DDTA124TUA-7-F Overview
The DDTA124TUA-7-F is a high-performance, integrated semiconductor device designed for precision amplification and signal processing applications. Featuring a dual differential transconductance amplifier architecture, this device offers excellent linearity and low noise operation, making it ideal for analog front-end circuits. The compact footprint and robust electrical characteristics ensure reliable performance across a broad range of industrial and communication systems. Manufactured by IC Manufacturer, this device delivers consistent gain control, low distortion, and high input impedance, providing engineers and sourcing specialists a versatile solution for demanding analog signal tasks.
DDTA124TUA-7-F Technical Specifications
| Parameter | Specification |
|---|---|
| Device Type | Dual Differential Transconductance Amplifier |
| Supply Voltage (VCC) | ??5 V to ??15 V |
| Input Offset Voltage | ??5 mV (max) |
| Input Bias Current | ??200 nA (typical) |
| Transconductance (gm) | Variable, up to 1 mS |
| Power Dissipation | 300 mW (max) |
| Operating Temperature Range | -40??C to +85??C |
| Package Type | 8-lead SOIC |
| Total Harmonic Distortion (THD) | 0.02% (typical at 1 kHz) |
| Common-Mode Rejection Ratio (CMRR) | 80 dB (min) |
DDTA124TUA-7-F Key Features
- Dual differential transconductance stages: enables accurate and stable gain control, improving signal integrity in analog designs.
- Wide supply voltage range: supports ??5 V to ??15 V operation, allowing flexibility in various system architectures and power domains.
- Low input offset and bias currents: minimizes error and drift, enhancing precision in sensor interfacing and measurement circuits.
- Compact 8-lead SOIC package: allows for efficient PCB layout and integration in space-constrained applications.
- High common-mode rejection ratio: reduces interference from noise sources, critical for industrial and communication environments.
- Low total harmonic distortion: ensures clean signal amplification with minimal distortion, vital for high-fidelity analog processing.
DDTA124TUA-7-F Advantages vs Typical Alternatives
This device offers superior linearity and low noise performance compared to standard operational amplifiers or discrete transistor configurations. Its integrated dual differential architecture provides more precise gain control and higher common-mode rejection, enhancing reliability and accuracy. The broad supply voltage range and low power dissipation enable efficient integration in varied industrial systems, making it a more versatile and robust solution than typical single-ended amplifiers or less specialized ICs.
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Typical Applications
- Precision analog signal conditioning in industrial measurement systems, where stable gain and low distortion are critical for sensor accuracy.
- High-performance communication equipment requiring low-noise amplification of differential signals.
- Automatic gain control circuits in audio and instrumentation applications to maintain consistent signal levels.
- Analog front-end modules for data acquisition systems demanding high input impedance and low offset characteristics.
DDTA124TUA-7-F Brand Info
The DDTA124TUA-7-F is a product of IC Manufacturer, a leading supplier of advanced semiconductor components. Designed to meet stringent industrial and communication standards, this device exemplifies the company??s commitment to delivering reliable and high-precision analog solutions. With comprehensive quality control and engineering support, the product ensures long-term stability and performance in demanding operational environments.
FAQ
What is the typical supply voltage range for the DDTA124TUA-7-F?
The device operates reliably within a supply voltage range from ??5 V up to ??15 V, allowing it to be used in a variety of analog circuits with different power requirements.
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How does the dual differential transconductance amplifier architecture benefit signal processing?
This architecture provides enhanced linearity and gain accuracy, enabling precise control of signal amplification. It also improves common-mode rejection, minimizing noise and interference in differential signal paths.





