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Electrical diagrams, Schematic - control pc board #1, Power wave 450 – Lincoln Electric INVERTEC POWER WAVE 450 SVM112-B User Manual

Page 272: Hc11 control - sheet 1

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ELECTRICAL DIAGRAMS

G-4

POWER WAVE 450

SCHEMATIC - CONTROL PC BOARD #1

1W

6.2V

DZ2

267

R22

1W

15V

DZ6

J25

7

J25

6

J25

5

267

R29

50V

0.1

C11

100

R28

J25

9

1.00K

R40

J22

9

J22

3

J22

6

J22

11

1W

18V

DZ3

4.7
35V

C10

J22

12

4.7

35V

C15

1W

18V

DZ4

4.7

35V

C13

J22

10

50V

0.1

C23

475

R

2

6

475

R

2

7

1W

6.2V

DZ5

475

R34

10K

R

3

5

1W

5.1V

DZ8

J25

1

J25

4

J25

3

26.7

R21

26.7

R24

10K

R20

J25

8

40V

600mA

Q2

J25

10

+15V

D

Vpp

SLAVE

D

+6

+15V

NOISE_GROUND

-15V

+15V

NOISE_GROUND

+5V

+5V

D

MODE_SLAVE

SLAVE REFERENCE VOLTAGE

MACHINE CONNECTED IN PARALLEL

26.7

R23

2241-1

G

100

R25

SUP’S’D’G.

FILE: G2241_2A1

EQUIP.

CHK.

DATE

POWER SUPPLY SOURCE POINT

FRAME CONNECTION

SHT.

CONTROL SCHEMATIC

G

NO.

COMMON CONNECTION

EARTH GROUND CONNECTION

DR.

SUBJECT

NONE

CLEVELAND, OHIO U.S.A.

THE LINCOLN ELECTRIC CO.

SCALE

TYPE

ON 3 PLACE DECIMALS IS + .OO2

UNLESS OTHERWISE SPECIFIED TOLERANCE

ON HOLES SIZES PER E-2056

MATERIAL TOLERANCE ("t") TO AGREE

WITH PUBLISHED STANDARDS

ON 2 PLACE DECIMALS IS + .O2

ON ALL ANGLES IS + .5 OF A DEGREE

X4,6-9,17-19,22,23,31-36,40,47-49,51-53,57,

Y1

58-60,62,65-67,69,70,72-89

11-25-92

JRF

Ch’ge.Sht.No.

TP1

OSI1

R1,75-83,85,100-107,111-117,123-125,131-133,137,

139,140,172,176,190,265,267-269,272,320-326

POWER WAVE

2241-1

NUMBER.

NOTES :

WITHOUT AFFECTING THE INTERCHANGEABILITY OF A COMPLETE BOARD, THIS DIAGRAM MAY

N.A. SINCE COMPONENTS OR CIRCUITRY ON A PRINTED CIRCUIT BOARD MAY CHANGE

NOT SHOW THE EXACT COMPONENTS OR CIRCUITRY OF CONTROLS HAVING A COMMON CODE

Q1,11

4.75K

R

3

1/2W

10M

R6

130

8.0MHz

Y2

100V

22p

C4

1.00K

R39

1.00K

R38

1.00K

R110

2.21K

R5

50V

0.1

C6

10K

R

4

100V

22p

C5

J25

2

(SHEET 4)

1

26

/IRQ

MODA

Vss

EXTAL

Vdd

A11

VRL

R/W

E

A15

/SS

A/D1

IC3

TxD

IC2

/RES

PAI

A/D0

MOSI

IC1

OC4

MISO

VRH

RxD

OC5

OC2

A13

AS

A12

MC68HC11

SCK

/XIRQ

A14

A/D4

A10

A/D7

A8

A/D6

A/D5

A9

A7/D7

OC3

A/D3

A/D2

A1/D1

A2/D2

A3/D3

A4/D4

XTAL

MODB

A0/D0

A5/D5

A6/D6

X10

18

27

17

21

34

43

7

8

20

25

24

23

22

28

52

45

31

32

33

30

4

6

51

5

35

36

40

44

37

39

42

38

48

50

46

41

47

29

49

16

3

11

10

14

19

2

15

13

12

9

Vpp_CTRL

RESET

RXD

TXD

D

(3)

+5V

50V

0.1

C45

SWITCH1

SWITCH2

OUTPUT_ON

(DSP1 PORT1)

(DSP1 DATA BUS)

(SHEET 2, X44)

(SHEET 2, X44)

(DSP1 PORT1)

