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LMH6518
  • LMH6518
  • LMH6518
  • LMH6518
  • LMH6518

LMH6518

ACTIVE

900 MHz, Digitally Controlled, Variable Gain Amplifier

Texas Instruments LMH6518 Product Info

1 April 2026 0

Parameters

PGA/VGA

PGA

Number of channels

1

Vs (min) (V)

4.75

Vs (max) (V)

5.25

Input type

Single-ended

Output type

Differential

Interface type

Digital Gain Set

BW at Acl (MHz)

900

Acl, min spec gain (V/V)

0.875

Voltage gain (min) (V/V)

0.875

Voltage gain (max) (V/V)

87

Gain (max) (dB)

38.8

Architecture

Fully Differential ADC Driver

Features

Integrated Clamps, Single-ended to Differential conversion

Input voltage noise (typ) (µV√Hz)

0.000098

Slew rate (typ) (V/µs)

760

Iq per channel (typ) (mA)

210

Rating

Catalog

Operating temperature range (°C)

-40 to 85

Package

WQFN (RGH)-16-16 mm² 4 x 4

Features

  • Gain range: 40dB
  • Gain step size: 2dB
  • Combined gain resolution with GSPS ADCs: 8.5mdB
  • Minimum gain: −1.16dB
  • Maximum gain: 38.8dB
  • −3dB bandwidth (BW): 900MHz
  • Rise and fall time: < 500ps
  • Recovery time: < 5ns
  • Propagation delay variation: 100ps
  • HD2 at 100MHz: −50dBc
  • HD3 at 100MHz: −53dBc
  • Input-referred noise (maximum gain): 0.98nV/√Hz
  • Overvoltage clamps for fast recovery
  • Power consumption: auxiliary turned off 1.1W to 0.75W
  • Gain range: 40dB
  • Gain step size: 2dB
  • Combined gain resolution with GSPS ADCs: 8.5mdB
  • Minimum gain: −1.16dB
  • Maximum gain: 38.8dB
  • −3dB bandwidth (BW): 900MHz
  • Rise and fall time: < 500ps
  • Recovery time: < 5ns
  • Propagation delay variation: 100ps
  • HD2 at 100MHz: −50dBc
  • HD3 at 100MHz: −53dBc
  • Input-referred noise (maximum gain): 0.98nV/√Hz
  • Overvoltage clamps for fast recovery
  • Power consumption: auxiliary turned off 1.1W to 0.75W

Description

The LMH6518 is a digitally controlled variable gain amplifier with a total gain that varies from –1.16dB to 38.8dB for a 40dB range in 2dB steps. The −3dB bandwidth is 900MHz at all gains. Gain accuracy at each setting is typically 0.1dB. When used in conjunction with TI’s gigasamples per second (GSPS) ADC with adjustable full-scale range, the LMH6518 gain adjustment accommodates full scale input signals from 6.8mVPP to 920mVPP to get 700mVPP nominal at the ADC input. The auxiliary output (+OUT AUX and −OUT AUX) follows the main output and is intended for use in oscilloscope trigger function circuitry, but can have other uses in other applications.

The LMH6518 gain is programmed through a SPI-compatible serial bus. A signal path combined gain resolution of 8.5mdB is achieved when the device gain and the GSPS ADC FS input are both manipulated. Inputs and outputs are dc-coupled. The outputs are differential with individual common-mode voltage control (for main and auxiliary outputs), and have selectable bandwidth limiting circuitry (common to both main and auxiliary) of 20MHz, 100MHz, 200MHz, 350MHz, 650MHz, 750MHz, or full BW.

The LMH6518 is a digitally controlled variable gain amplifier with a total gain that varies from –1.16dB to 38.8dB for a 40dB range in 2dB steps. The −3dB bandwidth is 900MHz at all gains. Gain accuracy at each setting is typically 0.1dB. When used in conjunction with TI’s gigasamples per second (GSPS) ADC with adjustable full-scale range, the LMH6518 gain adjustment accommodates full scale input signals from 6.8mVPP to 920mVPP to get 700mVPP nominal at the ADC input. The auxiliary output (+OUT AUX and −OUT AUX) follows the main output and is intended for use in oscilloscope trigger function circuitry, but can have other uses in other applications.

The LMH6518 gain is programmed through a SPI-compatible serial bus. A signal path combined gain resolution of 8.5mdB is achieved when the device gain and the GSPS ADC FS input are both manipulated. Inputs and outputs are dc-coupled. The outputs are differential with individual common-mode voltage control (for main and auxiliary outputs), and have selectable bandwidth limiting circuitry (common to both main and auxiliary) of 20MHz, 100MHz, 200MHz, 350MHz, 650MHz, 750MHz, or full BW.

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