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About the measurements
The present measurements are performed using MLS (Maximum Length Sequence) technology that allowed to perform the speaker driver measurements from 125Hz up to higher frequencies without a parasitic influence of reflected signals with no need of using an acoustic anechoic chamber. With the aim of getting the maximum reliable and high resolution measurements, especially when measuring harmonic distortion, we use metrologically tested professional equipment of Brüel & Kjær (Denmark) and RFT (Germany) companies. The applying of the acoustic pressure calibrator is allowed to measure the absolute sensitivity of speaker drivers.

Because a considerable part of measurements had being performed during many years and were not determined yet the final approach to their format and content some types and modes are absent in the early measurements.

Measurement setup specification

Test baffle size – 1650x1150 mm
Measuring equipment:
- measuring microphone Brüel & Kjær 4133
- microphone preamplifier Brüel & Kjær 2639
- preamplifier power supply Brüel & Kjær 2804
- sound levek calibrator MMF 05000 (94 dB/1kHz)
- sound card EMU-0202USB with upgraded op amps to OPA1612 
- DSP Xilica  XM2040
- second-order analog ultralinear high-pass filters with switched cutoff frequencies from 20 to 2000 Hz based on the OPA1612 op amps
- ultralinear power amplifier PURIFI 1ET400A

About compare feature

On the website is realized mechanism that allow to compare visually all of parameters and characteristics of two or three drivers. Compare feature is available for registered users only. Choose the drivers of interest and press “Compare” button in the compare block (this block is located in the right side bar on desktop monitors or under the speaker drivers table on tablet and smartphone displays). After that the compare page will be open and atop of page there will be the speaker drivers tabs. Choose one or another tab and you will see the page of chosen driver parameters and characteristics. You can choose the measurement mode of interest by pressing one of buttons above diagram. These modes will be saved after switching to other tab. All measurements are given at different test voltages for a user be able to choose measurement modes that close by the sound pressure for more correct compare. You can delete any driver from compare block by pressing red X next to the driver model name.

Types and purpose of the measurements

Technical data – the speaker driver parameters from manufacturer official datasheets are listed here

Axial magnitude frequency response – absolute magnitude frequency response on the main acoustic driver axis measured at different test voltages. The measurements are performed  at 315 mm distance from the baffle and the results are recalculated to 1000 mm distance.  Measuring at 315 mm distance allow  to reduce parasitic diffraction effects from the test baffle ends, to increase direct signal to reflected signal ratio and to increase “anechoic measurement window” width. It can be considered that reliable frequency response is displayed  from  200Hz and higher up. Under 200Hz frequency response falling is started due non-endless test baffle size and acoustic short circuit between sound wave radiation from front and back sides of a driver membrane.  Because the same reason it can be viewed a small hump, up to 1,5-2dB, in the 140-280Hz range for majority woofer and midwoofer drivers. This hump is due in-phase summing front and back waves. This effect should be taken in consideration during the data analysis. The smoothing 1/12 oct is used for all measurements if there is no other stated like “no_smoothing” words.

Off axis magnitude response – the family off-axis frequency responses  measured at different angles at tested voltage 2,83V at 315mm distance  from intersection point  between the  main acoustic axis and test baffle plain.

Near field FR response (20 mm) normalized to 200 Hz – relative magnitude frequency response measured at tested voltage 2,83V at distance 20 mm from membrane and normalized to sound pressure level at 200 Hz. This kind of measurement allow  o analyze speaker driver frequency response in the piston range and detect the problem regions outside the piston range that are caused by the membrane and surround parasitic resonances. In the case of absence any defects the driver frequency response in the piston range is defined by the Qts parameter only and the normalized frequency level at the main resonance frequency Fs is approximately equals 20*log10(Qts). The parasitic and reflected signals level is so low that we can suppose the measurements is performed in the free field. Moreover, the meaning of this response is the correction that should be added to the frequency response meaning at 200 Hz from Axial magnitude frequency response at the same test voltage level to get the wanted sound pressure level at the frequency up to 200 Hz. For example, you know the Axial magnitude frequency response is reliable down to 200 Hz but you need to know what the sound pressure speaker driver  develops at 40 Hz at 5,6V voltage level. For this purpose you should choose 5,6V test voltage mode in the Axial magnitude frequency response, then to determine sound pressure level at 200 Hz and to add to it the value in dB at 40 Hz frequency from the diagram Near field FR response (20 mm) normalized to 200 Hz.

