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210-0309 - Miller Smith 210 Series Silverline High Purity Regulator, CGA 580, 0-15 PSIG

Packaging: 1 per ea
$934.84/ea $565.70/1 per ea only $565.70/eaSave 39%

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OVERVIEW

Rugged Reliability for Specialty Gases

The Miller Smith 210-03-09 Silverline Regulator represents the gold standard in single-stage high purity gas control. Built for professionals who demand reliability, this regulator combines the heavy-duty construction Miller Smith is known for with the refined precision required for specialty gas applications. The unit features a solid brass bar stock body and bonnet, fully plated to resist corrosion and wear in tough industrial or laboratory environments. Whether you are setting up a test bench or managing process gases, the 210 Series delivers consistent flow and pressure control you can trust.

What sets the 210-03-09 apart is its internal construction designed to preserve gas purity. It utilizes a stainless steel diaphragm rather than a rubber one, ensuring that there is no inboard diffusion of atmospheric contaminants and no contamination of the gas stream from the regulator itself. This is critical when working with high-purity inert gases connected via the CGA 580 inlet. The regulator is rated for a maximum inlet pressure of 3500 PSIG and provides a precise delivery range of 0-15 PSIG, making it ideal for sensitive downstream equipment that requires low, stable pressure.

In addition to its robust build, the Miller Smith 210-03-09 is designed with practical features for the end-user. The filtered seat design prevents debris from compromising the seal, ensuring a leak-tight shutoff and long-term reliability. The regulator handles vacuum purging operations without issue, a necessary feature for maintaining system purity during cylinder changeouts. Large 2-1/2 inch gauges provide clear visibility of pressure status, and the rear-panel mounting taps offer flexible installation options for custom setups. Backed by Miller's reputation for quality, this regulator is a dependable investment for any facility handling specialty gases.

Features & Benefits

  • Stainless Steel Diaphragm: Prevents contamination and ensures precise control.
  • Plated Brass Construction: Offers durability and corrosion resistance.
  • Filtered Seat: Protects internal components and extends service life.
  • High Inlet Rating: Safe for use with cylinders up to 3500 PSIG.
  • Safety Valve: Built-in capturable relief valve for enhanced safety.
Additional Information
Brand:Smith Equipment
Packaging Description:1 Per Ea
Series:210 Silverline
Gas Service:Inert Gas, High Purity Gas
Inlet Connection:CGA 580
Delivery Pressure Range:0-15 PSIG
Max Inlet Pressure:3500 PSIG
Diaphragm Material:Stainless Steel
Body Material:Plated Brass
Stage Type:Single Stage

INCLUDED

  • 1x Miller Smith 210-03-09 Silverline Regulator
  • 1x Owner's Manual

APPLICATIONS

  • Instrument Analysis
  • Automotive Emissions Testing
  • Biological Laboratories
  • Chemical Process Plants
  • Gas Chromatography
  • Research and Development

FAQ

The Miller Smith 210-03-09 has a delivery pressure range of 0-15 PSIG, making it suitable for low-pressure analytical applications.

This regulator is equipped with a CGA 580 inlet connection, which is standard for inert gases such as Argon, Nitrogen, and Helium.

The diaphragm is made of stainless steel. This ensures no contamination of the gas stream and prevents inboard diffusion of atmospheric impurities.

No, the Miller Smith 210 Series Silverline regulators are designed for high purity, non-corrosive gases. Using them with corrosive gases can damage the brass body.

The regulator is rated for a maximum inlet pressure of 3500 PSIG.

Yes, it features a built-in capturable preset safety relief valve to protect against over-pressurization.

The filtered seat traps particulates before they reach the sealing surface, which helps maintain gas purity and significantly extends the service life of the regulator.

This is a single-stage regulator, designed for applications where precise control of delivery pressure is needed but the inlet pressure decay compensation of a two-stage regulator is not critical.