An output signal is obtained, which is proportional to
An output signal is obtained, which is proportional to
the resulting reference value in the interval Minimum
the resulting reference value in the interval Minimum
reference, Ref
reference, Ref MIN
MIN - Maximum reference, Ref
- Maximum reference, Ref MAX
MAX
(parameters 204/205).
(parameters 204/205).
FB
FB MIN
MIN -FB
-FB MAX
MAX 0-20 mA/ 4-20 mA.
0-20 mA/ 4-20 mA.
An output signal is obtained, which is proportional to
An output signal is obtained, which is proportional to
the feedback value in the interval Minimum
the feedback value in the interval Minimum feedback,
feedback,
FB
FBMIN
MIN - Maximum feedback, FB
- Maximum feedback, FBMAX
MAX (parameter
(parameter
414/415).
414/415).
0-f
0-f MAX
MAX 0-20 mA/4-20 mA.
0-20 mA/4-20 mA.
An output signal is obtained, which is proportional to
An output signal is obtained, which is proportional to
the output frequency in the interval 0 - f
the output frequency in the interval 0 - f MAX
MAX (param-
(param-
eter 202
eter 202
Output frequency, high limit, f
Output frequency, high limit, f MAX
MAX
).
).
0 - I
0 - I INV
INV 0-20 mA/4-20 mA.
0-20 mA/4-20 mA.
An output signal is obtained, which is proportional to
An output signal is obtained, which is proportional to
the output current in the interval 0 - I
the output current in the interval 0 - I INV
INV
0 - P
0 - P M,N
M,N 0-20 mA/4-20 mA.
0-20 mA/4-20 mA.
An output signal is obtained, which is proportional to
An output signal is obtained, which is proportional to
the present output power. 20 mA corresponds to the
the present output power. 20 mA corresponds to the
value set in parameter 102
value set in parameter 102
Motor power, P
Motor power, P M,N
M,N ..
0 - Temp.
0 - Temp.MAX
MAX 0-20 mA/4-20 mA.
0-20 mA/4-20 mA.
An output signal is obtained, which is proportional to
An output signal is obtained, which is proportional to
the present heatsink temperature. 0/4 mA corre-
the present heatsink temperature. 0/4 mA corre-
sponds to a heatsink temperature of less than 20
sponds to a heatsink temperature of less than 20
°°
C,
C,
and 20 mA corresponds to 100
and 20 mA corresponds to 100
°°
C.
C.
3
3
2
2
3
3
R
R
e
e
l
l
a
a
y
y
o
o
u
u
t
t
p
p
u
u
t
t
1
1
-
-
3
3
Value:
Value:
N
No
o ffu
un
nc
cttiio
on
n ((n
no
o o
op
pe
erra
attiio
on
n))
[[0
0]]
U
Un
niit
t
rre
ea
ad
dy
y
((u
un
niit
t
rre
ea
ad
dy
y))
[[1
1]]
E
En
na
ab
blle
e//n
no
o w
wa
arrn
niin
ng
g ((e
en
na
ab
blle
e//n
no
o w
wa
arrn
niin
ng
g))
[[2
2]]
R
Ru
un
nn
niin
ng
g
((R
RU
UN
NN
NIIN
NG
G))
[[3
3]]
Running in reference, no warning
Running in reference, no warning
((rru
un
n
o
on
n
rre
eff//n
no
o
w
wa
arrn
n))
[[4
4]]
Running, no warnings
Running, no warnings
((R
RU
UN
NN
NIIN
NG
G//N
NO
O W
WA
AR
RN
NIIN
NG
G))
[[5
5]]
Running in reference range, no warnings
Running in reference range, no warnings
((R
RU
UN
N IIN
N R
RA
AN
NG
GE
E/
/ N
NO
O W
WA
AR
RN
N))
[[6
6]]
Ready - mains voltage within range
Ready - mains voltage within range
((R
RD
DY
Y N
NO
O O
OV
VE
ER
R//U
UN
ND
DE
ER
RV
VO
OL
L))
[[7
7]]
Alarm or warning
Alarm or warning
((A
AL
LA
AR
RM
M
O
OR
R
W
WA
AR
RN
NIIN
NG
G))
[[8
8]]
Current higher than current limit, par. 221
Current higher than current limit, par. 221
((C
Cu
urrrre
en
nt
t
lliim
miitt))
[[9
9]]
A
Alla
arrm
m
((A
AL
LA
AR
RM
M))
[[1
10
0]]
Output frequency higher than f
Output frequency higher than f LOW
LOW par. 225
par. 225
((a
ab
bo
ov
ve
e
ffrre
eq
qu
ue
en
nc
cy
y
llo
ow
w))
[[1
11
1]]
Output frequency lower than f
Output frequency lower than f HIGH
HIGH par. 226
par. 226
((b
be
ello
ow
w ffrre
eq
qu
ue
en
nc
cy
y h
hiig
gh
h))
[[1
12
2]]
Output current higher than I
Output current higher than I LOW
LOW par. 223
par. 223
((a
ab
bo
ov
ve
e
c
cu
urrrre
en
nt
t
llo
ow
w))
[[1
13
3]]
Output current lower than I
Output current lower than I HIGH
HIGH par. 224
par. 224
((b
be
ello
ow
w
c
cu
urrrre
en
nt
t
h
hiig
gh
h))
[[1
14
4]]
Feedback higher than FB
Feedback higher than FB LOW
LOW par. 227
par. 227
((a
ab
bo
ov
ve
e
ffe
ee
ed
db
ba
ac
ck
k
llo
ow
w))
[[1
15
5]]
Feedback lower than FB
Feedback lower than FBHIGH
HIGH par. 228
par. 228
((u
un
nd
de
er
r
ffe
ee
ed
db
ba
ac
ck
k
h
hiig
gh
h))
[[1
16
6]]
R
Re
ella
ay
y
1
12
23
3
((R
RE
EL
LA
AY
Y
1
12
23
3))
[[1
17
7]]
R
Re
ev
ve
errs
siin
ng
g
((R
RE
EV
VE
ER
RS
SE
E))
[[1
18
8]]
Th
Ther
erma
mal w
l war
arni
ning
ng (T
(THE
HERM
RMAL
AL WA
WARN
RNIN
ING)
G)
[1
[19]
9]
L
Lo
oc
ca
al
l o
op
pe
erra
attiio
on
n ((L
LO
OC
CA
AL
L M
MO
OD
DE
E))
[[2
20
0]]
Out of frequency range par. 225/226
Out of frequency range par. 225/226
((o
ou
ut
t
o
of
f
ffrre
eq
q
rra
an
ng
ge
e))
[[2
22
2]]
Out of current range
Out of current range
((o
ou
ut
t
o
of
f
c
cu
urrrre
en
nt
t
rra
an
ng
ge
e))
[[2
23
3]]
Out of feedback range
Out of feedback range
((o
ou
ut
t
o
of
f
ffd
db
bk
k.
