Accuphase-A30-pwr-sm维修电路图 手册.pdf
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1、m Pure Class A operation delivers quality power: 30 watts 2 into 8 ohms m Power MOS-FET output stage features triple parallel push-pull configuration m Instrumentation amplifier principle m Further improved MCS+ circuit topology m Current feedback combines operation stability with outstanding sound
2、m Bridged mode allows upgrading to true monophonic amplifier m Massive transformer rated for 400 VA m 4-step gain control RadioFans.CN Pure Class A power amplifier using power MOS-FET devices Fully balanced signal paths as found in high-quality instrumentation amplifiers. Further refined MCS+ topolo
3、gy and current feedback design result in even better S/N ratio, distortion, and other performance parameters. Robust power supply and power MOS-FET devices in triple parallel push-pull configuration sustain an amazing 150 watts per channel into ultra-low 1-ohm impedance loads (with music signals). P
4、ure Class A power amplifiers from Accuphase have long been blending the purity of class A operation with the superior performance of power MOS-FETs. While building a string of outstanding amplifiers, Accuphase has accumulated a store of technical know-how that is second to none. The latest in this s
5、eries, the A-30 is a pure class A stereo power amplifier based on the advanced technology of the model A-60. The A-30 employs the so-called instrumentation amplifier principle throughout. The signal handling stages feature further improved MCS+ topology and the renowned current feedback approach. Th
6、is has resulted in electrical characteristics that surpass even the demanding standards set by its predecessors. Employing only highest grade materials and strictly selected parts, the A-30 pursues the two most important goals of an amplifier: very low output impedance (Note 1) and constant drive vo
7、ltage (Note 2). The output stage of the A-30 features power MOS- FET devices renowned for their excellent sound and superior reliability. Because they have negative thermal characteristics, there is no danger of thermal “runaway” as exists with bipolar transistors. Operation remains totally stable e
8、ven when the amplifier is running hot. Driving these devices in pure class A assures high-definition sound that brings out the finest nuances in the music. In pure class A operation, the power supply delivers a steady current, regardless of the presence or absence of a musical signal. This means tha
9、t the amplifier remains unaffected by fluctuations in voltage and other external influences. On the other hand, it also means that the output stage generates considerable thermal energy. In the A-30, this is dissipated effectively by large heat sinks which provide ample capacity to remove the heat p
10、roduced by the internal circuitry. The heavy-duty power supply easily sustains output levels of 120 watts into 2 ohms, 60 watts into 4 ohms, or 30 watts into 8 ohms (per channel). This linear progression demonstrates that the amplifier will be capable to drive even speakers with very low impedance r
11、atings or with pronounced impedance fluctuations. Stability remains excellent at all times. The amplifier also has the necessary reserves to handle musical transients that require considerable power in an instant. If even higher power is required, bridged mode turns the A-30 into a high-output monop
12、honic power amp. Output current (A) Output voltage (V) OUTPUT + B3 B3 INPUT +INPUT NFB NETWORK NFB NETWORK GAIN CONTROL CIRCUIT + + REGULATOR REGULATOR + B1 B1 B2 + B2 Q1 Q3 Q2 Q4 Q8 Q6 Q7 Q5Q9 Q17Q19 Q18Q20 Q21 Q22 Q23 Q24 Q25 Q26 Q13 Q11Q15 Q10Q14 Q12Q16 NFB NETWORK MCS+ Multiple Circuit Summing (
13、 ) Bias stabilizer circuit Bias stabilizer circuit Bias stabilizer circuit Bias stabilizer circuit Bias stabilizer circuit Fig. 1 Circuit diagram of amplifier section (one channel) Note 1:Low amplifier output impedance The load of a power amplifier, namely the loudspeaker, generates a counterelectro
14、motive force that can flow back into the amplifier via the NF loop. This phenomenon is influenced by fluctuations in speaker impedance and interferes with the drive performance of the amplifier. The output impedance of a power amplifier should therefore be made as low as possible by using output dev
15、ices with high current capability. This absorbs the counterelectromotive force generated by the voice coil and prevents the occurrence of intermodulation distortion. Note 2:Constant drive voltage principle Even in the presence of a load with wildly fluctuating impedance, the ideal power amplifier sh
16、ould deliver a constant voltage signal to the load. Figure 2 shows the results of actual output voltage/output current measurements at different load impedances for the A-30. It can be clearly seen that output voltage is virtually constant at various loads, which means that current increases in a li
17、near fashion. Actual measurements of clipping power have yielded the following figures, which impressively demonstrate the more than ample performance of the A-30: 1 ohm: 175 watts, 2 ohms: 142 watts, 4 ohms: 94 watts, 8 ohms: 58 watts. 1-ohm rating is for music signals only. Fig. 2 Load impedance v
18、s. output power (Output voltage/output current) Instrumentation amp configuration allows fully balanced signal paths The A-30 features a new “instrumentation amplifier” principle whereby all signal paths from the inputs to the power amp stage are fully balanced. This results in excellent CMRR (Commo
19、n Mode Rejection Ratio) and minimal distortion. Another significant advantage is that external noise and other external influences are virtually shut out. The result is a drastic improvement in operation stability and reliability. Further refined MCS+ topology for even lower noise Accuphases origina
20、l MCS (Multiple Circuit Summing) + INPUT NFB NETWORK GAIN CONTROL CIRCUIT NFB NETWORK OUTPUT +INPUT+ + Signal input stagePower amplifier stage Instrumentation amplifier configuration principle uses a number of identical circuits connected in parallel to achieve superior performance characteristics.
21、MCS+ is a further refined version of this approach. Improvements in the bias circuitry of the input-stage buffer amplifier result in greater stability. This in turn makes it possible to extend the parallel operation approach to the class A drive stage of the current/voltage converter, thereby furthe
22、r lowering the noise floor. Power MOS-FET output stage with triple parallel push-pull power units delivers 120 watts into 2 ohms, 60 watts into 4 ohms, or 30 watts into 8 ohms with outstanding linearity The output stage (Figure 1) uses power MOS-FETs. Three pairs of these devices are arranged in a p
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