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:
polypropylene film.
Plates:
aluminium layer deposited by evaporation under
vacuum.
Winding:
non-inductive type.
tinned wire, low thermical conductivity.
leads:
Protection:
plastic case, thermosetting resin filled.
Box material is solvent resistant and flame
retardant according to UL94.
Marking:
manufacturer’s logo, series (R79), capacitance,
tolerance, D.C. rated voltage.
Climatic category:
55/105/56 IeC 60068-1
Operating temperature range:
-55 to +105°C
Related documents:
IeC 60384-16
Winding scheme
R 7 9
Digit 1 to 3
Digit 4
C
-
series code
d.c. rated voltage:
G = 160V
I = 250V
P = 630V
M = 400V
Digit 5
Pitch: C = 5mm
Digit 6 to 9
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 packaging (table 1)
Digit 12
Identifies the dimensions and electrical
characteristics.
Digit 13
Internal use.
Digit 14
Capacitance tolerance:
H=2.5%; J=5%; K=10%
Table 1 (for more detailed information, please refer to page 14)
Standard
packaging style
AMMo-PACK
ReeL Ø 355mm
Loose, short leads
Loose, long leads
lead length
(mm)
Ordering code
(
Digit 10 to 11)
single sided metallized
polypropylene film
4
+1.5
17
+1/-2
DQ
CK
AA
Z3
Note: Ammo-pack is the preferred packaging for taped version.
09/2008
134
MeTAllIZeD POlyPROPylene FIlM CAPACITOR
MUlTIPURPOSe APPlICATIOnS
p = 5 mm
PRoDUCT CoDe:
R79
MKP series
R79
Rated
Cap.
0.039
0.047
0.056
0.068
0.082
0.10
0.12
0.15
0.18
0.22
µF
µF
µF
µF
µF
µF
µF
µF
µF
µF
160Vdc/70Vac
std dimensions
B
H
L
3.5 7.5 7.2
4.5 9.5 7.2
4.5 9.5 7.2
4.5 9.5 7.2
5.0 10.0 7.2
5.0 10.0 7.2
6.0 11.0 7.2
6.0 11.0 7.2
7.2 13.0 7.2
7.2 13.0 7.2
p
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
5.0
Max
dv/dt
(V/µs)
100
100
100
100
100
100
100
100
100
100
Max K
0
(V
2
/µs)
32 e3
32 e3
32 e3
32 e3
32 e3
32 e3
32 e3
32 e3
32 e3
32 e3
Part number
R79GC2390--4--
R79GC2470--4--
R79GC2560--4--
R79GC2680--4--
R79GC2820--4--
R79GC3100--4--
R79GC3120--4--
R79GC3150--4--
R79GC3180--4--
R79GC3220--4--
Rated
Cap.
3900 pF
4700 pF
5600 pF
6800 pF
8200 pF
0.010 µF
0.012 µF
0.015 µF
0.018 µF
0.022 µF
0.027 µF
0.033 µF
0.039 µF
0.047 µF
Rated
Cap.
