EasyManua.ls Logo

Fuji Electric FRENIC-Ace series - Page 116

Fuji Electric FRENIC-Ace series
788 pages
To Next Page IconTo Next Page
To Next Page IconTo Next Page
To Previous Page IconTo Previous Page
To Previous Page IconTo Previous Page
Loading...
3.4 Programming Mode
3-22
Table 3.4-5 Running Status 2 (
3_23
) Bit Assignment
Bit Notation Content Bit Notation
Content
15 Driving a PM motor 7 Speed limiting (under torque control)
14
(Not used.)
6 (Not used.)
13 5 Motor selection
00: Motor 1
01: Motor 2
12 4
11 3 Inverter drive control
0000: V/f control with slip
compensation inactive
0001: Vector control without speed
sensor (Dynamic torque vector)
0010: V/f control with slip
compensation active
0011: V/f control with speed sensor
0100: V/f control with speed sensor
and auto torque boost
0101: Vector control for PMSM without
speed sensor and magnetic
pole position sensor
0110: Vector control for IM with speed
sensor
1011: Torque control for IM
(Vector control with speed
sensor)
10 2
9 1
8 0
Table 3.4-6 Running Status Display
LED No. LED4 LED3 LED2 LED1
Bit 15 14 13 12 11 10 9 8 7 6 5 4 3 2 1 0
Notation
BUSY
WR RL ALM
DEC
ACC
IL VL TL NUV
BRK
INT EXT
REV
FWD
Example
Binary 1 0 0 0 0 0 1 1 0 0 1 0 0 0 0 1
Hexa-
decimal
on the
LED
monitor
Hexadecimal expression
A 4-bit binary number can be expressed in hexadecimal (1 hexadecimal digit). Table 3.4-7 shows the
correspondence between the two notations. The hexadecimals are shown as they appear on the LED monitor.
Table 3.4-7 Binary and Hexadecimal Conversion
Binary Hexadecimal Binary Hexadecimal
0 0 0 0
0
1 0 0 0
8
0 0 0 1
1
1 0 0 1
9
0 0 1 0
2
1 0 1 0
a
0 0 1 1
3
1 0 1 1
b
0 1 0 0
4
1 1 0 0
c
0 1 0 1
5
1 1 0 1
d
0 1 1 0
6
1 1 1 0
e
0 1 1 1
7
1 1 1 1
f

Table of Contents

Related product manuals