Third-party Speakers
DLF

The DME Library Data for Third-party Loudspeakers package can be downloaded to provide third-party functionality with the SP2060 speaker processor or the speaker processor components of the DME series digital mixing engines. Simply create a call to the library data for optimal processor settings with EAW, Electro-Voice, and JBL speakers operated through DME series or SP2060.

Current Version Info

V1.0

Procedure of Use

Saving the Library Data

Decompress the folder and then copy the information into the DME Designer Library folder as explained below. The copy destination varies according to your OS and according to the current DME Designer folder configuration.(DME Designer does not have component folders in place as default, but newer versions will automatically create these folders as library data is introduced.) When proceeding, be careful that you do not overwrite any of your own library data.

Windows XP/2000:
\\Program Files\YAMAHA\OPT Tools\DME Designer\Library

Windows Vista:
Open the Library folder—that is, the folder named Public\Public Documents\YAMAHA\DME Designer\Library.

  • If the Library folder does not contain a folder named "SpeakerProcessor", please copy the entire decompressed "SpeakerProcessor" folder into the Library folder.
  •  If the \Library\SpeakerProcessor folder contains only a folder named "Speaker Processor  1 Way", then copy the needed folder (EAW, EV, or JBL) from the decompressed "Speaker Processor  1 Way" folder into the \Library\SpeakerProcessor\ folder. Also, to include support for 2 way or 3 way speakers, copy the entire "Speaker Processor  2 Way" or "Speaker Processor  3 Way" folder from the decompressed "SpeakerProcessor" folder into the \Library\SpeakerProcessor folder.
  •  If the \Library\SpeakerProcessor folder contains both "Speaker Processor  1 Way" and "Speaker Processor  2 Way" folders, then copy the needed folder (EAW, EV, or JBL) from the decompressed package into the corresponding folder in \Library\SpeakerProcessor. Also, to include support for 3 Way speakers, copy the entire "Speaker Processor  3 Way" folder from the decompressed "SpeakerProcessor" folder into the \Library\SpeakerProcessor folder.
  • If the \Library\SpeakerProcessor folder contains folders named "Speaker Processor  1 Way", "Speaker Processor  2 Way", as well as "Speaker Processor  3 Way", then copy the needed folder (EAW, EV, or JBL) from the decompressed package into the corresponding folder in \Library\SpeakerProcessor.

The speaker processor component is supported by DME Designer version 1.2 or later.

DME Designer version 3.0 or later will automatically generate the \SpeakerProcessor\Speaker Processor  1 Way folder within the Library folder.

For information about how to save library data into the SP2060 unit, refer to the section entitled "SP2060 Library Manager" within the DME Designer instruction manual.

Library Filenames

Library Filenames are determined as follows.
model-name_[drive-mode*]_ subwoofer-use_floor-monitor-use.cel
"sub": Full-range speaker settings, when used in combination with subwoofer.
"moni": Settings for use as floor monitor.

Example 1)

AM621264_bi_sub.cel thumbnail

This file is a library which drives the JBL AM6212/64 in bi-amp mode, and a sub-woofer (beside this file, you should recall a library for your subwoofer respectively).

Example 2)

AX344_pa.cel thumbnail

This file is a library which drives the EAW AX422 in passive mode.

Limiter settings

Default threshold levels have been set on the assumption of a maximum processor output level of +24dBu (corresponding to analog output from the SP2060 and DME24N) and an amp voltage gain of 26dB (as, for example, when using a Tn or XP-series amp set to 26dB gain with ATT set to 0dB; or when using a PC-1N or P-series amp set to 32dB gain with ATT set to -6 dB). If you are using a setup that does not match these assumptions, please change the threshold levels accordingly.
Example 1: If you are using the +18dBu MY8DA96 card in the DME64/24N, raise the threshold by 6dB.
Example 2: If you are using an amp with 32dB gain and with ATT set to 0dB, drop the threshold by 6dB.

Note: The use of a limiter does not guarantee the protection of your speakers! The use of recommended limiters should be considered only the first step toward protecting your system.

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System Requirements

DME Designer version 1.21 or later.

