Yorkville AP3400 Service Manual 电路图.pdf

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1、SERVICE MANUAL 3400 HIGH EFFICIENCY STEREO POWER AMPLIFIER U.S.A. Yorkville Sound Inc. 4625 Witmer Industrial Estate Niagara Falls, New York 14305 USA Voice: (716) 297-2920 Fax: (716) 297-3689 WORLD HEADQUARTERS CANADA Yorkville Sound 550 Granite Court Pickering, Ontario L1W-3Y8 CANADA Voice: (905)

2、837-8481 Fax: (905) 837-8746 Quality and Innovation Since 1963 Printed in Canada RadioFans.CN 收音机爱 好者资料库 Manual-Service-AP3400-00-1v6.pdf 1 AUDIOPRO AP-3400 SERVICE MANUAL M1012A “THE INPUT BOARD” The input board processes the audio signal from the input jacks to the voltage amplifier board, (M1011A

3、). Each channel consists of a balanced gain stage, defeatable bass boost filter, and a preemphasis filter network. The balanced input, (XLR Jack) and unbalanced input (phone jack) are wired in parallel to the input of a balanced operational amplifier, (U1). The gain of this stage is 1.6 (4dB) balanc

4、ed and 1.6 (4dB) unbalanced. Resistors R1, R5 along with capacitors C1 and C2 form a radio interference elimination filter. Switch S1 selects a flat or bass boosted frequency response. The bass boost filter provides a 20Hz high pass, high Q filter response with a +4dB peak at 55Hz. The filter consis

5、ts of a tee network on the input of U1A along with R9, R10, R11, C5 and C6. The gain is 1 (0dB) in the passband, (above 100Hz). Operational amplifier U3B is a high pass shelving filter with a +2dB shelf above 20KHz. This filter provides the pre- emphasis required to obtain a flat frequency response

6、(to 20KHz) on the power amplifier output at full power. M1011A VOLTAGE AMPLIFIERS AND SYSTEM CONTROL This board contains: Voltage amplifiers to drive the current amplifiers on the M1002A boards. The front panel volume control circuitry. The EMS control system with its associated circuits: Pre clippi

7、ng and line current sensing heater circuits. Clip and activity LEDs. Driver circuitry for the amplifier disable relay (used during amplifier turn on, turn off, thermal shutdown and current limiting). Circuit Explanation: Refer to the schematic of M1011A as the sections of the circuit are explained.

8、The audio signal enters the board from M1012A through connector MS4. The two channels are marked L and R for left and right. The signals are to be considered as differential sources and therefore are marked as L+, L-,R+ and R-. Since the left channel has the same topology as the right channel we wil

9、l only look at the left channel. The signal (L+) at the terminal block (MS4) passes through the front panel level control (P1) and the desired level enters the inverting input of U1. Op amp U1 is an inverting amplifier with a set gain of 2.40 (7.6dB). Built around U1 is a dual purpose circuit contro

10、lled by a voltage divider consisting of R15, R16, R17, R18, R19, R20 and R21. The voltage divider sets two reference levels, (HDRM no objects filled with liquids should be placed on the apparatus. Terminals marked with the “lightning bolt” are hazardous live; the external wiring connected to these t

11、erminals require installation by an instructed person or the use of ready made leads or cords. Ensure that proper ventilation is provided around the appliance. Do not install near any heat sources such as radiators, heat registers, stoves, or other apparatus (including amplifiers) that produce heat.

12、 No naked flame sources, such as lighted candles, should be placed on the apparatus. Power Cord Do not defeat the safety purpose of the polarized or grounding-type plug. A polarized plug has two blades with one wider than the other. A grounding type plug has two blades and a third grounding prong. T

13、he wide blade or the third prong are provided for your safety. If the provided plug does not fit into your outlet, consult an electrician for replacement of the obsolete outlet. The AC supply cord should be routed so that it is unlikely that it will be damaged. If the AC supply cord is damaged DO NO

14、T OPERATE THE UNIT. Unplug this apparatus during lightning storms or when unused for long periods of time. Service The unit should be serviced only by qualified service personnel. AVIS: AFIN DE REDUIRE LES RISQUE DE CHOC ELECTRIQUE, NENLEVEZ PAS LE COUVERT (OU LE PANNEAU ARRIERE) NE CONTIENT AUCUNE

15、PIECE REPARABLE PAR LUTILISATEUR. CONSULTEZ UN TECHNICIEN QUALIFIE POUR LENTRETIENT Instructions relatives au risque de feu, choc lectrique, ou blessures aux personnes Veuillez Lire le Manuel: Il contient des informations qui devraient tres comprises avant lopration de votre appareil. Conservez. Gar

