GE 206C1559P195 installation instructions Dishwasher wet test checklist, Cycles

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Dishwasher Installation

STEP 19: dishwasher wet test checklist

Turn on power supply or if power cord is used, plug it into the wall outlet.

Latch dishwasher door.

For electronic dishwashers, select the normal WASH cycle and press the start pad one time.

 

 

Cycles

 

 

 

 

 

 

 

 

 

 

CLEAN

 

 

 

 

 

 

 

 

 

 

 

 

 

CLEAN

 

 

 

 

 

 

 

 

 

2

4

8

 

 

POTS

HEAVY

NORMAL

CHINA

RINSE

 

HI TEMP

HI TEMP

HEATED

LOCK

DELAY

 

 

START

& PANS

WASH

WASH

CRYSTAL

ONLY

 

RINSE

WASH

DRY

(2 TIMES)

HOURS

RESET

For dial models, press the normal and hot start pads, if model has them, and then turn the control dial just enough to start the dishwasher. Be careful not to turn the dial past the first water fill. Dial should point to “Hot Start Option” or “Hot Prewash Option” depending on model.

Check the electrical connection to the water valve. The red electrical connector should be plugged into the dishwasher water valve. If it is not plugged in, turn off electrical power to the dishwasher. Plug the red connector into the dishwasher­ water valve and then restore power.

Red Connector

 

 

 

 

 

 

 

 

 

 

 

Hot Start

Start

 

Cycles

 

 

 

 

 

 

 

 

 

Option

 

 

 

 

 

 

 

 

Start Delay

 

1

 

 

 

 

 

 

 

 

 

 

3

2

 

 

 

 

 

 

 

 

 

Cycle

(HRS)

4

 

 

 

 

 

 

 

 

 

 

on

 

5

 

 

 

 

 

 

 

 

 

 

 

6

 

 

Light Wash

 

 

 

 

 

 

 

 

 

Off

 

 

 

Pots

Heavy

Normal

 

Hot

Hi-Temp Heated

Reset

Plate Warmer

 

 

 

 

& Pans

Wash

Wash

 

Start

Wash

Dry

(Heated Dry On)

 

 

 

 

 

 

 

 

 

 

 

 

Rinse Only

(Heated Dry Off)

Appearance varies by model. Not all models have push buttons.

Check to be sure that water enters the dishwasher. This could take up to 4 minutes.

If water does not enter the dishwasher:

Check to be sure that the water is turned on.

Lightly tap the flood float cover to dislodge a stuck flood float.

Flood Float

Cover

Check for leaks under the dishwasher. If a leak is found, turn off power, tighten connections and restore power.

Check for leaks around the door. A leak around the door could be caused by the dishwasher door rubbing or hitting adjacent cabinets. Reposition

the dishwasher if necessary­ . See Steps 11, 12 and 13.

Most dishwasher models will drain about

3 minutes after the first fill. Check the drain line for leaks when dishwasher drains. If leaks are found, turn off power, correct as necessary and then restore power.

Open the dishwasher door and make sure most of the water has drained. If the water does not drain, check to be sure disposer plug has been removed and/or air gap is free of debris.

Let the dishwasher run through another fill and drain cycle. Check again to be sure there are no leaks.

At the end of the second drain, push the reset pad on electronic models. For dial models, unlatch the door and rotate the dial to the “Off” position.

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Contents Important Observe all governing codes and ordinances Read Carefully Keep These InstructionsRead these instructions completely and carefully Materials YOU will Need Parts Supplied in Installation PackageFor New Installations Tools YOU will NeedInstallation Preparation Enclosure Prepare Dishwasher EnclosurePrepare Drain Plumbing Installation Preparation DrainImportant When Cabinet Preparation and Wire Routing Installation Preparation Electrical SupplyPrepare Electrical Wiring Electrical RequirementsHot Water Line Installation Preparation Hot Water SupplyPrepare Hot Water Supply Water Line ConnectionPreparation Dishwasher InstallationRemove Access Panel Toekick Check Door BalanceInstall drain hose to dishwasher drain port Install Power CordInstall 90 Elbow 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 WPretest checklist Connect Power SupplyInstall junction box cover 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 vigueurMatériel Nécessaire Pour UNE Nouvelle InstallationPièces Fournies 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 ÉlectriqueConduite d’eau chaude Préparation pour l’installation Alimentation en eau chaudePréparation DE L’ALIMENTATION EN EAU Chaude Raccordement de la conduite d’eau chaudeÉtape 3 Enlèvement DE LA Base DE Bois Installation du lave-vaisselleÉtape 1 Préparation 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 WLa source Assurez-vous que le tableau de commandeHexagonale n 10 de l’ensemble de vis mis de côté ’étape Ouvrez la porte du lave-vaisselle et enlevez toutVerrouillez la porte du lave-vaisselle DE L’EAURétablissez l’alimentation électrique ou 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.