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Showing posts with label tube audio. Show all posts
Showing posts with label tube audio. Show all posts

April 4, 2013

Audio Note DAC 2.1 Level B

As mentioned in previous posts, much of the audiophile world has really moved from compact disc players to a computer-based digital audio setup, whether it's streaming over the local area network or coming directly from the output on your desktop or laptop. As we all know, the built-in digital audio converter in a computer generally leaves a lot to be desired for an audiophile. The sound card is generally an afterthought built into a computers motherboard with some of the lowest-cost chips available, likely doesn't have a very low noise floor and probably has gimmicky features like 3D sound processing. The best option is to bypass as much of this as possible, either through a dedicated optical output from a reputable sound card (something like the ESI Juli@), or to use a USB to coax converter (there are TONS of these on the market from companies like M2Tech, Musical Fidelity, Stello, etc.) and get that digital signal to a high quality external DAC.

An external DAC (digital analog converter) effectively converts a digital binary signal (think 1s and 0s) to an analog signal that you can send to your speaker or headphone amplifier. External DACs started to gain momentum in the late 80s when used with CD players with a digital output.

A handsome old Sony DAS R1 DAC (circa 1987)

Now with computer audio, there are thousands of DAC offerings on the market. There are non-oversampling (NOS) DACs from makers such as MHDT and Valab, and oversampling DACs (also known as interpolating DACs) which use a pulse density conversion technique, from makers like Benchmark, Lavry and Audio Note Kits. Some feature tubes, some are solid state, some are warm sounding, some are bright or analytical. Really the best thing you can do when selecting a DAC is read a review from someone whose ears you trust (tends to enjoy gear that you enjoy) or preferably test one at an audio meet, as the source really is the cornerstone of your audio system and it's important to get one you really like. When a warm sound is preferred, often a tube DAC is the best answer; tube-based implementations tend to add harmonics and distortion to the sound that's very pleasant to the ear. Since this blog is all about DIY, I will be building a tube-based DAC kit.

The company Audio Note Kits has been offering tube-based kits online for nearly ten years now and has been around for much longer. The available number of kits is impressive; there are a number of push-pull amplifiers, single-ended amplifiers, DACs, pre-amplifiers, phono pre-amps and speakers. A rather interesting new product is the HiFiMan HE-6 headphone amplifier that runs on EL84s. As of this writing there were over 20 different kits available. The current DAC models are the L2.1, L3.1 and L4.1. Each model is offered in a few different flavors, the standard and signature versions, and there are a few options available balanced transformers and a USB converter. The different versions feature different tubes (6922 in the L2.1, 5687 in the L3.1 and L4.1), different transformer configurations and the parts quality is predictable higher in the more expensive L3.1 and L4.1.

In this post I will be assembling a DAC 2.1 Level B kit. The difference between level A and level B is simply the optional I/V transformers. These transformers handle the current to voltage conversion. These can improve sound quality in a digital system for three reasons, as stated by Sowter:

  • The usually rather poor operational amp chips which are fed by the I/V resistor are eliminated.
  • The digital and analogue grounds can be isolated which can remove some complex distortion mechanisms.
  • The unique frequency characteristics of the transformer can provide improved filtering of the quantization noise.

The starting block of any build is the chassis. Audio Note Kits had the intelligent idea to create a relatively universal chassis that could be used for many of their builds. Any holes that are unnecessary are covered up by the front and rear plate or are on the bottom where no one can see them. This "universal" chassis is a very thick gauge and is quite heavy, which is necessary to prevent bowing if it's holding a number of bulky transformers. The stock chassis comes in a nice textured black, with black front and rear panels (these appear to be plexiglass or lexan) and screened gold logos and text. I opted to have the chassis powdercoated gold to match the gold logos and make my unit a little different.

Gold powedercoated chassis

When the unit is powdercoated, it's necessary to leave the exposed metal areas for proper grounding and protect the screw holes so they are still usable after the process. These can be done by using screw hole inserts and stickers that are compatible with the powdercoating process. Below is an example of a chassis hole with exposed metal surrounding it after the gold powdercoat.

Exposed metal for grounding purposes

Concentrating on the chassis inputs and outputs, it was already decided that the chassis would use a balanced AES-EBU digital input in one of the D-flange holes. To make use of the other two D-Flange holes, I'll be using a pair of Neutrik recessed RCAs for the analog output of the DAC. The RCAs themselves would be replaced with the higher quality copper body Vampire RCA jacks (as seen in lower right).  