16、dez S.V.P. ces instructions pour consultations ultrieures et observez tous les avertissements. Nettoyez seulement avec le tissu sec. Emballage: Conservez la boite au cas ou lappareil devait tre retourner pour rparation. Avertissement: Pour rduire le risque de feu ou la dcharge lectrique, nexposez pa

17、s cet appareil la pluie ou lhumidit. Nutilisez pas cet appareil prs de leau! Attention: Lors de lutilisation de produits lectrique, assurez-vous dadhrer des prcautions de bases incluant celle qui suivent: Alimentation Lappareil ne doit tre branch qu une source dalimentation correspondant au voltage

18、spcifi dans le manuel ou tel quindiqu sur lappareil. Cet appareil est quip dune prise dalimentation polarise. Ne pas utiliser cet appareil avec un cordon de raccordement moins quil soit possible dinsrer compltement les trois lames. Des prcautions doivent tres prises afin deviter que le systme de mis

19、e la terre de lappareil ne soit dsengag. Risque Ne pas placer cet appareil sur un chariot, un support, un trpied ou une table instables. Lappareil pourrait tomber et blesser quelquun ou subir des dommages importants. Utiliser seulement un chariot, un support, un trpied ou une table recommands par le

20、 fabricant ou vendus avec le produit. Suivre les instructions du fabricant pour installer lappareil et utiliser les accessoires recommands par le fabricant. Il convient de ne pas placer sur lappareil de sources de flammes nues, telles que des bougies allumes. Lappeil ne doit pas tre expos des goutte

21、ments deau ou des claboussures et quaucun objet rempli de liquide tel que des vases ne doit tre plac sur lappareil. Assurez que lappareil est fourni de la propre ventilation. Ne procdez pas linstallation prs de source de chaleur tels que radiateurs, registre de chaleur, fours ou autres appareils (in

22、cluant les amplificateurs) qui produisent de la chaleur. Les dispositifs marqus dune symbole “dclair” sont des parties dangereuses au toucher et que les cblages extrieurs connects ces dispositifs de connection extrieure doivent tre effectivs par un oprateur form ou en utilisant des cordons dj prpars

23、. Cordon dAlimentation Ne pas enlever le dispositif de scurit sur la prise polarise ou la prise avec tige de mise la masse du cordon dalimentation. Une prise polarise dispose de deux lames dont une plus large que lautre. Une prise avec tige de mise la masse dispose de deux lames en plus dune troisim

24、e tige qui connecte la masse. La lame plus large ou la tige de mise la masse est prvu pour votre scurit. La prise murale est dsute si elle nest pas conue pour accepter ce type de prise avec dispositif de scurit. Dans ce cas, contactez un lectricien pour faire remplacer la prise murale. vitez dendomm

25、ager le cordon dalimentation. NUTILISEZ PAS LAPPAREIL si le cordon dalimentation est endommag. Dbranchez cet appareil durant les orages ou si inutilis pendant de longues priodes. Service Consultez un technicien qualifi pour lentretien de votre appareil. S2125A RadioFans.CN 收音机爱 好者资料库 2 VOLTAGE AMPLI

26、FIER: The voltage amplifier amplifies the audio signal?s voltage from 4.8 volts peak (at the output of U2) to approximently 97v peak which is required to drive the current amplifier board M1002A. M1002A provides the current required for the 97v peak signal to drive 1200 watts into 4 ohms out of the

27、binding posts. Before the circuit is described in detail here is a quick rundown on the signal?s path through the voltage amplifier stage. Refer to the schematic of M1011A. Lets consider that a positive going AC signal is present test point 3. The positive going signal will turn on the positive side

28、 of the voltage amplifier. The signal at test point 3 turns on Q12 (through R40, D14 and D13). The collector of Q12 pulls down on the base of Q14, turns this transistor on further and allows a greater current to flow out of Q14?s collector. This increase in current passes through Q15 and it?s collec

29、tor to emitter voltage drop decreases. The collector of Q15 now being more positive in voltage turns the base of Q18 on causing an increase in Q18?s collector current resulting in test point 5 going positive. As the positive side of the amplifier was turning on the negative side would have been turn

30、ing off. This is how test point 5 was able to move positive following the input signal. The reverse would hold true if a negative going signal was present on the input of the voltage amplifier. CIRCUIT DESCRIPTION: The voltage amplifier is a mirrored image with circuitry connected to the positive po

31、wer supply rail being identical (but opposite polarity) to the circuitry connected to the negative power supply rail. For this reason we will look in detail at the positive side of the amplifier. The audio signal enters the voltage amplifier at test point 3. The signal passes through R40, D14 and D1

32、3 to the base of Q12. Diodes D13 and D14 set up the DC bias on Q12 to approximately 0.6 mA. The first voltage gain stage consists of Q12 along with the resistor chain on its collector and the emitter resistor (R44). Transistor Q12 drives the base of Q14 through the resistor chain. A DC current of ap

