Hi everyone,
I am a very inexperienced engineer out of college and I have a problem that I'm sure this corner of the internet can help me out with. The lab that I work in has experiments that result in sources that can be approximated as high voltage (200V+), ultra high impedance (1GOhm+) sources. I can't give many more details on exactly what the experiments are, unfortunately.
We are currently using these sources to charge nanoferad range capacitors, and we would like to minimize leakage current as much as possible. We also need to measure the voltage across these capacitors repeatedly. Currently, we have an electrometer that can easily handle these measurements without loading the circuit, but our Keithley is limited to 200V max. Ideally, we could manage at least 600V. Also, we want to duplicate this testbed without buying another electrometer, so cost is a pretty limiting factor as well.
My first solution was to create a 10 Teraohm voltage divider using surface mount 500G resistors, since they are cheap compared to other options and ultimately the precision of this system doesn't need to be incredibly high. I attached a picture of the PCB below, I did not include a ground plane and maximized distance between traces to lower leakage resistance.
The problem that I'm having now is that using our electrometer at the 0.1x point on the voltage divider takes ~10 minutes to reach the value we expect. I understand that the keithley has the ability to reduce input capacitance using the guard functionality, but ideally we would be able to move away from the electrometer entirely, and instead rely on something we could ultimately read with a microcontroller. Anyways, my question to you all is whether or not this is the best approach at all, and what I can do to improve the setup.
I've seen some non-contact options that seem attractive, but they seem to mostly require very high voltages and don't seem to have good automated control, which is another requirement for us.