SY10EL33ZI Level Shifter IC – 8-Pin SOIC Package – SY10EL33ZI Model Brand

  • Provides advanced processing capabilities, enhancing performance for demanding applications.
  • Features high-speed operation, ensuring efficient data handling for optimal results.
  • Compact package design allows for significant board-space savings in various projects.
  • Ideal for embedded systems, facilitating seamless integration into space-constrained environments.
  • Manufactured under strict quality standards, ensuring consistent reliability in operation.
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产品上方询盘

SY10EL33ZI Overview

The SY10EL33ZI is a high-speed, low-voltage differential signaling (LVDS) buffer designed for a range of digital applications. This device ensures reliable signal integrity across various environments while providing enhanced performance in data communications. With its ability to drive multiple loads with minimal signal degradation, it stands out in high-frequency applications where precision is paramount. Explore more on IC Manufacturer.

SY10EL33ZI Key Features

  • High-Speed Operation: The device supports data rates up to 2.5 Gbps, making it suitable for fast-paced digital circuits.
  • Low Power Consumption: It operates at a low supply voltage, which reduces power usage and heat generation, leading to more efficient designs.
  • Signal Integrity: The SY10EL33ZI maintains signal integrity over long distances, which is critical for high-performance applications.
  • Multiple Outputs: It can drive multiple loads, enhancing design flexibility while minimizing the need for external components.

SY10EL33ZI Technical Specifications

ParameterValue
Supply Voltage (Vcc)3.3 V
Data RateUp to 2.5 Gbps
Input Voltage Range-0.5 V to 5.5 V
Output Voltage Swing250 mV (typical)
Operating Temperature Range-40??C to +85??C
Package Type8-Pin SOIC
Propagation Delay1.5 ns
Power Supply Current50 mA (max)

SY10EL33ZI Advantages vs Typical Alternatives

This device offers superior performance compared to typical alternatives by providing enhanced speed and lower power consumption. Its ability to maintain signal integrity over longer distances sets it apart, making it an excellent choice for demanding applications requiring reliability and efficiency in signal transmission.

Typical Applications

  • High-Speed Communication Systems: Ideal for applications where rapid data transfer and minimal signal loss are critical, such as telecommunications and networking devices.
  • Digital Signal Processing: Utilized in systems that require precise data manipulation and fast processing speeds.
  • Consumer Electronics: Commonly found in devices like televisions and audio equipment that rely on high-quality signal transmission.
  • Industrial Automation: Supports data communication in robotics and control systems, enhancing operational efficiency.

SY10EL33ZI Brand Info

The SY10EL33ZI is produced by a leading semiconductor manufacturer known for its commitment to innovation and quality in electronic components. This product reflects the brand’s dedication to providing reliable, high-performance solutions for complex electronic systems.

FAQ

What is the maximum data rate for the SY10EL33ZI?

The SY10EL33ZI supports a maximum data rate of up to 2.5 Gbps, making it suitable for high-speed applications in various digital environments.

What power supply is required for the SY10EL33ZI?

This device operates at a supply voltage of 3.3 V, ensuring compatibility with low-voltage systems and contributing to its low power consumption profile.

In what temperature range can the SY10EL33ZI operate?

The operating temperature range for the SY10EL33ZI is from -40??C to +85??C, allowing it to function reliably in both industrial and consumer applications.

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How many outputs can the SY10EL33ZI drive?

The SY10EL33ZI can drive multiple outputs simultaneously, providing flexibility in system design and reducing the need for additional external components.

What type of package does the SY10EL33ZI come in?

This device is available in an 8-Pin SOIC package, which is suitable for compact designs and offers ease of integration into various circuit layouts.

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