Magnadyne Car Subwoofer, 6 x 9 inch Oval, 4-Ohm Impedance, Polypropylene Cone, 90 Watt Power for Deep Bass (1)



Product Details

  • Material: Polypropylene
  • Model Name: Magnadyne 6x9 Woofer
  • Speaker Type: Subwoofer
  • Special Feature: 3" Mounting Depth, High Power Handling, Oval Subwoofer, Polypropylene
  • Recommended Uses For Product: Audio Playback
  • Compatible Devices: Laptop
  • Subwoofer Diameter: 6 Inches
  • Unit Count: 1.0 Count
  • Surround Sound Channel Configuration: Stereo
  • Included Components: Subwoofer
  • Product Dimensions: 3.82"D x 9.49"W x 6.81"H
  • Item Weight: 0.82 Kilograms
  • Impedance: 4 Ohm
  • Is Waterproof: False
  • Number of Items: 1
  • Control Method: Voice
  • Wireless Communication Technology: No Wireless Communication Technology
  • Speaker Size: 9 Inches
  • Power Source: Wired
  • Woofer Diameter: 6 Inches
  • Water Resistance Level: Not Water Resistant
  • Customer Package Type: Standard Packaging
  • Audio Driver Type: Dynamic Driver
  • Audio Driver Size: 6 Inches
  • Subwoofer Connectivity Technology: Wired
  • Specific Uses For Product: Audio
  • Indoor/Outdoor Usage: Indoor
  • Manufacturer: Magnadyne
  • Shape: oval
  • Item Weight: 1.81 pounds
  • Item model number: LS69W
  • Is Discontinued By Manufacturer: No
  • Brand: Magnadyne
  • Speaker Maximum Output Power: 90 Watts
  • Connectivity Technology: Wired
  • Audio Output Mode: Subwoofer
  • Mounting Type: Wall Mount
  • COMPACT DESIGN: 6" x 9" oval subwoofer perfect for RVs and cars, featuring a space-efficient form factor for versatile mounting options
  • POWERFUL PERFORMANCE: High-quality polypropylene cone woofer delivers deep, rich bass frequencies for an immersive audio experience
  • MAGNET STRUCTURE: Enhanced magnetic assembly optimizes power handling and ensures consistent, accurate bass reproduction
  • IMPEDANCE RATING: 4-ohm impedance specification makes this subwoofer compatible with most car audio systems
  • INSTALLATION FLEXIBILITY: Versatile mounting options and design allow for easy integration into various vehicle configurations