For the Accuton S280-6-282 driver the sound pressure level at voltage 5,6V at 200 Hz is 98 dB. The correction at 40 Hz is approximately 6,5 dB. So, the sound pressure level at 40 Hz equal =98dB+(-6,5dB)=91,5dB.

HD frequency response (315 mm distance) – harmonic distortion frequency response measured at different test voltages at the distance 315 mm and having 1/12 oct smoothing. We recommend use this kind of measurement from 150 Hz and higher up because decreasing of the useful signal level and increasing the measurement error.

HD frequency response (20  mm distance) – harmonic distortion frequency response measured at different test voltages at the distance 20 mm and having 1/12 oct smoothing. This kind of measurement gives a good precision at harmonic distortion measurement of woofers and midwoofers in frequency range up to 300 Hz.

Near field HD spectrum (20 mm distance) – the alternative method of measurement and displaying of harmonic distortion in the frequency range up to 300 Hz. The measurement distance is 20 mm, the smoothing is off. The measurement is performed at different test voltage levels and discrete frequencies. The main advantages of tis method are high signal to noise ratio and the displaying of more harmonic distortion components quantity. This kind of measurement gives a very good precision at harmonic distortion measurement of woofers and midwoofers in frequency range up to 300 Hz.

Impedance frequency response – frequency dependence of speaker driver impedance module. It is performed at some mA current level and is displayed in different scales for the purpose of more detail analysis of the problematic regions.

How to use the speaker driver models table?
You can use a sorting by the each column except the model name column. Just click on the column header and the data in the table will be sorted. On the next such click on the same header the data will be sorted in the opposite order.  Choose the speaker driver model of interest and click his name – you will go on this driver measurements page. You can add or delete this driver to the compare block if you click the red or blue cross symbol in the end of the string respectively.

To avoid incorrect  website functionality we strongly recommend to back return from a speaker driver measurement page and a compare page by means of buttons “Back to table” instead of the web browser  “Back” button. 

