Sunn-1200S-pwr-sm维修电路原理图.pdf
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1、 SUNN 1200S p/n 021-3300-000 (120V) SERVICE MANUAL CONTENTS: Notices Specifications Circuit description Parts lists: PCB assembly Chassis assembly End item Footswitch assembly Footswitch PCB Schematics Service diagrams sunn is a registered trademark of Fender Musical Instruments Corp. 7975 North Hay
2、den Road Scottsdale, AZ 85258 SUNN 1200S (This is the model name for warranty claims) AUGUST 1998 IMPORTANT NOTICE: The information contained herein is CONFIDENTIAL and PROPRIETARY to Fender Musical Instruments Corp. It is disclosed solely for use by qualified technicians for purposes of equipment m
3、aintenance and service. It is not to be disclosed to others without the expressed permission of Fender Musical Instruments Co. All specifications subject to change without notice. For warranty repair service, only Fender specified part numbers are to be used. It is recommended they also be used for
4、post-warranty maintenance and repair. Parts marked with an asterisk (*) indicate the required use of that specific part. This is necessary for RELIABILITY and SAFETY requirements. DO NOT USE A SUBSTITUTE! A coded naming convention is used in the description of certain parts. The codes and what they
5、mean are as follows: CAPACITOR CODES HARDWARE CODES CAP AE=Aluminum ElectrolyticBLX=Black Oxide CAP CA=Ceramic AxialCR=Chrome Plated CAP CD=Ceramic DiskHWH=Hex Washer Head CAP MPF=Metalized Polyester FilmM=Machine Screw CAP MY=MylarNI=Nickel Plated CAP PFF=Polyester Film/FoilOHP=Oval Head Phillips P
6、B=Particle Board RESISTOR CODESPHP=Pan Head Phillips PHPS=Pan Head Phillips Sems RES CC=Carbon CompSMA=Sheet Metal A Point RES CF=Carbon FilmSMB=Sheet Metal B Point RES FP=Flame ProofSS=Stainless Steel RES MF=Metal FilmTF=Thread Forming RES WW=Wire WoundZI=Zinc Plated RadioFans.CN 收音机爱 好者资料库 SPECIFI
7、CATIONS Product Release No.:PR 348 (This is not a model number) Part Number:120V Version : 21-3300 240V Aust : 21-3330 230V UK : 21-3340 230V : 21-3360 100V : 21-3370 Preamp section Input impedance:470k Full power sensitivity:12.75mV Tone controls:Treble: +/- 15dB 3kHz Bass: +/- 15dB 40Hz Graphic Eq
8、ualizer:+/- 12dB 31.5Hz, 63Hz, 125Hz, 250Hz, 500Hz, 1kHz, 2kHz, 4kHz, 8kHz, 16kHz Mid notch:-20dB 700Hz Low boost:+10dB 40Hz High boost:+10dB 6kHz Power Amplifier Section Power output:1200 Watts RMS into 2 0.2% THD Sensitivity:1V RMS (0dBV) Power Requirements:100V AC, 50/60 Hz, 1800W 120V AC, 60 Hz,
9、 1800W 230V AC, 50 Hz, 1800W Speaker Complement:Designed for use with the Sunn 410H or Sunn 215 Bass Loudspeaker Enclosures Dimensions:Height:3.5(8.9 cm) Width:19.0(48.3 cm) Depth:15.0(38.1 cm) Weight:35 lbs(15.9 kg) Product specifications are subject to change without notice CIRCUIT DESCRIPTION The
10、 Sunn 1200S Bass Amplifier employs many new technologies in various sections. This document is a brief overview. Preamp The preamp section employs two 12AX7 tubes. Channel one (V1) is fairly conventional, while channel two (V2) uses a second tube with additional op-amp gain (U2B) to provide a 60s st
11、yle overdrive sound. The op-amp is used as straight gain and is never allowed to become non-linear. In typical operation, the drive channel and the clean channel are presented to the channel 1/2 mix control (R25) so that a blend can be established. The channel select button (S7) on the front panel (
12、or its foot switch counterpart) selects between this channel mix or channel one only. This selection employs JFETS Q1-Q4. Signals are then presented to a second-order Sallen and Key filter set to F0 of 36.6 Hz and a Q of 2.1. This filter provides about 6.5dB of boost at 41 Hz. The signal path is rou
