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LMH6702QML-SP
  • LMH6702QML-SP
  • LMH6702QML-SP
  • LMH6702QML-SP
  • LMH6702QML-SP
  • LMH6702QML-SP
  • LMH6702QML-SP

LMH6702QML-SP

ACTIVE

1.7 GHz, Ultra Low Distortion, Wideband Op Amp

Texas Instruments LMH6702QML-SP Product Info

1 April 2026 0

Parameters

Architecture

Current FB

Number of channels

1

Total supply voltage (+5 V = 5, ±5 V = 10) (min) (V)

10

Total supply voltage (+5 V = 5, ±5 V = 10) (max) (V)

12

GBW (typ) (MHz)

1700

BW at Acl (MHz)

1700

Acl, min spec gain (V/V)

1

Slew rate (typ) (V/µs)

3100

Vn at flatband (typ) (nV√Hz)

1.83

Vn at 1 kHz (typ) (nV√Hz)

4.5

Iq per channel (typ) (mA)

12.5

Vos (offset voltage at 25°C) (max) (mV)

4.5

Rail-to-rail

No

Rating

Space

Operating temperature range (°C)

-55 to 125

CMRR (typ) (dB)

48

Input bias current (max) (pA)

15000000

Offset drift (typ) (µV/°C)

13

Iout (typ) (mA)

80

2nd harmonic (dBc)

52

3rd harmonic (dBc)

62

Frequency of harmonic distortion measurement (MHz)

20

Radiation, TID (typ) (krad)

300

Radiation, SEL (MeV·cm2/mg)

Bipolar

Package

CDIP (NAB)-8-79.9592 mm² 10.16 x 7.87

Features

  • VS = ±5V, TA = 25°C, AV = +2V/V, RL = 100Ω, VOUT = 2VPP, typical unless noted otherwise
  • Available with radiation ensurance
    • High dose rate 300krad(Si)
    • ELDRS free 300krad(Si)
  • −3dB bandwidth (VOUT = 0.2VPP) 720MHz
  • Low noise 1.83nV/√Hz
  • Fast settling to 0.1% 13.4ns
  • Fast slew rate 3100V/µs
  • Supply current 12.5mA
  • Output current 80mA
  • Low intermodulation distortion (75MHz) −67dBc
  • Improved replacement for CLC409 and CLC449
  • VS = ±5V, TA = 25°C, AV = +2V/V, RL = 100Ω, VOUT = 2VPP, typical unless noted otherwise
  • Available with radiation ensurance
    • High dose rate 300krad(Si)
    • ELDRS free 300krad(Si)
  • −3dB bandwidth (VOUT = 0.2VPP) 720MHz
  • Low noise 1.83nV/√Hz
  • Fast settling to 0.1% 13.4ns
  • Fast slew rate 3100V/µs
  • Supply current 12.5mA
  • Output current 80mA
  • Low intermodulation distortion (75MHz) −67dBc
  • Improved replacement for CLC409 and CLC449

Description

The LMH6702QML-SP is a very wideband, dc-coupled, monolithic operational amplifier designed specifically for wide-dynamic-range systems requiring exceptional signal fidelity. Benefiting from TI’s current-feedback architecture, the LMH6702QML-SP offers unity gain stability at exceptional speed without need for external compensation.

With a 720MHz bandwidth (AV = 2V/V, VO = 2VPP), 10-bit distortion levels through 60MHz (RL = 100Ω), 1.83nV/√Hz input-referred noise, and 12.5mA supply current, the LMH6702QML-SP is an excellent driver or buffer for high-speed flash analog-to-digital (A/D) and digital-to-analog (D/A) converters.

The LMH6702QML-SP benefits wide dynamic range systems, such as radar and communication receivers, that require a wideband amplifier offering exceptional signal purity. The low input-referred noise and low harmonic and intermodulation distortion make this device an excellent choice for high-speed applications.

The LMH6702QML-SP is constructed using TI’s VIP10 complimentary bipolar process and TI’s proven current-feedback architecture.

The LMH6702QML-SP is a very wideband, dc-coupled, monolithic operational amplifier designed specifically for wide-dynamic-range systems requiring exceptional signal fidelity. Benefiting from TI’s current-feedback architecture, the LMH6702QML-SP offers unity gain stability at exceptional speed without need for external compensation.

With a 720MHz bandwidth (AV = 2V/V, VO = 2VPP), 10-bit distortion levels through 60MHz (RL = 100Ω), 1.83nV/√Hz input-referred noise, and 12.5mA supply current, the LMH6702QML-SP is an excellent driver or buffer for high-speed flash analog-to-digital (A/D) and digital-to-analog (D/A) converters.

The LMH6702QML-SP benefits wide dynamic range systems, such as radar and communication receivers, that require a wideband amplifier offering exceptional signal purity. The low input-referred noise and low harmonic and intermodulation distortion make this device an excellent choice for high-speed applications.

The LMH6702QML-SP is constructed using TI’s VIP10 complimentary bipolar process and TI’s proven current-feedback architecture.

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