Yamaha MT-09 (FZ-09)

from $8.99

(V-Power spec sheets are for the resistor line)

NGK Resistor nickel spark plugs feature a specially designed v-groove center electrode, improving ignitability and reducing quenching. The 98% pure copper core delivers increased heat dissipation for more reliable starts and reduced risk of overheating.

  • Cold-rolled threads prevent cross-threading and damage to cylinder heads

  • Trivalent plating eliminates need for anti-seize

  • High-grade alumina silicate ceramic

The improved throttle response, superior anti-fouling and high-ignitability makes Iridium IX® ideal for the performance enthusiast. Iridium’s extremely high melting point is perfectly suited to today’s high-temperature engines, delivering outstanding acceleration, fuel efficiency and durability.

  • Fine iridium tip ensures high durability and a consistently stable spark

  • Trivalent metal plating for superior anti-corrosion and anti-seizing properties

  • Outstanding acceleration, high fuel efficiency and durability

Year:
Model:

(V-Power spec sheets are for the resistor line)

NGK Resistor nickel spark plugs feature a specially designed v-groove center electrode, improving ignitability and reducing quenching. The 98% pure copper core delivers increased heat dissipation for more reliable starts and reduced risk of overheating.

  • Cold-rolled threads prevent cross-threading and damage to cylinder heads

  • Trivalent plating eliminates need for anti-seize

  • High-grade alumina silicate ceramic

The improved throttle response, superior anti-fouling and high-ignitability makes Iridium IX® ideal for the performance enthusiast. Iridium’s extremely high melting point is perfectly suited to today’s high-temperature engines, delivering outstanding acceleration, fuel efficiency and durability.

  • Fine iridium tip ensures high durability and a consistently stable spark

  • Trivalent metal plating for superior anti-corrosion and anti-seizing properties

  • Outstanding acceleration, high fuel efficiency and durability