Texas Instruments_TLV2464AIDRG4
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Texas Instruments
TLV2464AIDRG4

687-TLV2464AIDRG4
PDF Datasheet
Quad Op Amp, 6.4MHz BW, 1.5mV Vos, 80mA Out, 3V, 14-SOIC

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Tech Specifications

Amplifier Type
GENERAL PURPOSE
Bandwidth
6.4MHz
Package/Case
D
Common Mode Rejection Ratio
66dB
Gain Bandwidth Product
6.4MHz
Input Bias Current
14nA
Input Offset Voltage (Vos)
1.5mV
Lead Free
Lead Free
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TLV2464AIDRG4 Description

TLV2464AIDRG4 Description

The TLV2464AIDRG4 is a general-purpose operational amplifier from Texas Instruments, designed for a wide range of applications requiring high performance and reliability. This IC features a quad-channel configuration, making it ideal for systems that require multiple amplification paths. The TLV2464AIDRG4 operates within a supply voltage range of 2.7 V to 6 V, offering flexibility in power supply requirements. It boasts a gain bandwidth product of 6.4 MHz, ensuring high-frequency performance and stability. The amplifier's input bias current is extremely low at 1.3 nA, minimizing the impact on sensitive input signals. Additionally, the TLV2464AIDRG4 features a slew rate of 1.6 V/µs, which is crucial for maintaining signal integrity in high-speed applications. The device is housed in a 14-pin SOIC package, suitable for surface-mount applications, and is available in tape and reel format for convenient manufacturing processes.

TLV2464AIDRG4 Features

  • Wide Supply Voltage Range: The TLV2464AIDRG4 operates from 2.7 V to 6 V, making it suitable for a variety of power supply configurations.
  • High Gain Bandwidth Product: With a gain bandwidth product of 6.4 MHz, this amplifier ensures high-frequency performance and stability.
  • Low Input Bias Current: The 1.3 nA input bias current minimizes the impact on sensitive input signals, ensuring accurate amplification.
  • High Slew Rate: A slew rate of 1.6 V/µs ensures that the amplifier can handle high-speed signals without distortion.
  • Low Input Offset Voltage: The 500 µV input offset voltage contributes to high precision in signal amplification.
  • Quad-Channel Configuration: The TLV2464AIDRG4 features four independent amplification channels, providing flexibility in multi-channel applications.
  • Surface-Mount Packaging: The 14-pin SOIC package is ideal for surface-mount technology, facilitating compact and reliable designs.
  • Compliance and Reliability: The device is REACH unaffected and RoHS3 compliant, ensuring environmental and regulatory standards are met. It also has a moisture sensitivity level (MSL) of 1, indicating unlimited storage time without degradation.

TLV2464AIDRG4 Applications

The TLV2464AIDRG4 is well-suited for a variety of applications in the electronics industry, including:

  • Signal Conditioning: Ideal for amplifying and conditioning low-level signals in sensors and transducers.
  • Audio Amplification: Suitable for high-fidelity audio applications requiring low distortion and high bandwidth.
  • Data Acquisition Systems: The low input offset voltage and high gain bandwidth make it perfect for precision data acquisition systems.
  • Industrial Controls: The robust design and wide operating voltage range make it suitable for industrial control systems.
  • Medical Equipment: The low input bias current and high precision are beneficial for medical devices requiring accurate signal processing.

Conclusion of TLV2464AIDRG4

The TLV2464AIDRG4 from Texas Instruments is a versatile and high-performance operational amplifier designed for a wide range of applications. Its quad-channel configuration, wide supply voltage range, and high gain bandwidth product make it an excellent choice for systems requiring multiple amplification paths and high-frequency performance. The low input bias current and high slew rate ensure accurate and distortion-free signal amplification. The device's compliance with environmental and regulatory standards, along with its surface-mount packaging, make it a reliable and convenient choice for modern electronics designs. While the TLV2464AIDRG4 is now obsolete, its legacy continues to influence the design of future operational amplifiers.

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