DFC
DFC 18-25 Audi SQ5 Sportback Rear Sensor Wire - 341-74004
- SKU:
- DFC341-74004
- UPC:
- 190920241819
- MPN:
- 341-74004
- Availability:
- Regularly stocked product
Description
What is the purpose of DFC Sensor Wires?
DFC Sensor Wires deliver reliable brake pad wear monitoring, ensuring consistent performance even under extreme braking conditions for confident stopping power.
How do I install DFC Sensor Wires?
Install DFC Sensor Wires easily with a plug-and-play design, guaranteeing accurate feedback to prevent costly rotor damage.
DFC Sensor Wires accurately monitor pad wear levels up to 500 degrees Fahrenheit, ideal for track and autocross applications with a score of 9. These wires feature high temperature resistant materials and highly conductive electrodes for unparalleled reliability. Ensure confident stopping power with these premium brake hardware components.
Key Features
- High Temperature Resistant Materials
- Withstand High Operating Temperature Ranges
- Up To 500degF
- Highly Conductive Electrodes
- Accurately Monitor Pad Wear Level
- Meet The Same Form, Fit, And Function As OEM Brake Wear Sensors
Why Choose the DFC Sensor Wires
Delivers reliable brake pad wear monitoring for confident stopping power.
Ensures consistent performance even under extreme braking conditions.
Provides accurate feedback to prevent costly rotor damage.
Achieves seamless integration for a hassle-free replacement experience.
Who Is This For?
Track / Autocross — 9/10
High temperature resistance up to 500degF.
Racing Competition — 9/10
High temperature resistance up to 500degF.
Street Performance — 8/10
Accurate pad wear monitoring at high temperatures.
Daily Driving Comfort — 7/10
OEM replacement ensures proper function and comfort.
Easy DIY Install — 10/10
Plug-and-play install type.
High Speed Desert Running — 8/10
Withstands high operating temperature ranges.
Frequently Asked Questions
Will the DFC DFC Sensor Wires fit my vehicle?
Confirm fitment with your vehicle's specific make and model for guaranteed compatibility with DFC Sensor Wires. This ensures a precise integration designed for your automotive application. Achieve confident brake hardware replacement knowing the fitment is verified for your car.
How difficult is the DFC DFC Sensor Wires installation?
Installation is straightforward with the plug-and-play design of DFC Sensor Wires. This facilitates a hassle-free replacement experience, making it an easy DIY upgrade. Experience seamless integration for reliable brake pad wear monitoring.
What performance improvement does the DFC Sensor Wires provide over stock?
Experience improved performance with accurate pad wear monitoring, crucial for demanding driving conditions. Achieve a usage score of 9 for Track/Autocross, reflecting the high temperature resistance up to 500 degrees Fahrenheit. This ensures consistent performance even under extreme braking.
Is the DFC DFC Sensor Wires worth upgrading from OEM?
Upgrading to DFC Sensor Wires is valuable for enhanced brake performance and protection. The highly conductive electrodes accurately monitor pad wear, preventing costly rotor damage and ensuring confident stopping power. This provides a significant technical benefit over standard components.
What operating temperatures can DFC Sensor Wires withstand?
DFC Sensor Wires are engineered to withstand high operating temperature ranges, functioning reliably up to 500 degrees Fahrenheit. This robust construction ensures consistent performance in demanding environments. Benefit from accurate pad wear monitoring even under extreme heat.
Additional Resources
Important Notices
⚠️ Proposition 65 Warning: This product can expose you to chemicals including lead and/or other substances known to the State of California to cause cancer, birth defects, or other reproductive harm. For more information, visit www.P65Warnings.ca.gov.
Browse More: Shop All Brake Hardware — Brakes, Rotors & Pads
Additional Information
Case Lot Quantity: |
1 |
Category: |
Brakes, Rotors & Pads>Brake Hardware |
Clearance Item: |
N |
MPN: |
341-74004 |
Proposition 65: |
Y |