28F512

X15

32

16

50V

0.1

C21

Vss

Vdd

MC68HC11

X10

1

26

50V

0.1

C20

50V

0.1

C22

GND

Vcc

GND

PSD301

X13

12

44

34

+15V

X3

1

3

2

LM224

X26

4

11

50V

0.1

C19

D

A

1.00K

R

36

E

AD[8]

E

A

D

D

BE

+5V

AD[11]

AD[12]

D

AD[10]

AD[9]

AD[2]

AD[0]

A17

D

+5V

SLAVE

D

A

AD[0]

AD[0:15]

THERMAL

MODE_SLAVE

D

D

/XIRQ

+6

+5V

+5V

D

DA-AD[0:7]

AD[10]

AD[12]

AD[11]

R/W

RES

AD[9]

AD[8]

+5V

AD[13]

+5V

LATCH_READ

I_CK

DA-AD[3]

DA-AD[3]

100V

47p

C3

DA-AD[0]

I_CK

DA-AD[0]

AD[0:15]

A14

AD[4]

AD[10]

R/W

AD[3]

D

DA-AD[6]

DA-AD[7]

DA-AD[5]

A15

CE_FLASH

Vpp

A16

D

Vpp

+15V

Vpp_CTRL

+15V

+15V

A

A

AD[13]

DA-AD[2]

BE

DA-AD[5]

DA-AD[1]

RD_FLASH

DA-AD[0]

DA-AD[1]

DA-AD[1]

I_AD

DA-AD[5]

DA-AD[1]

DA-AD[2]

DA-AD[3]

DA-AD[6]

DA-AD[4]

DA-AD[4]

AD[15]

DA-AD[6]

DA-AD[7]

DA-AD[7]

DA-AD[0]

DA-AD[3]

AD[14]

DA-AD[0:7]

DA-AD[2]

BE

BE

DA-AD[2]

DA-AD[7]

DA-AD[4]

DA-AD[4]

DA-AD[5]

DA-AD[6]

AD[1]

AD[8]

AD[9]

AD[12]

AD[11]

AD[10]

AD[6]

AD[13]

AD[5]

AD[7]

AD[9]

SWOP

X1

9

8

10

CONTROL

100V

47p

C25

100V

47p

C26

(3)

(3)

12

24

BtoA SRC

DIR

A4

OE

AtoB SRC

A1

B6

A5

A0

A2

A3

A6

GND

B1

B2

B0

B7

A7

B3

B5

74AC646

BtoA CLK

AtoB CLK

Vcc

B4

X11

22

9

10

3

8

2

5

11

4

7

6

21

1

23

19

20

18

15

16

17

13

14

X1

12

11

13

12

24

BtoA SRC

DIR

A4

OE

AtoB SRC

A1

B6

A5

A0

A2

A3

A6

GND

B1

B2

B0

B7

A7

B3

B5

74AC646

BtoA CLK

AtoB CLK

Vcc

B4

X12

22

9

10

3

8

2

5

11

4

7

6

21

1

23

19

20

18

15

16

17

13

14

RD_LOW

OE_HIGH

WRITE_1

RD_HIGH

RD_LOW

OE_LOW

DATA[3]

DATA[4]

DATA[5]

DATA[6]

DATA[1]

DATA[2]

DATA[0]

DIRECTION

DIRECTION

D

+5V

DATA[9]

DATA[10]

DATA[7]

DATA[8]

DATA[0:15]

WRITE_1

+5V

DATA[11]

DATA[12]

DATA[13]

DATA[14]

DATA[15]

DA-AD[3]

DA-AD[6]

DA-AD[1]

DA-AD[7]

DA-AD[2]

DATA[0:15]

A15

A16

RD_FLASH

CE_FLASH

A17

A14

RD_HIGH

BE

D

DA-AD[4]

DA-AD[5]

DA-AD[0]

DA-AD[4]

DA-AD[1]

DA-AD[0]

DA-AD[2]

DA-AD[3]

DA-AD[5]

DA-AD[6]

DA-AD[7]

SWITCHES

LOOP

SERIAL

PORT

(DSP1)

6A: PARALLEL COMMUNICATION

(DSP1)

D2

Q0

D7

LE

D0

Q2

Q1

D5

D6

Q3

Q4

Q5

Q6

Q7

OE

74HC573

D4

D1

D3

X20

12

1

16

19

2

6

15

9

11

4

8

3

7

5

17

18

13

14

AS5

3Ee: 12 VOLT PROGRAMMING SUPPLY

AS2

AS8

N.C.

