COMPONENTS IDENTIFIED BY MARK ON THE
SCHEMATIC DIAGRAM AND IN THE PARTS LIST ARE
CRITICAL FOR RISK OF FIRE AND ELECTRIC SHOCK.
REPLACE THESE COMPONENTS WITH ONKYO
PARTS WHOSE PART NUMBERS APPEAR AS SHOWN
IN THIS MANUAL.
MAKE LEAKAGE-CURRENT OR RESISTANCE
MEASUREMENTS TO DETERMINE THAT EXPOSED
PARTS ARE ACCEPTABLY INSULATED FROM THE
SUPPLY CIRCUIT BEFORE RETURNING THE
APPLIANCE TO THE CUSTOMER.
Page 2
SPECIFICATIONS
Amplifier section
Power Output 2 channel driven:
Dynamic Power
THD (Total Harmonic Distortion)
Damping Factor
Input Sensitivity and Impedance
Output Level and Impedance
Frequency Response
Tone Control
Signal to Noise Ratio
Speaker Impedance
Video section
Input Sensitivity/Output
Level and Impedance
Component Video Frequency Response
Tuner section
FM
Tuning Frequency Range
Usable Sensitivity
Signal to Noise Ratio
THD
Frequency Response
Stereo Separation
AM
Tuning Frequency Range
Usable Sensitivity
Signal to Noise Ratio
THD
General
Power Supply
Power Consumption
Stand-by Power Consumption
Dimensions (W x H x D)
Weight
Video inputs
Component
S-Video
Composite
Video outputs
Component
S-Video
Composite
Audio inputs
Digital Inputs
Analog Inputs
Multichannel Inputs
HT-R530
110 W + 110 W (8 , 1kHz, FTC)
230 W + 230 W (3 , Front) / 170 W + 170 W (4 , Front) /
120 W + 120 W (8 , Front)
North American: 530 kHz – 1710 kHz
Others: 522 kHz – 1611 kHz
30 µV
40 dB
0.70%
North American: AC 120 V, 60 Hz / Australian: AC 230 – 240 V, 50 Hz
North American: 6.3 A / Others: 650 W
North American: 0.1 W / Others: 0.2 W
17-1/8" x 5-7/8" x 14-3/4", 345 x 150 x 374 mm
North American: 20.7 lbs. (9.4 kg) / Others: 22.5 lbs. (10.2 kg)
This symbol located near the fuse indicates that the
fuse used is show operating type, For continued protection against
fire hazard, replace with same type fuse, For fuse rating, refer to
the marking adjacent to the symbol.
Ce symbole indique que le fusible utilise est e lent.
Pour une protection permanente, n'utiliser que des fusibles de meme
type. Ce demier est indique la qu le present symbol est apposre.
HT-R530
REF NO.
F901
F901 or
F902
F902 or
F902 or
F903
F903 or
F903
F903 or
F903 or
F6901
F6902
<DD> : USA model only
<DC> : Canadian model only
<PA> : Australian model only
2. To initialize the unit
1. Press and the hold down the VIDEO 1/VCR button, then press the STANDBY/ON button when the unit is Power on.
2. After " Clear " is displayed, the preset memory and each mode stored in the memory, are initialized and will return to
the factory settings.
3. To check version of microprocessor
<Note>
Main microprocessor Q701 only.
1. Press and the hold down the DISPLAY button, then press the STANDBY/ON button when the unit is Power on.
Version is displayed on FL display only for 3 seconds.
Ex.
Ver.1.01/05305a
2. Press the STANDBY/ON button to Power off.
4. Memory Backup
The AV receiver uses a battery-less memory backup system in order to retain radio presets and other settings
when it's unplugged or in the case of a power failure.
Although no batteries are required, the AV receiver must be plugged into an AC outlet in order to charge the
backup system. Once it has been charged, the AV receiver will retain the settings for several weeks,
although this depends on the environment and will be shorter in humid climates.
Page 4
OPERATION CHECK-1
SPEAKER PROTECT-1 (DC VOLTAGE DETECTION)
[When]
1. Exchange power transistors (Q6050 - Q6066).
2. Exchange amplifier PC board ass'y (NAAF-8523).
[Procedure]
<Note>
No load. No input.
1. Press and the hold down the CD button, then press the STANDBY/ON button when the unit is Power ON.
" Test - _ " is displays it only for 5 seconds.
HT-R530
Test - _
2. Press the VIDEO 3 button, while the character of " Test - _ " is displayed.
Unit will be in the state of " Test-4-00 ".
Blinks
Test - 4-00
3. Repeatedly press TONE
+ button until the character of " Test-4-21 " is displayed.
Test - 4-21
Checking the operation starts automatically as follows.
Test - 4-21
Front L ch
Protect OK
Check
Test - 4-22
Front R ch
Protect OK
Check
Test - 4-23
Center ch
Protect OK
Test - 4-24
Check
Surround L ch
Check
Protect OK
Test - 4-25
Protect OK
Test - 4-26
Protect OK
Test - 4-27
Protect OK
Protect
Surround R ch
Check
Surround Back L ch
Check
Surround Back R ch
Check
If all channel are OK, the character of " Test - 4 - 35 " is displayed.
Test - 4-35
4. Press the STANDBY/ON button.
Turn off
Clear
Page 5
OPERATION CHECK-2
SPEAKER PROTECT-2 (CURRENT DETECTION)
[When]
1. Exchange power transistors (Q6050 - Q6066).
2. Exchange amplifier PC board ass'y (NAAF-8523).
[Procedure]
<Note>
No input.
Do not check two or more channels at the same time.
Do not connect dummy load to speaker terminals for seconds 2 or more.
1. Press and the hold down the CD button, then press the STANDBY/ON button when the unit is Power ON.
" Test - _ " is displays it only for 5 seconds.
HT-R530
Test - _
2. Press the VIDEO 3 button, while the character of " Test - _ " is displayed.
Unit will be in the state of " Test-4-00 ".
Blinks
Test - 4-00
3. Repeatedly press TONE
+button until the character of " Test-4-35 " is displayed.
Test - 4-35
4. Connect the Dummy load of 3 ohms to the Front Lch speakers terminal.
At this time, check the speaker relay is not turned off.
Test - 4-35
5. Connect the dummy load of 1 ohm to the Front Lch speakers terminal.
At that time, check the speaker relay is turned off and " Protect " is displayed.
Protect
Disconnect the dummy load at once when check the display of " Protect ".
Test - 4-35
6. Check other channels according to the same procedure.
7. Press the STANDBY/ON button.
Clear
Turn off
Page 6
OPERATION CHECK-3
CONTROL OF POWER SUPPLY (OUTPUT SENSOR AND THERMAL SENSOR)
[When]
1. Exchange power transistors (Q6050 - Q6066).
2. Exchange power amplifier PC board ass'y (NAAF-8523).
3. Exchange thermal sensor PC board ass'y (NAETC-8526).
[Procedure]
<Note>
No output. No input.
Output sensor
1. Press and the hold down the CD button, then press the STANDBY/ON button when the unit is Power ON.
" Test - _ " is displays it only for 5 seconds.
HT-R530
Test - _
2. Press the VIDEO 3 button, while the character of " Test - _ " is displayed.
Unit will be in the state of " Test-4-00 ".
Blinks
Test - 4-00
3. Repeatedly press TONE
+ button until the character of " Test-4-37 " is displayed.
Test - 4-37
4. Adjusts MASTER VOLUME to Max. position.
At this time, check the character of " FM STEREO " displayed.
And, check relay RL6901 and RL6902 are turned off in 2 - 3 seconds.
FM STEREO
Test - 4-37
5. Press the STANDBY/ON button.
Turn off
Clear
Thermal sensor
1. Press and hold down the DISPLAY button, then press the STANDBY/ON button when the unit is power ON.
" Ver. 0.50/05131a " is displays it only for 2 seconds.
<Ex.>
Ver. 0.50/05131a
2. Press the TONE button, while the character of " Ver.0.50/05131a " is displayed.
<Ex.>
3. Check the displayed temperature is +/-20 C of the ambient temperatures.
4. Press STANDBY/ON button.
T: 25 C/ 77 F
Turn off
Clear
Page 7
OPERATION CHECK-4
DSP DEBUG MODE
Check the operation of the circuit around DSP by the display in this mode.
This information helps to pursue the faulty point.
To set in DSP debug mode
1. Press and hold down the DISPLAY button, then press the STANDBY/ON button when the unit is power ON.
" Ver. 0.50/05131a " is displays it only for 2 seconds.
<Ex.>
Ver. 0.50/05131a
2. Press the DISPLAY button, while the character of " Ver.0.50/05131a " is displayed.
E1A48K015FF 23o
To exit
Press STANDBY/ON button.
Content of display
HT-R530
14256871039
--------- DIR --------------- MEMORY/DOWNLOAD -----
AUTOBOOT DSP AB CODE
1
UNLOCK
E = UNLOCK
= LOCK
Digital Selecter
2
D = DIGITAL
A = ANALOG
1 = COAX1
2 = OOAX2
3 = OPT1
4 = OPT2
5 = OPT3
7 = FRONT
3
Sampling Frequency
96 = 96kHz
48 = 48kHz
44 = 44kHz
32 = 32kHz
-- = Not detect
Pre Emphasis
4
K = OFF
e = ON
DIR Status
5
0 = ANALOG
1 = PCM
2 = NOT_PCM
3 = DATA
4 = DTSCD
5 = MCH
6 = NOT DECIED
21 = DSP C HW Config set
22 - 2A = DSP C SW Config set
3F = DSP C kick start
40 = DSP AB App start
41 = DSP AB HW Config set
42 - 4B = DSP AB SW Config set
AF = DSP ab kick start
Refer to following table about the parts displayed by mark " ".
Transistors
2
NOTE
THE COMPONENTS IDENTIFIED BY MARK ARE CRITICAL FOR SAFETY
REPLACE ONLY WITH PART NUMBER SPECIFIED.
VOLTAGE (MEASURED WITH VOLTMETER) IS DC VOLTAGE.(NO INPUT SIGNAL).
ALL PNP TRANSISTORS ARE EQUIVALENT TO 2SA1015-GR UNLESS OTHERWISE NOTED.
ALL NPN TRANSISTORS ARE EQUIVALENT TO 2SC1815-GR UNLESS OTHERWISE NOTED.
ALL DIODES ARE EQUIVALENT TO 1SS133 UNLESS OTHERWISE NOTED.
ELECTROLYTIC CAPACITORS ( ) ARE IN uF/WV.
ALL CAPACITORS ARE IN pF/50WV UNLESS OTHERWISE NOTED.
EX) 030- 3pF 330- 33pF 331- 330pF 333- 0.033uF
ALL RESISTORS ARE IN OHMS 1/4WATTS UNLESS OTHERWISE NOTED.
THE THICK LINES ON PC BOARD ARE THE PRINTING SIDE OF THE PARTS.
EX) PRINTING SIDE
CIRCUIT IS SUBJECT TO CHANGE FOR IMPROVEMENT.
<Note>
NC=No mount of parts.
3
CIRCUIT NO.
Q5000 - 5002
Q5010 - 5012
Q5003 - 5006
Q5013 - 5016
Q5030 -5036
Q5040 - 5046
Q5050 - 5056
DESCRIPTION
2SC2240-BL
2SC2240-BL, KTC3200-BL
2SA949-Y
2SC2229-Y
2SC2240-GR, BL
!
