E V Hz a. b. c. d. e. f EMC European Electro-Magnetic Compati
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1 E SERIES Dedicated installation amplifiers E 4:2 E 8:2 E 12:2 オペレーション マニュアル
2 E V Hz a. b. c. d. e. f EMC European Electro-Magnetic Compatibility: EU 2004/108/ EC 2006/ 95/EC : EMC EN , E3 EMC EN , E3 S/N 1 % EN60065, I 3.1 ANSI/UL CSAC 22.2 No N R T L N a t i o n a l l y R e c o g n i z e d Te s t i n g Laboratory: UL FCC Part 15B Class A UL! 2 E rev 1.0.0J
3 European Electro Magnetic Compatibilit y EMC Directive FCC Part 15 Class A EM C CE EC E rev 1.0.0J 3
4 3.2.4 E Lo -Z 100 V 70 V 70 V W E rev 1.0.0J
5 D Hz APD Auto Power Down = APO Auto Power On = GPIO General Purpose Input Output = LED POWER SPT Input Signal Present Threshold E rev 1.0.0J 5
6 V CPL Output Current Peak Limiter E rev 1.0.0J
7 Lab.gruppen IDEEA IntelliDrive Energy Efficient Amplifier L ab.gruppen E E E 12:2 E 8:2 E 4:2 E 6 5 Lab.gruppen E 1U 2 70V 70.7 Vrms = 100 V peak E Lab.gruppen E 12:2 E 8:2 E 4:2 E 4.2 E D E D 70V 2/4/ V E E 4 dbu E rev 1.0.0J 7
8 70V dbu 70.7 Vrms 35.2 db Lo -Z dbu E E CPL Current Peak Limiter TEMP LED PAL Power Average Limiter DC 8 E rev 1.0.0J
9 Hz 50 Hz - 3 db 2 Hz 12 db/oct. 70 V APD Auto Power Down = APO Auto Power On = Energ y Star 2.1 E 1 W 20 E 2 APO GPIO General Purpose Input Output = GPIO GPIO E APD APO GPO GPO E rev 1.0.0J 9
10 L ab.gruppen 5.2 1U EIA mm 4.2 kg 5.3 E TEMP LED E rev 1.0.0J
11 5.4 E V Hz 85 V 60 V 100 V IEC IEC 3 A POWER LED POWER LED 5.5 E AC E rev 1.0.0J 11
12 LED LED P OW E R - TEMP - P S U SIG - SPT LIM - 12 E rev 1.0.0J
13 6.2 Locking IEC; must be grounded/earthed POWER STATE BALANCED INPUTS CHANNEL 1 CHANNEL 2 POWER BALANCED SPEAKER OUTPUTS V 50-60Hz CH 1 CH 2 E 12:2 CONTROL MONITOR CH 1 CH 2 Designed in Sweden -10dB -10dB manufactured in Thailand GPI GPO HIGH PASS 70V SIG HIGH PASS 70V SIG DO NOT CONNECT ANY TERMINAL TO GROUND. FULL RANGE Lo-Z -Inf 0 FULL RANGE Lo-Z -Inf 0 CLASS 2 WIRING Ser. N:o Removed! Audio Power Amplifier for professional use 4GC7 GPIO 3 2 : VAC 50/60 Hz POWER - POWER POWER BALANCED SPEAKER OUTPUTS CH 1 CH 2 Locking IEC 0 db DO NOT CONNECT ANY TERMINAL TO GROUND. 0 CLASS 2 WIRING Ser. N:o R E rev 1.0.0J 13
14 db - db -10 db 0 db 4 dbu -10 db 14 dbu S IG SP T Signal Present T hreshold - High-pass Full-range 2 Hz 50 Hz 70 V Lo-Z RSL Rail Sensing Limiter - 70 V 8 16 Lo-Z : V 70 V OUTPUT 41 A rms 8 mm 2 8 AWG G PIO E A P D Auto Power Down = A P O Auto Power On = GPI 6.3 SPT Input Signal Present Threshold dbu +4 dbu - 60 db APO/APD P OW ER 2 SPT 6 db SP T APD 14 E rev 1.0.0J
