NB3N51032DTR2G Voltage Level Translator IC – 16-Pin SOIC Package

  • The NB3N51032DTR2G provides clock signal generation for efficient timing control.
  • Features a low jitter output, ensuring precise signal integrity for critical applications.
  • Compact package design allows for significant board-space savings in your layout.
  • Ideal for telecommunications systems, enhancing data transmission reliability and speed.
  • Manufactured under strict quality standards to ensure long-term performance and reliability.
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NB3N51032DTR2G Overview

The NB3N51032DTR2G is a high-performance clock generator designed for precision applications. It offers low jitter and high stability, making it ideal for various electronic systems. This device is optimized for reliability and efficiency, ensuring seamless integration into advanced applications. With its compact design and robust features, it caters to the needs of engineers and sourcing specialists seeking dependable timing solutions in their projects. For more details, visit IC Manufacturer.

NB3N51032DTR2G Key Features

  • Low Jitter Performance: The device provides exceptional low jitter, enhancing signal integrity in high-frequency applications.
  • Wide Operating Voltage Range: This feature allows flexibility in design, enabling use in various electronic systems without compromising performance.
  • Compact Package Size: The small form factor facilitates integration into space-constrained designs, making it suitable for modern electronics.
  • High Stability: Ensures consistent performance over temperature variations, enhancing reliability in critical applications.

NB3N51032DTR2G Technical Specifications

ParameterValue
Output FrequencyUp to 1 GHz
Input Voltage Range3.3V ??10%
Jitter PerformanceLow Phase Jitter
Operating Temperature-40??C to 85??C
Package TypeQFN
Power Supply Current50 mA (typical)
Output Signal TypeCMOS
Number of Outputs1

NB3N51032DTR2G Advantages vs Typical Alternatives

This device stands out against typical alternatives due to its superior low jitter performance and high stability, making it ideal for applications requiring precise timing. Its wide voltage range and compact design ensure that it meets diverse engineering needs while maintaining reliability and efficiency.

Typical Applications

  • Telecommunications: Used in network equipment to provide accurate clock signals, ensuring data integrity and synchronization across systems.
  • Consumer Electronics: Ideal for timing applications in audio and video devices, enhancing performance and user experience.
  • Industrial Automation: Supports various control systems where precise timing is critical for operational efficiency.
  • Test and Measurement Equipment: Essential in laboratory settings for generating stable and accurate reference signals.

NB3N51032DTR2G Brand Info

The NB3N51032DTR2G is a product of ON Semiconductor, a respected leader in the semiconductor industry known for its focus on innovation and quality. ON Semiconductor provides a wide array of high-performance solutions, ensuring reliability and efficiency for various applications across multiple sectors. Their commitment to excellence makes their products a preferred choice for engineers and sourcing specialists alike.

FAQ

What is the maximum output frequency of the NB3N51032DTR2G?

The maximum output frequency of the device is up to 1 GHz, making it suitable for high-speed applications.

What is the operating temperature range for this device?

The NB3N51032DTR2G operates effectively in a temperature range of -40??C to 85??C, ensuring reliability in various environments.

Which package type does the NB3N51032DTR2G come in?

This device comes in a compact QFN package, making it ideal for space-constrained applications.

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What are the typical applications for the NB3N51032DTR2G?

Typical applications include telecommunications, consumer electronics, industrial automation, and test and measurement equipment, showcasing its versatility.

How does the NB3N51032DTR2G compare to typical clock generators?

This device offers superior low jitter performance and high stability compared to typical clock generators, enhancing the overall performance of electronic systems.

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