/ Installation /

Temperature / Water Level Sensor Assembly

This basin heater package is equipped with a combination tempera- Warningture/liquid level sensor and may have a thermal cutoff switch. Both

are safety devices that must not be altered or changed in any man- ner. Disabling either safety feature may result in combustion and/ or fire, which could cause damage or destroy the tower and may cause damage to persons or property nearby. Failure of one or both safety devices requires that the control panel be de-energize and tag circuit out for maintenance. Do not re-energize the unit until all safety devices are fully operational in accordance with manufacturer's specifications.

The sensor assembly is factory installed to the control panel. Do not at- tempt to lengthen or shorten the cord. Sensor assemblies with various lengths up to 99'-0" are available and may be specified at the time of purchase for additional cost.

Install the sensor probe in the cold water basin at least 1" above the high- est point of the heater element and at least 6" away from the heater. The probe should be installed in the coldest part of the basin for maximum protection. It should extend into the open basin a minimum of 4". A 12" NPT PVC bulkhead fitting is provided on the sensor for mounting through the basin wall. Provide an 158" clearance hole through the basin wall. Remove the nut from the bulkhead fitting and insert the sensor probe through the hole. Hand tighten the mounting nut onto the fitting, holding the bulkhead fitting to avoid twisting the cord. Lightly tighten the nut.

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SPX Cooling Technologies 92-1322C user manual Temperature / Water Level Sensor Assembly

92-1322C specifications

SPX Cooling Technologies 92-1322C is a state-of-the-art cooling tower designed to meet the demands of various industrial applications. Known for its robust construction and advanced engineering, this unit offers exceptional performance while maintaining energy efficiency.

One of the main features of the 92-1322C is its durable structure. The cooling tower is built with high-quality materials that resist corrosion and withstand harsh environmental conditions. The fiberglass-reinforced plastic casing ensures longevity and minimizes maintenance costs over time. In addition, the unit is equipped with a galvanized steel support frame that provides stability and strength.

The 92-1322C incorporates advanced cooling technologies that enhance its operational efficiency. Its counterflow design is specifically engineered for improved airflow, ensuring optimal heat exchange. This design minimizes water loss through evaporation and enhances the cooling capacity, making it a cost-effective solution for cooling process water in industrial facilities.

Moreover, the model features low-noise fan operation. The low-noise axial fans are designed to provide efficient airflow while keeping sound levels to a minimum, making this unit ideal for applications in sound-sensitive environments. The fans are equipped with multiple speed settings, allowing operators to adjust performance based on cooling demands.

Another characteristic of the SPX Cooling Technologies 92-1322C is its ease of installation and serviceability. The modular design allows for quick assembly and disassembly, enabling efficient transport and installation. Additionally, the access panels and removable components facilitate regular maintenance and inspections, which are crucial for ensuring long-term operational effectiveness.

In terms of energy efficiency, the 92-1322C is equipped with a variable frequency drive (VFD) that optimizes fan speed based on real-time cooling requirements. This innovative technology not only reduces energy consumption but also leads to lower operational costs.

Overall, the SPX Cooling Technologies 92-1322C is a versatile and reliable cooling solution suitable for various industrial applications. Its combination of durability, advanced engineering, and energy-efficient features establishes it as a preferred choice for facilities looking to enhance their cooling operations while minimizing environmental impact.