ADRF5347BCCZN Overview
The ADRF5347BCCZN is a high-performance, integrated wideband quadrature modulator designed for modern communication and radar systems requiring precise signal generation. It offers excellent linearity and low phase noise, supporting frequency conversion in the 400 MHz to 6 GHz range. This device features low power consumption and a compact 5 mm ?? 5 mm LFCSP package, making it suitable for space-constrained applications. With built-in LO buffer and differential I/Q inputs, it ensures robust signal integrity and ease of integration. Engineers and sourcing specialists will find the ADRF5347BCCZN a reliable solution for efficient and accurate RF modulation. More details available at IC Manufacturer.
ADRF5347BCCZN Technical Specifications
| Parameter | Specification |
|---|---|
| Frequency Range (RF) | 400 MHz to 6 GHz |
| LO Frequency Range | 400 MHz to 6 GHz |
| Modulation Type | Quadrature Modulator |
| Power Supply Voltage | +5 V |
| Typical Power Consumption | 220 mW |
| Output Type | Single-ended RF output |
| Input Type | Differential I/Q baseband inputs |
| Package | 32-lead LFCSP, 5 mm ?? 5 mm |
| Operating Temperature Range | -40 ??C to +85 ??C |
ADRF5347BCCZN Key Features
- Wide Frequency Range: Supports RF and LO frequencies from 400 MHz to 6 GHz, enabling versatile use across multiple wireless standards and radar bands.
- High Linearity and Low Phase Noise: Ensures signal integrity and reduces distortion for improved overall system performance in communication and radar applications.
- Integrated LO Buffer: Simplifies design by providing a buffered local oscillator input, enhancing isolation and reducing external component count.
- Low Power Consumption: Typical power dissipation of 220 mW enables energy-efficient operation in portable and battery-powered systems.
- Differential I/Q Inputs: Improves noise immunity and minimizes even-order distortion, resulting in cleaner modulated signals.
- Compact LFCSP Package: The small 5 mm ?? 5 mm footprint facilitates high-density PCB designs and easy integration in size-constrained environments.
- Wide Operating Temperature Range: Reliable performance across -40 ??C to +85 ??C supports industrial and commercial applications.
ADRF5347BCCZN Advantages vs Typical Alternatives
This quadrature modulator offers superior integration with a built-in LO buffer, reducing the need for external components and simplifying circuit design compared to discrete solutions. Its broad frequency coverage and low power consumption provide enhanced efficiency and flexibility. The device??s high linearity and low phase noise deliver improved signal accuracy and sensitivity, making it advantageous for demanding RF applications over typical modulators with narrower bandwidths or higher power requirements.
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Typical Applications
- Wireless Communication Systems: Ideal for up/down conversion in base stations, point-to-point radios, and multi-band transceivers requiring wideband modulation capabilities and low distortion.
- Radar Systems: Suitable for Doppler and pulse radar signal generation, benefiting from its low phase noise and high linearity to improve target detection accuracy.
- Test and Measurement Equipment: Provides precise modulation and frequency translation in signal generators and analyzers, enhancing test signal fidelity.
- Satellite and Aerospace Communications: Supports compact, low-power RF front ends operating in harsh environments due to its wide temperature range and robust design.
ADRF5347BCCZN Brand Info
The ADRF5347BCCZN is a product from Analog Devices, a global leader in high-performance analog, mixed-signal, and RF integrated circuits. This model reflects the company??s commitment to delivering innovative RF solutions that combine precision and reliability. Designed for engineers who demand accuracy and efficiency in signal modulation, the ADRF5347BCCZN exemplifies Analog Devices?? expertise in advancing communication and radar technology platforms.
FAQ
What frequency ranges does the ADRF5347BCCZN cover for RF and LO inputs?
The device supports both RF output and LO input frequencies spanning from 400 MHz to
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