RigExpert AA-230 - Antenna Analyzer (0.3 to 230 MHz)
RigExpert AA-230 is a powerful, laboratory grade antenna analyzer designed for testing, checking, tuning or repairing antennas and antenna feedlines in 0.3 to 230 MHz range.
Mainly, these are SWR (Standing Wave Ratio) and impedance measurement instruments (vector impedance analyzers).
Easy-to use measurement modes, as well as additional features such as memory storage and connection to a personal computer, make RigExpert analyzers attractive for professionals and hobbyists. It is quite important that graphical display of various parameters over a wide frequency range is a key feature of these analyzers which significantly reduces the time required to adjust an antenna.
The new MultiSWR and SWR2Air modes are unique for these antenna analyzers. Please refer to SWR Modes tab.
The following tasks are easily accomplished by using RigExpert AA-230:
- Rapid check-out of an antenna
- Tuning an antenna to resonance
- Antenna SWR and impedance measurement and comparison before and after specific event (rain, hurricane, etc.)
- Making coaxial lines or measuring their parameters
- Cable testing and fault location
- Measuring capacitance or inductance of reactive loads
For the latest software updates, please refer to the manufacturer's website
The following items are included with each RigExpert AA-230 order:
- RigExpert AA-230 analyzer
- Battery
- Soft case with straps
- Battery charger
- USB cable
- User's manual
- CD with drivers and software
RigExpert AA-230 Specifications
Frequency range: AA-54: 0.3 to 230 MHz
Display modes:
- SWR at single frequency
- SWR, R, X, Z, L, C at single frequency
- SWR graph
- R, X graph
Single- and multi-frequency measurement:
- Frequency resolution: 1 kHz
- SWR only mode: easily-readable bar
- SWR range: 1…10
- SWR display for: AA-230: 50 and 75 Ohm systems;
- R, X range: 0…1000, -1000…1000 Ohm
SWR and R, X graphs:
- 100 points plot
- Sweep width: 0.01…230 MHz
- Frequency resolution: 1 kHz
- SWR range: 1…10
- SWR display for: AA-230: 50 and 75 Ohm systems;
- R, X range: 0…200, -200…200 Ohm
- Memories: AA-230: 100 memories to store and recall graphs;
- Presets for radio amateur bands
RF output:
- Connector type: UHF
- Power: typ. 10 dBm
Power:
- 4.8V, 1800 mA•h, Ni-MH battery
- Max. 3 hours of continuous measurement
- Max. 2 days in stand-by mode
- External 9...14V, 500 mA charger
- Full charge time: 10...12 hours
Interface:
- 128x64 graphical LCD with backlit
- 6x3 keys on the water-proof keypad
- Multilingual menus and help screens
- USB connection to a personal computer
Dimensions: 22•10•5.5 cm
Operating temperature: 0…40 °C
Weight: 650g
MultiSWR™ and SWR2Air™ modes
MultiSWR mode
RigExpert Antenna Analyzers have a unique ability to display SWR for up to five different frequencies at a time.

You may use this feature to tune multi-band antennas. Use the up and down cursor keys to select a frequency to be set or changed. Press the 0 key to switch between SWR bars and numerical representation of these parameters.
SWR2Air mode [AA-230/AA-230PRO only]
RigExpert Antenna Analyzers present a new SWR2Air mode which is designed to help in adjusting antennas connected via long cables.
This usually involves two persons; one adjusting the antenna and the other shouting out the SWR value as it changes at the far end of the feedline.
There is an easier way to do the same job by using the SWR2Air mode. The result of SWR measurement is transmitted on a user specified frequency where it can be heard with a portable HF or VHF FM radio.
The length of audio signal coming from the loudspeaker of the portable radio depends on the value of measured SWR.
The SWR2Air mode is activated by pressing the F + OK combination in the SWR measurement screen. F + 2 allows setting the frequency to tune the receiver to.
How it works?
Structure diagram
The structure diagram of the RigExpert AA-230 Antenna Analyzer is located below:

