HarmanKardon-AVR35-avr-sm2维修电路原理图.pdf
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1、RadioFans.CN 收音机爱 好者资料库Continuous Power OutputTuning Cover Range 100kHz Step for AVR-35(STEREO MODE), Input : CDTHD : 0.08%, 8 ohmsBoth Channel Driven(20Hz-20kHz)(SURROUND MODE)THD : 0.5%, 8 ohms, 1kHzTHD : at 60W, 8 ohms, Input : CD20Hz1kHz20kHzIM Distortion at 45W, 8 ohms, Vol : Max.Input Sensitiv
2、ity for Rated Power Output(35W)CD/DVD/TAPE MONITORVID1/VID2/VID3S/N Ratio Input Shorted at 1 kHz 1W Output(WTD IHF-A)CDTone ControlBass : 100HzTreble : 10kHz100Hz1kHz10kHzFrequency Response at-3dBChannel Crosstalk Input Shorted by 1 K OhmsMode : Stereo(1Watt)NominalLimit50W40W45WRMS Output PowerTHD(
3、0.5%, 8 ohms, 1kHz)All Channel DrivenS/N Ratio(Input Level : 200mV)Input Shorted, IHF-A WTDFrequency Respones at-3dB8 ohms, Dolby Pro Logic40W65dB100Hz-20kHz 150Hz-20kHz35W60dBRMS Output PowerTHD(0.5%, 8 ohms, 1kHz)All Channel DrivenS/N Ratio(Input Shorted, IHF-A WTD)Delay : 20ms, Input Level : 200m
4、VFrequency Response at-3dB8 ohms, Dolby Pro Logic40W65dB100Hz-7kHz150Hz-7kHz35W60dBohm/1dBDC-6 MHzVID1/VID2/VID3Output Level / ImpedanceVID1/VID2/VID3Frequency Response at-3dB1Vp-p/75DC-8 MHz1Vp-p/75ohm/1dBLow pass crossover frequencySlope (Low Pass Filter)Surround mode : BYPASS(STEREO)Input Signal
5、: L ch (only) 200mVMaster Volume :5dB70Hz cut off24dB/octave35W0.08%0.08%0.08%0.03%0.03%0.03%0.08%170230mV170230mV0.03%200mV200mV10dB3dB10dB3dB10dB3dB10dB3dB10Hz-80kHz82dB10dB10dB10dB10dB63dB63dB62dB10Hz-70kHz55dB55dB45dBNominalLimitNominalLimitLine Level at Pre OutInput Sensitivity / impedance87.50
6、 - 108.00 MHz- 2 -RadioFans.CN 收音机爱 好者资料库17.2dbf70dB80dB43.3dbf0.5%60dB1.0dB4.0dB450B39.2dbf65dbf2.5dB35dB350-650mVTuning Cover Range(MW)AVR-35 : 10kHz/StepAVR-35RDS/SG : 9kHz StepUsable Sensitivity(MW, at 999 / 1000kHz)NominalLimit520-1710kHz522-1611kHz500uV/m00uV/mTuning Cover Range 50 kHz Step fo
7、r AVR-35RDS/SGImage Rejection(at 999kHz)IF Rejection(at 999/1000kHz)AGC Figure of Merit(From 100mV/m at 999/1000kHz)Distortion(999/1000kHz, 30% MOD, 50mV/m Input)Frequency Response(999/1000Hz)At-3dBSelectivity(999/1000Hz)9kHz/10kHzS/N Ratio(999/1000kHz, With Antenna Input 5mV/m)Overload Break-up at
8、999/1000kHz(THD 10%)Tape Output Level at 999/1000kHz(5mV/m Input)Mono Usable Sensitivity(75 ohms Input, 98MHz)Image Rejection(at 98MHz)IF Rejection(at 90MHz)46dB Queting Sensitivity(at 98MHz, 100% MOD.)StereoDistortion(1kHz, 75kHz dev. At 98MHz, 71dbf Input)MonoS/N Ratio(500uV Input, 100% MOD. At 98
9、MHz)StereoFrequency Response(30Hz-15kHz)AVR-35 De-Emphasis : 75AVR-35RDS/SG De-Emphasis : 50AM Suppression at 98MHzMuting Threshold(at 98MHz)Overload Break-up at 98 MHzCapture Ratio at 65dbfStereo Separation(at 98MHz, 100% MOD, 500Input)IHF Band Pass Filter1kHzTape out Level(at 98MHz)14.2dbf80dB90dB
10、39.2dbf0.3%65dB0.5dB2.0dB50dB31.2dbf71dbf2dB40dB500mV40dB50dB50dB1.0%100Hz-2.2kHz30dB45dB1000mV/m200mV0dB5dB5dB.0%150Hz-1.8kHzdB40dB00mV/m160-240mVPower ConsumptionAt Rated Power All Channel DrivenIdling at Minimum Volume ControlPower Supplies :USA/Canada(AVR-35)Europe(AVR-35RDS/SG)Dimension(W x H x
11、 D)InchesMMWeight(Ibs/kgs)These specifications are service target specs.specifications and components are subject to change without notice.Overall performance will be maintained or improved.AC120V, 60HzAC230V, 50Hz17.36.517.144016543529/13.2332W72W- 3 -87.50 108.00MHzEachprecautioninthismanualshould
12、befollowedduringservicing.Components identified with the IEC symbolin the parts list are special significance to safety. When replacing a component identified with, use only the replacement parts designated, or parts with the same ratings or resistance, wattage, or voltage that are designated in the
