Description
Copeland Model H100 Filter Drier Core — SKU 089338
The Copeland 089338 Filter Drier Core (Model H100) is a professional-grade replacement core engineered for demanding refrigeration and air conditioning applications. With a generous 100 cubic inch capacity, this core delivers superior moisture and acid removal performance, helping protect compressors and system components from contamination-related damage.
High Acid & Water Removal
Designed specifically for high acid and water removal scenarios, the H100 core is the go-to solution when system contamination is a concern — such as after a compressor burnout or when moisture ingress has occurred. Its advanced desiccant media aggressively captures both free and dissolved moisture as well as harmful acids before they can damage downstream components.
CFC & HCFC Refrigerant Compatibility
The Copeland 089338 core is fully compatible with CFC (chlorofluorocarbon) and HCFC (hydrochlorofluorocarbon) refrigerants, making it a versatile choice for servicing a wide range of legacy and current refrigeration and HVAC systems.
Key Features
- 100 cubic inch desiccant core capacity
- Engineered for high acid and water removal applications
- Compatible with CFC and HCFC refrigerants
- Ideal for post-burnout cleanup and moisture-contaminated systems
- Replacement core designed to fit compatible Copeland filter drier shells
- Helps protect compressors and system components from acid and moisture damage
- Model H100 — Copeland SKU 089338
Applications
- Post-compressor burnout system cleanup
- Refrigeration systems with moisture or acid contamination
- Commercial and residential HVAC systems using CFC or HCFC refrigerants
- Preventive maintenance on older refrigerant systems
Why Choose the Copeland H100 Core?
Copeland is a trusted name in refrigeration and HVAC, and the H100 core upholds that reputation with reliable, high-capacity filtration. By removing acids and moisture at the source, this core extends compressor life, reduces service callbacks, and helps maintain system efficiency over the long term.







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