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Technische Karakteristieken - Gossen MetraWatt PROFITEST MASTER Series Gebruiksaanwijzing

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19

Technische karakteristieken

Technische karakteristieken MBASE+ & MTECH+
Fun-
Weergave-
Meetgrootheid
ctie
bereik
0 ... 99,9 V
U
L-PE
U
100 ... 600 V
N-PE
15,0 ... 99,9 Hz
f
100 ... 999 Hz
0 ... 99,9 V
U
U
3~
100 ... 600 V
0 ... 99,9 V
U
SONDE
100 ... 600 V
0 ... 99,9 V
U
L-N
100 ... 600 V
U
0 ... 70,0 V
IN
10 ... 999 
1,00 k ... 6,51 k
3  ... 999 
1 k ... 2,17 k
1 ... 651 
R
E
0,3  ... 99,9 
100  ... 217 
0,2  ... 9,9 
I
N
10  ... 130 
I
(I
= 6 mA)
1,8 ... 7,8 mA
N
F
I
I
(I
= 10 mA)
3,0 ... 13,0 mA
F
N
F
I
(I
= 30 mA)
9,0 ... 39,0 mA
N
F
I
(I
= 100 mA)
30 ... 130 mA
N
F
I
(I
= 300 mA)
90 ... 390 mA
N
F
I
(I
= 500 mA)
150 ... 650 mA
N
F
U
/ U
= 25 V
0 ... 25,0 V
I
L
U
/ U
= 50 V
0 ... 50,0 V
I
L
t
(I
· 1)
0 ... 1000 ms
N
A
t
(I
· 2)
0 ... 1000 ms
N
A
t
(I
· 5)
0 ... 40 ms
N
A
Z
(
)
0 ... 999 m
L-PE
1,00 ... 9,99 
Z
L-N
0 ... 999 m
Z
1,00 ... 9,99 
L-PE
+ DC
10,0 ... 29,9 
0 ... 9,9 A
I
(Z
,
Z
K
L-PE
10 ... 999 A
L-PE
1,00 ... 9,99 kA
Z
+ DC)
L-PE
10,0 ... 50,0 kA
Z
L-N
0,5 ... 9,99 
10,0 ... 99,9 
Z
(15 mA)
L-PE
100 ... 999 
100 ... 999 mA
I
(15 mA)
0,00 ... 9,99 A
K
10,0 ... 99,9 A
0 ... 999 m
R
(met sonde)
1,00 ... 9,99 
E
10,0 ... 99,9 
[R
(zonder sonde)
100 ... 999 
E
Waarden als Z
]
L-PE
1 k ...9,99 k
R
E
0 ... 999 m
1,00 ... 9,99 
R
DC+
E
10,0 ... 29,9 
U
0 ... 253 V
E
R
0 ... 999 
R
E
E
Sel
0 ... 999 
R
DC+
Tang
E
EX-
Z
0 ... 30 M
ST
TRA
1 ... 999 k
1,00 ... 9,99 M
10,0 ... 49,9 M
1 ... 999 k
1,00 ... 9,99 M
10,0 ... 99,9 M
1 ... 999 k
R
, R
ISO
E ISO
1,00 ... 9,99 M
R
ISO
10,0 ... 99,9 M
100 ... 200 M
1 ... 999 k
1,00 ... 9,99 M
10,0 ... 99,9 M
100 ... 500 M
10 ... 999 V–
U
1,00 ... 1,19 kV
82
Ingangsim-
Reso-
pedantie/
Meetbereik
lutie
meetstroom
0,1 V
0,3 ... 600 V
1 V
0,1 Hz
DC 15,4 ... 420 Hz
1 Hz
0,1 V
5 M
0,3 ... 600 V
1 V
0,1 V
1,0 ... 600 V
1 V
0,1 V
1,0 ... 600 V
1 V
0,1 V
0,3 · I
5 ... 70 V
N
1 
I
= 10 mA · 1,05
N
0,01 k
1 
I
= 30 mA · 1,05
N
Rekenkundige
0,01 k
waarde
1
I
=100 mA · 1,05
N
van
0,1 
R
= U
/ I
I
=300 mA · 1,05
N
1 
E
IN
0,1 
I
=500 mA · 1,05
N
1 
1,8 ... 7,8 mA
1,8 ... 7,8 mA
0,1 mA
3,0 ... 13,0 mA
3,0 ... 13,0 mA
9,0 ... 39,0 mA
9,0 ... 39,0 mA
1 mA
30 ... 130 mA
30 ... 130 mA
1 mA
90 ... 390 mA
90 ... 390 mA
1 mA
150 ... 650 mA
150 ... 650 mA
0 ... 25,0 V
0,1 V
als I
0 ... 50,0 V
1 ms
6 ... 500 mA
0 ... 1000 ms
1 ms
2 · 6 ... 2 · 500 mA
0 ... 1000 ms
1 ms
5 · 6 ... 5 · 300 mA
0 ... 40 ms
0,15 ... 0,49 
0,50 ... 0,99 
1 m
1,00 ... 9,99 
0,01 
0,1 
0,25 ... 0,99 
1,3 ... 3,7 A AC
1,00 ... 9,99 
0,5/1,25 A DC
0,1 A
120 (108 ... 132) V
1 A
230 (196 ... 253) V
10 A
400 (340 ... 440) V
100 A
500 (450 ... 550) V
