GE ZISW/B360DR dimensions Features and Benefits

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ZISW/B360DR – GE Monogram 36" Built-In Side-by-Side Refrigerator with Dispenser and Water Filter

Features and Benefits

• 21.7 cu. ft. capacity

• Overhead evaporator

• Integrated IceSystem – The ice bucket is integrated into the icemaker, not the freezer door, freeing up valuable storage space

• Upfront electronic controls with digital readout

Multi-shelf halogen light tower (Both fresh food and freezer section)

Multi-shelf air management tower

• Climate control drawer with Express Chill, Express Thaw and Select Temp

• Sealed adjustable humidity produce pan with easy access lid and full extension slides

• Disappearing electronic glass touch dispenser controls with proximity sensor

• Model ZISW360DR – White dispenser

• Model ZISB360DR – Black dispenser (shown)

Specification Revised 3/08

110108

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Contents Cutout depth beneath a soffit Dimensions and Clearances in inchesCutout depth must be Door Swing ClearancesFramed Panels Optional Accessory KitAccessory Panels Trimmed RefrigeratorsDispenser Cutout Position in inches Overlay Panel DimensionsRaised Overlay Panel Design On Dispenser Models Side-by-Side in inchesImportant Note Framed Panel DimensionsDispenser Models Framed PanelOr countertops Door Swing Factory setting ScaleUse this page to determine door swing Interaction with adjacent cabinetsTotal 1.100 thickness Door Door Swing Optional setting ScaleFeatures and Benefits

ZISW/B360DR specifications

The GE ZISW/B360DR is a sophisticated industrial transformer recently introduced by General Electric, known for its advanced features and reliable performance in power distribution applications. Designed for use in various industries, this transformer stands out due to its innovative technologies and robust characteristics.

One of the main features of the GE ZISW/B360DR is its enhanced efficiency, which significantly reduces energy losses during operation. This efficiency is achieved through optimized windings and core design, allowing it to operate effectively under varying load conditions. The transformer is built to withstand harsh environmental conditions, making it suitable for both indoor and outdoor installations.

The GE ZISW/B360DR is equipped with the latest insulation technology. This enables the transformer to maintain high dielectric strength, ensuring long-term reliability and reducing maintenance needs. The incorporation of this technology not only enhances the transformer's durability but also contributes to safety by minimizing the risk of electrical faults.

Another critical aspect of the GE ZISW/B360DR is its versatility in voltage regulation. It comes with integrated voltage control systems that allow for precise voltage adjustment, ensuring optimal operation across different operational settings. This feature is particularly beneficial in applications where voltage stability is crucial, such as in industrial plants or critical infrastructure.

The transformer also incorporates advanced monitoring and diagnostic capabilities. With built-in sensors and IoT connectivity, users can access real-time data on performance metrics, allowing for predictive maintenance and improved reliability. This innovative feature helps organizations optimize their maintenance schedules, ultimately leading to reduced operational costs and increased uptime.

In terms of environmental impact, the GE ZISW/B360DR is designed with sustainability in mind. GE has prioritized the use of eco-friendly materials and manufacturing processes, minimizing the transformer's carbon footprint. This commitment to sustainability not only complies with regulatory standards but also resonates with organizations focused on reducing their environmental impact.

Overall, the GE ZISW/B360DR combines cutting-edge technology and robust features, making it an excellent choice for industries seeking a reliable and efficient power transformer. With its advanced insulation, precise voltage regulation, monitoring capabilities, and commitment to sustainability, the transformer is poised to play a significant role in the future of industrial power management.