FURON®
HGVM VALVE
2-WAY PNEUMATIC
2" ORIFICE
Furon HGVM Pneumatic Valves offer a reliable means of
handling large volumes of aggressive or ultrapure chemistries.
Engineered from virgin PTFE, injection molded PFA and
other engineered thermoplastics, Furon HGVM valves offer
the highest Cv flow factors of any fluoropolymer valve of
its size. Our patented PTFE rolling diaphragm is ideal for
use in high back pressure conditions which are commonly
found in Bulk Chemical Delivery Systems. In-line fluid ports
and a fully swept internal flow path support maximum
flow efficiency. The manually-actuated version features a
large, ergonomically designed adjustment knob for ease of
operation while wearing cleanroom gloves. Furon HGVM
Valves also feature our time-proven O-ring Free Union end
connections, simplifying installation and eliminating the
potential for elastomeric contamination. As extra protection
against chemical leakage, our 2” HGVM Valves incorporate a
no “O-Ring” double seal union which provides a secondary
sealing surface and locking design feature.
FURON®
HGVM VALVE
2-WAY MANUAL
2" ORIFICE
Furon HGVM Manual Valves offer a reliable means of
handling large volumes of aggressive or ultra-pure
chemistries. Engineered from virgin PTFE, injection molded
PFA and other engineered thermoplastics, Furon HGVM
valves offer the highest Cv flow factors of any fluoropolymer
valve of its size. Our patented PTFE rolling diaphragm is
ideal for use in high back pressure conditions, which are
commonly found in Bulk Chemical Delivery Systems. Inline
fluid ports and a fully swept internal flow path support
maximum flow efficiency. The manually-actuated version
features a large, ergonomically designed adjustment knob
for ease of operation while wearing cleanroom gloves.
They also feature our time-proven O-ring Free Union end
connections, simplifying installation and eliminating the
potential for elastomeric contamination and offer extra
protection against chemical leakage, which provides a
secondary sealing surface and locking design feature.