SL
R5003
1K
C5003
101K
R5043
D5003
MTZJ5.6B
DZ-5.6BSB
SR
R5004
1K
C5004
101K
R5044 2.2K
D5004
MTZJ5.6B
DZ-5.6BSB
C5013
10/50
C5014
10/50
2.2K
R5013
56K
R5014
56K
R5093
100K
-0.1V
R5023
330
R5103
100K
R5094
100K
-0.1V
R5024
330
-52.6V
R5104
100K
-52.6V
R5113
1K
C5033
NC
Q5003 Q5013
-0.65V
C5023
10/50
R5114
1K
C5034
NC
Q5004 Q5014
-0.65V
C5024
10/50
R5053
4.7K
Q5053
-53.3V
R5063
1.2K
R5073
NC
R5054
4.7K
Q5054
-53.3V
R5064
1.2K
R5074
NC
C5043
220/16
R5083
470
C5044
220/16
R5084
470
C5103
10/100
C5113
10/100
-56.5V
C5104
10/100
C5114
10/100
-56.5V
R5133
18K
R5134
18K
R5163
(1/4W)
150
56.5V
0V
150
56.5V
0V
C5083
040C
C5093
101K
-57.0V
R5164
(1/4W)
C5084
040C
C5094
101K
-57.0V
R5233
R5234
57.0V
1.1V
R5033
120K
-1.1V
Q5043
R5173
150
(1/4W)
57.0V
1.1V
R5034
120K
-1.1V
R5174
150
(1/4W)
Q5033
C5053
47/50
120K
Q5034
C5054
47/50
120K
Q5044
R5203
NC
R5204
NC
(1/4W)
P6003A
(1/4W)
P6004A
18K
18K
R5165
(1/4W)
150
56.5V
0V
150
56.5V
0V
C5085
040C
C5095
101K
-57.0V
R5166
(1/4W)
C5086
040C
C5096
101K
-57.0V
R5235
R5236
57.0V
1.1V
R5035
120K
-1.1V
R5175
150
(1/4W)
57.0V
1.1V
R5036
120K
-1.1V
R5176
150
(1/4W)
Q5035
C5055
47/50
120K
Q5045
Q5036
C5056
47/50
120K
Q5046
R5205
NC
R5206
NC
(1/4W)
P6005A
(1/4W)
JL6006A
SBL
C5015
R5005
10/50
1K
R5045
D5005
MTZJ5.6B
DZ-5.6BSB
2.2K
R5015
56K
C5005
101K
4
SBR
C5016
R5006
10/50
1K
C5006
101K
R5016
56K
5
2.2K
R5046
D5006
MTZJ5.6B
DZ-5.6BSB
R5095
100K
-0.1V
R5025
330
R5105
100K
R5096
100K
-0.1V
R5026
330
-52.6V
R5106
100K
-52.6V
-0.65V
R5115
1K
C5035
NC
Q5005
-0.65V
C5025
10/50
R5116
1K
C5036
NC
Q5006 Q5016
C5026
10/50
R5055
4.7K
Q5055
-53.3V
R5065
1.2K
R5075
NC
R5056
4.7K
Q5056
-53.3V
R5066
1.2K
R5076
NC
Q5015
C5045
220/16
R5085
470
C5046
220/16
R5086
470
C5105
10/100
C5115
10/100
-56.5V
C5106
10/100
C5116
10/100
-56.5V
R5135
R5136
Page 19
HT-R530HT-R530
NC
NC
58.8V
R5183
10
(1/4W)
P6003A
NF
-B1
+B1
B+
B-
R5193
10
(1/4W)
-58.8V
58.8V
R5184
10
(1/4W)
P6004A
NF
-B1
+B1
B+
B-
10
(1/4W)
-58.8V
TO NAAF-8523
TO NAAF-8523
R5194
TO NAAF-8523
P5503A
E
TO NAAF-8523
TO NAAF-8523
SBR
SBL
(BUS-BAR)
P6011B
P5504A
L
C
SR
R
SL
R5000
1K
C5000
101K
R5040
D5000
MTZJ5.6B
DZ-5.6BSB
FR
R5001
1K
C5001
101K
R5041
D5001
MTZJ5.6B
DZ-5.6BSB
FL
C5010
47/50
2.2K
C5011
47/50
2.2K
P5019
R5010
56K
R5011
56K
R5090
100K
-0.1V
R5020
330
R5100
100K
R5091
100K
-0.1V
R5021
330
-52.6V
R5101
100K
-52.6V
-0.65V
C5020
10/50
-0.65V
C5021
10/50
R5110
1K
C5030
NC
Q5000
R5111
1K
C5031
NC
Q5001
R5050
4.7K
Q5050
-53.3V
R5060
1.2K
R5070
NC
R5051
4.7K
Q5051
-53.3V
R5061
1.2K
R5071
NC
Q5010
Q5011
C5040
220/16
R5080
470
C5041
220/16
R5081
470
C5100
10/100
C5110
10/100
-56.5V
C5101
10/100
C5111
10/100
-56.5V
R5130
18K
R5131
18K
R5160
(1/4W)
150
56.5V
0V
150
56.5V
0V
-57.0V
C5080
040C
C5090
101K
-57.0V
R5161
(1/4W)
C5081
040C
C5091
101K
R5230
R5231
1.1V
R5030
120K
-1.1V
R5170
150
(1/4W)
57.0V
1.1V
R5031
120K
-1.1V
R5171
150
(1/4W)
57.0V
Q5030
C5050
47/50
120K
Q5040
Q5031
C5051
47/50
120K
Q5041
R5200
NC
R5201
NC
58.8V
R5180
10
(1/4W)
P6000A
NF
-B1
+B1
B+
B-
(1/4W)
-58.8V
58.8V
R5181
10
(1/4W)
P6001A
NF
-B1
+B1
B+
B-
(1/4W)
-58.8V
TO NAAF-8523
R5190
10
TO NAAF-8523
R5191
10
NC
NC
58.8V
R5185
10
(1/4W)
P6005A
NF
-B1
+B1
B+
B-
R5195
10
(1/4W)
-58.8V
58.8V
R5186
10
(1/4W)
JL6006A
NF
-B1
+B1
B+
B-
R5196
10
(1/4W)
-58.8V
TO NAAF-8523
TO NAETC-8525
C
R5002
1K
C5002
101K
R5042
D5002
MTZJ5.6B
DZ-5.6BSB
C5012
10/50
2.2K
R5012
56K
R5092
100K
-0.1V
R5022
330
R5102
100K
-52.6V
-0.65V
C5022
10/50
R5112
1K
C5032
NC
Q5002 Q5012
R5052
4.7K
Q5052
-53.3V
R5062
1.2K
R5072
NC
R5162
150
(1/4W)
57.0V
C5082
040C
C5092
101K
R5232
1.1V
R5032
120K
-1.1V
R5172
150
(1/4W)
Q5032
C5052
47/50
120K
Q5042
R5202
NC
C5042
220/16
R5082
470
C5102
10/100
C5112
10/100
-56.5V
R5132
18K
56.5V
0V
-57.0V
U18
DRIVER AMPLIIER PC BOARD
NAAF-8540
58.8V
R5182
10
(1/4W)
P6002A
NF
-B1
+B1
B+
B-
(1/4W)
-58.8V
TO NAAF-8523
R5192
10
Page 20
HT-R530
A
SCHEMATIC DIAGRAMS-3
DRIVER AMPLIFIER SECTION
1
Refer to following table about the parts displayed by mark " ".
Transistors
2
NOTE
THE COMPONENTS IDENTIFIED BY MARK ARE CRITICAL FOR SAFETY
REPLACE ONLY WITH PART NUMBER SPECIFIED.
VOLTAGE (MEASURED WITH VOLTMETER) IS DC VOLTAGE.(NO INPUT SIGNAL).
ALL PNP TRANSISTORS ARE EQUIVALENT TO 2SA1015-GR UNLESS OTHERWISE NOTED.
ALL NPN TRANSISTORS ARE EQUIVALENT TO 2SC1815-GR UNLESS OTHERWISE NOTED.
ALL DIODES ARE EQUIVALENT TO 1SS133 UNLESS OTHERWISE NOTED.
ELECTROLYTIC CAPACITORS ( ) ARE IN uF/WV.
ALL CAPACITORS ARE IN pF/50WV UNLESS OTHERWISE NOTED.
EX) 030- 3pF 330- 33pF 331- 330pF 333- 0.033uF
ALL RESISTORS ARE IN OHMS 1/4WATTS UNLESS OTHERWISE NOTED.
THE THICK LINES ON PC BOARD ARE THE PRINTING SIDE OF THE PARTS.
EX) PRINTING SIDE
CIRCUIT IS SUBJECT TO CHANGE FOR IMPROVEMENT.
<Note>
NC=No mount of parts.
3
CIRCUIT NO.
Q5000 - 5002
Q5010 - 5012
Q5003 - 5006
Q5013 - 5016
Q5030 -5036
Q5040 - 5046
Q5050 - 5056
DESCRIPTION
2SC2240-BL
2SC2240-BL, KTC3200-BL
2SA949-Y
2SC2229-Y
2SC2240-GR, BL
!
BCDEFGH
TO NAAF-8523
SR
SBR
SBL
(BUS-BAR)
P6011B
TO NAAF-8523
SL
R5000
1K
C5000
101K
R5040
D5000
MTZJ5.6B
DZ-5.6BSB
R5001
1K
C5001
101K
R5041
D5001
MTZJ5.6B
DZ-5.6BSB
FL
FR
C5010
47/50
2.2K
C5011
47/50
2.2K
P5019
R5010
56K
R5011
56K
R5090
100K
-0.1V
R5020
330
R5100
100K
R5091
100K
-0.1V
R5021
330
-52.6V
R5101
100K
-52.6V
-0.65V
C5020
10/50
-0.65V
C5021
10/50
R5110
1K
C5030
NC
Q5000
R5111
1K
C5031
NC
Q5001
R5050
4.7K
Q5050
-53.3V
R5060
1.2K
R5070
NC
R5051
4.7K
Q5051
-53.3V
R5061
1.2K
R5071
NC
Q5010
Q5011
C5040
220/16
R5080
470
C5041
220/16
R5081
470
C5100
10/100
C5110
10/100
-56.5V
C5101
10/100
C5111
10/100
-56.5V
R5130
18K
R5131
18K
R5160
(1/4W)
150
56.5V
0V
150
56.5V
0V
-57.0V
C5080
040C
C5090
101K
-57.0V
R5161
(1/4W)
C5081
040C
C5091
101K
R5230
R5231
1.1V
R5030
120K
-1.1V
R5170
150
(1/4W)
57.0V
1.1V
R5031
120K
-1.1V
R5171
150
(1/4W)
57.0V
Q5030
C5050
47/50
120K
Q5040
Q5031
C5051
47/50
120K
Q5041
R5200
NC
R5201
NC
58.8V
R5180
10
(1/4W)
P6000A
NF
-B1
+B1
B+
B-
R5190
(1/4W)
-58.8V
58.8V
R5181
10
(1/4W)
P6001A
NF
-B1
+B1
B+
B-
R5191
(1/4W)
-58.8V
TO NAAF-8523
10
TO NAAF-8523
10
P5504A
L
C
R
SL
R5003
1K
C5003
101K
R5043
D5003
MTZJ5.6B
DZ-5.6BSB
SR
R5004
1K
C5004
101K
R5044 2.2K
D5004
MTZJ5.6B
DZ-5.6BSB
C5013
10/50
C5014
10/50
2.2K
R5013
56K
R5014
56K
R5093
100K
-0.1V
R5023
330
R5103
100K
R5094
100K
-0.1V
R5024
330
-52.6V
R5104
100K
-52.6V
R5113
1K
C5033
NC
Q5003 Q5013
-0.65V
C5023
10/50
R5114
1K
C5034
NC
Q5004 Q5014
-0.65V
C5024
10/50
R5053
4.7K
Q5053
-53.3V
R5063
1.2K
R5073
NC
R5054
4.7K
Q5054
-53.3V
R5064
1.2K
R5074
NC
C5043
220/16
R5083
470
C5044
220/16
R5084
470
C5103
10/100
C5113
10/100
-56.5V
C5104
10/100
C5114
10/100
-56.5V
R5133
18K
R5134
18K
TO NAAF-8523
P5503A
E
R5163
(1/4W)
150
56.5V
0V
150
56.5V
0V
C5083
040C
C5093
101K
-57.0V
R5164
(1/4W)
C5084
040C
C5094
101K
-57.0V
R5233
R5234
57.0V
1.1V
R5033
120K
-1.1V
Q5043
R5173
150
(1/4W)
57.0V
1.1V
R5034
120K
-1.1V
R5174
150
(1/4W)
Q5033
C5053
47/50
120K
Q5034
C5054
47/50
120K
Q5044
R5203
NC
R5204
NC
58.8V
R5183
10
(1/4W)
P6003A
NF
-B1
+B1
B+
B-
R5193
10
(1/4W)
-58.8V
58.8V
R5184
10
(1/4W)
P6004A
NF
-B1
+B1
B+
B-
10
(1/4W)
-58.8V
TO NAAF-8523
TO NAAF-8523
R5194
18K
18K
R5165
(1/4W)
150
56.5V
0V
150
56.5V
0V
C5085
040C
C5095
101K
-57.0V
R5166
(1/4W)
C5086
040C
C5096
101K
-57.0V
R5235
R5236
57.0V
1.1V
R5035
120K
-1.1V
Q5045
R5175
150
(1/4W)
57.0V
Q5036
1.1V
C5056
47/50
R5036
120K
-1.1V
Q5046
R5176
150
(1/4W)
Q5035
C5055
47/50
120K
120K
SBL
C5015
R5005
10/50
1K
R5045
D5005
MTZJ5.6B
DZ-5.6BSB
2.2K
R5015
56K
C5005
101K
4
SBR
C5016
R5006
10/50
1K
C5006
101K
R5016
56K
5
2.2K
R5046
D5006
MTZJ5.6B
DZ-5.6BSB
R5095
100K
-0.1V
R5025
330
R5105
100K
R5096
100K
-0.1V
R5026
330
-52.6V
R5106
100K
-52.6V
-0.65V
R5115
1K
C5035
NC
Q5005
-0.65V
C5025
10/50
R5116
1K
C5036
NC
Q5006 Q5016
C5026
10/50
R5055
4.7K
Q5055
-53.3V
R5065
1.2K
R5075
NC
R5056
4.7K
Q5056
-53.3V
R5066
1.2K
R5076
NC
Q5015
C5045
220/16
R5085
470
C5046
220/16
R5086
470
C5105
10/100
C5115
10/100
-56.5V
C5106
10/100
C5116
10/100
-56.5V
R5135
R5136
R5205
NC
R5206
NC
58.8V
R5185
10
(1/4W)
P6005A
NF
-B1
+B1
B+
B-
R5195
10
(1/4W)
-58.8V
58.8V
R5186
10
(1/4W)
JL6006A
NF
-B1
+B1
B+
B-
R5196
10
(1/4W)
-58.8V
TO NAAF-8523
TO NAETC-8525
C
R5002
1K
C5002
101K
R5042
D5002
MTZJ5.6B
DZ-5.6BSB
C5012
10/50
2.2K
R5012
56K
R5092
100K
-0.1V
R5022
330
R5102
100K
-52.6V
R5112
1K
C5032
NC
Q5002 Q5012
-0.65V
C5022
10/50
R5052
4.7K
Q5052
-53.3V
R5062
1.2K
R5072
NC
C5102
10/100
C5042
220/16
C5112
10/100
R5082
470
U18
DRIVER AMPLIIER PC BOARD
R5132
18K
-56.5V
R5162
150
(1/4W)
57.0V
C5082
040C
C5092
101K
R5232
Q5032
1.1V
C5052
47/50
R5032
120K
-1.1V
Q5042
R5172
150
(1/4W)
120K
56.5V
0V
-57.0V
R5202
NC
58.8V
R5182
10
(1/4W)
P6002A
NF
-B1
+B1
B+
B-
R5192
(1/4W)
-58.8V
TO NAAF-8523
10
NAAF-8540
Page 21
HT-R530HT-R530
A
SCHEMATIC DIAGRAMS-4
POWER AMPLIFIER SECTION
1
2
3
Refer to following table about the parts displayed by mark " ".
