DDTA123YUA-7-F Overview
The DDTA123YUA-7-F is a high-performance dual differential transconductance amplifier designed for precision analog signal processing. Engineered to deliver superior linearity and low noise operation, this device supports a broad range of industrial and instrumentation applications. Its robust electrical characteristics ensure stable operation under varying temperature and voltage conditions, making it an excellent choice for engineers requiring reliable and accurate amplification in sensitive environments. Manufactured with advanced semiconductor processes, the DDTA123YUA-7-F offers consistent performance and integration ease, ideal for demanding analog front-end designs. For detailed product sourcing and technical support, visit IC Manufacturer.
DDTA123YUA-7-F Technical Specifications
| Parameter | Specification |
|---|---|
| Supply Voltage (VCC) | ??5 V to ??15 V |
| Input Voltage Range | ??10 V |
| Output Current | ??10 mA |
| Transconductance (gm) | 10 mS typical |
| Total Harmonic Distortion (THD) | ??0.05% |
| Noise Voltage Density | 4 nV/??Hz at 1 kHz |
| Operating Temperature Range | -40??C to +85??C |
| Package Type | 7-lead SOIC |
| Power Dissipation | 400 mW max |
DDTA123YUA-7-F Key Features
- Dual Differential Transconductance Amplifier: Enables precise current output proportional to differential input voltage, enhancing signal fidelity in analog circuits.
- Wide Supply Voltage Range: Supports operation from ??5 V to ??15 V, providing flexibility across various industrial power systems.
- Low Noise Performance: Minimizes signal distortion and improves measurement accuracy in sensitive instrumentation applications.
- High Linearity: Ensures minimal harmonic distortion, critical for audio and communication signal processing.
- Compact 7-Lead SOIC Package: Facilitates integration into space-constrained designs without compromising thermal management.
DDTA123YUA-7-F Advantages vs Typical Alternatives
The DDTA123YUA-7-F offers superior linearity and lower noise compared to standard transconductance amplifiers, enhancing signal accuracy in precision applications. Its wide supply voltage compatibility and moderate power dissipation improve system flexibility while maintaining reliability. The integrated dual amplifier design reduces component count and board space, delivering a cost-effective and efficient solution for industrial electronics over typical discrete or single-channel alternatives.
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Typical Applications
- Precision analog front ends in industrial measurement systems requiring stable transconductance amplification for sensor interfacing and signal conditioning.
- Active filters and voltage-controlled amplifiers in communication equipment demanding low distortion and consistent gain.
- Instrumentation amplifiers in medical devices where low noise and high linearity are essential for accurate data acquisition.
- Analog signal processing circuits in audio equipment benefiting from the device??s low harmonic distortion and wide dynamic range.
DDTA123YUA-7-F Brand Info
The DDTA123YUA-7-F is part of a well-established product line from a leading semiconductor manufacturer known for delivering reliable analog components tailored for industrial and instrumentation markets. This device reflects the brand??s commitment to quality and performance, combining advanced fabrication techniques with rigorous testing standards. Designed to meet the demanding requirements of engineers and sourcing specialists, it supports seamless integration and long-term availability, backed by comprehensive technical documentation and customer support.
FAQ
What is the typical supply voltage range for the DDTA123YUA-7-F?
The device operates reliably within a supply voltage range from ??5 V up to ??15 V. This wide range allows it to be used in various industrial and instrumentation applications where power supply conditions may vary.
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How does the DDTA123YUA-7-F perform in terms of noise?
The amplifier features a low noise voltage density of approximately 4 nV/??Hz at 1 kHz, which helps reduce signal distortion and enhances measurement accuracy in sensitive analog circuits.
Can this device be used in temperature-critical environments?
Yes, it is specified





