ElectroVoice-P1201-pwr-sm维修电路原理图.pdf
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1、 P 1201 P 1202 MODULAR PRECISION SERIESSERVICERadioFans.CN 收音机爱 好者资料库1 / 7 Technical Specifications: X1201 / P1201 Amplifier at rated conditions, 8 output load, unless otherwise specified. X1201 / P1201 Load Impedance 8 4 2 Maximum Midband Output Power THD = 1%, 1kHz 750 W 1200 W 1600 W Rated Output
2、 Power THD 0.2%, 20Hz . 20kHz 500 W 1000 W - Max. Single Channel Output Power Dynamic-Headroom, IHF-A 850 W 1450 W 1700 W Maximum RMS Voltage Swing THD = 1%, 1kHz 86 V Voltage Gain at 1kHz 33 dB Slew Rate at 1kHz 40 V/s Power Consumption at 1/8 maximum output power 4 870 W Input Sensitivity at rated
3、 output power 4, 1kHz 1.4 V THD at rated output power, MBW = 80kHz, 1kHz 0.05 % IMD-SMPTE 60Hz, 7kHz 0.08 % DIM30 3.15kHz, 15kHz 300 / 200 Signal to Noise Ratio A-weighted, non internal summing mode 106 dB Power Requirements 240V, 230V, 120V, 100 V, 50Hz . 60Hz, factory configured Protection Audio l
4、imiters, High temperature, DC, HF, Back-EMF, Peak current limiters, Inrush current limiters, Turn-on delay Cooling Front-to-rear, 3-stage-fans Safety Class I Dimensions (W x H x D), mm 483 x 132.5 x 426 Weight 17 kg Optional Input transformer NRS 90208 (121 641) Rear-rackmount 15,5“ Rear-rackmount 1
5、8“ NRS 90235 (112 733) NRS 90223 (112 701) RadioFans.CN 收音机爱 好者资料库2 / 7MEASURED DATAX1201 / P1201The measured data apply to the following appliances:Unit ModelUnit NumberMains VoltageMains FrequencyX1201112 736230V50 - 60 HzX1201240V50 - 60 HzX1201100V50 - 60 HzX1201120V50 - 60 HzP1201170 149230V50
6、60 HzP1201170 148120V50 60 HzP1201170 148100V50 60 HzMEASURED DATA: X1201 / P1201 Printed boards name and corresponding EDP numbers:Printed boards EDP numbers100V120V230V240V81344813448134481344841998419984194Printed board parts 84194 / 84199IndexAmplifier - PCB84194/1 / 84199/1Bus - PCB84194/2 / 84
7、199/2Main - PCB84194/3 / 84199/3LED - PCB84194/4 / 84199/4Testing Conditions unless differently stated:- Measuring tolerance:X= 1.5dB- Measuring frequency:f = 1kHz- Stated level values referred to:U = 775mV (0dBu)- XLR socket pin-assignment:PIN 1 = GROUND/SHIELDPIN 2 = + INPUTPIN 3 = - INPUT- Source
8、 impedance for signal-feed via XLR socket: R(Q) = 50- The printed board assembly 84194 / 84199 offers service connectors.84194/2 / 84199/2CNS1X84194/2 / 84199/2CNS2X84194/1 / 84199/1CN10 / CN11PINAssignmentPINAssignmentPINAssignment1-Vcc1LIM SwitchCN102BIAS +HOT2-15V1FLOAT. Voltage3BIAS -HOT3SYMMETR
9、Y2GNDA4FAN Voltage4+15V3GNDA5+Vcc5GNDACN116BIAS +COLD6Speaker A1LIM Switch7BIAS -COLD7Relay/Protect2-15V8TEMP Heat sink8n.c.3-15V3 / 71. Operating Voltage:U(B) = 230V 50Hz . 60Hz / U(B) = 120V 50Hz . 60Hz2. Operating Voltage Deviation Range:-30% . +10%3. Power Consumption- Driven with sine signal f
10、= 1kHzX1201 / P1201Output PowerIdling Power Consumption50 - 70 WMaximum Power Consumption (RL=4)1870 W1200 WNominal Power Consumption (RL=4)1730 W1000 WStandard Power Consumption (RL=4)590 W100 WPower Consumption at 1/8 of the Max. Output Power720 W156 WPower Consumption at 1/8 of the Max. Output Po
11、werat 10 % Mains Overvoltage870 W180 W4. Settings/Adjustments4.1. IDLING CURRENT ADJUSTMENTConnect a DC-voltmeter to the BIAS measuring points (on the printed board assembly 84194/2 / 84199/2, seeservice connectors) and adjust the idling current via the trimmers VR101 / VR301 (on the printed board a
12、ssembly84194/1 /84199/1). Adjustment has to be performed for HOT / COLD U(DC) = 7.5mV and at normal roomtemperature. If the power amplifier has previously been operated, it has to be given several hours of time forregaining normal temperature.4.2. FLOATING - SYMMETRYChecking and setting the floating
