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Engagement
  • Author Author: shabaz
  • Date Created: 6 Jul 2013 7:19 PM Date Created
  • Views 16742 views
  • Likes 8 likes
  • Comments 126 comments
  • onsemi
  • audio
  • dac
  • bbb
  • texas_instruments
  • bb_black
  • beagle_bone_black
  • ti
Related
Recommended

BBB - Building a DAC

shabaz
shabaz
6 Jul 2013

Introduction

This project was about getting audio out of the BeagleBone Black. The aim was to have stereo audio, at least as good as an iPod. See further below for the circuit, and also a video showing it working.

Later, this project was used to build a PCB design (see below for the link to this part 2, and then the PCB was used to make a home Sonos-type hi-fi audio player (see the link to part 3 below).

 

The BBB has an on-board I2S interface, which makes interfacing an external DAC easy. The I2S interface is connected from the AM3359 processor to the HDMI chip (TDA19988) but it is not required for HDMI to be used in order to make use of the I2S interface. The I2S interface is brought out to some pins on port P9 (see here for details). It was encouraging that Technoshaman and Donald Miller had some success with the interface, so I wanted to try it out and I got some time today.

 

Part 2 to this post, which implements the prototype, can be found by clicking here.

image

Part 3 implements a complete design in an enclosure for a Sonos-like solution.

image

See Creating an Internet Radio for a complete project by the EAGLE team including board layouts

image

 

Parts Selection

Since the interface is capable of 24-bit/192kHz audio, it was worthwhile picking a nice DAC. A good but not over-the-top device seemed to be the Texas Instrument's PCM5101 which is nice because it has reasonable specs and also provides a built-in charge pump so that it can function from a single supply. A headphone amp was connected, and this was ON Semi's NCP2811A. The combination of PCM5101 (actually my prototype used PCM5101A which can also function from 1.8V, but this was not needed)  and NCP2811A was chosen so that the entire circuit could operate from the BBB supply if desired, even if it was from a Li-Ion battery that was powering the BBB, and for low noise and distortion. The only problem is that the PCM5101 has quite a high output (clearly a good thing!) but the audio amp minimum recommended gain is 1 and it cannot meet the required output voltage, and it means that it will distort at high volume. So, at a lower volume (and lower SNR) it will be fine, and I prefer this particular amp because of the very low distortion. The ON semi datasheet was sparse though.

 

Building It

This is the DAC prototype:

image

This is the whole thing connected up:

image

This is the rear of the board - a bit messier! It was built on a SMD to DIP adapter board with some copper tape for supply rails:

image

This is the audio amp - not a lot to it, since it is so integrated.

image

 

Testing It

I made a recording, but excuse the quality. The audio is from a small 64 ohm speaker picked up by a simple camera in-built microphone so it sounds bad, but connecting to headphones is a different story - it sounds as good as an ipod (although this is subjective - I don't have a way to measure). Another thing I still need to check is that originally I thought the data was read on the falling edge of the bitclock on the BBB, but I2S specifies the opposite. Maybe I made a mistake in my initial observations (I have not had a chance to re-check), or maybe it changed in a build. But the circuit as shown here works for me.

 

This is running on an not-recent Angstrom downloaded build (maybe a few weeks old image), and I still hear some very slight audio issues - it sounds like perhaps a break for a few tens of milliseconds occasionally, only if you're listening closely. I really hope it is resolved in a build soon (or maybe it is due to ffmpeg - perhaps avconv gives better results).

EDIT: I've since been using mplayer (command line is mplayer -ao alsa -volume 4 AmyWinehouse-BackToBlack.mp3  and either I'm not noticing any audio issues or they have disappeared). I've concluded it sounds at least as capable as my old ipod touch, maybe better).

 

I played audio using the command line:

ffmpeg -i AmyWinehouse-YouKnowImNoGood.mp3 -f alsa "default:CARD=Black" -re -vol 150

and it reported the stream as:

Stream #0.0: Audio: pcm_s16le, 44100 Hz, stereo, s16, 1411 kb/s

 

 

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Circuit Diagram

This is the circuit. All the 3.3V supplies were connected together for the prototype (I wouldn't do that for real, although it sounded very good in my limited tests). The amplifier V+ can be connected to 3.3V or the 5V supply (or the Li-Ion battery directly).

