onsemi_NB7V32MMNG
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onsemi
NB7V32MMNG

728-NB7V32MMNG
PDF Datasheet
1.8 V / 2.5 V, 10 GHz ÷·2 Clock Divider with CML Outputs, QFN16, 3x3, 0.5P, 123-TUBE

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Tech Specifications

Package/Case
QFN EP
Halogen Free
Halogen Free
Input
CML
Lead Free
Lead Free
Max Frequency
10GHz
Max Operating Temperature
85°C
Min Operating Temperature
-40°C
Max Supply Voltage
2.625V
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NB7V32MMNG Description

NB7V32MMNG Description

The NB7V32MMNG is a high-performance clock divider IC from onsemi, designed for applications requiring precise timing and high-frequency operation. This device is part of the GigaComm™ series, known for its robust performance and reliability in demanding electronic systems. The NB7V32MMNG features a 16QFN surface-mount package, making it suitable for compact and space-constrained designs.

NB7V32MMNG Features

  • Input and Output Interfaces: The NB7V32MMNG supports multiple input formats, including CML, LVDS, and LVPECL, providing flexibility for integration with various signal sources. The output is in CML format, ensuring compatibility with a wide range of downstream devices.
  • Supply Voltage Range: With a supply voltage range of 1.71V to 2.625V, the NB7V32MMNG offers broad compatibility with different power supply configurations, enhancing its versatility in diverse electronic systems.
  • Frequency Performance: Capable of operating at a maximum frequency of 10GHz, the NB7V32MMNG is ideal for high-speed applications where precise timing and minimal latency are critical.
  • Differential Signaling: The device supports differential signaling for both input and output, which helps in reducing electromagnetic interference (EMI) and improving signal integrity, especially in high-speed and high-density circuit boards.
  • Compliance and Standards: The NB7V32MMNG is REACH unaffected and RoHS3 compliant, ensuring it meets environmental and regulatory standards for modern electronics manufacturing. Additionally, it has a moisture sensitivity level (MSL) of 1, making it suitable for a wide range of manufacturing processes without the need for special handling.
  • Packaging and Availability: The device is available in a tube package, which is ideal for automated assembly lines and bulk handling, ensuring efficient manufacturing processes.

NB7V32MMNG Applications

The NB7V32MMNG is well-suited for a variety of applications where high-frequency clock distribution and precise timing are essential. Some specific use cases include:

  • Telecommunications: In high-speed communication systems, the NB7V32MMNG can be used to manage clock signals for data transmission and reception, ensuring accurate timing and synchronization.
  • Networking Equipment: For routers, switches, and other networking devices, the NB7V32MMNG provides reliable clock division, helping to maintain data integrity and reduce latency.
  • High-Speed Data Converters: In applications involving analog-to-digital converters (ADCs) and digital-to-analog converters (DACs), the NB7V32MMNG can provide the necessary clock signals to drive these components, ensuring high-fidelity data conversion.
  • Test and Measurement Equipment: The precise timing capabilities of the NB7V32MMNG make it ideal for test and measurement devices, where accurate clock signals are crucial for reliable performance.

Conclusion of NB7V32MMNG

The NB7V32MMNG from onsemi is a versatile and high-performance clock divider IC, offering a range of features that make it suitable for a variety of high-speed applications. Its support for multiple input formats, differential signaling, and a wide supply voltage range, combined with its compliance with environmental and regulatory standards, make it a reliable choice for modern electronic designs. While the product is marked as obsolete, its technical specifications and performance benefits continue to make it a valuable component for legacy systems and specific applications where its unique features are required.

FAQ

What voltage specification is listed for NB7V32MMNG?
The listed voltage-related specification for NB7V32MMNG is 2.625V.
What is NB7V32MMNG?
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