
Descri
tion
Design.
Date Ed
1
2005.7.15
SHEET
DRAW. No.
CUST.
TITLE
Taka
ama
Newly designed
Notice of the Update of Digital Servo
Software for Series 30i/31i /32i
90D0
10 & 90E0/10
B-65270EN/05-002
FANUC LTD
12
16
01
Series 90E0/J(10) and subsequent editions
(*) With Series 90B0, 90B5, and 90B6, a αiCZ sensor cannot be used as the
detector for a synchronous built-in servo motor. (The αiCZ sensor can be
used as a separate detector.)
(3) Setting parameters (<1> Used as the detector for a Synchronous Built-in Servo
Motor)
[Setting AMR]
#7 #6 #5 #4 #3 #2 #1 #0
1806 (FS15i)
0 AMR6 AMR5 AMR4 AMR3 AMR2 AMR1 AMR0
2001 (FS30i,16i)
Set value listed below according to the detector.
Detector AMR0 – AMR6
αiCZ 512S
Set the number of poles of the synchronous built-in
servomotor in binary.
αiCZ 768S
Set to 0
αiCZ 1024S
Set a value obtained by dividing the number of poles of the
synchronous built-in servomotor by 2 in binary.
Setting example:
When an 88-pole Synchronous Built-in Servo Motor and the αiCZ 1024S
are used:
Number of poles/2 = 88/2 = 44
→ The binary representation of the above value is 00101100. This value should be
set in AMR.
#7 #6 #5 #4 #3 #2 #1 #0
2608 (FS15i)
DECAMR
2220 (FS30i,16i)
Set a value listed below according to the detector.
Detector DECAMR
αiCZ 512S
0
αiCZ 768S
1
αiCZ 1024S
0
1705(FS15i)
AMR converion coefficient 1
2112(FS30i,16i)
1761(FS15i)
AMR conversion coefficient 2
2138(FS30i,16i)
Set a value listed below according to the detector.
Detector
AMR conversion
coefficient 1
AMR conversion
coefficient 2
αiCZ 512S
0 0
αiCZ 768S
768 (The Number of pole)/2