LO QUE DEBERÍA SABER ANTES DE COMENZAR

Para su satisfacción y seguridad, lea todas las instrucciones, precauciones, advertencias y peligros antes de instalar o usar este grifo de agua caliente al instante.

Asegúrese de que todas las conexiones y cableados eléctricos cumplan con los códigos locales.

Se requiere un tomacorriente conectado a tierra tipo estándar de 120 voltios bajo el fregadero para suministrar energía eléctrica al grifo.

El tomacorriente de pared que suministre energía al tanque debe contar continuamente con energía.

Este tomacorriente debe llevar fusible y no debería estar controlado por el mismo interruptor de pared que opere un triturador de residuos de alimentos, a menos que usted tenga un SinkTop Switchde InSinkErator®.

Se recomienda la instalación de una válvula de corte en la linea de agua fría que alimenta de agua al sistema.

Si sospecha de niveles elevados de cloro en el agua, se recomienda usar nuestro sistema de filtración de agua.

El uso de un filtro de agua NO debe ocasionar que la presión de agua descienda por debajo de 30 psi (207kPa). Si esto sucede, su unidad no funcionará correctamente.

Es normal que las piezas móviles dentro del tanque causen un ruido de golpeteo.

LO QUE NECESITA PARA COMENZAR

Equipo requerido:

Taladro

Destornillador plano y destornillador en

■ Conector “T”

cruz (Phillips)

■ Válvula de control dedicada

Lápiz

Llave ajustable

Cinta métrica

Equipo que quizá necesite:

Taquetes para tablarroca

Llave de cuenca

Broca corta-círculos

Punzonador

Si va a usar el orificio del atomizador de su fregadero para instalar su grifo, quizá necesite una llave de cuenca y un tapón de 1/8" (3.1 mm) o una tapa de 1/4" (6.3 mm) (no incluida) para la línea de la manguera del atomizador. Véase el Paso 1-B.

Si necesita cortar un orificio de montaje en su fregadero de acero inoxidable, necesita una broca corta- círculos de 114" - 112" (3.1 a 3.8 cm) diseñada para cortar acero inoxidable o un punzonador. Consulte a un profesional si está perforando una superficie que no sea acero inoxidable.

COMPONENTES EN ESTE PAQUETE

Tornillos de 3/4"

Arandela de

Tuerca

Placa de cubierta

seguridad

hexagonal

(19.05 mm) (2)

 

 

 

 

UW/UWL

Junta de montaje de plástico

Placa de montaje

Conector de conexión

Tank

metálica

a presión (3 piezas)

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Emerson UWL owner manual Componentes EN Este Paquete, LO QUE Debería Saber Antes DE Comenzar

UW, UWL specifications

Emerson's Ultrasonic Wireless (UW) and Ultrasonic Wireless Level (UWL) technologies are at the forefront of level measurement solutions for various industries. These advanced systems are designed to optimize operations in challenging environments, ensuring high accuracy and reliability in tank level monitoring and other critical applications.

One of the main features of Emerson UW technology is its ability to provide real-time, continuous level measurement without the need for physical contact with the medium being measured. This non-contact approach significantly reduces the risk of contamination and provides a longer lifespan for the equipment. The ultrasonic sensors emit high-frequency sound waves that reflect off the surface of the liquid, allowing for precise distance measurement and, consequently, accurate level readings.

The UWL variant specifically enhances this functionality by integrating wireless communication capabilities. This allows for seamless data transmission to central control systems or cloud-based platforms, facilitating remote monitoring and management. The result is improved operational efficiency, as operators can make informed decisions based on real-time data from anywhere.

Another characteristic that sets Emerson UW and UWL technologies apart is their adaptability to various environmental conditions. The sensors are designed to withstand extreme temperatures and pressures, making them suitable for a wide range of industries, including oil and gas, water and wastewater, and chemicals. Additionally, the devices feature robust housing that protects them from dust, moisture, and other potential contaminants.

Moreover, Emerson's solutions incorporate advanced algorithms that compensate for variables such as temperature fluctuations and vapor or foam on the liquid surface. This enhances measurement accuracy and minimizes the likelihood of erroneous readings, which is crucial in process industries where precise level data is essential for safety and efficiency.

Emerson's commitment to innovation is evident in its ongoing development of these technologies. The integration of IoT capabilities further enhances the functionality of UW and UWL systems, enabling predictive maintenance, trend analysis, and integration with broader asset management strategies. This not only reduces operational costs but also increases the overall safety of the facility.

In conclusion, Emerson's UW and UWL technologies present a robust solution for level measurement, characterized by their non-contact sensing capabilities, wireless communication, and adaptability to harsh environments. As industries continue to evolve, these innovative systems will play a vital role in enhancing efficiency, safety, and operational excellence.