Copeland H 48 Universal Replacement Filter Core

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H-48 Universal Replacement Filter Core, Used in STAS Shells, 48″ Cubic Unit Size, Suitable for all CFC and HCFC Refrigerants, High Acid and Water Removal

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Description

Features

  • The brand is Copeland.
  • STAS uses 48 cubic inch cores.
  • All CFC and HCFC refrigerants can be used.
  • High Water Removal and Acidity.
  • Water capabilities to match particular system circumstances.
  • High Absorbance of Moisture Core Drier.
  • Combination of activated carbon for removal of wax and soluble contaminants.
  • The compressor is shielded from both liquid and solid impurities by this filter core.
  • It has excellent powers to remove wax and acid, ensuring effective cleanup outcomes.
  • Superior acid capabilities to properly clean up after a compressor burnout or for regular system protection.

An essential part of air conditioning and refrigeration systems, the Copeland H 48 Universal Replacement Filter Core is made to guarantee dependable and effective operation. This filter core is essential to preserving the system’s air quality and avoiding contamination.

It protects the refrigeration system and its components by catching and adsorbing water particles and dangerous solid substances. It prevents them from cycling through the system and entering the compressors, valves, sensors, and so on. The universal replacement filter core allows the system to operate at peak efficiency.

A system with water adsorption and drying effect produces acid, which is assisted in being absorbed by the active alumina and carbon added to this filter core. It is the ideal core for a filter. Now, let’s explore more about the working, pros and cons, and applications of the universal core in this post.

The Function of Filter Core

A filter core has two important functions. First, it adsorbs system impurities such as water, which can create acids; and second, it provides physical filtering.

The primary purpose of a replacement filter core is to eliminate water from a refrigeration system. Water can originate from a variety of sources, including motor windings, system leaks, and trapped air from poor evacuation. This water can cause metallic components to corrode and freeze. Desiccants are used inside the filter core to reduce the amount of water in the system. Molecular sieves, activated alumina, and silica gel are the three types of desiccants that are most frequently employed.

A filter replacement core’s other primary purpose is filtration.

Surface and depth filtration are the two main types of mechanical filtering. The screen is the most basic type of surface filtering.

The screen captures particles larger than its holes. Layers of contaminants will eventually cover the screen, turning it into a depth filter. The fluid and impurity are forced to pass through the filter indirectly by depth filters.

Working Mechanism

The solid core filter collects big dirt particles. It is comparable to a sponge in that it can absorb and hold onto water. The refrigerant forces itself to flow through the core after entering and encircling its exterior.

There is a screen at the end of the core. The smaller dirt particles that would have been able to pass through the solid core are retained by this polyester mat. A perforated plate follows the screen; its purpose is to hold all interior components in place. The perforations in the plate allow refrigerant to pass through to the exit. 

After entering through the inlet, the refrigerant travels over the spring, into the solid core, where it absorbs dirt, moisture, and acids. It then gathers in the groove located in the center of the core before exiting through the screen. After being filtered and dried, it next travels through the perforated plate and out of the unit to reach the expansion valve.

Advantages

The following are some benefits of the core filter.

Effective Filtering

The core filter has a multi-layer filter design that allows it to efficiently filter a wide range of particles while also improving filtration and purification.

Prolonged Life

The filter element of the core filter is often built of high-quality materials, has a long service life, and may be cleaned or replaced multiple times before being reused.

Low-cost Maintenance

The expense of maintaining the core filter is comparatively modest, and it is possible to avoid regular maintenance and replacement by performing basic cleaning and filter element replacement.

Energy Conservation and Environmental Protection

The core filter’s efficient filtering can save energy while also protecting the environment by efficiently reducing the discharge of exhaust gas and wastewater.

Disadvantages

Core filters also have some drawbacks, such as:

Increased Cost

The core filter is more expensive than certain typical filters since it requires numerous layers of filter elements to provide superior filtering results.

Unfit for Some Types of Media

Certain media, like highly viscous liquids, can not be appropriate for core filters, even though core filters can filter a wide range of media.

Uses

  • Air conditioning systems for homes.
  • Units for commercial refrigeration.
  • Systems for industrial cooling.
  • HVAC systems, or heating, ventilation, and air conditioning, in different environments.

Final Words

Copeland provides a comprehensive solution to preserve the longevity and efficiency of refrigeration and air conditioning systems with the H 48 Universal Replacement Filter Core. This filter core is essential to protecting system components and maintaining optimal performance because of its capacity to remove water, solid contaminants, and acids. Its multi-layer construction and lengthy service life make it worth the extra money over ordinary filters. The Copeland H 48 Universal Replacement Filter Core is a dependable option for improving system performance and safeguarding the environment through effective filtration and energy conservation, whether in residential or industrial settings.

FAQs:

Replace all filter driers every two years or as recommended by the manufacturer.
The filter drier is normally situated in the liquid line, in the space between the expansion valve and the condenser. This well-chosen site guarantees that the refrigerant is filtered before entering the evaporative phase, following the compression and condensation processes.
Solid construction cores are made of molecular sieves or activated alumina for optimal moisture/acid removal and filtration across the whole temperature range.

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