Parker
Parker P-967 Filter Dryer Core Shell 14 13/16 in L hvac control
Replacement steel filter shell for CFC, HCFC and HFC refrigerants with 7/8 in solder connections
- Parker P-967 model ensures precise refrigerant filtration
- Steel shell construction provides durability for HVAC systems
- Compatible with CFC, HCFC and HFC refrigerants
- 7/8 inch connection size fits standard solder installations
- Designed for two cores to maintain efficient moisture removal
HVAC Filter Dryer Core Shell
The Parker P-967 is a replacement filter shell designed for HVAC systems using CFC, HCFC and HFC refrigerants. It suits technicians who need a reliable steel housing for refrigerant filtration during service or installation.
Steel construction with solder connections
Built from steel, the shell withstands system pressures and resists corrosion in refrigerant circuits. Two core positions and a 7/8 inch solder connection size allow secure, leak-free integration into existing pipework without flare fittings.
Two-core capacity defines compatibility
The unit accepts exactly two filter cores, so it matches systems specified for that capacity. Verify the core count and connection diameter before ordering, as shells with different core counts or port sizes will not interchange.
Highlights
- Parker P-967 model ensures precise refrigerant filtration
- Steel shell construction provides durability for HVAC systems
- Compatible with CFC, HCFC and HFC refrigerants
- 7/8 inch connection size fits standard solder installations
- Designed for two cores to maintain efficient moisture removal
Specifications
| Brand | PARKER |
|---|
Questions about this item
What connection size does the P-967 filter shell use?
The P-967 filter shell uses a 7/8 inch solder connection for refrigerant line attachment.
What are the physical dimensions and core capacity of this shell?
The shell measures 14 13/16 inches in length and houses two filter dryer cores.
How is the P-967 installed and what is a common mistake?
It is installed by soldering the 7/8 inch connections; a common mistake is overheating the shell during brazing, which can damage internal components.
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