THE COMPONENTS IDENTIFIED BY MARK ARE CRITICAL FOR SAFETY
REPLACE ONLY WITH PART NUMBER SPECIFIED.
VOLTAGE (MEASURED WITH VOLTMETER) IS DC VOLTAGE.(NO INPUT SIGNAL).
ALL PNP TRANSISTORS ARE EQUIVALENT TO 2SA1015-GR UNLESS OTHERWISE NOTED.
ALL NPN TRANSISTORS ARE EQUIVALENT TO 2SC1815-GR UNLESS OTHERWISE NOTED.
ALL DIODES ARE EQUIVALENT TO 1SS133 UNLESS OTHERWISE NOTED.
ELECTROLYTIC CAPACITORS ( ) ARE IN uF/WV.
ALL CAPACITORS ARE IN pF/50WV UNLESS OTHERWISE NOTED.
EX) 030- 3pF 330- 33pF 331- 330pF 333- 0.033uF
ALL RESISTORS ARE IN OHMS 1/4WATTS UNLESS OTHERWISE NOTED.
THE THICK LINES ON PC BOARD ARE THE PRINTING SIDE OF THE PARTS.
EX) PRINTING SIDE
CIRCUIT IS SUBJECT TO CHANGE FOR IMPROVEMENT.
<Note>
NC=No mount of parts.
KTA1268-BL, GR, 2SA992-E, F
2SA1123-R
KTC3199-GR, 2SC2458-GR,
2SC1740S-R, S
!
BCDEFGH
NAAF-8523 (2/2)
SL
TO NAAF-8540
SR
TO NAAF-8540
SBL
TO NAAF-8540
+B1
+B1
-B1
-B1
+B1
-B1
NF
B+
B-
NF
B+
B-
NF
B+
B-
P6003
P6004
P6005
R6033
470
R6003
5.6K
R6013
3.9K
R6043
2K
R6053
3.3K
R6034
470
R6004
5.6K
R6014
3.9K
R6044
2K
R6054
3.3K
R6035
470
R6005
5.6K
R6015
3.9K
R6045
2K
R6055
3.3K
U05
AMPLIFIER PC BOARD
1.0V
IDLING
ADJ.
-0.4V
1.0V
IDLING
ADJ.
-0.4V
1.0V
IDLING
ADJ.
-0.4V
-0.3V
-58.8V
-0.3V
-58.8V
-0.3V
-58.8V
R6023 2.2
(1/4W)
1.1V
Q6013
Q6023
-1.1V
R6024 2.2
(1/4W)
1.1V
Q6014
-1.1V
R6025 2.2
(1/4W)
1.1V
Q6015
Q6025
-1.1V
Q6024
0.6V
-0.6V
0.6V
-0.6V
0.6V
-0.6V
Q6033
R6073
120
(1/4W)
C6043
47/50
Q6034
R6074
120
(1/4W)
C6044
47/50
Q6035
R6075
120
(1/4W)
C6045
47/50
R6083
(1/4W)
(1/4W)
Q6043
R6084
(1/4W)
(1/4W)
Q6044
R6085
(1/4W)
Q6045
0.22
R6103
0.22 X2
(2W)
R6093
0.22
0.22
R6094
0.22
0.22
R6095
0.22
(1/4W)
58.8V
0.6V
-0.6V
58.8V
0.6V
R6104
0.22 X2
(2W)
-0.6V
58.8V
0.6V
R6105
0.22 X2
(2W)
-0.6V
Q6053
P6083
Q6063
Q6054
P6084
Q6064
Q6055
P6085
Q6065
R6153
12K
R6154
12K
R6155
12K
R6143
22K
ID+
ID-
R6144
22K
ID+
ID-
R6145
22K
ID+
ID-
R6163
D6013
R6164
33K
D6014
R6165
33K
D6015
33K
C6053
NC
R6193
220K
C6054
NC
R6194
220K
C6055
NC
R6195
220K
Q6073
8.2 (1W)
Q6074
8.2(1W)
Q6075
8.2(1W)
R6183
47K
C6233
473J
R6233
R6184
47K
R6234
C6234
473J
R6185
47K
R6235
C6235
473J
D6003
D6004
D6005
R6174
47K
R6175
47K
R6173
47K
J011
J011A
4
TO NAAF-8540
P6011A
(BUS BAR)
J010
J010A
D6904, 6905 : D10XB60H
D6905
C6901
10000/75
C6902
10000/75
C6903
102J
D6902
D6901
P6906
D6904
!
F6901
10A /125V
C6905
C6904
334J 100V
334J 100V
C6907
C6906
104J
104J
RL6902
!
D6906
RL6901
!
!
F6902
10A /125V
C6920
NC
R6902
1K
Q6901
5
JL6951A
NC
NC
TO NAPS-8524
P997
P995
P996
JL6952A
TO NAPS-8524
Page 22
R6173
47K
FL
P6000
NF
-B1
+B1
B+
B-
TO NAAF-8540
R6030
470
R6000
5.6K
R6010
3.9K
R6040
2K
R6050
3.3K
1.0V
IDLING
ADJ.
-0.4V
-0.3V
-58.8V
R6020 2.2
(1/4W)
1.1V
Q6010
-1.1V
Q6020
0.6V
-0.6V
Q6030
R6070
120
(1/4W)
C6040
47/50
R6080
(1/4W)
R6090
(1/4W)
Q6040
0.22
0.22
0.6V
R6100
0.22
(2W)
-0.6V
58.8V
X2
Q6050
P6080
Q6060
R6150
12K
R6140
22K
ID+
ID-
R6160
33K
D6010
C6050
NC
R6190
220K
Q6070
R6230
8.2(1W)
R6180
47K
C6230
473J
D6000
R6170
47K
R6901
10
(1/2W)
FR
P6001
NF
-B1
+B1
B+
B-
TO NAAF-8540
C
P6002
NF
-B1
+B1
B+
B-
TO NAAF-8540
R6031
470
R6001
5.6K
R6011
3.9K
R6041
2K
R6051
3.3K
R6032
470
R6002
5.6K
R6012
3.9K
R6042
2K
R6052
3.3K
1.0V
IDLING
ADJ.
-0.4V
1.0V
IDLING
ADJ.
-0.4V
-0.3V
-58.8V
-0.3V
-58.8V
R6021 2.2
(1/4W)
1.1V
Q6011
-1.1V
R6022 2.2
(1/4W)
1.1V
Q6012
-1.1V
Q6021
Q6022
0.6V
-0.6V
0.6V
-0.6V
R6071
120
(1/4W)
C6041
47/50
R6072
120
(1/4W)
C6042
47/50
R6701
22K
D6701
C6701
100/16
Q6031
(1/4W)
Q6041
Q6032
R6082
(1/4W)
Q6042
R6702
10K
R6708
33K
Q6701
R6081
0.22
(1/4W)
R6091
0.22
0.22
R6092
0.22
(1/4W)
58.8V
0.6V
R6101
0.22 X2
(2W)
-0.6V
58.8V
0.6V
R6102
0.22X2
(2W)
-0.6V
C6703
223Z
Q6702
C6704
1/100
D6702
Q6051
P6081
Q6061
Q6052
P6082
Q6062
Q6703
R6704
47K
D6703
MTZJ5.1B
DZ5.1BSB
R6706
220K
R6151
12K
R6152
12K
C6706
100/16
R6141
22K
ID+
ID-
R6142
22K
ID+
ID-
R6161
33K
C6051
NC
R6191
220K
D6011
R6162
33K
C6052
NC
R6192
220K
D6012
D6704
MTZJ5.1B
DZ5.1BSB
Q6071
Q6072
5.6K
R6709
R6181
47K
C6231
473J
R6231
(1W)
8.2
R6182
47K
R6232
8.2(1W)
C6232
473J
12K
R6710
D6001
D6002
R6171
47K
R6172
47K
R6176
47K
473J
47K
R6751
390
(1/2W)
U08
R6236
(1W)
8.2
D6006
R6750
390
(1/2W)
NAETC-8526
C6236
R6186
THERMAL SENSOR
PC BOARD
Q6380
LM61CIZ
GOV
C6380
NC
JL6402B
JL6402A
HPDET
+24V
SEC1H
RLGND
MPUGND
VOLH
PRO
THRM
JL6200A
+B1
-B1
E
SBRSP
IPRO
SBRSP
SBLSP
SRSP
SLSP
CSP
RSP
LSP
JL6600A
SRSPE
SLSPE
SBRSPE
SBLSPE
CSPE
RSPE
LSPE
RLGND
+24V
JL6603A
HPL
HPR
JL891B
THERMAL SENSOR
C6381
NC
5V
TO NAETC-8525
TO NAETC
-8537
TO NAETC
-8537
TO NAETC
-8516
TO NAAF-8523 (1/2)
Page 23
HT-R530
A
SCHEMATIC DIAGRAMS-4
POWER AMPLIFIER SECTION
1
2
3
4
5
Refer to following table about the parts displayed by mark " ".
THE COMPONENTS IDENTIFIED BY MARK ARE CRITICAL FOR SAFETY
REPLACE ONLY WITH PART NUMBER SPECIFIED.
VOLTAGE (MEASURED WITH VOLTMETER) IS DC VOLTAGE.(NO INPUT SIGNAL).
ALL PNP TRANSISTORS ARE EQUIVALENT TO 2SA1015-GR UNLESS OTHERWISE NOTED.
ALL NPN TRANSISTORS ARE EQUIVALENT TO 2SC1815-GR UNLESS OTHERWISE NOTED.
ALL DIODES ARE EQUIVALENT TO 1SS133 UNLESS OTHERWISE NOTED.
ELECTROLYTIC CAPACITORS ( ) ARE IN uF/WV.
ALL CAPACITORS ARE IN pF/50WV UNLESS OTHERWISE NOTED.
EX) 030- 3pF 330- 33pF 331- 330pF 333- 0.033uF
ALL RESISTORS ARE IN OHMS 1/4WATTS UNLESS OTHERWISE NOTED.
THE THICK LINES ON PC BOARD ARE THE PRINTING SIDE OF THE PARTS.
EX) PRINTING SIDE
CIRCUIT IS SUBJECT TO CHANGE FOR IMPROVEMENT.
<Note>
NC=No mount of parts.
KTA1268-BL, GR, 2SA992-E, F
2SA1123-R
KTC3199-GR, 2SC2458-GR,
2SC1740S-R, S
!
BCDEFGH
NAAF-8523 (2/2)
SL
P6003
NF
-B1
+B1
B+
B-
TO NAAF-8540
SR
P6004
NF
-B1
+B1
B+
B-
TO NAAF-8540
SBL
P6005
NF
-B1
+B1
B+
B-
TO NAAF-8540
J011
J011A
J010
D6904, 6905 : D10XB60H
C6901
10000/75
C6902
10000/75
D6902
P6906
D6901
D6905
C6903
102J
P6011A
(BUS BAR)
TO NAAF-8540
J010A
R6033
470
R6003
5.6K
R6013
3.9K
R6043
2K
R6053
3.3K
R6034
470
R6004
5.6K
R6014
3.9K
R6044
2K
R6054
3.3K
R6035
470
R6005
5.6K
R6015
3.9K
R6045
2K
R6055
3.3K
D6904
!
JL6951A
NC
U05
AMPLIFIER PC BOARD
1.0V
IDLING
ADJ.
-0.4V
1.0V
IDLING
ADJ.
-0.4V
1.0V
IDLING
ADJ.
-0.4V
F6901
10A /125V
-0.3V
-58.8V
-0.3V
-58.8V
-0.3V
-58.8V
C6905
C6904
NC
R6023 2.2
Q6013
-1.1V
R6024 2.2
1.1V
Q6014
-1.1V
R6025 2.2
1.1V
Q6015
-1.1V
334J 100V
334J 100V
(1/4W)
1.1V
Q6023
(1/4W)
Q6024
(1/4W)
Q6025
C6907
C6906
TO NAPS-8524
0.6V
-0.6V
0.6V
-0.6V
-0.6V
104J
104J
0.6V
RL6902
!
