background image

3

13

15

10.11.17

1

AVR400

2330SCDZ

(VIDEO)

L.J.Y

B

1

2

3

4

5

D

C

B

A

6

C

D

A

APPROVE

CHECK

DESIGN

DRAWING NO

MODEL

SHEET

SCHEMATIC DIAGRAM

REVISION

1

2
3

4
5

6
7

I2C BUS FORMAT

S(1BIT)

SLAVE ADDRESS(8BIT)

A(1BIT)

DATA(8BIT)

A(1BIT)

DATA(8BIT)

A(1BIT)

P(1BIT)

MSB

MSB

MSB

LSB

LSB

LSB

* DEFINITION OF I2C REGISTER ( NJW1321 )

A : Acknowledge Bit

P : Ending Term

S : Starting Term

SLAVE ADDRESS

1

0

0

0

0

0

ADR(1BIT)

R/NOT W(1BIT)

MSB

MSB

R/NOT W : Set the Write Mode or Read Mode.

ADR : Set the Slave Address by " ADR" terminal.

Slave Address(8BIT)

Hex

-

R/NOT W = 0 : WRITE MODE, ADR = 0/1 ; ADR=0 Hex:94(h), ADR=1 Hex:96(h) 

R/NOT W = 0 :  READ MODE, ADR = 0/1 ; ADR=0 Hex:95(h), ADR=1 Hex:97(h) 

CONTROL REGISTER TABLE

<WRITE MODE>

D0

D1

D2

D3

D4

D5

D6

D7

PS1

PS2

OUT1

OUT2

AUX0

AUX1

AUX2

AUX3

DATA 1
DATA 2

NO.

BIT

<READ MODE>

NO.

DATA

D7

BIT

PORT0

PORT1

PORT2

PORT3

D6

D5

D4

D3

D2

D1

D0

PS : POWER SAVE 

OUT : OUTPUT

AUX : AUXILIARY (CONTROL SIGNAL OUTPUT)

=> PS = 1 ; POWER SAVE ON (MUTE), PS = 0 ; POWER SAVE OFF (OUT ON)