List of Speaker Configurations

EAW

Model FileNane Mode Module
AS460e x2 + AS415e AS415+460_bi.cel BiAmp*1 3 Way
AS460e x2 + AS415e AS415+460_pa.cel Passive*1 2 Way
AS460e x2 + AS422e AS422+460_bi.cel BiAmp*1 3 Way
AS460e x2 + AS422e AS422+460_pa.cel Passive*1 2 Way
AS490e + AS415e AS415+490_bi.cel BiAmp*2 3 Way
AS490e + AS415e AS415+490_pa.cel Passive*2 2 Way
AS490e + AS422e AS422+490_bi.cel BiAmp*2 3 Way
AS490e + AS422e AS422+490_pa.cel Passive*2 2 Way
AS690e AS690e_bi.cel BiAmp 2 Way
AS690e AS690e_tri.cel TriAmp 3 Way
AS695e AS695e_bi.cel BiAmp 2 Way
AS695e AS695e_tri.cel TriAmp 3 Way
ASR660e ASR660e_bi.cel BiAmp 2 Way
ASR660e ASR660e_tri.cel TriAmp 3 Way
ASR665e ASR665e_bi.cel BiAmp 2 Way
ASR665e ASR665e_tri.cel TriAmp 3 Way
ASR690e ASR690e_bi.cel TriAmp 2 Way
ASR690e ASR690e_tri.cel TriAmp 3 Way
AX122 AX122.cel Passive 1 Way
AX344 AX344_bi.cel BiAmp 2 Way
AX344 AX344_pa.cel Passive 1 Way
AX364 AX364_bi.cel BiAmp 2 Way
AX364 AX364_pa.cel Passive 1 Way
AX366 AX366_bi.cel BiAmp 2 Way
AX366 AX366_pa.cel Passive 1 Way
AX396 AX396_bi.cel BiAmp 2 Way
AX396 AX396_pa.cel Passive 1 Way
JFX200 JFX200_bi.cel BiAmp 2 Way
JFX250 JFX250_bi.cel BiAmp 2 Way
JFX290 JFX290_bi.cel BiAmp 2 Way
JFX560 JFX560_bi.cel BiAmp 2 Way
JFX590 JFX590_bi.cel BiAmp 2 Way
KF300z KF300z_bi.cel BiAmp 2 Way
KF360z KF360z_bi.cel BiAmp 2 Way
KF650 KF650_bi.cel BiAmp 2 Way
KF650 KF650_tri.cel TriAmp 3 Way
KF695 KF695_bi.cel BiAmp 2 Way
KF695 KF695_tri.cel TriAmp 3 Way
KF750 KF750_tri.cel TriAmp 3 Way
KF850z KF850z_bi.cel TriAmp 2 Way
KF850z KF850z_tri.cel TriAmp 3 Way
MK2326 MK2326_bi.cel BiAmp 2 Way
MK2364 MK2364_bi.cel BiAmp 2 Way
MK2366 MK2366_bi.cel BiAmp 2 Way
MK2394 MK2394_bi.cel BiAmp 2 Way
MK2396 MK2396_bi.cel BiAmp 2 Way
MK2399 MK2399_bi.cel BiAmp 2 Way
MK5326 MK5326_bi.cel BiAmp 2 Way
MK5326 MK5364_bi.cel BiAmp 2 Way
MK5366 MK5366_bi.cel BiAmp 2 Way
MK5394 MK5394_bi.cel BiAmp 2 Way
MK5396 MK5396_bi.cel BiAmp 2 Way
MK5399 MK5399_bi.cel BiAmp 2 Way
MQM1364e + MQM1215 M1215+1364_bi.cel BiAmp 3 Way
MQM1364e + MQM1215 M1215+1364_pa.cel Passive 2 Way
MQM1394e + MQM1215 M1215+1394_bi.cel BiAmp 3 Way
MQM1394e + MQM1215 M1215+1394_pa.cel Passive 2 Way
MQV1364e MQV1364e_bi.cel BiAmp 2 Way
MQV1364e MQV1364e_tri.cel TriAmp 3 Way
MQV1366e MQV1366e_bi.cel BiAmp 2 Way
MQV1366e MQV1366e_tri.cel TriAmp 3 Way
MQV1394e MQV1394e_bi.cel TriAmp 2 Way
MQV1394e MQV1394e_tri.cel TriAmp 3 Way
MQV2364e MQV2364e_bi.cel BiAmp 2 Way
MQV2364e MQV2364e_tri.cel TriAmp 3 Way
MQV2364e MQV2394e_bi.cel BiAmp 2 Way
MQV2394e MQV2394e_tri.cel TriAmp 3 Way
SB1000z SB1000z.cel Passive 1 Way
SB120z SB120z.cel Passive 1 Way
SB150z SB150z.cel Passive 1 Way
SB180z SB180z.cel Passive 1 Way
SB250z SB250z.cel Passive 1 Way
SB330z SB330z.cel Passive 1 Way
SB48z SB48z.cel Passive 1 Way
SB600z SB600z.cel Passive 1 Way
SB625z SB625z.cel Passive 1 Way
SB750z SB750z.cel Passive 1 Way
SB850z SB850z.cel Passive 1 Way
SBX220 SBX220.cel Passive 1 Way

To use systems with sub, high pass LF @ 100 Hz (24 dB Butterworth) & do not use PEQ 1.
*1 Configuration is for one AS422e between two AS460e's.
*2 Configuration is for one AS415e adjacent to one AS490e.

