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Paragon PBP330 Brake Pads

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£148.02
Common Applications:
04-17 STI Rear / EVO 5-9 Rear / 350Z Rear
Part Number:
PBP.0330.150.P2/P3/R5/R7
Manufacturer:
Winmax Japan
In stock compound(s):
P3, R5

Product Details

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Paragon PBP330 Brake Pads

Paragon brake pads offer excellent overall braking performance optimized for a wide range of motorsport, high performance, and sport driving applications. Manufactured by Winmax Japan, a highly recognized manufacturer with 60 years of experience in manufacturing high performance brake pads, to deliver superior stopping power, excellent modulation and control, durability, reliability, high fade resistance, and consistent performance under high temperature conditions. Race proven friction materials, perfect match with Paragon rotors to allow confidence at every braking point, lap after lap.

***Manufactured by Winmax for Paragon Performance. Made in Japan.

Common applications: 

  • 04-17 Subaru WRX STI (GDB / GRF / GVF / VAB) rear
  • Subaru BRZ Performance Package / Scion FR-S / Toyota 86 w/ OEM Brembo calipers rear
  • Subaru BRZ tS rear
  • Mitsubishi EVO 5-9 (CP9A / CT9A) Brembo rear
  • Nissan 350Z (Z33) Brembo / Infiniti G35 Coupe Brembo rear
  • AP Racing CP5119 / CP5316 / CP5317 calipers (CP5119D50 Pads)
  • StopTech ST-22/STR-22 calipers

Part Number: PBP.0330.150.P2 / PBP.0330.150.P3 / PBP.0330.150.R5 / PBP.0330.150.R7

***If you are unsure about fitment, please contact us to verify fitment for your vehicle / application.

 

Paragon Brake Pad Compounds:

P2 Compound

The P2 “Sport Comfort” compound is designed for street use where balance between performance and street friendliness is emphasized. Minimal brake dust and noise due to its non-metallic material. Improved initial bite, modulation (brake control), and temperature range over stock pads. Higher coefficient of friction for increased stopping power. Excellent pad and rotor life. Works as designed from ambient temperature. Ideal for daily driven vehicles with performance in mind. 

 

Radar chart for Paragon Performance P2 brake pad compound 

 

  • Material: Non-metallic
  • Effective temperature range: Ambient - 932°F (500°C)
  • Average Mu: 0.29 ~ 0.32
  • Recommended for street use only
  • Comparable to: Hawk HPS, Project Mu B Spec

 

P3 Compound

The P3 “Road & Track” compound is an all round compound ideal for sport driving, autocross, and light track duty while still maintaining street drivability. Low level of brake dust and noise. Good coefficient of friction, initial bite, and temperature range make this compound capable for track conditions. Best modulation and control characteristics among P series compounds. Great choice for occasional track vehicles without the disadvantages of dedicated track pads. Works as designed from ambient temperature. Great rear pad option for those who prefer a more front biased setup with the R5 compound up front.

 

Radar chart for Paragon Performance P3 brake pad compound

 

  • Material: Semi-metallic
  • Effective temperature range: Ambient - 1112°F (600°C)
  • Average Mu: 0.34 ~ 0.37
  • Recommended for street / track use
  • Comparable to: Ferodo DS2500, Endless MXRS & MX72, Project Mu HC+, PFC 97, Hawk HP+, Pagid RS4-2

 

R5 Compound

The R5 “High Friction Track / Competition” compound is designed as a dedicated track compound. High coefficient of friction provides sufficient stopping power for track and competition conditions. Precise modulation and release characteristics. Highly fade resistant with wide temperature range. Flatter torque curve compared to the R7 compound, providing consistent and solid braking performance throughout the effective temperature range which boosts driver’s confidence. Elevated noise and brake dust compared to P2 and P3 compounds. Relatively easy on rotors compared to competitors’ racing pad offerings. Great front pad option for lighter cars, and rear pad option for those who prefer a more front biased setup with the R7 compound up front.

 

Radar chart for Paragon Performance R5 brake pad compound

 

  • Material: Metallic
  • Effective temperature range: 212°F - 1382°F (100°C  - 750°C)
  • Average Mu: 0.40 ~ 0.43
  • Recommended for track use
  • Comparable to: Endless CC38(ME22) & CC-Rg, Project Mu Racing 777, Ferodo DSUNO & DS3000 , Cobalt XR3 & XR4, Pagid RST3, RS44 & RS19, CL RC6



R7 Compound:

The R7 “Maximum Friction Track / Competition” compound is a full race compound with maximum coefficient of friction. With higher stopping power and maximum effective operating temperature, the R7 compound is ideal for advanced high speed track events, competitions, and heavier cars that require maximum braking performance. Good modulation and release characteristics. Excellent pad and rotor life. Higher fade resistance compared to the R5 compound, with solid pedal feel throughout the effective temperature range.

 

Radar chart for Paragon Performance R7 brake pad compound

 

  • Material: Metallic
  • Effective temperature range: 212°F - 1562°F (100°C  - 850°C)
  • Average Mu: 0.48 ~ 0.53
  • Recommended for track use only
  • Comparable to: Endless CC60(N30C), Cobalt XR1 & XR2, Pagid RS29, Ferodo DS3000+

 

***Track and race pads are not recommended to be used on streets due to elevated brake dust and noise level, possibly higher pad and rotor wear during low speed brake events, and being not able to work 100% as designed at ambient temperature. If these downsides of dedicated track and race pads are not an issue, they can be used on streets absolutely fine.

 

Comparison charts for Paragon brake pad compounds:

 

Paragon brake pad compounds comparison

 

 

Paragon brake pad compounds comparison - Average Mu & Temperature

Technical Specifications

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Illustrations are for identification purpose only

Specifications:

Pad Shape: 330

Width: 76.6mm

Height: 66mm

Thickness: 14.5mm

Pad Depth (D): 45mm

 

Cross reference:

AP Racing  CP5119D50

Alcon  PNF0084X358.4

OEM Subaru  26696FG0000 / 26696FE080

OEM Nissan  D4060CD01B

OEM Mitsubishi  MR407391

Project Mu  R906

Hawk  HB180x.560

Pagid  1587

PFC  0109

Brembo  P 56 048

Ferodo  FCP1562

 

 

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