Neutrik recessed RCAs

Also used is a Vampire XLR-CF jack with gold plated copper alloy contacts for the AES / EBU digital input. Do note that the holes on the chassis need to be enlarged a bit for these items. 

Installed input and output jacks

A view from the back of the unit


Next, the power switch and power inlet could be installed on the back panel of the chassis. I opted to upgrade to a Furutech IEC inlet FI-103(G) with built-in fuse holder which has some nice gold-plated copper alloy conductors. Included in the kit is some nice high quality silver plated copper in Teflon wire which is used for internal hookup from the. This wire is used to wire up the ground connections (which short to the chassis) and the power transformer. Also mounted during this process is the power choke which takes the place of a resistor to help smooth ripple in the power supply.

Transformer and choke mounted

The printed circuit boards are thick and of good quality, which is useful if one ever decides to change / upgrade parts later on; there's nothing worse than desoldering parts on a cheap PCB and losing a solder eyelet in the process. It's also nice that the real estate given for coupling capacitors is very ample, so the builder can easily fit some big paper-in-oil caps if they'd like. Also note the little holes in the board near the capacitor area so they can be secured with zip ties. Zip ties are not included with the kit but are readily available from hardware stores or places like Partsexpress.

The line board

The power board

The DAC 2.1 is offered with Mundorf Supreme film capacitors but you can request the Audio Note Tin caps for the line board. Below are the Audio Note tin caps shown next to a nickel for scale. These are not small by any means, but typically sized for oil caps. These are not paper in oil but make use of mylar film and are assembled by Audio Note UK. 

Audio Note mylar film and tin foil capacitors

I decided to begin the build by populating the boards. Brian Smith of Audio Note Kits was able to offer me some nice Takman carbon film resistors for the line board. You'll also notice the AN tin caps and Elna Silmic II electrolytic capacitors. Interestingly, the ceramic tube sockets here are the chassis mounted type which are mounted on aluminum standoffs. The reason for this is so wires can be soldered to eyelets at the bottom of the socket to power the heaters on the tubes. 

Populated line board

Next the M2 power board would be populated. I dropped a few parts that I had in storage in these, including Kiwame resistors which are rated to 2 watts and typically measure very close to the printed value. Also added were Elna Silmic and Nichicon Fine Gold capacitors. 

Populated M2 power board

Once the boards are completely populated, it's a good idea to clean off the solder flux. My favorite way to do this is to splash some isopropyl alcohol on a cheap toothbrush, in this case a Snoopy themed kids toothbrush (they're like a dollar for a four pack) and scrub away on the bottom of the board, then dab with a paper towel to remove the flux. After doing this 2-3 times the board is suitably clean. 

Circuit cleaning supplies

Once the boards are clean, they are wired up to the unit. As the M2 Power Board has quite a few wires connected to the bottom of the PCB, fly leads are all soldered in place before the standoffs are secured to the chassis.

Bottom of the M2 Power Board

Below is the top-down view of the unit after the fly-leads from the power board were soldered to the transformer.

M2 Power Board in place

Once the M2 Power Board is secured, the line board can be wired up. As shown in photos of the internals of the unit, heatshrink was placed on the leads travelling to the line board for a more uncluttered look.
Bottom of the line board

Next up is the line transformers and DAC portion.








And the finished product from the outside:







The Fine Print:
Please remember that building circuits and performing circuit modifications can be dangerous to you and/or your surroundings and should only be performed by a certified technician. The owner of this blog and all associated parties can not / will not be held responsible if you attempt a build or modification posted above and cause physical harm to yourself or your surroundings. Many electronics contain high voltages that can kill, and mods, if performed improperly, can be a fire hazard. Please keep this in mind. 






March 17, 2011

The Bottlehead Single Ended Experimenters (S.E.X.) Amplifier

If you've read my other posts, you'd know that I enjoy building Bottlehead gear. I have both a Bottlehead Crack high impedance headphone amp and Seduction phono preamp, both with the obligatory C4S upgrades. The Crack is excellent for high impedance cans (~300 ohms), but can't really handle the low impedance ones. The solution was to build a S.E.X for those more demanding headphones. ;) 

The S.E.X. kit
is a stereo integrated single-ended-triode amplifier with 2 watts per channel output and has been available since 2004. From the Bottlehead site: The two stage zero feedback RC coupled circuit uses parallel feed (a.k.a. parafeed) output, a topology championed for use in modern single ended amplifiers by Bottlehead and MagneQuest. Parafeed output assures articulate, musical bass, great high frequency extension and minimizes the influence of the power supply on the sound. 

