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MKS2G026801H00JN

产品描述Film Capacitor, Polyethylene Terephthalate, 400V, 5% +Tol, 5% -Tol, 0.068uF, 2822,
产品类别无源元件    电容器   
文件大小685KB,共9页
制造商WIMA
官网地址https://www.wima.de/
标准
下载文档 详细参数 全文预览

MKS2G026801H00JN概述

Film Capacitor, Polyethylene Terephthalate, 400V, 5% +Tol, 5% -Tol, 0.068uF, 2822,

MKS2G026801H00JN规格参数

参数名称属性值
是否Rohs认证符合
Objectid762804225
包装说明, 2822
Reach Compliance Codecompliant
Country Of OriginGermany
ECCN代码EAR99
YTEOL6.9
电容0.068 µF
电容器类型FILM CAPACITOR
介电材料POLYETHYLENE TEREPHTHALATE
高度11.5 mm
JESD-609代码e3
长度7.2 mm
负容差5%
端子数量2
最高工作温度100 °C
最低工作温度-55 °C
封装形式Radial
包装方法Roll
正容差5%
额定(AC)电压(URac)200 V
额定(直流)电压(URdc)400 V
系列MKS2
尺寸代码2822
端子面层Tin (Sn)
端子节距5 mm
宽度5.5 mm

MKS2G026801H00JN文档预览

WIMA MKS 2
Metallized Polyester (PET)
Capacitors in PCM 5 mm
D
Special Features
˜
High volume/capacitance ratio
˜
Self-healing
˜
According to RoHS 2011/65/EC
Electrical Data
Capacitance range:
0.01
mF
to 10
mF
(E12-values on request)
Rated voltages:
50 VDC, 63 VDC, 100 VDC, 250 VDC,
400 VDC, 630 VDC
Capacitance tolerances:
±20%, ±10%, ±5%
Operating temperature range:
–55+ C to +100+ C (+125° C available
subject to special enquiry)
Climatic test category:
55/100/21 in accordance with IEC
Insulation resistance
at +20+ C:
U
r
50 VDC
63 VDC
U
test
C
0.33
mF
Test specifications:
In accordance with IEC 60384-2
Test voltage:
1.6 U
r
, 2 sec.
Voltage derating:
A voltage derating factor of 1.25 % per K
must be applied from +85+ C for DC
voltages and from +75+ C for AC
voltages
Reliability:
Operational life
300 000 hours
Failure rate
2 fit (0.5 x U
r
and 40) C)
0.33
mF
< C
10
mF
Typical Applications
For general DC-applications e.g.
˜
By-pass
˜
Blocking
˜
Coupling and decoupling
˜
Timing
Construction
Dielectric:
Polyethylene-terephthalate (PET) film
Capacitor electrodes:
Vacuum-deposited
Internal construction:
Plastic film
Vacuum-deposited
electrode
Metal contact layer
(schoopage)
Terminating wire
10 V
5
x 10
3
M¸ (mean value: 3 x 10
4
M¸)
1000
sec (M¸ x
mF)
(mean value: 3000 sec)
50 V
1
x 10
4
M¸ (mean value: 5 x 10
4
M¸)
1250
sec (M¸ x
mF)
(mean value: 3000 sec)
100
VDC 100 V
1.5
x 10
4
M¸ (mean value: 1 x 10
5
M¸)
3000
sec (M¸ x
mF)
(mean value: 6000 sec)
Measuring time: 1 min.
Dissipation factors
at + 20) C: tan
d
at f
1 kHz
10 kHz
100 kHz
C
0.1
mF
8 x 10
-3
15 x 10
-3
30 x 10
-3
0.1
mF
< C
1.0
mF
8 x 10
-3
15 x 10
-3
C > 1.0
mF
10 x 10
-3
Maximum pulse rise time:
for pulses equal to the rated voltage
Capacitance
mF
Pulse rise time V/msec
max. operation/test
100 VDC 250 VDC 400 VDC
35/350
25/250
20/200
15/150
10/100
50/500
50/500
50/500
25/250
80/800
80/800
80/800
Encapsulation:
Solvent-resistant, flame-retardant plastic
case with epoxy resin seal, UL 94 V-0
Terminations:
Tinned wire.
