Parker Legris LF3000 8mm - 1/4''Bspp Double Banjo Bodies
Overview
The Parker Legris LF3000 8mm–1/4" BSPP double banjo body is a 90° elbow fitting designed for pneumatic and low-pressure fluid applications in automotive and chemical processing environments.
These push-to-connect fittings offer reliable, leak-free connections without tools or special training, making them ideal for rapid assembly and maintenance in instrumentation and process air systems. The technical polymer body with stainless steel gripping ring and NBR seals delivers robust performance across a wide operating range from −20 °C to +80 °C, whilst the vacuum rating of 755 mm-Hg suits both positive and negative pressure circuits. The 8 mm tube connection pairs with a G 1/4 BSPP port, enabling seamless integration into existing pneumatic networks.
Supplied in boxes of 10 units, these fittings serve industrial automation, food and beverage processing, and general instrumentation air distribution systems.
Specifications
| Connection 2 Type | n/a |
|---|---|
| Industry | Chemicals Processing |
| Connection 1 Type | Tube |
| Product Series | LF 3000® |
| Maximum Operating Temperature | 80 °C |
| For Fluid Type | Other Fluids: Please Consult Us |
| Brand | Parker |
| Application | Automotive |
| Product Type | Pneumatic Push-In Fittings - LF 3000® |
| Product Style | Banjo |
| Hex Size | n/a |
| Gripping Ring Material | Stainless Steel |
| Body Material | Technical Polymer |
| Seal Material | NBR |
| Minimum Operating Temperature | -20 °C |
| Vacuum Pressure Rating | 755 mm-Hg |
| Technology | Fluid & Gas Handling |
| Shape | Elbow 90° |
| Connection 1 Size | 8 mm (O.D.), 5/16" |
| Division | Low Pressure Connectors Europe Division |
| Connection 2 Size | G 1/4 |
| Hex Type | n/a |
| Quantity per Box | 10 |
| Weight | 0.013 kg |
| Configuration | n/a |
Documents
Enquire about this part
The fastest way to get a price on this SKU is to email our quote desk — your reply lands with an engineer within 4 business hours.
Email a quote request Or use the quote form →