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59
CAM 2 = 4095 = 0FFFh
600h+ID
8
23h
21h
63h
01h
FFh
0Fh
00h
00h
CAN-ID
DLC Command
Object L Object H Sub-
Index
Byte0
Byte1
Byte2
Byte3
Table 8.70: CAM-High-Limit 2
CAM 3 = 682 = 02AAh
600h+ID
8
23h
23h
63h
01h
AAh
02h
00h
00h
CAN-ID
DLC Command
Object L Object H Sub-
Index
Byte0
Byte1
Byte2
Byte3
Table 8.71: CAM-High-Limit 3
The setting of the CAM-Low-Limits 1, 2 und 3 is similar:
CAM 1 = 0 = 00h
600h+ID
8
23h
10h
63h
01h
00h
00h
00h
00h
CAN-ID
DLC Command
Object L Object H Sub-
Index
Byte0
Byte1
Byte2
Byte3
Table 8.72: CAM-Low-Limit 1
CAM 2 = 2049 = 0801h
600h+ID
8
23h
11h
63h
01h
01h
08h
00h
00h
CAN-ID
DLC Command
Object L Object H Sub-
Index
Byte0
Byte1
Byte2
Byte3
Table 8.73: CAM-Low-Limit 2
CAM 3 = 0 = 00h
600h+ID
8
23h
12h
63h
01h
00h
00h
00h
00h
CAN-ID
DLC Command
Object L Object H Sub-
Index
Byte0
Byte1
Byte2
Byte3
Table 8.74: CAM-Low-Limit 3
In our example the CAM-Hysteresis shall be 0, so there is no change necessary.
With the CAM-Polarity-Register the polarity of the cams can be inverted.
Using object 6300h Sub-Index 1 the CAM-state-register can be read. The CAM-state-register is also PDO
mappable! For more details see
Fehler! Verweisquelle konnte nicht gefunden werden.
Fehler! Verweisquelle
konnte nicht gefunden werden.
. To save the configuration into the EEPROM, see 8.12.1 "Saving parameters
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