Marking:
Colour: Red. Marking: Silver/White.
Epoxy resin seal: Red
50 VDC
10/100
8/80
8/80
5/50
3/30
2.5/25
63 VDC
35/350
20/200
15/150
12/120
7.5/75
5/50
3/30
630 VDC
110/1100
90/900
0.01
0.033
0.1
0.68
1.5
...
...
...
...
...
0.022
0.068
0.47
1.0
3.3
4.7
6.8
10
Mechanical Tests
Pull test on pins:
10 N in direction of pins according to
IEC 60068-2-21
Vibration:
6 hours at 10 ... 2000 Hz and 0.75 mm
displacement amplitude or 10 g in
accordance with IEC 60068-2-6
Low air density:
1kPa = 10 mbar in accordance with
IEC 60068-2-13
Bump test:
4000 bumps at 390 m/sec
2
in
accordance with IEC 60068-2-29
11.12
Packing
Available taped and reeled.
Detailed taping information and graphs
at the end of the catalogue.
For further details and graphs please
refer to Technical Information.
33
WIMA MKS
4
WIMA FKP
2
Continuation
D
General Data
Capacitance
0.01
0.015
0.022
0.033
0.047
0.068
0.1
0.15
0.22
0.33
0.47
0.68
1.0
1.5
2.2
3.3
4.7
6.8
10
mF
mF
mF
mF
W
H
50 VDC/30 VAC*
L PCM**
Part number
W
2.5
2.5
2.5
2.5
2.5
2.5
2.5
2.5
3
3.5
3.5
4.5
5
5.5
7.2
7.2
8.5
11
H
6.5
6.5
6.5
6.5
6.5
6.5
6.5
6.5
7.5
8.5
8.5
9.5
10
11.5
13
13
14
16
63 VDC/40 VAC*
L PCM**
Part number
7.2
7.2
7.2
7.2
7.2
7.2
7.2
7.2
7.2
7.2
7.2
7.2
7.2
7.2
7.2
7.2
7.2
7.2
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
MKS2C021001A00_ _ _ _
MKS2C021501A00_ _ _ _
MKS2C022201A00_ _ _ _
MKS2C023301A00_ _ _ _
MKS2C024701A00_ _ _ _
MKS2C026801A00_ _ _ _
MKS2C031001A00_ _ _ _
MKS2C031501A00_ _ _ _
MKS2C032201B00_ _ _ _
MKS2C033301C00_ _ _ _
MKS2C034701C00_ _ _ _
MKS2C036801E00_ _ _ _
MKS2C041001F00_ _ _ _
MKS2C041501H00_ _ _ _
MKS2C042201K00_ _ _ _
MKS2C043301K00_ _ _ _
MKS2C044701M00_ _ _ _
MKS2C046801N00_ _ _ _
2.5
3
3.5
3.5
4.5
5
5.5
7.2
8.5
11
6.5
7.5
8.5
8.5
9.5
10
11.5
13
14
16
7.2
7.2
7.2
7.2
7.2
7.2
7.2
7.2
7.2
7.2
5
5
5
5
5
5
5
5
5
5
MKS2B033301A00_ _ _ _
MKS2B034701B00_ _ _ _
MKS2B036801C00_ _ _ _
MKS2B041001C00_ _ _ _
MKS2B041501E00_ _ _ _
MKS2B042201F00_ _ _ _
MKS2B043301H00_ _ _ _
MKS2B044701K00_ _ _ _
MKS2B046801M00_ _ _ _
MKS2B051001N00_ _ _ _
Capacitance
0.01
0.015
0.022
0.033
0.047
0.068
0.1
0.15
0.22
0.33
0.47
0.68
1.0
1.5
2.2
mF
mF
mF
W
2.5
2.5
2.5
2.5
2.5
2.5
2.5
3.5
3.5
4.5
4.5
5
7.2
8.5
11
H
6.5
6.5
6.5
6.5
6.5
6.5
6.5
8.5
8.5
9.5
9.5
10
13
14
16
L
7.2
7.2
7.2
7.2
7.2
7.2
7.2
7.2
7.2
7.2
7.2
7.2
7.2
7.2
7.2
100 VDC/63 VAC*
PCM**
Part number
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
MKS2D021001A00_ _ _ _
