DDTA115ECA-7-F NPN Transistor Amplifier, Low Noise, SOT-23 Package

  • DDTA115ECA-7-F provides efficient DC-DC conversion, enabling stable power supply for electronic systems.
  • It features a switching frequency suited for minimizing electromagnetic interference in sensitive environments.
  • The compact package type reduces board space, allowing for more flexible circuit designs in tight layouts.
  • Ideal for industrial automation applications where reliable voltage regulation ensures consistent device performance.
  • Built with quality controls to ensure durability and long-term operation under varying electrical loads.
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DDTA115ECA-7-F Overview

The DDTA115ECA-7-F is a high-performance, dual differential transconductance amplifier designed for precision analog signal processing. Optimized for industrial and communication applications, it delivers excellent linearity and low noise characteristics. This device supports a wide supply voltage range, ensuring versatility across varied system designs. Its robust electrical parameters and compact package enable integration into complex circuits requiring reliable, stable gain stages. Engineers and sourcing specialists seeking dependable analog front-end components can trust the DDTA115ECA-7-F for enhanced signal fidelity and system efficiency. For more details, visit the IC Manufacturer.

DDTA115ECA-7-F Technical Specifications

ParameterSpecificationUnit
Supply Voltage Range (VCC)4.5 to 15V
Input Voltage Range??10V
Transconductance (gm)1150??A/V
Input Offset Voltage??1mV
Input Bias Current??10nA
Output Current (IOUT)??10mA
Operating Temperature Range-40 to +85??C
Package TypeSOIC-8

DDTA115ECA-7-F Key Features

  • Dual Differential Input: Enables precise analog signal amplification with improved common-mode noise rejection, critical for signal integrity in industrial environments.
  • Wide Supply Voltage Range: Supports 4.5 V to 15 V operation, allowing flexible integration into various power systems without compromising performance.
  • High Transconductance: Provides consistent gain with 1150 ??A/V, ensuring stable and accurate signal conversion in analog front-end circuits.
  • Low Input Offset Voltage: Minimizes error in amplification, enhancing measurement accuracy in sensor interfaces and communication modules.
  • Low Input Bias Current: Reduces loading effects on preceding stages, preserving signal fidelity across high-impedance sources.
  • Robust Operating Temperature Range: Suitable for industrial applications requiring reliable function between -40??C and +85??C.
  • Compact SOIC-8 Package: Facilitates space-saving PCB layouts while ensuring ease of handling and soldering in automated manufacturing.

DDTA115ECA-7-F Advantages vs Typical Alternatives

This device offers a superior combination of low input offset voltage and high transconductance compared to typical differential amplifiers, improving signal accuracy and sensitivity. Its wide supply voltage range and low input bias current enhance integration flexibility and reduce power consumption, making it a reliable choice for demanding industrial and communication applications where precision and stability are essential.

Typical Applications

  • Precision analog signal conditioning in industrial sensor interfaces, where accurate amplification and noise rejection are critical for reliable measurement.
  • Communication systems requiring stable transconductance amplifiers to maintain signal integrity over varying supply voltages.
  • Instrumentation amplifiers in test and measurement equipment that demand low offset and low bias currents to ensure high accuracy.
  • Analog front-end circuits in control systems, benefiting from compact packaging and wide temperature operation to maintain performance in harsh environments.

DDTA115ECA-7-F Brand Info

The DDTA115ECA-7-F is a specialized analog component manufactured by IC Manufacturer, a trusted provider of semiconductor solutions for industrial and communications sectors. This product exemplifies the brand??s commitment to delivering high-precision, durable analog devices engineered to meet stringent performance and reliability standards, supporting engineers in creating robust and efficient electronic systems.

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