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KLIPPEL ANALYZER SYSTEM Detailed Report Large Signal Identification (LSI) |
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Driver Name: 8" Peerless
Driver Comment: 1-11-047-1
Measurement: LSI large signal 1.0
Measurement Comment:



| Symbol | Number | Unit | Comment |
|---|---|---|---|
| Displacement Limits | thresholds can be changed in Processing property page | ||
| X Bl @ Bl min=82% | >4.7 | mm | Displacement limit due to force factor variation |
| X C @ C min=75% | 2.7 | mm | Displacement limit due to compliance variation |
| X L @ Z max=10 % | 3.7 | mm | Displacement limit due to inductance variation |
| X d @ d2=10% | 33.5 | mm | Displacement limit due to IM distortion (Doppler) |
| f0 | N/A^2 | flux modulation f0 | |
| f1 | N/(A^2m) | flux modulation f1 | |
| Bl0 = Bl (X=0) | 9.9543 | N/A | constant part in force factor |
| Bl1 | -0.062156 | N/Amm | 1st order coefficient in force factor expansion |
| Bl2 | -0.016575 | N/Amm^2 | 2nd order coefficient in force factor expansion |
| Bl3 | -0.00068243 | N/Amm^3 | 3rd order coefficient in force factor expansion |
| Bl4 | -0.0011696 | N/Amm^4 | 4th order coefficient in force factor expansion |
| Bl5 | 1.9065e-005 | N/Amm^5 | 5th order coefficient in force factor expansion |
| Bl6 | 4.7186e-006 | N/Amm^6 | 6th order coefficient in force factor expansion |
| Bl7 | -4.9550e-009 | N/Amm^7 | 7th order coefficient in force factor expansion |
| Bl8 | 8.5956e-008 | N/Amm^8 | 8th order coefficient in force factor expansion |
| L0 = Le (X=0) | 1.0277 | mH | constant part in inductance |
| L1 | -0.091740 | mH/mm | 1st order coefficient in inductance expansion |
| L2 | 0.00024817 | mH/mm^2 | 2nd order coefficient in inductance expansion |
| L3 | 0.0028256 | mH/mm^3 | 3rd order coefficient in inductance expansion |
| L4 | 0.00010018 | mH/mm^4 | 4th order coefficient in inductance expansion |
| L5 | -0.00015044 | mH/mm^5 | 5th order coefficient in inductance expansion |
| L6 | -1.1544e-005 | mH/mm^6 | 6th order coefficient in inductance expansion |
| L7 | 3.4126e-006 | mH/mm^7 | 7th order coefficient in inductance expansion |
| L8 | 3.6119e-007 | mH/mm^8 | 8th order coefficient in inductance expansion |
| C0 = Cms (X=0) | 1.0206 | mm/N | constant part in compliance |
| C1 | 0.032792 | 1/N | 1st order coefficient in compliance expansion |
| C2 | -0.033922 | 1/Nmm | 2nd order coefficient in compliance expansion |
| C3 | -0.0026679 | 1/Nmm^2 | 3rd order coefficient in compliance expansion |
| C4 | 0.00088893 | 1/Nmm^3 | 4th order coefficient in compliance expansion |
| C5 | 0.00010162 | 1/Nmm^4 | 5th order coefficient in compliance expansion |
| C6 | -1.5836e-005 | 1/Nmm^5 | 6th order coefficient in compliance expansion |
| C7 | -1.6665e-006 | 1/Nmm^6 | 7th order coefficient in compliance expansion |
| C8 | 1.1342e-007 | 1/Nmm^7 | 8th order coefficient in compliance expansion |
| Xpse | 4.7 | mm | -Xpse < X < Xpse, range where power series is fitted |


