WATLOW IND. WATROD Modular Duct Heater Installation & Maintenance Manual

I&M NUMBER: 316-42-15-1

Page: 2

Date:6/11/2008

Rev: 2

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Failure of components in a temperature control loop, such as the sensor, heater control relay or main temperature control, can result in damage to a product in process, a melt down of a heater, and / or damaging fire.

To protect against this possibility, over temperature protection must be provided to interrupt or remove power from the heater circuit. A bulb and capillary thermostat is not recommended for this function since it may not respond quickly enough to adequately protect the heater. In cases where the thermostat bulb gets too hot before the system is turned off, the thermostat bulb could rupture. This could result in the thermostat remaining in the "ON" condition since there is insufficient fluid to move contacts apart. We recommend the temperature protection have appropriate third party approval, and be applied in the classification for which it was tested and approved.

3.Terminal Enclosures

Terminal enclosures should be selected to be compatible with the environment in which the heater will be located. It is the users responsibility to determine the need for correct rating of the electrical housing. This should be based on appropriate national and local electrical codes. Failure to use a compatible enclosure could result in heater damage and personnel danger.

Standard terminal enclosures are designed for general purpose use and are rated NEMA 1. These enclosures should be applied where there will be no danger of spilled liquids, dampness, dirt, and gaseous conditions. Enclosures for wet or hazardous locations are also available, but must be installed at the factory.

Although enclosures are supplied over the terminals, units should be located in an area that will minimize the chance of being hit by falling or moving objects. The terminals must be protected at all times from moisture or vapor.

In hazardous locations, (as defined in NFPA 70 NEC, Article 501) explosion resistant housings must be used.

In order to maintain termination integrity, the terminal enclosure should be kept below 400°F (204°C).

4.Orientation / Mounting

The duct heater may be mounted vertically, or horizontally, from the left to right, top or bottom. The inlet side of the unit must be at least 48" downstream from any transition in duct size or direction, or from any air handling equipment. See Figure 1 for locations that should be avoided.

Heaters may be ganged in parallel for nearly any total wattage desired. The temperature control thermocouple if so equipped should be located near the work to sense exiting air temperature. Conduct process temperature sensing in the outlet stream away from the heater.

Minimum air velocity through the heater is 200 fpm for air temperatures approaching 800°F (412°C). Lower velocities will jeopardize element life.

Air flow over the entire face of the heater should be uniform at the design velocity.

The units screw or bolt in place through the 3/8" dia. holes in the mounting flange. When installed vertically through the top of the duct, they are self supporting when the duct is capable of supporting the heater weight.

WATLOW IND.n # 6 INDUSTRIAL LOOP RD. n HANNIBAL MO, 63401n PHONE 314-221-2816 n FAX 314-221-3723

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Watlow Electric 316-42-15-1 manual Terminal Enclosures, Orientation / Mounting

316-42-15-1 specifications

Watlow Electric is known for its innovative solutions in thermal management and advanced heating technologies. One of their notable products is the Watlow 316-42-15-1, an integral component designed for demanding industrial applications.

The Watlow 316-42-15-1 heater is constructed from high-quality materials, specifically suited for environments where durability and efficiency are paramount. The heater features a stainless steel housing, which offers excellent resistance to oxidation and corrosion. This characteristic makes it ideal for use in industries such as food processing, pharmaceuticals, and chemical manufacturing, where exposure to harsh conditions is common.

One of the main features of the Watlow 316-42-15-1 is its optimized heating element. Leveraging advanced technology, the heating element is engineered to provide uniform heat distribution, ensuring that the target medium is heated consistently. This uniformity is critical for processes that require precise temperature control, as it helps minimize temperature fluctuations that could compromise the quality of the end product.

Moreover, the 316-42-15-1 is designed with energy efficiency in mind. Its advanced thermal conductivity allows for quick heating times, reducing energy consumption while enhancing operational effectiveness. This efficiency is further complemented by a built-in thermocouple well, which facilitates accurate temperature monitoring and ensures that the system can respond swiftly to changes in temperature.

Another notable characteristic of this heater is its versatility. The Watlow 316-42-15-1 is available in various configurations, making it suitable for a wide range of applications. With customizable lengths, watt densities, and power ratings, this heater can be tailored to meet specific operational requirements, ensuring optimal performance in diverse settings.

In addition to its impressive physical attributes, the Watlow 316-42-15-1 boasts advanced control capabilities. It can be integrated easily with various control systems, providing users with real-time feedback and precise control over their heating processes. This integration is essential for maintaining compliance with industry standards and ensuring the safety of operations.

In conclusion, the Watlow Electric 316-42-15-1 is a robust and efficient heating solution designed for industrial applications that demand reliability and performance. Its stainless steel construction, advanced heating technology, energy efficiency, and versatility make it an excellent choice for businesses looking to optimize their heating processes. By investing in the 316-42-15-1, companies can enhance productivity, ensure product quality, and maintain operational excellence.