onsemi_NB2309AC1DG
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onsemi
NB2309AC1DG

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IC 2309 SERIES, PLL BASED CLOCK DRIVER, 8 TRUE OUTPUT(S), 0 INVERTED OUTPUT(S), PDSO16, 0.150 INCH, LEAD FREE, SOIC-16, Clock Driver

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ISO9001
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Tech Specifications

Package/Case
SOIC
Input
Clock
Lead Free
Lead Free
Max Frequency
133.33MHz
Max Operating Temperature
70°C
Min Operating Temperature
0°C
Max Supply Voltage
3.6V
Min Supply Voltage
3V
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NB2309AC1DG Description

NB2309AC1DG Description

The NB2309AC1DG is a Zero Delay Buffer IC designed by onsemi, a leading manufacturer in the electronics industry. This IC is specifically engineered to provide high-performance clock distribution with minimal delay, making it ideal for applications requiring precise timing and synchronization. The NB2309AC1DG features a 1:9 input-to-output ratio, ensuring efficient signal distribution across multiple channels. It operates within a voltage supply range of 3V to 3.6V and can handle frequencies up to 133.33MHz, making it suitable for high-speed applications. The device is housed in a 16-SOIC package, which is ideal for surface-mount applications, providing robust mechanical stability and ease of integration into compact electronic designs.

NB2309AC1DG Features

  • Zero Delay Buffer: The NB2309AC1DG is designed to minimize propagation delay, ensuring that the output clock signals are precisely aligned with the input clock. This feature is crucial for applications where timing accuracy is paramount.
  • PLL with Bypass: The inclusion of a Phase-Locked Loop (PLL) with bypass functionality allows for flexible operation. The PLL can be used to lock the output to the input clock, ensuring stable and synchronized clock distribution. The bypass mode provides an alternative path for the clock signal, which can be useful in specific operational scenarios.
  • Wide Operating Temperature Range: With an operating temperature range of 0°C to 70°C, the NB2309AC1DG is suitable for a variety of environmental conditions, making it a versatile choice for both commercial and industrial applications.
  • Surface Mount Packaging: The 16-SOIC package is designed for surface-mount technology (SMT), which facilitates automated assembly processes and enhances the reliability of the final product.
  • High-Frequency Performance: The ability to operate at frequencies up to 133.33MHz makes the NB2309AC1DG suitable for high-speed clock distribution in complex electronic systems.
  • Single Circuit Design: The NB2309AC1DG is designed as a single circuit, simplifying the design process and reducing the overall complexity of the system.

NB2309AC1DG Applications

The NB2309AC1DG is well-suited for a range of applications that require precise clock distribution and synchronization. Some specific use cases include:

  • Telecommunications: In communication systems, the NB2309AC1DG can be used to distribute clock signals across multiple channels, ensuring synchronized operation of various components.
  • Computer Systems: For high-performance computing applications, the zero delay buffer can provide accurate clock distribution to various subsystems, enhancing overall system performance.
  • Industrial Automation: In industrial control systems, the NB2309AC1DG can be used to synchronize clock signals across different modules, ensuring precise timing and coordination.
  • Test and Measurement Equipment: The high-frequency performance and precise timing capabilities make the NB2309AC1DG ideal for use in test and measurement devices, where accurate signal distribution is critical.

Conclusion of NB2309AC1DG

The NB2309AC1DG is a high-performance Zero Delay Buffer IC that offers several unique features and advantages over similar models. Its zero delay buffer design, PLL with bypass functionality, and wide operating temperature range make it a versatile and reliable choice for a variety of applications. The surface-mount packaging and high-frequency performance further enhance its suitability for modern electronic systems. Despite its obsolete status, the NB2309AC1DG remains a valuable component for applications requiring precise clock distribution and synchronization.

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