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LM6172 Feedback Amplifier: Datasheet, Specifications, Equivalent

  • Contents

The LM6172 is a Dual High Speed Voltage Feedback Amplifier. It is unity-gain stable and provides excellent DC and AC performance.

Catalog

Product Overview

LM6172 Simplified Schematic

LM6172 Features

LM6172 Package Outline

LM6172 Package Dimensions

LM6172 Board Layout Example

LM6172 Stencil Design Example

LM6172 Performance Discussion

LM6172 Circuit Operation

LM6172 Slew Rate Characteristic

Reducing Settling Time

LM6172 Product Attributes

LM6172 Applications

LM6172 Application Circuits

Alternate Parts

Component Datasheet

LM6172 vs LM6172 MDR

Using Warnings

LM6172 Manufacturer


Product Overview

LM6172 Voltage Feedback Amplifier

LM6172 Voltage Feedback Amplifier

LM6172 offers high performance in dual amplifiers; yet it only consumes 2.3mA of supply current each channel. It operates on ±15V power supply for systems requiring large voltage swings, such as ADSL, scanners and ultrasound equipment. It is also specified at ±5V power supply for low voltage applications such as portable video systems. The LM6172 is built with National’s advanced VIP™ III (Vertically Integrated PNP) complementary bipolar process.


LM6172 Simplified Schematic

LM6172 Amplifier Simplified Schematic

LM6172 Amplifier Simplified Schematic


LM6172 Features

• (Typical Unless Otherwise Noted)
• Easy to Use Voltage Feedback Topology
• High Slew Rate 3000V/μs
• Wide Unity-Gain Bandwidth 100MHz
• Low Supply Current 2.3mA/Channel
• High Output Current 50mA/channel
• Specified for ±15V and ±5V Operation


LM6172 Package Outline

SOIC

LM6172 SOIC

SOIC - 1.75mm (max)


LM6172 Package Dimensions

Package Dimension

Package Dimension

Package Dimensions


LM6172 Board Layout Example

LM6172 Land Pattern Example

LM6172 Land Pattern Example


LM6172 Stencil Design Example

LM6172 Stencil Design Example

LM6172 Stencil Design Example


LM6172 Performance Discussion

The LM6172 is a dual high-speed, low power, voltage feedback amplifier. It is unity-gain stable and offers outstanding performance with only 2.3mA of supply current per channel. The combination of 100MHz unity-gain bandwidth, 3000V/μs slew rate, 50mA per channel output current and other attractive features makes it easy to implement the LM6172 in various applications. Quiescent power of the LM6172 is 138mW operating at ±15V supply and 46mW at ±5V supply.


LM6172 Circuit Operation

The class AB input stage in LM6172 is fully symmetrical and has a similar slewing characteristic to the current feedback amplifiers. In Figure 42, 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.


LM6172 Slew Rate Characteristic

The slew rate of LM6172 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.
When a very fast large signal pulse is applied to the input of an amplifier, some overshoot or undershoot occurs. By placing an external series resistor such as 1kΩ to the input of LM6172, the slew rate is reduced to help lower the overshoot, which reduces settling time.


Reducing Settling Time

The LM6172 has a very fast slew rate that causes overshoot and undershoot. To reduce settling time on LM6172, a 1kΩ resistor can be placed in series with the input signal to decrease slew rate. A feedback capacitor can also be used to reduce overshoot and undershoot. This feedback capacitor serves as a zero to increase the stability of the amplifier circuit. A 2pF feedback capacitor is recommended for initial evaluation. When the LM6172 is configured as a buffer, a feedback resistor of 1kΩ must be added in parallel to the feedback capacitor. Another possible source of overshoot and undershoot comes from capacitive load at the output.