AS6

AS1

AS4

SWDK

SWWF

AS7

AS3

WR_REF

HC11 CONTROL - SHEET 1

GENERAL INFORMATION

(

ELECTRICAL SYMBOLS PER E1537

DIODES =

C9,12,14,58,71,72,74-76,78,82,89,92-94,99,131

.022/50V

CAPACITORS =

MFD

345

Q-

SUPPLY

52

LABELS

D-

X-

R-

156

C-

3Ec: HC11 SUPPORT

(HC11 ADDR/DATA BUS)

TP- 5

OSI- 8

OPTIONAL OUTPUT SLAVE CONTROL

OPTIONAL INPUT SLAVE CONTROL

1A, 400V

D1,3,6-9,44,45,48,49
DZ1,23-26,28,29

1/4W

RESISTORS = Ohms (

NUMBERS NOT USED:

SENSE

VOLTAGE

MATRIX

CONTROL

UNLESS OTHERWISE SPECIFIED)

(UNLESS OTHERWISE SPECIFIED)

UNLESS OTHERWISE SPECIFIED)

DZ- 35

Y- 2

34

VOLTAGE NET

LAST NO. USED

93

D2

Q0

D7

LE

D0

Q2

Q1

D5

D6

Q3

Q4

Q5

Q6

Q7

OE

74HC573

D4

D1

D3

X16

12

1

16

19

2

6

15

9

11

4

8

3

7

5

17

18

13

14

D

X5

12

11

13

44

34

12

/BHE

A9

A10

A8

A11

A12

A13

A15

A14

PB6

PA7

A6/D6

PB4

AS

/RES

A19

PC2

PC1

PC0

PB0

PB1

PB2

PB3

E

PA5

GND

PA3

PSD301

GND

PA2

PB5

PA1

PA4

A1/D1

R/W

PA0

Vcc

PB7

A7/D7

PA6

A5/D5

A4/D4

A3/D3

A2/D2

A0/D0

X13

20

18

6

11

5

42

10

21

43

19

3

2

1

22

26

27

24

13

29

30

31

41

9

8

40

25

4

28

23

7

17

16

14

39

15

37

38

36

35

33

32

100V

22p

C49

100V

22p

C50

100V

22p

C51

221

R330

221

R329

221

R331

221

R328

221

R335

221

R333

221

R332

221

R334

X1

4

6

5

X5

1

3

2

X3

4

6

5

X1

1

3

2

50V

0.1

C1

50V

0.1

C27

50V

0.1

C29

50V

0.1

C16

74AC646

X11

24

12

50V

0.1

C18

54HC08

X5

14

7

50V

0.1

C17

50V

0.1

C28

74AC646

X12

24

12

74HC573

X20

20

10

74HC573

X16

20

10

54HC08

X3

14

7

NAND

X1

14

7

4.75K

R336

10K

R

3

2

1W

5.1V

DZ7

475
R31

50V

0.1

C24

X26

14

13

12

40V

600mA

Q3

15.0K

R

17

15.0K

R

19

1.00K

R

15

10K

R13

10K

R

14

10K

R

12

10K

R

16

D46

10K

R

18

X26

8

9

10

32

16

A0

Vss

A2

NC

/CE

A14

Vcc

DQ4

DQ5

DQ2

DQ7

Vpp

NC

DQ6

/OE

DQ1

DQ0

/WE

A13

A3

A6

A7

A9

A15

A10

A11

A8

A1

A12

DQ3

A5

A4

28F512

X15

20

26

27

14

15

2

18

24

10

19

5

7

25

13

23

12

11

9

8

6

31

1

30

21

17

4

29

28

3

22

X3

9

8

10

X5

4

6

5

X3

12

11

13

X5

9

8

10

X26

7

6

5

15.0K

R109

475
R30

100K
R11

50V

0.1

C8

1.00K

R

1

0

8

1W

5.1V

DZ9

4.75K

R

7

S-8054HN

Vdd

Vss

RES

X2

INPUT COMMAND

1.0

35V

C7

50V

0.1

C2

10K

R

8

10K

R

2

10K

R

9

D2

10K

R

10

AD[8]

AD[7]

AD[1]

AD[0]

R/W

E

AD[2]

D

RES

AD[6]

AD[4]

AS-LE

AD[5]

AD[14]

AD[15]

AD[3]

AS-LE

3Ea: UNDER VOLTAGE LOCKOUT

3E: HC11

(DSP 1)

A/D0

2.21K

R

37

1-6-95B

8-11-95C

1-30-98B
8-13-99B

G-4

NOTE: This diagram is for reference only. It may not be accurate for all machines covered by this manual.