33、proximately 6 mA should flow through the collector of Q14. The voltage drop across Q14 remains constant and is derived from the voltage drop across the voltage reference Q20, resistor R58, and the base/emitter junction of Q15. This total voltage should equal approximately 3 VDC. Transistor Q14 is th

34、e second gain stage and its output current flows through Q15. Transistor Q15 is a common base stage with the collector driving the base of output buffer Q18. Diode D17 is a clamping diode that prevents the maximum peak of the audio signal from coming within 4V of the 144 VDC rail. This is to prevent

35、 the output current amplifier (board M1002A) from going into saturation during clipping and therefore having storage delay problems. Transistor Q18 buffers the high impedance present on the collector of Q15. The output of the buffer provides a low output impedance at test point 5 and is current limi

36、ted to 25mA through the clamping action of D19, D20 and D23. The signal at TP-5 drives the current amp board M1002A. DC offset on the amplifier?s output is corrected by operational amplifier U2. The DC offset forms a current through R54, R14 and is blocked by C5 giving a DC offset correction gain of

37、 -1. The activity L.E.D. function is a simple charge pump circuit with a transistor that redirects a constant current path through the activity L.E.D. 3 SHUTDOWN CIRCUIT: The last circuit on board M1011A is the shutdown relay and its associated drive circuitry. The relay circuit has two possible ope

38、rating states. 1. Amplifier on under normal operating conditions. 2. Amplifier power switch has just been turned OFF/ON or the amplfier is in current limit protecting the amplifier?s output or the amplifier has overheated. CIRCUIT DESCRIPTION Here is how the circuit accomplishes these functions. The

39、 relay?s normally closed contacts short the output of the voltage amplifiers to ground when the power switch is off. When the power switch is turned on, the relay remains off (normally closed) for about 6 seconds. C52 charges to 35V and results in Q37 turning off allowing Q36 to turn on. As Q36 turn

40、s on, it connects the negative terminal of the relay?s coil (Pin 16) to ground energizing the relay and opening the normally closed contacts. If prolonged current limiting occurs on the amplifier?s output transistors then D50 or D51 (depending on which channel is current limiting) will be forward bi

41、ased turning on Q38 (from its off state). Now +144VDC appears on the collector of Q38 and through R130 and R128 turn on Q37 therefore turning off Q36 by shorting its base emitter junction. Q36 turning off will turn the relay off and the normally closed contacts (off state) will short the outputs of

42、the voltage amplifiers to ground so as not to continuously stress the amplifier?s output transistors. A cycle now occurs. With the voltage amplifiers now disabled there is no signal driving the output transistors (Q14 to Q28) on board M1002A. The current limit circuit on M1002A turns off and D50 and

43、/or D51 are not forward biased and Q38 turns off. Through Q37 and Q36 the relay is turned back on and the voltage amplifiers are now active again, driving the output transistors. If current limiting still occurs, then the same cycle will occur. If the cause of current limiting (low impedance or shor

44、t on the speaker output terminals) has been removed, then the amplifier will continue to operate normally. The third operation that the relay provides is overheat shutdown. If for some reason the fan cannot keep the heatsinks in a safe operating temperature area then the fan control circuit (on boar

45、d M1013A) will deliver through the kill signal line a positive current to turn Q37 on and turn Q36 off to turn off the relay and disable the voltage amplifiers. When the temperature of the amplifier has been cooled down by the fan, then the kill signal will disappear and the relay circuit will turn

46、on the relay to resume normal operation. Anytime the relay is in the protect mode (due to the abnormal states) then contact pin 8 of the relay will illuminate LD5 (the protect LED on the front panel). M1002A “CURRENT AMPLIFIER BOARD” The current amplifier board (M1002A) receives a high voltage audio

47、 signal from voltage amplifier board (M1011A) and provides the current drive necessary to drive speaker cabinets. The current amplifier is a two tier complimentary output driver design controlled by a complimentary mos-fet stage. CIRCUIT DESCRIPTION - REFER TO THE SIMPLIFIED SCHEMATIC #1 ON THE FOLL

48、OWING PAGE RadioFans.CN 收音机爱 好者资料库 45 QUIESCENT CONDITION: This design is class A/B and therefore the output driver transistors must be forward biased to provide low crossover distortion. In most class A/B designs, a diode chain or VBE multiplier is used to control the bias voltage and provide a mea

49、ns of adjusting the bias. This design is different as there isnt a diode chain or VBE multiplier. For simplicity lets consider only the positive side of the current amplifier, that is all parts between the positive power supply rails and the audio signal output/input terminals. The negative side is the same as the positive, except for polarity changes. To bias Q14, greater than 0.5V is needed from base to emitter, (or for simplicity from base to amplifier output). Points A and B are at the same potential, so consider them to be connected. If this is true then 0.5V from test po

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