Appendix d block diagrams d-2 – Rockwell Automation 1391 USER MNL/DIGITAL AC SERVO DR User Manual

Page 128

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Appendix D
Block Diagrams

D-2

Figure E.1
1391-DES Software Block Diagram – Part 1

VEL

PI OUTPUT

35

186

FEEDBACK FIL

TER

INTG VEL

ERROR

185

LEAD/LAG

LEAD/LAG

VELOCITY

FEEDBACK

21

FIL

TERED VEL

20

+

PROP VEL

ERROR

33

FEEDBACK

22

A

VERAGE MTR

184

VEL

LOW P

ASS BW W

A

SCALING

169

VELOCITY FEEDBACK

4096 = BASE RPM (1000 RPM)

LPF

INTG GAIN

+

172

PROP GAIN

PRESET V

A

L

INTG

DROOP

+

171

DROOP

COMP

FRICTION

VEL

REF WHOLE

+/– 10V

A/D

+

FEED FWD

(10v = 8192)

FEED FWD GAIN

17

SUM

ANALOG VELOCITY

OFFSET

2

1

210

GAIN

+

168

PROP GAIN Kp

18

VEL

REF FRACT

+

1

+

2

+/– 9v

(3v = 4096)

EXT

. T

ORQUE

REF

.

+

34

44

A/D

0

bit

SELECT

57

COMMAND

ANALOG

VELOCITY

GAIN

21

1

ANALOG

VELOCITY

132

0

0

3

MODE

VEL

LOSE

ENABLE

CURRENT

(AMPS)

RA

TED MOT

OR

FEEDBACK

ACCUMULA

T

O

R

POSITION FEEDBACK

133

PRELOAD

CURRENT

4096 = 100%

RESOL

VER POSITION

RESOL

VER TURNS

23

24

PRELOAD

159

0

5

+

+

+

1

SELECT

T

ORQUE

155

SLOW

VOLA

TILE SLOW

P

ARAMETER

P

ARAMETER

(TEST

POINT)

FAST

SOURCE

FAST

SINK

CURRENT

LIMITER

RA

TE LIM

CURRENT

CUR LIM

4

+

+

+

0

3

+

+

2

0

bit

HOLD

NEGA

TIVE

48

POSITIVE

157

CUR LIM

156

CUR LIM

VELOCITY

COMMAND

ST

OP

19

IT

PROTECT

LIM.

BRIDGE

47

GAIN

A/D

MOT

OR CURRENT

4096 = RA

TED

Iq CURRENT

REF

.

45

158

10 BIT

MOT

OR

TYPE

154

51

LIMIT

CURRENT

49

FEEDBACK

CURRENT

50

CURRENT

FEEDBACK

SCALE

RA

TED

GAIN KN

VELOCITY

BW WN

FEEDBACK

GAIN Ki

INTG

PRE RAMP

VEL

25

145

VEL

LIMIT

CCW

RA

TE LIMIT

146

VEL

VEL

LIMIT

144

CW

LIMITER

VELOCITY

RAMP

ACC/DEC

170

O = VEL

MODE 1

(VELOCITY

REGULA

T

OR PI OUTPUT)

1 = VEL

MODE 2

(PI

OUTPUT

+ CURRENT

PRELOAD)

2 =

T

ORQUE

BLOCK

(EXTERNAL

T

ORQUE

REF

.)

3 = VEL

MODE 3

+ CURRENT

PRELOAD)

T

ORQUE SELECT

T

ABLE

4 =

A/D

TQ

BLK

(CURRENT

PRELOAD +

A/D)

0 =

A/D

INPUT

1 = DIGIT

AL

INPUT

2

=

A/D + DIGIT

AL

INPUT

3 = ZERO INPUT

VELOCITY MODE

TABLE

(PI OUTPUT

+

A/D

5 = ZERO VELOCITY

REF

.

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