ED
Just to be clear, we are talking about sensing the current at the ground node to determine if the spark has started, not voltage as you've stated. So we need to look at how current can be measured. My previous suggestion was to use an inductive pickup for this purpose, and you correctly determined that would only sense the beginning (and end) of the flashover. Your diodes actually do provide an indication of the current in the ground leg per the equation Vd = Vt*ln(Id/Is) where Vt = 25mv at root temp and Is is a parameter of the diodes, typically not specified and usually measured. This equation will vary greatly over temperature. I can think of two other ways to measure current. One way is using a shunt as shown in some of Max's posts. Alternatively, the shunt can be just a low value resistor. This would be simple and probably give acceptable results. The other way is to use a hall effect device. Keep in mind the current will be very low, and so whatever method used needs to have good resolution down to the mA range.
I really don't know anything about EDM and so I'm out of my league. But this is just my 2c.
shortbus said:If I was using a micro controller (which I'm not) a pulse would probably do. But a steady voltage to a comparator will be used to keep SW3 in my schematic turned off during the on time sequence of events, to keep the spark ignition voltage from reverse biasing the capacitor discharge into the gap. Or at least that's what my thinking is.
Just to be clear, we are talking about sensing the current at the ground node to determine if the spark has started, not voltage as you've stated. So we need to look at how current can be measured. My previous suggestion was to use an inductive pickup for this purpose, and you correctly determined that would only sense the beginning (and end) of the flashover. Your diodes actually do provide an indication of the current in the ground leg per the equation Vd = Vt*ln(Id/Is) where Vt = 25mv at root temp and Is is a parameter of the diodes, typically not specified and usually measured. This equation will vary greatly over temperature. I can think of two other ways to measure current. One way is using a shunt as shown in some of Max's posts. Alternatively, the shunt can be just a low value resistor. This would be simple and probably give acceptable results. The other way is to use a hall effect device. Keep in mind the current will be very low, and so whatever method used needs to have good resolution down to the mA range.
I really don't know anything about EDM and so I'm out of my league. But this is just my 2c.