Texas Instruments_TLC252ACD
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Texas Instruments
TLC252ACD

687-TLC252ACD
PDF Datasheet
2-Ch Op Amp, 1.7MHz, 16V, LinCMOS, 8-SOIC
18 weeks

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Tech Specifications

Amplifier Type
GENERAL PURPOSE
Bandwidth
1.7MHz
Package/Case
D
Common Mode Rejection Ratio
65dB
Gain Bandwidth Product
1.7MHz
Input Bias Current
60pA
Input Offset Voltage (Vos)
900uV
Lead Free
Lead Free
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TLC252ACD Description

TLC252ACD Description

The TLC252ACD is a dual CMOS operational amplifier from Texas Instruments, designed for a wide range of linear applications. It features a supply voltage range of 1.4 V to 16 V, making it suitable for both low-voltage and standard supply systems. The device operates within a temperature range of 0°C to 70°C (TA), ensuring reliable performance in various environmental conditions. With a slew rate of 2.9 V/µs and a gain bandwidth product of 2.2 MHz, the TLC252ACD offers high-speed signal processing capabilities. It is available in an 8-pin SOIC package, which is ideal for surface mount applications and provides a compact footprint for space-constrained designs.

TLC252ACD Features

  • Low Power Consumption: The TLC252ACD has a supply current of 1.9 mA per channel, making it highly energy-efficient, especially in battery-powered devices.
  • Low Input Bias Current: With an input bias current of just 1 pA, the TLC252ACD minimizes the loading effect on high-impedance sources, ensuring accurate signal processing.
  • Low Input Offset Voltage: The 900 µV input offset voltage ensures high accuracy in signal amplification, making it suitable for precision applications.
  • Wide Supply Voltage Range: The ability to operate from 1.4 V to 16 V makes the TLC252ACD versatile for different power supply configurations.
  • High Slew Rate: A slew rate of 2.9 V/µs allows for fast transient response, which is crucial for high-frequency applications.
  • Gain Bandwidth Product: The 2.2 MHz gain bandwidth product ensures good performance in applications requiring high-frequency signal processing.
  • Surface Mount Technology: The 8-pin SOIC package is designed for surface mount applications, providing a compact and reliable solution for modern electronics.
  • Compliance and Safety: The TLC252ACD is REACH unaffected and RoHS3 compliant, ensuring it meets environmental and safety standards.
  • Moisture Sensitivity Level: With an MSL of 1 (Unlimited), the TLC252ACD is suitable for storage and handling in various environments without the risk of moisture damage.

TLC252ACD Applications

The TLC252ACD is ideal for a variety of applications due to its high performance and versatility. Some specific use cases include:

  • Signal Conditioning: The low input bias current and low input offset voltage make it suitable for conditioning weak signals from sensors.
  • High-Speed Signal Processing: The high slew rate and gain bandwidth product ensure accurate and fast processing of high-frequency signals.
  • Battery-Powered Devices: The low power consumption makes it an excellent choice for portable and battery-operated electronics.
  • Precision Amplification: The high accuracy and low offset voltage make it suitable for precision amplification in instrumentation and control systems.
  • Consumer Electronics: The compact size and surface mount package make it ideal for consumer electronics where space is a constraint.

Conclusion of TLC252ACD

The TLC252ACD from Texas Instruments is a dual CMOS operational amplifier that offers a combination of high performance, low power consumption, and versatility. Its wide supply voltage range, low input bias current, and high slew rate make it suitable for a variety of applications, from precision signal conditioning to high-speed processing. The compact 8-pin SOIC package and surface mount technology ensure it fits well in modern electronics designs. With its compliance to environmental and safety standards, the TLC252ACD is a reliable choice for engineers seeking a high-quality, versatile operational amplifier.

FAQ

What package or case is TLC252ACD available in?
TLC252ACD is available in the D package / case.
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