16600-EY00A Fuel Injector Replacement for Infiniti Q60 G37 QX70 FX37 Nissan 370Z 3.7L
Includes:
Single fuel injector, OEM-equivalent design
Fits Models:
Infiniti G37, Q60, QX70, FX37; Nissan 370Z
Model Years:
2009 - 2020
Submodels:
G37 Sedan/Coupe/Convertible, Q60 Coupe/Convertible, QX70, FX37, 370Z Coupe/Roadster
Engine Options:
3.7L V6
Description:
Premium OEM-equivalent fuel injector (16600-EY00A) engineered to exact factory specifications for Infiniti G37, Q60, QX70, FX37, and Nissan 370Z with 3.7L engines. This high-impedance injector is 100% tested for accurate fuel flow rate and internal coil resistance matching OEM performance standards. Delivers improved fuel atomization, faster throttle response, enhanced reliability, and better fuel economy. Ideal replacement for worn or damaged injectors, ensuring stable combustion and optimal engine performance.
Features:
¥ Factory-spec fuel injector for 2009-2020 Infiniti and Nissan 3.7L V6 models
¥ 100% tested high-impedance design matches OEM fuel flow characteristics
¥ Improves fuel atomization and throttle response
¥ Enhances fuel economy and MPG
¥ Premium quality aftermarket replacement with superior reliability
¥ Compatible with multiple part numbers including 16600-EY00A, FJ1016, 16600-ZJ50A, FJ1076
| Includes | Single fuel injector, OEM-equivalent design |
| Fits Models | Infiniti G37, Q60, QX70, FX37; Nissan 370Z |
| Model Years | 2009 - 2020 |
| Submodels | G37 Sedan/Coupe/Convertible, Q60 Coupe/Convertible, QX70, FX37, 370Z Coupe/Roadster |
| Engine Options | 3.7L V6 |
| Description | Premium OEM-equivalent fuel injector (16600-EY00A) engineered to exact factory specifications for Infiniti G37, Q60, QX70, FX37, and Nissan 370Z with 3.7L engines. This high-impedance injector is 100% tested for accurate fuel flow rate and internal coil resistance matching OEM performance standards. Delivers improved fuel atomization, faster throttle response, enhanced reliability, and better fuel economy. Ideal replacement for worn or damaged injectors, ensuring stable combustion and optimal engine performance. |
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