fredag den 28. januar 2022
lørdag den 24. juli 2021
onsdag den 17. marts 2021
Full albums now on my channel
Some background:
'REMNANTS' (2015)
is my debut album I released as my Bachelor's Project under the Academy of Music.
I designed a simple circuit for an audio player and composed an album out of recordings
from my various audio material from my DIY projects.
RECLUSE [2020]
is my second album I composed just before the pandemic in a somewhat depressed but lucid state,
after dropping out of my Master's study due to health problems. I regressed into the past and started
composing music for my newly finished modular system and old tracker software.
onsdag den 11. november 2020
Eurorack Modules: DIY CRT scope
Hi guys, I know it's been a while.
I've fallen behind with updating my blog although I've been active on my facebook and my YouTube pages. Sometime back in 2018 I decided to switch to eurorack as my DIY stuff
required a lot of maintenance. I uploaded this video of my current
studio recorded with an old crappy camcorder where you get the general
idea of the setup:
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If you're interested to see what I'm up to, go follow me on YouTube (Dani Dogenigt) or find Dogenigt on facebook. I think I am going to give a guided tour of my eurorack system so you can see some of the modules in action. Please take care and see you soon!
lørdag den 17. marts 2018
Yearly recap
First of all my .com domain expired and before I got the chance to renew I discovered to my surprise that it'd been bought by someone else, I suspect godaddy does this to get people to negotiate a buy-back fee which is a dirty move so right now you can find this blog on dogenigt.blogspot.com
I've been moving a lot so all my gear and the entire workshop is currently stored in my rural home where I am renovating so I haven't been able to build and produce anything.
I also chose to cancel my studies for my master's degree at the academy of music due to stress and other health issues so my mind hasn't really been focused that much around electronics and music.
I've been more or less homeless over the (harsh scandinavian) winter and staying at friends but I am moving into an old farmhouse with my brother on the 1st of may so my plan is to gather some of my gear and get a small studio going again.
To make a recap of where I left off a year ago,
my DIY modular project was going into all sorts of directions as I was really inspired to do all kinds of raw and untraditional modules.
I got to mounting the magic eye tubes for the 4 channel mixer and the VU-meter nixie tubes for the stereo main out module with EQ for both channels as you can see in the bottom case.
In the top case I mounted volt- and amp-meter for the PSU and a breadboard module with banana jacks for interfacing. This could be a neat little module for testing new circuits and have them ready for experimenting on the go.
The green screen to the far right is actually an old gameboy with backlight with LSDJ cartridge and a vintage magnifier screen from a dias-photo viewer. The red wires going from the gameboy are going to a NES-joypad which I succesfully got working so I'll be able to control the gameboy from afar as the gameboy is enclosed in the case.
On top of the case is my microcassette tape delay and two cassette tape players from a stereo tape deck which I am planning on building into a third case for a tape delay.
On the far right is an old tape player from a car stereo which I want to make into a monophonic tape voice unit with CV-control for the motor to control the pitch.
More to come!
lørdag den 4. februar 2017
DIY Modular #2: Nixie tubes for VU meters.
The outputs from each channel is going to be sent to the main stereo output module through pan pots to create a stereo field. The main output module has two 100mm faders for left and right channel and for visual feedback two IN-13 nixie VU meter tubes are installed.
The technical aspects and circuit details of the modules will be covered further when I am done connecting it all. Below is a video of all the tubes (CRTs included) running together for the first time. The input signal is Boards of Canada's "Davyan Cowboy" :]
torsdag den 11. august 2016
Here's a little catch-up.
My wooden modular project is slowly pacing away, the first module - the main console - has got its frontplate in 5mm clear acryllic mounted with the TVs steadily fixed on the little wooden shelf.
The idea is to have the monitors as in kind of a cockpit/main console where I can monitor various things like input voltage, temperature in the case, run time and date etc. via my Arduino Uno + TellyMate Shield.
The left CRT has been made into a TV-oscilloscope for the main out (stereo) signal.
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onsdag den 18. november 2015
Hacking a Discman into a glitch machine!
I managed to hack my own CD player. Here's what it sounds like:
What the hack does is getting access to the anti-skip IC which stores a couple of seconds of audio on a RAM chip. The position of this chip varies from player to player so look up the name of the chip until you find the anti-skip IC. The pins A0 through A9 are DRAM adress pins. If we connect these pins together, we can confuse the machine to get glitchy playback and weird artifacts and noise.