D6906
RL6901
!
Q6033
R6073
120
(1/4W)
C6043
47/50
Q6034
R6074
120
(1/4W)
C6044
47/50
Q6035
R6075
120
(1/4W)
C6045
47/50
R6083
(1/4W)
(1/4W)
Q6043
R6084
(1/4W)
(1/4W)
Q6044
R6085
(1/4W)
Q6045
0.22
R6103
0.22 X2
R6093
0.22
0.22
R6094
0.22
0.22
R6095
0.22
(1/4W)
(2W)
R6104
-0.6V
R6105
0.22 X2
-0.6V
P997
P995
P996
58.8V
0.6V
-0.6V
58.8V
0.6V
0.22 X2
(2W)
58.8V
0.6V
(2W)
Q6053
!
F6902
10A /125V
R6163
R6143
22K
P6083
ID+
ID-
R6153
12K
Q6063
D6013
R6164
P6084
R6154
R6155
12K
12K
R6144
22K
ID+
ID-
R6145
22K
ID+
ID-
33K
D6014
R6165
33K
D6015
Q6054
Q6064
Q6055
P6085
Q6065
TO NAPS-8524
33K
C6053
NC
R6193
220K
C6054
NC
R6194
220K
C6055
NC
R6195
220K
Q6073
R6183
C6233
473J
R6233
8.2 (1W)
Q6074
R6184
R6234
8.2(1W)
C6234
473J
Q6075
R6185
R6235
8.2(1W)
C6235
C6920
NC
JL6952A
47K
47K
47K
473J
D6003
D6004
D6005
R6902
1K
Q6901
R6174
47K
R6175
47K
R6173
47K
R6901
10
(1/2W)
FL
P6000
NF
-B1
+B1
B+
B-
TO NAAF-8540
FR
P6001
NF
-B1
+B1
B+
B-
TO NAAF-8540
C
P6002
NF
-B1
+B1
B+
B-
TO NAAF-8540
R6030
470
R6000
5.6K
R6010
3.9K
R6040
2K
R6050
3.3K
R6031
470
R6001
5.6K
R6011
3.9K
R6041
2K
R6051
3.3K
R6032
470
R6002
5.6K
R6012
3.9K
R6042
2K
R6052
3.3K
1.0V
IDLING
ADJ.
-0.4V
1.0V
IDLING
ADJ.
-0.4V
1.0V
IDLING
ADJ.
-0.4V
-0.3V
-58.8V
-0.3V
-58.8V
-0.3V
-58.8V
R6020 2.2
(1/4W)
1.1V
Q6010
Q6020
-1.1V
R6021 2.2
(1/4W)
1.1V
Q6011
Q6021
-1.1V
R6022 2.2
(1/4W)
1.1V
Q6012
Q6022
-1.1V
0.6V
-0.6V
0.6V
-0.6V
0.6V
-0.6V
R6070
120
(1/4W)
C6040
47/50
R6071
120
(1/4W)
C6041
47/50
R6072
120
(1/4W)
C6042
47/50
R6701
22K
D6701
C6701
100/16
Q6030
(1/4W)
Q6040
Q6031
Q6041
Q6032
Q6042
R6702
10K
R6708
33K
Q6701
R6080
0.22
R6090
0.22
(1/4W)
R6081
0.22
(1/4W)
R6091
0.22
(1/4W)
R6082
0.22
(1/4W)
R6092
0.22
(1/4W)
58.8V
0.6V
R6100
0.22
(2W)
-0.6V
58.8V
0.6V
R6101
0.22 X2
(2W)
-0.6V
58.8V
0.6V
R6102
0.22X2
(2W)
-0.6V
C6703
223Z
Q6702
C6704
1/100
D6702
X2
Q6050
P6080
Q6060
Q6051
P6081
Q6061
Q6052
P6082
Q6062
Q6703
R6704
47K
D6703
MTZJ5.1B
DZ5.1BSB
R6706
220K
R6150
12K
R6151
12K
R6152
12K
C6706
100/16
R6140
22K
ID+
ID-
D6010
R6141
22K
ID+
ID-
R6142
22K
ID+
ID-
R6160
33K
C6050
NC
R6190
220K
R6161
33K
C6051
NC
R6191
220K
D6011
R6162
33K
C6052
NC
R6192
220K
D6012
D6704
MTZJ5.1B
DZ5.1BSB
Q6070
Q6071
Q6072
5.6K
R6709
R6180
47K
R6230
8.2(1W)
C6230
473J
R6181
47K
C6231
473J
R6231
(1W)
8.2
R6182
47K
R6232
8.2(1W)
C6232
473J
R6710
D6000
D6001
D6002
12K
R6171
47K
R6172
47K
R6170
47K
R6176
47K
473J
47K
R6751
390
(1/2W)
U08
R6236
(1W)
8.2
D6006
R6750
390
(1/2W)
NAETC-8526
C6236
R6186
THERMAL SENSOR
PC BOARD
Q6380
LM61CIZ
GOV
C6380
NC
JL6402B
JL6402A
HPDET
+24V
SEC1H
RLGND
MPUGND
VOLH
PRO
THRM
JL6200A
+B1
-B1
E
SBRSP
IPRO
SBRSP
SBLSP
SRSP
SLSP
CSP
RSP
LSP
JL6600A
SRSPE
SLSPE
SBRSPE
SBLSPE
CSPE
RSPE
LSPE
RLGND
+24V
JL6603A
HPL
HPR
JL891B
THERMAL SENSOR
C6381
NC
5V
TO NAETC-8525
TO NAETC
-8537
TO NAETC
-8537
TO NAETC
-8516
TO NAAF-8523 (1/2)
Page 24
HT-R530
A
SCHEMATIC DIAGRAMS-5
SPEAKER TERMINAL SECTION
NAETC-8538
1
<Note>
NC=No mount of parts.
Refer to following table about the parts
displayed by mark " ".
THE COMPONENTS IDENTIFIED BY MARK ARE CRITICAL FOR SAFETY
REPLACE ONLY WITH PART NUMBER SPECIFIED.
VOLTAGE (MEASURED WITH VOLTMETER) IS DC VOLTAGE.(NO INPUT SIGNAL).
ALL PNP TRANSISTORS ARE EQUIVALENT TO 2SA1015-GR UNLESS OTHERWISE NOTED.
ALL NPN TRANSISTORS ARE EQUIVALENT TO 2SC1815-GR UNLESS OTHERWISE NOTED.
ALL DIODES ARE EQUIVALENT TO 1SS133 UNLESS OTHERWISE NOTED.
ELECTROLYTIC CAPACITORS ( ) ARE IN uF/WV.
ALL CAPACITORS ARE IN pF/50WV UNLESS OTHERWISE NOTED.
EX) 030- 3pF 330- 33pF 331- 330pF 333- 0.033uF
ALL RESISTORS ARE IN OHMS 1/4WATTS UNLESS OTHERWISE NOTED.
2
THE THICK LINES ON PC BOARD ARE THE PRINTING SIDE OF THE PARTS.
EX) PRINTING SIDE
CIRCUIT IS SUBJECT TO CHANGE FOR IMPROVEMENT.
<Note>
NC=No mount of parts.
MDD, MDC
!
F903
5A 125V
!
P902
3
AC OUTLET
120W MAX
1A MAX
MPA
!
F903
T2.5AL250V
!
P902
AC OUTLET
100W MAX
4
!
!
F901
8A/125V
!
F902
T4AL250V
P912
P912
Refer to following table about the parts displayed by mark " ".
CIRCUIT NO.
DESTINATION
MDD, MDC
MPA
!
T901
NPT-1517D
U11
POWER SUPPLY-1 PC BOARD
!
!
T901
NPT-1517P
!
D930
D931
C921
223Z
T902
!
T902
NPT-1520JQ
NPT-1519GQ
D932
D921
D923
4
C930
100/35
D922
D924
3
D935
D933
1
C922
P917
C922
2200/25
2200/16
R934
100K
R930
NC
R931
NC
J924
P918
D934
C933
4.7/50
Q930
NC
IO
C931
NC
NAPS-8533
J919
ACG
R932
NC
C932
R933
NC
NC
D925
!
RL901
C901
103M/ 275VAC
NC
J922
J921
MPUGND
POWERDPOWERD
!
!
P901A
AC-H
AC-G
Refer to left diagrams
for each destination.
DESTINATION
MDD, MDC
MPA
AC IN
AC IN
120V, 60Hz
230V-240V, 50Hz
P901
!
5
Page 26
NAPS-8535
U13
POWER SUPPLY-2 PC BOARD
C9001
334J
MMT
C9009
220/35
D9009
J962
D9013
D9009,9013
RL1N4003
GP104003E
D9001-9003 :
RL1N4003
D9002
D9001
D9003
D9004
C9003
1000/35
C9004
470/35
J956
R9003
8.2K
C9014
470/63
R9002 22
(1/2W)
R9004
8.2K
C9015
10/50
Q9002
R9005
D9012
MTZJ36D
+24V
-24V
SEC2-1
SEC2-2
KTA1268,
2SA970
330K
S3GND
C9016
10/50
J955
NC
-VP
MPUGND
+12VD
+10VS
POWER
POFFV
FLAC1
HT-R530HT-R530
P9502A
TO NAAF-8523
FLAC2
E9001
P931A
P931B
POFFVPPOFFVP
+10VS
+12VD
MPUGND
POWERDPOWERD
T901
C9708
D9706
D9705
!
222J
JL9501B
R9594
8.2 (1/2W)
R9592
0.47
R9591
0.47(1/2W)
R9593
0.22
F9501
P996
JL9501A
(1/2W)
(1/2W)
NC
8
9
10
11
12
13
14
15
16
17
18
19
TO NAAF-8523
FLAC1
C9591
104J
FLAC1
P997P995
FLAC2
SEC3-2
FLAC2
SEC3-2
S3GND
SEC3-1
GND
SEC3-1
NC
R9022
R922
10K
SEC2-2
SEC2-1
Q921
KTC3199-GR,
2SC2458-GR
NAPS-8536
SEC2-2
SEC2-1
U14
SEC. TERMINAL-1
PC BOARD
NC
JL6951B
NC
TO NAAF-8523
NC
C9021
NC
Q9021
NC
R923
1K
NC
D9023
D9024D9022
NC
Q9022
RN2202
NC
D9025
U06
NAPS-8524
SEC. TERMINAL-2
PC BOARD
JL6952B
R9023
1NC
Q9023
NC
D9026
NC
R9024
NC
Page 27
HT-R530
A
SCHEMATIC DIAGRAMS-6
POWER SUPPLY SECTION
1
NOTE
THE COMPONENTS IDENTIFIED BY MARK ARE CRITICAL FOR SAFETY
REPLACE ONLY WITH PART NUMBER SPECIFIED.
VOLTAGE (MEASURED WITH VOLTMETER) IS DC VOLTAGE.(NO INPUT SIGNAL).
ALL PNP TRANSISTORS ARE EQUIVALENT TO 2SA1015-GR UNLESS OTHERWISE NOTED.
ALL NPN TRANSISTORS ARE EQUIVALENT TO 2SC1815-GR UNLESS OTHERWISE NOTED.
ALL DIODES ARE EQUIVALENT TO 1SS133 UNLESS OTHERWISE NOTED.
ELECTROLYTIC CAPACITORS ( ) ARE IN uF/WV.
ALL CAPACITORS ARE IN pF/50WV UNLESS OTHERWISE NOTED.
EX) 030- 3pF 330- 33pF 331- 330pF 333- 0.033uF
ALL RESISTORS ARE IN OHMS 1/4WATTS UNLESS OTHERWISE NOTED.
2
3
4
5
THE THICK LINES ON PC BOARD ARE THE PRINTING SIDE OF THE PARTS.
EX) PRINTING SIDE
CIRCUIT IS SUBJECT TO CHANGE FOR IMPROVEMENT.
<Note>
NC=No mount of parts.
MDD, MDC
!
F903
5A 125V
!
P902
AC OUTLET
120W MAX
1A MAX
MPA
!
F903
T2.5AL250V
!
P902
AC OUTLET
100W MAX
!
!
F901
8A/125V
!
F902
T4AL250V
BCDEFGH
NAPS-8535
U13
!
P912
!
P912
DESTINATION
MDD, MDC
MPA
!
T901
NPT-1517D
!
T901
NPT-1517P
AC IN
AC IN
120V, 60Hz
230V-240V, 50Hz
Refer to following table about the parts displayed by mark " ".
Refer to following table about the
parts displayed by mark " ".
CIRCUIT NO.
