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JOHN GUEST PI480823S Image 1

JOHN GUEST P1480823S 1/4 X 3/8 NPTF FIXED ELBOW

MFR Part #: PI480823S
SKU #: 1019386
Brand: RWC | John Guest®
UPC: 665626056468
John Guest® PI480823S Reducing Rigid Elbow, 1/4 in Push-Fit x 3/8 in MNPTF, Plastic
FM01977 Approved|WRAS Approved

John Guest® Reducing Rigid Elbow, 90 deg Elbow Fitting, 1/4 in Connection Size 1, Connection Type 1: Push-Fit, 3/8 in Connection Size 2, Connection Type 2: MNPTF, Push-Fit|MNPT Connection, Plastic, Material Construction: Plastic, Gray, 70 deg F

PI fittings offered in sizes 5/32 to 5/8 in are manufactured in gray acetal copolymer, making them especially suitable for applications involving foodstuffs and potable liquids. They are however equally suitable for air and inert gases and can be used on N2/CO2 (Installed in accordance with The British Beer and Pub Association Code of Practice) mixed gas dispense lines and in pneumatic applications and vacuum.

Product Details

John Guest® Reducing Rigid Elbow, 90 deg Elbow Fitting, 1/4 in Connection Size 1, Connection Type 1: Push-Fit, 3/8 in Connection Size 2, Connection Type 2: MNPTF, Push-Fit|MNPT Connection, Plastic, Material Construction: Plastic, Gray, 70 deg F

PI fittings offered in sizes 5/32 to 5/8 in are manufactured in gray acetal copolymer, making them especially suitable for applications involving foodstuffs and potable liquids. They are however equally suitable for air and inert gases and can be used on N2/CO2 (Installed in accordance with The British Beer and Pub Association Code of Practice) mixed gas dispense lines and in pneumatic applications and vacuum.

Attributes

Connection Type: Push-Fit|MNPT
Fitting/Connector Type: 90 deg Elbow
Nominal Size: 1/4 x 3/8 in
Color: Gray
Connection Size 1: 1/4 in
Connection Size 2: 3/8 in
Connection Type 1: Push-Fit
Connection Type 2: MNPTF
Fitting Type: 90 deg Elbow
Material: Plastic
Material Construction: Plastic
Temperature Rating: 70 deg F

Features

  • Quick disconnection without the need for tools
  • Suitable for air or inert gases
  • Superior flow characteristics