onsemi_NB100LVEP221FAG
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onsemi
NB100LVEP221FAG

764-NB100LVEP221FAG
PDF Datasheet
Clock / Data Fanout Buffer, 2:1:20 Differential, HSTL / ECL / PECL, 2.5 V / 3.3 V, LQFP 52 LEAD EXPOSED PAD 10x10, 160-JTRAY

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Tech Specifications

Package/Case
LQFP
Duty Cycle
50.5%
Frequency
1GHz
Halogen Free
Halogen Free
Input
LVPECL
Lead Free
Lead Free
Max Frequency
1GHz
Max Operating Temperature
85°C
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NB100LVEP221FAG Description

NB100LVEP221FAG Description

The NB100LVEP221FAG is a high-performance clock buffer and multiplexer designed for demanding applications requiring reliable and efficient signal distribution. Manufactured by onsemi, this obsolete device belongs to the 100LVEP series and is housed in a 52LQFP package. It features a 2:20 input-to-output ratio, making it suitable for applications that require significant signal fan-out. The device supports differential signaling on both input and output, ensuring high signal integrity and reduced noise.

NB100LVEP221FAG Features

  • Input and Output Compatibility: The NB100LVEP221FAG supports a wide range of input and output signaling standards, including ECL, HSTL, and LVPECL for inputs, and ECL and PECL for outputs. This versatility allows it to interface seamlessly with various types of digital circuits.
  • Supply Voltage Range: It operates within a supply voltage range of 2.375V to 3.8V, providing flexibility in power supply design.
  • High-Speed Performance: With a maximum operating frequency of 1 GHz, the NB100LVEP221FAG is capable of handling high-speed clock signals, making it suitable for high-frequency applications.
  • Surface Mount Technology: The surface mount package type ensures ease of integration into modern PCB designs, contributing to compact and efficient system layouts.
  • Moisture Sensitivity Level: The device has a moisture sensitivity level (MSL) of 3, indicating it can withstand up to 168 hours of exposure to moisture, which is beneficial for manufacturing processes involving reflow soldering.
  • Compliance and Status: The NB100LVEP221FAG is classified under ECCN EAR99 and is REACH unaffected, ensuring compliance with international regulations and standards.

NB100LVEP221FAG Applications

The NB100LVEP221FAG is ideal for a variety of applications where high-speed signal distribution and fan-out are critical. Its differential signaling capabilities make it particularly suitable for applications in high-frequency communication systems, high-speed data transmission, and complex digital circuits. Specific use cases include:

  • Telecommunications: In high-speed data transmission systems, the NB100LVEP221FAG can distribute clock signals to multiple components, ensuring synchronized operation.
  • Networking Equipment: It can be used in networking devices to manage clock signals across various interfaces, maintaining signal integrity and reducing jitter.
  • High-Performance Computing: In multi-processor systems, the device can distribute clock signals to multiple processing units, ensuring synchronized operation and optimal performance.
  • Test and Measurement Equipment: The high-speed and differential signaling capabilities make it suitable for test and measurement applications where accurate signal distribution is crucial.

Conclusion of NB100LVEP221FAG

The NB100LVEP221FAG, despite being obsolete, remains a robust solution for high-speed clock distribution and fan-out applications. Its wide range of input and output signaling standards, coupled with its high-frequency performance and surface mount package, make it a versatile and reliable choice for various electronic systems. While it may no longer be in production, its legacy continues to serve as a benchmark for high-performance clock buffer and multiplexer design. For applications requiring high-speed, differential signaling, and efficient signal distribution, the NB100LVEP221FAG stands out as a notable option.

FAQ

What is NB100LVEP221FAG?
NB100LVEP221FAG is a Clock Buffers, Drivers ICs from onsemi. This product page provides its main specifications, pricing information, availability, and inquiry options.
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