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MAX3625ACUI

Part No MAX3625ACUI
Manufacturer Maxim Integrated
Catalog MAX series
Sample
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Manufacturer Maxim Integrated
Win Source Part Number 703343-MAX3625ACUI
Series MAX series
Popularity Low
Supply and Demand Status Limited
Ultra Librarian 3D Model Ultra Librarian MAX3625ACUI CAD Model

Description

The MAX3625ACUI from Maxim Integrated is a high-performance, low-jitter precision clock oscillator designed to deliver exceptional timekeeping accuracy and stability for advanced digital systems. This compact integrated device is engineered to meet the stringent requirements of telecommunications, networking, and data communications equipment, as well as industrial and consumer applications requiring precise timing solutions.

Key Features

  • Frequency Range: The MAX3625ACUI offers a wide frequency range, making it suitable for various applications.
  • Low Jitter: The device boasts extremely low jitter performance, ensuring reliable and consistent data transfer and system operation.
  • Supply Voltage: It operates on a single 3.3V supply voltage, minimizing power requirements and simplifying power supply design.
  • Temperature Stability: With built-in temperature compensation, the oscillator maintains stable frequency over a broad temperature range.
  • Output Compatibility: The device provides a CMOS/LVPECL/LVDS-compatible output, offering flexibility in interfacing with various logic families.
  • Package: Housed in a compact 16-pin TSSOP package, the MAX3625ACUI saves valuable board space without compromising performance.

Applications

  • Telecommunications Infrastructure
  • Networking Equipment
  • Server and Storage Systems
  • Test and Measurement Instruments
  • High-Speed Data Converters

The MAX3625ACUI precision clock oscillator from Maxim Integrated is a testament to the company's commitment to delivering high-quality timing solutions. Its combination of low-jitter performance, wide frequency range, and temperature stability makes it an ideal choice for designers looking to enhance system reliability and performance in a variety of demanding applications.

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