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{{Outofdate}} | {{Outofdate}} | ||
{{Idea}} | |||
==Does== | ==Does== | ||
* 6 channels (expandable to 12) | * 6 channels (expandable to 12) | ||
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It gets power from the [[Analog to DMX]] box, and sends back different voltages, to control the [[Analog to DMX]] box, which then controls the DMX devices at the other end. | It gets power from the [[Analog to DMX]] box, and sends back different voltages, to control the [[Analog to DMX]] box, which then controls the DMX devices at the other end. | ||
==How== | === How === | ||
* ONE connection of DA15 | * ONE connection of DA15 | ||
** channels on pins 1 to 12 | ** channels on pins 1 to 12 | ||
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** Gnd out on pin 15 | ** Gnd out on pin 15 | ||
==Why are there two grounds?== | === Why are there two grounds? === | ||
* The [[Analog to DMX]] box expects a reference Gnd from wherever it gets it's signal, this can be used, in conjunction with the AREF of some microcontrollers, to boost or cut the difference between 'reference' and signal (channels), so that was given a separate line. Usually, just leaving this alone or common (i.e. pins 14 and 15 bridged) is fine - it's main reason for existance is to be used as part of a compensator for long cable runs making voltage drops. | * The [[Analog to DMX]] box expects a reference Gnd from wherever it gets it's signal, this can be used, in conjunction with the AREF of some microcontrollers, to boost or cut the difference between 'reference' and signal (channels), so that was given a separate line. Usually, just leaving this alone or common (i.e. pins 14 and 15 bridged) is fine - it's main reason for existance is to be used as part of a compensator for long cable runs making voltage drops. | ||
* The [[Analog to DMX]] also sends 0v ground out to it's controlling devices, so they can operate - rather than being boxes of variable resistors. | * The [[Analog to DMX]] also sends 0v ground out to it's controlling devices, so they can operate - rather than being boxes of variable resistors. |
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