DESTINATION
MDD, MDC
MPA
R833
560
S804
S808
NC
SPEAKERS A
S809
Q824, D824,
R825, 826
NO
YES
R834
820
S805
NC
R835
1.2K
S802
NO
YES
S806
NC
SWITCH PC BOARD
R836
2.2K
S807
STANDBY/ON
LEDPURE
LEDZONE2
GNDTACT
+BLED
GNDLED
KEY0_2
KEYINT0
JL831B
JL832B
NC
+BLED
NC
7
LEDPURE
6
LEDZONE2
5
4
KEY0_2
3
2
KEYINT0
1
JL831A
3
2
1
JL832A
NC
7
6
5
4
3
2
1
3
2
1
Q823
NC
D823
NC
NC
R823
NC
R824
R831
330
LEDVOL
NOTE
THE COMPONENTS IDENTIFIED BY MARK ARE CRITICAL FOR SAFETY
REPLACE ONLY WITH PART NUMBER SPECIFIED.
VOLTAGE (MEASURED WITH VOLTMETER) IS DC VOLTAGE.(NO INPUT SIGNAL).
ALL PNP TRANSISTORS ARE EQUIVALENT TO 2SA1015-GR UNLESS OTHERWISE NOTED.
ALL NPN TRANSISTORS ARE EQUIVALENT TO 2SC1815-GR UNLESS OTHERWISE NOTED.
ALL DIODES ARE EQUIVALENT TO 1SS133 UNLESS OTHERWISE NOTED.
ELECTROLYTIC CAPACITORS ( ) ARE IN uF/WV.
ALL CAPACITORS ARE IN pF/50WV UNLESS OTHERWISE NOTED.
EX) 030- 3pF 330- 33pF 331- 330pF 333- 0.033uF
ALL RESISTORS ARE IN OHMS 1/4WATTS UNLESS OTHERWISE NOTED.
5
THE THICK LINES ON PC BOARD ARE THE PRINTING SIDE OF THE PARTS.
EX) PRINTING SIDE
CIRCUIT IS SUBJECT TO CHANGE FOR IMPROVEMENT.
THE COMPONENTS IDENTIFIED BY MARK ARE CRITICAL FOR SAFETY
REPLACE ONLY WITH PART NUMBER SPECIFIED.
VOLTAGE (MEASURED WITH VOLTMETER) IS DC VOLTAGE.(NO INPUT SIGNAL).
ALL PNP TRANSISTORS ARE EQUIVALENT TO 2SA1015-GR UNLESS OTHERWISE NOTED.
ALL NPN TRANSISTORS ARE EQUIVALENT TO 2SC1815-GR UNLESS OTHERWISE NOTED.
ALL DIODES ARE EQUIVALENT TO 1SS133 UNLESS OTHERWISE NOTED.
ELECTROLYTIC CAPACITORS ( ) ARE IN uF/WV.
ALL CAPACITORS ARE IN pF/50WV UNLESS OTHERWISE NOTED.
EX) 030- 3pF 330- 33pF 331- 330pF 333- 0.033uF
ALL RESISTORS ARE IN OHMS 1/4WATTS UNLESS OTHERWISE NOTED.
5
THE THICK LINES ON PC BOARD ARE THE PRINTING SIDE OF THE PARTS.
EX) PRINTING SIDE
CIRCUIT IS SUBJECT TO CHANGE FOR IMPROVEMENT.
THE COMPONENTS IDENTIFIED BY MARK ARE CRITICAL FOR SAFETY
REPLACE ONLY WITH PART NUMBER SPECIFIED.
VOLTAGE (MEASURED WITH VOLTMETER) IS DC VOLTAGE.(NO INPUT SIGNAL).
ALL PNP TRANSISTORS ARE EQUIVALENT TO 2SA1015-GR UNLESS OTHERWISE NOTED.
ALL NPN TRANSISTORS ARE EQUIVALENT TO 2SC1815-GR UNLESS OTHERWISE NOTED.
ALL DIODES ARE EQUIVALENT TO 1SS133 UNLESS OTHERWISE NOTED.
ELECTROLYTIC CAPACITORS ( ) ARE IN uF/WV.
ALL CAPACITORS ARE IN pF/50WV UNLESS OTHERWISE NOTED.
EX) 030- 3pF 330- 33pF 331- 330pF 333- 0.033uF
ALL RESISTORS ARE IN OHMS 1/4WATTS UNLESS OTHERWISE NOTED.
THE THICK LINES ON PC BOARD ARE THE PRINTING SIDE OF THE PARTS.
EX) PRINTING SIDE
CIRCUIT IS SUBJECT TO CHANGE FOR IMPROVEMENT.
THE COMPONENTS IDENTIFIED BY MARK ARE CRITICAL FOR SAFETY
REPLACE ONLY WITH PART NUMBER SPECIFIED.
VOLTAGE (MEASURED WITH VOLTMETER) IS DC VOLTAGE.(NO INPUT SIGNAL).
ALL PNP TRANSISTORS ARE EQUIVALENT TO 2SA1015-GR UNLESS OTHERWISE NOTED.
ALL NPN TRANSISTORS ARE EQUIVALENT TO 2SC1815-GR UNLESS OTHERWISE NOTED.
ALL DIODES ARE EQUIVALENT TO 1SS133 UNLESS OTHERWISE NOTED.
ELECTROLYTIC CAPACITORS ( ) ARE IN uF/WV.
ALL CAPACITORS ARE IN pF/50WV UNLESS OTHERWISE NOTED.
EX) 030- 3pF 330- 33pF 331- 330pF 333- 0.033uF
ALL RESISTORS ARE IN OHMS 1/4WATTS UNLESS OTHERWISE NOTED.
THE THICK LINES ON PC BOARD ARE THE PRINTING SIDE OF THE PARTS.
EX) PRINTING SIDE
CIRCUIT IS SUBJECT TO CHANGE FOR IMPROVEMENT.
Description
Output terminal of demodulator quality signal.
Output terminal of demodulator data.
Input terminal of reference voltage.
Input terminal of composite signal.
Analog power supply.
Analog power supply.
Ground.
Input terminal of comparator.
Input terminal for test mode.
Input terminal for test mode.
Digital power supply.
Digital power supply.
Connect to oscillator.
Connect to oscillator.
CS494003 clock input. This pin accepts an external clock input signal that is used to drive the
internal core logic. When in internal clock mode (CLKSEL == VSS), this input is connected to
the internal PLL from which all internal clocks are derived. When in external clock mode
(CLKSEL == VDD), this input is connected to the DSP clock. Alternatively, a 12.288 MHz
crystal oscillator can be connected between XTALI and XTALO. INPUT
TX-SR503/503E/8350
XTALO --- Crystal Oscillator Output
Crystal oscillator output. OUTPUT
CLKSEL --- DSP Clock select
This pin selects the internal source clock. When CLKSEL is low, CLKIN is connected to the
internal PLL from which all internal clocks are derived. When CLKSEL is high, the PLL is
bypassed and the external clock directly drives all input logic. INPUT
FDAT7 --- DSPAB Bidirectional Data Bus
FDAT6
FDAT5
FDAT4
FDAT3
FDAT2
FDAT1
FDAT0
In parallel host mode, these pins provide a bidirectional data bus to DSPAB. These pins have
an internal pull-up.
BIDIRECTIONAL - Default : INPUT
FA0, FSCCLK --- Host Parallel Address Bit Zero or Serial Control Port Clock
In parallel host mode, this pin serves as one of two address input pins used to select one of
four parallel resisters. In serial host mode, this pin serves as the serial control clock signal,
specifically as the SPI clock input. INPUT
FA1, FSCDIN --- Host Address Bit One or SPI Serial Control Data input
In parallel host mode, this pin serves as one of two address input pins used to select one of
four parallel resisters. In SPI serial host mode, this pin serves as the data input. INPUT
FHS1, FRD, FR/W --- Mode Select Bit 1 or Host Parallel Output Enable or Host Parallel R/W
DSPAB control port mode select bit 1. This bit is one of 3 control port select bits that are
sampled on the rising edge of RESET to determine the control port mode of DSPAB. In Intel
parallel host mode, this pin serves as the active-low data bus enable input. In Motorola parallel
host mode, this pin serves as the read-high/write-low control input signal. In serial host mode,
this pin can serve as the external memory active-low data-enable output signal.
BIDIRECTIONAL - Default: INPUT
FHS0, FWR, FDS --- Mode Select Bit 0 or Host Write Strobe or Host Data Strobe
DSPAB control port mode select bit 0. This bit is one of 3 control port select bits that are
sampled on the rising edge of RESET to determine the control port mode of DSPAB. In Intel
parallel host mode, this pin serves as the active-low data-write-input strobe. In Motorola
parallel host mode, this pin serves as the active-low data-strove-input signal. In serial host
mode, this pin can serves as the external-memory active-low write-enable output signal.
In parallel host mode, this pin serves as the active-low chip-select input signal. In serial host
SPI mode, this pin is used as the active-low chip-select input signal. INPUT
FHS2, FSCDIO, FSCDOUT --- Mode Select Bit 2 or Serial Control Port data Input and Output,
Parallel Port Type Select
DSPAB control port mode select bit 2. This bit is one of 3 control port select bits that are
sampled on the rising edge of RESET to determine the control port mode of DSPAB. In SPI
mode this pin serves as the data output pin. In parallel host mode, this pin is sampled at the
rising edge of RESET to configure the parallel host mode as an Intel type bus or as a
Motorola type bus. BIDIRECTIONAL - Default: INPUT
FINTREQ --- Control Port Interrupt Request
Open-drain interrupt-request output. This pin is driven low to indicate that the DSP has
outgoing control data that should be read by the host.
OPEN DRAIN I/O - Requires 3.3k Ohm Pull - Up
FSCLKN1, STCCLK2 --- PCM Audio Input Bit Clock
Digital-audio bit clock input. FSCLKN1 operates asynchronously from all other DSPAB clocks.
In master mode, FSCLKN1 is derived from DSPAB's internal clock generator. The active edge
of FSCLKN1 can be programmed by the DSP.
Digital-audio frame clock input. FLRCLKN1 typically is run at the sampling frequency.
FLRCLKN1 operates asynchronously from all other DSPAB clocks. The polarity of FLRCLKN1
for a particular subframe can be programmed by the DSP.
BIDIRECTIONAL - Default: INPUT
FSDATAN1 --- PCM Audio Data Input One
Digital-audio data input can accept from one compressed line or 2 channels of PCM data.
FSDATAN1 can be sampled with either edge of FSCLKN1, depending on how FSCLKN1 has
been configured. INPUT
CMPCLK, FSCLKN2 --- PCM Audio Input Bit Clock
Digital- audio bit clock input. FSCKN2 operates asynchronously from all other DSPAB clocks.
The active edge of FSCLKN2 can be programmed by the DSP.
BIDIRECTIONAL - Default: INPUT
TX-SR503/503E/8350
CMPDAT, FSDATAN2 --- PCM Audio Data Input Number Two
Digital-audio data input that can accept either one compressed line or 2 channels of PCM
data. FSDATAN2 can be sampled with either edge of FSCLK2, depending on how FSCLKN2
has been configured.
BIDIRECTIONAL - Default: INPUT
FDBCK --- Reserved
This pin is reserved and should be pulled up with an external 3.3k resistor. INPUT
FDBDA --- Reserved
This pin is reserved and should be pulled up with an external 3.3k resistor.
BIDIRECTIONAL - Default: INPUT
PLLVDD --- PLL Supply Voltage
2.5V PLL supply.
PLLVSS --- PLL Ground Voltage
PLL ground.
RESET --- Master Reset Input
Asynchronous active-low master reset input. Reset should be low at power-up to initialize the
DSP and to guarantee that the device is not active during initial power-on stabilization periods.
At the rising edge of reset the host interface mode of DSPAB is selected contingent on the
state of the FHS0, FHS1, and FHS2 pins. At the rising edge of reset the host interface mode
of DSPC is selected contingent on the state of the UHS0, UHS1, and UHS2 pins. If reset is
low all bidirectional pins are high-Z inputs. INPUT
This should be tied low for normal operation. INPUT
MCLK --- Audio Master Clock
Bidirectional master audio clock. As an output, MCLK provides a low jitter oversampling clock.
MCLK supports all standard oversampling frequencies. BIDIRECTIONAL - Default: INPUT
SCLK0 --- Audio Output Bit Clock
Bidirectional digital-audio output bit clock for AUDATA0, AUDATA1, AUDATA2, and AUDATA3.
As an output, SCLK0 can provide 32 Fs, 64 Fs, 128 Fs, 256 Fs or 512 Fs frequencies and is
synchronous to MCLK. As an input, SCLK0 is independent of MCLK.
BIDIRECTIONAL - Default: INPUT
TX-SR503/503E/8350
SCLK1 --- Audio Output Bit Clock
Bidirectional digital-audio output bit clock for AUDATA4, AUDATA5, AUDATA6, and AUDATA7.
As an output, SCLK1 can provide 32 Fs, 64 Fs, 128 Fs, 256 Fs, or 512 Fs frequencies and is
synchronous to MCLK. As an input, SCLK1 is independent of MCLK.
BIDIRECTIONAL - Default: INPUT
LRCLK0 --- Audio Output Sample Rate Clock
Bidirectional digital-audio output frame clock for AUDATA0, AUDATA1, AUDATA2, and
AUDATA3. AS an output, LRCLK0 can provide all standard output sample rates up to 192 kHz
and is synchronous to MCLK. As input, LRCLK0 is independent of MCLK.
