Two 20w studio monitors

I know that woofer is 4inch 12-25w 8ohm and tweeter is 1 inch 12-25w 8ohm

In that case, I can only suggest a simple crossover circuit. It will divide the frequencies, but won't be the perfect match for the unknown drivers.

Would that be good for you?

One other question, how did you arrive at your requirement for a 2.8 kHz crossover frequency?

Oh! What about photos of the drivers?
 
In that case, I can only suggest a simple crossover circuit. It will divide the frequencies, but won't be the perfect match for the unknown drivers.

Would that be good for you?

One other question, how did you arrive at your requirement for a 2.8 kHz crossover frequency?

Oh! What about photos of the drivers?
I can take a photo but not today because im not home but i will post it as soon as possible. 2.8 khz was the highest frequency at which the woofer was still somehow loud. When I went higher it was much quieter

And also tweeter at that frequency was loud. Lower frequencies was quieter
 
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2.8 khz was the highest frequency at which the woofer was still somehow loud. When I went higher it was much quieter

It sounds like you could run the the woofer direct from the amplifier and simply put a high pass filter in front of the tweeter.

We just have make sure the tweeter is adequately protected from the low frequencies.

The circuit for the tweeter high pass filter is shown in the first attachment.

The capacitor (C) can be a bipolar (non-polar or NP) type of value 4.7 uF.

The inductor (L) can be an air-core type of value 0.60 mH.

If the tweeter turns out to be too loud, then put a 5W or 10W ceramic wire-wound resistor of value 1.0 to 2.2 ohms in front of the capacitor.

(If necessary, you can put a low pass filter in front of the woofer. Use the same L and C values, but arrange them as shown in the second attachment.)
 

Attachments

  • 2nd order tweeter filter.jpg
    2nd order tweeter filter.jpg
    8.4 KB · Views: 64
  • 2nd order woofer filter.png
    2nd order woofer filter.png
    5.8 KB · Views: 68
It sounds like you could run the the woofer direct from the amplifier and simply put a high pass filter in front of the tweeter.

We just have make sure the tweeter is adequately protected from the low frequencies.

The circuit for the tweeter high pass filter is shown in the first attachment.

The capacitor (C) can be a bipolar (non-polar or NP) type of value 4.7 uF.

The inductor (L) can be an air-core type of value 0.60 mH.

If the tweeter turns out to be too loud, then put a 5W or 10W ceramic wire-wound resistor of value 1.0 to 2.2 ohms in front of the capacitor.

(If necessary, you can put a low pass filter in front of the woofer. Use the same L and C values, but arrange them as shown in the second attachment.)
Thank you very much, and also I completely forgot that when i look into the enclosure, there was 4.7uf capacitor in series with tweeter if that somehow helps
 
Yes, the very simplest form of crossover is a capacitor in series with the tweeter.

If you want to keep it very simple, then run the woofer direct from the amp and put a capacitor of value 2.2 to 4.7 uF in series with the tweeter.

The tweeter is less likely to get overloaded by low frequencies if you use the lower capacitor value.

It's worth experimenting with the capacitor value!

EDIT: Changed higher to lower capacitor value - a slip of the brain!
 
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Yes, the very simplest form of crossover is a capacitor in series with the tweeter.

If you want to keep it very simple, then run the woofer direct from the amp and put a capacitor of value 2.2 to 4.7 uF in series with the tweeter.

The tweeter is less likely to get overloaded by low frequencies if you use the lower capacitor value.

It's worth experimenting with the capacitor value!

EDIT: Changed higher to lower capacitor value - a slip of the brain!
Thanks, that is very helpful. I was powering these speakers with some cheap 50+50w amp from Aliexpress and no problem but because it was some cheap amplifier it was quickly destroyed. So i decided to use 20+20w using lm1875 that i thing is much better chip