Belongs to: Integrated Circuits (ICs)
Category: Audio Amplifiers
Use: LM4871N is a mono, bridged audio power amplifier that is designed for use in low voltage consumer applications. It is commonly used in portable devices such as mobile phones, tablets, and portable media players.
Characteristics: The LM4871N is known for its low quiescent current, low distortion, and high efficiency. It comes in a small outline package, making it suitable for space-constrained designs.
Package: The LM4871N is available in an 8-pin SOIC (Small Outline Integrated Circuit) package.
Essence: This amplifier is essential for providing high-quality audio output in battery-powered devices.
Packaging/Quantity: Typically packaged in reels of 2500 units.
The LM4871N has the following pin configuration: 1. IN-: Negative Input 2. IN+: Positive Input 3. GND: Ground 4. VDD: Supply Voltage 5. SHDN: Shutdown 6. OUT-: Negative Output 7. OUT+: Positive Output 8. BYPASS: Bypass Capacitor Connection
Advantages: - Low power consumption - Small form factor - Built-in protection features
Disadvantages: - Limited output power compared to some higher voltage amplifiers - Requires an external bypass capacitor for optimal performance
The LM4871N operates by amplifying the input audio signal and delivering it to the connected load (e.g., a speaker or headphones). It utilizes a bridge-tied load (BTL) configuration to maximize power efficiency and minimize distortion.
The LM4871N is well-suited for various low-voltage audio amplification applications, including: - Mobile Phones - Tablets - Portable Media Players - Bluetooth Speakers - Wearable Devices
Some alternative models to LM4871N include: - TPA2012D2 from Texas Instruments - MAX98306 from Maxim Integrated - TS4990 from STMicroelectronics
In conclusion, the LM4871N is a versatile audio power amplifier designed for low voltage applications, offering high efficiency and low distortion. Its compact size and essential features make it an ideal choice for portable electronic devices.
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Sure, here are 10 common questions and answers related to the application of LM4871N:
What is LM4871N?
What is the typical application of LM4871N?
What is the supply voltage range for LM4871N?
What is the output power capability of LM4871N?
What is the input impedance of LM4871N?
Does LM4871N require external coupling capacitors?
Can LM4871N operate in a bridge-tied load (BTL) configuration?
What is the typical quiescent current consumption of LM4871N?
Is LM4871N suitable for battery-powered applications?
Does LM4871N have thermal shutdown protection?
I hope these questions and answers help you understand the application of LM4871N better! If you have any more specific questions, feel free to ask.