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Eastern Acoustic Works   One Main Street   Whitinsville, MA 01588   tel 800 992 5013 / 508 234 6158   fax 508 234 8251   www.eaw.com

EAW products are continually improved.  All specifications are therefore subject to change without notice. 

Part Number:  RD0287 (A) JF60z   June 2005

J F 6 0 z   S p e c i f i c a t i o n s            

group · J

INPUT PANEL

S/N

WHITINSVILLE, MA USA

PIN 1--...--

PIN 1+...+

+

--

JF60z

NOTES

TABULAR DATA

1.  Measurement/Data Processing Systems:

Primary - FChart: proprietary EAW software; Secondary -  Brüel & Kjær 2012.

2.  Microphone Systems:

Earthworks M30; Brüel & Kjær 4133

3.  Measurements:

Dual channel FFT; length: 32 768 samples; sample rate: 48 kHz; logarithmic sine wave sweep.

4. Measurement System Qualification 

(includes all uncertainties)

:

SPL: ac/-0.2 dB @ 1 kHz, pre/-0.5 dB 20 Hz to 20 kHz, resolution 0.05 dB; Frequency: ac/-1 %,    

pre/-0.1 Hz, resolution the larger of 1.5 Hz or 1/48 octave; Time: ac/-10.4 µs, pre/-0.5 µs, resolution 10.4 µs; Angular: ac/-1°, pre/-0.5°, resolution 0.5°.

5.  Environment:

Measurements time-widowed and processed to eliminate room effects, approximating an anechoic environment. Data processed as anechoic or fractional space, as noted.

6.  Measurement Distance:

7.46 m. Acoustic responses represent complex summation of the subsystems  at 20 m. SPL is referenced to other distances using the Inverse Square Law.

7.  Volts:

Measured rms value of the test signal.

8.  Watts:

Per audio industry practice, “loudspeaker watts” are calculated as voltage squared divided by rated nominal impedance.  Thus, these are not True Watt units of energy as defined by 

International Standard.

9.  SPL:

(Sound Pressure Level) Equivalent to the average level of a signal referenced to 0 dB SPL = 20 microPascals. 

10. Subsystem:

This lists the transducer(s) and their acoustic loading for each passband. Sub = Subwoofer, LF = Low Frequency, MF = Mid Frequency, HF = High Frequency.

11. Operating Mode:

User selectable configurations. Between system elements, a comma (,) = separate amplifier channels; a slash (/) = single amplifier channel. DSP = Digital Signal Processor.

IMPORTANT: To achieve the specified performance, the listed external signal processing must be used with EAW-provided settings. 

12. Operating Range:

Range where the processed Frequency Response stays within -10 dB SPL of the power averaged SPL within this range; measured on the geometric axis. Narrow band

dips are excepted.

13. Nominal Beamwidth:

Design angle for the -6 dB SPL points, referenced to 0 dB SPL as the highest level.

14. Axial Sensitivity:

Power averaged SPL over the Operating Range with an input voltage that would produce 1 W at the nominal impedance; measured with no external processing on the 

geometric axis, referenced to 1 m. 

15. Nominal Impedance:

Selected 4, 8, or 16 ohm resistance such that the minimum impedance point is no more than 20% below this resistance over the Operating Range.

16. Accelerated Life Test:

Maximum test input voltage applied with an EIA-426B defined spectrum; measured with recommended signal processing and Recommended Protection Filter.

17. Calculated Axial Output Limit:

Highest average and peak SPLs possible during the Accelerated Life Test.  The Peak SPL represents the 2:1 (6 dB) crest factor of the Life Test signal.

18. High Pass Filter:

This helps protect the loudspeaker from excessive input signal levels at frequencies below the Operating Range.

GRAPHIC DATA

1. Resolution:

To remove insignificant fine details, 1/12 octave cepstral smoothing was applied to acoustic frequency responses and 1/3 octave cepstral smoothing was applied to the

beamwidth and impedance data.  Other graphs are plotted using raw data.

2. Frequency Responses:

Variation in acoustic output level with frequency for a constant input signal. Processed: normalized to 0 dB SPL. Unprocessed inputs: 2 V (4 ohm nominal impedance),

2.83 V (8 ohm nominal impedance), or 4 V (16 ohm nominal impedance) referenced to a distance of 1 m.

3. Processor Response:

The variation in output level with frequency for a constant input signal of 0.775 V = 0 dB reference.

4. Beamwidth:

Average angle for each 1/3 octave frequency band where, starting from the rear of the loudspeaker, the output first reaches -6 dB SPL referenced to 0 dB SPL as the highest 

level. This method means the output may drop below -6 dB SPL within the beamwidth angle.

