Model equipped with a tracking generator
- A handheld signal analyzer with real-time and sweep modes. - By incorporating both real-time mode using Fast Fourier Transform (FFT) and traditional sweep mode, it is possible to utilize the advantages of both directions. ■ Real-Time Mode The real-time mode is optimal for capturing instantaneous spectral events, making it ideal for noise measurement and analyzing transient phenomena. ■ Measurement Frequency 20kHz to 8.5GHz ■ Sweep Mode Minimum RBW 300Hz ■ Average Noise Level - Representative value: -162dBm/Hz - Real-time mode: -140dBm at cf 1GHz, span 20kHz - Sweep mode: -129dBm at cf 1GHz, RBW 300Hz
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■Real-Time Mode The real-time method is optimal for capturing spectra that occur instantaneously, making it ideal for noise measurement and analyzing transient phenomena. ■Measurement Frequency 20kHz to 8.5GHz ■Sweep Mode Minimum RBW 300Hz ■Average Noise Level - Representative value: -162dBm/Hz - Real-time mode: -140dBm at cf 1GHz, span 20kHz - Sweep mode: -129dBm at cf 1GHz, RBW 300Hz
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Applications/Examples of results
- Spectral analysis of non-stationary signals such as transient signals, burst signals, or noise is possible. - Time domain analysis of power vs. time, frequency vs. time, phase vs. time, IQ vs. time, and Q vs. I is possible. - The trigger function is well-equipped, allowing for reliable observation of spectra that occur infrequently. - Since the data is separated into I and Q, modulation analysis of complex signals such as phase-modulated waves is possible.
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● An independent, purely domestic advanced development company in the high-frequency (RF) field ● One-stop development, manufacturing, sales, and service business for electronic measuring instruments, information communication devices, and environmental-related equipment ● A worldwide sales network through 18 domestic agents and 19 overseas agents