Yamaha-XS-350-Service-Manual电路原理图.pdf
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1、1.97K-9636 1.69K-545 Printed in Japan 99.1 CONTENTS SPECIFICATIONS . 3 PANEL LAYOUT . 4 DIMENSIONS .5 BLOCK DIAGRAM . 5 CIRCUIT BOARD LAYOUT the four (4) screws marked 80c and the six (6) screws marked 60a. The PA7 circuit board can then be removed. (Fig. 6) 9. PA7 Unit 9-1 Remove the top cover. (Se
2、e Procedure 1.) 9-2 Remove the front panel. (See Procedure 5.) 9-3 Remove the four (4) screws marked 250. The PA7 unit with the chassis can then be removed. (Fig. 4) 9-4 Remove the eight (8) screws marked 130. The PA7 unit can then be removed. (Fig. 5) 130 (Fig. 4)(Fig. 5) (Fig. 6) 130 130130 60a 4
3、80c 4 80c 4 80b 4 80b 4 250 4 250: Bonding Tapping Screw-B 4.0X8 MFZN2BL (VR779900)130: Bind Head Tapping Screw-B 4.0X8 MFZN2BL (EG340190) Holder A Holder A Isolation sheet A Isolation sheet A Heat Sink FAN Angle 9 XS250/350 11. Rear Assembly 11-1 Remove the top cover. (See Procedure 1.) 11-2 Remove
4、 the six (6) screws marked 270. The rear assembly can then be removed. (Fig. 7) 12. SUB 5/5 Circuit Board 12-1 Remove the top cover. (See Procedure 1.) 12-2 Remove the rear assembly. (See Procedure 11.) 12-3Remove the four (4) screws marked 440 and the two (2) screws marked 50b and the two (2) screw
5、s marked 60b. The SUB 5/5 circuit board can then be removed. (Fig. 7) (Fig. 7) 2/5 5/5 440 2 Cover, Speaker terminal Rear panel 440 2 50a 4 50a 2 70b 2 60b 2 50b 2 50a: Bind Head Screw A4.0X8 MFZN2BL (VP156800) 50b: Bonding Tapping Screw-B 3.0X8 MFZN2BL (VN413300) 60b: Bind Head Tapping Screw-B 3.0X
6、12 MFZN2BL (VQ074600) 70a: Bind Head Screw SP 5.0X10 MFZN2BL (VU688100) 70b: Bind Head Tapping Screw-B 3.0X8 MFZN2BL (EP600190) 440: Bind Head Tapping Screw-B 3.0X8 MFZN2BL (EP600190) 270Rear assembly 270270 270 270: Bonding Tapping Screw-B 4.0X8 MFZN2BL (VR779900) (Fig. 8) 10 XS250/350 M5238AP (XM0
7、85A00) Operational Amplifier 1 2 3 4-V 8 7 6 5 Output A+V Non-Inverting Input A -DC Voltage Supply +DC Voltage Supply Output B Inverting Input B Non-Inverting Input B Inverting Input A +- +- IC BLOCK DIAGRAM XS250/350XS250/350XS250/350 SUB 1/5 Circuit Board SUB 2/5 Circuit Board SUB 3/5 Circuit Boar
8、d SUB 4/5 Circuit Board SUB 5/5 Circuit Board SX350 SUB(U) :3NA-V290000 2 SUB(H) :3NA-V290010 2 Components side Components side Components side Components side Components side CIRCUIT BOARDS from T101 to SUB 2/5-CN103 to PA-CN404from T101 to SUB 1/5-CN610 to PA-CN201 to PA-CN301 from PA-W201 to PA-C
9、N406 SX250 SUB(U) :3NA-V289980 2 SUB(H) :3NA-V289990 2 11 XS250/350XS250/350XS250/350 PA Circuit Board SX350 3NA-V2899600 1 SX250 3NA-V2899500 1 Components side to SUB 2/5-CN301 to SUB 1/5-CN611 from FAN to SUB 3/5-CN501 to SUB 2/5-CN101 12 13 XS250/350 A STEREO and PARALLEL Operation Before perform
10、ing any following adjustments, set the unit as follows: 1.Set the ATTENUATIONS at the MAX. 2.Input terminal:Cannon connector pin 2 is HOT, pins 1 and 3 GROUND. 3.MODE switch:STEREO 4.Output terminal:RL = 4 ohm/more than 500 W 5.Others:Both Channel operation is required, if no particular indication.
