
Analog Devices Inc.
AD8348ARUZ
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AD8348ARUZ Description
AD8348ARUZ Description
The AD8348ARUZ from Analog Devices Inc. is a high-performance RF demodulator IC designed for 50MHz to 1GHz applications. Packaged in a 28-pin TSSOP, this surface-mount device operates on a 2.7V to 5.5V supply with a 58mA current consumption, making it suitable for low-power systems. It features a 25.5dB gain and a 10.75dB noise figure, ensuring robust signal integrity in demanding RF environments. The LO frequency range of 100MHz to 2GHz enables flexible local oscillator integration. Compliant with ROHS3 and REACH Unaffected standards, it is ideal for environmentally conscious designs.
AD8348ARUZ Features
- Wide RF Frequency Range: 50MHz to 1GHz, supporting diverse RF applications.
- Low Power Operation: 2.7V to 5.5V supply with 58mA current draw.
- High Gain & Low Noise: 25.5dB gain and 10.75dB noise figure for superior signal fidelity.
- Broad LO Range: 100MHz to 2GHz local oscillator compatibility.
- Robust Packaging: 28-pin TSSOP with MSL1 (Unlimited) moisture sensitivity.
- Compliance: ROHS3, REACH Unaffected, and ECCN 5A991B1 for global deployment.
AD8348ARUZ Applications
The AD8348ARUZ excels in:
- Wireless Communication Systems: Base stations, repeaters, and transceivers.
- Broadband Receivers: Cable modems, set-top boxes, and broadband demodulation.
- Test & Measurement Equipment: Spectrum analyzers and signal generators.
- Military & Aerospace: Secure communications and radar systems due to its wide frequency range and stability.
- Industrial IoT: Low-power, high-performance RF links for sensor networks.
Conclusion of AD8348ARUZ
The AD8348ARUZ stands out as a versatile, high-performance RF demodulator, combining wide frequency coverage, low power consumption, and excellent signal integrity. Its compact TSSOP package and compliance with environmental standards make it a preferred choice for modern RF designs. Whether for consumer electronics, industrial IoT, or critical communications, this IC delivers reliable performance, outperforming similar models in noise figure and gain characteristics.



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