DS18 PRO-NEO6R 6.5" Mid-Range Loudspeaker Owner's Manual
Model: PRO-NEO6R
Brand: DS18
Product Type: 6.5" Mid-Range Loudspeaker with Neodymium Rings
[Designed & Engineered in USA]
Specifications
Parameter | Value |
---|---|
Nominal Diameter | 6.5" |
Nominal Impedance | 4 OHMS |
RMS Power Handling | 300W |
MAX Power Handling | 600W |
Sensitivity (1w/1m) | 96dB |
Frequency Response | 90 Hz-12.5 KHz |
Recommended Hi Pass Crossover | 160Hz |
Pair or Single | Single |
Motor Details
Voice Coil Diameter | 2" / 50.8 mm |
Voice Coil Former Material | KAPTON |
Winding Material | CCAW |
Cone Material | Paper |
Dust Cap Material | Paper |
Surround Material | Cloth |
Basket Material | Aluminum |
Basket Color | Finish | Red |
Magnet Material | Neodymium Rings |
Magnet Weight | 11.4 Oz |
Displacement Volume | 0.045 L |
Thiele & Small Parameters
Equivalent Volume (Vas) | 5.088 Ltr |
Excursion (one way) (Xmax) | 3.6mm |
Free Air Resonance (Fs) | 99.5 Hz |
Mechanical Factor (Qms) | 9.8 |
Electrical Factor (Qes) | 0.237 |
Total Factor (Qts) | 0.231 |
Mechanical Mass (Mms) | 11.449g |
Mechanical Compliance (Cms) | 223.287 u/m/N |
BL Factor (BL) | 9.832 |
Cone Area (Sd) | 145 Cm2 |
DC Resistance (Re) | 3.2 ohm |
Mechanical Mass w/o air (Mmd) | 10.629g |
Measurements
Overall Diameter | 6.88" / 174.8mm |
Overall Depth | 3.29" / 83.7mm |
Front Mount Baffle Cutout | 5.91" / 150.3mm |
Mounting Depth | 2.95" / 75mm |
Motor Diameter | 4.13" / 105mm |
Diagrams and Graphs
The loudspeaker features a 6.5-inch cone. Dimensional Overview: The overall diameter of the speaker is 6.34 inches (161 mm). The overall depth is 3.29 inches (83.7 mm), with a mounting depth of 2.95 inches (75 mm). The front mount baffle cutout required is 5.91 inches (150.3 mm). The motor diameter measures 4.13 inches (105 mm).
A graph titled "SPL vs Freq" is included. It plots Sound Pressure Level (SPL) in decibels (dB) on the left y-axis and Impedance in Ohms on the right y-axis, against Frequency in Hertz (Hz) on the x-axis. This graph visually represents the loudspeaker's performance characteristics across different frequencies.