The Bottlehead S.E.X. Kit
There are a few special upgrades available for the S.E.X., including the C4S Constant Current upgrade which consists of a pair of small PCBs with mounted MOSFETs, LEDs and resistors (currently $45), and some higher quality MagneQuest transformers and chokes ($300-450 depending on nickel content). And of course you can throw in the nicer caps and such as well.

Building the amp is the typical Bottlehead affair; there's a wooden base to assemble and stain, a top plate made of aluminum you can paint or leave bare, and a nice big instruction manual that makes things easy for beginners. Because my build included the aforementioned upgrades, I had three manuals to look at.

My first concern was the MagneQuest transformers. They may be well made, but they aren't much to look at in my humble opinion. The chokes hide beneath the plate but the outputs would be visible. I sanded down the metal frame, taped off the center with painters tape, and spritzed it with metal primer, copper hammerite paint, a layer of clear coat, then more hammerite paint. It gives it almost a leather looking texture when the clear coat reacts with the hammerite. I then wrapped the center with some thin black leather (Doc's advice). You can see the difference below between the original look (left) and the modded look (right).

Magnequest choke, transformer and stock bell
I got the plate back from the powdercoater with my favorite antique copper finish, so the next step was to begin populating the plate. I had made a few enlarged holes for the Neutrik locking jack, Cardas RCAs and binding posts, Goldpoint attenuator and vintage lamp.

Teflon 8 pin sockets and boards, Goldpoint attenuator


The Goldpoint attenuator required a little bit of work to fit. In the stock hole position, it butted up against the wood frame and the plate couldn't be seated. The hole had to be enlarged vertically to allow clearance. A couple of the little solder strips required mounting to #8 screws to be enlarged. I recommend one takes their time if they use a drill for this, as I broke two of them :P

Further population included a few little tweaks to the stock kit, including rubber washers for the transformers and chokes, shielded Cardas output wire, bypass film caps for the power supply caps, a few nicer Nichicon caps, thicker shielded wire for the power switch, another solder strip for the Neutrik locking plug to keep the installation clean, and some big hulking paper in oil AmpOhm caps, which required the addition of a set of 2" standoffs. Below are a few progress pics of the amp being built. 

Getting Started

Additional solder post used for headphone output

Solen caps placed temporarily for resistance checks
One thing about the build that was a little difficult was soldering the bottom of two of the power supply caps. There were three or so things going into the top hole of terminal 4 with that little solder strip which made it quite difficult to ascertain whether you had a good solder joint or not. With a flashlight a couple minutes of investigation, it could be seen. 

C4S boards fitted

The little C4S boards got in the way of the standoffs for the large caps, so I flipped them 180 degrees and dremmelled into the unused part of the board for clearance. It's almost comical how large the AmpOhm caps are at a mere 2.2uF.

Finished inside - Front

There's a lot of parts shoehorned in here

Finished inside - Back


There's a lot packed into this little chassis, every inch counts ;) I originally had a set of EAR feet on the bottom of the wood frame, but the caps protrude far enough that I had to get larger feet. I initially entertained the idea of some little brass spikes, but the company selling them wanted $80 for a set of four 1" x 1" threaded brass spikes. I picked up a set of 1" black steel spikes and 1" rubber feet (both under a dollar each) from PartsExpress. I ended up liking the black spikes better, so I drilled out the bottom of the wood frame and threaded it for them.

This amp lets it's business hang out ;)

Finished Back

Finished Front
The emblem on the front I had custom made (I had two made in total). I created the logo and sent it off to a promotional company that makes the little metal emblems. 

UPDATE (3/22/11) I got to have a listen to this yesterday, Eileen got me a replacement set of RCA tubes, and I had a pair of Sylvania coin-bases arrive from another supplier. Sound is really excellent, even before burn-in. No lack in the bass department, a nice powerful sound with just enough detail.

I'm currently using a very special custom 10-3 right angle power cord with this kit (my own recipe). Take a look at the details here.

Wondering where I got all my parts for this build? Check out a list of my favorite online vendors here.

UPDATE (3/29/11) Replaced the stock sandcast 0.1 ohm 5W resistor with a Vishay Dale wirewound in the power supply. Can't tell if it made a sonic difference, but would likely be a little more reliable over the years.


The Fine Print:
Please remember that building circuits and performing circuit modifications can be dangerous to you and/or your surroundings and should only be performed by a certified technician. The owner of this blog and all associated parties can not / will not be held responsible if you attempt a build or modification posted above and cause physical harm to yourself or your surroundings. Many electronics contain high voltages that can kill, and mods, if performed improperly, can be a fire hazard. Please keep this in mind. 


