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Pagid 355014141 Disc Brake Pad

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Pagid 355014141 Disc Brake Pad

Pagid
Brand:Pagid
Part Number: 355014141
UPC: 4082300358452
Weight: 9.22 lbs
Condition:New



Availability:
0 in Stock
 OUT OF STOCK

Product Information

Description:

Get the Pagid 355014141 Disc Brake Pad for your vehicle. Buy now and secure your purchase online!

At the heart of every European vehicle braking system is a high performance, low metallic brake pad. By design, HELLA PAGID's Low-Metallic pad formulation outperforms all other brands while addressing the lower hydraulic line pressure of most major European car brand braking systems. Autobahn stopping performance and confidence with every stop.

Features and Benefits:

  • Excellent fade stability and heat dissipation
  • HELLA PAGID brake pads are engineered to meet or surpass ECE-R90 requirements of all major European vehicle manufacturers.
  • Low compressibility maintains pedal feel regardless of temperature
  • Versatile compounds utilized in the manufacturing process offer a full spectrum of applications from the performance track to the street to airplanes.

Specifications:

Article number of recommended accessories:
8DZ 355 201-251
Brake System:
Teves
Friction Material Composition:
Low-Metallic
Height [mm]:
67,8
Pad Wear Sensor Included:
No
Prepared For Pad Wear Sensor:
Yes
Technical Information Number:
T1797
Thickness [mm]:
16,9
WVA Number:
23731
Wear Warning Contact:
prepared for wear indicator
Width [mm]:
139,7
AISIN #:
BPBM2017
BMW #:
2 449 286
BMW #:
34 21 6 775 342
BMW #:
34 21 6 790 966
BMW #:
34 21 6 793 025
BMW #:
34 42 2 928 286
BMW #:
34 42 6 096 966
BMW #:
34 42 6 302 025
BMW #:
6 790 966
BMW #:
6 793 025
BMW #:
6775342
Bendix #:
510753
Bendix #:
573271B
Bosch #:
0 986 494 294
Bosch #:
0 986 494 325
Bosch #:
0 986 494 339
Bosch #:
0986424612
Brembo North America #:
07B31551
Brembo North America #:
P06053
Brembo North America #:
P06053N
Delphi #:
LP2141
FMSI Automotive Hardware #:
7820D919
FMSI Automotive Hardware #:
D919
FMSI Automotive Hardware #:
D919-7820
Hella Pagid #:
8DB355014141
Hella Pagid #:
T1797
Magneti Marelli #:
363700201797
Magneti Marelli #:
363916060845
Magneti Marelli #:
T1797MM
Mintex #:
MDB2986
Mintex #:
MDB82986
TRW #:
GDB1857
TRW Steering and Suspension Parts #:
GDB1857
Textar #:
2373101
Valeo #:
302290
Valeo #:
601127
Valeo #:
604159
Valeo #:
671127
Wagner #:
WBP23731A
Country of Origin:
IN

Manufacturer Warranty:

12 Months

Select a vehicle to narrow Pagid 355014141 Disc Brake Pad fitment info!

Last Updated: 05/19/2024

Years Vehicle Per Vehicle Position Fit NotesFitment Notes
BMW 535i GT

3.0L L6 Gas DOHC Turbo
1
 
Rear
 
Low-Metallic
OE Formulated Friction Material
Designed and Engineered in Germany
 

BMW 535i GT



3.0L L6 Gas DOHC Turbo

Rear Low-Metallic
OE Formulated Friction Material
Designed and Engineered in Germany

1 Per Vehicle
BMW 535i GT xDrive

3.0L L6 Gas DOHC Turbo
1
 
Rear
 
Low-Metallic
OE Formulated Friction Material
Designed and Engineered in Germany
 

BMW 535i GT xDrive



3.0L L6 Gas DOHC Turbo

Rear Low-Metallic
OE Formulated Friction Material
Designed and Engineered in Germany

1 Per Vehicle
BMW 550i GT

4.4L V8 Gas DOHC Turbo
1
 
Rear
 
Low-Metallic
OE Formulated Friction Material
Designed and Engineered in Germany
 

BMW 550i GT



4.4L V8 Gas DOHC Turbo

Rear Low-Metallic
OE Formulated Friction Material
Designed and Engineered in Germany

1 Per Vehicle
BMW 550i GT xDrive

4.4L V8 Gas DOHC Turbo
1
 
Rear
 
Low-Metallic
OE Formulated Friction Material
Designed and Engineered in Germany
 

BMW 550i GT xDrive



4.4L V8 Gas DOHC Turbo

Rear Low-Metallic
OE Formulated Friction Material
Designed and Engineered in Germany

1 Per Vehicle
BMW 740i

3.0L L6 Gas DOHC Turbo
1
 
Rear
 
Low-Metallic
OE Formulated Friction Material
Designed and Engineered in Germany
 

BMW 740i



3.0L L6 Gas DOHC Turbo

Rear Low-Metallic
OE Formulated Friction Material
Designed and Engineered in Germany

1 Per Vehicle
BMW 740Ld xDrive

3.0L L6 Diesel DOHC Turbo
1
 
Rear
 
Low-Metallic
OE Formulated Friction Material
Designed and Engineered in Germany
 

BMW 740Ld xDrive



3.0L L6 Diesel DOHC Turbo

Rear Low-Metallic
OE Formulated Friction Material
Designed and Engineered in Germany

