Marsh headphone amp from Linear Audio

I can only repeat my initial impressions with an off-the-shelf PSU and average soundcard: very very neutral, clean, and natural. Bass is thundereous and bottomless.

I will soon be able to give a more acurate description of the performance: a ES9018 dac is in the works, and I am finally close to complete the amplifier by giving it a power supply it deserves.
I have chosen a fully discrete design to complement it nicely, see here: http://www.diyaudio.com/forums/power-supplies/247142-high-performance-psu-voltage-regulator.html
PCBs will be produced soon.

cheers!
 
Last edited:
I can only repeat my initial impressions with an off-the-shelf PSU and average soundcard: very very neutral, clean, and natural. Bass is thundereous and bottomless.

I will soon be able to give a more acurate description of the performance: a ES9018 dac is in the works, and I am finally close to complete the amplifier by giving it a power supply it deserves.

I have chosen a fully discrete design to complement it nicely, see here: http://www.diyaudio.com/forums/power-supplies/247142-high-performance-psu-voltage-regulator.html
PCBs will be produced soon.

cheers!

Hi,

How is your progress moving along?

-RNM
 
Just spend an evening working through 700 posts. Quite lengthy and distracting at times, but some valuable info here. After the first 150 posts I finally made a donation to the forum... Oh, and I have all the LA issues; ordering them regularly when they come out since vol. 0! I'm a fan of some good audio-related magazine, too, so this is my first choice and that has to be supported.

I am going to build this amp on perfboard and see how well that will work out. Unfortunately I can't find any of the transistors at my favourite suppliers, so I will go with all substitutes. In this thread BD139/140 have been mentioned. I wondered, however, if the BD131/132 might not be a better fit? They have an fT of 60MHz like the MJEs, not 3MHz like the other BDs. Current capability is also a bit higher. Any comments on this?

Will have to order the transistors and some passives, so it will take a while. Layout is ready though 🙂
 
You might want to take Richard's advice and substitute a 500 ohm trimpot for R10 (249 ohms). This will help you tweak the THD% The JFETS are available as SO23, but the TO-92 are difficult to source from distributors. You could also use 2SK170/2SJ74 in the GR Idss rating, but the pinout is different from the devices Richard had specified.

The output transistors are best matched for Vbe +/- 5% so buy a bunch!
 
That's all I've got for now. The other parts are ordered.
 

Attachments

  • perfmarch_01.jpg
    perfmarch_01.jpg
    563.5 KB · Views: 735
getting close

You might want to take Richard's advice and substitute a 500 ohm trimpot for R10 (249 ohms). This will help you tweak the THD% The JFETS are available as SO23, but the TO-92 are difficult to source from distributors. You could also use 2SK170/2SJ74 in the GR Idss rating, but the pinout is different from the devices Richard had specified.

The output transistors are best matched for Vbe +/- 5% so buy a bunch!

I finally found the 249R dale resistors today. I had to buy 50 of them but they weren't to expensive. I only have a computer o-scope right now and I'm not sure how to use it to tweak the distortion. I think I would need a distortion analyzer? I have the transistors and FETs already I just need to sit down and match them.

I will have the output transistors in a couple of days. I ordered 100 output transistors, 50 MJE200 and 50 MJE210.

Thanks for the reply,
Bob
 
Finished the main board today. Plated-through perfboard really is a pain in the 🤐, because all the solder gets sucked through. Doesn't look neat 🙁.
Will build the power supply in the next couple days and then see how it works.
 

Attachments

  • perfmarch_02.jpg
    perfmarch_02.jpg
    526.6 KB · Views: 727
A first test was really promising. Offsets were easily trimmed out and the scope showed no signs of oscillation with the inputs shorted and 330R load resistors.

The only thing I'm not quite sure about is the idle current. It's more than 80mA for each output transistor, for a total supply current of ~360mA per rail for a stereo amp. I was expecting something like half of that 😕. The article was talking about >200mA for the power supply - is that meant for a single (=mono) buffer only?
 
A first test was really promising. Offsets were easily trimmed out and the scope showed no signs of oscillation with the inputs shorted and 330R load resistors.

The only thing I'm not quite sure about is the idle current. It's more than 80mA for each output transistor, for a total supply current of ~360mA per rail for a stereo amp. I was expecting something like half of that 😕. The article was talking about >200mA for the power supply - is that meant for a single (=mono) buffer only?

Looking at the circuit in fig 8, and assuming that the diode drops and the Vbe's match, you're left with 600mV across 9.4 ohms which is a nominal 64mA through each output stage. So even with a large margin of error, 180mA per channel seems excessive.
What's the voltage across the Re's in the output stage?

Jan