PORT : INPUT

Y2

Pb2

Pr2

Y3

Pb3

Pr3

Y_

O

U

T

Pb

_O

U

T

Pr

_O

U

T

Y1

Pb

1

Pr

1

Y2

Pr

2

Pb

2

Y3

Pb3

Pr3

V+

V+

V+

V+

V+

V+

V+

V+

VREF

DGND

SDA

SCL

GND

A

D

R

PO

RT

2

PO

RT

3

PORT0

PORT1

Pr_OUT2

Pb

_O

U

T2

A

U

X0

A

U

X1

Y_

O

U

T2

A

U

X2

A

U

X3

Y4

Pb

4

Pr4

CO

M

PO

N

EN

IN

3

CO

M

PO

N

EN

IN

2

&

Pr_OUT

Pb_OUT

Y_OUT

Pr_OUT

Pb_OUT

Y_OUT

M

O

N

IT

O

O

U

T

CO

M

PO

N

EN

IN

1

CO

M

PO

N

EN

O

U

T

&

Y_

O

U

T

Pb

_O

U

T

Pr

_O

U

T

Y1

Pb

1

Pr

1

Y2

Pr

2

Pb

2

Y3

Pb3

Pr3

V+

V+

V+

V+

V+

V+

V+

V+

VREF

DGND

SDA

SCL

GND

A

D

R

PO

RT

2

PO

RT

3

PORT0

PORT1

Pr_OUT2

Pb

_O

U

T2

A

U

X0

A

U

X1

Y_

O

U

T2

A

U

X2

A

U

X3

Y4

Pb

4

Pr4

VSS

IC83

LC74763M

Xin1

Xout1

HSYNCOUT

Xout2

VSYNCOUT

notCS

SIN

SECAM

not525/625

notNTSC/PAL

SCLK

not3.58/4.43

notRST

VDD2

CVIN

CVCR

SYNCIN

PDOUT

AMPIN

PDOUT

AMPIN

AMPOUT

FC

VCOIN

VCOOUT

SYNCDET

VDD1

CVOUT

Xin2

COMPO OSD IN

COMPO OUT

SN74ACT0DR

IC86

OSD_DA

OSD_CLK

OSD_CE1

NTSC

PAL

* LC74763M OPTION TABLE

17.734

14.318

C871

C872

X801

27P

27P

27P

27P

OSD_CE1

OSD_CLK

OSD_DA

OSD_CE1

CVBS

S-C

S-Y

CVBS_THURE

SV_C_THURE

SV_Y_THURE

COM_Y_THURE
COM_Pb_THURE
COM_Pr_THURE

Vi

n1

Vi

n2

Vi

n3

V+

SW

1

SW

2

VO

U

T

GN

D

N.D

N.D

N.D

COM_Y_CONV
COM_Pb_CONV
COM_Pr_CONV

OSD_DATA

OSD_CE

OSD_CLK

1321_SCL
1321_SDA

VGND

VGND

VGND

VGND

VGND

N.D
N.D
N.D

N.D

N.D

OSD_H

VGND

+15VA
-5VA

Y

Pb

Pr

Y

C

Y

C

Y

C

Y

C

To 

H

D

M

B'

D

VIDEO PART

BD

SAT

AV

VCR

Z2 OUT

SAT

BD

AV

1,4,7 : UPPER

3,6,9 : LOWER

1,4,7 : UPPER

3,6,9 : LOWER

X

14.318

X802

Y1

Pb1

Pr1

S.H.S

L.J.H

10.11.17

10.11.17

MP

R81

3

75

R81

4

75

R81

5

75

R81

6

75

R81

7

75

C75

1

2P

C75

2

2P

C75

3

2P

C75

4

2P

C75

5

2P

C75

6

2P

C83

9

100

/1

6

C83

8

0.

1u

F

R81

8

75

1

2

3

4

5

6

7

8

9

JK83

CJ

J4

R046

Z(

G

O

LD

)

47

46

45

44

43

42

41

40

39

38 37 36 35 34 33 32 31 30 29 28 27 26 25

24

23

22

21

20

19

18

17

16

15

14

13

12

11

10

9

8

7

6

5

4

3

2

1

48

IC82

NJW1321FP1

C83

7

10

/5

0

C771

1/50V

C75

9

2P

C75

8

2P

C75

7

2P

C763

1000/6.3

C764

1000/6.3

C765

1000/6.3

1

2

3

4

5

6

7

8

9

JK84

CJ

J4

R046

Z(

G

O

LD

)

C76

2

2P

R82

1

75

C76

1

2P

R82

0

75

C76

0

2P

R81

9

75

47

46

45

44

43

42

41

40

39

38 37 36 35 34 33 32 31 30 29 28 27 26 25

24

23

22

21

20

19

18

17

16

15

14

13

12

11

10

9

8

7

6

5

4

3

2

1

48

IC81

NJW1321FP1

R822

75

R823

75

R824

75

C83

5

100

/1

6

C83

6

0.

1u

F

C83

4

10

/5

0

R833

47K

C884

56P

C88

5

22

P

R86

7

O

PE

N

R86

6

100

K

D

80

1

Q802

KTC3875SY

R87

9

8.

2K

C87

4

27

P

(E

U

)

C87

3

27

P

(E

U

)

X801

17.734MHz(EU)

R881

1.2K

R86

8

2.

2K

C87

8

0.

022

u

C89

1

0.

022

u

14

13

12

11

10

9

8

7

6

5

4

3

2

1

IC86

C889

470/10

C88

6

22

P

R87

8

10

K

R88

5

27

0

R87

7

2.

2K

C883

0.1/50

R88

6

100

K

C87

5

100

/1

6

C87

6

0.

022

u

C84

0

1u

F

R873

1K

C881

1/50

R874

6.8K

R872

1K

R876

39K

C87

9

22

P-

>

33

P

C88

0

22

P

L802

5.6UH

R875

1.5K

R871

1K

L801
100UH

C88

8

180

P

R88

2

1K

R88

3

1K

R88

4

1K

C88

7

0.

