Revolutionizing Signal Generation with Spectrum’s New 96xx Series DDS Generators
The landscape of signal generation is evolving with the introduction of the 96xx Series from Spectrum Instrumentation, capable of generating up to 50 sine wave cores from a single output channel. The innovative technology behind these Direct Digital Synthesis (DDS) generators allows users to produce and independently control a plethora of sinusoidal signals with unmatched precision and flexibility. This article explores their capabilities, applications, and the impact they have across various technology sectors.
Advanced signal generation technology
Introduction to the 96xx Series
The 96xx Series represents a leap forward in DDS technology, offering users the ability to generate 50 sine wave carriers across a wide frequency range of 0 to 200 MHz. This exceptional feature makes them the go-to solution for applications in industries such as biomedicine, telecommunications, semiconductor testing, and quantum research. DDS technology is lauded for producing high-purity signals and enables quick switching between frequencies, giving engineers and researchers an innovative tool for their signal generation needs.
Versatile Synchronization Options
Spectrum’s new series includes twelve models available in three form factors: PCIe cards, PXIe modules, and LXI/Ethernet instruments. Each PCIe or PXIe card can provide up to 50 frequency-variable tones with remarkably low phase noise, and can be configured with up to four channels. Meanwhile, the standalone Ethernet instruments cater to larger setups by offering between two and 24 channels. For systems requiring even greater output, the Netbox instruments can deliver up to 300 sine carriers, while multiple cards can be synchronized through a dedicated Star-Hub module, enabling configurations of up to 400 tones.
“The flexibility and capability of the 96xx Series allows users to meet demanding signal specifications without hassle.”
Rapid Parameter Adjustments
What truly sets the 96xx series apart is the speed with which it can alter the parameters of a signal carrier. Changes to frequency, amplitude, and phase can be executed instantly via user input or through predefined sequences. With significant integrated memory, the generators store millions of DDS commands, ensuring that updates can be triggered either by an internal timer or immediately upon command without introducing jitter or glitches. The temporal resolution for parameter changes stands at an impressive 6.4 nanoseconds, making it an invaluable resource for precision applications.
Quick adjustment capabilities for high-precision applications
Broad Applications Across Industries
The DDS generators in the 96xx series offer a straightforward method to produce sine sequences, frequency sweeps, and finely-tuned references. These capabilities find utility in diverse applications such as industrial operations, medical imaging, and networking analysis, as well as in communication technologies where data is encoded onto a carrier through phase and frequency modulation. Additionally, they facilitate the control of lasers using acousto-optic devices (AODs) and acousto-optic modulators (AOMs), commonly employed in various quantum experiments.
Availability and Support
The 96xx Series DDS generators are now available for purchase, backed by a five-year warranty. Buyers will also benefit from complimentary software and firmware updates throughout the product’s lifespan, alongside direct customer support from the engineering team behind the technology. This commitment to ongoing support reflects Spectrum Instrumentation’s dedication to user satisfaction and product excellence.
Conclusion
With their innovative design and high-performance capabilities, the 96xx Series DDS Generators position themselves as a frontrunner in the field of signal generation. Their ability to create complex sinusoidal signals with ultra-fast parameters adjustments makes them indispensable in cutting-edge technological applications. As they become widely adopted, we can expect to see significant advancements in various scientific and industrial domains.
For more details, visit Spectrum Instrumentation.