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| SpectraFoo Complete Additional Features | |||||||||||||||||||||||||||||||||||||||||||||
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SpectraFoo has been designed to provide all of the tools you need for a powerful suite of digital meters, with all of the resolution of hardware meters at a fraction of the price. With more than 15 individual metering tools, SpectraFoo gives you all of the information you need to analyze and prepare your audio, for production, performance, mastering, or broadcast. SpectraFoo Complete was created for live sound engineers and mixing engineers. Including tools to measure your acoustic environment or verify the behavior of your external digital devices, SpectraFoo Complete provides the following additions to SpectraFoo: Code-Level Metering:
For live sound, equipment testing, or any application where you need to analyze the characteristics of acoustical and electrical audio systems, SpectraFoo Complete's built in transfer function display shows you the relative power and phase response between the left and right channels. Using Metric Halo's Music Based Measurement, the source signal is the input to some audio processing arrangement and the response signal is the measured output of the system, making music your “test tone”. SpectraFoo uses the source signal as a point of reference and the transfer function display shows the differences in amplitude and phase between the source and response as function of frequency. This allows you to measure the properties of audio processing systems, including systems that contain acoustic elements. You can determine the amplitude and phase response of an equalizer in the presence of musical signal as easily as measuring the sound coloration of an acoustic space. SpectraFoo provides a Delay Detection Feature to properly measure the power and phase of the response signal relative to the source signal, as the source signal must be delayed to time-align it with the response signal. The delay finder records a segment of both signals and computes the correlation of the signals with each other. By moving the cursor to the largest correlation of the two signals, you set the system delay and compensate for the measurement delay, timealigning the two signals.
The transfer function data is displayed in two different panels:
The power panel displays the relative power between the response signal and the source signal as a function of frequency. The relative power curve is drawn in green. The vertical calibration is in units of dBr (decibels relative). The horizontal calibration is in units of frequency (Hz). The power panel also displays the coherence of the measurement as a function of frequency.
The phase panel shows the relative phase between the response and source signals. The vertical
Record selections of audio into the computer’s RAM and perform incredibly detailed non-realtime analysis. All captures are referenced to the timecode of the source material. Captures may be initiated manually or can be triggered automatically, either with a levelbased trigger or a timebased trigger. All recording is controlled and initiated by three basic capture modes that you may use. 1. Manual 2. Timecode-based autopunch 3. Level-based autopunch.
When Data Slicing is enabled, the realtime instruments display the data which lies underneath the current position of the cursor. If you drag the cursor around in the overview window, the realtime instruments will continuously update to reflect the current cursor position. If you replay the capture, the realtime rack will continuously update in sync with the playback. |
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Audio professionals are using SpectraFoo every day to solve real world problems. Whether you have to match the EQ of two different tracks, analyze a synthetic sound to match an original sample, or tune a room, SpectraFoo will help you get it done faster and better. You can use Foo in tracking, recording, mixing and mastering sessions as well as during the setup and mixing of live shows.
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