Intersil
EL5150IW-T7A

687-EL5150IW-T7A
PDF Datasheet
IC OPAMP VFB 40MHZ SOT23-6

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Tech Specifications

-3db Bandwidth
200MHz
Package/Case
SOT-23-6
Gain Bandwidth Product
40MHz
Input Bias Current
20nA
Input Offset Voltage (Vos)
500uV
Lead Free
Contains Lead
Max Operating Temperature
85°C
Min Operating Temperature
-40°C
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EL5150IW-T7A Description

EL5150IW-T7A Description

The EL5150IW-T7A is a high-performance operational amplifier (op-amp) designed for a wide range of linear applications. Manufactured by Intersil, this voltage feedback amplifier is housed in a compact SOT23-6 package, making it ideal for space-constrained designs. The EL5150IW-T7A operates from a supply voltage range of 5V to 12V, ensuring flexibility in various power supply configurations. It offers a -3dB bandwidth of 200 MHz, a gain bandwidth product of 40 MHz, and a high slew rate of 100V/µs, which are critical for high-frequency and high-speed signal processing applications. The amplifier also features a low input bias current of 20 nA and an input offset voltage of 500 µV, ensuring high accuracy and stability in signal amplification.

EL5150IW-T7A Features

  • High-Speed Performance: With a -3dB bandwidth of 200 MHz and a slew rate of 100V/µs, the EL5150IW-T7A is capable of handling high-frequency signals with minimal distortion, making it suitable for applications requiring fast transient response and wide bandwidth.
  • Low Power Consumption: The EL5150IW-T7A operates at a supply current of only 1.35mA, which is advantageous for battery-powered and low-power applications.
  • Wide Supply Voltage Range: The operational amplifier can function within a supply voltage range of 5V to 12V, providing flexibility in power supply requirements.
  • High Accuracy: The low input bias current of 20 nA and input offset voltage of 500 µV ensure high accuracy and stability in signal amplification, making it suitable for precision applications.
  • Surface Mount Technology: The SOT23-6 package allows for surface mount assembly, which is ideal for automated manufacturing processes and compact designs.
  • Single Circuit Design: The EL5150IW-T7A features a single circuit design, simplifying the design process and reducing complexity in multi-channel applications.

EL5150IW-T7A Applications

The EL5150IW-T7A is well-suited for a variety of applications due to its high-speed performance and low power consumption. Some specific use cases include:

  • High-Speed Signal Processing: Ideal for applications requiring fast transient response and wide bandwidth, such as high-speed data acquisition systems and video signal processing.
  • Precision Amplification: The low input bias current and input offset voltage make it suitable for precision instrumentation and measurement applications.
  • Battery-Powered Devices: The low power consumption of the EL5150IW-T7A makes it an excellent choice for battery-powered devices where power efficiency is critical.
  • Automotive Electronics: The wide supply voltage range and high performance make it suitable for automotive applications where reliability and performance are paramount.
  • Industrial Control Systems: The EL5150IW-T7A can be used in industrial control systems for signal conditioning and amplification, ensuring accurate and reliable operation.

Conclusion of EL5150IW-T7A

The EL5150IW-T7A is a versatile and high-performance operational amplifier that offers a combination of high-speed performance, low power consumption, and high accuracy. Its wide supply voltage range and surface mount package make it suitable for a variety of applications, from high-speed signal processing to precision instrumentation. Despite being marked as obsolete, the EL5150IW-T7A remains a valuable component for engineers and designers looking for a reliable and efficient op-amp solution.

FAQ

What voltage specification is listed for EL5150IW-T7A?
The listed voltage-related specification for EL5150IW-T7A is 500uV.
What is the mounting type of EL5150IW-T7A?
What operating temperature range does EL5150IW-T7A support?
Is EL5150IW-T7A currently in stock?
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