1 Per Vehicle
BMW 740Li

3.0L L6 Gas DOHC Turbo
1
 
Rear
 
Low-Metallic
OE Formulated Friction Material
Designed and Engineered in Germany
 

BMW 740Li



3.0L L6 Gas DOHC Turbo

Rear Low-Metallic
OE Formulated Friction Material
Designed and Engineered in Germany

1 Per Vehicle
BMW 740Li xDrive

3.0L L6 Gas DOHC Turbo
1
 
Rear
 
Low-Metallic
OE Formulated Friction Material
Designed and Engineered in Germany
 

BMW 740Li xDrive



3.0L L6 Gas DOHC Turbo

Rear Low-Metallic
OE Formulated Friction Material
Designed and Engineered in Germany

1 Per Vehicle
BMW 750i

4.4L V8 Gas DOHC Turbo
1
 
Rear
 
Low-Metallic
OE Formulated Friction Material
Designed and Engineered in Germany
 

BMW 750i



4.4L V8 Gas DOHC Turbo

Rear Low-Metallic
OE Formulated Friction Material
Designed and Engineered in Germany

1 Per Vehicle
BMW 750i

4.4L V8 FULL HYBRID EV-Gas FHEV DOHC Turbo
1
 
Rear
 
Low-Metallic
OE Formulated Friction Material
Designed and Engineered in Germany
 

BMW 750i



4.4L V8 FULL HYBRID EV-Gas FHEV DOHC Turbo

Rear Low-Metallic
OE Formulated Friction Material
Designed and Engineered in Germany

1 Per Vehicle
BMW 750i xDrive

4.4L V8 Gas DOHC Turbo
1
 
Rear
 
Low-Metallic
OE Formulated Friction Material
Designed and Engineered in Germany
 

BMW 750i xDrive



4.4L V8 Gas DOHC Turbo

Rear Low-Metallic
OE Formulated Friction Material
Designed and Engineered in Germany

1 Per Vehicle
BMW 750Li

4.4L V8 Gas DOHC Turbo
1
 
Rear
 
Low-Metallic
OE Formulated Friction Material
Designed and Engineered in Germany
 

BMW 750Li



4.4L V8 Gas DOHC Turbo

Rear Low-Metallic
OE Formulated Friction Material
Designed and Engineered in Germany

1 Per Vehicle
BMW 750Li

4.4L V8 FULL HYBRID EV-Gas FHEV DOHC Turbo
1
 
Rear
 
Low-Metallic
OE Formulated Friction Material
Designed and Engineered in Germany
 

BMW 750Li



4.4L V8 FULL HYBRID EV-Gas FHEV DOHC Turbo

Rear Low-Metallic
OE Formulated Friction Material
Designed and Engineered in Germany

1 Per Vehicle
BMW 750Li xDrive

4.4L V8 Gas DOHC Turbo
1
 
Rear
 
Low-Metallic
OE Formulated Friction Material
Designed and Engineered in Germany
 

BMW 750Li xDrive



4.4L V8 Gas DOHC Turbo

Rear Low-Metallic
OE Formulated Friction Material
Designed and Engineered in Germany

1 Per Vehicle
BMW 760Li

6.0L V12 Gas DOHC Turbo
1
 
Rear
 
Low-Metallic
OE Formulated Friction Material
Designed and Engineered in Germany
 

BMW 760Li



6.0L V12 Gas DOHC Turbo

Rear Low-Metallic
OE Formulated Friction Material
Designed and Engineered in Germany

1 Per Vehicle
BMW ActiveHybrid 7

3.0L L6 FULL HYBRID EV-Gas FHEV DOHC Turbo
1
 
Rear
 
Low-Metallic
OE Formulated Friction Material
Designed and Engineered in Germany
 

BMW ActiveHybrid 7



3.0L L6 FULL HYBRID EV-Gas FHEV DOHC Turbo

Rear Low-Metallic
OE Formulated Friction Material
Designed and Engineered in Germany

1 Per Vehicle
BMW Alpina B7

4.4L V8 Gas DOHC Turbo
1
 
Rear
 
Low-Metallic
OE Formulated Friction Material
Designed and Engineered in Germany
 

BMW Alpina B7



4.4L V8 Gas DOHC Turbo

Rear Low-Metallic
OE Formulated Friction Material
Designed and Engineered in Germany

1 Per Vehicle
BMW Alpina B7 xDrive

4.4L V8 Gas DOHC Turbo
1
 
Rear
 
Low-Metallic
OE Formulated Friction Material
Designed and Engineered in Germany
 

BMW Alpina B7 xDrive



4.4L V8 Gas DOHC Turbo

Rear Low-Metallic
OE Formulated Friction Material
Designed and Engineered in Germany

1 Per Vehicle
BMW Alpina B7L

4.4L V8 Gas DOHC Turbo
1
 
Rear
 
Low-Metallic
OE Formulated Friction Material
Designed and Engineered in Germany
 

BMW Alpina B7L



4.4L V8 Gas DOHC Turbo

Rear Low-Metallic
OE Formulated Friction Material
Designed and Engineered in Germany

1 Per Vehicle
BMW Alpina B7L xDrive

4.4L V8 Gas DOHC Turbo
1
 
Rear
 
Low-Metallic
OE Formulated Friction Material
Designed and Engineered in Germany
 

BMW Alpina B7L xDrive



4.4L V8 Gas DOHC Turbo

Rear Low-Metallic
OE Formulated Friction Material
Designed and Engineered in Germany

1 Per Vehicle