13、 voltage symmetry has to be performed immediately after adjusting the idlingcurrent.Operate the power amplifier in idling condition. Measuring between the measuring points CNS1X.1 / CNS2X.5and CNS1X.5 / CNS2X.5 with a DC-voltmeter, set the floating voltage symmetrical to GROUND via VR1 on theprinted
14、 board assembly 84194/1 (84199/1).The absolute voltage value is not critical but the symmetry of the floating voltage over GROUND.Checking the set floating voltage is possibly by use of a DC-voltmeter and measuring between on the serviceconnector between CNS2X.3 and CNS2X.5 on the printed board asse
15、mbly 84194/2 (84199/2) as well as on the pinterminal between CN10.1 and CN10.2/3 on the printed board assembly 84194/1 (84199/1).The measured DC voltage value should be 0 volts.4.3. VCA - OFFSETRhythmically open and short-circuit the pin contacts CNS2X.1 and CNS2X.2 on the printed board assembly8419
16、4/2 (84199/2). Use VR100 to adjust the power amplifier output to their minimum offset value (withoscilloscope to minimal peak value or to the audible minimum volume of the interfering pulse).5. Function Test5.1. OUTPUT Offset VoltageDC-measurement at the loudspeaker outputs with U(DC) 10mV.5.2. LIMI
17、TER5.2.1. Attenuation TestPower amplifier driven with a 1 kHz signal up to U(A) = 69 V (without load). Increase the input voltage by10dB. The LIMITER LED lights and the output voltage ascents by approximately 2dB to approximately 85 Vwhile slightly clipping. The distortion rate of the limited signal
18、 is at THD = 1.0 . 1.5%. Further increasing theinput signal up to a value of +21dBu should not result in remarkably higher clipping.5.2.2. Attack and Release TimesTest has to be performed without load resistors connected.1.) Drive the power amplifier with a burst signal (f = 1kHz, 10 cycles, rate: 0
19、.5 sec.) and U(E) = +16dBu at theinput.4 / 72.) Monitor the output signal via oscilloscope. After 3 to 4 signal periods, the limiter has controlled the highdistortion level down to a minor residual distortion (THD = 1% . 1.5%).Attack time: 3-4 msRelease time: 30-40 ms5.3 POWER-ON DELAYMake sure that
20、 the signal is present at the power amplifier input. Switch the power amplifier via the Power-ONswitch on. Approximately 2 seconds after switching the power on, the signal will be present at the output.5.4 FAN CONTROLUpon switching the power amplifiers power on, the fans will run for approximately 2
21、 seconds and stop when thepower amplifier has regained normal temperature. In idling condition (Power-ON, no signal present) the fansare switched between SLOW and OFF mode, depending on the heat sinks temperature.Removing the connector CN5 lets the fans run in FAST mode.The fan voltage is measured b
22、etween pin CNS2X.4 and pin CNS1X.4:SLOW ca. 17.5 VFASTca. 29.0 V5.5. SOAR-PROTECTION TESTDrive the power amplifier up to 69 V in 4. Parallel-connect a 1? resistor. The protection circuit reacts andcontinuously tries to re-start! The protect-LED lights. Repeat the test with a 2? resistor. The power a
23、mplifier shouldnot switch off.Caution: If the SOAR-protection does not react in case of mains undervoltage, repeat the test with parallel-connecting a 0.5 resistor instead of a 1.5.6. SHORT-CIRCUIT CURRENT-LIMITING TEST- drive each channel with a burst signal (f = 1kHz, 1-3 cycles, rate 1 sec.), wit
24、h U(E) = 0dB- connect a 1 load resistor- the short-circuit current-limiter limits the output voltage at the load resistor symmetrically(monitor via oscilloscope) to a peak voltage value of 40 V (approximately 40 A maximum Peak Output Current).5.7. DC-VOLTAGE PROTECTION TEST- feed a test signal ( f =
25、 5 - 7 Hz ) to the power amplifier without load resistor connected.- starting at an input voltage of approximately 5 Veff, the protection circuit reacts and continuously tries to re-start!The protect-LED blinks in the same frequency.- repeat the test with f = 14Hz. The power amplifier should not swi
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