BIDIRECTIONAL - Default: INPUT
LRCLK1 --- Audio Output Sample Rata Clock
Bidirectional digital-audio output frame clock for AUDATA4, AUDATA5, AUDATA6, and
AUDATA7. AS an output, LRCLK1 can provide all standard output sample rates up to 192 kHz
and is synchronous to MCLK. As input, LRCLK1 is independent of MCLK.
AUDATA3, XMT958A --- Digital Audio Output 3, S/PDIF Transmitter
CMOS level output that outputs a biphase-mark encoded (S/PDIF) IEC60958 signal or digital
audio data which is capable of carrying two channels of PCM digital audio. OUTPUT
AUDATA4, GPIO28 --- Digital Audio Output 4, General Purpose I/O
PCM digital-audio data output. This pin can act as a general-purpose input or output that can
be individually configured and controlled by DSPC. BIDIRECTIONAL - Default: OUTPUT
AUDATA5, GPIO29 --- Digital Audio Output 5, General Purpose I/O
PCM digital-audio data output. This pin can act as a general-purpose input or output that can
be individually configured and controlled by DSPC. BIDIRECTIONAL - Default: OUTPUT
AUDATA6, GPIO30 --- Digital Audio Output 6, General Purpose I/O
PCM digital-audio data output. This pin can act as a general-purpose input or output that can
be individually configured and controlled by DSPC. BIDIRECTIONAL - Default: OUTPUT
TX-SR503/503E/8350
AUDATA7, XMT958B, GPIO3 --- Digital Audio Output 7, S/PDIF Transmitter, General Purpose I/O
CMOS level output that contains a biphase-mark encoded (S/PDIF) IEC60958 signal or digital
audio data which is capable of carrying two channels of PCM digital audio. This pin can also
act as a general-purpose input or output that can be individually configured and controlled by
DSCP. BIDIRECTIONAL - Default: OUTPUT
DBCK --- Debug Clock
Must be tied high to 3.3k ohm resistor. INPUT
DBDA --- Debug Data
Must be tied high to 3.3k ohms resistor. BIDIRECTIONAL - Default: INPUT
SLCKN, GPIO22 --- PCM Audio Input Bit Clock, General Purpose I/O
Digital-audio bit clock that is an input. SCLKN operates asynchronously from all other DSPAB
clocks. The active edge of SCLKN can be programmed by the DSP. This pin can act as a
general-purpose input or output that can be individually configured and controlled by DSPC.
BIDIRECTIONAL - Default: INPUT
Digital-audio frame clock input. LRCLKN operates asynchronously from all other DSPAB
clocks. The polarity of LRCLKN for a particular subframe can be programmed by the DSP.
this pin can act as a general-purpose input or output that can be individually configured and
controlled by DSCP. BIDIRECTIONAL - Default: INPUT
SDATAN0, GPIO24 --- PCM Audio Input Data, General Purpose I/O
Digital-audio PCM data input. This pin can act as a general-purpose input or output that can
be individually configured and controlled by DSPC. BIDIRECTIONAL - Default: INPUT
SDATAN1, GPIO25 --- PCM Audio Input Data, General purpose I/O
Digital-audio PCM data input. This can act as a general-purpose input or output that can
be individually configured and controlled by DSPC. BIDIRECTIONAL - Default: INPUT
SDATAN2, GPIO26 --- PCM Audio Input Data, General purpose I/O
Digital-audio PCM data input. This can act as a general-purpose input or output that can
be individually configured and controlled by DSPC. BIDIRECTIONAL - Default: INPUT
SDATAN3, GPIO27 --- PCM Audio Input Data, General purpose I/O
Digital-audio PCM data input. This can act as a general-purpose input or output that can
be individually configured and controlled by DSPC. BIDIRECTIONAL - Default: INPUT
In parallel host mode, these pins provide a bidirectional data bus. These pins can also act as
general purpose input or output pins that can be individually configured and controlled by
DSPC. These pins have an internal pull-up. BIDIRECTIONAL - Default: INPUT
A0, GPIO13 --- Host Parallel Address Bit 0, General Purpose I/O
In parallel host mode, this pin serves as the LS Bit of a two bit address input used to select
one of four parallel registers. This pin can act as a general-purpose input or output that can be
individually configured and controlled by DSPC. BIDIRECTIONAL - Default: INPUT
A1, GPIO12 --- Host Address Bit 1, General Purpose I/O
In parallel host mode, this pin serves as the MS Bit of a two bit address input used to select
one of four parallel registers. This pin can act as a general-purpose input or output that can be
individually configured and controlled by DSPC. BIDIRECTIONAL - Default: INPUT
In parallel host mode, this pin serves as the active-low data bus enable input. In Motorola
parallel host mode, this pin serves as the read-high/white-low control input signal. This pin can
act as a general-purpose input or output that can be individually configured and controlled by
DSPC. This pin has an internal pull-up. BIDIRECTIONAL - Default: INPUT
WR, DS, GPIO10 --- Host Write Strobe, Host Data Strobe, General Purpose I/O
In Intel parallel host mode, this pin serves as the active-low data bus enable input. In Motorola
parallel host mode, this pin serves as the read-high/write-low control input signal. In serial host
mode, this pin can serve as a general purpose input or output bit. This pin can act as a
general-purpose input or output that can be individually configured and controlled by DSPC.
This pin has an internal pull-up.
BIDIRECTIONAL - Default: INPUT
CS, GPIO9 --- Host Parallel Chip Select, General Purpose I/O
In parallel host mode, this pin serves as the active-low chip-select input signal. This pin can
act as a general-purpose input or output that can be individually configured and controlled by
DSPC. This pin has an internal pull-up. BIDIRECTIONAL - Default: INPUT
HINBSY, GPIO8 --- Input host Message Status, General Purpose I/O
This pin is indicates that serial or parallel communication data written to the DSP has not been
read yet. This pin can act as a general-purpose input or output that can be individually
configured and controlled by DSPC. This pin has an internal pull-up. BIDIRECTIONAL
Default: OUTPUT
SD_DATA15, EXTA18 --- SDRAM Data Bus, SRAM External Address Bus
SD_DATA14, EXTA17
SD_BA, EXTRA19 --- SDRAM Bank Address Select, SRAM External Address Bus
SDRAM bank address select, SRAM external address bus 19. OUTPUT
SD_CS --- SDRAM Chip select
SDRAM chip select. OUTPUT
SD_RAS --- SDRAM Row Address Strobe
SDRAM row address strobe. OUTPUT
SD_CAS --- SDRAM Column Address Strobe
SDRAM column address strobe. OUTPUT
TX-SR503/503E/8350
SD_WE --- SDRAM Write Enable
SDRAM write enable. OUTPUT
SD_DQM1 --- SDRAM Data Mask 1
SDRAM data mask 1. OUTPUT
SD_DQM0 --- SDRAM Data Mask 2
SDRAM data mask 0. OUTPUT
NV_CS, GPIO14 --- SRAM Chip Select, General Purpose I/O
SRAM/FLASH chip select. This pin can act as a general-purpose input or output that can be
individually configured and controlled by DSPC. BIDIRECTIONAL - Default: OUTPUT
NV_OE, GPIO15 --- SRAM Output Enable, General Purpose I/O
SRAM/FLASH output enable. This pin can act as a general-purpose input or output that can
be individually configured and controlled by DSPC. BIDIRECTIONAL - Default: OUTPUT
NV_WE, GPIO16 --- SRAM Write Enable, General Purpose I/O
SRAM/FLASH write enable. This pin can act as a general-purpose input or output that can be
individually configured and controlled by DSPC. BIDIRECTIONAL - Default: OUTPUT
UHS2, CS_OUT, GPIO17 --- Mode Select Bit 2, External Serial Memory Chip Select,
General Purpose I/O
DSPC control port mode select bit 2. This pin is sampled at the rising edge of RESET and is
one of three pins used to select the control port mode. In serial control port mode, this pin can
serve as an output to provide the chip-select for a serial EEPROM. This pin can act as a
general-purpose input or output that can be individually configured and controlled by DSPC.
BIDIRECTIONAL - Default: INPUT
UHS0, GPIO18 --- Mode Select Bit 0, General Purpose I/O
DSPC control port mode select bit 0. This pin is sampled at the rising edge of RESET and is
one of three pins used to select the control port mode. This pin can act as a general-purpose
input or output that can be individually configured and controlled by DSPC.
BIDIRECTIONAL - Default: INPUT
UHS1, GPIO19 --- Mode Select Bit 1, General Purpose I/O
DSPC control port mode select bit 1. This pin is sampled at the rising edge of RESET and is
one of three pins used to select the control port mode. This pin can act as a general-purpose
input or output that can be individually configured and controlled by DSPC.
BIDIRECTIONAL - Default: INPUT
TX-SR503/503E/8350
GPIO20 --- General Purpose I/O
This pin can act as a general-purpose input or output that can be individually configured and
controlled by DSPC. This pin has an internal pull-up.
BIDIRECTIONAL - Default: INPUT
GPIO21 --- General Purpose I/O
This pin can act as a general-purpose input or output that can be individually configured and
controlled by DSPC. This pin has an internal pull-up.
CX_SCLKCODEC Serial Clock (Input/Output) - Serial clock for the CODEC serial audio interface
CX_LRCK
VD
DGND
VLC
SCL/CCLK
SDA/CDOUT
AD1/CDIN
1
Codec Serial Audio Data Input (Input) - Input for two's complement serial audio data.
64
63
62
2
3
CODEC Left Right Clock (Input/ Output) - Determines which channel, Left or Right, is currently active on
the CODEC serial audio data line.
4
Digital Power (Input) - Positive power supply for the digital section.
51
5
Digital Ground (Input) - Ground reference. Should be connected to digital ground.
52
6
Control Port Power (Input) - Determines the required signal level for the control port.
7
Serial Control Port Clock (Input) - Serial clock for the serial control port. Requires an external pull-up
resistor to the logic interface voltage in I2C mode as shown in the Typical Connection Diagram.
8
Serial Control Data (Input/Output) - SDA is a data I/O line in IC mode and requires an external pull-up
resistor to the logic interface voltage, as shown in the Typical connection Diagram. CDOUT is the output
data line for the control port interface in SPI mode.
Address Bit 1 (I2C)/Serial Control Data (SPI) (Input) - AD1 a chip address pin in I2C mode; CDIN is
9
the input data line for control port interface in SPI mode.
Page 76
TX-SR503/503E/8350
IC BLOCK DIAGRAMS AND TERMINAL DESCRIPTIONS-16
Q421 : CS42518 (8-Ch Codec with S/PDIF Receiver)-3/4
Pin Name#Pin Description
AD0/CS10Address Bit 0 (I2C)/Control Port Chip Select (SPI) (INput) - AD0 is a chip address pin in I2C mode; CS
is the chip select signal in SPI mode.
INT11Interrupt (Ountput) - The CS42518 will generate an interrupt condition as per the Interrupt Mask register.
RST12Reset (Input) - The device enters a low power mode and all internal registers are reset to their default
settings when low.
AINRAINR+
AINLAINL+
VQ17Quiescent Voltage (Output) - Filter connection for internal quiescent reference voltage.
FILT+18Positive Voltage Reference (Output) - Positive reference voltage for the internal sampling circuits.
REFGND19Reference Ground (Input) - Ground reference for the internal sampling circuits.
AOUTA1 +, -
RXP049S/PDIF Receiver Input (Input) - Dedicated receiver input for S/PDIF encoded data.
TXP50S/PDIF Transmitter Output (Output) - S/PDIF encoded data output, mapped directly from one of the
VLP53Serial Port Interface Power (Input) - Determines the required signal level for the serial port interfaces.
SAI_SDOUT54
RMCK55Recovered Master Clock (Output) - Recovered master clock output from the External Clock Reference
Differential right Channel Analog Input (Input) - Signals are presented differentially to the delta-sigma
modulators via the AINR+/- pins.
Differential right Channel Analog Input (Input) - Signals are presented differentially to the delta-sigma
modulators via the AINR+/- pins.
Differential Analog Output (Output) - The full-scale differential analog output level is specified in the
Analog Characteristics specification table.
Analog Power (Input) - Positive power supply for the analog section.
Analog Ground (Input) - Ground reference. Should be connected to analog ground.
dition or whenever the PDN bit is set to a "1", forcing the codec into power -down mode. The signal will
remain in a high impedance state as long as the part is in power-down mode. The Mute Control pin goes
to the selected "active" state during reset, muting, or if the master clock to left/right clock frequency ratio
is incorrect. This pin is intended to be used as a control for external mute circuits to prevent the clicks
and pops that can occur in any single supply system. The use of external mute circuits are not mandatoy but may be desired for designs requiring the absolute minimum in extraneous clicks and pops.
S/PDIF Receiver Input/ General Purpose Output (Input/ Output) - Receiver inputs for S/PDIF encoded
data. The CS42518 has an internal 8:2 multiplexer to select the active receiver port, according to the
Receiver Mode Control 2 resister. These pins can also be configured as general purpose output pins,
ADC Overflow indicators or Mute Control outputs according to the RXP/General Purpose Pin Control
resisters.
receiver inputs as indicated by the Receiver Mode Control 2 resister.
