Loose
Fig.1
Taped
Fig.2
R84
MKT Series
METALLIZED POLYESTER FILM CAPACITOR
MULTIPURPOSE APPLICATIONS
Typical applications:
high frequency coupling and
decoupling, pulse coupling, by-passing.
PRODUCT CODE:
R84
All dimensions are in mm
p = 7.5 mm
NOT FOR NEW DESIGNS. PLEASE USE SERIES R66 INSTEAD.
PRODUCT CODE SYSTEM
The part number, comprising 14 digits, is formed as follows:
1 2 3 4 5 6 7 8 9 10 11 12 13 14
GENERAL TECHNICAL DATA
Dielectric:
polyester film (polyethylene terephthalate).
Plates:
aluminium layer deposited by evaporation under
vacuum.
Winding:
non-inductive type.
Leads:
tinned wire.
Protection:
plastic case, epoxy resin filled.
Box material is solvent resistant and flame
retardant according to UL94 V0.
Marking:
Manufacturer’s logo, capacitance, tolerance,
D.C. rated voltage.
Climatic category:
55/100/56 IEC 60068-1
Operating temperature range:
-55 to +105_C
Related documents:
IEC 60384-2; CECC 30400
Detail specifications:
CECC 30401-009
Winding scheme
R8 4
Digit 1 to 3
Digit 4
Series code.
d.c. rated voltage:
D = 63V
M = 400V
E = 100V
P = 630V
--
I = 250V
Pitch: D = 7.5 mm
Digits 7 - 8 - 9 indicate the first three digits of
Capacitance value and the 6th digit indicates
the number of zeros that must be added to
obtain the Rated Capacitance in pF.
Digit 10 to 11 Mechanical version and/or packaging (table 1)
Digit 12
Identifies the dimensions and electrical
characteristics.
Digit 13
Internal use
Digit 14
Capacitance tolerance:
J=5%; K=10%; M=20%
Digit 5
Digit 6 to 9
single sided metallized
polyester film
Table 1 (for more detailed information, please refer to page 14).
Standard
packaging style
AMMO-PACK
AMMO-PACK
REEL
⊘
355mm
Loose, short leads
Loose, long leads
4
+2
17
1
Lead
length
(mm)
Taping
style
Figure No.
1
2
1
Ordering
code
(
Digit 10 to 11)
DQ
28
CK
AA
Z3
Note: Ammo-pack is the preferred packaging for taped version.
37
Last revised in March 2000
R84
MKT Series
METALLIZED POLYESTER FILM CAPACITOR
MULTIPURPOSE APPLICATIONS
p = 7.5 mm
PRODUCT CODE:
R84
Rated
Cap.
0.068mF
0.10mF
0.15mF
0.22mF
0.33mF
0.47mF
0.68mF
1.0mF
63Vdc/40Vac
B
3.5
3.5
3.5
4.0
4.0
5.0
5.0
6.0
H
6.5
6.5
6.5
9.0
9.0
11.0
11.0
12.0
L
10.5
10.5
10.5
10.5
10.5
10.5
10.5
10.5
p
7.5
7.5
7.5
7.5
7.5
7.5
7.5
7.5
Max
dv/dt
(V/ms)
5
5
5
5
5
5
5
5
Max
dv/dt
(V/ms)
6
6
6
6
6
6
6
Max
dv/dt
(V/ms)
15
15
15
15
15
15
15
15
Max K
0
(V
2
/ms)
0.63 E3
0.63 E3
0.63 E3
0.63 E3
0.63 E3
0.63 E3
0.63 E3
0.63 E3
Max
K
0
(V
2
/ms)
1.2 E3
1.2 E3
1.2 E3
1.2 E3
1.2 E3
1.2 E3
1.2 E3
Max
K
0
(V
2
/ms)
7.5 E3
7.5 E3
7.5 E3
7.5 E3
7.5 E3
7.5 E3
7.5 E3
7.5 E3
Part Number
R84DD 2680
--
0
--
R84DD 3100
--
0
--
R84DD 3150
--
0
--
R84DD 3220
--
0
--
R84DD 3330
--
0
--
R84DD 3470
--
0
--
R84DD 3680
--
0
--
R84DD 4100
--
0
--
Rated
Cap.
