$ 1,470.07 Original price was: $ 1,470.07.$ 1,399.79Current price is: $ 1,399.79.
The EDI Input option is a versatile add-on designed for audio analyzers, enabling seamless integration into broadcast and DAB systems. This module supports precise monitoring and testing in off-air environments, making it an essential tool for professionals handling transmission and reception equipment. By incorporating the EDI Input option into your setup, you gain reliable data input capabilities that streamline workflows and ensure accurate signal analysis across various audio testing scenarios.
This input module is engineered to handle diverse audio signals with high fidelity, providing broadcasters and technicians with tools to maintain quality in DAB analyzers and receivers. It facilitates efficient off-air monitoring by converting external data into usable formats for your existing audio analyzer equipment, reducing setup time and enhancing overall system performance.
The EDI Input option supports a frequency response of 20 Hz to 20 kHz (±0.1 dB) and a signal-to-noise ratio exceeding 100 dB, making it suitable for demanding broadcast transmission tasks. It accommodates input levels from -10 dBV to +24 dBu, providing flexibility for various receiver and analyzer configurations.
Built with rugged construction for reliable use in field and studio settings, this option features ESD protection and operates within a wide temperature range of 0°C to 50°C. It enhances DAB equipment by enabling precise analysis of ensemble signals, helping users identify and resolve issues in real-world off-air scenarios.
Investing in the EDI Input option delivers tangible value by improving the accuracy of your audio testing processes. For teams working with DAB analyzers and off-air monitors, it minimizes errors in signal evaluation, leading to more efficient troubleshooting and higher-quality broadcasts. This module empowers you to maintain compliance with industry standards while optimizing your transmission equipment, ultimately supporting smoother operations in dynamic audio environments.