LM6172 Product Attributes

Specifications

Values

Architecture

Voltage FB

Number of channels (#)

2

Total supply voltage (Min) (+5V=5, +/-5V=10)

5.5

Total supply voltage (Max) (+5V=5, +/-5V=10)

36

GBW (Typ) (MHz)

100

BW @ Acl (MHz)

160

Acl, min spec gain (V/V)

1

Slew rate (Typ) (V/us)

3000

Vn at flatband (Typ) (nV/rtHz)

12

Vn at 1 kHz (Typ) (nV/rtHz)

12

Iq per channel (Typ) (mA)

2.3

Vos (offset voltage @ 25 C) (Max) (mV)

1.5

Rail-to-rail

No

Rating

Catalog

Operating temperature range (C)

-40 to 85

CMRR (Typ) (dB)

110

Input bias current (Max) (pA)

1500000

Offset drift (Typ) (uV/C)

6

Output current (Typ) (mA)

85

2nd harmonic (dBc)

50

3rd harmonic (dBc)

50

Lead Free

Lead Free

Radiation Hardening

No

RoHS

Compliant


LM6172 Applications

• Scanner I-to-V Converters
• ADSL/HDSL Drivers 
• Multimedia Broadcast Systems
• Video Amplifiers 
• NTSC, PAL and SECAM Systems
• ADC/DAC Buffers
• Pulse Amplifiers and Peak Detectors


LM6172 Application Circuits

Isolation Resistor Used to Drive Capacitive Load

Isolation Resistor Used to Drive Capacitive Load

 

Compensating for Input Capacitance

Compensating for Input Capacitance

 

Power Supply Bypassing

Power Supply Bypassing

 

Differential Line Driver
Differential Line Driver


Alternate Parts

LM6172AMWG-QML, LM6172AMGWRLQV, LM6172IN/NOPB


Component Datasheet

LM6172 PDF


LM6172 vs LM6172 MDR

Specifications

LM6172

LM6172 MDR

Rohs Code

Yes

*

Part Life Cycle Code

Active

Obsolete

Ihs Manufacturer

TEXAS INSTRUMENTS INC

TEXAS INSTRUMENTS INC

Part Package Code

DIE

SOIC

Package Description

DIE

SOP

Reach Compliance Code

Compliant

Unknown

ECCN Code

EAR99

EAR99

HTS Code

8542.33.00.01

8542.33.00.01

Architecture

VOLTAGE-FEEDBACK

*

Average Bias Current-Max (IIB)

2.5 µA

*

Bias Current-Max (IIB) @25C

2.5 µA

*

Common-mode Reject Ratio-Min

70 dB

*

Common-mode Reject Ratio-Nom

110 dB

*

Input Offset Voltage-Max

1500 µV

*

JESD-30 Code

X-XUUC-N

R-CDSO-G16

Moisture Sensitivity Level

1

1

Neg Supply Voltage Limit-Max

-18 V

*

Neg Supply Voltage-Nom (Vsup)

-5 V

*

Number of Functions

2

1

Operating Temperature-Max

125 °C

85 °C

Operating Temperature-Min

85 °C

-55 °C

Package Body Material

UNSPECIFIED

UNSPECIFIED

Package Code

DIE

SOP

Package Shape

UNSPECIFIED

RECTANGULAR

Package Style

UNCASED CHIP

SMALL OUTLINE

Screening Level

MIL-PRF-38535 Class V

*

Slew Rate-Nom

3000 V/us

*

Supply Current-Max

6 mA

*

Supply Voltage Limit-Max

18 V

36 V

Supply Voltage-Nom (Vsup)

5 V

55 V

Surface Mount

YES

YES

Technology

BIPOLAR

BIPOLAR

Temperature Grade

MILITARY

INDUSTRIAL

Terminal Form

NO LEAD

GULL WING

Terminal Position

UPPER

*

Total Dose

100k Rad(Si) V

*


Using Warnings

Please be aware that an important notice concerning availability, standard warranty, and use in critical applications of Texas Instruments semiconductor products and disclaimers thereto appears at the end of this data sheet.


LM6172 Manufacturer

Texas Instruments Incorporated is an American technology company headquartered in Dallas, Texas, that designs and manufactures semiconductors and various integrated circuits, which it sells to electronics designers and manufacturers globally.

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