47

/5

0

C87

1

27

P

C87

2

27

P

X802

14.318MHz

30

29

28

27

26

25

24

23

22

21

20

19

18

17

16

15

14

13

12

11

10

9

8

7

6

5

4

3

2

1

IC83

LC74763M

R889

1K

R887

1K

R888

1K

R88

0

0

C882

6800P

C890

10/50

JK85

CJJ4M069Z(GOLD)

R848

75

R849

75

R850

75

C813

0.01uF

C774

1/50V

C816

0.01uF

C772

1/50V

C814

0.01uF

C775

1/50V

C817

0.01uF

C773

1/50V

C815

0.01uF

C776

1/50V

C818

0.01uF

C766

1/50V

C819

0.01uF

C767

1/50V

C820

0.01uF

C768

1/50V

C821

0.01uF

C850

10/50V

C844

0.01uF

C851

10/50V

C845

0.01uF

C852

10/50V

C846

0.01uF

C849

10/50V

C843

0.01uF

C847

10/50V

C841

0.01uF

C848

10/50V

C842

0.01uF

R847

75

R845

75

R846

75

R834

33

R835

33

R831

33

R832

33

8

7

6

5

4

3

2

1

IC

85

H

VI

N

JM

2244

M

TE

1

C76

9

68

P

C770

470/10V

C865

10/50V

R86

1

1M

C86

9

100

/1

6

C86

8

0.

1u

F

R86

2

1M

C86

6

0.

01

uF

R86

3

1M

C86

7

0.

01

uF

C85

7

100

/16

V

J1 J2

J3

C89

3

0.

1u

F

C89

2

10

/50

V

C89

4

10

/50

V

C89

5

0.

1u

F

2

1

3

GN

D

Out In

IC89

CVIKIA1117S50

L804

10uH

C89

7

10

/50

V

C89

6

0.

1u

F

L803

10uH

R825

68

J7

32

31

30

29

28

27

26

25

24

23

22

21

20

19

18

17

16

15

14

13

12

11

10

9

8

7

6

5

4

3

2

1

1

PS1

2

SCIN

3

V+1

4

NC-0

5

MIXSW

6

VIN

7

GND1

8

SYIN

9

CBSW

10

YIN

11

V+2

12

NC-1

13

GND2

14

PBIN

15

PS2

16

PRIN

17

LPFSW

18

PROUT

19

GND3

20

NC-2

21

PBOUT

22

V+3

23

YOUT

24

GND4

25

SYOUT

26

V+4

27

VOUT

28

NC-3

29

SCOUT

30

SDCOUT

31

S2

32

S1

IC84 CVINJM2566V

C861

470/10V

C862

470/10V

C863

470/10V

C860

470/10V

C859

470/10V

C858

470/10V

C855

0.1uF

C856

0.1uF

C854

0.1uF

C853

0.1uF

R843

4.7K

R841

4.7K

R844

10K

R842

10K

30

29

19

20

21

22

24

23

26

25

27

28

18

17

15

16

13

14

12

11

10

9

8

7

6

5

3

4

2

1

CN301

R81

0

75

R81

1

75

R81

2

75

R80

7

75

R80

8

75

R80

9

75

R80

4

75

R80

5

75

R80

6

75

R80

1

75

R80

2

75

R80

3

75

C824

1/50V

C803

0.01uF

C823

1/50V

C802

0.01uF

C822

1/50V

C801

0.01uF

C827

1/50V

C806

0.01uF

C826

1/50V

C805

0.01uF

C825

1/50V

C804

0.01uF

C830

1/50V

C809

0.01uF

C829

1/50V

C808

0.01uF

C828

1/50V

C807

0.01uF

C833

1/50V

C812

0.01uF

C832

1/50V

C811

0.01uF

C831

1/50V

C810

0.01uF

1

2

3

4

5

6

7
8

9

10

11

12

13

14

15
16

17

JK

81

CJ

J9

P004

Z(

G

O

LD

)

1

2

3

4

5

6

7
8

9

10

11

12

13

14

15
16

17

JK

82

CJ

J9

P004

Z(

G

O

LD

)

GND

IN

OUT

1

2

3

IC88

CVIKIA7809AF

J9

Q801

KTA1504SY

D802

CVD1N4003SRT

+9VV

+9VV

+5VV

+5VV

+9VV

+5VV

+5VV

A

U

X2

A

U

X3

A

U

X4

+5VV

+9VV

+15VV

A

U

X1

+15VV

-5VA

OSD_SDA

OSD_SCL

OSD_CE

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND VGND

VGND VGND

VGND VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

VGND

Summary of Contents for AVR400

Page 1: ...AVR400 Service Manual Issue 1 ...

