onsemi_NB3N511DG
original

onsemi
NB3N511DG

728-NB3N511DG
Clock Generator IC, 200MHz, PLL, SOIC-8, 3.3V/5V

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ISO9001
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Tech Specifications

Package/Case
SOIC
Halogen Free
Halogen Free
Height
1.5mm
Input
Clock
Lead Free
Lead Free
Length
5mm
Max Frequency
200MHz
Max Operating Temperature
85°C
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NB3N511DG Description

NB3N511DG Description

The NB3N511DG is a high-performance clock multiplier IC designed by onsemi, a leading manufacturer in the electronics industry. This device is specifically engineered to provide reliable and efficient clock signal multiplication, making it an essential component in various electronic systems that require precise timing control. The NB3N511DG features a wide supply voltage range of 3.135V to 5.25V, ensuring compatibility with a broad range of power supply configurations. It supports both clock and crystal inputs, offering flexibility in system design. The device is capable of generating CMOS and TTL outputs, making it suitable for a variety of applications that require different output signal types.

NB3N511DG Features

  • Clock and Crystal Input Support: The NB3N511DG can accept both clock and crystal inputs, providing designers with the flexibility to choose the most suitable input type for their specific application needs.
  • Wide Supply Voltage Range: With a supply voltage range of 3.135V to 5.25V, the NB3N511DG can operate effectively across a variety of power supply conditions, enhancing its versatility in different electronic systems.
  • CMOS and TTL Outputs: The device offers both CMOS and TTL output options, allowing it to interface seamlessly with a wide range of digital circuits and systems.
  • 1:1 Input to Output Ratio: The NB3N511DG maintains a 1:1 ratio between the input and output frequencies, ensuring that the output signal is a precise multiple of the input signal.
  • High Maximum Frequency: Capable of operating at a maximum frequency of 200MHz, the NB3N511DG is well-suited for high-speed applications where precise timing control is critical.
  • Surface Mount Packaging: The NB3N511DG is available in a surface mount package, making it ideal for modern PCB designs that require compact and efficient component placement.
  • Obsolete Status: While the NB3N511DG is currently marked as obsolete, it remains a reliable choice for existing systems and legacy designs where its unique features and performance benefits are still highly valued.
  • Compliance and Safety: The NB3N511DG is REACH unaffected and ROHS3 compliant, ensuring that it meets the highest standards of environmental and safety regulations.

NB3N511DG Applications

The NB3N511DG is ideal for a variety of applications where precise clock signal multiplication is required. Some specific use cases include:

  • Telecommunications: In communication systems, the NB3N511DG can be used to generate precise clock signals for data transmission and synchronization, ensuring reliable and efficient communication.
  • Computing: In computer systems, the device can be employed to provide accurate clock signals for processors, memory, and other critical components, enhancing overall system performance and stability.
  • Consumer Electronics: The NB3N511DG is suitable for consumer electronics such as televisions, gaming consoles, and other devices that require precise timing control for optimal performance.
  • Industrial Control Systems: In industrial applications, the device can be used to synchronize various processes and systems, ensuring accurate and reliable operation.

Conclusion of NB3N511DGThe

NB3N511DG is a robust and versatile clock multiplier IC that offers a wide range of features and benefits. Its ability to support both clock and crystal inputs, combined with its wide supply voltage range and high maximum operating frequency, makes it an ideal choice for a variety of electronic systems. Despite its obsolete status, the NB3N511DG remains a reliable and efficient solution for applications that require precise timing control. Its compliance with environmental and safety regulations further enhances its suitability for modern electronic designs.

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