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ELECTRO-VOICE

Model FileNane Mode Module
QRX218S QRx218s.cel Passive 1 Way
Xi1191A Xi1191a.cel Passive 1 Way
Xi2181A Xi2181a.cel Passive 1 Way
FRi+122/64 FRi+12264_bi.cel BiAmp 2 Way
FRi+122/66 FRI+12266_bi.cel BiAmp 2 Way
FRi+122/94 FRi+12294_bi.cel BiAmp 2 Way
FRi+152/64 FRI+15264_bi.cel BiAmp 2 Way
FRi+152/66 FRI+15266_bi.cel BiAmp 2 Way
FRi+152/94 FRI+15294_bi.cel BiAmp 2 Way
FRX+640 FRX+640_bi.cel BiAmp 2 Way
FRX+660 FRX+660_bi.cel BiAmp 2 Way
FRX+940 FRX+940_bi.cel BiAmp 2 Way
QRX112/75 QRX112_bi.cel BiAmp 2 Way
QRX115/75 QRX115_bi.cel BiAmp 2 Way
QRX153/75 QRX153_bi.cel BiAmp 2 Way
QRX212/75 QRX21275_bi.cel BiAmp 2 Way
Xi1122A/85 Xi1122a_bi.cel BiAmp 2 Way
Xi1122A/85 Xi1122a_bi_sub.cel BiAmp 2 Way
Xi1122MHA/64 Xi1122MH_bi.cel BiAmp 2 Way
Xi1122MHA/64 Xi2112MH_bi.cel BiAmp 2 Way
Xi1123A/106 Xi1123a_bi.cel BiAmp 2 Way
Xi1123A/106 Xi1123a_bi_sub.cel BiAmp 2 Way+ Sub
Xi1123A/106 Xi1123_tri.cel TriAmp 3 Way
Xi1123A/106 Xi1123_tri_sub.cel TriAmp 3 Way+ Sub
Xi1123A/106VBS Xi1123V_bi.cel BiAmp 2 Way
Xi1123A/106VBS Xi1123V_bi_sub.cel BiAmp 2 Way+ Sub
Xi1123A/106VBS Xi1123V_tri.cel TriAmp 3 Way
Xi1123A/106VBS Xi1123V_tri_sub.cel TriAmp 3 Way+ Sub
Xi1152A/64 Xi1152a64_bi.cel BiAmp 2 Way
Xi1152A/64 Xi1152a64_bi_sub.cel BiAmp 2 Way+ Sub
Xi1152A/94 Xi1152a94_bi.cel BiAmp 2 Way
Xi1152A/94 Xi1152a94_bi_sub.cel BiAmp 2 Way+ Sub
Xi1153A/64 Xi1153a_tri.cel TriAmp 3 Way
Xi1153A/64 Xi1153a_tri_sub.cel TriAmp 3 Way+ Sub
Xi1153A/64VBS Xi1153aV_tri.cel TriAmp 3 Way
Xi1153A/64VBS Xi1153aV_tri_sub.cel TriAmp 3 Way+ Sub
Xi1183A/64 Xi1183a_tri.cel TriAmp 3 Way
Xi1183A/64 Xi1183a_tri_sub.cel TriAmp 3 Way+ Sub
Xi1183A/64VBS Xi1183aV_tri.cel TriAmp 3 Way
Xi1183A/64VBS Xi1183aV_tri_sub.cel TriAmp 3 Way+ Sub
Xi2123A/106 Xi2123a_bi.cel BiAmp 2 Way
Xi2123A/106 Xi2123a_bi_sub.cel BiAmp 2 Way+ Sub
Xi2123A/106 Xi2123a_tri.cel TriAmp 3 Way
Xi2123A/106 Xi2123a_tri_sub.cel TriAmp 3 Way+ Sub
Xi2123A/106VBS Xi2123aV_bi.cel BiAmp 2 Way
Xi2123A/106VBS Xi2123aV_bi_sub.cel BiAmp 2 Way+ Sub
Xi2123A/106VBS Xi2123aV_tri.cel TriAmp 3 Way
Xi2123A/106VBS Xi2123aV_tri_sub.cel TriAmp 3 Way+ Sub
Xi2153A/64 Xi2153a_tri.cel TriAmp 3 Way
Xi2153A/64 Xi2153a_tri_sub.cel TriAmp 3 Way+ Sub
Xi2153A/64VBS Xi2153aV_tri.cel TriAmp 3 Way
Xi2153A/64VBS Xi2153aV_tri_sub.cel TriAmp 3 Way+ Sub

