Set of 6 Performance Ignition Coil <br> 08-12 Honda Accord Odyssey, Acura RL TL
Set of 6 Performance Ignition Coil <br> 08-12 Honda Accord Odyssey, Acura RL TL
Description:
The basic requirements for a properly running engine are fuel, air, compression, and spark. Before increasing your engine's power, it's wise to ensure all maintenance is up-to-date and these processes are performing as intended. A weak spark from your ignition system can result in misfiring, rough idling, poor gas mileage, and damage to your catalytic converter, all of which hinder performance.
Features:
Direct fit for 2008-2012 Honda Accord 3.5L engines
Designed and tested to meet or exceed OEM performance specifications
Improves engine startup, idle, and restores performance
Refreshes ignition system, ensuring strong spark for stock and modified vehicles
A high-quality phenolic resin outer shell ensures longevity in high-temperature environments
Package Includes:
Ignition Coil
Compatible With:
2008-2017 Honda Odyssey 3.5L
2008-2012 Honda Accord 3.5L
2009-2014 Acura TL 3.5L
2009-2012 Acura RL 3.7L
2010-2014 Acura TSX 3.5L
2010-2011 Honda Accord Crosstour 3.5L
2012 Honda Crosstour 3.5L
$71.73
Original: $204.95
-65%
Set of 6 Performance Ignition Coil <br> 08-12 Honda Accord Odyssey, Acura RL TL—
$204.95
$71.73
Description
Description:
The basic requirements for a properly running engine are fuel, air, compression, and spark. Before increasing your engine's power, it's wise to ensure all maintenance is up-to-date and these processes are performing as intended. A weak spark from your ignition system can result in misfiring, rough idling, poor gas mileage, and damage to your catalytic converter, all of which hinder performance.
Features:
Direct fit for 2008-2012 Honda Accord 3.5L engines
Designed and tested to meet or exceed OEM performance specifications
Improves engine startup, idle, and restores performance
Refreshes ignition system, ensuring strong spark for stock and modified vehicles
A high-quality phenolic resin outer shell ensures longevity in high-temperature environments