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1.5GHz 全差动放大器
Number of channels (#) 1
Total supply voltage (Min) (+5V=5, +/-5V=10) 4.5
Total supply voltage (Max) (+5V=5, +/-5V=10) 12
BW @ Acl (MHz) 1500
Acl, min spec gain (V/V) 1
Slew rate (Typ) (V/us) 3800
Architecture Fully Differential ADC Driver, Current FB, Bipolar
Vn at flatband (Typ) (nV/rtHz) 1.1
Iq per channel (Typ) (mA) 19
Rail-to-rail No
Vos (offset voltage @ 25 C) (Max) (mV) 16.5
Operating temperature range (C) -40 to 85
Output current (Typ) (mA) 80
2nd harmonic (dBc) 82
3rd harmonic (dBc) 79
Frequency of harmonic distortion measurement (MHz) 20
GBW (Typ) (MHz) 1500
Input bias current (Max) (pA) 8000000
Features Shutdown
CMRR (Typ) (dB) 80
Rating Catalog
  • 1.5-GHz –3 dB Small Signal
    Bandwidth at AV = 1
  • 1.25-GHz –3 dB Large Signal
    Bandwidth at AV = 1
  • 800-MHz Bandwidth at AV = 4
  • 450-MHz 0.1 dB Flatness
  • 3800-V/μs Slew Rate
  • 10-ns Settling Time to 0.1%
    • –90 dB THD at 20 MHz
    • –74 dB THD at 70 MHz
  • 20-ns Enable/Shutdown Pin
  • 5-V to 12-V Operation

The LMH6552 device is a high-performance, fully differential amplifier designed to provide the exceptional signal fidelity and wide large-signal bandwidth necessary for driving 8-bit to 14-bit high-speed data acquisition systems. Using TI?s proprietary differential current mode input stage architecture, the LMH6552 allows operation at gains greater than unity without sacrificing response flatness, bandwidth, harmonic distortion, or output noise performance.

With external gain set resistors and integrated common mode feedback, the LMH6552 can be configured as either a differential input to differential output or single-ended input to differential output gain block. The LMH6552 can be AC- or DC-coupled at the input which makes it suitable for a wide range of applications, including communication systems and high-speed oscilloscope front ends. The performance of the LMH6552 driving an ADC14DS105 device is 86 dBc SFDR and 74 dBc SNR up to 40 MHz.

The LMH6552 is available in an 8-pin SOIC package as well as a space-saving, thermally enhanced 8-pin WSON package for higher performance.