Test & Measurement: 2.7-GHz PXI RF Generator Card Enhances Vector Signal Generation

June 7, 2004
A complete platform for accelerating RF product design is now available from the 2.7-GHz PXI-5670 RF vector signal generator card. The module offers 16-bit resolution arbitrary waveforms generation at 100 Msamples/s (400 Msamples/s interpolated), up...

A complete platform for accelerating RF product design is now available from the 2.7-GHz PXI-5670 RF vector signal generator card. The module offers 16-bit resolution arbitrary waveforms generation at 100 Msamples/s (400 Msamples/s interpolated), up to 256 Mbytes of memory, and a 22-MHz real-time bandwidth. Modulation formats include amplitude shift keying (ASK), frequency shift keying (FSK), modulation shift keying (MSK), phase shift keying (FSK) and quadrature amplitude modulation (QAM). The module is available in 8-, 32-, and 256-Mbyte versions with respective pricing of $12,995, $14,495, and $17,995. Availability is from stock.

National Instrumentswww.ni.com

About the Author

Roger Allan

Roger Allan is an electronics journalism veteran, and served as Electronic Design's Executive Editor for 15 of those years. He has covered just about every technology beat from semiconductors, components, packaging and power devices, to communications, test and measurement, automotive electronics, robotics, medical electronics, military electronics, robotics, and industrial electronics. His specialties include MEMS and nanoelectronics technologies. He is a contributor to the McGraw Hill Annual Encyclopedia of Science and Technology. He is also a Life Senior Member of the IEEE and holds a BSEE from New York University's School of Engineering and Science. Roger has worked for major electronics magazines besides Electronic Design, including the IEEE Spectrum, Electronics, EDN, Electronic Products, and the British New Scientist. He also has working experience in the electronics industry as a design engineer in filters, power supplies and control systems.

After his retirement from Electronic Design Magazine, He has been extensively contributing articles for Penton’s Electronic Design, Power Electronics Technology, Energy Efficiency and Technology (EE&T) and Microwaves RF Magazine, covering all of the aforementioned electronics segments as well as energy efficiency, harvesting and related technologies. He has also contributed articles to other electronics technology magazines worldwide.

He is a “jack of all trades and a master in leading-edge technologies” like MEMS, nanolectronics, autonomous vehicles, artificial intelligence, military electronics, biometrics, implantable medical devices, and energy harvesting and related technologies.

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