3300pF
4700pF
6800pF
0.010mF
0.015mF
0.022mF
0.033mF
Rated
Cap.
400Vdc/200Vac
B
3.5
3.5
3.5
4.0
4.0
5.0
6.0
H
L
6.5 10.5
6.5 10.5
6.5 10.5
9.0 10.5
9.0 10.5
11.0 10.5
12.0 10.5
p
7.5
7.5
7.5
7.5
7.5
7.5
7.5
Max
dv/dt
(V/ms)
30
30
30
30
30
30
30
Max
dv/dt
(V/ms)
40
40
40
40
40
40
40
40
Max
K
0
(V
2
/ms)
24 E3
24 E3
24 E3
24 E3
24 E3
24 E3
24 E3
Max
K
0
(V
2
/ms)
50 E3
50 E3
50 E3
50 E3
50 E3
50 E3
50 E3
50 E3
Part Number
R84MD1330
--
0
--
R84MD1470
--
0
--
R84MD1680
--
0
--
R84MD2100
--
0
--
R84MD2150
--
0
--
R84MD2220
--
0
--
R84MD2330
--
0
--
630Vdc/220Vac*
B
3.5
3.5
3.5
4.0
4.0
4.0
5.0
6.0
H
L
6.5 10.5
6.5 10.5
6.5 10.5
9.0 10.5
9.0 10.5
9.0 10.5
11.0 10.5
12.0 10.5
p
7.5
7.5
7.5
7.5
7.5
7.5
7.5
7.5
Part Number
R84PD 1100
--
0
--
R84PD 1150
--
0
--
R84PD 1220
--
0
--
R84PD 1330
--
0
--
R84PD 1470
--
0
--
R84PD 1680
--
0
--
R84PD 2100
--
0
--
R84PD 2150
--
0
--
Rated
Cap.
0.033mF
0.047mF
0.068mF
0.10mF
0.15mF
0.22mF
0.33mF
100Vdc/63Vac
B
3.5
3.5
4.0
4.0
4.0
5.0
5.0
H
6.5
6.5
9.0
9.0
9.0
11.0
11.0
L
10.5
10.5
10.5
10.5
10.5
10.5
10.5
p
7.5
7.5
7.5
7.5
7.5
7.5
7.5
Part Number
R84ED 2330
--
0
--
R84ED 2470
--
0
--
R84ED 2680
--
0
--
R84ED 3100
--
0
--
R84ED 3150
--
0
--
R84ED 3220
--
0
--
R84ED 3330
--
0
--
1000pF
1500pF
2200pF
3300pF
4700pF
6800pF
0.010mF
0.015mF
Rated
Cap.
0.010mF
0.015mF
0.022mF
0.033mF
0.047mF
0.068mF
0.10mF
0.15mF
250Vdc/160Vac
B
3.5
3.5
3.5
4.0
4.0
5.0
5.0
6.0
H
6.5
6.5
6.5
9.0
9.0
11.0
11.0
12.0
L
10.5
10.5
10.5
10.5
10.5
10.5
10.5
10.5
p
7.5
7.5
7.5
7.5
7.5
7.5
7.5
7.5
Part Number
R84ID 2100
--
0
--
R84ID 2150
--
0
--
R84ID 2220
--
0
--
R84ID 2330
--
0
--
R84ID 2470
--
0
--
R84ID 2680
--
0
--
R84ID 3100
--
0
--
R84ID 3150
--
0
--
Mechanical version and packaging (Table 1)
Internal use
Tolerance: J (5%); K (10%); M (20%)
Mechanical version and packaging (Table 1)
Internal use
Tolerance: J (5%); K (10%); M (20%)
All dimensions are in mm.