15 APO SPT 6 db E 7.2 E APO E 100 V 240 V Hz 85 V 264 V 100 V 60 V 7.3 E Clip, Thermal & Rail sense Balanced input terminal (17.2 dbu headroom) High pass filter (2 Hz / 50 Hz) Attenuator Rail Sense Limiter (4 dbu for full output Voltage) Bridged amplifier (Gain depends on RSL) Loudspeaker output terminal This block also implements the protection 4 dbu 1.23 Vrms 17.2 dbu E dbu DSP SPL C D MP3-10 dbu -7.8 dbu E 70 V 2 4 E rev 1.0.0J 15
16 POWER STATE BALANCED INPUTS CHANNEL 1 CHANNEL 2 POWER CONTROL MONITOR CH 1 CH 2-10dB -10dB GPI GPO HIGH PASS 70V SIG HIGH PASS 70V SIG FULL RANGE Lo-Z -Inf 0 FULL RANGE Lo-Z -Inf 0 Phoenix C D Phoenix C ontact MSTB 2.5/3-ST Z Anytek OQ CCG 1 1 DSP Phoenix Anytek K T CCG E 70 V 4 2 E E rev 1.0.0J
17 RSL RSL A 1 = 70 V 2 = 70 V Channel 1 Channel 2 Model RSL switch Load type Power RSL switch Load type Power Channel 1 Channel 2 E 4:2 70 V 70 V 50 W 70 V 70 V 350 W Model RSL switch Load type Power RSL switch Load type Power E 4:2 70 V 70 V 200 W 70 V 70 V 200 W E 8:2 4: V V W V V W E E 8: 4: V V WW V V W E E 12:2 8: V V W V V W E 8: 2 70 V 70 V 0 W 70 V 70 V 800 W E 12:2 70 V 70 V 200 W 70 V 70 V 1000 W B 1 = 70 V 2 = 8 Channel 1 Channel 2 Model RSL switch Load type Power RSL switch Load type Power Channel 1 Channel 2 E 4:2 70 V 70 V 50 W 70 V 8 ohms 350 W* Model RSL switch Load type Power RSL switch Load type Power E 4:2 70 V 70 V 300 W Lo-Z 8 ohms 100 W E 8:2 4: V V W V 8 ohms W* E E 12: 4: V V W Lo-Z 8 ohms W E E 12: 8: V V W V 8 ohms 600 W E 12: 2 70 V 70 V 900 W Lo-Z 8 ohms 300 W E 12: 2 70 V 70 V 600 W 70 V 8 ohms 600 W Channel 1 Channel 2 Model RSL switch Load type Power RSL switch Load type Power Channel 1 Channel 2 E 4: 2 70 V 70 V 100 W 70 V 4 ohms 300 W* Model RSL switch Load type Power RSL switch Load type Power E 8:2 70 V 70 V 300 W 70 V 4 ohms 500 W* E 8:2 4: V V W Lo-Z 70 V 4 ohms W* E E 12:2 8: V V W V 4 ohms W* W* E E 12:2 8: V V W Lo-Z 4 ohms W E 12:2 70 V 70 V 400 W 70 V 4 ohms 800 W* E 12:2 70 V 70 V 600 W Lo-Z 4 ohms 600 W Channel 1 Channel 2 Model RSL switch Load type Power RSL switch Load type Power Channel 1 E Channel 2 rev 1.0.0J 17 E 4 2 Lo-Z 4 ohms 200 W 70 V 8 ohms 200 W* Model RSL switch Load type Power RSL switch Load type Power E 8:2 Lo-Z 4 ohms 400 W 70 V 8 ohms 400 W E 8:2 4 2 Lo-Z 44 ohms W* W V 88 ohms WW*
18 Model RSL switch Load type Power RSL switch Load type Power Model RSL switch Load type Power RSL switch Load type Power E 4:2 70 V 70 V 50 W 70 V 8 ohms 350 W* E 4:2 4:2 70 V V W V Lo-Z 8 ohms ohms 350 W* 100 W E 4:2 8:2 70 V V W 200 Lo-Z 70 V 8 ohms ohms 100 W 600 E 8:2 E 12: 2 70 V V W V Lo-Z 8 ohms ohms 600 W 300 E 12: 2 70 V 70 V 900 W Lo-Z 8 ohms 300 W 12: V ohms 600 C Channel 1 Channel 2 