74ALVCH162827DGG112高速デュアル16ビットバススイッチ - TQFPパッケージ

  • The 74ALVCH162827DGG112 is a high-speed buffer, enhancing signal integrity in digital circuits.
  • It features low output capacitance, ensuring minimal signal distortion for better performance.
  • This model comes in a compact package, saving valuable board space in tight designs.
  • Ideal for interfacing between different logic levels, it improves compatibility in mixed-signal systems.
  • Built with robust materials, it ensures reliability and longevity in demanding applications.
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产品上方询盘

74ALVCH162827DGG112 Overview

The 74ALVCH162827DGG112 is a versatile high-speed dual-supply bus switch, designed for a wide range of applications in digital circuits. With its low on-resistance and high-speed performance, it enables seamless data transfer while minimizing power consumption and signal degradation. This device is ideal for applications requiring reliable switching and isolation, making it a valuable addition to any engineer’s toolkit. For more information, visit ICメーカー.

74ALVCH162827DGG112 Key Features

  • High-Speed Switching: Enables rapid data transfer, enhancing overall system performance in high-frequency applications.
  • Low On-Resistance: Minimizes power loss and heat generation, contributing to energy-efficient designs.
  • Dual Supply Voltage: Supports both 3.3V and 5V systems, enhancing flexibility in design and compatibility across various platforms.
  • Wide Operating Temperature Range: Ensures reliable operation in diverse environmental conditions, which is essential for industrial applications.

74ALVCH162827DGG112 Technical Specifications

パラメータ 価値
電源電圧 (V) 1.65から5.5
Input Voltage (V) 0 to Vcc
Output Voltage (V) 0 to Vcc
On-Resistance (??) 5.0 (typical)
Maximum Data Rate (Mbps) 200
Operating Temperature Range (??C) -40~125
パッケージタイプ VQFN
ピン数 32

74ALVCH162827DGG112 Advantages vs Typical Alternatives

This device stands out against typical alternatives due to its superior low on-resistance and high-speed capabilities. It offers enhanced signal integrity and reduced power consumption, making it particularly suitable for modern electronic applications that demand both efficiency and performance.

代表的なアプリケーション

  • Data Communication Systems: Ideal for switching data lines in communication protocols, ensuring high-speed data transfer and minimal signal loss, even in demanding environments.
  • コンシューマー・エレクトロニクス: Used in various consumer devices for reliable power management and signal routing, enhancing user experience.
  • 産業オートメーション: Facilitates efficient control of peripheral devices, contributing to streamlined operations in industrial settings.
  • Networking Equipment: Essential for switching applications in routers and switches, ensuring robust data handling capabilities.

74ALVCH162827DGG112 Brand Info

The 74ALVCH162827DGG112 is produced by a leading semiconductor manufacturer known for its commitment to quality and innovation in integrated circuit technology. This brand has a strong reputation in the industry for delivering reliable and efficient solutions tailored to the needs of engineers and designers.

よくあるご質問

What is the maximum data rate for the 74ALVCH162827DGG112?

The maximum data rate for this device is 200 Mbps, making it suitable for high-speed applications where rapid signal switching is crucial.

What are the operating temperature limits for this device?

The 74ALVCH162827DGG112 operates effectively within a temperature range of -40 to 125 degrees Celsius, ensuring reliability in various environmental conditions.

Can this device be used with both 3.3V and 5V systems?

Yes, it supports dual supply voltages, allowing for compatibility with both 3.3V and 5V systems, which enhances design flexibility.

お問い合わせ

产品中间询盘

What type of package does the 74ALVCH162827DGG112 come in?

This product is available in a VQFN package type, which provides a compact solution for space-constrained applications.

How does the on-resistance of this device benefit users?

The low on-resistance of 5.0 ohms (typical) minimizes power loss and heat generation, resulting in improved efficiency and reliability in electronic designs.

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