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Line 6 FBV Shortboard
Or whatever enclosure - I picked this as it already has great ergonimics of switch and screen placement for what I wanted so why build my own!
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PJRC Teensy 3.2
'Arduino' microcontroller - fast,plenty of memory, a tonne of versatile pins, and built-in USB MIDI made this an easy choice of controller to base STJØRN around
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Neutrik NC3FD-LX Femal XLR + MFD mounting frame
And this is for the microphone input
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NME0505SC 5V-5V DC-DC Converter
This will be used to provide an isolated +5V and GND for the audio circuit
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Talldog Teensy 3.2 breakout
A great breakout board for the Teensy that allows access to all of the 'underside' pins, plus some handy mounting points
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NA05W-K DPDT Relays
These relays control the microphone switcher
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4N35 Opto-isolator
The opto-isolator isolates the Teensy control pin from the rest of the microphone switcher audio circuit
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2N2222A NPN Transistor
Used for driving the microphone switcher relays
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1N4004 diode
Flyback protection in the relay circuit
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47uF Bipolar capacitors
Part of the microphone switching circuit
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330R metal film resistors
Part of the microphone switching circuit
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Sparkfun Differential I2C breakout
A late addition to the design (and partly just to use up the RJ45 hole in the chassis!) - this will create an 'extension' socket for things like analogue FX switchers, additional controllers, etc
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Blue 14-digit Alphanumeric LED display
These 4 digits show the current song section
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Various JST connectors
JST connectors will be used for power connections
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Various PCB header connectors
These will be used to connect the Teensy to the other boards so that they are removable if required
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Neutrik NA-USBW + MFD mounting frame
Robust panel mount connector with a very solid connection
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Stripboard
To make up the individual component boards
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Generic USB breakout board
A short micro-usb cable will connect to the breakout which will then take signals to the teensy - using a breakout for a more robust USB connection to the board and also to 'remove' 5V power
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2.1mm DC jack
I decided to go with external power for the board and this will be injected using a 2.1mm DC jack
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Momentary SPST footswitches
I am using Toronzo 2CX-MOM-ST-SL but any footswitches will work
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Adafruit Quad Alphanumeric i2c backpack
The display on the STJØRN controller is made up of 3x quad alphanumeric displays (12 digits total); the adafruit backpacks just make it dead easy to connect up
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Red 14-digit Alphanumeric LED display
Each 'block' is 2 digits; red makes up the left and right most displays which show current song and current rig
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Yellow 14-digit Alphanumeric LED display
These 4 digits show the upcoming song section
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WS2811 addressable 5mm RGB LED
These are equivalent to Adafruit's 'NeoPixels' but a lot cheaper! Using addressable LEDs such as these means I can run 14 RGB LEDs independently with only 4 wires and one pin on the Teensy
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Sparkfun Twist rotary encoder
Another last minute addition - I've decided to add a rotary encoder with a built in RGB LED in palce of one of the other LEDs; this will allow me to have an edit menu for adjusting VST parameters on the fly. That's the plan anyway.
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5mm LED mounts
For mounting LEDs...
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0.1uF ceramic capacitor
Each 'neopixel' needs a 0.1uF cap across + and -. Also used for DC smoothing on the NME0505SC
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1000uF radial capacitor
This is used across main power + and - to filter out any voltage 'shocks' which could damage the 'neopixels'
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74AHCT125 logic level shifter
Teensy 3.2 runs at 3.3V but the 'neopixels' need 5V so this converts the logic signal up
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VCNL4010 proximity sensor on adafruit i2c breakout
The Line 6 enclosure's expression pedal used an IR LED based proximity sensor but this was built in to it's main board; this little breakout will replicate that
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Neutrik NC3MD-LX Male XLR + MFD mounting frames
STJØRN includes a microphone output switcher so one mic can feed 2 channels depending on the relay position - these are the two mic outputs
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