Type
METALLIZED POLYESTER FILM CAPACITOR
MMD
NISSEI
Features
1) Ideal for use interference suppression capacitors because a flame-
retardant epoxy resin (UL94 V-0 recognized resin) is used as an
outer coating.
2) High reliability.
Specifications
-40 to +105°C
125, 250V.a.c.
Temp. Range
Rated Voltage
Straight Lead Type
Single FormedLeadType
125V.a.c.
250V.a.c.
0.010 to 1.0µF (E-12)
0.010 to 0.47µF (E-12)
Max
T
Max
W
Capacitance
125V.a.c. ±5%(J), ±10%(K)
250V.a.c. ±10%(K)
1.5Max
Max H
20Min
Cap. Tolerance
5.0Max
125V.a.c. : 288V.a.c. 1min.
Between
Terminals
5.0 +/-0.5
250V.a.c. : 575V.a.c. 1min.
d +/-0.05
Voltage Proof
Between
Terminals
and Case
F
125V.a.c. : 1000V.a.c. 1min.
250V.a.c. : 1500V.a.c. 1min.
P
+/-0.5
+/-1.5
Tangent of Loss
Angle
0.0035 or less (at 50 or 60Hz)
125V.a.c.
250V.a.c.
103 to 105
103 to 474
103 to 224
103 to 473
823 to 105
103 to 474
2,000MΩ or more (500V.d.c. 1min)
Insulation Resistance
85°C WV
x 120%, A.C. 1000hr ∆C/C±7% within
Endurance
tanδ 0.0047 or less IR 1,000MΩ or more
60°C 90 to 95%RH WV x
tanδ0.041 or less IR 1,000MΩ or more
2D.C. 500hr
∆C/C±10% within
Damp Heat
Dimensions(mm)
MMD 125V.a.c.
MMD 250V.a.c.
Cap(µF)
MMD
W
H
T
P
F
φd
0.6
0.6
0.6
0.6
0.6
0.6
0.6
0.6
0.6
0.6
0.6
0.6
0.6
0.6
0.6
0.6
0.6
0.6
0.6
0.6
0.6
W
H
T
P
F
φd
0.6
0.6
0.6
0.6
0.6
0.6
0.6
0.6
0.6
0.6
0.6
0.6
0.6
0.8
0.8
0.8
0.8
0.8
0.8
0.8
0.8
103
123
153
183
223
273
333
393
473
563
683
823
104
124
154
184
224
274
334
394
474
0.010
0.012
0.015
0.018
0.022
0.027
0.033
0.039
0.047
0.056
0.068
0.082
0.10
11.0
11.0
11.0
11.0
11.0
11.0
11.0
11.0
11.0
11.0
11.0
14.0
14.0
14.0
14.0
14.0
14.0
19.0
19.0
19.0
19.0
8.2
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.5
6.0
6.0
5.5
5.5
6.0
6.0
6.5
7.3
6.0
6.0
6.5
7.0
7.5
5.0/7.5
5.0/7.5
13.0
13.0
13.0
13.0
13.0
13.0
13.0
13.0
13.0
18.5
18.5
18.5
18.5
18.5
18.5
18.5
18.5
26.0
26.0
26.0
26.0
10.0
5.5
6.0
6.0
6.0
6.0
6.0
6.3
6.3
6.3
6.0
6.3
6.5
6.5
7.0
7.8
8.5
9.5
7.0
8.0
8.8
9.5
10.0
10.0
10.0
10.0
10.0
10.0
10.0
10.0
10.0
15.0
15.0
15.0
15.0
15.0
15.0
15.0
15.0
22.5
22.5
22.5
22.5
5.0/7.5/10.0
5.0/7.5/10.0
5.0/7.5/10.0
5.0/7.5/10.0
5.0/7.5/10.0
5.0/7.5/10.0
5.0/7.5/10.0
5.0/7.5/10.0
5.0/7.5/10.0
5.0/7.5/10.0
5.0/7.5/10.0
5.0/7.5/10.0
5.0/7.5/10.0
5.0/7.5/10.0
5.0/7.5/10.0
5.0/7.5/10.0
5.0/7.5/10.0
15.0
8.2
7.5
10.5
10.5
10.5
10.8
10.8
11.3
12.8
14.5
10.8
11.3
11.5
13.3
13.8
14.5
15.3
16.0
17.0
16.5
17.3
18.0
8.2
7.5
5.0/7.5
8.2
7.5
5.0/7.5
8.2
7.5
5.0/7.5
8.2
7.5
5.0/7.5
8.2
7.5
5.0/7.5
8.2
7.5
5.0/7.5
8.2
7.5
5.0/7.5
8.7
7.5
5.0/7.5
9.2
7.5
5.0/7.5
9.2
10.0
10.0
10.0
10.0
10.0
10.0
15.0
15.0
15.0
15.0
5.0/7.5/10.0
5.0/7.5/10.0
5.0/7.5/10.0
5.0/7.5/10.0
5.0/7.5/10.0
5.0/7.5/10.0
5.0/7.5/10.0
5.0/7.5/10.0
5.0/7.5/10.0
5.0/7.5/10.0
10.5
11.0
11.5
12.0
12.5
11.5
13.0
13.5
14.0
0.12
0.15
0.18
0.22
0.27
0.33
15.0
0.39
15.0
0.47
15.0
564
684
824
105
0.56
0.68
0.82
1.0
19.0
19.0
25.5
25.5
16.0
16.5
16.0
16.5
7.0
8.0
7.0
7.5
15.0
15.0
22.5
22.5
5.0/7.5/10.0
5.0/7.5/10.0
15.0
0.6
0.8
0.8
0.8
15.0
When using these capacitors as an across-the-line capcitor, It shall be required to follow to either item1 or item2 condition.
1
2
Capacitors shall be connected in parallel with varistor (below 250V for 125V.a.c. and 470V for 250V.a.c.).
Voltage applied for capacitor shall not exceed 250Vo-p for 125V.a.c. and 630Vo-p for 250V.a.c.
When using our capacitors, please consider the application notes and contact Nissei for any additional
technical specifications relating to the limits of our performance characteristics.