Description
The Parker-Sporlan 4267-00 R26E64M is a normally closed (NC) refrigeration solenoid valve designed for precise, dependable flow control in commercial and industrial HVAC/R systems. Engineered by Parker-Sporlan — a trusted leader in refrigeration controls — this valve is built to open only when energized, making it the ideal choice for applications where a fail-safe closed position is required upon loss of power.
Product Overview
The R26E64M features a 1/2″ ODF (Outside Diameter Flare/Solder) connection, making it compatible with standard copper tubing used throughout refrigeration and air conditioning systems. As a normally closed valve, it remains shut in its de-energized state, preventing refrigerant flow until the coil is energized — a critical safety feature for system protection and energy efficiency.
Key Features
- Normally closed (NC) operation — valve closes automatically when de-energized
- 1/2″ ODF connection for easy integration with standard copper tubing
- Parker-Sporlan quality construction for long service life and reliable performance
- Designed for use with common refrigerants in HVAC/R applications
- Compact, serviceable design suitable for commercial and industrial installations
- Replaceable coil design for simplified field maintenance
Typical Applications
- Liquid line solenoid valve service in refrigeration systems
- Commercial refrigeration cases and walk-in coolers/freezers
- Air conditioning and heat pump systems
- Pump-down cycle control
- Compressor protection and refrigerant flow management
Why Choose Parker-Sporlan?
Parker-Sporlan has been a cornerstone of the refrigeration controls industry for decades, delivering precision-engineered components trusted by HVAC/R professionals worldwide. The R26E64M solenoid valve upholds this legacy with robust construction, consistent performance, and compatibility with a wide range of refrigerants and system configurations.
Order the Parker-Sporlan 4267-00 R26E64M solenoid valve from Jackson Systems and keep your refrigeration system running at peak efficiency.







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