.
rra
an
ng
ge
e))
[[2
24
4]]
Mechanical brake control
Mechanical brake control
((M
Me
ec
ch
h.
.
b
brra
ak
ke
e
c
co
on
nttrro
oll))
[[2
25
5]]
Control word bit 11
Control word bit 11
((c
co
on
nttrro
ol
l
w
wo
orrd
d
b
biit
t
1
11
1))
[[2
26
6]]
Function:
Function:
The relay output can be used for giving the present
The relay output can be used for giving the present
status or warning. The output is activated (1-2 make)
status or warning. The output is activated (1-2 make)
when a given condition is
when a given condition is fulfilled.
fulfilled.
Description of choice:
Description of choice:
No function
No function
. Is selected if the frequency converter is
. Is selected if the frequency converter is
not to react to signals.
not to react to signals.
Unit ready
Unit ready
, there is a supply voltage on the control
, there is a supply voltage on the control
card of the frequency converter, and the frequency
card of the frequency converter, and the frequency
converter is ready for operation.
converter is ready for operation.
Enable, no warning
Enable, no warning
, the frequency converter is ready
, the frequency converter is ready
for operation, but no start command has been given.
for operation, but no start command has been given.
No warning.
No warning.
Running
Running
, a start command has been given. Also active
, a start command has been given. Also active
during ramp down.
during ramp down.
Running in reference, no warning
Running in reference, no warning
speed according to
speed according to
reference.
reference.
Running, no warning
Running, no warning
, a start command has been given.
, a start command has been given.
No warning.
No warning.
Ready - mains voltage within range
Ready - mains voltage within range
, the frequency con-
, the frequency con-
verter is ready for use; the control card is receiving a
verter is ready for use; the control card is receiving a
supply voltage; and there are no active control sig-
supply voltage; and there are no active control sig-
nals on the inputs. The mains voltage lies within the
nals on the inputs. The mains voltage lies within the
voltage limits.
voltage limits.
Alarm or warning
Alarm or warning
, the output is activated by an alarm
, the output is activated by an alarm
or warning.
or warning.
Current limit
Current limit
, the output current is higher than
, the output current is higher than the val-
the val-
ue programmed in parameter 221 Current limit I
ue programmed in parameter 221 Current limit I LIM
LIM..
Alarm
Alarm
, The output is activated by an alarm.
, The output is activated by an alarm.
Output frequency higher than f
Output frequency higher than f LOW
LOW
, the output fre-
, the output fre-
quency is higher than the value set in
quency is higher than the value set in parameter 225
parameter 225
Warning: Low frequency, f
Warning: Low frequency, f LOW
LOW
..
Output frequency lower than f
Output frequency lower than f HIGH
HIGH
,
,
the output fre-
the output fre-
quency is lower than the value set in parameter 226
quency is lower than the value set in parameter 226
Warning: High frequency, f
Warning: High frequency, f HIGH
HIGH
..
4
44
4
T
TR
R1
1
2
28
80
00
0
S
Se
erriie
es
s
V
VF
FD
D
Programming
Programming
Summary of Contents for VarioTrane TR1 2800 Series
Page 2: ...T TR R1 1 2 28 80 00 0 S Se er ri ie es s V VF FD D 1 1...
Page 3: ...2 2 T TR R1 1 2 28 80 00 0 S Se er ri ie es s V VF FD D...
Page 4: ...TR1 2800 Series VFD 3...
Page 7: ...6 TR1 2800 Series VFD...
Page 87: ...Illustration 5 7 192H4719 Illustration 5 8 192H4720 86 TR1 2800 Series VFD...
Page 95: ...Branch Circuit Protection Short circuit protection 94 TR1 2800 Series VFD...
Page 107: ...All about TR1 2800 Series VFD 106 TR1 2800 Series VFD...