DDTA114WCAQ-7-F Overview
The DDTA114WCAQ-7-F is a high-performance, low-noise, wideband distributed amplifier designed for demanding RF and microwave applications. Featuring a wide frequency range and stable gain characteristics, this device enables efficient signal amplification with minimal distortion. Its robust design ensures reliable operation in industrial and communication systems, making it an ideal choice for engineers seeking precision and consistency. Manufactured by a reputable IC Manufacturer, this amplifier integrates well into complex signal chains, providing dependable performance across various environments.
DDTA114WCAQ-7-F Technical Specifications
| Parameter | Specification |
|---|---|
| Frequency Range | 0.5 GHz to 14 GHz |
| Gain | 14 dB typical |
| Noise Figure | 4.5 dB typical |
| Input Return Loss | ?? 10 dB |
| Output Return Loss | ?? 10 dB |
| Supply Voltage | 5 V |
| Supply Current | 50 mA typical |
| Operating Temperature Range | -40??C to +85??C |
| Package Type | Surface Mount, 7-lead QFN |
DDTA114WCAQ-7-F Key Features
- Wideband Amplification: Supports frequencies from 0.5 GHz to 14 GHz, enabling versatile RF applications.
- Low Noise Figure: Provides a noise figure as low as 4.5 dB, critical for maintaining signal integrity in sensitive receivers.
- Stable Gain Performance: Delivers consistent 14 dB gain across the operating band, improving reliability in signal processing.
- Compact Surface Mount Package: The 7-lead QFN design allows easy PCB integration, saving valuable board space and enhancing thermal management.
DDTA114WCAQ-7-F Advantages vs Typical Alternatives
This amplifier offers superior frequency coverage and a lower noise figure compared to typical alternatives. Its stable gain and low power consumption contribute to enhanced efficiency and reliability in RF front-end designs. Integration in compact packages simplifies system assembly, making it a preferred choice for engineers focusing on high-performance and space-constrained applications.
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Typical Applications
- Broadband RF amplification in communication systems, providing consistent gain from 0.5 to 14 GHz, suitable for multiband transceivers and signal repeaters.
- Radar and electronic warfare systems requiring low-noise, wideband signal amplification for improved detection and processing.
- Wireless infrastructure equipment where stable gain and low noise are essential for signal quality and network reliability.
- Test and measurement instruments that demand precise amplification across a wide frequency range for accurate data acquisition.
DDTA114WCAQ-7-F Brand Info
The DDTA114WCAQ-7-F is produced by a leading semiconductor manufacturer specializing in RF and microwave integrated circuits. This product exemplifies the brand??s commitment to delivering high-quality, reliable, and high-performance components for industrial and communication markets. Designed with precision and tested for rigorous conditions, it supports engineers with dependable amplification solutions tailored to advanced system requirements.
FAQ
What frequency range does the DDTA114WCAQ-7-F cover?
The device operates across a wide frequency range from 0.5 GHz to 14 GHz, making it suitable for a variety of RF and microwave applications including broadband amplification and multi-band communication systems.
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What is the typical gain provided by this amplifier?
This amplifier delivers a typical gain of 14 dB, offering stable and consistent amplification performance that enhances signal strength without compromising linearity or introducing significant distortion.
How does the noise figure impact the device??s performance?
The low noise figure of approximately 4.5 dB ensures minimal added noise during signal amplification, which is critical for maintaining high signal-to-noise ratios in sensitive receiver front ends and improving overall system sensitivity.
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What package type is used for the DDTA114WCAQ-7-F?
The amplifier is housed in a compact 7-lead QFN surface mount package, which facilitates easy integration onto printed circuit boards while providing effective thermal dissipation and conserving PCB space