1000 pF
1200 pF
1500 pF
1800 pF
2200 pF
2700 pF
3300 pF
3900 pF
4700 pF
5600 pF
6800 pF
8200 pF
0.010 µF
0.012 µF
0.015 µF
0.018 µF
Mechanical version and packaging (Table1)
Internal use
Tolerance: J (±5%); K (±10%)
400Vdc/200Vac
std dimensions
B
H
L
p
3.5 7.5 7.2 5.0
3.5 7.5 7.2 5.0
3.5 7.5 7.2 5.0
3.5 7.5 7.2 5.0
3.5 7.5 7.2 5.0
3.5 7.5 7.2 5.0
4.5 9.5 7.2 5.0
4.5 9.5 7.2 5.0
5.0 10.0 7.2 5.0
5.0 10.0 7.2 5.0
6.0 11.0 7.2 5.0
6.0 11.0 7.2 5.0
7.2 13.0 7.2 5.0
7.2 13.0 7.2 5.0
630Vdc/220Vac*
std dimensions
B
H
L
p
3.5 7.5 7.2 5.0
3.5 7.5 7.2 5.0
3.5 7.5 7.2 5.0
3.5 7.5 7.2 5.0
3.5 7.5 7.2 5.0
3.5 7.5 7.2 5.0
3.5 7.5 7.2 5.0
4.5 9.5 7.2 5.0
4.5 9.5 7.2 5.0
4.5 9.5 7.2 5.0
5.0 10.0 7.2 5.0
5.0 10.0 7.2 5.0
6.0 11.0 7.2 5.0
6.0 11.0 7.2 5.0
7.2 13.0 7.2 5.0
7.2 13.0 7.2 5.0
Max
dv/dt
(V/µs)
400
400
400
400
400
400
400
400
400
400
400
400
400
400
Max
dv/dt
(V/µs)
500
500
500
500
500
500
500
600
600
600
600
600
600
600
600
600
Max K
0
(V
2
/µs)
320 e3
320 e3
320 e3
320 e3
320 e3
320 e3
320 e3
320 e3
320 e3
320 e3
320 e3
320 e3
320 e3
320 e3
Max K
0
(V
2
/µs)
630 e3
630 e3
630 e3
630 e3
630 e3
630 e3
630 e3
630 e3
630 e3
630 e3
630 e3
630 e3
630 e3
630 e3
630 e3
630 e3
Part number
R79MC1390--4--
R79MC1470--4--
R79MC1560--4--
R79MC1680--4--
R79MC1820--4--
R79MC2100--4--
R79MC2120--4--
R79MC2150--4--
R79MC2180--4--
R79MC2220--4--
R79MC2270--4--
R79MC2330--4--
R79MC2390--4--
R79MC2470--4--
Part number
R79PC1100--4--
R79PC1120--4--
R79PC1150--4--
R79PC1180--4--
R79PC1220--4--
R79PC1270--4--
R79PC1330--4--
R79PC1390--4--
R79PC1470--4--
R79PC1560--4--
R79PC1680--4--
R79PC1820--4--
R79PC2100--4--
R79PC2120--4--
R79PC2150--4--
R79PC2180--4--
Rated
Cap.
0.012
0.015
0.018
0.022
0.027
0.033
0.039
0.047
0.056
0.068
0.082
0.10
0.12
0.15
µF
µF
µF
µF
µF
µF
µF
µF
µF
µF
µF
µF
µF
µF
250Vdc/160Vac
std dimensions
B
H
L
p
3.5 7.5 7.2 5.0
3.5 7.5 7.2 5.0
3.5 7.5 7.2 5.0
3.5 7.5 7.2 5.0
3.5 7.5 7.2 5.0
3.5 7.5 7.2 5.0
4.5 9.5 7.2 5.0
4.5 9.5 7.2 5.0
4.5 9.5 7.2 5.0
5.0 10.0 7.2 5.0
6.0 11.0 7.2 5.0
6.0 11.0 7.2 5.0
7.2 13.0 7.2 5.0
7.2 13.0 7.2 5.0
Max
dv/dt
(V/µs)
250
250
250
250
250
250
250
250
250
250
250
250
250
250
Max K
0
(V /µs)
125 e3
125 e3
125 e3
125 e3
125 e3
125 e3
125 e3
125 e3
125 e3
125 e3
125 e3
125 e3
125 e3
125 e3
2
Part number
R79IC2120--4--
R79IC2150 --4--
R79IC2180 --4--
R79IC2220 --4--
R79IC2270 --4--
R79IC2330 --4--
R79IC2390 --4--
R79IC2470 --4--
R79IC2560 --4--
R79IC2680 --4--
R79IC2820 --4--
R79IC3100 --4--
R79IC3120 --4--
R79IC3150 --4--
Mechanical version and packaging (Table1)
Internal use
Tolerance: H (±2.5%); J (±5%); K (±10%)
Mechanical version and packaging (Table1)
Internal use
Tolerance: H (±2.5%); J (±5%); K (±10%)
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. The dv/dt test is carried out at 2 times the above values.