Note 16th Jan 2014: See the comments section below for more detail; the SCK pin on the PCM5101A was disconnected from 0V and instead connected to the BBB P9 pin 25. This will provide the lowest jitter by disabling the DAC's internal PLL. A sample capture of the audio quality (captured from the headphone output of the NCP2811A, just to give an approximate idea of what it sounds like from headphones) is attached to the post below, in the zip file dac-output.zip. More info on it in the comments section below.

Note 2: Please add a logic inverter to the bitclock connection. For more detail, see the comments below (search for the word 'bitclock' to make it easier to find). See the part 2 blog post, and the attached file there called dac-documentation.zip for the circuit diagram, showing the bitclock inversion. More recent BBB images may not need it, but it was certainly needed for the images I tested with.

image

 

Experiments with FLAC

I've also tried a FLAC file, but I'm hitting some limitation with ffmpeg it seems, and it picks a 16-bit format when it ought to be 24-bit. Meanwhile, avconv I couldn't get to work for MP3 or FLAC (it reported 'av_interleaved_write_frame(): Resource temporarily unavailable'). If anyone knows, any tips on how to play FLAC at 24-bit would be gratefully appreciated.

 

root@beaglebone:~# ffmpeg -i Taxman_2009_Digital_Remaster.flac -f alsa "default:CARD=Black" -re -vol 5
ffmpeg version v0.8.4, Copyright (c) 2000-2012 the Libav developers
  built on May 20 2013 13:00:42 with gcc 4.7.3 20130205 (prerelease)
This program is not developed anymore and is only provided for compatibility. Use avconv instead (see Changelog for the list of incompatible changes).
[flac @ 0x2da80] max_analyze_duration reached
Input #0, flac, from 'Taxman_2009_Digital_Remaster.flac':
  Metadata:
    ORIGREFERENCE   : 6C05C9F79EE74052A7991B9669B98533
    ORIGDATE        : 2009:09:14
    ORIGTIME        : 11:57:01
    TIMEREFERENCE   : 5292000
    CODINGHISTORY   : A=PCM,F=44100,W=24,M=stereo,T=SADiE5
    ORGANIZATION    : EMI
    TITLE           : Taxman
    track           : 1
    ARTIST          : The Beatles
    ALBUM           : Revolver (24 BIT Remastered)
    DATE            : 2009
  Duration: 00:02:37.85, bitrate: 1892 kb/s
    Stream #0.0: Audio: flac, 44100 Hz, 2 channels, s32
Incompatible sample format 's32' for codec 'pcm_s16le', auto-selecting format 's16'
Output #0, alsa, to 'default:CARD=Black':
  Metadata:
    ORIGREFERENCE   : 6C05C9F79EE74052A7991B9669B98533
    ORIGDATE        : 2009:09:14
    ORIGTIME        : 11:57:01
    TIMEREFERENCE   : 5292000
    CODINGHISTORY   : A=PCM,F=44100,W=24,M=stereo,T=SADiE5
    ORGANIZATION    : EMI
    TITLE           : Taxman
    track           : 1
    ARTIST          : The Beatles
    ALBUM           : Revolver (24 BIT Remastered)
    DATE            : 2009
    encoder         : Lavf53.21.0
    Stream #0.0: Audio: pcm_s16le, 44100 Hz, 2 channels, s16, 1411 kb/s
Stream mapping:
  Stream #0.0 -> #0.0

Attachments:
dac-output.zip
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Top Comments

  • e14 Contributor
    e14 Contributor over 12 years ago in reply to e14 Contributor +2
    Current test rig. BBB ($45), cs4271 on breadboard (about $15 parts and dozens of hours of labor), Cary Audio SE-1 amp (about $1K), pair of B&W DM302 speakers (about $200). I assembled this system that…
  • shabaz
    shabaz over 8 years ago in reply to shabaz +2
    Also, unrelated, but for after you have resolved the device tree issue, I just wanted to confirm, if you're following the circuit, make sure you include the 'bitclock inversion' functionality. The BBB…
  • shabaz
    shabaz over 8 years ago in reply to jithu_element14 +2
    Hi Jithu, Just to follow up on this, I re-tried on another image too, but still no luck. I've posted a request for help on the Beagleboard.org BBB-Wireless forum, in case anyone else has had success. Reproducing…
  • shabaz
    shabaz over 12 years ago in reply to morgaine

    Morgaine Dinova wrote:

     

    Anyway, the above case is not the actuality, since we do know how to program them, albeit in a primitive way.