1 = 70 V E 12: 2 70 V 70 V 600 W 70 V 8 ohms 600 W 2 = 8 x 2 4 Channel 1 Channel 2 Channel 1 Channel 2 Model RSL switch Load type Power RSL switch Load type Power Model RSL switch Load type Power RSL switch Load type Power E 4: 2 70 V 70 V 100 W 70 V 4 ohms 300 W* E 4: 2 8:2 70 V V W V 70 4 ohms ohms 300 W* 500 W* E 8:2 8:2 70 V V W V Lo-Z 4 ohms ohms 500 W* 400 W E 8:2 12:2 70 V V W 400 Lo-Z 70 V 4 ohms ohms 400 W 800 W* E 12:2 12:2 70 V V W V Lo-Z 4 ohms ohms 800 W* 600 W E 12:2 70 V 70 V 600 W Lo-Z 4 ohms 600 W D 1 = 8 x = 8 x 1 Channel 1 Channel 2 Channel 1 Channel 2 Model RSL switch Load type Power RSL switch Load type Power Model RSL switch Load type Power RSL switch Load type Power E 4 2 Lo-Z 4 ohms 200 W 70 V 8 ohms 200 W* E 8:2 4 2 Lo-Z 4 ohms W 70 V 8 ohms W* W E 8:2 Lo-Z 4 ohms W* W 70 V 8 ohms W E 12:2 8:2 Lo-Z 4 ohms W* W 70 V 8 ohms 600 W E 12:2 Lo-Z 70 V 4 ohms W* W Lo-Z 70 V 8 ohms W E 12:2 70 V 4 ohms 900 W* Lo-Z 8 ohms 300 W * V E 70 Vrms 100 V peak RSL 70 V LIM LED 18 E rev 1.0.0J
19 7.4.5 CPL Output Current Peak Limiter - CPL CPL CPL E 3 E 12:2 18 Arms E 8:2 16 Arms E 4:2 14 Arms E 3 E rev 1.0.0J 19
20 8.2 E 4:2 Level Load Rated power Line Current *2) Watt *1) Thermal Dissipation 120 VAC 230 VAC In Out Dissipated BTU/hr kcal/hr Amp (I) Standby Power on, Idling Pink Pseudo Noise (1/8) Amp (I) Watt 70 V / Ch. 200 x V / Ch. 200 x ohms / Ch. 200 x ohms / Ch. 200 x ohms / Ch. 200 x ohms / Ch. 200 x ohms / Ch. 200 x ohms / Ch. 200 x ohms / Ch. 200 x ohms / Ch. 200 x *1) The amplifier s PSU operates as a non-resistive load, so the calculation Volts x Amps = Watts would not be correct. Instead, measured and specified here is what is known as the Active Power in the amplifier providing useful, real-world values of power consumption and heat dissipation. *2) Current draw figures measured at 230 V as well as 120 V. The efficiency is similar, but not identical for the two scenarios. The efficiency for 100 V mains is very similar to that of 120 V. E 8:2 Level Load Rated power Line Current *2) Watt *1) Thermal Dissipation 120 VAC 230 VAC In Out Dissipated BTU/hr kcal/hr Amp (I) Standby Power on, Idling Pink Pseudo Noise (1/8) Amp (I) Watt 70 V / Ch. 400 x V / Ch. 400 x ohms / Ch. 310 x ohms / Ch. 310 x ohms / Ch. 400 x ohms / Ch. 400 x ohms / Ch. 400 x ohms / Ch. 400 x ohms / Ch. 400 x ohms / Ch. 400 x *1) The amplifier s PSU operates as a non-resistive load, so the calculation Volts x Amps = Watts would not be correct. Instead, measured and specified here is what is known as the Active Power in the amplifier providing useful, real-world values of power consumption and heat dissipation. *2) Current draw figures measured at 230 V as well as 120 V. The efficiency is similar, but not identical for the two scenarios. The efficiency for 100 V mains is very similar to that of 120 V. 20 E rev 1.0.0J
