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 215 grams the added inertial mass makes shifting effort substantially less while speeding up the process at the same time.
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 225 grams the added inertial mass makes shifting effort substantially less while speeding up the process at the same time.
Replace the BFI crest on your BFI weighted shift knob with the Black Chrome version!
For GS1, GS2, and GSB shift knobs only. Does not fit GSA shift knobs.
Raise your GS1 or GS2 shift knob up to a near stock height
Replace the BFI crest on your BFI weighted shift knob with the red version!
For GS1, GS2, and GSB shift knobs only. Does not fit GSA shift knobs.
A simple solution for fastening your GS style shift knob to your selector lever.
Replace the BFI crest on your BFI weighted shift knob with the Orange version!
Replace the damaged or missing BFI crest on your BFI weighted shift knob
For GS1, GS2, and GSB shift knobs only. Does not fit GSA shift knobs.
Replace the damaged or missing BFI crest on your BFI weighted shift knob
For GS1, GS2, and GSB shift knobs only. Does not fit GSA shift knobs.
The upholstered cousin to the GS3 shift knob, an ergonomic design inspired by Porsche.
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 215 grams the added inertial mass makes shifting effort substantially less while speeding up the process at the same time.
Just because your car doesn't have a third pedal, doesn't mean you should be stuck with some goofy shifter.
The upholstered cousin to the GS3 shift knob, an ergonomic design inspired by Porsche.
Weighing in at approximately 215 grams the added inertial mass makes shifting effort substantially less while speeding up the process at the same time.