13、parts list in this manual. Leakage-current or resistance measurements must be made to determine that exposed parts are acceptablyinsulated from the supply circuit before retuming the product to the customer.Some semiconductor (solid state) devices can be damaged easily by static electricity. Such co
14、mponents commonly are calledElectrostatically Sensitive (ES) Devices. Examples of typical ES devices are integrated circuits and some field effect transistors andsemiconductor chip components.The following techniques should be used to help reduce the incidence of component damage caused by static el
15、ectricity.1. Immediately before handling any semiconductor component or semiconductor-equipped assembly, drain off any electrostatic charge onyour body by touching a known earth ground. Alternatively, obtain and wear a commercially available discharging wrist strap device,which should be removed for
16、 potential shock reasons prior to applying power to the unit under test.2. After removing an electrical assembly equipped with ES devices, place the assembly on a conductive surface such as aluminum foil, toprevent electrostatic charge build-up or exposure of the assembly.3. Use only a grounded-tip
17、soldering iron to solder or unsolder ES devices.4. Use only an anti-static solder removal device. Some solder removal devices not classified as anti-static can generate electrical chargessufficient to damage ES devices.5. Do not use freon-propelled chemicals. These can generate electrical change suf
18、ficient to damage ES devices.6. Do not remove a replacement ES device from its protective package until immediately before you are ready to install it. (Most replacementES devices are packaged with leads electrically shorted together by conductive foam, aluminum foil or comparable conductive materia
19、l.)7. Immediately before removing the protective material from the leads of a replacement ES device, touch the protective material to thechassis or circuit assembly into which the device will be installed.Be sure no power is applied to the chassis or circuit, and observe all other safety precautions
20、.8. Minimize bodily motions when handling unpackaged replacement ES devices. (Otherwise harmless motion such as the brushing togetheror your clothes fabric or the lifting of your foot from a carpeted floor can generate static electricity sufficient to damage an ES devices.CAUTION :- 4 -1. Inspect al
21、l lead dress to make certain thatleads are not pinched or that hardware is notlodged between the chassis and other metalpartsintheunit.2. Be sure that any protective devices such asnonmetallic control knobs, insulating fish-papers,cabinetbacks,adjustmentandcompartment covers or shields, isolationres
22、istor-capacitynetworks,mechanicalinsulators, etc. Which were removed for theservicingareproperlyre-installed.Before returning the unit to the user, perform the following safety checks :3. Be sure that no shock hazard exists ; check for leakagecurrentusingSimpsonModel229LeakageTester,standardequipmen
23、t item No. 21641, RCA Model WT540A or usealternate method asfollows : Plug the power cord directlyInto a 120 volt AC receptacle (do not use an IsolationTransformer for this test). Using two clip leads, connect a1500ohms,10wattResistorparalleledbya0.15uFcapacitor,inserieswithallexposedmetalcabinetpar
24、tsandaknownearthground,suchas a water pipe or conduit. Use a VTVM or VOM with 1000 ohms per volt, or higher sensitivity to measure the AC voltage drop across theresistor. (See diagram) Move the resistor connection to each exposed metal part having a return path to the chassis (antenna, metal,cabinet
25、,screwheads,knobsandcontrolshafts,escutcheon,etc.)andmeasuretheACvoltagedropacrosstheresistor.(Thistestshouldbeperformedwiththe0.35voltRMSormoreisexcessiveandindicatesapotentialshockhazardwhichmustbecorrectedbeforereturningtheunittotheowner.- 5 -Delay :Digital Input Selector :OpticalCoaxialDigitalSe
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