8MS-NEO1.5BT
Black steel basket
Paper cone cloth edge
1.5 KCCAW voice coil
10 OZ NEO Magnet
Frequency : 86-6.9KHz
RMS power:250Watts
Impedance:4OHMS
Sensiticity: 99.5dB
Specifications | |
Nominal Diameter | 8 inch |
Nominal Impedance | 4 ohms |
RMS Power Handing | 250W |
MAX Power Handing | 300W |
Sensitivity (1w/1m) | 99.5dB |
Frequency Response | 86-6.9KHz |
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 | 10 OZ |
Displacement Volume |
Thiele & Small Parameters | |
Equivilant Volume | Vas 5.9145L |
Excursion (one way) | Xmax mm |
Free Air Resonance | Fs 136Hz |
Mechanical Factor | Qms 9.832 |
Electrical Factor | Qes 0.485 |
Total Factor | Qts 0.462 |
Moving Mass | Mms 15.021g |
Compliance | Cms 0.091m M/N |
Bl Factor | Bl 9.439 |
Diaphragm Area | Sd 213.82 cm² |
Dc Resistance | Re 3.3 ohms |
Measurement | |
Overall Diameter | 206mm(8.1inch) |
Overall Depth | 91mm(3.58inch) |
Front Mount Baffle Cutout | 180mm(7.08inch) |
Mouting Depth | 84mm(3.3inch) |
Motor Diameter | 100mm(3.93inch) |
KLIPPEL ANALYZER SYSTEM
Report
Table Linear Parameters
Name Value Unit Comment |
|||
Electrical Parameters |
|
|
|
Re |
3.30 |
Ohm |
electrical voice coil resistance at DC |
Le |
0.017 |
mH |
frequency independent part of voice coil inductance |
L2 |
0.132 |
mH |
para-inductance of voice coil |
R2 |
3.81 |
Ohm |
electrical resistance due to eddy current losses |
Cmes |
171.87 |
μF |
electrical capacitance representing moving mass |
Lces |
7.99 |
mH |
electrical inductance representing driver compliance |
Res |
67.03 |
Ohm |
resistance due to mechanical losses |
fs |
135.8 |
Hz |
driver resonance frequency |
|
|||
Mechanical Parameters |
|
|
|
(using laser) |
|
|
|
Mms |
15.021 |
g |
mechanical mass of driver diaphragm assembly including air load and voice coil |
Mmd (Sd) |
11.487 |
g |
mechanical mass of voice coil and diaphragm without air load |
Rms |
1.304 |
kg/s |
mechanical resistance of total-driver losses |
Cms |
0.091 |
mm/N |
mechanical compliance of driver suspension |
Kms |
10.94 |
N/mm |
mechanical stiffness of driver suspension |
Bl |
9.349 |
N/A |
force factor (Bl product) |
Lambda s |
0.071 |
|
suspension creep factor |
Loss factors |
|
|
|
Qtp |
0.462 |
|
total Q-factor considering all losses |
Qms |
9.832 |
|
mechanical Q-factor of driver in free air considering Rms only |
Qes |
0.485 |
|
electrical Q-factor of driver in free air considering Re only |
Qts |
0.462 |
|
total Q-factor considering Re and Rms only |
|
|||
Other Parameters |
|
|
|
Vas |
5.9145 |
l |
equivalent air volume of suspension |
n0 |
2.940 |
% |
reference efficiency (2 pi-radiation using Re) |
Lm |
96.70 |
dB |
characteristic sound pressure level (at 1 m for 1 W @ Re) |
Lnom |
97.53 |
dB |
nominal sensitivity (SPL at 1 m for 1 W @ Zn) |
|
|||
rmse Z |
4.32 |
% |
root-mean-square fitting error of driver impedance Z(f) |
rmse Hx |
3.16 |
% |
root-mean-square fitting error of transfer function Hx(f) |
|
|||
Series resistor |
0.00 |
Ohm |
resistance of series resistor |
Sd |
213.82 |
cm2 |
diaphragm area |