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lm3886tf: 68W, 1 Ch, 20-94V supply stereo Class-AB amplifier w/ Mute

2/26/2024

Introduction

 

High-power audio amplifier LM3886. The construction of power amplifier circuits is appropriate for audiophiles and electronic enthusiasts due to its simplicity and applicability. Under the rated working voltage, it can produce up to 68W of continuous, undistorted average power. Its overvoltage, overcurrent, and overheating protection features are also rather comprehensive. The most important feature is that it automatically protects against current shock while turning on and off to ensure the speaker operates securely.

 

 

Table of Content

 

 

lm3886tf Overview

 

High-performance audio power amplifier LM3886TF description can convert 38W of power into 8Ω from 20Hz to 20kHz with a THD+N of 0.1% and output 68W of average continuous power into a 4Ω load. The LM3886's performance leverages its Self-Peak Instantaneous Temperature (°Ke) (SPiKe) protection circuitry, putting it above discrete and hybrid amplifiers by providing an inherently, dynamically protected Safe Operating Area (SOA). Spike protection means that these components are fully protected at the output from overvoltage, undervoltage, and overload (including supply short circuits, thermal runaway, and transient temperature spikes). The LM3886 has a signal-to-noise ratio of over 92dB and a typical low noise floor of 2.0µV. Across the audio spectrum, it exhibits a meager THD+N value of 0.03% at the rated output to the rated load and provides excellent linearity with a typical IMD (SMPTE) rating of 0.004%.

 

 

LM3886 Pinout

 

There are two packages available for the LM3886. There are two reasons for this: either the inner electrode and backplate are insulated, so adding a heat dissipation plate does not need to take the insulation issue into account, or the backplate is not insulated from the inner electrode and needs to be insulated from it when it is added.

Figure1-LM3886 Pinout

Figure1-LM3886 Pinout

 

 

 

LM3886 Pin Configuration

 

Pin No

Pin Name

Description

1

V+

Positive Supply Voltage

2

NC

No Connection

3

OUTPUT

Output Pin

4

V-

Negative Supply Voltage

5

V+

Positive Supply Voltage

6

NC

No Connection

7

GND

Ground Pin

8

MUTE

Mute Pin

9

Vin-

Negative Input Voltage

10

Vin+

Positive Input Voltage

11

NC

No Connection

 

 

LM3886TF CAD Model

 

Symbol

 

Figure2-Symbol

 

Footprint

Figure3-Footprint

3D Model

Figure4-3D Model

 

LM3886 Internal Equivalent Circuit

Figure5-LM3886 Internal Equivalent Circuit

Figure5-LM3886 Internal Equivalent Circuit

 

Features for the LM3886tf 

 

  • 68W Cont. Avg. Output Power into 4Ω at VCC= ±28V
  • 38W Cont. Avg. Output Power into 8Ω at VCC= ±28V
  • 50W Cont. Avg. Output Power into 8Ω at VCC= ±35V
  • 135W Instantaneous Peak Output Power Capability
  • Signal-to-Noise Ratio ≥ 92dB
  • An Input Mute Function
  • Output Protection from a Short to Ground or the Supplies via Internal Current Limiting Circuitry
  • Output Over-Voltage Protection against Transients from Inductive Loads
  • Supply Under-Voltage Protection, not Allowing Internal Biasing to Occur when |VEE| + |VCC| ≤ 12V, thus Eliminating Turn-On and Turn-Off Transients
  • 11-Lead TO-220 Package
  • Wide Supply Range 20V - 94V

 

 

LM3886tf  Specification

 

Audio input type

Analog Input

Architecture

Class-AB

Speaker channels (max)

Mono

Rating

Catalog

Power stage supply (max) (V)

94

Power stage supply (min) (V)

20

Load (min)

4

Output power (W)

68

SNR (dB)

110

THD + N at 1 kHz (%)

0.03

Iq (typ) (mA)

50

Control interface

Hardware

Closed/open loop

Open

Analog supply (min) (V)

20

Analog supply voltage (max) (V)

84

PSRR (dB)

120

Operating temperature range (°C)

0 to 70

 

 

 

 LM3886tf Applications

 

  • Component stereo
  • Compact stereo
  • Self-powered speakers
  • Surround-sound amplifiers
  • High-end stereo TVs

 

Typical Audio Amplifier Application Circuit

 

Figure6-Typical Audio Amplifier Application Circuit

 

 LM3886tf Working Principle

 

C3 and R5 dictate the power amplifier's high-frequency gain, while its low-frequency gain is determined by the ratio of R3 to R4. The high frequencies are enhanced by current negative feedback, leading to better overall bandwidth and significantly less transient distortion. In contrast, the low frequencies are terminated by current feedback due to the strong capacitive reactance of C3. It is recommended that the feedback component's value be carefully chosen based on factors including the speaker's impedance and inductance, with the low-frequency gain ideally being two to three times that of the high-frequency gain. Historically, power amplifier frequency characteristics were frequently built to be flat, making it impossible to achieve a pleasing sound quality. The negative feedback circuit should be intentionally employed to boost the low-frequency gain to optimize the power amplifier's playback impact. This will also satisfy the demands of modern home theaters, which call for loud, dynamic sound effects.

 

Figure7- LM3886tf Working Principle

Figure7- LM3886tf Working Principle

 

 

 

 

LM3886tf Alternative parts

 

LM3886TF,LM3886TF/NOPB,LM3886T/NOPB,LM3875TF/NOPB

 

 

LM3886tf Datasheet

 

LM3886TF Datasheet

Frequently Asked Questions
What is the difference between LM3886T and LM3886TF?
What is the sound quality of LM3886?
What is the maximum power of LM3886?
How many watts is the LM3886 IC output?
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