Hi folks,
I just finished a Rat build, first one I've done and I decided to test it with my signal generator and scope which led me down the path of some modifications. These modifications were only to make it more usable and I'm left a bit confused by the standard circuit.
First off let me clarify that I am using a TL081CP opamp at the moment, MMBF5457 JFET and I have 1N914 and LED clipping diode options on a switch.
Probing the output of the opamp, it was clear that the signal was hitting the power rails hard, even at a relatively low distortion pot setting. I believe this is normal behavior and the clipping diodes chop this down even further.
What I found, however, was that changes in the waveform shape occurred only at low distortion settings. After about 30% of the travel, things seemed constant. I checked this with FFT and indeed the harmonics up to 25k were fully formed by this point and no visual change happened with further increase in distortion setting.
I removed and measured the pot and got a reading of 7k. From an A100k pot! I read the Electrosmash article to better understand things and the large opamp gain is mentioned. Is that much really necessary? I saw the relationship between the 47R and 560R resistors, pot value and amplification factor and used this with my 7k measurement to calculate new resistor values that would result in the same level of gain but at the full travel of the distortion pot. I ended up with 8.2k and 560R which are a world away from stock but the scope showed the full pot travel was now usable and a playing test showed that classic Rat tone.
I guess I have a few queries about this.
1. Are the stock values really associated with opamp gain that makes very little of the distortion pot travel useful?
2. How can the opamp impact the sound when the diodes chop off more than the opamp does? Is the impact of slew rate a different phenomenon?
Final point was my use of a MMBF5457 output JFET. This is all I had to hand and it made for a useful half wave rectifier! I ended up biasing the gate by connecting a 2M resistor from the 9V rail. Given there is a 1M resistor from here to ground, this gave enough positive voltage to avoid chopping off the negative portion of the signal even with the higher 1.7V forward voltage of the LEDs in the clipping position.
Learning is fun.
I just finished a Rat build, first one I've done and I decided to test it with my signal generator and scope which led me down the path of some modifications. These modifications were only to make it more usable and I'm left a bit confused by the standard circuit.
First off let me clarify that I am using a TL081CP opamp at the moment, MMBF5457 JFET and I have 1N914 and LED clipping diode options on a switch.
Probing the output of the opamp, it was clear that the signal was hitting the power rails hard, even at a relatively low distortion pot setting. I believe this is normal behavior and the clipping diodes chop this down even further.
What I found, however, was that changes in the waveform shape occurred only at low distortion settings. After about 30% of the travel, things seemed constant. I checked this with FFT and indeed the harmonics up to 25k were fully formed by this point and no visual change happened with further increase in distortion setting.
I removed and measured the pot and got a reading of 7k. From an A100k pot! I read the Electrosmash article to better understand things and the large opamp gain is mentioned. Is that much really necessary? I saw the relationship between the 47R and 560R resistors, pot value and amplification factor and used this with my 7k measurement to calculate new resistor values that would result in the same level of gain but at the full travel of the distortion pot. I ended up with 8.2k and 560R which are a world away from stock but the scope showed the full pot travel was now usable and a playing test showed that classic Rat tone.
I guess I have a few queries about this.
1. Are the stock values really associated with opamp gain that makes very little of the distortion pot travel useful?
2. How can the opamp impact the sound when the diodes chop off more than the opamp does? Is the impact of slew rate a different phenomenon?
Final point was my use of a MMBF5457 output JFET. This is all I had to hand and it made for a useful half wave rectifier! I ended up biasing the gate by connecting a 2M resistor from the 9V rail. Given there is a 1M resistor from here to ground, this gave enough positive voltage to avoid chopping off the negative portion of the signal even with the higher 1.7V forward voltage of the LEDs in the clipping position.
Learning is fun.
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