5. Impedance: 

Variation in impedance magnitude, in ohms, with frequency without regard to voltage/current phase. This means the impedance values may not

be used to calculate True Watts (see 9 above).

6. Polar Data: 

Horizontal and vertical polar responses for each 1/3 octave frequency band 100 Hz to 16 kHz or Operating Range.

AMP

2-Way, Single-Amp (LF/HF)

XVR

LF

HF

HPF

70 V / 100 V

AMP

2-Way, Single-Amp (LF/HF) MT 

XVR

LF

HF

HPF

SIGNAL DIAGRAM

LEGEND

DSP:

User-supplied Digital Signal Processor.

HPF:

High Pass Filter for crossover or Recommended High Pass Filter.

LPF:

Low Pass Filter for crossover. 

LF/MF/HF:

Low Frequency / Mid Frequency / High Frequency.

AMP:

User-supplied Power Amplifier.

XVR:

Passive LPFs, HPFs, and EQ integral to the loudspeaker.

MT version input drawing unavailable

Summary of Contents for JF60z

Page 1: ...rt BMB 200K Standard colors are black and white Other colors can be specified as a special order items The diverse applications for the JF60z include band PA multimedia systems retail spaces presentation suites shopping malls smaller houses of worship theatres auditoriums lecture halls and theme parks Fill delay applications include arenas stadiums concert halls theatres and houses of worship Six ...

Page 2: ... 2 119 2 TOP 4 69 TSC BACK FRONT BOTTOM A A 7 00 L 177 8 VIEW A A DIMENSIONS APPLY TO BOTH SIDES C 53 8 2 12 190 5 7 50 INPUT 199 0 246 8 9 72 NOTES 1 SYMBOL INDICATES MOUNTING POINT 5 16 18 T NUT FOR OMNI MOUNT 30 0 SERIES 2 SYMBOL INDICATES MOUNTING POINT 5 16 18 T NUT FOR ULTIMATE BRAND STAND 3 SYMBOL INDICATES MOUNTING POINT 1 4 20 THREADED HOLE 4 SYMBOL INDICATES CENTER OF BALANCE 5 WEIGHT AP...

Page 3: ...PHIC DATA for details Frequency Response Processed with HPF LF HF blue SPL dB Frequency Response Unprocessed LF HF blue SPL dB Frequency Response Recomended High Pass Filter LF HF blue dB re 0 775 V Beamwidth 6 dB SPL Points Horizontal orange Vertical black Degrees Impedance Magnitude LF HF blue Ohms 110 100 90 80 70 60 50 100 10 1 400 100 10 1 100 1000 20000 Frequency Hz 10 100 1000 20000 Frequen...

Page 4: ... 0 z S p e c i f i c a t i o n s group J 0 45 90 135 180 135 90 45 100 Hz 125 Hz 160 Hz 200 Hz 0 45 90 135 180 135 90 45 250 Hz 315 Hz 400 Hz 500 Hz 0 45 90 135 180 135 90 45 630 Hz 800 Hz 1000 Hz 1250 Hz 0 45 90 135 180 135 90 45 1600 Hz 2000 Hz 2500 Hz 3150 Hz 0 45 90 135 180 135 90 45 4000 Hz 5000 Hz 6300 Hz 8000 Hz 0 45 90 135 180 135 90 45 10000 Hz 12000 Hz 16000 Hz HORIZONTAL POLAR DATA Grid...

Page 5: ...6 0 z S p e c i f i c a t i o n s group J VERTICAL POLAR DATA Gridlines 6 dB axial 15 degree radial See NOTES GRAPHIC DATA for details 0 45 90 135 180 135 90 45 100 Hz 125 Hz 160 Hz 200 Hz 0 45 90 135 180 135 90 45 250 Hz 315 Hz 400 Hz 500 Hz 0 45 90 135 180 135 90 45 630 Hz 800 Hz 1000 Hz 1250 Hz 0 45 90 135 180 135 90 45 4000 Hz 5000 Hz 6300 Hz 8000 Hz 0 45 90 135 180 135 90 45 10000 Hz 12000 Hz...

Page 6: ...ferenced to 0 dB SPL as the highest level 14 Axial Sensitivity Power averaged SPL over the Operating Range with an input voltage that would produce 1 W at the nominal impedance measured with no external processing on the geometric axis referenced to 1 m 15 Nominal Impedance Selected 4 8 or 16 ohm resistance such that the minimum impedance point is no more than 20 below this resistance over the Ope...

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