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Programmable acceleration – RoboteQ AX2850 User Manual

Page 47

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AX2550 Motor Controller User’s Manual

47

Programmable Acceleration

Programmable Acceleration

When changing speed command, the AX2550 will go from the present speed to the
desired one at a user selectable acceleration. This feature is necessary in order to minimize
the surge current and mechanical stress during abrupt speed changes.

This parameter can be changed by using the controller’s front switches or using serial com-
mands. When configuring the controller using the switches (see “Configuring the Control-
ler using the Switches” on page 171), a
cceleration can be one of 6 available preset values,
from very soft(0) to very quick (6). The AX2550’s factory default value is medium soft (2).

When using the serial port, acceleration can be one of 24 possible values, selectable using
the Roborun utility or entering directly a value in the MCU’s configuration EEPROM.
Table 6 shows the corresponding acceleration for all Switch and RS232 settings.

Numerically speaking, each acceleration value corresponds to a fixed percentage speed
increment, applied every 16 milliseconds. The value for each setting is shown in the table
below.

TABLE 6. Acceleration setting table

Acceleration
Setting Using
RS232

Acceleration
Setting Using
Switches

%Acceleration per
16ms

Time from 0 to
max speed

30 Hex

0.78%

2.05 seconds

20 Hex

1.56%

1.02 seconds

10 Hex

2.34%

0.68 second

00 Hex

0

3.13%

0.51 second

31 Hex

3.91%

0.41 second

21 Hex

4.69%

0.34 second

11 Hex

5.47%

0.29 second

01 Hex

1

6.25%

0.26 second

32 Hex

-

7.03%

0.23 second

22 Hex

-

7.81%

0.20 second

12 Hex

-

8.59%

0.19 second

02 Hex

2 (default)

9.38%

0.17 second

33 Hex

-

10.16%

0.16 second

23 Hex

-

10.94%

0.15 second

13 Hex

-

11.72%

0.14 second

03 Hex

3

12.50%

0.128 second

34 Hex

-

13.28%

0.120 second

24 Hex

-

14.06%

0.113 second

14 Hex

-

14.84%

0.107 second

04 Hex

4

15.63%

0.102 second

35 Hex

-

16.41%

0.097 second

25 Hex

-

17.19%

0.093 second