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JBL

Model FileNane Mode Module
AM4200/64 + AL6115 AL+420064_pa.cel Passive 2 Way
AM4200/64 + AL6115 AL+420064_pa_sub.cel Passive 2 Way + Sub
AM4200/64 AM420064_bi.cel BiAmp 2 Way
AM4200/95 + AL6115 AL+420095_pa.cel Passive 2 Way
AM4200/95 + AL6115 AL+420095_pa_sub.cel Passive 2 Way + Sub
AM4200/95 AM420095_bi.cel BiAmp 2 Way
AM4212/00 AM421200_bi.cel BiAmp 2 Way
AM4212/00 AM421200_bi_sub.cel BiAmp 2 Way + Sub
AM4212/64 AM421264_bi.cel BiAmp 2 Way
AM4212/64 AM421264_bi_sub.cel BiAmp 2 Way + Sub
AM4212/95 AM421295_bi.cel BiAmp 2 Way
AM4212/95 AM421295_bi_sub.cel BiAmp 2 Way + Sub
AM4215/64 AM421564_bi.cel BiAmp 2 Way
AM4215/64 AM421564_bi_sub.cel BiAmp 2 Way + Sub
AM4215/95 AM421595_bi.cel BiAmp 2 Way
AM4215/95 AM421595_bi_sub.cel BiAmp 2 Way + Sub
AM4315/64 AM431564_bi.cel BiAmp 2 Way
AM4315/64 AM431564_bi_sub.cel BiAmp 2 Way + Sub
AM4315/95 AM431595_bi.cel BiAmp 2 Way
AM4315/95 AM431595_bi_sub.cel BiAmp 2 Way + Sub
AM6200/64 + AL6115 AL+620064_pa.cel Passive 2 Way
AM6200/64 + AL6115 AL+620064_pa_sub.cel Passive 2 Way + Sub
AM6200/64 AM620064_bi.cel BiAmp 2 Way
AM6200/95 + AL6115 AL+620095_pa.cel Passive 2 Way
AM6200/95 + AL6115 AL+620095_pa_sub.cel Passive 2 Way + Sub
AM6200/95 AM620095_bi.cel BiAmp 2 Way
AM6212/00 AM621200_bi.cel BiAmp 2 Way
AM6212/00 AM621200_bi_sub.cel BiAmp 2 Way + Sub
AM6212/64 AM621264_bi.cel BiAmp 2 Way
AM6212/64 AM621264_bi_sub.cel BiAmp 2 Way + Sub
AM6212/95 AM621295_bi.cel BiAmp 2 Way
AM6212/95 AM621295_bi_sub.cel BiAmp 2 Way + Sub
AM6215/64 AM621564_bi.cel BiAmp 2 Way
AM6215/64 AM621564_bi_sub.cel BiAmp 2 Way + Sub
AM6215/95 AM621595_bi.cel BiAmp 2 Way
AM6215/95 AM621595_bi_sub.cel BiAmp 2 Way + Sub
AM6315/64 AM631564_bi.cel BiAmp 2 Way
AM6315/64 AM631564_bi_sub.cel BiAmp 2 Way + Sub
AM6315/64 AM631564_tri.cel TriAmp 3 Way
AM6315/64 AM631564_tri_sub.cel TriAmp 3 Way + Sub
AM6315/95 AM631595_bi.cel BiAmp 2 Way
AM6315/95 AM631595_bi_sub.cel BiAmp 2 Way + Sub
AM6315/95 AM631595_tri.cel TriAmp 3 Way
AM6315/95 AM631595_tri_sub.cel TriAmp 3 Way + Sub
AM6340/64 AM634064_bi.cel BiAmp 2 Way
AM6340/64 AM634064_bi_sub.cel BiAmp 2 Way + Sub
AM6340/64 AM634064_tri.cel TriAmp 3 Way
AM6340/64 AM634064_tri_sub.cel TriAmp 3 Way + Sub
AM6340/95 AM634095_bi.cel BiAmp 2 Way
AM6340/95 AM634095_bi_sub.cel BiAmp 2 Way + Sub
AM6340/95 AM634095_tri.cel TriAmp 3 Way
AM6340/95 AM634095_tri_sub.cel TriAmp 3 Way + Sub
ASB4128 ASB4128.cel Passive 1 Way
ASB6118 ASB6118.cel Passive 1 Way
ASB6218 ASB6218.cel Passive 1 Way
ASB6218V ASB6218V.cel Passive 1 Way
VRX932x1 VRX932x1_bi.cel BiAmp 2 Way
VRX932x1 VRX932x1_bi_sub.cel BiAmp 2 Way + Sub
VRX932x2 VRX932x2_bi.cel BiAmp 2 Way
VRX932x2 VRX932x2_bi_sub.cel BiAmp 2 Way + Sub

Company names and product names in this document and data are the registered trademarks or trademarks of their respective corporate owners.

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