Serial Audio Interface Serial Data Output (Output) - Output for two's complement serial audio PCM
data from the S/PDIF incoming stream. This pin can also be configured to transmit the output of the internal and external ADCs.
Page 77
IC BLOCK DIAGRAMS AND TERMINAL DESCRIPTIONS-17
Q421 : CS42518 (8-Ch Codec with S/PDIF Receiver)-4/4
Pin Name#Pin Description
CL_SDOUT56CODEC Serial Data Output (Output) - Output for two's complement serial audio data the internal
and external ADCs.
ADCIN1
ADCIN2
OMCK59
SAI_LRCK60
SAI_LRCK61Serial Audio Interface Serial Clock (Input/Output) - Serial clock for the Serial Audio Interface
58
57
External ADC Serial Input (Input) - The CS42518 provides for up two external stereo analog to digital
converter inputs to provide a maximum of six channels on serial data output line when the CS42518
is placed in One Line mode.
External Reference Clock (Input) - External clock reference that must be within the ranges specified in
currently active on the serial audio data line.
Serial Audio Interface Left/Right Clock (Input/Output) - Determines which channel, Left of Right, is
currently active on the serial audio data line.
TX-SR503/503E/8350
Page 78
IC BLOCK DIAGRAM AND TERMINAL DESCRIPTIONS-18
Q802: M66005 (FL tube driver)
BLOCK DIAGRAM
TX-SR503/503E/8350
CS
SCK
SDATA
XIN
XOUT
RESET
Vcc1
Vcc2
Vss
Vp
14
15
16
21
20
13
19
60
22
32
Serial
receive
circuit
Clock
generator
data
timing
clock
Display code RAM
Bank 1 : 8bit x 16
Bank 2 : 8bit x 64
code
write
Code/
command
control
circuit
Display
controller
dot data
write
code
select
CGROM
(35bit x 160)
CGRAM
(35bit x 16)
scan pulse
SEG00
59
33
Segment
output
circuit
Segment/
Digit
select/
output
circuit
Digit
output
circuit
2
SEG26
31
SEG27
24
SEG34
SEG35
23
64
DIG12/SEG36
63
DIG13/SEG37
62
DIG14/SEG38
61
DIG15/SEG39
12
DIG00
1
DIG11
P0
18
P1
17
TERMINAL DESCRIPTION
SYMBOLPIN NAME
13
14
15
16
21,
20
1~12
61~64
23~31
33~59
17, 18
19
60
22
32
RESETReset inputThis pin is used to initialize the internal state of the M66004.
CSChip select input
SCKShift clock inputAt the rising edge from "L" to "H", input data is shifted.
SDATASerial data inputCharacter code or command data to display is input from MSB.
XIN,
XOUT
DIG00 ~
Clock input
Clock output
Digit output
DIG15
SEG00 ~
Segment output
SEG39
P0, P1Output port (static operation)
VCC1
VCC2
VSSGND
VPNegative power supply for VFD drive.
DESCRIPTIONPIN NO.
"L" : Communication with the MCU is possible.
"H" : Any instruction from the MCU is neglected.
This pin is used to connect a resister and a capacitor externally to
set oscillation frequency.
These pins are used to connect to digit pins of VFD.
These pins are used to connect to segment pins of VFD.
Positive power supply for internal logic.
Positive power supply for high-pressure-resistant output port.
"Input selector" Lch input 1
"Input selector" Rch input 1
"Input selector" Lch input 2
"Input selector" Rch input 2
"Input selector" Lch input 3
"Input selector" Rch input 3
"Input selector" Lch input 4
"Input selector" Rch input 4
"Input selector" Lch input 5
"Input selector" Rch input 5
"Input selector" Lch input 6
"Input selector" Rch input 6
"Input selector" Lch input 7
"Input selector" Rch input 7
"Input selector" Lch input 8
"Input selector" Rch input 8
"Input selector" Lch input 9
"Input selector" Rch input 9
"Input selector" Lch input 10
"Input selector" Rch input 10
"Input selector" Lch input 11
"Input selector" Rch input 11
"Input selector" Lch input 12
"Input selector" Rch input 12
No Connect
Digital Ground
Control data signal input
Clock signal input
Latch signal input
Multi-channel Lch input A
Multi-channel Rch input A
Multi-channel Cch input A
Multi-channel LSch input A
Multi-channel RSch input A
Multi-channel LBch input A
Multi-channel RBch input A
Multi-channel SWch input A
Multi-channel Lch input B
Multi-channel Rch input B
Multi-channel Cch input B
Multi-channel LSch input B
Multi-channel RSch input B
Multi-channel LBch input B
Multi-channel RBch input B
Multi-channel SWch input B
Ground
Ground
Internal Digital -Power Supply Output 2
Internal Digital +Power Supply Output 2
Switching noise rejection capacitor
Page 83
IC BLOCK DIAGRAMS AND TERMINAL DESCRIPTIONS-23
Q5502: NJU7311AM (Analog Function Switch)
BLOCK DIAGRAM
TX-SR503/503E/8350
L1
L2
L-COM1
L3
L4
L-COM2
L5
L6
L-COM3
L7
L-COM4
ST
VDD
VEE
Level Shifter
Latch Circuit
Control Circuit
Latch Circuit
Level Shifter
R1
R2
R-COM1
R3
R4
R-COM2
R5
R6
R-COM3
R7
R-COM4
DATA
CK
VSS
TERMINAL DESCRIPTION
Pin No. Pin NameDescription
1
2
3
4
5
6
7
8
9
10
11
12
14
15
VEE
L1
L2
L-COM1
L3
L4
L-COM2
L5
L6
L-COM3
L7
L-COM4
ST
VSS
Negative Voltage Supply
Analog switch input/output
Analog switch input/output
L1, L2, Common
Analog switch input/output
Analog switch input/output
L3, L4 common
Analog switch input/output
Analog switch input/output
L5, L6 Common
Analog switch input/output
L7 Common
Chip enable
GND
Pin No. Pin NameDescription
16
17
19
20
21
22
23
24
25
26
27
28
29
30
CK
DATA
R-COM4
R7
R-COM3
R6
R5
R-COM2
R4
R3
R-COM1
R2
R1
VDD
Clock input
Data input
R7 Common
Analog switch input/output
R5, R6 Common
Analog switch input/output
Analog switch input/output
R3, R4 Common
Analog switch input/output
Analog switch input/output
R1, R2, Common
Analog switch input/output
Analog switch input/output
Positive voltage supply
Page 84
IC BLOCK DIAGRAMS AND TERMINAL DESCRIPTIONS-24
Q5640: AN34060A (3 Output Voltage Regulator)
BLOCK DIAGRAM
TX-SR503/503E/8350
Peak Current
Protection &
Thermal Protection
Pre
Drive
Reference Voltage
1
3
2
TERMINAL DESCRIPTION
Pin No.
1
2
3
4
5
6
7
Description
MODE 1
REG 1
VCC
GND
REG 2
VCC
REG 3
Function
WHEN MODE 1 pin is 5V, REG 1 output is "H".
WHEN MODE 1 pin is "H", REG 1 output is 5.0V (Io1(peak) = 300mA min).
Connected to Power supply
Connected to IC substrate
WHEN MODE 1 pin is "H", REG 2 output is 3.3V (Io2(peak) = 200mA min).
Connected to Power supply
WHEN MODE 1 pin is "H", REG 3 output is 2.5V (I
SPRLSB
SPRLCS
SPRLF/SPRLSW
TUMUT
PLLCE
PLLSDO
PLLCLK
STEREO/PLLSDI
SD
VPOWER
APOWER
VCC2
SEC1H
VSS
VOLH
THERMAL
PROTECT
FANCTRL
FANH
NU
NU
NU
SYSIN
NU
NU
SYSOUT
LEDPURE
NU
LEDSTBY
HPRL
HPDET
NU
VOLB
VOLA
INIT3
INIT2
INIT1
BAND
KEYINT3
KEYINT2
KEYINT1
KEYINT0
KEY3
KEY2
KEY1
AVSS
KEY0
VREF
AVCC
NU
---
---
---
---
---
---
---
---
---
---
---
---
---
Act.
O
O
O
O
O
O
O
I
I
O
O
O
I
I
I
O
O
I
O
O
O
O
I
I
I
I
I
I
I
I
I
I
I
I
I
I
I
H
H
H
H
H
H
CLK
L
L
H
H
--H
---
A/D
A/D
H
L
L
---
---
--H
---
--L
H
--L
H
H
--H
H
A/D
A/D
A/D
A/D
L
L
L
L
A/D
A/D
A/D
---
A/D
---
---
---
Output control signal for relay drive of surround back speakers.
Output control signal for relay drive of center and surround speakers.
Output control signal for relay drive of front speakers.
Output signal of tuner mute.
Output chip enable for PLL IC of tuner.
Output serial data for PLL IC of tuner.
Output serial clock for PLL IC of tuner.
Input detection of stereo signal, and serial data of PLL IC.
Input detection signal of demodulation of tuner.
Output control signal of power supply of the video circuit.
Output control signal of main power supply.
Power supply.
Output control signal for power supply of amplifier section.
Ground.
Input detection signal of speaker output level.
Input detection signal of thermal detection.
Input detection signal of over current of speaker output.
Output control signal of cooling fan. Function control.
Output control signal of cooling fan. Speed control.
Not used.
Not used.
Not used.
Input signal of RI (system control).
Not used.
Not used.
Output signal of RI (system control).
Output control signal of Pure Audio LED. Except MDD (USA model).
Not used.
Output control signal of Standby LED.
Output control signal for relay drive of headphone.
Input detection signal of headphone state.
Not used.
Input signal of rotary encoder.
Input signal of rotary encoder.
For initial setting-3.
For initial setting-2.
For initial setting-1.
For initial setting of tuner band and step.
Input signal of operation keys.
Input signal of operation keys.
Input signal of operation keys.
Input signal of operation keys.
Input signal of operation keys.
Input signal of operation keys.
Input signal of operation keys.
Ground for A/D.
Input signal of operation keys.
Power supply for reference of A/D.
Power supply.
Not used.
Page 88
ADJUSTMENT PROCEDURE-1
IDLING CURRENT ADJUSTMENT
[When]
1. Exchange Power transistor (Q6051 - Q6066).
2. Exchange Amplifier PC board ass'y (NAAF-8523).
[Procedure]
<Note> No load and No signal
Refer to " ADJUSTMENT PROCEDURES-2 " about the adjustment points and the test points.
1. Before idling adjustment, turn the trimming resistors to counter clockwise.
2. Connect the DC voltmeter to test points.
Connect 100 ohm resistance near the terminal of the two poles of a Jig terminal.
HT-R530
Mark
L
R
C
SL
SR
SBL
SBR
100 ohms
1/4watts
Adjustment point
(Trimming resistor)
R6040
R6041
R6042
R6043
R6044
R6045
R6046
DC voltmeter
3. Connect the AC power cord to wall outlet.
4. Press the STANDBY/ON button into the power on.
5. Adjust the trimming resistors as following procedure immediately after power on.
Channel
Left
Right
Center
Surround Left
Surround Right
Surround Back Left
Surround Back Right
6. Wait for 4 - 6 minutes. (Heat running)
7. Re-adjust the trimming resistors as following procedure.
Channel
Left, Right and
Center
Surround Left
Surround Right
Surround Back Left
Surround Back Right
Adjustment point
R6040, R6041 and
R6042
R6043, R6044,
R6045 and R6046
Jig terminal
Measuring point
(Test point)
P6080
P6081
P6082
P6083
P6084
P6085
P6086
Measured value
In case below 9 mV
In case 9 - 11 mV
In case over 11 mV
In case below 6 mV
In case 6 - 8 mV
In case over 8 mV
Test point
ID+
ID-
Adjustment value
2.5 mV
2.5 mV
2.5 mV
1.5 mV
1.5 mV
1.5 mV
1.5 mV
Adjustment value
9 mV
Leave it as it is
11 mV
6 mV
Leave it as it is
8 mV
Specifications
( In a stable state)
12 +/- 3 mV
9 +/- 3 mV
8. Disconnect the DC voltmeter.
9. Press the STANDBY/ON button into the power off.
10. Disconnect the AC power cord.
Idling current are stabilized in about
10 minutes after a power supply ON.
Page 89
ADJUSTMENT PROCEDURE-2
IDLING CURRENT ADJUSTMENT
U05
AMPLIFIER PC BOARD
(NAAF-8523)
HT-R530
Front side
Test
point
SBL
SBL
Test
point
ID-ID+
P6085
ID+
ID-
BIAS
Trimming
R6045
R6045P6085
resistor
SL
ID+
ID-
R6043P6083
Test
point
L
BIAS
R6040
ID-ID+
P6080
L
ID+
ID-
R6040P6080
Trimming
resistor
R
Test
point
P6081
ID+
ID-
R
BIAS
ID-ID+
R6041P6081
Trimming
resistor
R6041
C
ID-ID+
P6082
Test
point
Trimming
resistor
SL
BIAS
R6042
ID-ID+
P6083
C
ID+
ID-
R6042P6082
Trimming
resistor
SR
ID+
ID-
R6044P6084
SR
P6084
Trimming
resistor
BIAS
R6044
ID-ID+
Test
point
BIAS
R6043
Front side
SBR
Test
point
P6086
ID+
ID-
P6086
ID+
ID-
BIAS
R6046
Trimming
resistor
R6046
SBR
U07
SBR AMPLIFIER
PC BOARD
(NAETC-8525)
Page 90
HT-R530
T
T
NOTE : THE COMPONENTS IDENTIFIED BY THE MARK
! ARE CRITICAL FOR RISK OF FIRE AND
ELECTRIC SHOCK. REPLACE ONLY WITH PAR
NUMBER SPECIFIED.
