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There are currently no product reviews.
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Actually, I was looking for this information for 3 years!...now thanks to you, the manual is on my hands and of great help, cause I understand now where I was doing wrong connections and wires...excellent, I'll be back to you if in need, thank you.
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This manual covers the main equipment features only. While it also includes the procedure for saving and loading from the now long obsolete memory cards it does not mention the how to operate with the optional floppy drive interface so I am still at a loss about how to use this! Note that there is a separate manual covering the MIDI interface and programming via the keyboard, not included in this download. You will also need to get hold of this if you want to use the MIDI interface properly. Basically there is little difference between this manual and the free to download manual for the similar PR60 model.
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Good list of manuals. I found a very rare one and easily get. Should be promptly to download, as we must to wait hours even after confirmed payment.
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The manual was properly scanned and perfectly readable. The only small problem is that I couldn't use my dear Ctrl + F to find a word I needed.
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Nothing wrong with the manual or the delivery - came to me the same day I ordered it. But afterwards I realized that I ordered the wrong manual. Probably better with the Quick start - version. So maybe it would be better if we could see a list with inhold for each manual before ordering?
Model 201C
Section IV
SECTION IV THEORY O F OPERATION
4-1. GENERAL.
4-2. The Model 201C consists of an oscillator section, an amplifier section, an output attenuator and a power supply as shown in the block diagam, Figure 4.1.
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4-3. OSCILLATOR SECTION.
4 4 . The oscillator section consists of V1 and V2 as a resistance coupled amplifier containing two feedback loops. The positive feedback loop sets up oscillation while the negative feedback loop reduces distortion and maintains a constant amplitude of oscillation. The positive feedback network contains fixed resistances (established by the RANGE switch) and a variable capacitance. A simplified schematic diagam is shown in Figure 4-2. The network is designedsothat R l , C l A a n d B = R 8 , C l C a n d D .
FREQUENCY
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Figure 4-3. Oscillator Network Characteristics
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4-6. The cathode by-pass capacitors in the oscillator section C5, C7 correct phase shift at higher frequencies.
4-7. The negative feedback network minimizes change of output amplitude with change in frequency. The incandescent lamp, used as a cathode bias resistor for V1, is part of the negative feedback voltage divider. It has a temperature resistance characteristic such that its resistance increases in direct proportion to the voltage applied t o it. Thus, changes in its resistance will change the amount of negative feedback in the oscillator output. The thermal inertia of the lamp is great enough to be unaffected by sine wave voltages at the lowest frequencies involved.
Figure 4-2. Simplified Schematic Diagram of Oscillator Section 4-5. The oscillator output is coupled to the input stage through C8, and the input voltage is derived from this signal. Oscillation will occur when there is zero phase shift between the voltage applied to the network and the voltage applied to the grid of V1. The zero phase shift point is also the point of minimum loss through the network as shown in Figure 4-3. The frequency of oscillation (relative frequency in Figure 4-3) is given by the expression:
4-8.AMPLIFIER SECTION.
4-9. The amplifier section of the instrument consists of a
voltage amplifier V3A direct coupled to a phase inverter V3B, and a push-pull output stage V4 and VS. The output transformer contains a tertiary winding for overall negative feedback around the amplifier. A a result of negative s feedback in excess of 30 dB, very little distortion is introduced by the amplifier section of the instrument.
1
Fr = 2 n d (R1 . ClA,B) (R8.ClC,D)
4-1
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