MKS2D021501A00_ _ _ _
MKS2D022201A00_ _ _ _
MKS2D023301A00_ _ _ _
MKS2D024701A00_ _ _ _
MKS2D026801A00_ _ _ _
MKS2D031001A00_ _ _ _
MKS2D031501C00_ _ _ _
MKS2D032201C00_ _ _ _
MKS2D033301E00_ _ _ _
MKS2D034701E00_ _ _ _
MKS2D036801F00_ _ _ _
MKS2D041001K00_ _ _ _
MKS2D041501M00_ _ _ _
MKS2D042201N00_ _ _ _
W
2.5
2.5
2.5
3.5
3.5
3.5
4.5
5
5.5
7.2
8.5
11
H
6.5
6.5
6.5
8.5
8.5
8.5
9.5
10
11.5
13
14
16
L
250 VDC/160 VAC*
PCM**
Part number
5
5
5
5
5
5
5
5
5
5
5
5
MKS2F021001A00_ _ _ _
MKS2F021501A00_ _ _ _
MKS2F022201A00_ _ _ _
MKS2F023301C00_ _ _ _
MKS2F024701C00_ _ _ _
MKS2F026801C00_ _ _ _
MKS2F031001E00_ _ _ _
MKS2F031501F00_ _ _ _
MKS2F032201H00_ _ _ _
MKS2F033301K00_ _ _ _
MKS2F034701M00_ _ _ _
MKS2F036801N00_ _ _ _
7.2
7.2
7.2
7.2
7.2
7.2
7.2
7.2
7.2
7.2
7.2
7.2
* AC voltage: f = 50 Hz; 1.4 x U
rms
+ UDC
U
r
** PCM = Printed circuit module = pin spacing.
Dims. in mm.
6
-2
d
5
PCM
at the pin exit points
(
±
0.5)
W
H
L
Part number completion:
Tolerance:
Packing:
Pin length:
20 % = M
10 % = K
5%=J
bulk = S
6-2 = SD
d = 0.5
P
Rights reserved to amend design data without prior notification.
Taped version see page 148.
Continuation page 35
11.12
34
WIMA MKS 4
WIMA FKP 2
Continuation
D
General Data
Capacitance
0.01
0.015
0.022
0.033
0.047
0.068
mF
W
2.5
2.5
3.5
4.5
4.5
5.5
7.2
8.5
11
H
6.5
6.5
8.5
9.5
9.5
11.5
13
14
16
400 VDC/200 VAC*
L PCM**
Part number
7.2
7.2
7.2
7.2
7.2
7.2
7.2
7.2
7.2
5
5
5
5
5
5
5
5
5
MKS2G021001A00_ _ _ _
MKS2G021501A00_ _ _ _
MKS2G022201C00_ _ _ _
MKS2G023301E00_ _ _ _
MKS2G024701E00_ _ _ _
MKS2G026801H00_ _ _ _
MKS2G031001K00_ _ _ _
MKS2G031501M00_ _ _ _
MKS2G032201N00_ _ _ _
W
5.5
7.2
7.2
7.2
8.5
H
11.5
13
13
13
14
630 VDC/220 VAC*
L PCM**
Part number
7.2
7.2
7.2
7.2
7.2
5
5
5
5
5
MKS2J021001H00_ _ _ _
MKS2J021501K00_ _ _ _
MKS2J022201K00_ _ _ _
MKS2J023301K00_ _ _ _
MKS2J024701M00_ _ _ _
0.1
mF
0.15 „
0.22 „
* AC voltage: f = 50 Hz; 1.4 x U
rms
+ UDC
U
r
** PCM = Printed circuit module = pin spacing.
Dims. in mm.
The values of the WIMA MKM 2 and
WIMA MKI 2 ranges according to the
main catalogue 2009 are still available
on request.
Part number completion:
Tolerance:
Packing:
Pin length:
20 % = M
10 % = K
5%=J
bulk = S
6-2 = SD
Taped version see page 148.
Impedance change with frequency
(general guide).
Rights reserved to amend design data without prior notification.
Permissible AC voltage in relation to
frequency at 10) C internal tempera-
ture rise (general guide).
