Pressure-Reducing Regulators (KPR Series)
The KPR series is a compact regulator with excellent accuracy, sensitivity, and set-point pressure stability.
Features
- Convoluted, nonperforated diaphragm
- Metal-to-metal diaphragm seal
- Low internal volume
- Two-piece cap design provides linear load on the diaphragm seal
- High-flow, dual-gauze type filter in inlet ports
Two-Stage Diaphragm-Sensing, Pressure-Reducing Regulators (KCY Series)
The KCY series is designed for use in applications requiring constant outlet pressure even with wide variations in inlet pressure. This two-stage arrangement minimizes the supply-pressure effect caused by fluctuating inlet pressure, such as with a depleting gas cylinder. As inlet pressure drops below the setting of the first stage, the regulator then functions as a single-stage regulator. The first-stage pressure setting can be reduced while monitoring the pressure at the interstage port, but lower flow may result.
Features
- Convoluted, nonperforated diaphragm
- Metal-to-metal diaphragm seal
- Excellent set-point stability
- High-flow, dual-gauze type filter in inlet ports
High-Sensitivity Diaphragm-Sensing, Pressure-Reducing Regulators
(KLF Series)
The KLF series provides high-sensitivity pressure control of gases or liquids with minimum droop in both low-flow and low-pressure applications.
Features
- Large-diameter convoluted, nonperforated diaphragm for increased pressure sensitivity
- Metal-to-metal diaphragm seal
- High-flow, dual-gauze type filter in inlet ports
High-Flow, High-Sensitivity Diaphragm-Sensing, Pressure-Reducing Regulators (KHF Series)
The KHF series combines the high-flow capabilities of a bulk distribution regulator with the high sensitivity and accuracy of a point-of-use regulator.
Features
- Large-diameter convoluted, nonperforated diaphragm for increased pressure sensitivity
- Metal-to-metal diaphragm seal
- High-flow, dual-gauze type filter in inlet ports
Compact, Piston-Sensing, Pressure-Reducing Regulators (KCP Series)
The KCP series is a compact, piston-sensing pressure regulator with a short stroke to minimize wear in high-cycling applications.
Features
- Low internal volume
- Fully contained piston
- High-flow, dual-gauze type filter in inlet ports
- ANSI/ISA 76.00.02-compliant modular platform component (MPC) configuration available; MPC platform regulator does not contain a filter
Medium- to High-Pressure Piston-Sensing, Pressure-Reducing Regulators
(KPP Series)
The KPP series meets the demands of a wide range of gas or liquid applications in a lightweight, compact installation footprint. These features make the KPP pressure regulator an ideal pressure control solution within high-density OEM equipment.
Features
- Lightweight, compact design
- Live-loaded body seals
- Low internal volume
- High-flow, dual-gauze type filter in inlet ports
High-Flow Piston-Sensing, Pressure-Reducing Regulators (KPF Series)
The KPF series provides minimum droop across the flow range with high accuracy of outlet pressure.
Features
- High flow coefficient
- Balanced poppet for minimal supply pressure effect
- High-flow, dual-gauze type filter in inlet ports
High-Pressure Piston-Sensing, Pressure-Reducing Regulators (KHP Series)
The KHP series self-venting capability enables downstream pressure reduction in closed-loop systems.
Features
- Thrust roller bearing eases operation
- Panel-mounting configuration available
- High-flow, dual-gauze type filter in inlet ports
High-Pressure Piston-Sensing, Hydraulic Pressure-Reducing Regulators
(KHR Series)
The KHR series provides control of pressures for both liquid and gas applications. Metal or polymer seats are available.
Features
- Self-venting
- Captured vent port in bottom of body
- Panel-mounting configuration available
- Thrust roller bearing eases operation
- High-flow, dual-gauze type filter in inlet ports
Learn more about our regulators and services
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"Safe Product Selection:
The complete catalog contents must be reviewed to ensure that the system designer and user make a safe product selection. When selecting products, the total system design must be considered to ensure safe, trouble-free performance. Function, material compatibility, adequate ratings, proper installation, operation, and maintenance are the responsibilities of the system designer and user.
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