HMC213BMS8E PLL 주파수 합성기 IC, 8-SMD 패키지

  • The HMC213BMS8E functions as a frequency synthesizer, enabling precise signal generation for communication systems.
  • Operating frequency range supports diverse RF applications by covering essential bandwidth requirements.
  • Its compact LFCSP package reduces board space, facilitating smaller and more efficient device designs.
  • Ideal for use in wireless infrastructure, where stable frequency control enhances signal integrity and system performance.
  • Engineered to meet stringent reliability standards, ensuring consistent operation under varying environmental conditions.
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HMC213BMS8E Overview

The HMC213BMS8E is a wideband, single-pole double-throw (SPDT) GaAs MMIC switch designed for high-performance RF and microwave applications. Operating from 0.1 to 14 GHz, it supports broadband switching with low insertion loss and high isolation, making it ideal for communication systems, test equipment, and radar. Its compact 8-lead MSOP package ensures easy integration into dense layouts while maintaining excellent reliability and repeatability. The device??s low control voltage and fast switching capability help optimize system power consumption and responsiveness. For detailed technical resources and purchasing information, visit IC 제조업체.

HMC213BMS8E Technical Specifications

매개변수사양
주파수 범위0.1 GHz to 14 GHz
Insertion Loss1.2 dB at 6 GHz
Isolation35 dB at 6 GHz
입력 전력(연속파)+27 dBm
제어 전압+2.7 V (positive logic)
반품 손실15 dB typical
Switching Time15 ns (typical)
패키지8-리드 MSOP
작동 온도 범위-40??C ~ +85??C

HMC213BMS8E Key Features

  • Broadband Frequency Support: Covers 0.1 to 14 GHz, enabling versatile RF switching across multiple communication bands.
  • 낮은 삽입 손실: Minimizes signal attenuation to maintain signal integrity and system performance.
  • High Isolation: Provides up to 35 dB isolation to reduce crosstalk and improve signal fidelity in complex RF paths.
  • 빠른 전환 속도: Typical switching time of 15 ns supports rapid signal routing and dynamic system requirements.
  • Compact 8-Lead MSOP Package: Facilitates easy PCB integration in space-constrained applications while ensuring thermal reliability.
  • High Input Power Handling: Supports up to +27 dBm continuous wave power, suitable for robust RF front-end designs.
  • Positive Logic Control: Simplifies interface with standard logic levels for streamlined system design.

HMC213BMS8E Advantages vs Typical Alternatives

This device excels with a wide frequency range and low insertion loss compared to typical RF switches, enabling higher accuracy and signal quality. Its fast switching time and high isolation reduce interference and system latency. The robust power handling and compact MSOP package improve reliability and ease of integration, making it a superior choice for demanding industrial and communication applications.

일반적인 애플리케이션

  • Wireless Communication Systems: Ideal for antenna switching and signal routing in base stations and handheld devices requiring broadband performance and low power loss.
  • Test and Measurement Equipment: Enables rapid signal path selection with high isolation, supporting accurate RF testing across wide frequency bands.
  • Radar and Electronic Warfare: Provides reliable switching with fast response times essential for phased array and adaptive radar systems.
  • Satellite and Aerospace Systems: Compact form factor and high power handling support space-constrained, high-reliability RF front ends.

HMC213BMS8E Brand Info

The HMC213BMS8E is part of a family of GaAs MMIC switches known for their high performance and reliability in RF and microwave applications. Designed and manufactured to meet stringent industry standards, this product offers engineers a dependable solution for broadband switching requirements. Its integration-friendly MSOP package and consistent electrical characteristics reflect the brand??s commitment to quality and innovation in semiconductor components.

자주 묻는 질문

What is the typical switching time of this RF switch?

The switch has a typical switching time of 15 nanoseconds, allowing for fast signal routing and minimal delay in dynamic RF systems.

What frequency range does this

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