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SunTech Drive, Inc. www.suntechdrive.com 5485 Conestoga Court, Suite 250, Boulder, 80301, Colorado Date: 1-26-2016 Solar Compressor system – 0.5HP 120Vac – Test Report This report quantitatively documents the tested performance of a solar air pumping system consisting of a specific AC air compressor powered by solar PV panels in conjunction with a PicoCell controller. Solar PV panels are the DC input for the PicoCell controller and the single phase AC air compressor is connected to the PicoCell’s output, as shown in Figure 1 below. Solar PV panels are connected in series in order to provide the required DC solar power to the PicoCell controller that is generating the appropriate AC output for a specific AC air compressor. The PicoCell controller can be used for running any AC air compressor from solar independent of phase, voltage and frequency. For a given air compressor specification, PicoCell is capable of generating a true sinewave with a variable frequency range of 30-60Hz. By varying the frequency, PicoCell controls the compressor’s speed in the range between 50 and 100% of rated speed, depending on the power availability from the solar panels (PV input). It also provides soft start functionality, which can dramatically extend the life of the motor and compressor itself. Figure 1: Solar AC pumping system diagram In this particular setup, a 0.5HP, 120Vac, 60Hz, single-phase (2-wire) air compressor was tested with the PicoCell controller powered by 3-5 standard (60cells, 230-270W) PV panels wired in series. The technical specification of the AC air compressor is provided in the table 1. Table 1: Technical specification of tested AC pump: GAST air compressor: Jun-Air 87R640-101-N470X Power: 0.5HP Voltage: 120V Current: 6A Frequency: 60Hz

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SunTechDrive,Inc.♦ www.suntechdrive.com♦ 5485ConestogaCourt,Suite250,Boulder,80301,Colorado

Date:1-26-2016

SolarCompressorsystem–0.5HP120Vac–TestReport

ThisreportquantitativelydocumentsthetestedperformanceofasolarairpumpingsystemconsistingofaspecificACaircompressorpoweredbysolarPVpanelsinconjunctionwithaPicoCellcontroller. SolarPVpanelsaretheDC input for thePicoCellcontrollerandthesinglephaseACaircompressor is connected to thePicoCell’soutput, as shown inFigure1below.SolarPVpanels areconnectedinseriesinordertoprovidetherequiredDCsolarpowertothePicoCellcontrollerthatisgeneratingtheappropriateACoutputforaspecificACaircompressor.

The PicoCell controller can be used for running any AC air compressor from solarindependent of phase, voltage and frequency. For a given air compressor specification, PicoCell iscapableof generating a true sinewavewith a variable frequency rangeof30-60Hz.Byvarying thefrequency, PicoCell controls the compressor’s speed in the range between 50 and 100% of ratedspeed,dependingon thepoweravailability fromthesolarpanels (PV input). Italsoprovidessoftstartfunctionality,whichcandramaticallyextendthelifeofthemotorandcompressoritself.

Figure1:SolarACpumpingsystemdiagram

In this particular setup, a 0.5HP, 120Vac, 60Hz, single-phase (2-wire) air compressor wastestedwiththePicoCellcontrollerpoweredby3-5standard(60cells,230-270W)PVpanelswiredinseries.ThetechnicalspecificationoftheACaircompressorisprovidedinthetable1.

Table1:TechnicalspecificationoftestedACpump:

GASTaircompressor:Jun-Air87R640-101-N470X

Power:0.5HP Voltage:120V Current:6A Frequency:60Hz

SunTechDrive, LLC. ♦ www.suntechdrive.com ♦ 4145 Apache Rd, Boulder, 80303, CO, USA 2

/ Maxflow:4.253scfm Speed:1725rpm MFG#N470NXInterpretingtheloadcurve:

TheACaircompressorwastestedfor6differentpressures(heads)versusflowversussolarPVpowerasshowninFigure2.Ittakesaround200Wtostartacompressor,anditsperformanceinairflowbasedontheinputpower,foragivenpressure,isshowninthefigure2.

Forexample,for300Wofinputsolarpower,ifthecompressor’sbackpressureis30psi,thenitprovidesanairflowofjustabove2scfm,whileifbackpressureis20psi,thenitprovides3scfmofairflow;butifthebackpressureisonly5psi,thentheairflowis4.5scfm.ThissolarpowerismeasuredasaninputtothePicoCell,drivingthecompressor.

Figure2:0.5HP,120VacSolaraircompressorspecification–airflowvs.solarpowerfordifferentpressures

SameperformancecurveofsolarpoweredACaircompressorcanbepresentedasonfigure3, which shows standard air flow versus pressure graph, but for different power inputs to thePicoCellcontroller. If inputpowerisonly300W,theair flowat20psi is2.75scfm,but fortheinput

SunTechDrive, LLC. ♦ www.suntechdrive.com ♦ 4145 Apache Rd, Boulder, 80303, CO, USA 3

powerof400W,theairflowbecomes3.25scfm,whilefor500Wofinputpower,theairflowimprovesmarginally.Thus,theinputpowerforthesolaraircompressorsystemshouldbeat least500W,foraircompressortoprovideoptimalperformanceatalltimes.

Figure3:Performanceofsolarpoweredaircompressorfordifferentpowerlevels

Dependingonthelocationwherethissolaraircompressorsystemisinstalled,itwillrequiremoreor less totalPVcapacity toachieve these results. Thereare6 solar zones thatare shown inFigure3.Zone6hasthemostsolarinsolation(6-7kWh/m2/day),whilezone1hastheleastamountofsun(1-2kWh/m2/day).

Figures 5-7 show the cumulative daily hours of operation for different solar PV installedpower,fordifferentworldinsolationzones.Therearethreeexamples,wheresystemcanbeinstalledwith 3, 4 and 5 solar PV panels, and hence the total hours of operation will differ, for differentworldwidezones.

Forexample,fromfigure5with750Wofinstalledpower(3solarPVpanels),lookingatzone

6, for backpressures of 25psi, the system operates almost 8 hours per day. However, at zone 3(whichisMontanaare),samesystemwouldoperateonly5hourswithbackpressureof25psi,whileatzone2,atthesamebackpressure,systemwouldoperateonly3hoursduringtheday.

SunTechDrive, LLC. ♦ www.suntechdrive.com ♦ 4145 Apache Rd, Boulder, 80303, CO, USA 4

Figure4:SolarinsolationzonesintheWorld

Figure5:Dailyhoursofoperationfor750W(3PVpanels)solarinstalledcapacity

If the site is in Montana (zone 3), and 5 hours of daily operation is not enough, then by

SunTechDrive, LLC. ♦ www.suntechdrive.com ♦ 4145 Apache Rd, Boulder, 80303, CO, USA 5

adding1PVpanel(1000Wsystemcapacity),thenewoperatingtimeis7.5hours(Figure5),whileadding 2 additional panels (1250W system capacity), the operating hours can go to8.5 hours ofoperationperday(figure6).

Figure6:Dailyhoursofoperationfor1000W(4PVpanels)solarinstalledcapacity

Figure7:Dailyhoursofoperationfor1250W(5PVpanels)solarinstalledcapacity

SunTechDrive, LLC. ♦ www.suntechdrive.com ♦ 4145 Apache Rd, Boulder, 80303, CO, USA 6