Brand Model Premiumsort descending Type Material Size, inch S, dB Zn, Ohm Fs, Hz Qts Vas, L
Scan-Speak D2608/913000 Yes HF Fabric 1.0" 91.3 8 700 0.29 0.0
MarkAudio Alpair-10M Yes FR Metal 5.0" 87.0 8 35 0.35 28.1
SBacoustics SB17NRXC35-4 Yes LF Paper 6.0" 92.0 4 35 0.32 35.2
Scan-Speak 15W/8530K00 Yes LF Paper 5.5" 85.5 8 30 0.27 27.4
Seas 27TBFC/G (H1212) Yes HF Aluminum 1.0" 91.5 6 550 0.00 0.0
Vifa XT25BG60-04 Yes HF Fabric 1.0" 93.6 4 589 0.32 0.0
Scan-Speak D2904/710003 Yes HF Fabric 1.2" 94.4 4 520 0.44 0.0
RAAL 70-20XR Yes HF Ribbon 3.0" 93.0 6 0 0.00 0.0
Eton 12-680/62Hex-KEG Yes LF Sandwich 12.0" 91.0 8 23 0.29 173.0
Sony Sony SS-A5 tweeter Yes HF 1.0" 92.0 6 800 0.00 0.0
SBacoustics SB17CRC35-8 Yes LF Sandwich 6.0" 87.0 8 28 0.34 48.0
Scan-Speak 12W/4524G00 Yes LF GlassFiber 4.0" 89.0 4 50 0.27 8.2
Vifa D25AG-05-06 Yes HF Aluminum 0.8" 91.7 6 1500 0.00 0.0
Satori TW29D-B Yes HF Fabric 1.1" 92.5 4 600 0.81 0.0
Seas 76MF (H304) Yes MF Fabric 3.0" 91.0 8 400 0.00 0.0
Brax GL1 MK2 Yes HF Aluminum 1.0" 93.0 4 900 0.00 0.0
SBacoustics SB20PFC30-4 Yes LF Paper 8.0" 92.5 4 34 0.33 66.2
Morel CAT378 Yes HF Fabric 1.1" 93.0 8 700 0.00 0.0
MarkAudio Alpair-10P Yes FR Paper 5.0" 89.6 8 42 0.33 30.0
SBacoustics SB29SDAC-C000-4 Yes HF Fabric 1.1" 93.0 4 600 0.80 0.0
Scan-Speak 18W/8542-00 Yes LF Paper 6.0" 89.0 8 30 0.23 47.9
Seas 27TDC (H1149) Yes HF Fabric 1.0" 90.0 6 550 0.00 0.0
Vifa NE19VTA-04 Yes HF Aluminum 0.8" 89.4 4 775 1.07 0.0
Peerless DX20BF00-04 Yes HF Fabric 0.8" 90.1 4 822 1.27 0.0
SBacoustics SB23MFCL45-8 Yes LF Plastic 8.0" 85.0 8 29 0.43 37.0
Mundorf AMT21CM2.1-C Yes HF Heil 2.0" 93.0 4 0 0.00 0.0
Sony Sony SS-A5 woofer Yes LF Paper 8.0" 91.0 6 49 0.00 0.0
Accuton AS168-9-470 Yes LF Sandwich 7.0" 84.0 9 27 0.35 35.5
SB Acoustics SB14ST-C000-4 Yes HF Fabric 0.6" 87.0 4 1300 0.00 0.0
Usher 8945P Yes LF Paper 6.0" 86.0 8 34 0.34 37.0
Satori TW29RN-B Yes HF Fabric 1.1" 96.0 4 700 0.49 0.0
Brax ML28 PRO Yes HF Fabric 1.1" 93.0 4 760 0.00 0.0
SBacoustics SB20PFC30-8 Yes LF Paper 8.0" 90.5 8 34 0.37 66.2
SBacoustics SB15NRXC30-8 Yes LF Paper 5.0" 88.0 8 38 0.33 20.7
Accuton C90-6-724 Yes MF Ceramic 5.0" 89.0 6 65 0.52 5.1
Morel ST1048 Yes HF Fabric 1.1" 91.5 8 680 0.00 0.0
SBacoustics SB42FHC75-6 Yes LF Sandwich 15.0" 93.0 6 23 0.37 318.0
Scan-Speak R2904/700000 Yes HF Fabric 1.2" 94.5 4 520 0.33 0.0
Seas 27TFFNC/G (H1396-04) Yes HF Fabric 1.0" 91.0 4 1170 0.00 0.0
Vifa NE19VTS-04 Yes HF Fabric 0.8" 88.3 4 743 1.36 0.0
Scan-Speak D3404/552000 Yes HF Fabric 1.3" 97.0 4 475 0.57 0.0
Scan-Speak 16W/4434G00 Yes LF Plastic 6.0" 90.5 4 55 0.48 17.9
Satori TW29DN-B-8 Yes HF Fabric 1.1" 93.0 8 650 0.46 0.0
JVC HSD5204-01A Yes MF Ceramic 2.0" 92.0 6 294 0.00 0.0
Morel TSCM634 Yes MF Sandwich 6.0" 89.0 4 49 0.53 13.3
Sonus Faber TWE283001 Yes HF Fabric 1.1" 96.0 4 930 0.49 0.0
Scan-Speak 12M/4631G00 Yes MF Paper 4.0" 89.0 4 75 0.33 2.3
Brax ML2 Yes MF Fabric 2.0" 91.0 4 520 0.00 0.0
Seas M15CH002 (E0043) Yes MF Paper 5.0" 88.5 6 67 0.40 6.0
Scan-Speak 10F/4424G00 Yes FR GlassFiber 3.0" 89.8 4 90 0.29 2.0
Vifa NE149W-04 Yes LF Paper 5.0" 89.2 4 70 0.42 4.6
Bohlender &Graebener NEO3-PDRW Yes HF Planar 1.8" 93.5 4 0 0.00 0.0
