
All categories
Home audio
Audio components
Crossover Components
Test & measurement
DIY kits
Accessories
Amplifiers
Sluiten


Designed for use in no compromise crossover designs, Dayton Audio's Precision 20 watt Audio Grade Bifilar Resistors are ideal for use in your next high end speaker design. The extremely low inductance, non-magnetic construction, tight 1% tolerance, copper

Designed for use in no compromise crossover designs, Dayton Audio's Precision 20 watt Audio Grade Bifilar Resistors are ideal for use in your next high end speaker design. The extremely low inductance, non-magnetic construction, tight 1% tolerance, copper

Designed for use in no compromise crossover designs, Dayton Audio's Precision 20 watt Audio Grade Bifilar Resistors are ideal for use in your next high end speaker design. The extremely low inductance, non-magnetic construction, tight 1% tolerance, copper

Designed for use in no compromise crossover designs, Dayton Audio's Precision 20 watt Audio Grade Bifilar Resistors are ideal for use in your next high end speaker design. The extremely low inductance, non-magnetic construction, tight 1% tolerance, copper

Designed for use in no compromise crossover designs, Dayton Audio's Precision 20 watt Audio Grade Bifilar Resistors are ideal for use in your next high end speaker design. The extremely low inductance, non-magnetic construction, tight 1% tolerance, copper

Designed for use in no compromise crossover designs, Dayton Audio's Precision 20 watt Audio Grade Bifilar Resistors are ideal for use in your next high end speaker design. The extremely low inductance, non-magnetic construction, tight 1% tolerance, copper

Designed for use in no compromise crossover designs, Dayton Audio's Precision 20 watt Audio Grade Resistors are ideal for use in your next high end speaker design. The extremely low inductance, non-magnetic construction, tight 1% tolerance, copper end cap

Designed for use in no compromise crossover designs, Dayton Audio's Precision 20 watt Audio Grade Resistors are ideal for use in your next high end speaker design. The extremely low inductance, non-magnetic construction, tight 1% tolerance, copper end cap

Designed for use in no compromise crossover designs, Dayton Audio's Precision 20 watt Audio Grade Resistors are ideal for use in your next high end speaker design. The extremely low inductance, non-magnetic construction, tight 1% tolerance, copper end cap

Designed for use in no compromise crossover designs, Dayton Audio's Precision 20 watt Audio Grade Resistors are ideal for use in your next high end speaker design. The extremely low inductance, non-magnetic construction, tight 1% tolerance, copper end cap

Designed for use in no compromise crossover designs, Dayton Audio's Precision 20 watt Audio Grade Resistors are ideal for use in your next high end speaker design. The extremely low inductance, non-magnetic construction, tight 1% tolerance, copper end cap

Designed for use in no compromise crossover designs, Dayton Audio's Precision 20 watt Audio Grade Resistors are ideal for use in your next high end speaker design. The extremely low inductance, non-magnetic construction, tight 1% tolerance, copper end cap

Designed for use in no compromise crossover designs, Dayton Audio's Precision 20 watt Audio Grade Resistors are ideal for use in your next high end speaker design. The extremely low inductance, non-magnetic construction, tight 1% tolerance, copper end cap

Designed for use in no compromise crossover designs, Dayton Audio's Precision 20 watt Audio Grade Resistors are ideal for use in your next high end speaker design. The extremely low inductance, non-magnetic construction, tight 1% tolerance, copper end cap

Designed for use in no compromise crossover designs, Dayton Audio's Precision 20 watt Audio Grade Resistors are ideal for use in your next high end speaker design. The extremely low inductance, non-magnetic construction, tight 1% tolerance, copper end cap

Designed for use in no compromise crossover designs, Dayton Audio's Precision 20 watt Audio Grade Resistors are ideal for use in your next high end speaker design. The extremely low inductance, non-magnetic construction, tight 1% tolerance, copper end cap

Designed for use in no compromise crossover designs, Dayton Audio's Precision 20 watt Audio Grade Resistors are ideal for use in your next high end speaker design. The extremely low inductance, non-magnetic construction, tight 1% tolerance, copper end cap

Designed for use in no compromise crossover designs, Dayton Audio's Precision 20 watt Audio Grade Resistors are ideal for use in your next high end speaker design. The extremely low inductance, non-magnetic construction, tight 1% tolerance, copper end cap

Designed for use in no compromise crossover designs, Dayton Audio's Precision 20 watt Audio Grade Resistors are ideal for use in your next high end speaker design. The extremely low inductance, non-magnetic construction, tight 1% tolerance, copper end cap

Designed for use in no compromise crossover designs, Dayton Audio's Precision 20 watt Audio Grade Resistors are ideal for use in your next high end speaker design. The extremely low inductance, non-magnetic construction, tight 1% tolerance, copper end cap

Designed for use in no compromise crossover designs, Dayton Audio's Precision 20 watt Audio Grade Resistors are ideal for use in your next high end speaker design. The extremely low inductance, non-magnetic construction, tight 1% tolerance, copper end cap

Designed for use in no compromise crossover designs, Dayton Audio's Precision 20 watt Audio Grade Resistors are ideal for use in your next high end speaker design. The extremely low inductance, non-magnetic construction, tight 1% tolerance, copper end cap

Designed for use in no compromise crossover designs, Dayton Audio's Precision 20 watt Audio Grade Resistors are ideal for use in your next high end speaker design. The extremely low inductance, non-magnetic construction, tight 1% tolerance, copper end cap

Designed for use in no compromise crossover designs, Dayton Audio's Precision 20 watt Audio Grade Resistors are ideal for use in your next high end speaker design. The extremely low inductance, non-magnetic construction, tight 1% tolerance, copper end cap