<Notes>
(B) : Black model only
(S) : Silver model only
<DD> : USA model only
<DC> : Canadian model only
<PA> : Australian model only
EXPLODED VIEW PARTS LIS
REF. NO.PART NAMEDESCRIPTIONQ'TY PART NO (SN)REMARKS
U01DISPLAY PC board ass'yNADIS-8513-1V11B068513-1V<DD>
EV
U01DISPLAY PC board ass'yNADIS-8513-1V11B068513-1V<DC>
EV
U01DISPLAY PC board ass'yNADIS-8513-1K11B068513-1K<PA>
EV
U02DSP PC board ass'yNADG-8514-1V11B068514-1V<DD>
EV
U02DSP PC board ass'yNADG-8514-1V11B068514-1V<DC>
EV
U02DSP PC board ass'yNADG-8514-1K11B068514-1K<PA>
EV
U03SWITCH PC board ass'yNASW-8515-1V11B068515-1V<DD>
EV
U03SWITCH PC board ass'yNASW-8515-1V11B068515-1V<DC>
EV
U03SWITCH PC board ass'yNASW-8515-1K11B068515-1K<PA>
EV
U04HEADPHONE JACK PC board ass'yNAETC-8516-1V11B068516-1V<DD>
6/74 PAGE
!, <DD>
!, <DC>
!, <PA>
Page 96
EV
U04HEADPHONE JACK PC board ass'yNAETC-8516-1V11B068516-1V<DC>
EV
U04HEADPHONE JACK PC board ass'yNAETC-8516-1K11B068516-1K<PA>
EV
U05AMPLIFIER PC board ass'yNAAF-8523-1H11B068523-1H<DD>
EV
U05AMPLIFIER PC board ass'yNAAF-8523-1H11B068523-1H<DC>
EV
U05AMPLIFIER PC board ass'yNAAF-8523-1J11B068523-1J<PA>
EV
U06SEC TERMINAL-2 PC board ass'yNAPS-8524-1H11B068524-1H<DD>
EV
U06SEC TERMINAL-2 PC board ass'yNAPS-8524-1H11B068524-1H<DC>
EV
U06SEC TERMINAL-2 PC board ass'yNAPS-8524-1J11B068524-1J<PA>
EV
U07SBR AMPLIFIER PC board ass'yNAETC-8525-1H11B068525-1H<DD>
EV
U07SBR AMPLIFIER PC board ass'yNAETC-8525-1H11B068525-1H<DC>
EV
U07SBR AMPLIFIER PC board ass'yNAETC-8525-1J11B068525-1J<PA>
EV
U08THERMAL SENSOR PC board ass'yNAETC-8526-1H11B068526-1H<DD>
EV
U08THERMAL SENSOR PC board ass'yNAETC-8526-1H11B068526-1H<DC>
EV
U08THERMAL SENSOR PC board ass'yNAETC-8526-1J11B068526-1J<PA>
EV
U09HOLDER PC board ass'yNAETC-8527-1H11B068527-1H<DD>
EV
U09HOLDER PC board ass'yNAETC-8527-1H11B068527-1H<DC>
EV
U09HOLDER PC board ass'yNAETC-8527-1J11B068527-1J<PA>
EV
U11POWER SUPPLY-1 PC board ass'yNAPS-8533-1H11B068533-1H<DD>
EV
U11POWER SUPPLY-1 PC board ass'yNAPS-8533-1H11B068533-1H<DC>
EV
U11POWER SUPPLY-1 PC board ass'yNAPS-8533-1J11B068533-1J<PA>
EV
U13POWER SUPPLY-2 PC board ass'yNAPS-8535-1H11B068535-1H<DD>
EV
U13POWER SUPPLY-2 PC board ass'yNAPS-8535-1H11B068535-1H<DC>
EV
U13POWER SUPPLY-2 PC board ass'yNAPS-8535-1J11B068535-1J<PA>
EV
U14SEC. TERMINAL-1 PC board ass'yNAPS-8536-1H11B068536-1H<DD>
EV
U14SEC. TERMINAL-1 PC board ass'yNAPS-8536-1H11B068536-1H<DC>
EV
U14SEC. TERMINAL-1 PC board ass'yNAPS-8536-1J11B068536-1J<PA>
EV
U15SPEAKER TERMINAL PC board ass'yNAETC-8537-1H11B068537-1H<DD>
EV
U15SPEAKER TERMINAL PC board ass'yNAETC-8537-1H11B068537-1H<DC>
EV
U15SPEAKER TERMINAL PC board ass'yNAETC-8537-1J11B068537-1J<PA>
7/74 PAGE
Page 97
EV
T
U16CENTER SPEAKER TERMINAL PC board ass'yNAETC-8538-1H11B068538-1H<DD>
EV
U16CENTER SPEAKER TERMINAL PC board ass'yNAETC-8538-1H11B068538-1H<DC>
EV
U16CENTER SPEAKER TERMINAL PC board ass'yNAETC-8538-1J11B068538-1J<PA>
EV
U17VIDEO PC board ass'yNAVD-8539-1H11B068539-1H<DD>
EV
U17VIDEO PC board ass'yNAVD-8539-1H11B068539-1H<DC>
EV
U17VIDEO PC board ass'yNAVD-8539-1J11B068539-1J<PA>
EV
U18DRIVER AMPLIFIER PC board ass'yNAAF-8540-1H11B068540-1H<DD>
EV
U18DRIVER AMPLIFIER PC board ass'yNAAF-8540-1H11B068540-1H<DC>
EV
U18DRIVER AMPLIFIER PC board ass'yNAAF-8540-1J11B068540-1J<PA>
EV
U19TUNER UNITTFCE1U114B1240134A<DD>
EV
U19TUNER UNITTFCE1U114B1240134A<DC>
EV
U19TUNER UNITTFCE1E512A1240135<PA>
HT-R530
PC BOARD PARTS LIS
U01DISPLAY PC BOARD (NADIS-8513-1V/1K)
U02DSP PC BOARD (NADG-8514-1V/1K)
U03SWITCH PC BOARD (NASW-8515-1V/1K)
U04HEADPHONE JACK PC BOARD (NAETC-8516-1V/1K)
8/74 PAGE
CIRCUIT NO.
PCB1
U131 PHT CPTORX177L124120127
PCB1
U132 PHT CPTORX177L124120127
PCB1
U133 PHT CPTORX177L124120127
PCB1
U821 REMO SENSGP1UM281XKVF1241361
PCB1
Q131 IC74HCU04F1222740046R2
PCB1
Q151 ICTC74VHC541FT122274541ER2TO
PCB1
Q151 orICSN74AHC541PWR(1) 22274541IR2TI
PCB1
Q152 ICTC74HCT7007AF1222740077R2TO
PART NAMEDESCRIPTIONQ'TY PART NO (SN)REMARKS
Page 98
PCB1
Q171 ICTC7WU04FU122240935R2
PCB1
Q201 ICCS494003CQZ122242039R3
PCB1
Q281 IC (DSP ROM)EN29LV040A-70TCP (0145)1 222W0043R301456
PCB1
Q282 ICK4S161622H-UC60122242152R2
PCB1
Q282 orICIC42S16100(1) 22242123R2
PCB1
Q401 ICNJM4580M-D122241448R2
PCB1
Q402 ICNJM4580M-D122241448R2
PCB1
Q403 ICNJM4580M-D122241448R2
PCB1
Q404 ICNJM4580M-D122241448R2
PCB1
Q421 ICCS42518-CQZR-D122242229R2
PCB1
Q701 IC (MAIN MICROPROCESSOR)M30622MGP-236FPU0122242250R3
PCB1
Q721 ICS-812C56AUA-C3K122242207R2
PCB1
Q801 FL TUBE16BT127GNK1213028
PCB1
Q801AHOLDER(FL)127191222B
PCB1
Q802 ICM66005-0001AHP122242208R3
PCB1
Q703 TRUNR221312217140R2
PCB1
Q703 orTRRN1404(1) 2214490R2
PCB1
Q703 orTRKRC104S(1) 2216210R2
PCB1
Q705 TRUNR211112217110R2
PCB1
Q705 orTRRN2402(1) 2214530R2
PCB1
Q705 orTRKRA102S(1) 2216220R2
PCB1
Q711 TRUNR221312217140R2
PCB1
Q711 orTRRN1404(1) 2214490R2
PCB1
Q711 orTRKRC104S(1) 2216210R2
PCB1
Q712 TRUNR211112217110R2
PCB1
Q712 orTRRN2402(1) 2214530R2
PCB1
Q712 orTRKRA102S(1) 2216220R2
PCB1
Q731 TRUNR221312217140R2
PCB1
Q731 orTRRN1404(1) 2214490R2
9/74 PAGE
Page 99
PCB1
Q731 orTRKRC104S(1) 2216210R2
PCB1
Q732 TRUNR221312217140R2
PCB1
Q732 orTRRN1404(1) 2214490R2
PCB1
Q732 orTRKRC104S(1) 2216210R2
PCB1
Q803 TRKTC3875-GR12216175R2
PCB1
Q803 orTR2SC2712-GR(1) 2213145R2
PCB1
Q824 TRUNR221112217130R2<PA>
PCB1
Q824 orTRRN1402(1) 2214470R2<PA>
PCB1
Q824 orTRKRC102S(1) 2216190R2<PA>
PCB1
D101 ZENER DHZU5.1B1224660514R2
PCB1
D101 orZENER DUDZS5.1B(1) 224550510R2
PCB1
D301 C-DIODEMA2J1111223279R2
PCB1
D301 orC-DIODE1SS355(1) 223269R2
PCB1
D301 orC-DIODE1SS352(1) 223234R2
PCB1
D302 C-DIODEMA2J1111223279R2
PCB1
D302 orC-DIODE1SS355(1) 223269R2
PCB1
D302 orC-DIODE1SS352(1) 223234R2
PCB1
D303 C-DIODEMA2J1111223279R2
PCB1
D303 orC-DIODE1SS355(1) 223269R2
PCB1
D303 orC-DIODE1SS352(1) 223234R2
PCB1
D304 C-DIODEMA2J1111223279R2
PCB1
D304 orC-DIODE1SS355(1) 223269R2
PCB1
D304 orC-DIODE1SS352(1) 223234R2
PCB1
D305 C-DIODEMA2J1111223279R2
PCB1
D305 orC-DIODE1SS355(1) 223269R2
PCB1
D305 orC-DIODE1SS352(1) 223234R2
PCB1
D306 C-DIODEMA2J1111223279R2
PCB1
D306 orC-DIODE1SS355(1) 223269R2
PCB1
D306 orC-DIODE1SS352(1) 223234R2
10/74 PAGE
Page 100
PCB1
D307 C-DIODEMA2J1111223279R2
PCB1
D307 orC-DIODE1SS355(1) 223269R2
PCB1
D307 orC-DIODE1SS352(1) 223234R2
PCB1
D308 C-DIODEMA2J1111223279R2
PCB1
D308 orC-DIODE1SS355(1) 223269R2
PCB1
D308 orC-DIODE1SS352(1) 223234R2
PCB1
D701 C-DIODEMA2J1111223279R2
PCB1
D701 orC-DIODE1SS355(1) 223269R2
PCB1
D701 orC-DIODE1SS352(1) 223234R2
PCB1
D702 C-DIODEMA2J1111223279R2
PCB1
D702 orC-DIODE1SS355(1) 223269R2
PCB1
D702 orC-DIODE1SS352(1) 223234R2
PCB1
D703 C-DIODEMA2J1111223279R2
PCB1
D703 orC-DIODE1SS355(1) 223269R2
PCB1
D703 orC-DIODE1SS352(1) 223234R2
PCB1
D706 C-DIODEMA2J1111223279R2
PCB1
D706 orC-DIODE1SS355(1) 223269R2
PCB1
D706 orC-DIODE1SS352(1) 223234R2
PCB1
D707 ZENER DHZU5.1B1224660514R2
PCB1
D707 orZENER DUDZS5.1B(1) 224550510R2
PCB1
D708 C-DIODEMA2J1111223279R2
PCB1
D708 orC-DIODE1SS355(1) 223269R2
PCB1
D708 orC-DIODE1SS352(1) 223234R2
PCB1
D711 C-DIODEMA2J1111223279R2
PCB1
D711 orC-DIODE1SS355(1) 223269R2
PCB1
D711 orC-DIODE1SS352(1) 223234R2
PCB1
D811 ZENER DHZU7.5B1224660754R2
PCB1
D811 orZENER DUDZS7.5B(1) 224550750R2
PCB1
D821 LEDSLI-343URC-TE71225449
11/74 PAGE
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