Page 2: ...0 0 20 ANGULAR TOL 2 DEGREES 0 70 90 ALL DIMENSIONS IN MILLIMETERS UNLESS OTHERWISE STATED 20 E F 6 DATE DRAWN BY 1 3 F A3 A 4 CHECKED BY 4 MATERIAL B C DRAWING TITLE 10 A 30 ORIGINAL SCALE 1 4 FINISH 8 50 2 2 8 7 6 D SHT 1 OF 4 7 A R CAMBRIDGE LTD PART NUMBER AND DRAWING NUMBER D 23425 60 E 100 1 3 B C 40 DATE CHG ZONE DESCRIPTION OF CHANGE REL DR CHK ECO NR MCM 7 9 2010 MGB AVR400 MAIN ASSEMBLY ...

Page 3: ...GREES 0 70 90 ALL DIMENSIONS IN MILLIMETERS UNLESS OTHERWISE STATED 20 E F 6 DATE DRAWN BY 1 3 F A3 A 4 CHECKED BY 4 MATERIAL B C DRAWING TITLE 10 A 30 ORIGINAL SCALE 1 4 FINISH 8 50 2 2 8 7 6 D SHT 2 OF 4 7 A R CAMBRIDGE LTD PART NUMBER AND DRAWING NUMBER D 23425 60 E 100 1 3 B C 40 DATE CHG ZONE DESCRIPTION OF CHANGE REL DR CHK ECO NR MCM 7 9 2010 MGB AVR400 MAIN ASSEMBLY FANS TRANSFORMERS ...

Page 4: ... 10 OTHERWISE STATED 0 0 0 20 ANGULAR TOL 2 DEGREES 0 70 90 ALL DIMENSIONS IN MILLIMETERS UNLESS OTHERWISE STATED 20 E F 6 DATE DRAWN BY 1 3 F A3 A 4 CHECKED BY 4 MATERIAL B C DRAWING TITLE 10 A 30 ORIGINAL SCALE 1 4 FINISH 8 50 2 2 8 7 6 D SHT 3 OF 4 7 A R CAMBRIDGE LTD PART NUMBER AND DRAWING NUMBER D 23425 60 E 100 1 3 B C 40 DATE CHG ZONE DESCRIPTION OF CHANGE REL DR CHK ECO NR MCM 7 9 2010 MG...

Page 5: ...UNER EU US 1 80 5 5 TOLERANCES UNLESS 0 00 0 10 OTHERWISE STATED 0 0 0 20 ANGULAR TOL 2 DEGREES 0 70 90 ALL DIMENSIONS IN MILLIMETERS UNLESS OTHERWISE STATED 20 E F 6 DATE DRAWN BY 1 3 F A3 A 4 CHECKED BY 4 MATERIAL B C DRAWING TITLE 10 A 30 ORIGINAL SCALE 1 2 5 FINISH 8 50 2 2 8 7 6 D SHT 4 OF 4 7 A R CAMBRIDGE LTD PART NUMBER AND DRAWING NUMBER D 23425 60 E 100 1 3 B C 40 DATE CHG ZONE DESCRIPTI...

Page 6: ...idal power transformer via the connector BN508 to the bridge rectifier D5830 This is mounted on a small PCB near the top of the heatsink The rectified AC is then sent to the main PCB via connectors BN581 582 To avoid induced hum and distortion it is important to keep these cables twisted tightly together and well away from the actual power amplifier circuitry The main 15 000μF 80V reservoir capaci...

Page 7: ...igh frequency stability One half of the normally off relay RL52 is used to switch the load in and out Each power amplifier is protected against overload in a number of ways The complementary transistors Q5130 and Q5131 protect the NPN half of the output stage and Q5140 and Q5141 the PNP half They operate as Sziklai pairs passing negligible current until a threshold voltage of approx 600mV is reach...

