GE 206C1559P195 Install Power Cord, Install 90 Elbow, Install drain hose to dishwasher drain port

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Dishwasher Installation

STEP 5: INSTALL POWER CORD

Skip this step if the dishwasher will be permanently connected to the house electrical system or has a factory-installed power cord.

In this step you will need the junction box cover and the #10 x 1/2" hex-head screw from the screw kit set aside in Step 1.

The power cord and connections must comply with the National Electrical Code, Section 422 and/ or local codes and ordinances. Maximum power cord length is 6 feet. Power Cord Kit WX09X70910, available for purchase from an authorized GE appliance dealer, meets these requirements.

Figure J

Install strain relief in the junction box bracket.

Insert the power cord through the strain relief and tighten.

Make sure black, white and green dishwasher wires are threaded through the small hole in the junction box bracket.

Connect power cord white (or ribbed) to dishwasher white, black (or smooth) to dishwasher black and ground to dishwasher green wire. Use UL-listed wire nuts of appropriate size.

Install junction box cover using the #10 hex-head screw. Be sure wires are not pinched under the cover.

STEP 6: INSTALL 90° ELBOW

Wrap a 90° elbow with thread seal tape.

Thead the 90° elbow into the water valve.

Do not overtighten the elbow; water valve bracket could bend or the valve fitting could break.

Position the end of the elbow to face the rear of the dishwasher.

Water Valve

Bracket

90° Elbow

Thread Seal

Fill Hose

 

Tape

 

 

Figure K

 

 

Step 7: Install drain hose to dishwasher drain port

Skip this step if drain hose has been preinstalled.

In this step you will need the drain hose and clamp set aside in Step 1.

IMPORTANT Prevent drain hose damage and possible leaks. Be careful not to nick or cut the drain hose.

Route the small end of the drain hose from the left side of the dishwasher through the strain relief attached to the dishwasher frame and toward the center of the dishwasher as shown in Figures L and M.

Place the hose clamp over the small end of the drain hose.

Push the small end of the drain hose over the drain port on the collection chamber, making sure it is fully seated against the hose stop.

Tighten the hose clamp to at least 15 inch-pounds of torque.

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Contents Important Observe all governing codes and ordinances Read Carefully Keep These InstructionsRead these instructions completely and carefully Parts Supplied in Installation Package For New InstallationsMaterials YOU will Need Tools YOU will NeedInstallation Preparation Enclosure Prepare Dishwasher EnclosurePrepare Drain Plumbing Installation Preparation DrainImportant When Installation Preparation Electrical Supply Prepare Electrical WiringCabinet Preparation and Wire Routing Electrical RequirementsInstallation Preparation Hot Water Supply Prepare Hot Water SupplyHot Water Line Water Line ConnectionDishwasher Installation Remove Access Panel ToekickPreparation Check Door BalanceInstall Power Cord Install 90 ElbowInstall drain hose to dishwasher drain port Skip this step if drain hose has been preinstalledInsert drain hose and Power CORD, if USED, through cabinet Tip Avoid unnecessary service charges for drain issuesSlide Dishwasher Into Cabinet Tip Avoid unnecessary service charges for panel damagePosition and level dishwasher Tip Avoid unnecessary service charges for noise or leaks Connect water supplyConnect Drain Line Figure WConnect Power Supply Install junction box coverPretest checklist If junction box cover is already installed, skip to StepDishwasher wet test checklist CyclesReplace access panel and toekick LiteratureAppendix Return to in these instructions to complete the conversionVeuillez Lire Attentivement ET Conserver CES Directives Important Observez tous les codes et ordonnances en vigueurPour UNE Nouvelle Installation Pièces FourniesMatériel Nécessaire Outils NécessairesPréparation pour linstallation Ouverture dans les armoires Préparation DE Louverture Dans LES ArmoiresPréparation pour l’installation Vidange Préparation DE LA Plomberie Pour LA VidangePréparation pour l’installation Alimentation électrique Préparation DU Câblage ÉlectriquePréparation pour l’installation Alimentation en eau chaude Préparation DE L’ALIMENTATION EN EAU ChaudeConduite d’eau chaude Raccordement de la conduite d’eau chaudeInstallation du lave-vaisselle Étape 1 PréparationÉtape 3 Enlèvement DE LA Base DE Bois La base de boisÉtape 5 Installation DU Cordon ’ALIMENTATION Que les fils ne sont pas coincés sous le couvercleRemarque Le boyau de vidange fourni avec Du boyau de 3 mètres de long est le GPF10SÉtape 12 Mise DE Niveau DU LAVE- Vaisselle Figure RÉtape 14 Raccordement DE L’ALIMENTATION EN EAU FerruleBagueÉtape 15 Raccordement DU Boyau DE Vidange Figure WAssurez-vous que le tableau de commande Hexagonale n 10 de l’ensemble de vis mis de côté ’étapeLa source Ouvrez la porte du lave-vaisselle et enlevez toutDE L’EAU Rétablissez l’alimentation électrique ouVerrouillez la porte du lave-vaisselle La touche Start Mise en marcheEn place le panneau d’accès et le panneau inférieur Étape 21 DocumentationDeux types de vis sont utilisés. Les vis n 8-32 Reportez-vous à la Figure CC AnnexeEnlevez et jetez le cordon d’alimentation

206C1559P195 specifications

The GE 206C1559P195 is a component that belongs to General Electric's suite of high-performance aircraft engine components. Specifically, this part is integral to the Geared Turbofan (GTF) engine technology that GE has pioneered, aiming at increasing fuel efficiency while reducing noise and emissions.

One of the standout features of the GE 206C1559P195 is its advanced aerodynamic design, which plays a crucial role in optimizing the engine's performance. The component helps improve air flow, thereby enhancing thrust and operational efficiency. By utilizing sophisticated Computational Fluid Dynamics (CFD) simulations in its design process, GE has ensured that the part meets the rigorous demands of modern aviation.

The GE 206C1559P195 also incorporates cutting-edge materials technology. Constructed with lightweight yet robust materials, the part significantly contributes to the overall weight reduction of the engine, which is vital for maximizing fuel efficiency. The use of composite materials and advanced alloys ensures that the component can withstand extreme temperatures and pressures associated with high-performance engine operation.

Another characteristic that sets the GE 206C1559P195 apart is its reliability and durability. GE's stringent manufacturing processes and quality control protocols ensure that each component is built to last, reducing maintenance frequency and enhancing operational reliability. The part is designed to have a long service life, making it a cost-effective choice in the long run for airlines and operators.

In terms of technological innovation, the GE 206C1559P195 features integrated sensors that provide real-time data on engine performance. This capability allows for better monitoring and predictive maintenance, thereby increasing safety and reducing unscheduled downtimes.

Furthermore, the integration of digital twin technology enables operators to simulate different operational scenarios, improving decision-making and optimizing maintenance schedules. This technological edge places the GE 206C1559P195 at the forefront of aircraft engine component innovations, aligning with the industry's shift toward sustainability and efficiency.

In summary, the GE 206C1559P195 is a remarkable component that embodies GE's commitment to advance aviation technology, emphasizing performance, durability, and environmental awareness. Its design and technological features reflect the ongoing evolution in the aerospace industry, making it a key asset for modern aircraft engines.