SL-65MS-NEO

6.5" Slim midrange                                           
Black steel basket
Paper cone cloth edge
1.5 KCCAW voice coil                            
5.5 OZ  high strength NEO Magnet        
Frequency : 112-3.2KHz
RMS power:200Watts
Impedance:4OHMS
Sensiticity: 97.5dB
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Product Details

 

Specifications  
Nominal Diameter  6.5inch
Nominal Impedance  4 ohms
RMS Power Handing  200W
MAX Power Handing  300W
Sensitivity (1w/1m)  97.5dB
Frequency Response 112-3.2KHZ

 

Motor  
Voice Coil Diameter 39.3mm(1.5inch)
Voice Coil Former Material  KC
Winding Material  CCAW
Cone Material Paper
Dust Cap Material Aluminum
Surround Material cloth edge
Basket Material  Steel
Magnet Material NEO
Magnet Weight 5.5 OZ
Displacement Volume  

 

Measurement  
Overall Diameter 165mm(6.49inch
Overall Depth 55.5mm(2.18inch
Front Mount Baffle Cutout 144mm(5.66inch
Mouting Depth 50mm(1.97inch
Motor Diameter 80mm(3.14inch

KLIPPEL ANALYZER SYSTEM

Report                                                                                             

   

Name                                     Value               Unit                       Comment

Electrical

Parameters

 

 

 

Re

3.19

Ohm

electrical voice coil resistance at DC

Le

0.032

mH

frequency independent part of voice coil inductance

L2

0.289

mH

para-inductance of voice coil

R2

2.01

Ohm

electrical resistance due to eddy current losses

Cmes

155.32

μF

electrical capacitance representing moving mass

Lces

4.35

mH

electrical inductance representing driver compliance

Res

32.67

Ohm

resistance due to mechanical losses

fs

193.6

Hz

driver resonance frequency

 

Mechanical

Parameters

 

 

 

(using laser)

 

 

 

Mms

8.008

g

mechanical mass of driver diaphragm assembly including air load and voice coil

Mmd (Sd)

6.280

g

mechanical mass of voice coil and diaphragm without air load

Rms

1.578

kg/s

mechanical resistance of total-driver losses

Cms

0.084

mm/N

mechanical compliance of driver suspension

Kms

11.85

N/mm

mechanical stiffness of driver suspension

Bl

7.181

N/A

force factor (Bl product)

Lambda s

0.134

 

suspension creep factor

Loss factors

 

 

 

Qtp

0.558

 

total Q-factor considering all losses

Qms

6.171

 

mechanical Q-factor of driver in free air considering Rms only

Qes

0.602

 

electrical Q-factor of driver in free air considering Re only

Qts

0.548

 

total Q-factor considering Re and Rms only

 

Other Parameters

 

 

 

Vas

2.1049

l

equivalent air volume of suspension

n0

2.439

%

reference efficiency (2 pi-radiation using Re)

Lm

95.89

dB

characteristic sound pressure level (at 1 m for 1 W @ Re)

Lnom

96.88

dB

nominal sensitivity (SPL at 1 m for 1 W @ Zn)

 

rmse Z

4.07

%

root-mean-square fitting error of driver impedance Z(f)

rmse Hx

2.50

%

root-mean-square fitting error of transfer function Hx(f)

 

Series resistor

0.00

Ohm

resistance of series resistor

Sd

132.73

cm2

diaphragm area