GE PNRV12, GXRV10, GXRM10, PNRQ15, PNRQ20 Connecting to the Icemaker for Model PNRV18

Page 5

CONNECTING TO THE ICEMAKER FOR MODEL PNRV18

I. Locate 3/8" robing I}lat suppfies file product water 1(7dm

RO fsuco. At a couveuieut point hel_veen lhe fhucet mid tile

electronics box, cut tile robing aud iustall the 3/8" tee fitting. Conuect one end of tile 33 fi. leugth of 3/8" blue robing to tile lee, as showu ill Fig. 13.

:2. Tom off the icemaker. Tum off current iceInaker water _mrce

(if applicable). Discolmect the present water _mrce tubing froln tile refi_igeraUm

3, Connect lhe brass tubing adapter from tile parts bag to tile

free end of the 33 ft. length of 3/8" bhte tubing. Attach the

o/her end of the adapter to the icemaker water valve. Be sure

1(7 install the plastic wa_sher ino file robing adapter as shown in Fig. 14.

Fig.

12

 

 

 

This

tubing

adapter can Ix

used

 

on m(_t icemak_ rs. ObU_in

Iw_d¢_d

RO _'at er

fitting

for

othei_.

 

faucet

II

II

II

II

4.Turn on file water supply to tile Reverse Osmosis systeIll. Check

lhe shumffvalve on top of the extra storage tank m ensure it is in tile open position. Smfifize the system (see next page).

5.Check the installation for leaks. Turn tile icelnaker back on.

 

Fig. 14

 

tubing

adapu r_

Plastic

 

., ,a_as lie F

Icemak_

r

Fig. 13

icemaker

lnser_

To drain

point

I/8" mbing

Tank s

Storage tank

Image 5
Contents KIT Contents Installation InstructionsFormodels GXRV10, GXRM10, PNRV12 Connecting to the IcemakerSanitizing the System for Models GXRV10, GXRM10, PNRV12 Titting ,,1Sanitizing the System for Models PNRQ15, PNRQ20 Tile water supply valve Hg Connecting the Auxiliary Tank for Model PNRV18Shut Lift tile lever oil IheConnecting to the Icemaker for Model PNRV18 Sanitizing the System Be sure hands have been cleaned with an anti-bacterial soapFor Model PNRV18 Chlorine will destroy the RO cartridge

PNRQ20, PNRV12, PNRV18, GXRM10, PNRQ15 specifications

The GE GXRM10, PNRV18, PNRQ15, PNRQ20, and GXRV10 are a series of advanced power systems designed to meet a wide range of industrial needs. Each unit brings a unique set of features, technologies, and characteristics that cater to various applications in the power generation and distribution industry.

Starting with the GE GXRM10, this model is known for its robust performance and reliability. It integrates advanced digital technology, allowing for real-time monitoring and control. Key features include modular design, which facilitates easy upgrades and maintenance. It also offers exceptional efficiency, reducing operational costs and minimizing environmental impact.

The PNRV18 model is engineered for enhanced energy management. Its defining characteristic is its ability to efficiently regulate voltage levels, contributing to a stable power supply. Equipped with smart grid capabilities, it supports integration with renewable energy sources, making it a forward-thinking solution for modern energy challenges. Furthermore, its compact design allows for flexibility in installation.

Meanwhile, the PNRQ15 and PNRQ20 models are designed for larger-scale industrial applications. Both units emphasize enhanced load handling capabilities, making them ideal for high-demand environments. These models feature advanced protection mechanisms, ensuring that they can handle fluctuations and surges in power without risking damage to the system. Their user-friendly interface provides operators with easy access to real-time data and analytics, facilitating informed decision-making.

Lastly, the GE GXRV10 stands out with its emphasis on versatility. It can be configured for a variety of operational conditions, providing solutions for both continuous and standby power needs. This model incorporates state-of-the-art communication technology, allowing for seamless integration with existing infrastructure. This adaptability is increasingly crucial as industries shift towards hybrid and decentralized energy models.

In conclusion, the GE GXRM10, PNRV18, PNRQ15, PNRQ20, and GXRV10 represent a significant leap in power system technology. Their innovative features and robust design not only enhance operational efficiency but also align with global trends towards sustainable energy solutions. Each model, with its unique characteristics, provides tailored solutions that meet the evolving needs of various sectors in the energy landscape.