21 E 12:2 Level Load Rated power Line Current *2) Watt *1) Thermal Dissipation 120 VAC 230 VAC In Out Dissipated BTU/hr kcal/hr Amp (I) Standby Power on, Idling Pink Pseudo Noise (1/8) Amp (I) Watt 70 V / Ch. 600 x V / Ch. 600 x ohms / Ch. 33 x ohms / Ch. 33 x ohms / Ch. 600 x ohms / Ch. 600 x ohms / Ch. 600 x ohms / Ch. 600 x ohms / Ch. 600 x ohms / Ch. 600 x *1) The amplifier s PSU operates as a non-resistive load, so the calculation Volts x Amps = Watts would not be correct. Instead, measured and specified here is what is known as the Active Power in the amplifier providing useful, real-world values of power consumption and heat dissipation. *2) Current draw figures measured at 230 V as well as 120 V. The efficiency is similar, but not identical for the two scenarios. The efficiency for 100 V mains is very similar to that of 120 V * DSP 2.71 dbu 4 dbu E rev 1.0.0J 21
22 E 4:2 Channel RSL switch Channel load Power output Ch. 1 Ch. 2 Ch. 1 Ch. 2 Ch.1 Ch V 70 V 70 V 70 V 0 70 V V 70 V 70 V 70 V 70 V V V 70 V 70 V 70 V 70 V V V 70 V 70 V 70 V 70 V V V 70 V 70 V 70 V 70 V V V 70 V Lo-Z 70 V 2 ohms V ohms* 70 V Lo-Z 70 V 2 ohms V ohms* 70 V Lo-Z 70 V 4 ohms V 50 4 ohms* 70 V Lo-Z 70 V 4 ohms V ohms* 70 V Lo-Z 70 V 4 ohms V ohms* 70 V Lo-Z 70 V 4 ohms V ohms 70 V 70 V 70 V 4 ohms V ohms* 70 V 70 V 70 V 4 ohms V ohms* 70 V 70 V 70 V 4 ohms V ohms* 70 V Lo-Z 70 V 8 ohms V 50 8 ohms* 70 V Lo-Z 70 V 8 ohms V ohms 70 V 70 V 70 V 8 ohms V ohms* 70 V 70 V 70 V 8 ohms V ohms* 70 V 70 V 70 V 8 ohms V ohms* 70 V 70 V 70 V 8 ohms V ohms* 70 V Lo-Z 70 V 16 ohms V ohms* 70 V Lo-Z 70 V 16 ohms V ohms 70 V 70 V 70 V 16 ohms V ohms* 70 V 70 V 70 V 16 ohms V ohms* 70 V 70 V 70 V 16 ohms V ohms 70 V Lo-Z 4 ohms 16 ohms ohms* ohms* 70 V Lo-Z 4 ohms 16 ohms ohms* ohms 70 V 70 V 4 ohms 16 ohms ohms* ohms* Lo-Z 70 V 4 ohms 16 ohms ohms ohms* Lo-Z 70 V 4 ohms 16 ohms 90 4 ohms* ohms Lo-Z Lo-Z 4 ohms 16 ohms ohms ohms 70 V Lo-Z 4 ohms 8 ohms ohms 50 8 ohms* 70 V Lo-Z 4 ohms 8 ohms ohms* ohms 70 V 70 V 4 ohms 8 ohms ohms* ohms* 70 V 70 V 4 ohms 8 ohms ohms* ohms* Lo-Z 70 V 4 ohms 8 ohms ohms ohms* Lo-Z Lo-Z 4 ohms 8 ohms ohms ohms 70 V Lo-Z 4 ohms 4 ohms ohms ohms* 70 V Lo-Z 4 ohms 4 ohms ohms* ohms* Lo-Z Lo-Z 4 ohms 4 ohms ohms ohms 70 V 70 V 8 ohms 16 ohms ohms* ohms* 70 V Lo-Z 8 ohms 16 ohms ohms* ohms* Lo-Z 70 V 8 ohms 16 ohms ohms ohms 70 V 70 V 8 ohms 8 ohms ohms* ohms* 70 V Lo-Z 8 ohms 8 ohms ohms* ohms 70 V Lo-Z 8 ohms 