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Armstrong Fluid Technology 571110LF-345 Valve

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Armstrong Fluid Technology 571110LF-345 Valve

This item is not eligible for free shipping.

Valve, Circuit Balancing, 2" NPT, Brass Body with EPDM Elastomers, 15.50-81.92 gpm Flow Rate Range, Circuit Balancing Valve with PT Ports rated at 300 psi maximum working pressure and -4 to 300 degree F operating temperature (Model CBV200VTCR)

571110LF-345 is the direct replacement for 571110-345

Armstrong Fluid Technology 571110LF-345 Circuit Balancing Valve – 2" NPT Brass Body with EPDM Elastomers (Model CBV200VTCR)

Optimize hydronic system performance with the Armstrong Fluid Technology 571110LF-345 Circuit Balancing Valve, a precision-engineered solution for efficient flow control and system balancing. Designed for commercial and industrial HVAC applications, this 2-inch NPT brass valve provides dependable operation and easy adjustment for accurate circuit balancing.

Key Specifications:

  • Model: CBV200VTCR

  • Size & Connection: 2" NPT

  • Material: Durable brass body with EPDM elastomers

  • Flow Rate Range: 15.50 to 81.92 GPM

  • Maximum Working Pressure: 300 PSI

  • Operating Temperature Range: -4°F to 300°F (-20°C to 149°C)

  • Ports: Integrated PT ports for simplified measurement and maintenance

Features & Benefits:

  • Precision circuit balancing ensures optimal hydronic performance and energy efficiency.

  • Heavy-duty brass construction with EPDM elastomers offers excellent corrosion and chemical resistance.

  • Wide temperature tolerance makes it ideal for chilled water and hot water applications.

  • Integrated PT ports allow easy pressure and temperature monitoring without system disruption.

Perfect for commercial HVAC, chilled water systems, and heating loops, the Armstrong 571110LF-345 circuit balancing valve delivers consistent flow control and long-lasting reliability.

Upgrade your system with this genuine Armstrong Fluid Technology balancing valve to enhance efficiency, reduce energy costs, and maintain precise hydronic balance.

$166.66

Original: $555.53

-70%
Armstrong Fluid Technology 571110LF-345 Valve

$555.53

$166.66

Product Information

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Description

This item is not eligible for free shipping.

Valve, Circuit Balancing, 2" NPT, Brass Body with EPDM Elastomers, 15.50-81.92 gpm Flow Rate Range, Circuit Balancing Valve with PT Ports rated at 300 psi maximum working pressure and -4 to 300 degree F operating temperature (Model CBV200VTCR)

571110LF-345 is the direct replacement for 571110-345

Armstrong Fluid Technology 571110LF-345 Circuit Balancing Valve – 2" NPT Brass Body with EPDM Elastomers (Model CBV200VTCR)

Optimize hydronic system performance with the Armstrong Fluid Technology 571110LF-345 Circuit Balancing Valve, a precision-engineered solution for efficient flow control and system balancing. Designed for commercial and industrial HVAC applications, this 2-inch NPT brass valve provides dependable operation and easy adjustment for accurate circuit balancing.

Key Specifications:

  • Model: CBV200VTCR

  • Size & Connection: 2" NPT

  • Material: Durable brass body with EPDM elastomers

  • Flow Rate Range: 15.50 to 81.92 GPM

  • Maximum Working Pressure: 300 PSI

  • Operating Temperature Range: -4°F to 300°F (-20°C to 149°C)

  • Ports: Integrated PT ports for simplified measurement and maintenance

Features & Benefits:

  • Precision circuit balancing ensures optimal hydronic performance and energy efficiency.

  • Heavy-duty brass construction with EPDM elastomers offers excellent corrosion and chemical resistance.

  • Wide temperature tolerance makes it ideal for chilled water and hot water applications.

  • Integrated PT ports allow easy pressure and temperature monitoring without system disruption.

Perfect for commercial HVAC, chilled water systems, and heating loops, the Armstrong 571110LF-345 circuit balancing valve delivers consistent flow control and long-lasting reliability.

Upgrade your system with this genuine Armstrong Fluid Technology balancing valve to enhance efficiency, reduce energy costs, and maintain precise hydronic balance.