Page 8: ...in Board first the mains voltage switching uses a double pole double throw slide switch accessible from the back panel One pole addresses the standby transformer and the other the toroidal power transformer Ensure the switch setting matches the supply voltage before switching on the AVR400 Nominal settings are 115 and 230V 15 The 20mm 115V fuse in line with the toroidal trans former is rated at 15...

Page 9: ...and C643 make up a snubber to reduce over shoot This provides a high current 5V supply to the Input Board via pins 4 and 5 of BN62 This 5V supply also feeds two 3V3 linear regulators IC67 and IC68 These in turn supply the audio DSP ICs on the Input Board via pins 10 and 11 of BN62 4 It feeds the 5V 3 terminal LDO regulator IC66 via the diode D616 which itself is preceded by the smoothing network c...

Page 10: ...high signal on the LED net turns on Q902 and Q903 This turns off the npn Q913 to disable the red LED and turns on the pnp Q912 to enable power to the green LED The reverse is true when the LED line is low Pulling the STB LED line low when the LED line is also low powers both LEDs and gives a yellow light to show when the unit is booting up Note that the power supply is STBY 5V to allow the red LED...

Page 11: ...uts IC101 is a Renesas R2A15218FP analogue multiplexer and volume control with a gain range of 42 to 95dB in 0 5dB steps It is digitally controlled from the system microprocessor via the I2C bus on pins 49 and 50 A high logic signal on pin 51 enables the system mute IC101 has 7V supplies generated from the 15V rails with the regulators IC102 and IC103 All stereo external line level inputs using ph...

Page 12: ...nto account the presence of AC mains via P_U the pull up line from the Power Supply board and the MUTE_POWER line derived from the power amplifiers Vcc rail this is normally high when Vcc is high The output lines are SB_MUTE2 for the surround back chan nels SBL and SBR ZONE2_MUTE2 HP_MUTE2 for the headphones relay on the Front Panel board and FUNC_MUTE2 for the 6 main audio channels excluding SBL ...

Page 13: ...is is a 300MIPS dual core 32 bit fixed point DSP with 72 bit accumulators The first core is used for decoding standard and high definition audio formats Dolby DTS etc and the second is reserved for post processing such as bass management delay and room correction The secondary DSP IC142 is a Cirrus Logic CS49DV8 responsible for the Dolby Volume processing IC141 gets the 1 8V for its core from the ...

Page 14: ... to the AVR400 when it is powered down IC151 has several sets of comms busses SPI I2C and UARTs depending on which system or peripheral ICs are being addressed SPI Serial Peripheral Interface is a fast 3 wire interface clock transmit and receive with chip select being addressed by individual I Os I2C Inter Integrated Circuit is a relatively slow bidirectional 2 wire interface with open collector s...

Page 15: ...IC163 The other USB pins are not used Pins 26 27 28 and 29 make up an SPI bus to work with the Ethernet PHY IC161 pin 33 receives interrupts from IC161 Audio is decoded inside the Venice 6 i e from AAC FLAC MP3 WMA or WAV and sent out by two routes Pin 32 carries an SPDIF signal at 48ks s for the main system and pins 64 and 63 carry L R linear audio for zone 2 to the volume control IC101 The Venic...

Page 16: ... which attaches to a daughter board handling all analogue video I O signals the Analogue Video Board The HDMI Board contains 10 separately regulated local power supplies mostly derived from the unregulated but hum filtered 15V supply on the Power Supply Board This is input on pins 3 and 4 of the hard wired connector CN61 for 15V and pins 5 6 and 7 for the ground returns Pins 1 and 2 are not used S...

Page 17: ... a 256Mb SDRAM IC904 connected via 9 x 4 way 33 ohm resistor packs This is used as a line frame store for digitizing the analogue video signals CVBS S Video and Y Cr Cb received from the external video inputs and also separate i Pod derived analogue video signals It runs from the 2 5VH2 supply with further local decoupling components mounted on both sides of the PCB The 12 bit RGB video outputs ar...

