Naroote
Phase Blocked Loop Synthesizer Module 25MHz-6000MHz Frequency to Communicate Test Equipment

Product Details

Excellent Phase Noise And Spurious Performance: The wideband phase lock loop module showcases industry leading phase noise (<-170 dBc/Hz) and spurious performance across all frequencies. This ensures minimal blocking effects and enhanced sensitivity for receivers and transmitter frequency purity, making it a good choice for sophisticated communicating systems where clarity is paramount. High Performance Frequency Generation: With an integrated VCO covering a base frequency range of 1500 MHz to 3000 MHz, the source phase locked loop module can generate output frequencies from 25 MHz to an impressive 6000 MHz. This wide operational range makes it suitable for a variety of applications, from RF mixers to frequency data converters. Versatile Application Suitability: The phase locked loop module is designed to cater to a wide array of applications such as cellular communicating infrastructure, for WiMax, WiFi, communicating test equipment, cable TV devices, and as an alternative to direct digital synthesis (DDS). Its ability to function as a tunable reference voltage source with low spurious performance further enhances its utility in accurate environments, making it an indispensable tool for RF engineers and system develop Flexible Output Power Control: The fractional N divider module includes RF output power control ranging from 0 to 9 dB in 3 dB steps, providing users with the flexibility to tailor strength according to specific needs. Additionally, an output mute feature allows designers to temporarily silence the output, which is particularly useful during testing or calibration processes. Advanced Loop Bandwidth Control: Featuring an integrated phase detector (PD) and modulator, the phase locked loop frequency synthesizer module can operate up to 100 MHz, facilitating a wider loop bandwidth and excellent spectrum performance. This capability allows engineers to optimize their designs for rapid acquisition and accuracy in frequency management.