Skip to main content

Holley H300-113

Holley 300-113 - Ls3 Hi-Ram, Intake Manifold Carb, 2 X 41

SKU: H300-113

$1,181.95
(No reviews yet) Write a Review

Carbureted Hi-Ram Intake, 2 x 4150™ (sideways and inline mounting)

Adding to cart… The item has been added
IN STOCK

Description

The Holley GM LS3/L92 Modular Hi-Ram Intake Manifold is introduced as a cost-effective alternative to fabricated sheet-metal for high-performance applications where induction system height is not limited. Coupling this Hi-Ram intake with the high flowing LS3/L92 style cylinder heads has outstanding potential for N/A and forced induction applications at a budget-minded cost. Aggressive, bold, race-bred styling will make bad intentions clear for drag race, muscle car, marine, off-road, sandrails, pulling trucks, track, street-rod applications, and more!

  • The base is designed to be modular in configuration to accept a wide range of carbureted and EFI tops and to be attractive to builders and fabricators as the foundation for custom induction systems.
  • Runner length and the tapered cross-section designed to perform well for a wide range of engine configurations
  • Cast aluminum construction.
  • Intended for use on N/A or forced induction engines in the 6.0 to 7.0+ liter range, max power at 7000-8000+RPM.

Features:

  • Runner Length – 6.50”, As-Cast Runner Cross-Sectional Area – Tapered 4.25 in² to 2.77 in²
  • Plenum Top Gasket Type – 3/32” Round O-ring Cord
  • Mounting Flange Gasket Type – Standard LS3 Molded O-Ring
  • Port Size – 2.49” Height x 1.21” Wide
  • Base Plenum Top Mounting Flange Height – 8.42” to the lifter valley cover flange on engine block.
  • Height (Carbureted or EFI, 2x4V Top Mount & Blank) – 11.08” to the lifter valley cover flange on engine block.

Details

  • H300-113
  • H300-113
  • 090127670699
  • Holley
  • Will be special ordered for you.

Categories

Shipping Information

  • Item Requires Shipping
  • H12.60"
  • Ships within 1-2 business days

California Residents: Prop 65

WARNING: Cancer and Reproductive Harm -