*Not suitable for across-the-line applications. Please refer to Interference suppression Capacitors (page 145).
135
09/2008
MeTAllIZeD POlyPROPylene FIlM CAPACITOR
MUlTIPURPOSe APPlICATIOnS
p = 5 mm
PRoDUCT CoDe:
R79
MKP series
R79
eleCTRICAl CHARACTeRISTICS
Rated voltage (V
R
):
160Vdc - 250 Vdc 400 Vdc - 630 Vdc
+85°C
TeST MeTHOD AnD PeRFORMAnCe
Damp heat, steady state:
Test conditions
Rated temperature (T
R
):
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
(d.c. and a.c.) has to be applied.
Capacitance range:
1000pF to 0.22 µF
Capacitance values:
e12 series (IeC 60063 Norm).
Capacitance tolerances
(measured at 1 kHz):
±2.5% (H); ±5% (J); ±10% (K).
Total self-inductance
(L):
≈ 6 nH
(lead length ≈2 mm).
Temperature coefficient
(ppm/°C):
-200 (typical value).
Dissipation factor (DF):
tgd 10
-4
at +25°C ±5°C
kHz
001
010
100
MKP C≤0.1 µF
tgδx10
-4
≤060
≤10
≤30
MKP C>0.1 µF
tgδx10
-4
≤060
≤
10
Temperature:
Relative humidity (RH):
Test duration:
Performance
+40°C±2°C
93%±2%
56 days
Capacitance change |∆C/C |:
≤3%
≤10x10
-4
at 1kHz
DF change (∆tgδ):
Insulation resistance:
≥50%
of initial limit.
endurance:
Test conditions
Temperature:
Test duration:
Voltage applied:
Performance
+85°C±2°C
1000 h
1.25xV
R
Capacitance change |∆C/C |:
≤3%
≤10x10
-4
at 10kHz
DF change (∆tgδ):
Insulation resistance:
≥50%
of initial limit.
Resistance to soldering heat:
Test conditions
solder bath temperature:
+260°C±5°C
Dipping time (with heat screen):10 s±1 s
Capacitance change |∆C/C |:
≤2%
≤10x10
-4
at 10kHz
DF change (∆tgδ):
Insulation resistance:
≥
initial limit.
long term stability
(after two years):
Storage:
standard environmental conditions (see page 12).
Performance
Performance
Dielectric absorption (DA):
0.05%
Insulation resistance:
Test conditions
Temperature:
+25°C±5°C
Voltage charge time:
1 min
Voltage charge:
100Vdc
Performance
≥1x10
5
MΩ (Typ.value: 5x10
5
MΩ)
Test voltage between terminations:
1.6xV
R
applied for 2 s at +25°C±5°C.
Capacitance change |∆C/C |:
≤0.5%
09/2008
136
MeTAllIZeD POlyPROPylene FIlM CAPACITOR
MUlTIPURPOSe APPlICATIOnS
p = 5 mm
PRoDUCT CoDe:
R79
MKP series
R79
MAX. VoLTAGe (Vr.m.s.) VeRsUs FReQUeNCY (sinusoidal wave-form / Th
≤
40°C)
Note: p (pitch) in mm.
137
09/2008
MeTAllIZeD POlyPROPylene FIlM CAPACITOR
MUlTIPURPOSe APPlICATIOnS
p = 5 mm
PRoDUCT CoDe:
R79
MKP series
R79
MAX. CURReNT (Ir.m.s.) VeRsUs FReQUeNCY (sinusoidal wave-form / Th
≤
40°C)
Note: p (pitch) in mm.