11.12
35
D
Recommendation for Processing
and Application of
Through-Hole Capacitors
Soldering Process
A preheating of through-hole WIMA
capacitors is allowed for temperatures
T
max
100 ° C.
In practice a preheating duration of
t
5 min. has been proven to be best.
Single wave soldering
Soldering bath temperature: T
260 ° C
Immersion time:
t
5 sec
Double wave soldering
Soldering bath temperature: T
260 ° C
Immersion time:
2 x t
3 sec
Due to different soldering processes and
heat requirements the graphs are to be
regarded as a recommendation only.
Wave soldering
T
260
240
220
200
180
160
140
120
100
80
60
40
20
[°C]
see detail-
enlargement
2s
3s
10 s
t
30
60
90
120
150
180
210
240 [sec]
Typical temperature/time graph for double wave soldering
WIMA Quality and Environmental Philosophy
ISO 9001:2008 Certification
ISO 9001:2008 is an international basic
standard of quality assurance systems for
all branches of industry. The approval
according to ISO 9001:2008 of our
factories by the VDE inspectorate certifies
that organisation, equipment and moni-
toring of quality assurance in our factories
correspond to internationally recognized
standards.
WIMA Environmental Policy
All WIMA capacitors, irrespective of
whether through-hole devices or SMD,
are made of environmentally friendly
materials. Neither during manufacture
nor in the product itself any toxic
substances are used, e.g.
Lead
PCB
CFC
Hydrocarbon chloride
Chromium 6+
PBB/PBDE
Arsenic
Cadmium
Mercury
etc.
RoHS Compliance
According to the RoHS Directive 2011/65/EC
certain hazardous substances like e.g. lead,
cadmium, mercury must not be used any
longer in electronic equipment as of July 1st,
2006. For the sake of the environment WIMA
has refraind from using such substances since
years already.
WIMA WPCS
The WIMA Process Control System (WPCS)
is a quality surveillance and optimization
system developed by WIMA. WPCS is a
major part of the quality-oriented WIMA
production. Points of application of WPCS
during production process:
incoming material inspection
metallization
film inspection
schoopage
pre-healing
pin attachment
cast resin preparation/
encapsulation
100% final inspection
AQL check
We merely use pure, recyclable materials
for packing our components, such as:
carton
cardboard
adhesive tape made of paper
polystyrene
WIMA Kondensatoren sind bleifrei
konform RoHS 2011/65/EC
WIMA capacitors are lead free
in accordance with RoHS 2011/65/EC
Tape for lead-free WIMA capacitors
We almost completely refrain from using
packing materials such as:
foamed polystyrene (Styropor®)
adhesive tapes made of plastic
metal clips
DIN EN ISO 14001:2004
WIMA’s environmental management has
been established in accordance with the
guidelines of DIN EN ISO 14001:2004 to
optimize the production processes with
regard to energy and resources.
14
11.12
D
Typical Dimensions for
Taping Configuration
P
2
P
Vh
H
H
1
W
2
P
1
Diagram 1:
PCM 2.5/5/7.5mm
W
0
D
0
F
P
0
P
d
P
W
W
1
H
1
t
P
1
P
1
H
d
F
P
0
P
2
F
P
2
d
P
0
Diagram 2: PCM 10/15 mm
Diagram 3: PCM 22.5 and 27.5*mm
*PCM 27.5 taping possible with two feed holes between components
Dimensions for Radial Taping
Designation
Carrier tape width
Hold-down tape width
Hole position
Hold-down tape position
Feed hole diameter
Pitch of component
Feed hole pitch
Feed hole centre
to pin
Hole centre to
component centre
Feed hole centre to bottom
edge of the component
Feed hole centre to top
edge of the component
Pin spacing at
upper edge of carrier tape
Pin diameter
Component alignment
Total tape thickness
Package
(see also page 149)
Unit
Dims in mm.
