DDTA113TCA-7 Overview
The DDTA113TCA-7 is a high-performance dual differential transconductance amplifier designed for precision analog signal processing. Featuring matched differential input pairs and a wide bandwidth, it excels in applications requiring low noise and high linearity. This device supports a wide supply voltage range and offers excellent thermal stability, making it ideal for industrial and instrumentation environments. Its compact SOIC-8 package ensures ease of integration in space-constrained systems. For engineers and sourcing specialists seeking robust performance with consistent reliability, the DDTA113TCA-7 from IC Manufacturer delivers a versatile solution for demanding analog front-end designs.
DDTA113TCA-7 Technical Specifications
| Parameter | Specification |
|---|---|
| Supply Voltage (VCC) | ??3 V to ??15 V |
| Input Offset Voltage | ??5 mV (max) |
| Input Bias Current | ??50 nA (typical) |
| Transconductance (gm) | 1 mS (typical) |
| Bandwidth (?C3 dB) | 12 MHz (typical) |
| Output Voltage Swing | ??10 V (with ??15 V supply) |
| Total Harmonic Distortion | 0.03% (typical at 1 kHz) |
| Package Type | SOIC-8 |
| Operating Temperature Range | ?C40??C to +85??C |
DDTA113TCA-7 Key Features
- Dual Differential Inputs: Enables precise differential signal processing, reducing noise and improving signal integrity in measurement circuits.
- Wide Supply Voltage Range: Operates reliably from ??3 V up to ??15 V, offering flexibility for various industrial power configurations.
- High Bandwidth: Supports signals up to 12 MHz, suitable for high-speed analog applications requiring fast response times.
- Low Input Offset and Bias Currents: Minimizes error and drift, enhancing accuracy in sensor interfaces and instrumentation amplifiers.
- Compact SOIC-8 Package: Facilitates easy PCB layout and space-saving integration in complex analog systems.
- Excellent Linearity and Low Distortion: Ensures faithful signal amplification, crucial for audio and precision measurement equipment.
- Wide Operating Temperature Range: Guarantees dependable performance in harsh industrial environments from ?C40??C to +85??C.
DDTA113TCA-7 Advantages vs Typical Alternatives
This device offers superior input offset voltage and bias current specifications compared to typical differential transconductance amplifiers, resulting in enhanced accuracy. Its wide bandwidth and linearity provide better signal fidelity, while the broad supply voltage range and industrial temperature rating ensure robust operation in demanding settings. The compact SOIC-8 package supports efficient system design, making it a reliable and adaptable choice over conventional amplifiers lacking these combined features.
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Typical Applications
- Precision analog front-end circuits for industrial sensor signal conditioning, requiring low noise and high linearity to maintain measurement accuracy over varying environments.
- Differential input stages in instrumentation amplifiers where stable offset and low bias currents are critical for consistent performance.
- High-frequency signal processing in communication equipment benefiting from the device??s wide bandwidth and low distortion characteristics.
- Audio amplification circuits demanding low total harmonic distortion and excellent linearity for clear sound reproduction.
DDTA113TCA-7 Brand Info
Manufactured by a leading semiconductor provider, the DDTA113TCA-7 embodies the brand??s commitment to delivering precision analog components tailored for industrial and instrumentation applications. This model reflects rigorous quality standards, advanced process technology, and comprehensive testing to ensure longevity and performance consistency. The brand??s reputation for reliable and innovative semiconductor solutions reinforces the suitability of this device for engineers seeking dependable analog amplification in challenging conditions.
FAQ
What supply voltages does the DDTA113TCA-7 support?
The device operates across a wide supply voltage range from ??3 V to ??15 V, allowing compatibility with various industrial power systems and ensuring flexibility in different circuit designs.
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