After damaging a couple of CD players I finally managed to solder wires onto the tiny surface mount pins. Hot glue is your friend to make sure you don't accidently pull the wires off the pins when you've soldered it all together.
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torsdag den 6. august 2015
DIY Modular #1: Wooden case and CRT-monitors.
Hola amigos y amigas! :-)
Besides enjoying a long summer holiday, before starting on my master's degree in electronic music, I've been rethinking my entire setup and decided to abandon the idea of having lots of separate boxes which I have to arrange and connect for every concert and instead jump on the modular wagon but with my own standards and designs. (no "eurocrack" ;-P ) I am going to design and build every module from scratch and include some different and unique modules and parts and try different methods of circuit designing. The frontplates are going to be transparent so all the insides are visible, which adds an extra dimension the the machine - it will be an work of art, from circuit to interface. |
I wanted something organic and easy to work with so I went with wooden frames for the cases and for the front- and backplates I chose transparent acrylic glass as it's neat to be able to see the insides of the machine. I will put a lot of emphasis on the aesthetics of the circuits, parts and components because of this. For attaching the acrylic frontplates I am going to use an alu-rail with rectangular 'slide nuts' as the width of the modules will vary.
In the future I want to be able to expand with further identical cases on top so I added a mechanism for attaching the frames to each other. The drawing above shows my vision of what the machine will ultimately end up looking like.
Some snaps of the cases / frames:
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The first actual modules will be a 'terminal' with a green-monochrome CRT TV. It will receive a video signal from an Atmega328 generating simple text strings with data such as the temperature inside the box, total run time, date and time and a lot of other stuff.
Next to it another CRT TV of the same size will display the master stereo output as a simple oscilloscope. Beneath the TV I will install two analog VU meters with a nice warm backlight as well.
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The plan is to mount front plates in front of the TV's and have all the knobs and in/outputs controlling the TV and the terminal.
For labels I want every front plate etched with a CNC router (or just by hand?) and then edge-light it with an LED-strip installed beneath the acrylic. A test looks like this (scrap acrylic with scratches):
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onsdag den 13. maj 2015
Debut album released on DIY audio player
For a long time I'd been thinking of an alternative to the digital release or vinyl and what have you and I discovered a tiny circuit based on a miniature arduino-like chip (ATtiny85) which can be programmed to read lossless quality sound files from an SD-card and play them (in 44.1 kHz 16 bit) via the PWM pins.
So I decided to go ahead and build the circuit into a small audio player to be built into some casing as my album and have the project and journal revolve around that.
I've been working on the project for the past couple of weeks - it's all in the papers I wrote.
Link to the paper in danish: http://data.xn--dgenigt-q1a.dk/DIEM/opgaver/BA3-Bachelorprojekt.pdf
I tried to translate into english but failed to do so. Let me know if you have success!
Images from the project:
Wave-player based on ChaN's circuit and code:
Runs of 3.3V and outputs sound directly to jack output in 44.1 kHz 16-bit sound. So far, only mono as more digital pins are needed. The PWM-outputs on the ATtiny85 each create an 8-bit signal, when 2 are added together they make 16-bit. For stereo 16-bit sound 4 digital pins are needed. We didn't have enough time to do this but I know of a guy who did it with an ATmega328.
Finalized player with batterypack, speaker and SD-card.
The album is already online on my bandcamp as digital download but in the future I will have the release available on this platform as in the pictures above. The whole album can be bought for $10 and of course streamed for free. All the tracks are made with my homemade gear. Enjoy!
mandag den 16. februar 2015
Dögenigt @ Mayhem: Noise Convention #1, 18/10/2014
fredag den 16. januar 2015
Aristoteles Logic Synth Update #4: Logic Gates
I thought it was time for building the next module for dear Aristoteles, my 'lo-fi logic synth project' so I did the logic gate module which consists of 8 AND gates with 2 inputs and an LED for the output. The truth table on the right describes how the gate will behave: the output only goes high (1) when both inputs are high. The result is a very simple form of amplitude modulation, or it can be used to control the path of signals from the other modules with counters or LFO's, you name it.
The video below speaks for itself.
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Setting the range to the high pitched setting on both oscillators will generate classic vintage radio-like modulation squeeks. I also tried using the 'octave divider module' for one of the inputs which has its own unique sound.