Page 18: ... the HDMI1 4 specification is not supported by the AVR400 the ARC is configured by the sink to be carried in single i e non differential mode using HEAC as the signal line HEAC and HEAC are then AC coupled to pins 52 and 51 of IC918 via the 1μF series capacitors C439 and C428 R771 R777 R785 R795 and R799 bias the inputs and load the cable correctly Note HEAC is short for HDMI Ethernet and Audio re...

Page 19: ... inputs to the On Screen Display Controller IC83 IC81 runs from the 9VV supply consuming about 85mA so it gets quite hot It is controlled by i2C commands on pins 15 and 16 IC82 is also an NJW1321 It selects between the 3 component video inputs and its fourth input is unused Its Y Cr Cb outputs and the Y C and CVBS outputs of IC81 are then AC coupled to IC84 an NJM2566 6 way video amplifier filter ...

Page 20: ... C910 47 63 R906 1 2K C908 0 01uF R905 100K R907 100K R901 3 3 1 6 7 48 49 50 51 52 5 57 F1 IC NC TEST CP DA DO CS RESET OSCO LGND 53 54 IC 2 55 56 F1 VDD DGND VDISP 58 62 F2 F2 61 FIP91 CFLHCA16S202T C912 39P R904 3 3 1 2 3 4 5 6 7 8 9 10 11 12 13 14 IC901HVITC74HCT7007F D909 OPEN C953 OPEN D908 OPEN R977 OPEN JW901 OPEN C907 47 63V C906 OPEN C920 1000P R921 1K R923 1 8K R922 1 5K S902 S903 S904 ...

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Page 25: ...84 83 82 81 80 79 78 77 76 75 74 73 72 71 70 69 68 67 66 65 64 63 62 61 60 59 58 57 56 55 54 53 52 51 50 49 48 47 46 45 44 43 42 41 40 39 38 37 36 35 34 33 32 31 30 29 28 27 26 25 24 23 22 21 20 19 18 17 16 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 54 55 5...

Page 26: ...3 M7 VDD_03 M8 GND_68 M9 GND_69 M10 GND_70 M11 GND_71 M12 GND_72 M13 GND_73 M14 GND_74 M15 GND_75 M16 GND_76 M17 GND_77 M20 GND_78 M21 GND_79 M22 REFN M23 REFP N1 P17 N2 P16 N3 AP2 N4 AP1 N7 VDD_04 N8 GND_80 N9 GND_81 N10 GND_82 N11 GND_83 N12 GND_84 N13 GND_85 N14 GND_86 N15 GND_87 N16 GND_88 N17 GND_89 N20 AVDD_01 N21 AVDD_02 N22 AVDD_03 N23 AVDD_04 P1 P18 P2 P19 P3 SCL P4 SDA P7 VDD_05 P8 GND_9...

Page 27: ...4 3 2 1 RN38 33ohm 1005SIZE X 4 1 16W 8 7 6 5 4 3 2 1 RN51 33ohm 1005SIZE X 4 1 16W 8 7 6 5 4 3 2 1 RN56 33ohm 1005SIZE X 4 1 16W 8 7 6 5 4 3 2 1 RN59 33ohm 1005SIZE X 4 1 16W 8 7 6 5 4 3 2 1 RN35 33ohm 1005SIZE X 4 1 16W 8 7 6 5 4 3 2 1 RN37 33ohm 1005SIZE X 4 1 16W 8 7 6 5 4 3 2 1 RN43 33ohm 1005SIZE X 4 1 16W 1 2 3 4 5 6 7 8 RN41 0ohm 1005SIZE X 4 1 16W 1 2 3 4 5 6 7 8 RN40 0ohm 1005SIZE X 4 1 ...

Page 28: ... 24 23 22 21 20 19 18 17 16 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1 IC915 74ALVCH16827DGG R806 10K_NC R800 10K_NC C419 0 1uF 16V C429 0 1uF 16V C399 0 1uF 16V R827 75_NC C463 100P_NC R814 33 C441 0 1uF 16V C451 0 1uF 16V C430 0 1uF 16V C406 0 1uF 16V C398 0 1uF 16V C457 0 1uF 16V C464 0 1uF 16V C431 0 1uF 16V C452 0 1uF 16V C420 0 1uF 16V C471 0 1uF 16V C482 0 1uF 16V C483 0 1uF 16V R828 33 R821 4 7K ...

