad-output power dynamics and advanced power sequencing for reliable and efficient power delivery in data centers.

4. Automotive Electronics: Meet the stringent requirements of automotive electronics with the NB677GQ-Z, offering precise and efficient power regulation for a variety of vehicle systems. Contribute to the evolution of intelligent and energy-efficient vehicles.

5. Renewable Energy Systems: Contribute to sustainable energy solutions with the NB677GQ-Z in renewable energy applications, providing reliable and efficient power regulation for solar inverters and other green energy systems.

NB677GQ-Z Related Products

Popular Categories

Hot Sale

Related Manufacturers

Electronic Parts Index
More
# 0 1 2 3 4 5 6 7 8 9 A B C D E F G H I J K L M N O P Q R S T U V W X Y Z

We value your privacy

Our website uses cookies to ensure you are getting the best browsing experience, serve personalized content, and analyze our traffic.
By clicking "Accept Cookies", you consent to our use of cookies. Privacy Policy