Heavy stainless steel & thermoplastic shift knob
Heavy stainless steel & thermoplastic shift knob
Customize the look and feel of your interior
Weighing in at approximately 235 grams, the added inertial mass makes shifting effort substantially less while speeding up the process at the same time.
Decrease shifting effort with this weighted shift knob
Build your own 917 race car inspired layered shift knob!
Weighing in at approximately 215 grams the added inertial mass makes shifting effort substantially less while speeding up the process at the same time.
Weighing in at approximately 235 grams the added inertial mass makes shifting effort substantially less while speeding up the process at the same time.
Heavy stainless steel & thermoplastic shift knob
6 speed logo coin for your BFI weighted shift knob!
For GS1, GS2, and GSB shift knobs only. Does not fit GSA shift knobs.
1.875" CNC machined billet aluminum shift knob
This product was last offered at the strikethrough price on
09-01-2026
Chrome bezel surrounding shift lever
For vehicles with 5-speed automatic transmission only
MSRP stands for Manufacturer's Suggested Retail Price. This is the suggested retail price provided by the manufacturer, supplier or seller.
This product was last offered at the strikethrough price on
08-31-2026
Compliment your BFI shift knob with a custom shift boot made from the finest materials available
Requires a 1-2 week build time if not in stock - For vehicles with elastic base shift boot only
Weighing in at approximately 235 grams, the added inertial mass makes shifting effort substantially less while speeding up the process at the same time.
Weighing in at approximately 235 grams, the added inertial mass makes shifting effort substantially less while speeding up the process at the same time.
Weighing in at approximately 235 grams, the added inertial mass makes shifting effort substantially less while speeding up the process at the same time.
Weighing in at approximately 235 grams, the added inertial mass makes shifting effort substantially less while speeding up the process at the same time.