ADRF5024BCCZN-R7 Overview
The ADRF5024BCCZN-R7 is a high-performance, low-noise, digitally controlled RF/IF switch designed for signal routing in communication systems. Operating across a wide frequency range from 10 MHz to 6 GHz, it supports broadband applications requiring precise signal path selection with minimal insertion loss and high isolation. The device features a single-pole, four-throw (SP4T) configuration, enabling efficient switching among four RF paths with fast switching speeds. Its low power consumption and robust CMOS control interface make it ideal for modern RF front-end designs. For detailed sourcing and technical support, visit the Fabricant de circuits intégrés.
ADRF5024BCCZN-R7 Technical Specifications
Paramètres | Spécifications |
---|---|
Gamme de fréquences | 10 MHz to 6 GHz |
Switch Configuration | SP4T (Single-Pole, Four-Throw) |
Insertion Loss | Typically 0.8 dB at 2 GHz |
Isolation | Minimum 35 dB at 2 GHz |
Input Power (continuous) | +30 dBm |
Interface de contrôle | CMOS compatible digital control |
Tension d'alimentation | +3.3 V typical |
Paquet | 16-lead LFCSP, RoHS compliant |
Switching Speed | 20 ns typical |
ADRF5024BCCZN-R7 Key Features
- Large couverture de fréquences : Supports 10 MHz to 6 GHz enabling versatile use in RF and IF signal routing across multiple communication bands.
- Low Insertion Loss: Minimizes signal attenuation, preserving signal integrity critical for sensitive RF applications.
- Isolation élevée : Provides excellent port-to-port isolation, reducing crosstalk and improving overall system performance.
- Vitesse de commutation rapide : Enables rapid signal path changes within 20 ns, supporting dynamic RF front-end reconfiguration.
- CMOS Digital Control: Ensures easy integration with standard microcontrollers and digital systems for precise switch control.
- High Input Power Handling: Accommodates up to +30 dBm continuous input power, suitable for robust RF environments.
- Compact Package: The 16-lead LFCSP reduces PCB footprint and supports automated assembly processes.
ADRF5024BCCZN-R7 Advantages vs Typical Alternatives
This RF switch offers superior sensitivity and low insertion loss compared to typical alternatives, enhancing signal quality in demanding applications. Its broad frequency range and high isolation ensure reliable operation across diverse bands. Additionally, the CMOS-compatible digital control simplifies system integration while its fast switching speed and high input power tolerance provide enhanced flexibility and reliability in complex RF front ends.
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Applications typiques
- Wireless infrastructure equipment such as base stations and repeaters, requiring reliable RF path switching across multiple frequency bands.
- Test and measurement instruments where precise, low-loss RF signal routing is critical.
- Satellite communication systems demanding high isolation and low insertion loss in signal switching.
- Military and aerospace RF systems that benefit from robust power handling and fast switching capabilities.
ADRF5024BCCZN-R7 Brand Info
The ADRF5024BCCZN-R7 is a product from a leading semiconductor manufacturer specializing in high-performance analog and RF devices. This switch exemplifies the brand??s commitment to delivering reliable, low-noise, and highly integrated solutions tailored for advanced communication and industrial applications. Designed with rigorous quality standards, it supports engineers in achieving superior system performance and efficiency.
FAQ
What is the frequency range supported by this RF switch?
The device operates over a wide frequency range from 10 MHz up to 6 GHz, making it suitable for various RF and IF signal routing applications across multiple wireless communication bands.
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How does the insertion loss affect the performance of this switch?
Insertion loss refers to the signal attenuation caused by the switch when the RF path is active. With a typical insertion loss of 0.8 dB at 2 GHz, this device preserves signal strength effectively, which is critical for maintaining high sensitivity and signal integrity in RF systems.