8 ohms ohms* 50 8 ohms* Lo-Z Lo-Z 2 ohms 16 ohms ohms* ohms Lo-Z Lo-Z 2 ohms 8 ohms ohms* ohms Lo-Z Lo-Z 2 ohms 4 ohms ohms* ohms* Lo-Z Lo-Z 2 ohms 2 ohms ohms* ohms* 70 V unused 16 ohms unused ohms unused 70 V unused 8 ohms unused ohms* unused 70 V unused 4 ohms unused ohms* unused Lo-Z unused 2 ohms unused ohms unused 70 V Lo-Z 16 ohms 16 ohms ohms 16 ohms 70 V 70 V 16 ohms 16 ohms ohms* ohms* 22 E rev 1.0.0J
23 E 8:2 Channel RSL switch Channel load Power output Ch. 1 Ch. 2 Ch. 1 Ch. 2 Ch.1 Ch. 2 unused 70 V unused 70 V unused V 70 V 70 V 70 V 70 V V V 70 V 70 V 70 V 70 V V V 70 V 70 V 70 V 70 V V V 70 V 70 V 70 V 70 V V V 70 V 70 V 70 V 70 V V V 70 V 70 V 70 V 70 V V V 70 V Lo-Z 70 V 2 ohms V ohms 70 V Lo-Z 70 V 2 ohms V ohms* 70 V Lo-Z 70 V 2 ohms V ohms* 70 V Lo-Z 70 V 2 ohms V ohms* 70 V Lo-Z 70 V 4 ohms V ohms* 70 V Lo-Z 70 V 4 ohms V ohms* 70 V Lo-Z 70 V 4 ohms V ohms* 70 V Lo-Z 70 V 4 ohms V ohms 70 V 70 V 70 V 4 ohms V ohms* 70 V 70 V 70 V 4 ohms V ohms* 70 V 70 V 70 V 4 ohms V ohms* 70 V 70 V 70 V 4 ohms V ohms* 70 V 70 V 70 V 4 ohms V ohms* 70 V Lo-Z 70 V 8 ohms V ohms* 70 V Lo-Z 70 V 8 ohms V ohms 70 V 70 V 70 V 8 ohms V ohms* 70 V 70 V 70 V 8 ohms V ohms* 70 V 70 V 70 V 8 ohms V ohms* 70 V 70 V 70 V 8 ohms V ohms 70 V Lo-Z 70 V 16 ohms V ohms* 70 V Lo-Z 70 V 16 ohms V ohms 70 V 70 V 70 V 16 ohms V ohms* 70 V 70 V 70 V 16 ohms V ohms* 70 V 70 V 70 V 16 ohms V ohms 70 V Lo-Z 4 ohms 16 ohms ohms* ohms* 70 V Lo-Z 4 ohms 16 ohms ohms* ohms 70 V 70 V 4 ohms 16 ohms ohms* ohms* 70 V 70 V 4 ohms 16 ohms ohms* ohms Lo-Z 70 V 4 ohms 16 ohms ohms ohms Lo-Z Lo-Z 4 ohms 16 ohms ohms ohms 70 V Lo-Z 4 ohms 8 ohms ohms* ohms* 70 V Lo-Z 4 ohms 8 ohms ohms* ohms 70 V 70 V 4 ohms 8 ohms ohms* ohms* 70 V 70 V 4 ohms 8 ohms ohms* ohms* Lo-Z 70 V 4 ohms 8 ohms ohms ohms* Lo-Z Lo-Z 4 ohms 8 ohms ohms ohms 70 V Lo-Z 4 ohms 4 ohms ohms* ohms 70 V Lo-Z 4 ohms 4 ohms ohms* ohms* Lo-Z Lo-Z 4 ohms 4 ohms ohms ohms 70 V 70 V 8 ohms 16 ohms ohms ohms* 70 V 70 V 8 ohms 16 ohms ohms* ohms 70 V 70 V 8 ohms 8 ohms ohms* ohms* 70 V Lo-Z 8 ohms 8 ohms ohms ohms Lo-Z Lo-Z 2 ohms 8 ohms ohms ohms Lo-Z Lo-Z 2 ohms 4 ohms ohms* ohms Lo-Z Lo-Z 2 ohms 2 ohms ohms* ohms* E rev 1.0.0J 23
24 E 12:2 Channel RSL switch Channel load Power output Ch. 1 Ch. 2 Ch. 1 Ch. 2 Ch.1 Ch. 2 unused 70 V 70 V 70 V unused V 70 V 70 V 70 V 70 V V V 70 V 70 V 70 V 70 V V V 70 V 70 V 70 V 70 V V V 70 V 70 V 70 V 70 V V V 70 V 70 V 70 V 70 V V V 70 V 70 V 70 V 70 V V V 70 V Lo-Z 70 V 2 ohms V ohms 70 V Lo-Z 70 V 4 ohms V ohms* 70 V Lo-Z 70 V 4 ohms V ohms* 70 V Lo-Z 70 V 4 ohms V ohms* 70 V Lo-Z 70 V 4 ohms V ohms* 70 V Lo-Z 70 V 4 ohms V ohms 70 