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LMH6609MA
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LMH6609MA

  • 所属类别:运算放大器
  • 产品名称:900MHz的电压反馈运算放大器
  • 厂商:NSC
  • 生产批号:10+
  • 封装:SOIC NARROW
  • 库存状态:有库存
  • 库存量:10000
  • 最低订购量:1
  • 详细资料:点击查找LMH6609MA的pdf资料
  • 点击询价
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  • Product Introduction

peculiarity

  • 900MHz - 3dB bandwidth (AV = 1)
  • 100% test of large signal bandwidth and slew rate
  • 280MHz - 3dB bandwidth (A V = 2, V OUT = 2V PP)
  • 90 mA linear output current
  • 1400V/μs slew rate
  • Unit gain is stable
  • 7 mA supply current (no load)
  • 6.6V to 12V supply voltage range
  • 0.01% / 0.026° differential gain/phase PAL
  • 3.1nV / Voltage noise
  • Improved replacement with CLC440, 420, 426

illustrate

LMH6609 is an ultra-wideband, unity-gain stable, low power consumption, voltage feedback op amp gain of 1, providing 900MHz bandwidth, 1400V/μs slew rate, and 90 mA linear output current.

LMH6609 is the greatest flexibility, especially with active filters and integrated voltage feedback architectures and designs. LMH6609 has a balanced symmetrical input with a well-matched bias current and minimal offset voltage.

A differential gain of 0.01% and a differential phase of 0.026° LMH6609 are suitable for video applications. With a linear output current of 90 mA LMH6609 it is suitable for multiple video loads and cable-driven applications.

The specified supply voltages are 6.6V and 10V. The low supply current of 7 mA (10V power supply) makes LMH6609 a variety of platforms, including portable or remote devices running from battery power, a must.

LMH6609 are in the industry-standard 8-pin SOIC package and the space-saving 5-pin SOT package. LMH6609 is specified to operate in the temperature range of -40°C to +85°C. LMH6609 is manufactured using the state-of-the-art VIP10 high-performance technology of the state-of-the-art American National Semiconductor.


apply

  • Test equipment
  • MF/RF amplifiers
  • A/D input driver
  • Active filter
  • integration
  • DAC output buffer
  • Impede amplifier

ICs related to LMH6609MA include:


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LMH6609MA/NOPB   10+11+   Hong Kong spot, imported original
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