產品詳細資料

Number of channels 1 Total supply voltage (+5 V = 5, ±5 V = 10) (min) (V) 3 Total supply voltage (+5 V = 5, ±5 V = 10) (max) (V) 11 BW at Acl (MHz) 370 Acl, min spec gain (V/V) 1 Slew rate (typ) (V/µs) 2400 Architecture Bipolar, Fully Differential ADC Driver Vn at flatband (typ) (nV√Hz) 6 Iq per channel (typ) (mA) 12.5 Rail-to-rail No Vos (offset voltage at 25°C) (max) (mV) 5 Operating temperature range (°C) -40 to 125 Iout (typ) (mA) 65 2nd harmonic (dBc) 94 3rd harmonic (dBc) 96 Frequency of harmonic distortion measurement (MHz) 5 GBW (typ) (MHz) 370 Input bias current (max) (pA) 10000000 CMRR (typ) (dB) 80 Rating Automotive
Number of channels 1 Total supply voltage (+5 V = 5, ±5 V = 10) (min) (V) 3 Total supply voltage (+5 V = 5, ±5 V = 10) (max) (V) 11 BW at Acl (MHz) 370 Acl, min spec gain (V/V) 1 Slew rate (typ) (V/µs) 2400 Architecture Bipolar, Fully Differential ADC Driver Vn at flatband (typ) (nV√Hz) 6 Iq per channel (typ) (mA) 12.5 Rail-to-rail No Vos (offset voltage at 25°C) (max) (mV) 5 Operating temperature range (°C) -40 to 125 Iout (typ) (mA) 65 2nd harmonic (dBc) 94 3rd harmonic (dBc) 96 Frequency of harmonic distortion measurement (MHz) 5 GBW (typ) (MHz) 370 Input bias current (max) (pA) 10000000 CMRR (typ) (dB) 80 Rating Automotive
VSSOP (DGK) 8 14.7 mm² 3 x 4.9
  • 370 MHz −3 dB Bandwidth (VOUT = 0.5 VPP)
  • 50 MHz 0.1 dB Bandwidth
  • 2400 V/µs Slew Rate
  • 18 ns Settling Time to 0.05%
  • −94/−96 dB HD2/HD3 @ 5 MHz
  • LMH6551Q is AEC-Q100 Grade 1 Qualified and is Manufactured on an Automotive Grade Flow

All trademarks are the property of their respective owners.

  • 370 MHz −3 dB Bandwidth (VOUT = 0.5 VPP)
  • 50 MHz 0.1 dB Bandwidth
  • 2400 V/µs Slew Rate
  • 18 ns Settling Time to 0.05%
  • −94/−96 dB HD2/HD3 @ 5 MHz
  • LMH6551Q is AEC-Q100 Grade 1 Qualified and is Manufactured on an Automotive Grade Flow

All trademarks are the property of their respective owners.

The LMH6551Q is a high performance voltage feedback differential amplifier. The LMH6551Q has the high speed and low distortion necessary for driving high performance ADCs as well as the current handling capability to drive signals over balanced transmission lines like CAT 5 data cables. The LMH6551Q can handle a wide range of video and data formats.

With external gain set resistors, the LMH6551Q can be used at any desired gain. Gain flexibility coupled with high speed makes the LMH6551Q suitable for use as an IF amplifier in high performance communications equipment.

The LMH6551Q is available in the VSSOP package.

The LMH6551Q is a high performance voltage feedback differential amplifier. The LMH6551Q has the high speed and low distortion necessary for driving high performance ADCs as well as the current handling capability to drive signals over balanced transmission lines like CAT 5 data cables. The LMH6551Q can handle a wide range of video and data formats.

With external gain set resistors, the LMH6551Q can be used at any desired gain. Gain flexibility coupled with high speed makes the LMH6551Q suitable for use as an IF amplifier in high performance communications equipment.

The LMH6551Q is available in the VSSOP package.

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類型 標題 日期
* Data sheet LMH6551Q Differential, High Speed Op Amp datasheet (Rev. E) 2013年 3月 14日
E-book The Signal e-book: A compendium of blog posts on op amp design topics 2017年 3月 28日
Application note Common Design Challenges and Proper Use of Fully Differential Amplifiers (FDA) 2016年 5月 25日

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模擬型號

LMH6551 PSPICE Model

SNOM154.ZIP (2 KB) - PSpice Model
模擬工具

PSPICE-FOR-TI — PSpice® for TI 設計與模擬工具

PSpice® for TI is a design and simulation environment that helps evaluate functionality of analog circuits. This full-featured, design and simulation suite uses an analog analysis engine from Cadence®. Available at no cost, PSpice for TI includes one of the largest model libraries in the (...)
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TINA-TI — 基於 SPICE 的類比模擬程式

TINA-TI provides all the conventional DC, transient and frequency domain analysis of SPICE and much more. TINA has extensive post-processing capability that allows you to format results the way you want them. Virtual instruments allow you to select input waveforms and probe circuit nodes voltages (...)
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