Statements of suitability for certain applications are based on our knowledge of typical operating conditions for such applications, but are not intended to constitute –
and we specifically disclaim – any warranty concerning suitability for a specific customer application or use. This Information is intended for use only by customers who
have the requisite experience and capability to determine the correct products for their application. Any technical advice inferred from this Information or otherwise
provided by us with reference to the use of our products is given gratis, and we assume no obligation or liability for the advice given or results obtained.
[i=s]This post was last edited by dcexpert on 2016-8-10 12:40[/i] The latest Flash download software for ESP8266, V3.3.4. It can be used to update the firmware of ESP8266.[color=#ff0000]Note: The baud...
When creating a source program, first use the pseudo-instruction TITLE to provide the program title, then give a general description of the entire program, and use the list pseudo-instruction LIST to ...
This study note is entirely based on the " STM32 Incomplete Manual ". I did not buy Alientek's development board, but ARMFly. In fact, they are similar, but Alientek's onboard resources are very rich,...
How to automatically divide the console data into workstations and display them on the terminal Example: The workstation numbers are divided into A, B, C, D, E, and F and displayed on terminals A, B, ...
Today's automobiles are quite well wired. According to data provided by Delphi Packard Electric, the total length of wires in a luxury car is at least 1.5 miles, and the total length of automotive wir...
Dear experts: I need to develop a wifi driver in WinCE5.0. I have no experience and no idea about it. I am confused and have many questions. I feel that Microsoft's own documents are quite confusing a...
Today, with the increasing integration of functions, mobile phones can also be used as portable media players (PMP), digital cameras, handheld computers (PDAs), and even global positioning systems ...[Details]
introduction
Throughout the history of automotive lighting, power has always played an important role. Initially, cars only needed headlights to see the road in the dark. Later, other light so...[Details]
The Portable Digital Data Acquisition System (PDDAS) uses LabVIEW Real-Time and PXI to control the wind tunnel test and record air pressure data from 128 different channels.
"The LabVIEW Real-...[Details]
All electronic design engineers and scientists have performed electrical signal analysis, or signal analysis for short. Through this basic measurement, they can gain insight into signal details and...[Details]
My colleague and I spent the day chatting in the hotel bar. We had met with several customers. We were both wondering how come these engineers we were meeting knew almost nothing about analog techn...[Details]
In the previous series, we have listed some basic knowledge of C language in Tables 1 to 3. We hope that beginners can strengthen their memory of the above tables and gradually learn to use them wh...[Details]
5. Identifiers and keywords of C language
A complete PIC microcontroller C language program usually consists of six parts: include files (i.e. header files 1, variable definitions, variable de...[Details]
1. Introduction
At present, most lighting equipment still uses traditional energy for lighting. Making full use of solar energy as the energy supply for lighting equipment is of great si...[Details]
Overview:
This paper introduces a method of connecting a CAN-bus network with Ethernet to form a medium-sized remote monitoring/data transmission network.
CAN (Controller Area Network) is ...[Details]
In the analysis of electronic circuits, static analysis (also known as DC analysis) is the basis of circuit analysis. However, it is well known that electronic components are nonlinear, so the anal...[Details]
RS-422 and RS-485 are both serial data interface standards, which were developed and published by the Electronic Industries Association (EIA). RS-422 defines a balanced communication interface with a ...[Details]
Many battery-powered systems require a visual indicator to show when the battery needs to be replaced. LEDs are commonly used for this purpose, but they consume at least 10mA of current. This con...[Details]
I've been studying dot matrix recently. It looks simple, but it takes a while to master it completely! The 8*8 dot matrix hardware circuit I'm making now is like this. The row is driven by 74HC138 + t...[Details]
Experimental tasks
A DS18B20 is used to form a temperature measurement system. The temperature measurement accuracy reaches 0.1 degrees. The temperature range is between -20 degrees and +50 de...[Details]
12v Lead Acid batteries used in trucks, cars, RVs and uninterruptible power supplies are usually rated at 12V. This circuit monitors the battery, the charge and discharge curves, gives the cu...[Details]