Tensor VNA åbner nye muligheder inden for RF og mikrobølge netværksanalyse
Anritsus nye Tensor VNA (Vector Network Analyzer) (VNA) repræsenterer på flere niveauer et markant fremskridt, når det gælder måling og analyse af de mest komplekse RF og mikrobølge netværk (in english).
Anritsu announces the launch of its new Tensor Vector Network Analyzer (VNA) at the IEEE MTT S International Microwave Symposium (IMS) 2026, taking place June 7–12, in Boston, Massachusetts.
The Tensor VNA represents a major advancement in RF and microwave network analysis, delivering modern, scalable architecture designed to support the most complete and demanding measurements like Amplifiers, Filters, Frequency Convertors (Mixers – Single Stage and Multistage), Opto-electronics, and other advanced VNA measurements.
VNA is engineered to meet the evolving requirements for aerospace and defense, semiconductor, active and passive device measurements, signal integrity, research and development, and millimeter wave/waveguide system development.
- The introduction of the Tensor VNA marks a major milestone in Anritsu’s network analyzer roadmap. As device performance and system complexity continue to increase, engineers need tools that deliver trusted results while adapting to rapidly changing test requirements. Tensor was designed to do exactly that, says Navneet Kataria, Anritsu Marketing Director.
Key differentiators and platform highlights
The Tensor VNA has been designed from the ground up to address measurement complexity, speed, and accuracy challenges faced by today’s engineers. Key highlights include:
• 1 source-per-port architecture, which means 4 sources for a 4 port VNA, which not only enables multiple measurements with the same setup (multiple amplifiers/mixers/multistage mixers), but also provides the industry’s best specifications related to output power and dynamic range, etc.
• Inbuilt AI engine that helps in making complex measurements in an easy and intuitive fashion. Tensor VNA works as a companion with the user rather than just being a measurement tool. It helps users with suggestions and understands human language to make it a user-friendly environment.
• Ultrafast sweep speed and data transfer rates with a modern software architecture to support complex measurements to be made with ease.
• Most advanced hardware for a next generation VNA platform hardware optimized for high dynamic range, low trace noise, and repeatable measurement performance across wide frequency spans. The only VNA in the world that offers 1 source-per-port as a default, so that customers can use even 2 port VNAs to make amplifier two tone measurements or with a 4 port VNA can make 2-2 tone amplifier/mixer measurements.
The hardware also comes with an option to have the 2nd local oscillator (LO) which provides vector mixer measurements (phase, group delay, etc.).
• Scalable, flexible configuration with NO additional test sets or hardware for supporting various configuration. Supports a broad range of test configurations to accommodate diverse applications, from device level characterization to complex multi-port system measurements, banded waveguide measurements to high-speed signal integrity applications
High frequency and mmWave readiness
Tensor VNA can support high frequencies from 54 GHz to 220 GHz with Anritsu’s small compact mmWave modules and at the same time perform waveguide banded measurements with most third party vendors for higher frequencies up to 1.1 THz.
An intuitive operating environment and automation capabilities streamline test setup, analysis, and integration into existing measurement workflows.