Krowne 22-610L 1.5 GPM Aerator 55/64-27 Female Thread Durable Construction
Delivery to:
- Streamlined water flow for high-volume kitchens
- Durable materials withstand frequent cleaning
- Precise 1.5 GPM flow optimizes efficiency
- View More Details
Best Price Guarantee
Best Price Guarantee
Secure Shopping
Secure Shopping
The Krowne 22-610L Aerator is a precision-engineered faucet part designed for commercial foodservice applications. Featuring a 55/64-27 female thread, this aerator effectively streamlines water flow to deliver 1.5 GPM, optimizing water efficiency and reducing waste in high-volume kitchen environments. Constructed from durable materials suitable for demanding foodservice operations, it ensures consistent performance and ease of maintenance, making it ideal for restaurant, cafeteria, and institutional settings where reliable water flow control is essential.
The Krowne 22-610L aerator offers precise water flow regulation with a 1.5 GPM output, ensuring efficient water usage. Its 55/64-27 female threading guarantees compatibility with a wide range of commercial faucets. Made from robust materials, it withstands frequent cleaning and commercial wear. The aerator is straightforward to install and maintain, supporting continuous workflow in high-traffic foodservice stations. Designed for seamless integration with standard faucet fittings, it enhances operational efficiency and minimizes downtime.
Suitable for installation on commercial sinks and faucets requiring precise aeration for foodservice sanitation and workflow efficiency.
The Krowne 22-610L aerator features a 55/64-27 female thread compatible with standard commercial faucet fittings. Constructed from durable, corrosion-resistant materials, it is engineered to withstand frequent use and cleaning routines typical of high-volume foodservice settings. The aerator delivers a flow rate of 1.5 GPM, ensuring efficient water distribution without sacrificing performance. It measures approximately [Insert dimensions if available], with a weight suited for easy handling during installation. Its design supports quick disassembly for cleaning and replacement, reducing maintenance time and facilitating hygiene compliance. Material safety and compatibility with commercial plumbing ensure seamless integration into existing water systems, making it well-suited for restaurant, cafeteria, and institutional kitchen applications—ideal for flow control in food prep and sanitation stations.
A commercial faucet aerator is a component installed at the end of a faucet spout to regulate water flow, reduce splashing, and improve water efficiency. The Krowne 22-610L aerator is designed for use in high-traffic foodservice environments, providing consistent flow control with a flow rate of 1.5 GPM. Compatible with 55/64-27 female threads, it is suitable for various restaurant, cafeteria, and institutional sink faucets, supporting sanitation standards and workflow efficiency in mid-volume operations.
Designed for medium-volume foodservice environments, the Krowne 22-610L aerator features robust construction and precise flow control, ideal for restaurant kitchens and institutional settings. Manufactured by Krowne, model 22-610L provides reliable performance, easy maintenance, and compatibility with standard faucet fittings—supporting efficient sanitation and water management in busy commercial kitchens.
Why choose the Krowne 22-610L aerator over similar models? Its durable, corrosion-resistant construction ensures long-term reliability, while the precise 1.5 GPM flow rate supports water conservation without compromising performance. The universal 55/64-27 female thread allows easy integration with a wide range of commercial faucets, reducing installation time. Its straightforward design simplifies routine maintenance, ensuring continuous workflow in busy foodservice facilities. This model’s compact, robust build makes it a dependable choice for restaurant, cafeteria, and institutional kitchens seeking efficient flow control and minimal downtime.
Product Description
From the manufacturer