11、Moreover, turn off the filter switch, if no particular indication. Adjustment Specifications 1.Fan Test When turning on the power switch, confirm that both fans of right and left sides regulate at low speed. 2. Muting Test After applying power to the unit, the PROTECTION indicator should remain ON 2
12、.5 +/-1 seconds to indicate that the protection circuitry is operating and the indicator should go out. NO signal is output while this indicator lit. 3.Idle Current Test Connect the input terminal to the GROUND and adjust the VR201 (A channel) and VR301 (B channel) that the DC voltage Vb between the
13、 pin 1 and pin 2of the CN202 (A channel) and the CN302 (B channel) should be 1.0 +/-0.2 mV. And After finishing all tests, adjust the Vb again to 1.0 +/-0.2 mV. 4.Input Terminal DC offset Connect the input terminal to the GROUND and check that the DC voltage Vdc of the output terminal should be 0 +/
14、-75 mV. 5.Gain Test Check that the OUTPUT should be +22.1 +/-0.5 dBu, when a sine wave of 1 kHz at -10 dBu is applied to the INPUT. This test should be performed on PARALLEL operation. 6.Frequency Response Test Filter switch OFF: When a sine wave of 20 Hz, 1 kHz or 20 kHz at -10 dBu is applied to th
15、e INPUT, check that the output is 0 +/-0.5 dB at 20 Hz and -0.5 +/-0.5 dB at 20 kHz taking the 1 kHz as a reference. Filter switch SUB WOOFER: When a sine wave of 25 Hz, -10 dBu is applied to the INPUT, check that the output is -3.5 +/-1.0 dB taking the 1 kHz as a reference at the filter switch OFF.
16、 When a sine wave of 150 Hz, -10 dBu is applied to the INPUT, check that the output is -3.5 +/-1.0 dB taking the 1 kHz as a reference at the filter switch OFF. Filter switch LOW CUT: When a sine wave of 25 Hz, -10 dBu is applied to the INPUT, check that the output is -4.5 +/-1.0 dB taking the 1 kHz
17、as a reference at the filter switch OFF. When a sine wave of 150 Hz, -10 dBu is applied to the INPUT, check that the output is -3.5 +/-1.0 dB taking the 1 kHz as a reference at the filter switch OFF. INSPECTIONS 14 XS250/350 7.Harmonic Distortion Test When a high quality sine wave is applied at 20 H
18、z, 1 kHz or 20 kHz, the harmonic distortion should be as follows: *This test should have been finished within 30 minutes. 8. Channel Separation Test 8-1 Apply a -5 dBu, 20kHz sine wave into the channel A. 8-2 Short the input for the channel B with a 600 ohm load. 8-3 Set the output of the channel A
19、at a reference of 0 dB. 8-4 If channel B attenuator is set to the same as channel A, channel B output should be l ess than -65 dB. (RL = 8 ohm) 9. Noise Test 9-1 Set the input attenuator to MAX. 9-2 Short the input with a 600 ohm load. 9-3 Measure at the output, noise level should be less than -65 d
20、Bm. 9-4 Set the input attenuator to , noise level should be less than -70 dBu. *Be careful that it is not affected by noise induced during this inspection. 10. Stability Test When a rectangular wave 10 kHz, -10 dBu is applied to the input and a capacitor 10 pF0.47 F is connected with 4 ohm load resi
21、stor in parallel, the overshoot and the ringing should be as follows. Oversshoot: Vp/Vo /= 1.8 Ringing: less than 5 waves Next, when the 4 ohm load resistor is removed and the load is the capacitor 10pF0.47 F only, the overshoot and the ringing should be as follows. Oversshoot: Vp/Vo /= 2.5 Ringing:
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