Page 29: ...542 0 1uF L849 CLZ9Z014Z L850 CLZ9Z014Z L85210UH 3A 11 12 10 9 7 8 5 6 3 4 1 2 13 14 16 15 23 24 22 21 17 18 20 19 25 26 28 27 29 30 BN301 R846 22K C531 220 25V C518 0 1uF C527 220P 8 7 6 5 4 3 2 1 IC927 CVISI8005QTL D904 CVDSS34SR L856 10UH 3A C493 0 1uF C506 150uF 10V R838 12K R851 5 1K R852 2K C513 1000P C534 220 25V C511 0 1uF C520 220P 8 7 6 5 4 3 2 1 IC923 CVISI8005QTL D902 CVDSS34SR L862 10...

Page 30: ...K F R5845 22K F R5814 4 7 R5924 10K F R5934 10K F R5912 1 5 0 2W G583 R5123 1K F Q5150 2SC4883A Q5131 BC856B Q5141 BC846B R5175 0 22 X2 5W R5143 1K F R5133 1K F C5135 0 1uF C5145 0 1uF C5134 10 50V C5144 10 50V R5170 1 0 0 25W R5138 820 F R5148 820 F C5150 N F C5160 N F R5180 1 0 0 25W Q5181 MMBT5551 R5182 100 F R5181 47K D5862 1SS355 Q5871 BC856B Q5874 BC846B R5871 3 3K F D5370 1N4003S D5380 1N40...

Page 31: ...V R5690 22K F R5623 1K F R5624 560 F Q5650 2SC4883A Q5631 BC856B Q5641 BC846B R5675 0 22 X2 5W R5643 1K F R5633 1K F C5635 0 1uF C5645 0 1uF C5634 10 50V C5644 10 50V R5670 1 0 0 25W R5638 820 F R5648 820 F R5680 1 0 0 25W C5650 N F C5660 N F Q5681 MMBT5551 R5682 100 F R5681 47K D5570 1N4003S D5580 1N4003S R5583 4 7 2W R C5583 0 1uF 100V Q5540 BC856B Q5530 BC846B Q5560 2SA1859A Q5513 KTA1024Y R557...

Page 32: ...24 75 C835 100 16 C836 0 1uF C834 10 50 R833 47K C884 56P C885 22P R867 OPEN R866 100K D801 Q802 KTC3875SY R879 8 2K C874 27P EU C873 27P EU X801 17 734MHz EU R881 1 2K R868 2 2K C878 0 022u C891 0 022u 14 13 12 11 10 9 8 7 6 5 4 3 2 1 IC86 C889 470 10 C886 22P R878 10K R885 270 R877 2 2K C883 0 1 50 R886 100K C875 100 16 C876 0 022u C840 1uF R873 1K C881 1 50 R874 6 8K R872 1K R876 39K C879 22P 3...

Page 33: ... R612 22K R614 22K 24 22 21 10 2 1 JK73 24 22 21 10 2 1 JK74 C615 330 25V C635 150uF 25V C636 0 1uF C638 0 01uF 1 2 3 4 5 6 7 8 IC61 CVISI8005QTL D631 CVDSS34SR L632 10UH 3A R635 47K R631 68K R633 5 1K 1 L631 10UH 3A C619 47 25V C620 0 047u C616 0 1uF 1 2 3 IN OUT GND IC63 CVIKIA7815APIVA In Out GND 2 1 3 IC62 CVIKIA7915PIVA 1 2 L641 KLZ9H001Z R721 10K C722 0 47uF C723 0 1uF C724 0 47uF C725 0 47u...

Page 34: ...2 3 4 5 D C B A 6 C D A APPROVE CHECK DESIGN DRAWING NO MODEL SHEET SCHEMATIC DIAGRAM REVISION 1 2 3 4 5 6 7 SCREW MARK 10 11 17 AVR400 L J Y 10 11 17 10 11 17 L J H S H S VIDEO 2330SCDZ MP 1 J15 LAND 1 J16 LAND DGND ...

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