onsemi_NB7L14MN1G
original

onsemi
NB7L14MN1G

764-NB7L14MN1G
PDF Datasheet
Clock / Data Fanout Buffer, 7 GHz, 1:4 Differential, LVPECL, 2.5 V, 3.3 V, QFN16 3x3, 0.5P, 123-TUBE

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Tech Specifications

Package/Case
QFN
Duty Cycle
55%
Halogen Free
Halogen Free
Height
0.95mm
Input
LVTTL
Lead Free
Lead Free
Length
3mm
Max Frequency
8GHz
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NB7L14MN1G Description

NB7L14MN1G Description

The NB7L14MN1G is a high-performance Fanout Buffer (Distribution) IC from the GigaComm™ series, manufactured by onsemi. This device is designed to provide efficient clock signal distribution with a 1:4 input-to-output ratio, making it ideal for applications requiring multiple clock outputs from a single input source. The NB7L14MN1G supports a wide range of input signal types, including CML, LVCMOS, LVDS, LVPECL, and LVTTL, and provides LVPECL outputs, ensuring compatibility with various digital systems.

The device operates within a voltage supply range of 2.375V to 3.6V and is capable of handling frequencies up to 8 GHz, making it suitable for high-speed applications. It is housed in a 16QFN package, which is ideal for surface mount applications, ensuring robustness and reliability in various operating environments. The NB7L14MN1G is classified under ECCN EAR99 and HTSUS 8542.39.0001, and it complies with REACH regulations, being REACH Unaffected.

NB7L14MN1G Features

  • High-Speed Performance: With a maximum operating frequency of 8 GHz, the NB7L14MN1G ensures precise and reliable clock distribution in high-speed digital systems.
  • Versatile Input and Output Compatibility: The device supports multiple input signal types (CML, LVCMOS, LVDS, LVPECL, LVTTL) and provides LVPECL outputs, making it highly versatile for various digital applications.
  • Differential Signaling: The NB7L14MN1G supports differential signaling for both input and output, which reduces electromagnetic interference and improves signal integrity.
  • Surface Mount Packaging: The 16QFN package is designed for surface mount technology, providing a compact and reliable solution for modern PCB designs.
  • Wide Supply Voltage Range: The device operates within a voltage supply range of 2.375V to 3.6V, offering flexibility in power supply requirements.
  • Moisture Sensitivity Level (MSL) 1: The NB7L14MN1G has an MSL rating of 1, indicating it is suitable for unlimited exposure to the environment, making it ideal for a wide range of industrial applications.

NB7L14MN1G Applications

The NB7L14MN1G is ideal for a variety of high-speed digital applications where reliable clock distribution is critical. Some specific use cases include:

  • Telecommunications: In high-speed communication systems, the NB7L14MN1G can distribute clock signals to multiple components, ensuring synchronized operation.
  • Networking Equipment: For routers, switches, and other networking devices, the NB7L14MN1G provides a reliable solution for clock signal distribution.
  • Data Centers: In data center environments, the device can be used to distribute clock signals to multiple servers and storage devices, ensuring synchronized data processing.
  • Industrial Automation: The NB7L14MN1G can be used in industrial control systems where precise timing and signal distribution are essential for the operation of various machines and processes.
  • Consumer Electronics: In high-speed consumer electronics, such as gaming consoles and high-definition televisions, the NB7L14MN1G ensures reliable clock distribution for optimal performance.

Conclusion of NB7L14MN1G

The NB7L14MN1G from onsemi is a robust and versatile Fanout Buffer (Distribution) IC designed for high-speed clock signal distribution. Its ability to support multiple input signal types and provide LVPECL outputs, combined with its high operating frequency and wide supply voltage range, makes it an ideal choice for a variety of applications. The device's surface mount packaging and MSL 1 rating ensure reliability and flexibility in modern PCB designs. Although the NB7L14MN1G is now obsolete, its legacy as a high-performance clock distribution solution remains significant in the electronics industry.

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