February 26, 2011

Complete Restoration of a Dynaco PAS Pre Amp

This is a story of rags to riches; turning an abused Dynaco PAS 2 into a very modern PAS 3.

The Dynaco PAS 2, for those who are unaware, is a pre amp kit introduced by Dynaco in 1960 to compliment the Stereo 70 (ST70) that came the year before (1959) and other various other power amplifiers in the company's lineup. The Dynaco PAS has developed a cult following, and there are an immense amount of boards being produced for those interested in restoring such archaic technology :) CurcioAudio, Tubes4HiFi, AudioRegenesis, ClassicValve and others have created drop-in boards to restore the PAS, whether you want to maintain the same circuit or drop in something completely different.

I chose to use reproductions of the original PAS 3 boards and rather than recreate the rudimentary selenium rectifier with standard capacitors, I chose to make use of the high-tech ClassicValve PAS Regulated Power Supply.

ClassicValve Regulated Power Supply
The PAS is a design that was built to fit a budget, so a number of other things are recommended to be replaced. The 2 pole, 6 position switch is rather archaic compared to what is being produced today. A $10 switch would likely be an improvement. I opted to go with an Elma 2 pole, 6 position switch 04-1264 ($60 SRP) so that I wouldn't have to replace it down the line.

A Stock PAS Switch
The rear input and output board also leaves something to be desired. Many consider this to be one of the most drastic areas that Dynaco cut costs on the kit. Cheap Nickel plated RCAs on an old PCB board don't really inspire confidence.
Stock PAS IO Board

So... let's have a look at the splendid PAS 2 example that I was able to source:
Original PAS Back
Original PAS Back Detail
Original PAS Insides
Original PAS Outside and Bottom

The previous user left me with a lot more work that I would have had if I had a pristine PAS 2 / 3. There were a number of unusual mods, including plexiglass mounted RCAs, a 9 pin tube mounted in the middle, a non-descript transformer that was halfway mounted, some additional holes cut out of the back, and a powdercoated front panel that was rubbed with armor-all. No worries, one has to rise to the challenge.

The PAS was completely taken apart, a few parts were set aside, most were disposed of as they had been pillaged by mods. The chassis was sanded down and prepped for powder-coating.

Chassis Prep

The new boards were sourced and populated with my favorite parts, Kiwame and Takman resistors and Sonicraft caps. 

Old boards versus new boards
Curcio Audio has a number of nice tutorials on the PAS, including one to make the Phono board a bit more accurate. I performed those mods, along with bypassing the tone controls. I sourced a new input output board from Tubes4Hifi to connect to the Elma switch. I also picked up an Alps volume control (100K) and balance control, along with PCBs to make soldering a little easier.

Mostly done
The wiring was completed using Neotech PCOCC in teflon wiring, Kimber wiring and SPC in teflon. Russian teflon bypass caps were added to the main board (mounted to the front), and Russian PIO were used on the phono board. A power LED board was sourced from ClassicValve, and a new transformer was sourced from TriodeElectronics. After all was said and done, I sent off the PAS to Sal at Dynaco-ST70.com to look over all my wiring and fire it up. I wanted to have an expert give it the final eye and do the final wiring.

Here's the final build:

PAS guts from the right

PAS guts from the left

Inside Detail

Inside Detail

Bottom wiring

Outside with new gold front panel from ebay

Outside Photo 2

Rear, notice rear vent and Cardas output RCAs
Some final details were the Cardas RCAs added to use the holes made by the initial owner, a power supply vent to eliminate the ugly holes in the chassis, the bottom slots were covered using slightly larger than stock power receptacles from Radio Daze, and the front panel was replaced with a gold anodized version from Michael Nipomo on eBay (he typically only sells black and silver, but had this gold one as a one-off).

This little baby was an amazing amount of work, but it came out well and I'm really happy with it. Good luck to everyone out there restoring their PASs :)

Wondering where I got all my parts for this build? Check out a list of my favorite online vendors here.


The Fine Print:
Please remember that building circuits and performing circuit modifications can be dangerous to you and/or your surroundings and should only be performed by a certified technician. The owner of this blog and all associated parties can not / will not be held responsible if you attempt a build or modification posted above and cause physical harm to yourself or your surroundings. Many electronics contain high voltages that can kill, and mods, if performed improperly, can be a fire hazard. Please keep this in mind.