MSD HVC III coils utilizes an iron U-Core design with a segmented bobbin for improved voltage distribution. The bobbin is molded from Dupont Rynite FR946 material,
MSD HVC III coils utilizes an iron U-Core design with a segmented bobbin for improved voltage distribution. The bobbin is molded from Dupont Rynite FR946 material, which has incredible dielectric capabilities at high temperatures. MSD also incorporated a cutting-edge winding material that has improved insulation and is also capable of enduring extreme voltages. Together, these materials create a durable coil with incredible voltage capabilities, lightning-quick rise time, and longer spark duration. The MSD HVC-3 coils are equipped with an industry-first third terminal to allow secondary current sensing, for each spar
MSD HVC III coils utilizes an iron U-Core design with a segmented bobbin for improved voltage distribution. The bobbin is molded from Dupont Rynite FR946 material, which has incredible dielectric capabilities at high temperatures. MSD also incorporated a cutting-edge winding material that has improved insulation and is also capable of enduring extreme voltages. Together, these materials create a durable coil with incredible voltage capabilities, lightning-quick rise time, and longer spark duration. The MSD HVC-3 coils are equipped with an industry-first third terminal to allow secondary current sensing, for each spark, when used in conjunction with the MSD 8001 Pro 600 Single Channel ignition.
Product details:
* Designed for racing applications with an MSD 7 or 8 Series ignition control or Pro 600 single channel
* New U-Core winding design produces more voltage and current
* 70:1 turns ratio and lower primary resistant compound for vibration resistance
* Windings are encased in fracture resistant compound for vibration resistance
* Dupont Rynite housing with isolated tower and brass primary terminals
* Supplied with mounting hardware and rubber shock mounts
* Built-in current sensing (when used in conjunction with MSD Pro 600 single channel)