| Symbol | Large + Warm | Large + Cold | Small Signal | Unit | Comment |
|---|---|---|---|---|---|
| Delta Tv = Tv-Ta | 16 | 0 | -0 | K | increase of voice coil temperature during the measurement |
| Xprot | 6.2 | 6.2 | 1.3 | mm | maximal voice coil excursion (limited by protection system) |
| Re (Tv) | 5.75 | 5.43 | 5.43 | Ohm | voice coil resistance considering increase of voice coil temperature Tv |
| Le (X=0) | 1.03 | 1.03 | 0.85 | mH | voice coil inductance at the rest position of the voice coil |
| L2 (X=0) | 0.53 | 0.53 | 0.44 | mH | para-inductance at the rest position due to the effect of eddy current |
| R2 (X=0) | 4.36 | 4.36 | 3.60 | Ohm | resistance at the rest position due to eddy currents |
| Cmes (X=0) | 363 | 363 | 373 | �F | electrical capacitance representing moving mass |
| Lces (X=0) | 95.35 | 95.35 | 75.00 | mH | electrical inductance at the rest position representing driver compliance |
| Res (X=0) | 37.73 | 37.73 | 26.65 | Ohm | resistance at the rest position due to mechanical losses |
| Qms (X=0, Tv) | 2.33 | 2.33 | 1.88 | mechanical Q-factor considering Rms only | |
| Qes (Tv) | 0.33 | 0.32 | 0.38 | electrical Q-factor considering Re (Tv) only | |
| Qts (X=0, Tv) | 0.29 | 0.28 | 0.32 | total Q-factor considering Re (Tv) and Rms only | |
| fs | 27.1 | 27.1 | 30.1 | Hz | driver resonance frequency |
| Mms | 33.873 | 33.873 | g | mechanical mass of driver diaphragm assembly including voice-coil and air load | |
| Rms (X=0) | 2.476 | 2.476 | kg/s | mechanical resistance of total-driver losses | |
| Cms (X=0) | 1.02 | 1.02 | 0.92 | mm/N | mechanical compliance of driver suspension at the rest position |
| Bl (X=0) | 9.95 | 9.95 | N/A | force factor at the rest position (Bl product) | |
| Vas | 83.2605 | 83.2605 | 75.3901 | l | equivalent air volume of suspension |
| N0 | 0.473 | 0.502 | 0.514 | % | reference efficiency (2Pi-sr radiation using Re) |
| Lm | 88.9 | 89.2 | 89.3 | dB | characteristic sound pressure level |
| Sd | 240.53 | 240.53 | 240.53 | cm� | diaphragm area |
Temporal Variations of the Stiffness KMS(t, x=0)

Temporal Variations of the Voice Coil Resistance RE(t)


| Symbol | Value | Unit | Comment |
|---|---|---|---|
| Date | 2007-05-10 | ||
| Time | 12:54:11 | ||
| Serial number | 0 | ||
| Mode | Nonlinear Mode 5(7) | ||
| Record | 194/194 | ||
| Laser | signal reliable | ||
| t | 00:11:36 | h:min:s | measurement time |
| Ei (t) | 8.9 | % | error current measurement |
| Ex (t) | 4.2 | % | error laser measurement |
| Eu (t) | 6.7 | % | error amplifier check |
| Delta Tv (Delta Tlim) | 16.0 (60.0) | K | increase of voice coil temperature (limit) |
| Blmin (Bllim) | 78.0 (50.0) | % | minimal force factor ratio (limit) |
| Cmin (Clim) | 40.6 (40.0) | % | minimal compliance ratio (limit) |
| P (Plim) | 3.56 (50.00) | W | real electrical input power (limit) |
| Lmin | 64.6 | % | minimal inductance ratio |
| Pn | 4.27 | W | nominal electrical input power |
| P Re | 2.97 | W | Power heating voice coil |
| P con | W | deducted power due to convection cooling | |
| Glarge (Gmax) | 16.1 (26.0) | dB | gain of the excitation amplitude increased in the large signal domain (maximum) |
| Mech. system | abs. | laser used to identify mechanical system in absolute quantities | |
| Xdc | 0.1 | mm | dc component of voice coil excursion measured in the last update intervall |
| Xpeak | 6.4 | mm | positive peak value of voice coil excursion measured in the last update intervall |
| Xbottom | -5.0 | mm | negative peak value (bottom) of voice coil excursion measured in the last update intervall |
| Xp+ | 5.0 | mm | upper limit of displacement range (99% probability) |
| Xp- | -4.7 | mm | lower limit of displacement range (99% probability) |
| Xprot | 6.2 | mm | maximal voice coil excursion allowed by protection system |
| v rms | 0.3 | m/s | voice coil velocity |
| Irms | 0.718 | A | rms value of the electrical input current |
| Urms | 5.845 | V | rms value of the electrical voltage at the transducer terminals |
| Ipeak | 3.024 | A | peak value of the electrical input current |
| Upeak | 22.706 | V | peak value of the electrical voltage at the transducer terminals |
| PC | 0.51 | dB | thermal power compression factor |
| Db | 14.6 | % | distortion factors representing contribution of nonlinear force factor |
| Dl | 6.9 | % | distortion factor representing contribution of nonlinear inductance |
| Dc | 24.1 | % | distortion factor representing contribution of nonlinear compliance |
| R tc (v) | K/W | ||
| R th total | 5.38 | K/W | Delta Tv / P Re |

Voltage upeak(t) and Current ipeak(t)

Voice Coil Temperature D TV(t) and Power P(t)


Displacement Probability Density Function pdf(x)


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Report generated: | ||
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Date: |
05/30/07
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Time: |
15:57:50
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Username: |
lab1
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(c)08/2000 Klippel GmbH Germany - http://www.klippel.de/