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I present my new and improved LPM design: (Now a Release Candidate):san:
LPM is powered by a 3.3v LDO, So no crappy 9v batteries, and no boosting regulator in this LPM
The ADC and LDO are High quality, High accuracy, and Low noise.
made by Texas Instruments
The LPM is also very efficient, Consuming just 60mA @ 4.2V (50% less power than a laserbee) :na:
Battery will be a 1200mAh Cell phone battery
Should be good for well over 10hr's per charge
A charging IC is also on board, The lpm is charged while datalogging
~5W max power
150 W/cm^2 Damage threshold :eg:
The Microcontroller at the heart of this LPM is the Atmega328,
USB is handled by an FTDI chip,
so if you feel like modding this lpm, it will be very easy :shhh:
And now the pics
Still to do:
Programing:
Add adjustments for accuracy across full 5W range (if needed)
Try Predictive Output (for faster results)
Program automatic Zeroing
Add Average and peak to display
Make a datalogging program :banghead:
Hardware:
Install zeroing switch
Install power switch
LPM is powered by a 3.3v LDO, So no crappy 9v batteries, and no boosting regulator in this LPM
The ADC and LDO are High quality, High accuracy, and Low noise.
made by Texas Instruments
The LPM is also very efficient, Consuming just 60mA @ 4.2V (50% less power than a laserbee) :na:
Battery will be a 1200mAh Cell phone battery
Should be good for well over 10hr's per charge
A charging IC is also on board, The lpm is charged while datalogging
~5W max power
150 W/cm^2 Damage threshold :eg:
The Microcontroller at the heart of this LPM is the Atmega328,
USB is handled by an FTDI chip,
so if you feel like modding this lpm, it will be very easy :shhh:
And now the pics
Still to do:
Programing:
Add adjustments for accuracy across full 5W range (if needed)
Try Predictive Output (for faster results)
Program automatic Zeroing
Add Average and peak to display
Make a datalogging program :banghead:
Hardware:
Install zeroing switch
Install power switch
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