Symbol
PCM 2.5 taping
W
W
0
W
1
W
2
D
0
P
P
0
P
1
P
2
H
H
1
F
d
Dh
t
18.0
p0.5
6.0
for hot-sealing
adhesive tape
PCM 5 taping
18.0
p0.5
6.0
for hot-sealing
adhesive tape
PCM 7.5 taping
18.0
p0.5
12.0
for hot-sealing
adhesive tape
PCM 10 taping*
18.0
p0.5
12.0
for hot-sealing
adhesive tape
PCM 15 taping*
18.0
p0.5
12.0
for hot-sealing
adhesive tape
PCM 22.5 taping
18.0
p0.5
12.0
for hot-sealing
adhesive tape
PCM 27.5 taping
18.0
p0.5
12.0
for hot-sealing
adhesive tape
9.0
p0.5
0.5 to 3.0 max.
4.0
p0.2
12.7
p1.0
12.7
cumulative pitch
p0.3
error max.
1.0 mm/20 pitch
9.0
p0.5
0.5 to 3.0 max.
4.0
p0.2
12.7
p1.0
12.7
cumulative pitch
p0.3
error max.
1.0 mm/20 pitch
9.0
p0.5
0.5 to 3.0 max.
4.0
p0.2
12.7
p1.0
12.7
cumulative pitch
p0.3
error max.
1.0 mm/20 pitch
9.0
p0.5
0.5 to 3.0 max.
4.0
p0.2
25.4
p1.0
12.7
cumulative pitch
p0.3
error max.
1.0 mm/20 pitch
9.0
p0.5
0.5 to 3.0 max.
4.0
p0.2
25.4
p1.0
12.7
cumulative pitch
p0.3
error max.
1.0 mm/20 pitch
9.0
p0.5
0.5 to 3.0 max.
4.0
p0.2
38.1
p1.5
12.7
p0.3
7.8
p0.7
19.05
p1.3
16.5
p0.5
18.5
p0.5
H+H
component
< H
1
30.0 to 43.0
22.5
p0.8
0.8
–0.05
p
3.0 max.
0.7
p0.2
54
p2
B 60
p2
68
p2
depending
on PCM and
component dimensions
+0,08
cumulative pitch
error max.
1.0 mm/20 pitch
9.0
p0.5
0.5 to 3.0 max.
4.0
p0.2
*
38.1
p1.5
or 50.8
p1.5
12.7
p0.3
5.3
p0.7
19.05
p1.3
16.5
p0.5
18.5
p0.5
H+H
component
< H
1
35.0 to 45.0
27.5
p0.8
0.8
–0.05
p
3.0 max.
0.7
p0.2
+0.08
cumulative pitch
error max.
1.0 mm/20 pitch
5.1
p0.5
6.35
p1.3
16.5
p0.3
18.5
p0.5
H+H
component
< H
1
32.25 max.
2.5
p0.5
0.4
p0.05
p
2.0 max.
0.7
p0.2
3.85
p0.7
6.35
p1.3
16.5
p0.3
18.5
p0.5
H+H
component
< H
1
32.25 max.
5.0
+0.8
–0.2
2.6
p0.7
6.35
p1.3
16.5
p0.5
18.5
p0.5
H+H
component
< H
1
24.5 to 31.5
7.5
p0.8
7.7
p0.7
12.7
p1.3
16.5
p0.5
18.5
p0.5
H+H
component
< H
1
25.0 to 31.5
10.0
p0.8
+0.06
5.2
p0.7
12.7
p1.3
16.5
p0.5
18.5
p0.5
H+H
component
< H
1
26.0 to 37.0
15
p0.8
+0,06
0.5
p0.05
p
2.0 max.
0.7
p0.2
ROLL/AMMO
0.5
p0.05
or
0.6
–0.05
0.5
p0.05
or
0.6
–0.05
0.8
–0.05
p
3.0 max.
0.7
p0.2
AMMO
+0,08
p
3.0 max.
0.7
p0.2
p
3.0 max.
0.7
p0.2
52
p2
B 58
p2
or
66
p2
REEL
P
360 max.
P
30
p1
B
52
p2
58
p2
depending on
comp. dimensions
REEL
P
360 max.
P
30
p1
REEL
P
500 max.
P
25
p1
see details page 150.
Please clarify customer-specific deviations with the manufacturer.
Diameter of pins see General Data.
148
11.12
*
PCM 10 and PCM 15 can be crimped to PCM 7.5.
Position of components according to PCM 7.5 (sketch 1). P
0
= 12.7 or 15.0 is possible
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