rafik said:
What equipment would you recommend for RF development in general.
For UHF and microwave development you can easily spend US$100k on test gear, but you can usually get away with less than 1% of that if you know what you actually need to measure. To cut the cost of test equipment requires access to RF engineering experience. The "black art" of microwave design and testing becomes a "science" as you gain experience. If you apply a sine wave at one end of a Zo trace and terminate the far end with a Zo matching resistor, then you will have no termination mismatch and will not get energy reflected from the far end termination. But if your track has the wrong impedance, you will get some energy reflected.
A directional coupler samples power on an RF line. It separates the direction of energy propagation, so it can be used to measure reflected energy.
See;
http://en.wikipedia.org/wiki/Power_dividers_and_directional_couplers
By feeding an RF oscillator signal through a directional coupler and a short coaxial cable link to the near end of your trace, (terminated with Zo at the far end), you can measure the reflected signal. Sweeping across the frequency band of interest will test the level of reflected energy. Your system can be calibrated with a termination resistor alone at the end of your coaxial cable.
For your 2.4GHz RF 50 ohm input, there will be a connector, trace and terminating load. That can be tested by simply “looking” into that port with the sweep generator through a matched directional coupler.
There are companies such as Minicircuits that make RF modules including VCOs and couplers.
http://www.minicircuits.com/homepage/homepage.html
http://www.minicircuits.com/products/Oscillators.shtml
http://www.minicircuits.com/products/Couplers.shtml
Download guides from this page;
http://www.minicircuits.com/support/literature.html
Having a handful of modules will allow you to experiment and build your own test rigs for most manufacturing quality control situations.