Mishimoto Honda Civic heater hoses are made with a dual layer combining high grade silicone and heat-resistant embedded fibers to provide efficient heat reduction and increased pressure tolerance, all designed and engineered for a direct OEM fit.
High-performance component designed to enhance thermal efficiency, durability, and reliability under demanding conditions. Engineered to support optimal temperature control and system performance across applications.
1988-1991 Honda Civic 1.5 Liter L3, 1988-1991 Honda Civic 1.5 Liter L4, 1991 Honda Civic 1.5 Liter ML4A, 1988-1991 Honda Civic 1.6 Liter L3, 1990 Honda Civic 1.6 Liter L4, 1991 Honda Civic 1.6 Liter ML4A, 1991 Honda Civic 1.6 Liter MPSA, 1989-1990 Honda Civic 1.6 Liter S5
Made of high grade silicone and heat-resistant embedded fibers
Max temperature of 330 F
Efficiently reduces heat
Upgrade your Honda Civic with the Mishimoto Part Number MMHOSE-CIV-88HH heater hose, designed specifically for models from 1988 to 1991. Crafted from a dual-layer construction of high-grade silicone and heat-resistant embedded fibers, this hose offers superior thermal management and durability. Its engineered design ensures an exact OEM fit, providing seamless integration with your vehicle's cooling system. With a maximum temperature rating of 330°F, it efficiently reduces heat buildup, helping to maintain optimal engine temperatures and system performance under demanding conditions. This high-performance component is built to withstand high pressures and extreme heat, making it an ideal choice for automotive enthusiasts seeking reliability and enhanced thermal efficiency. Installation is straightforward, and the hose is engineered to support long-lasting performance, ensuring your Honda Civic operates smoothly and efficiently over time.
Features:
Made of high-grade silicone and heat-resistant embedded fibers
Maximum temperature of 330°F for reliable heat reduction
Engineered for a precise OEM fit for 1988-1991 Honda Civic models
Supports increased pressure tolerance for demanding driving conditions
Designed to enhance thermal efficiency and system durability