The "brain" of the analyzer is Atmel ATMEGA128 8-bit RISC microcontroller. It controls the dual-channel AD9958 DDS running at 500 MHz and generating two sinusoidal signals with 90° shift. Both signals are low-pass filtered. The first channel is fed to the amplifier to get the +10 dBm signal at the antenna connector. Resistive brigde was chosen to measure parameters of a load because of its simplicity and good frequency response. The switch commutates two outputs of the bridge. The detector, AD8302, measures the manitude ratio and the phase difference at its two inputs. The resulting signals are then fed into the 16-bit analog-to-digital converter for further processing.
The 128x64 graphical LCD and the 6x3 keys keypad are connected directly to the CPU. Also, it is equipped with 512K of external Flash memory to store measurement results. The USB interface chip allows connecting the analyzer to the PC.
The power circuits are responsible for generating a number of voltage levels needed for the rest of the analyzer. It also charges the built-in battery when the external 12V DC source is applied.
Close look at the bridge
This is a diagram of the resistive bridge and its connection to the detector:

The switch which is controlled by the CPU feeds the signal from the certain side of the bridge to the detector chip. When the load is totally active and its resistance is 50 Ω, the bridge is balanced and the switch outputs the same signal in both positions. This eliminates the need of calibration of the analyzer, also giving very good precision near SWR=1.
The detector compares the output of the switch with a reference 90° signal. This avoids "dead zones" in the phase characteristics of the AD8302 chip. The outputs of the chip are connected to the analog-to-digital converters which are built into the microcontroller.
Connector issue
For the good performance at high frequencies (above 50 MHz) is it important to built almost an ideal, symmetrical bridge. However, the load is plugged into the analyzer through the connector (non-ideal electronic part), which slightly unbalances the bridge. To compensate parameters of the connector, a simple model was chosen:

The microcontroller takes into account tiny capacitance and inductance of the connector, correcting the result of each measurement.
| Function | AA-30 | AA-54 | AA-230 | AA-230PRO | AA-250 | AA-1000 |
| Frequency range | 0.1-30 MHz | 0.1-54 MHz | 0.3-230 MHz | 0.3-230 MHz | 1-520 MHz | 0.1-1000 MHz |
| Frequency entry step size | 1 kHz | 1 kHz | 1 kHz | 1 kHz | 1 kHz | 1 kHz |
| Min. sweep range | 10 kHz | 10 kHz | 10 kHz | 10 kHz | 100 kHz | 10 kHz |
| SWR2AIR™ mode | - | - | + | + | - | - |
| MultiSWR™ mode | - | + | + | + | + | + |
| Reactance sign measurement | + | + | + | + | - | + |
| Antenna connector type | UHF (SO-239) | UHF (SO-239) | UHF (SO-239) | UHF (SO-239) | N | N |
| Output power | +13 dBm | +13 dBm | +10 dBm | +10 dBm | +5 dBm | -10 dBm |
| Output amplifier | CMOS logic chip | CMOS logic chip | Transistor stage with additional protection | Transistor stage with additional protection | Transistor stage with additional protection | LVDS logic chip |
| Output signal shape | rectangular | rectangular | sinusoidal | sinusoidal | sinusoidal | rectangular |
| Reference impedance for SWR measurement | 50, 75 Ohm | 50, 75 Ohm | 25, 50, 75, 100 Ohm | 25, 50, 75, 100 Ohm | 50 Ohm | 25, 50, 75, 100 Ohm |
| Analog-to-digital converter | 10-bit | 10-bit | 12-bit | 16-bit | 16-bit | 16-bit |
| Batteries | two 1.5V alcaline or two 1.2V Ni-MH, AA size | two 1.5V alcaline or two 1.2V Ni-MH, AA size | removable 4.8V Ni-MH battery pack | removable 4.8V Ni-MH battery pack | removable 4.8V Ni-MH battery pack | three 1.5V alcaline or three 1.2V Ni-MH, AA size |
| Battery voltage sensor | + | + | + | + | + | + |
| Built-in battery charger | - | - | + | + | + | - |
| Operation with external power supply (without battery) | from USB | from USB | ext. 9...12V supply | ext. 9...12V supply | ext. 9...12V supply | from USB |
| LCD | Monochrome, 128x64 | Monochrome, 128x64 | Monochrome, 128x64 | Monochrome, 128x64 | Monochrome, 128x64 | Color TFT, 320x240 |
| Time Domain Reflectometer mode | - | - | Only with AntScope software on the PC | Built-in | - | Built-in |
| Flash memory for storing graphs | - | 100 memory slots | 100 memory slots | 90 R/X or SWR memory slots, 10 TDR memory slots | 100 memory slots | 90 R/X or SWR memory slots, 10 TDR memory slots |
| Multilingual support | - (English only) | + | + | + | + | + |
| Presets for radio amateur bands | - | + | + | + | + | + |







