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LM7171 Feedback Amplifier: Datasheet, Applications, Circuits

  • Contents

The LM7171 is a high speed voltage feedback amplifier that has the slewing characteristic of a current feedback amplifier.

Catalog

Product Overview

LM7171 Simplified Schematic Diagram

LM7171 Package Dimensions

LM7171 Features

LM7171 Slew Rate

Component Selection and Feedback Resistor

LM7171 Product Attributes

LM7171 Applications

LM7171 Circuit Operation

LM7171 Application Circuits

Alternate Parts

Component Datasheet

Using Warnings

LM7171 Manufacturer


Product Overview

LM7171 Voltage Feedback Amplifier

LM7171 Voltage Feedback Amplifier

The LM7171 is a true voltage feedback amplifier. It can be used in all traditional voltage feedback amplifier configurations. The LM7171 is stable for gains as low as +2 or −1. It provides a very high slew rate at 4100V/µs and a wide unity-gain bandwidth of 200 MHz while consuming only 6.5 mA of supply current. It is ideal for video and high speed signal processing applications such as HDSL and pulse amplifiers. With 100 mA output current, the LM7171 can be used for video distribution, as a transformer driver or as a laser diode driver.
Operation on ±15V power supplies allows for large signal swings and provides greater dynamic range and signal-tonoise ratio. The LM7171 offers low SFDR and THD, ideal for ADC/DAC systems. In addition, the LM7171 is specified for ±5V operation for portable applications.
The LM7171 is built on National’s advanced VIP™ III (Vertically integrated PNP) complementary bipolar process.


LM7171 Simplified Schematic Diagram

LM7171 Simplified Schematic Diagram

LM7171 Simplified Schematic Diagram


LM7171 Package Dimensions

LM7171 8-Pin SOIC

LM7171 8-Pin MDIP

LM7171 Package Dimensions


LM7171 Features

(Typical Unless Otherwise Noted)
• Easy-to-use voltage feedback topology
• Very high slew rate: 4100 V/µs
• Wide unity-gain bandwidth: 200 MHz
• −3 dB frequency @ AV = +2: 220 MHz
• Low supply current: 6.5 mA
• High open loop gain: 85 dB
• High output current: 100 mA
• Differential gain and phase: 0.01%, 0.02˚
• Specified for ±15V and ±5V operation


LM7171 Slew Rate

The slew rate of LM7171 is determined by the current available to charge and discharge an internal high impedance node capacitor. This current is the differential input voltage divided by the total degeneration resistor RE. Therefore, the slew rate is proportional to the input voltage level, and the higher slew rates are achievable in the lower gain configurations. A curve of slew rate versus input voltage level is provided in the “Typical Performance Characteristics”.
When a very fast large signal pulse is applied to the input of an amplifier, some overshoot or undershoot occurs. By placing an external resistor such as 1 kΩ in series with the input of LM7171, the bandwidth is reduced to help lower the overshoot.


Component Selection and Feedback Resistor

It is important in high speed applications to keep all component leads short. For discrete components, choose carbon composition-type resistors and mica-type capacitors. Surface mount components are preferred over discrete components for minimum inductive effect.
Large values of feedback resistors can couple with parasitic capacitance and cause undesirable effects such as ringing or oscillation in high speed amplifiers. For LM7171, a feedback resistor of 510Ω gives optimal performance.


LM7171 Product Attributes

Specifications

Values

Amplifier Type

Voltage Feedback

Gain Bandwidth

220 MHz

Slew Rate

4.1 V/ms

Input Offset Voltage

1 mV

Input Bias Current

10 uA

Amplifiers

1

Common Mode Rejection Ratio (CMRR)

105 dB

Power Supply Rejection Ratio (PSRR)

90 dB

Voltage Gain

85 dB

Input Voltage Noise Density

14 nV/√Hz

Output Current per Channel

105 mA

Supply Current

8.5 mA

Single Supply Voltage Min.

5.5 V

Single Supply Voltage Max.

36 V

Dual Supply Voltage Min.

2.75 V

Dual Supply Voltage Max.

18 V

Operating Temperature Min.

-40 °C

Operating Temperature Max.

85 °C

Package Type

SOIC

Pins

8

Mounting Type

Surface Mount

MSL

Level-1

Packaging

Tube

Length

5 mm

Width

4 mm

Height

1.5 mm

Power Supply Type

Dual/Single

Reflow Temperature(Max)

260 °C

Low-Bias

No

JESD-30 Code

R-PDSO-G8

JESD-609 Code

e0

Rohs Code

No

Risk Rank

5.25

Package Description

0.150 INCH, SOIC-8


LM7171 Applications

HDSL and ADSL drivers
• Multimedia broadcast systems
• Professional video cameras
• Video amplifiers
• Copiers/scanners/fax
• HDTV amplifiers
• Pulse amplifiers and peak detectors
• CATV/fiber optics signal processing


LM7171 Circuit Operation

The class AB input stage in LM7171 is fully symmetrical and has a similar slewing characteristic to the current feedback amplifiers. In the LM7171 Simplified Schematic, Q1 through Q4 form the equivalent of the current feedback input buffer, RE the equivalent of the feedback resistor, and stage A buffers the inverting input. The triple-buffered output stage isolates the gain stage from the load to provide low output impedance.


LM7171 Application Circuits

Compensating for Input Capacitance

Compensating for Input Capacitance

 

Power Supply Bypassing

Power Supply Bypassing

 

Fast Instrumentation Amplifier

Fast Instrumentation Amplifier

 

Multivibrator

Multivibrator

 

Pulse Width Modulator

Pulse Width Modulator

 

Video Line Driver

Video Line Driver


Alternate Parts

✔️LMV932MA, JL148BZA, LPV358MMX, LM4250CM, CLC400AJ-MLS/NOPB, 
LM324J/NOPB, LM101AH, LM7171AMWG-QML, LM7372IMA, LF353N
✔️LM6171 vs LM7171 vs LM6172


Component Datasheet

LM7171 PDF


Using Warnings

Please check their parameters and pin configuration before replacing them in your circuit.


LM7171 Manufacturer

Texas Instruments Inc. (TI) is an American technology company that designs and manufactures semiconductors and various integrated circuits, which it sells to electronics designers and manufacturers globally. Its headquarters are in Dallas, Texas, United States. TI is one of the top ten semiconductor companies worldwide, based on sales volume. Texas Instruments's focus is on developing analog chips and embedded processors, which accounts for more than 80% of their revenue. TI also produces TI digital light processing (DLP) technology and education technology products including calculators, microcontrollers and multi-core processors. To date, TI has more than 43,000 patents worldwide.

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