V 70 V 70 V 4 ohms V ohms* 70 V 70 V 70 V 4 ohms V ohms* 70 V 70 V 70 V 4 ohms V ohms* 70 V 70 V 70 V 4 ohms V ohms* 70 V 70 V unused 4 ohms unused ohms 70 V Lo-Z 70 V 8 ohms V ohms* 70 V Lo-Z 70 V 8 ohms V ohms 70 V 70 V 70 V 8 ohms V ohms* 70 V 70 V 70 V 8 ohms V ohms* 70 V 70 V 70 V 8 ohms V ohms 70 V Lo-Z 70 V 16 ohms V ohms* 70 V Lo-Z 70 V 16 ohms V ohms 70 V 70 V 70 V 16 ohms V ohms* 70 V Lo-Z 70 V 16 ohms V ohms* 70 V Lo-Z 70 V 16 ohms V ohms 70 V Lo-Z 4 ohms 16 ohms ohms* ohms* 70 V Lo-Z 4 ohms 16 ohms ohms* ohms 70 V 70 V 4 ohms 16 ohms ohms* ohms* 70 V 70 V 4 ohms 16 ohms ohms* ohms Lo-Z 70 V 4 ohms 16 ohms ohms ohms 70 V Lo-Z 4 ohms * ohms ohms* ohms* 70 V Lo-Z 4 ohms * ohms ohms* ohms* 70 V 70 V 4 ohms 8 ohms ohms* ohms* 70 V 70 V 4 ohms 8 ohms ohms* ohms* Lo-Z 70 V 4 ohms 8 ohms ohms ohms Lo-Z Lo-Z 4 ohms 8 ohms ohms ohms 70 V Lo-Z 4 ohms 4 ohms ohms ohms 70 V Lo-Z 4 ohms 4 ohms ohms ohms 70 V Lo-Z 4 ohms 4 ohms ohms ohms Lo-Z Lo-Z 4 ohms 4 ohms ohms ohms 70 V 70 V 8 ohms 16 ohms ohms ohms 70 V 70 V 8 ohms 8 ohms ohms ohms 70 V Lo-Z 8 ohms 8 ohms ohms ohms Lo-Z 70 V 2 ohms 8 ohms ohms ohms Lo-Z Lo-Z 2 ohms 4 ohms ohms ohms Lo-Z Lo-Z 2 ohms 2 ohms ohms ohms 70 V 70 V 16 ohms 16 ohms ohms ohms 24 E rev 1.0.0J
25 9. Model Number of channels Peak total output all channels driven Peak output voltage per channel Max. output current per channel E 12:2 E 8:2 E 4: W 800 W 400 W 100 V / 70 Vrms 100 V / 70 Vrms 100 V / 70 Vrms 18 Arms 16 Arms 11 Arms Max. Output Power Per ch. (all ch. s driven) 2 ohms (Lo-Z mode) 4 ohms (Lo-Z mode) 8 ohms (Hi-Z mode) 16 ohms (Hi-Z mode) 70 V (Hi-Z mode) 8 ohms (Lo-Z mode) 16 ohms (Lo-Z mode) Performance THD 20 Hz - 20 khz for 1 W THD at 1 khz and 1 db below clipping Signal To Noise Ratio Channel separation (Crosstalk) at 1 khz Frequency response Input impedance Common Mode Rejection (CMR) Output impedance <0.1% <0.1% <0.1% <0.05% <0.05% <0.05% >112 dba >112 dba >112 dba >70 db >70 db >70 db 2 Hz - 40 khz 2 Hz - 40 khz 2 Hz - 40 khz 20 kohm 20 kohm 20 kohm 50 db 50 db 50 db 25 mohm 25 mohm 25 mohm Gain, Sensitivity and Limiters Limit and gain switch (per channel) VPL for Hi-Z mode VPL for Lo-Z mode Sensitivity for 70 V out in Hi-Z mode Sensitivity for full power into 4/8/16 ohms in Lo-Z mode Gain in Hi-Z mode Gain in Lo-Z mode Level adjustment (per channel) 2 pos: Lo-Z and Hi-Z 2 pos: Lo-Z and Hi-Z 2 pos: Lo-Z and Hi-Z 100 V 100 V 100 V 69.3 V 56.6 V 40.0 V 4 dbu 4 dbu 4 dbu 4 dbu 4 dbu 4 dbu 35.2 dbu 35.2 dbu 35.2 dbu 32.0 db 30.3 db 27.2 db Rear panel potentiometer, detented from -inf to 0 db Connectors and switches Input connectors (per ch.) Output connectors (per ch.) High pass fi lter Power control GPI (power control input) GPO (power state output) Cooling 3-pin detachable screw terminals, electronically balanced 2-pin detachable screw terminals Fixed at 35 Hz, switchable per channel Can be used to go between standby and ON Contact closure type, 2-pin detachable screw terminal, controls the power state Contact closure type, 2-pin detachable screw terminal, for external monitoring of the power state Single fan, front to rear airfl ow, no fi lter required, temperature controlled speed Power Nominal voltage Operating voltage Standby consumption Mains connector Dimensions Weight Finish Approvals Warranty VAC VAC VAC VAC VAC VAC <1 W <1 W <1 W IEC inlet W: 483 mm (19 ), H: 44 mm (1 U), D: 276 mm (10.9 ) 4.2 kg (9.3 lbs.) 4.1 kg (9 lbs.) 4 kg (8.8 lbs.) Dark grey aluminium front and black steel chassis CE 3 years, components and factory workmanship. See full warranty statement. All specifications are subject to change without notice. E rev 1.0.0J 25
26 10. E Series Operation Manual 11. Lab.gruppen < labgruppen.com/distributors/> < labgruppen.com/suppor t / find _ ser vice_centre/> E Series Operation Manual IDEEA RSL Lab.gruppen AB This Translation Copyright 2012 TC Group Japan. All rights reserved. 26 E rev 1.0.0J
27 E rev 1.0.0J 27
28 LAB.GRUPPEN AB SWEDEN INTERNATIONAL CONTACT Rev J Item no. OM-ES
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dynamics operator manual Klark Teknik Klark Teknik Building Walter Nash Road Kidderminster Worcestershire DY11 7HJ England Tel: +44 1562 741515 Fax: +44 1562 745371 Email: [email protected]
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Siena Telex Communications (UK) Ltd, Klark Teknik Building, Walter Nash Road, Kidderminster. Worcestershire. DY11 7HJ. England. Tel:+44 1562 741515 Fax:+44 1562 745371 Website: www.midasconsoles.com MIDAS
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MIXER 1 2 3 e r t y q w r > t q t w > e +20 u i y u i +15 +10 Response [db] +5 0 5 10 15 20 20 100 1k 10k 20k Frequency [Hz] 4 y o!0!1!3!4!5 q w e r t u i!2!6 q?> w r e r t u y u 5 i o!0!1!2 >!3!4?>!5!6
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DC Fan 8mm sq. General Specifications San Ace 8 15mm thick (GA type), 15mm thick, 2mm thick (GA type) 2mm thick, 25mm thick (GA type), 25mm thick (S type) 25mm thick (GV type), 25mm thick 25mm thick (San
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NJM88/A ma.µf SOT-89- TO--(NJM88ADL) ESON6-H(NJM88AKH) NJM88U NJM88ADL NJM88AKH (...97mm) 7dB typ. (f=khz, Vo=V ) Vno=µVrms typ..µf (Vo.7V) Io(max.)=mA Vo±.%.8V typ. (Io=mA ) ON/OFF SOT-89-(NJM88U) / TO--(NJM88ADL)
