APOL12/16E 4 C3 Allicdata Electronics
Allicdata Part #:

APOL12/16E4C3-ND

Manufacturer Part#:

APOL12/16E 4 C3

Price: $ 26.44
Product Category:

Uncategorized

Manufacturer: Altech Corporation
Short Description: OVERLOAD RELAY - ECONOMY 10N-22N
More Detail: N/A
DataSheet: APOL12/16E 4 C3 datasheetAPOL12/16E 4 C3 Datasheet/PDF
Quantity: 1000
1 +: $ 24.03450
Stock 1000Can Ship Immediately
$ 26.44
Specifications
Series: *
Part Status: Active
Description

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The APOL12/16E 4 C3 is a high-efficiency, two-stage, single-phase thermal and energy recovery device, developed for small-scale industrial and commercial applications. The device simultaneously recovers both sensible and latent heat from two streams, while providing pressure drop of less than three inches w.c. This makes it ideal for applications driven by budgetary and/or airflow reduction considerations. Its design is based on a combination of physical and mathematical models and allows for close control of pressure levels, allowing for precise control of the recovered energy output.

Applications of APOL12/16E 4 C3

The APOL12/16E 4 C3 is ideally suited for industrial and commercial applications that demand precise control and high efficiency. It can be used for energy-intensive HVAC, process air-conditioning and process chilling applications. Additionally, it is perfect for environmental monitoring and air handling systems where pressure levels are important. It can be used in retrofit or greenfield installations and is able to integrate seamlessly with controls and other HVAC components.

Working principle of APOL12/16E 4 C3

The APOL12/16E 4 C3 works on the principle of latent and sensible heat transfer. Heat is extracted from one air stream and transferred to another air stream. Latent heat is transferred from the gas and Condensation of water vapors in the incoming air, resulting in an increased amount of heat transferred to the other air stream. This additional heat can then be used to lower the temperature of the air in the air-conditioning or chilling application. Furthermore, the APOL12/16E 4 C3 recovers static pressure that would be lost in other systems, resulting in decreased operating costs due to decreased fan energy.

Components of APOL12/16E 4 C3

The APOL12/16E 4 C3 consists of several key components, including an axial fan, two enthalpy wheels, two heat exchangers, ductwork, air filters, and various control elements. The axial fan is the primary source of airflow for the device and blows air into the two enthalpy wheels. The wheels contain a material that allows for the migration of heat, and the air inside them is cooled or warmed accordingly. The two heat exchangers then remove heat from the air stream, while the ductwork allows for the air to be directed to the desired location. Air filters are used to help ensure the quality of the air and control elements are used for the regulation of pressure levels.

Advantages of APOL12/16E 4 C3

The APOL12/16E 4 C3 has a number of advantageous features. Firstly, the device provides an increased level of energy efficiency compared to other systems due to its latent and sensible heat transfer process. It also has a lower pressure drop compared to other systems, meaning that fan energy is conserved and operating costs are reduced. Additionally, the device has a wide range of control capabilities, allowing operators to precisely control the recovered energy output. This makes the APOL12/16E 4 C3 ideal for users who require precise control and high-efficiency levels.

Conclusion

The APOL12/16E 4 C3 is a high-efficiency, two-stage, single-phase thermal and energy recovery device, designed for small-scale industrial and commercial applications. Its latent and sensible heat transfer process allows for increased energy efficiency and improved operating costs. Furthermore, the device has a wide range of control capabilities, allowing users to precisely control the recovered energy output. This makes the APOL12/16E 4 C3 ideally suited for industrial and commercial applications that demand precise control and high efficiency.

The specific data is subject to PDF, and the above content is for reference

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