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-164 owner manual Mise EN Garde

W-164 specifications

The Westinghouse W-164 is a significant model in the realm of nuclear technology, specifically known for its advancements in pressurized water reactor (PWR) design. Developed during the mid-20th century, the W-164 showcases innovative engineering and safety features that cater to the increasing demand for reliable energy sources.

One of the main features of the W-164 is its efficient heat exchange system. The reactor employs a steam generator that utilizes the pressurized water to transfer heat to a secondary water circuit, thus producing steam for turbine generators. This method enhances the efficiency of thermal energy conversion while allowing for a compact plant design.

The W-164 also emphasizes safety through its robust containment structures. Designed to withstand extreme conditions, including natural disasters and potential accidents, the containment system minimizes the risk of radioactive material release. Additionally, the reactor is equipped with multiple redundant safety systems, including emergency core cooling systems, designed to ensure the reactor core remains cooled even under abnormal conditions.

Another notable technology integrated into the W-164 is its advanced control and instrumentation systems. These systems provide real-time data on reactor performance and conditions, enabling operators to make informed decisions and maintain optimal performance. The control systems are designed for reliability and ease of use, promoting operational safety.

The W-164 utilizes low-enriched uranium fuel, optimizing the fuel cycle and minimizing waste. This feature aligns with the industry's push towards sustainability and environmental considerations. The reactor's design also allows for longer operational cycles, reducing the frequency of refueling and further enhancing its overall efficiency.

In terms of physical characteristics, the W-164 is designed to fit within a compact footprint, making it suitable for a variety of operational environments. Its modular construction allows for easier maintenance and upgrades, ensuring the reactor remains competitive in a rapidly evolving energy landscape.

Overall, the Westinghouse W-164 stands out for its innovative design, efficiency, and safety features. As global energy demands increase and the need for sustainable solutions intensifies, the technologies developed in the W-164 can provide valuable insights and pave the way for future advancements in nuclear energy. Its legacy continues to influence modern reactor designs, highlighting the importance of reliability and safety in energy production.