I chose to have all the logic gates as AND gates. For a long time I was in doubt about wether to have a pair of XOR or NAND gates just for the hell of it but I could not find a good reason as they don't do much sound-wise where as the AND gate is so clear in its function and I want to be able to make complex signal paths with counters, dividers, random clocks and all eight oscs - all controlling each other through the gates.
The circuit is very simple, I basically just wired the in- and outputs straight to the 4081 but attached 100K resistors on each pin to prevent static electricity from the end of the wires going into the chip when patching.
LED's are controlled by transistors as always to prevent voltage dropping on the outputs.
UPDATE:
I had my brother a.k.a. SNU over and he fell in love with the new module which resulted in hours of wiggling.
Here's a a little peak of the tweak :-)
onsdag den 7. januar 2015
Terrestrial Signals III Live concert @ DIEM Elektro 'Pulse'
I found out I was booked to play at the next of DIEM's obligatory student concerts 'DIEM Elektro' - this specific concert was called 'Pulse' so I prepared some pulsating light-controlled rhytms with a hacked monotron, using only the nice korg filter with a photoresistor, clock-synced to the notorious MicroWaveSampler by my Clock Box. I included my electromagnetic plasma ball synth described in the post below. I was pretty content with the outcome although some of my gear failed a bit, including my little TV-to-sound device. To much noise on the line to gain it. Anyways, please check out the video - it was shot by my brother Alec Sander and with his GoPro Hero camera attached to my head so you get the P.O.V. close up shots from my perspective. Enjoy!
I have a line of projects planned for this year, as I am writing my bachelor project which I think will focus on alternative media for releasing album material, more to come on that. After the last concert I finally chose to sucumb to the idea of a modular system instead of all these seperate modules which has to be wired together on set, it's too much hazzle every time I need to set up for a concert so now I will jump into building a complete modular system with the same principles used so far: analog means of sampling, tape delays and quirky little circuits. Stay tuned!
Lot of love, Dogenigt
fredag den 5. september 2014
Aristoteles Logic Synth Update #3: Divider (simple)
| Here's a scheme for the willing - simple and self-explanatory! |
To explain this simple circuit in a simple way, it's taking any clock output from the other modules and counting 2^n times before setting the output HIGH - 2, 4, 8, 16 and so on - up to 2^12 times, that is 4096 clocks before setting the output high.
That's quite a division, so a high frequency is needed if one wants oscillations in the audio range. Otherwise it's great for turning audio range signals into LFO clocks. All in all, it's a very musical chip as it creates sub-octaves, which are relations of a factor of 2 to the input frequency.
I was flipping through Roads' Computer Music Tutorial one evening and began to read up upon the very first digital systems with flip-flop logic gates and discovered that the method of dividing down a master clock to acheive other tones is ancient! So-called 'divide-down tone synthesis' was discovered in 1930 so this method is almost a century old!
tirsdag den 12. august 2014
Compositions on Bandcamp
I've created a bandcamp store where you can get some of my releases in lossless format.
Some of the compositions might appear on a future debut album, which I intend to release online and on a physical medium which will be quite different from your typical CD/LP format.
Link to my bandcamp is found by clicking on 'Releases' in the top menu.
The latest track I've finished is called Plate Phonetics and consists of recordings of cuts and scratches on blank phono records which gives weird rhytmic patterns. On top of it I've added some tones with feedback oscillator (Derek Holzer's soundbox) and recording of my homemade string instrument.
The other tracks available so far, you might've heard on my soundcloud. They are 'Subtlle Visit' composed during a meditation and creativity workshop with Kim Cascone and 'Veins of The Robot' composed with Christina Kubisch during a workshop with her on DIEM where we brought her electromagnetic headphones in the city of Aarhus.
'Entraining Patterns' is made solely from homemade equipment: the wavetable synth, Vibrati Punk Console and passive ring mod. There's also a composition made with The MicroWaveSampler.
lørdag den 12. juli 2014
Aristoteles Logic Synth Update #2: Oscillators
The next module on the path of Aristoteles, the 'lunetta-style' synth, is finished! It's the central part of the synthesis: Oscillators. 8 of them. So essentially one could patch all 8 oscs into the 8-channel mixer and have 8 voice polyphony. They will also serve as the unique pseudo-CV clocks for the other modules, which is the main concept of CMOS-based synthesizers. The brain in all this is the classic 40106 chip, which is actually a logic NOT-gate flipping on and off. Below is a quick demo.
