FIGURE 2.

GROUP A:

CONNECT TO BLACK

CONNECT TO WHITE

HOUSE WIRE

GROUP B: HOUSE WIRE

BLACK

 

WHITE

WHITE OR GREY WITH TRACER

WHITE OR GREY WITHOUT TRACER

BROWN, GOLD OR BLACK

BROWN, GOLD OR BLACK WITH TRACER

WITHOUT TRACER

 

NOTE: When parallel wire (SPT I & SPT II) is used; the neutral wire is square shaped and ridged, and the hot wire will be round in shape and smooth. (See below.)

FIGURE 2.

À BRANCHER AU FIL NOIR

À BRANCHER AU FIL BLANC

GROUPE A: DE LA RÉSIDENCE

GROUPE B: DE LA RÉSIDENCE

NOIR

BLANC

BLANC OU GRIS AVEC TRACEUR

BLANC OU GRIS SANS TRACEUR

BRUN, DORÉ OU NOIR SANS TRACEUR

BRUN, DORÉ OU NOIR AVEC TRACEUR

NOTA: Dans le cas des fils parallèles (SPT I et SPT II), le fil neutre est carrè et Côtelè et le fil chargè est rond et lisse. (Voir ci-dessus)

FIGURA 2.

GRUPO A:

CONÉCTELO AL CABLE

CONÉCTELO AL CABLE

NEGRO DE LA CASA

GRUPO B: BLANCO DE LA CASA

NEGRO

 

BLANCO

BLANCO O GRIS CON MARCAS

BLANCO O GRIS SIN MARCAS

MARRÓN, DORADO O NEGRO SIN MARCAS

MARRÓN, DORADO O NEGRO CON MARCAS

NOTA: Cuando se usa cable en paralelo (SPT 1 y SPT 2), el cable neutro es cuadrado y acanalado, y el cable vivo es redondo y liso. (Ver abajo.)

WARNING

Turn off electricity to the mounting site before beginning installation.

Mounting instructions must be followed exactly as shown for the fixture to be safely supported.

MISE EN GARDE

Coupez le courant au site de montage avant de commencer l’installation.

Assurez-vous de suivre les instructions de montage exactement comme illustré afin que l’appareil d’éclairage soit installé de façon sécuritaire.

ADVERTENCIA:

Desconecte el suministro eléctrico al sitio de mon- taje antes de comenzar la instalación.

Se deben seguir las instrucciones de montaje exactamente como se indican para que el aparato tenga un soporte seguro.

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Westinghouse W-349 owner manual Figura

W-349 specifications

The Westinghouse W-349 is a prominent model in the landscape of nuclear reactors, specifically designed for its unique operational capabilities and safety features. As a pressurized water reactor (PWR), the W-349 operates by using water as both a coolant and a neutron moderator. This dual functionality ensures efficient heat transfer while maintaining a stable reactor core environment.

One of the main features of the W-349 is its commitment to safety. The reactor incorporates advanced safety systems, including redundant cooling mechanisms and rigorous containment structures designed to withstand extreme conditions. The control systems employed leverage state-of-the-art digital technology, enabling real-time monitoring and adjustments. This automation not only enhances operational efficiency but also significantly reduces the likelihood of human error.

In terms of performance, the W-349 boasts an impressive thermal output, typically operating at a capacity of around 1,000 megawatts. This level of output allows the reactor to serve as a cornerstone in the energy grid, providing reliable power to countless homes and businesses. The design incorporates efficient fuel usage, with advanced uranium fuel rods that extend the intervals between refueling, thereby decreasing operational downtime.

Another significant characteristic of the W-349 is its modular design, which facilitates easier maintenance and upgrades. This modularity allows for components to be replaced or enhanced without necessitating extensive shutdowns, thus ensuring that energy production remains consistent year-round. Furthermore, the reactor is designed with seismic resilience in mind, ensuring stability in the event of earthquakes or other geological disturbances.

The W-349 also emphasizes environmental considerations. It is engineered to minimize radioactive waste through advancements in fuel recycling and management technologies. This commitment to sustainability aligns with the growing global focus on reducing carbon footprints while meeting energy demands.

In summary, the Westinghouse W-349 combines cutting-edge technology with stringent safety features and impressive operational efficiency. Its robust design, advanced safety protocols, and environmental sustainability make it a pivotal player in the field of nuclear energy, paving the way for future advancements in energy production while addressing the pressing needs of modern society.