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Inert Gas Sampling Syringe Valve, Hamilton Company
Inert Gas Sampling Syringe Valve, Hamilton Company
Catalog # 65510-025
Supplier:  Hamilton
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Inert Gas Sampling Syringe Valve, Hamilton Company
Catalog # 65510-025
Supplier:  Hamilton
Supplier Number:  86580
Restricted Products: To process your orders without delay, please provide the required business documentation to purchase this product.

To order chemicals, medical devices, or other restricted products please provide ID that includes your business name & shipping address via email [email protected] or fax 484.881.5997 referencing your VWR account number. Acceptable forms of ID are:

  • • State issued document with your organization's Federal Tax ID Number
  • • State issued document with your organization's Resale Tax ID Number
  • • City or County issued Business License
  • • State Department of Health Services License
  • • Any other ID issued by the State that includes the business name & address

* ATTN: California Customers may require additional documentation as part of the CA Health & Safety Code. Products that fall under this regulation will be placed on a mandatory 21-day hold after documentation is received. Avantor will not lift restrictions for residential shipping addresses.

Specifications

  • Description:
    Hamilton Inert Gas Sampling Syringe Valve
  • Cat. No.:
    65510-025
  • Supplier no.:
    86580

Specifications

About this item

Hamilton Company offers the most comprehensive selection of standard and custom syringes and accessories in the industry

The Hamilton MTB Sampling Valve is a lever-actuated on/off valve used for storing and transporting samples in any Gastight® PTFE-Luer Lock (TLL) or Luer Tip (LT) syringe. Convert any TLL or LT syringe into a SampleLock™ syringe using this simple accessory. The syringe attaches to the female luer lock connection leaving the male luer open for connection to any Kel-F® hub. The valves are pressure tested to 100 psig and are autoclavable. The bore I.D. is .039.

Each is manufactured to achieve the highest level of accuracy and precision possible.