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Rigol dsa815 tg spectrum analyzer
Rigol dsa815 tg spectrum analyzer












rigol dsa815 tg spectrum analyzer
  1. #RIGOL DSA815 TG SPECTRUM ANALYZER HOW TO#
  2. #RIGOL DSA815 TG SPECTRUM ANALYZER GENERATOR#
  3. #RIGOL DSA815 TG SPECTRUM ANALYZER FULL#

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rigol dsa815 tg spectrum analyzer

The bottom yellow trace is the XXX, the violet trace is the reference trace, and the green trace is return loss. Connect the device to be measured and press VSWR (soft key). Then press Meas Setup on the main keyboard and Cal Open. Press the Meas button on the main keyboard, then VSWR On (soft key). Be sure the device to be measured is disconnected from the IN coupler port. To use the VSWR measurement option, set the frequency limits as desired, then set the resolution bandwidth at 30 kHz, or so, for a better dynamic range. It’s just that the analyzer will read out VSWR directly. From the Mini-Circuits chart, we see this is equivalent to a VSWR of 1.29:1.įigure 3 – Measurement setup using the VSWR option is really the same as for the return loss measurement. By moving the marker to 130 MHz, we can read the return loss of 18.07 dB. Note, also, the primary (double) resonance about 108 and 130 MHz, as well as the odd-order resonances about 338, 561, 780, and 1,000 MHz. Just ignore the “minus” sign for purposes of this measurement. Note that classical “return loss” is a positive number, but is represented on the analyzer as a negative number. By using the Marker, you can measure both the resonant frequency and return loss.

rigol dsa815 tg spectrum analyzer

#RIGOL DSA815 TG SPECTRUM ANALYZER FULL#

I extended the telescoping antenna to its full height of 27 inches. In the example of Figure 1, I used a small square of aluminum foil to serve as a counterpoise for the monopole antenna being measured. Next, connect the device whose port is to be measured (antenna, etc.) to the IN port of the coupler and read off the return loss in dB directly on the screen. If you’d like to move this line down, use the Norm Ref Lvl and tuning knob to set this as desired. This will display a normalized (straight) line across the top of the screen at zero dB reference. Press TG on the main panel, then TG On in the soft keys, Normalize, Stor Ref, and Normalize On. Adjust resolution bandwidth to about 30 kHz, or so, for a better dynamic range. The Device to be measured will connect to the IN port of the coupler, but wait until after the normalization procedure to connect it.

#RIGOL DSA815 TG SPECTRUM ANALYZER GENERATOR#

Connect short coax cables between the CPL port to the DSA815 RF Input and the OUT port to the tracking generator Gen Output port. You’ll need a Mini-Circuits ZF-DC-5 20 dB coupler, or equivalent.

#RIGOL DSA815 TG SPECTRUM ANALYZER HOW TO#

I’ll explain how to use both methods.įigure 1 – Measurement setup for return loss. If you don’t have this option, you can alternatively measure return loss (RL) using just the tracking generator feature. If you’ve also ordered the VSWR option, the measurement will read out VSWR directly. In order to use the Rigol DSA815 to make these measurements, it must have the tracking generator option. This would usually be expressed as a VSWR of “1.3”. For example, an antenna may measure 1.3:1 at resonance. This article discusses how to use the Rigol DSA815 to make this measurement. For example, if an antenna measured a VSWR of 2:1 at a particular frequency, this could indicate an antenna impedance of either 100 or 25 Ohms (the impedance deviated from 50 Ohms by either twice or half). It is generally expressed a a ratio of the measured impedance to 50 Ohms. Voltage Standing Wave Ratio (VSWR) is a measurement of the impedance match of any RF component, subassembly, instrument in reference to a standard 50-Ohm resistive impedance.














Rigol dsa815 tg spectrum analyzer