13、ted to U4B where low-boost (S2) , mid-notch (S4), and high-boost (S3) equalization switches can be used. These circuits are followed by conventional Baxendall low (R67) and high (R70) equalization. The Baxendall circuit output is then sent to a graphic equalizer which can be selected by the footswit
14、ch or graphic EQ button (S61) on the front panel. The far-right graphic EQ slider (R660) is a +/- 10dB trim for graphic EQ gain compensation. Next, the signal is presented to a second-order state-variable filter before being presented to the compressor circuit. Said filter is set to 420 Hz. At the c
15、ompressor, low-frequency compression ratio (R88) and high-frequency compression ratio (R98) are adjustable to suit the user. Audio is presented to the compressor EQ balance (R107). The compressor EQ balance controls the mix ratios of the compressor outputs. A compressor gain trim (R113) is provided
16、to compensate for the amount of amplification lost due to using the compressor. The compressor-gain trim control is able to compensate for a compressed signal of up to 10dB. The FETs Q5 and Q6 select between pre- and post-compressor via the front panel switch (S8) or footswitch. After passing throug
17、h op-amp U10B and master-gain control R116, the signal is sent to output jack J3, effects-loop send. The signal input at J4, effects-loop return, goes to differential receiver U11B. Signals are forwarded to power amp pass through amplifier U12B and on to J5. At these same nodes, the signal is passed
18、 on to the 1200 Watt class H power amplifier. RadioFans.CN 收音机爱 好者资料库 Power Amplifier The power amplifier employs class AB topology in the pre-driver circuit Q8-Q11. Quiescent current is established with transistors Q12-Q13. Driver transistors Q16-Q17 provide drive for Q23-Q26, and Q31-Q34. Transist
19、ors Q19,Q21, and Q27-Q30 provide positive “on demand” supply-rail boost. Transistors Q20, Q22, and Q35-Q38 provide the same function for the negative rail. Transistor Q18 provides “charge depletion” of Q23-Q26 and Q31-Q34. This allows for the suppression of common mode current that can occur at high
20、 frequencies. Relay K1 and associated components reduce output-stage current gain to unity during power-up and over-temperature events as monitored by thermistor RT1 on the main heatsink. Power supply Primary circuit inrush limiting is accomplished by TH1, a negative temperature coefficient thermist
21、or. The power supply employs a toroidal power transformer with only one tapped-main secondary. Two large bridge rectifiers are used to obtain +/-47VDC and +/- 94VDC. High voltage (356VDC) for vacuum tube sections is generated by half-wave multiplier comprised of CR92-CR95, C125-C128. Low voltage (+/
22、-22VDC) and (+10 +28VDC variable fan) is supplied by the synchronous rectifier system located on the power supply break-away board. This synchronous system observes the input sine and allows Q81, Q85, and Q88 to be forced on until the input sine wave reaches the correct level as observed by Q83, Q87
23、, and Q90. References Q84 (variably controlled by RT2) CR811 and CR818 are employed. Regulators U21 and U22 reduce the +/-22V lines to +/-16VDC Heater voltage (24VDC for 2 series-connected 12AX7s in the preamp) is derived from the 32VDC supply (+/- 16VDC). Excess voltage is dropped across across par
24、alleled ballast resistors, R354-R356, on the preamp PCB. PARTS LIST NOTE: SHADED ITEMS ARE FOR REFERENCE ONLY PRINTED CIRCUIT BOARD ASSEMBLY QTY PART # DESCRIPTION REFERENCE DESIGNATION 20052047000BRIDGE RECT 35A 800VBR1 BR2 90048451000BUTTON PUSH OFF WHITE 20053930000CABLE RIBBON 3 CKT 3 inP1A P5A
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