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IPEX XFR 526539 Image 1

IPEX XFR 526539 3X2 HXHXHXH PVC CROSS

MFR Part #: 526539
SKU #: 1030361
Brand: IPEX®
UPC: 622454417458
System XFR® 526539 Reducing Double Sanitary Tee, 3 in Hub x 3 in Hub x 2 in Hub x 2 in Hub, PVC, Dark Gray, SCH 40
Commercial, Industrial, Residential, Above Ground and Underground Applications
cULus S102.2 | CSA B181.2 | cWH Intertek Listed

System XFR® Reducing Double Sanitary Tee, Tee Fitting, 3 in Connection Size 1, Connection Type 1: Hub, 3 in Connection Size 2, Connection Type 2: Hub, Connection Size 3: 2 in, Connection Type 3: Hub, Connection Size 4: 2 in, Connection Type 4: Hub, Hub|Hub|Hub|Hub Connection, PVC, Material Construction: PVC, Dark Gray, SCH 40

Installed in a vertical System XFR piping system, this hub ended Tee creates a smooth transition from two horizontal branch lines.

Product Details

System XFR® Reducing Double Sanitary Tee, Tee Fitting, 3 in Connection Size 1, Connection Type 1: Hub, 3 in Connection Size 2, Connection Type 2: Hub, Connection Size 3: 2 in, Connection Type 3: Hub, Connection Size 4: 2 in, Connection Type 4: Hub, Hub|Hub|Hub|Hub Connection, PVC, Material Construction: PVC, Dark Gray, SCH 40

Installed in a vertical System XFR piping system, this hub ended Tee creates a smooth transition from two horizontal branch lines.

Attributes

Connection TypeHub|Hub|Hub|Hub
Nominal Size3 x 2 in
ColorDark Gray
Connection Size 13 in
Connection Size 23 in
Connection Size 32 in
Connection Size 42 in
Connection Type 1Hub
Connection Type 2Hub
Connection Type 3Hub
Connection Type 4Hub
Fitting TypeTee
MaterialPVC
Material ConstructionPVC
Schedule RatingSCH 40

Features

  • When tested to the CAN/ULC S102.2 Standard, System XFR achieved a Flame Spread Rating of not greater than 25 and a Smoke Developed Classification of not greater than 50
  • Meets National and Provincial Building Codes for high buildings, air plenums, noncombustible construction and penetrating a rate fire separation
  • High impact strength in cold temperatures, exceeding CSA requirements
  • Improved flow rates
  • Lower thermal conductivity can reduce or eliminate the need for insulation