The oscillators have the following functions, as seen on the image to the right:
The first switch lets you choose if the osc should be constantly on or momentary, determined by the red button. This allows one to use the synth as a simple keyboard with a little willpower. Next switch allows you to add extra capacitance to the oscillator, thereby setting the frequency range. The middle position of the switch is actually an off-position so the oscillator runs on the "offset cap" which is too small at the moment, so the frequency is very high. I wanted to have this range-switch so I could go with a potentiometer value around 100K for the frequency knob. This makes it easier to tune it without too big steps, as one gets if running on 1M or something in that range. I chose to have the whole synth only producing square waves, to have it ultra lo-fi and simple. But I thought it could be nice to at least have PWM for each osc though, so this is what we have below the freq pot. |
The LED's are switched on and off with the help of transistors, to minimize voltage drop on the outputs. All the outputs are grounded with 100K resistors as well to prevent frying the chip if you touch the banana jacks.
Here's my quick and dirty schematic drawn in MS paint :)
Feel free to use it for inspiration in your own designs.
mandag den 30. juni 2014
The 'MAXIMUX controller': High-res controller for Max/MSP (Update #1)
Nerd Alert! My favourite g33k-buddies (Carl Dimsos and Gus the Friendly Giant) and I are at it again! For a while, we've been discussing ways to interact with Max in a fast and precise way. The project is going to be a controller in a suitcase, armed with an Atmega-chip and a MUX-shield which allows us to have 48 analog inputs speaking with the arduino! This will give us a 10-bit resolution on all analog readings which is suitable for controlling audio parameters in Max. I want to have a lot of different and expressive sensors and knobs n butts for varying the input voltages.
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So far I have whole lot of scrap parts from old helicopter remote controls and sensors sensing touch, distance, humidity, light intensity, gyroscopic motion and a lot more.
I've also disassembled two flight simulator joysticks with their own respective D/A-converters, which gives me 7 more analog inputs with 16-bit resolution!
I decided to have this project be a classical aim for those who's spent decades creating music in front of a computer monitor: to have the laptop lid closed and have all the paramters transfered to the controller.
For receiving feedback from Max I am going to use a 16x2 LCD display, as seen on The MicroWaveSampler (another arduino project done with Dimsos) for getting the values from the inputs and the max-paramter assigned to it. But I wanted to be able to see a little bit more of what's going on inside so I found an arduino project called Chibimo which allows the user to have a 128x64 display as an external monitor. (only winXP, sorry)
I've already tested it out, narrowing my patches way down to 128 pixels wide to have it fit on the little screen. I will use a usb-numpad to skip around in the patch to show different parts on the LCD monitor. More to come! Stay tuned and thanks for following guys.
fredag den 23. maj 2014
Aristoteles Logic Synth Update #1: MIXER
So just around New Years Eve I posted a picture of my newly assembled modular synth casing - no intestines yet though! But just before my bed claimed me for a minor lifetime, I was able to finish up the first and central part of the system: the 8-channel mixer with simple BP/LP filters + power supply.
Here's a demonstration of what I am talking about:
So the idea is that you have 8 channels in the mixer which are summed together after they've passed the filter circuit and the respective volume knob. When using stackable banana-jacks one might ask why bother with a multi-channel mixer; why not just stack 'em on top of each other and using passive resistor/diode mixing?
The problem for me was that mixing with just resistors would cause each output from every oscillator to drop in voltage and maybe cause instability with edge-detection in the chips they would enter - and diodes make distinctive modulation when used for summing. Which is why every output enters a diode, so it's still possible to mix signals together in a single mixer channel if one is running low on free channels. Other than that, diodes make sure that no cross-talk occurs if stacked for multiple operations.
I will discuss the other modules in future entries and here's some schemes for the willing.
tirsdag den 21. januar 2014
Greeting Card Sampler Boxed
The video shows the features which are: potentiometer for varying the playback speed, switch for selecting loop mode, red button on the side is for restarting the device, which re-triggers the message, switch for selecting between the inputs - electret mic or input jack, jack for sending output to an amplifier and in the bottom are two banana jacks which allows you to control the device with a vactrol or light sensor, or any other resistive sensor :)
I had a very nice day at the FabLab's Maker's Day in Copenhagen, where I held a small symposium and a koncert with my current setup. One of the guys from CEO Bendorama who also played, got a recording of my concert - which includes the Greeting Card Sampler. (Thanks John!)





