Note:
If the working voltage (V) is lower than the rated voltage (V
R
), the capacitor may work at higher dv/dt. In this case the
maximum value allowed is obtained multiplying the above value (see table dv/dt) with the ratio V
R
/V.
The pulse characteristic K
0
depends on the voltage wave-form and in any case it cannot overcome the value given in
the above table.
*
Not suitable for across-the-line applications. Please refer to Interference Suppression Capacitors (page 105).
38
Last revised in March 2000
R84
MKT Series
METALLIZED POLYESTER FILM CAPACITOR
MULTIPURPOSE APPLICATIONS
p = 7.5 mm
PRODUCT CODE:
R84
ELECTRICAL CHARACTERISTICS
Rated voltage (V
R
):
063
Vdc - 100 Vdc - 250Vdc
400 Vdc - 630 Vdc
Rated temperature (T
R
):
+85_C
Temperature derated voltage:
for temperatures between +85_C and +105_C a decreasing
factor of 1.25% per degree
_C
on the rated voltage V
R
has to
be applied.
Capacitance range:
1000pF to 1mF
Capacitance values:
E6 series (IEC 60063 Norm).
Capacitance tolerances
(measured at 1 kHz):
5%
(J) ;
10%
(K);
20%
(M).
Total self-inductance
(L):
≈8nH
(Lead length
~2
mm)
Dissipation factor (DF):
tgδ×10
-4
at +25_C
5_C
kHz
1
10
tgδ x
10
-4
≤100
≤150
TEST METHOD AND PERFORMANCE
Damp heat, steady state:
Test conditions
Temperature:
Relative humidity (RH):
Test duration:
Performance
+40_C2_C
93%
2%
56 days
Capacitance change |∆C/C|:
≤5%
DF change (∆tgδ):
≤50×10
-4
at 1kHz
Insulation resistance:
≥50%
of initial limit.
Endurance:
Test conditions
Temperature:
Test duration:
Voltage applied:
Performance
+85_C2_C
2000 h
1.25×V
R
Capacitance change |∆C/C|:
≤5%
DF change (∆tgδ):
≤50×10
-4
at 10kHz
Insulation resistance:
≥50%
of initial limit.
Resistance to soldering heat:
Test conditions
Insulation resistance:
Test conditions
Temperature:
Voltage charge time:
Voltage charge:
Performance
For V
R
≤100
Vdc
+25_C5_C
1 min
50 Vdc for V
R
<100
Vdc
100 Vdc for V
R
≥100
Vdc
≤0.33mF
(50000 MΩ)*
>0.33mF
(5000 s)*
Solder bath temperature:
+260_C5_C
Dipping time (with heat screen):10 s1 s
Performance
Capacitance change |∆C/C|:
≤2%
DF change (∆tgδ):
≤50×10
-4
at 10kHz
Insulation resistance:
≥initial
limit.
Long term stability
(after two years):
Storage
≥
3750MΩ for C
≥
1250 s for C
For V
R
>100 Vdc
standard environmental conditions (see page 10).
Performance
≥30000MΩ
(50000 MΩ)*
* Typical value
Test voltage between terminations:
1.6×V
R
applied for 2 s at +25_C5_C.
Capacitance change |∆C/C|:
≤3%
for C≤0.1mF
≤2%
for C>0.1mF
RELIABILITY
Reference MIL HDB 217
Application conditions:
Temperature:
+40_C2_C
Voltage:
0.5×V
R
Failure rate:
≤2
FIT
-9
failures/components×h)
(1 FIT = 1×10
Failure criteria:
(according to DIN 44122)
Short or open circuit
Capacitance change |∆C/C|: >10%
DF change
(∆tgδ):
>2×initial limit.
Insulation resistance:
<0.005×initial limit.
39
Last revised in March 2000
R84
MKT Series
METALLIZED POLYESTER FILM CAPACITOR
MULTIPURPOSE APPLICATIONS
MAX. VOLTAGE (Vr.m.s.) VERSUS FREQUENCY (sinusoidal wave-form / T
h
≤
40°C)
Note: p (pitch) in mm.
40
Last revised in March 2000