     

     

    After seeing John's entry about the QL, it got me thinking if/when Freescale will start integrating 6800 or 68k cores in their application processors :-)

     

    agrahambell , long shot, but does the Debian early image include the PRU C compiler by any chance? I have not downloaded the image yet, I might do it this evening.

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  • morgaine
    morgaine over 12 years ago in reply to e14 Contributor

    selsinork wrote:

     

    the PRUs don't get promoted fully or proper support from TI. I'm still undecided if the PRUs go in the Pro or Con column.

     

    LOL.  It's entirely fair to highlight the very poor promotion and support for PRUs provided by both Beagleboard.org and TI, but it's definitely not fair to call the PRUs overall a minus!

     

    If for the sake of argument the support and documentation were completely non-existent and it were impossible to figure out how to program them, then they would be a non-usable feature and hence effectively non-existent, but that would merely give them a value of zero, never negative.  I suspect you were joking, but if not then I'll dispute it --- for the value to be negative, a non-usable feature would have to have a significant negative effect when unused, for example adding substantially to the power consumption.  But I suspect I'm having my leg pulled. image

     

    Anyway, the above case is not the actuality, since we do know how to program them, albeit in a primitive way.

     

    Morgaine.

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  • e14 Contributor
    e14 Contributor over 12 years ago in reply to morgaine

    Morgaine Dinova wrote:

     

    LIME2 isn't going to be competing in Pi's price niche, so overcoming LIME's slow memory times with a 32-bit memory bus on LIME2 doesn't address the issue!  If tuning the memory interface on LIME isn't successful then it seems that the original LIME concept as stated by Olimex (a better Pi) would be at risk.

    All depends on exactly what price they can get LIME2 down to.  40 euros would be very good, 50 still very interesting. More than that and it'll start encroaching on the 55 euro A20-OLinuXino-Micro. The Micro only has 10/100 ethernet, but is physically a much bigger board, so hopefully there's room to improve.

     

    I obviously don't fit the "I want a media player for $10" stereotype, so leaving that aside, I think the Lime suceeds at everything else. Given what we know today, it's too early to tell if the media player side will be sucessful or not. I think it has a fairly good chance though.

    While I can see that it doesn't match the BBB for the PRUs, the BBB has other weaknesses and the PRUs don't get promoted fully or proper support from TI. I'm still undecided if the PRUs go in the Pro or Con column.

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  • morgaine
    morgaine over 12 years ago in reply to e14 Contributor

    selsinork wrote:

     

    It's not all rosy, the lime has it's limitations - in the form of limited memory bandwidth https://groups.google.com/d/msg/linux-sunxi/SVZDqag7J_g/vZuxHBckKCYJ plenty of tuning still to be done, and the LIME2 will be better.

     

    Interesting discussion at that link.  I don't follow Tsvetan's reasoning though:

     

    Tsvetan wrote:

     

    LIME was build to show/proof that something low cost like RPi/BBB but more powerful could be made with Allwinner chips :-)

    LIME2 which we work now with A20 will have 1GB RAM (32 bit width) and Gigabit Ethernet, but it will be not possible to make LIME2 for price similar to LIME

    LIME2 isn't going to be competing in Pi's price niche, so overcoming LIME's slow memory times with a 32-bit memory bus on LIME2 doesn't address the issue!  If tuning the memory interface on LIME isn't successful then it seems that the original LIME concept as stated by Olimex (a better Pi) would be at risk.

     

    I hope they figure out a way ahead, as it would be a great shame if LIME doesn't meet its intended goals.

     

    (Of course I'll be interested in the gigabit LIME2 as well, but that doesn't help LIME sales!)

     

    Morgaine.

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  • shabaz
    shabaz over 12 years ago in reply to morgaine

    I just now tried it, connecting the PCM5101A pin 12 (SCK) to P9 pin 25 on the BBB, and it works. I fed the headphone out from the NCP2811A into the line input of a soundcard, and captured it, just as a quick representation of what I would hear from the headphones. The file is attached to the main post (called dac-output.mp3). The source file (played using mplayer on the BBB with a volume level of 50) was Amazon's MP3 encoding of this track purchased here.

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