ADRF5347BCCZN-RL Overview
The ADRF5347BCCZN-RL is a highly integrated wideband frequency synthesizer designed for RF signal generation applications. Combining a low phase noise PLL with a fractional-N synthesizer, it supports frequencies up to 6 GHz, making it ideal for modern communication systems requiring precise frequency control and low spurious emissions. This device features a compact 32-lead LFCSP package, ensuring ease of integration in space-constrained designs. Engineers and sourcing specialists will benefit from its wide operating voltage range and flexible interface, enabling seamless implementation across various industrial and wireless infrastructures. For detailed specifications and purchasing options, visit IC 製造商.
ADRF5347BCCZN-RL Technical Specifications
參數 | 價值 |
---|---|
頻率範圍 | 23.5 MHz to 6 GHz |
Phase Noise | -111 dBc/Hz at 10 kHz offset (typical) |
電源電壓 | 3.0 V 至 3.6 V |
耗電量 | Approx. 120 mW |
包裝類型 | 32-Lead LFCSP |
輸出類型 | CMOS/CMOS-compatible |
Programming Interface | 3-Wire SPI compatible |
操作溫度 | -40°C 至 +85°C |
Spurious Emissions | -70 dBc typical |
ADRF5347BCCZN-RL Key Features
- 寬廣的頻率涵蓋範圍: Operates from 23.5 MHz to 6 GHz, enabling versatile use across multiple RF applications including cellular, Wi-Fi, and test equipment.
- Low Phase Noise Performance: Delivers phase noise as low as -111 dBc/Hz at a 10 kHz offset, improving signal integrity and reducing system noise floor.
- Compact and Robust Package: The 32-lead LFCSP offers a small footprint and excellent thermal performance, facilitating integration in high-density boards.
- Flexible SPI Interface: Simplifies device programming and frequency tuning, enhancing design flexibility and reducing development time.
ADRF5347BCCZN-RL Advantages vs Typical Alternatives
This synthesizer provides superior phase noise and wide frequency coverage compared to typical alternatives in the same class, ensuring higher signal purity and system reliability. Its low power consumption and integrated fractional-N architecture reduce overall system complexity and enhance efficiency. The device??s robust packaging and operating temperature range make it ideal for demanding industrial and communication environments.
暢銷產品
典型應用
- Wireless Communication Infrastructure: Ideal for base stations and repeaters requiring stable and low-noise frequency generation up to 6 GHz.
- Test and Measurement Equipment: Enables precise frequency synthesis for RF signal generators and analyzers.
- Military and Aerospace Systems: Suitable for secure and reliable RF signal tuning in harsh environmental conditions.
- Broadband Radio Systems: Supports wideband operation for multi-standard radios and advanced wireless devices.
ADRF5347BCCZN-RL Brand Info
The ADRF5347BCCZN-RL is part of a comprehensive portfolio of high-performance frequency synthesizers designed by a leading semiconductor manufacturer specializing in RF and microwave components. Known for stringent quality standards and innovative design, this product reflects the brand??s commitment to delivering precision, reliability, and ease of integration in industrial and communication systems worldwide.
常見問題
What is the maximum frequency supported by the ADRF5347BCCZN-RL?
This device supports frequencies up to 6 GHz, making it suitable for a wide range of RF applications including cellular and broadband communication systems.
精選產品
How does the phase noise performance impact system design?
Low phase noise improves signal clarity by reducing jitter and unwanted sidebands, which enhances overall system sensitivity and reliability in communication and measurement applications.
What type of interface is used to program the synthesizer?
The device uses a 3-wire SPI-compatible interface, allowing straightforward frequency setting and control through standard microcontrollers or DSPs.
聯絡我們
Can the ADRF5347BCCZN-RL operate in harsh industrial environments?
Yes, it is rated for an operating temperature range from -40??C to +85??C, making it suitable for industrial and outdoor applications with demanding temperature conditions.
What package does the device come in, and how does it affect integration?
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