Morel SCM634 Yes MF Sandwich 6.0" 89.0 4 49 0.40 14.0
SBacoustics SB29RDNC-C000-4 Yes HF Fabric 1.1" 94.0 4 680 0.45 0.0
Scan-Speak 10F/8424G00 Yes FR GlassFiber 3.0" 86.6 8 90 0.37 2.1
Seas 19TAF/D (H0561) Yes HF Aluminum 0.8" 87.0 8 1700 0.00 0.0
Accuton S280-6-283N Yes LF Sandwich 11.0" 93.0 6 20 0.18 227.0
Seas CA15RLY (H1216) Yes LF Paper 5.0" 87.5 8 44 0.34 14.0
Scan-Speak 16W/4531G06 Yes LF Paper 6.0" 88.0 4 51 0.59 12.6
Vifa OC25SC65-04 Yes HF Fabric 1.0" 96.2 4 1382 1.26 0.0
Hi-Vi Research Q1R Yes HF Fabric 1.0" 89.0 6 1000 0.00 0.0
Satori MW16TX-4 Yes LF TeXtreme 6.5" 90.5 4 29 0.27 48.0
Sonus Faber WOF283001 Yes LF Paper 5.0" 86.0 8 69 0.53 0.0
GRS PRT-8 Yes HF Paper 1.7" 90.0 8 1005 0.00 0.0
Scan-Speak D3004/606200 Yes HF TeXtreme 1.2" 91.0 4 430 0.38 0.0
Brax ML80 PRO Yes MF Carbon fibers 3.0" 91.0 4 114 0.36 1.2
SBacoustics SB12NRXF25-4 Yes LF Paper 4.0" 87.0 4 61 0.48 4.1
Scan-Speak 26W/4534G00 Yes LF Aluminum 10.0" 90.5 4 23 0.36 156.0
Scan-Speak D3004/660000 Yes HF Fabric 1.2" 91.5 4 470 0.49 0.0
Celestion T5687A Yes LF Paper 5.0" 89.2 8 104 0.46 4.3
Morel ET338-104 Yes HF Fabric 1.1" 92.5 8 700 0.00 0.0
SBacoustics SB29RDC-C000-4 Yes HF Fabric 1.1" 93.0 4 600 0.65 0.0
Scan-Speak D3004/602000 Yes HF Fabric 1.2" 89.2 4 700 1.15 0.0
B&C DE10-8 Yes HF Plastic 1.0" 107.0 8 0 0.00 0.0
Accuton C25-6-158 Yes HF Ceramic 1.0" 92.5 6 810 0.61 0.0
Seas W15LY001 (E0041) Yes LF Paper 5.0" 86.5 8 49 0.45 12.0
Scan-Speak 32W/8878T11 Yes LF Paper 12.0" 91.5 8 21 0.26 235.0
Accuton BD20-6-031 Yes HF Diamond 0.8" 89.0 6 950 0.31 0.0
Vifa NE180W-04 Yes LF Paper 6.0" 89.8 4 39 0.29 22.5
Satori MR13P-4 Yes MF Paper 5.0" 91.0 4 41 0.23 19.4
Scan-Speak D3004/602200 Yes HF Fabric 1.2" 90.5 4 440 0.42 0.0
Audio Note SPKR-031/2 Yes HF Fabric 1.0" 94.0 4 1046 1.30 0.0
SBacoustics SB23NACS45-8 Yes LF Metal 8.0" 87.5 8 25 0.37 94.0
Scan-Speak 15M/4624G00 Yes MF GlassFiber 5.0" 92.4 4 100 0.43 3.7
Accuton C220-6-221 Yes LF Ceramic 8.0" 90.0 6 28 0.37 79.0
Dayton Audio RS180-4 Yes LF Metal 6.0" 89.2 4 38 0.46 21.2
Peerless DA25BG08-06 Yes HF Metal 1.0" 94.2 6 721 0.51 0.0
SBacoustics SB26STCN-C000-4 Yes HF Fabric 1.0" 92.5 4 960 0.84 0.0
Seas 27TDFC (H1189) Yes HF Fabric 1.0" 90.0 6 550 0.00 0.0
Silver Flute W14RC25-04 Yes LF Paper 5.0" 90.0 4 43 0.28 19.0
Accuton C30-6-358 Yes HF Ceramic 1.2" 93.5 6 810 0.62 0.0
Seas W12CY003 (E0044) Yes LF Paper 4.0" 85.5 8 60 0.36 4.0
Fostex FE108EZ Yes FR Paper 4.0" 90.0 8 77 0.30 5.7
Accuton BD30-6-036 Yes HF Diamond 1.2" 92.0 6 908 0.69 0.0
Satori MR16P-8 Yes MF Paper 6.0" 88.0 8 32 0.30 44.3
Scan-Speak R3004/602200 Yes HF Fabric 1.2" 89.5 4 420 0.40 0.0
Seas T25CF002 Yes HF Fabric 1.0" 89.0 6 500 0.00 0.0
Satori MW16P-8 Yes LF Paper 6.0" 87.5 8 29 0.33 48.0
Accuton S280-6-282 Yes LF Sandwich 11.0" 93.0 6 20 0.26 226.0
Fostex FX120 Yes FR Paper 5.0" 89.0 8 70 0.45 8.2

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Poll

Your favorite power amp type

Class-D
44% (891 votes)
Tube SE
13% (255 votes)
BJT based push-pull
12% (247 votes)
FET based push-pull
11% (226 votes)
Tube push-pull
8% (162 votes)
Hybrid (tube+solid state)
6% (126 votes)
FET based SE
6% (125 votes)
Total votes: 2032

 

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