0,01 
0,1 
10 ... 100 
1 
100 ... 1000 
Rekenkundige
15 mA AC
1 mA
waarde afh. van U
0,01 A
en Z
:
L-PE
0,1 A
I
=U
/10...1000
K
N
0,15  ... 0,49 
1,3 ... 3,7 A AC
1 m
0,50  ... 0,99 
1,3 ... 3,7 A AC
0,01 
1,0  ...9,99 
1,3 ... 3,7 A AC
0,1 
10  ...99,9 
400 mA AC
1
100  ...999 
40 mA AC
0,01 k
4 mA AC
1 k ...9,99 k
1 m
0,25 ... 0,99 
1,3 ... 3,7 A AC
0,01 
1,00 ... 9,99 
0,5/1,25 A DC
0,1 
Rekenkundige
1 V
waarde
1 m...
1 
1,3 ... 2,7 A AC
0,25 ... 300 
0,5/1,25 A DC
1 m...
1 
10 k ... 199 k
1 k
2,3 mA bij 230 V
200 k ... 30 M
1 k
10 k
100 k
1 k
10 k
100 k
1 k
I
= 1,5 mA
50 k... 500 M
K
10 k
100 k
1 M
1 k
10 k
100 k
1 M
1 V
10 ... 1,19 kV
10 V
Nom.
Meetonnauw-
waarden
keurigheid
(2% v.d.m.+5D)
1)
(2% v.d.m.+1D)
(0,2% v.d.m.+1D) (0,1% v.d.m.+1D)
U
= 120/230/
N
400/500 V
(3% v.d.m.+5D)
(3% v.d.m.+1D)
2
f
= 16
/
/50/
N
3
(2% v.d.m.+5D)
60/200/400 Hz
(2% v.d.m.+1D)
(3% v.d.m.+5D)
1)
(3% v.d.m.+1D)
+10% v.d.m.+1D
U
=
N
120 V
230 V
2)
400 V
N
f
= 50/60 Hz
N
U
= 25/50 V
L
I
=
N
6 mA
(5% v.d.m.+1D) (3,5% v.d.m.+2D)
10 mA
30 mA
100 mA
300 mA
2)
500 mA
+10% v.d.m.+1D
4 ms
(10% v.d.m.+30D)
U
= 120/230 V
N
(10% v.d.m.+30D)
1)
400/500 V
(5% v.d.m.+3D)
2
f
=16
/
/50/60 Hz
N
3
(18% v.d.m.+30D)
U
= 120/230 V
N
(10% v.d.m.+3D)
f
= 50/60 Hz
N
Rekenkundige waarde van Z
alleen weergavebereik
(10% v.d.m.+10D)
(8% v.d.m.+2D)
U
= 120/230 V
N
2
f
= 16
/
/50/60
Rekenkundige waarde van Z
N
3
N
Hz
mA):
I
= U
/Z
K
N
(10% v.d.m.+30D)
(10% v.d.m.+30D)
U
= 120/230 V
(5% v.d.m.+3D)
N
1)
U
= 400 V
(10% v.d.m.+3D)
N
f
= 50/60 Hz
(10% v.d.m.+3D)
N
(10% v.d.m.+3D)
U
= 120/230 V
±(18% v.d.m.+30D)
N
(10% v.d.m.+3D)
f
= 50/60 Hz
N
(20% v.d.m.+20 D) (15% v.d.m.+20 D)
zie R
E
4)
U
= 120/230 V
(22% v.d.m.+20 D) (15% v.d.m.+20 D)
N
f
= 50/60 Hz
N
(20% v.d.m.+2D)
U
= U
(10% v.d.m.+2D)
0
L-N
U
= 50 V
N
I
= 1 mA
N
U
= 100 V
N
I
= 1 mA
Bereik
k
N
(5% v.d.m.+10D)
U
= 250 V
N
Bereik
M
I
= 1 mA
(5% v.d.m.+1D)
N
U
= 500 V
N
U
= 1000 V
N
I
= 1 mA
N
(3% v.d.m.+1D) ±(1,5% v.d.m.+1D)
Intrinsieke
Stekker-
3-po-
2-polige
onveiligheid
inzet-
Adapter
1)
stuk
adapter
(1% v.d.m.+5D)
(1% v.d.m.+1D)
l
l
(2% v.d.m.+5D)
(2% v.d.m.+1D)
(1% v.d.m.+5D)
(1% v.d.m.+1D)
(2% v.d.m.+5D)
l
(2% v.d.m.+1D)
+1% v.d.m.–1D ...
+9% v.d.m.+1D
l
l
+1% v.d.m.–1D ...
+9% v.d.m.+1 D
3 ms
(5% v.d.m.+30D)
(4% v.d.m.+30D)
(3% v.d.m.+3D)
(6% v.d.m.+50D)
(4% v.d.m.+3D)
l
l
L-PE
Z
L-PE
(2% v.d.m.+2D)
(1% v.d.m.+1D)
(15
L-PE
(15 mA)
L-PE
(5% v.d.m.+30D)
(4% v.d.m.+30D)
(3% v.d.m.+3D)
(3% v.d.m.+3D)
(3% v.d.m.+3D)
(3% v.d.m.+3D)
l
l
(6% v.d.m.+50D)
(4% v.d.m.+3D)
(10% v.d.m.+3D)
l
l
(5% v.d.m.+3D)
Bereik
k
(3% v.d.m.+10D)
l
l
Bereik
M
(3% v.d.m.+1D)
GMC-I Messtechnik GmbH
Aansluitingen
Tangen
lige
Sonde
WZ12
Z3512
MFLEX
C
A
P300
l
l
l
l
l
naar
keuze
l
l
l
l
l

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