Design, Specifications are subject to change without notice. Ask factory for technical specifications before purchase and/or use.
Whenever a doubt about safety arises from this product, please inform us immediately for technical consultation without fail.
Plastic Film Capacitors
Stacked Metallized PEN Film Chip Capacitor
Type: ECWU(V16)
Stacked metallized PEN film dielectric with simple mold-
less construction
Features
Small in size
For reflow soldering
RoHS directive compliant
Recommended Applications
DC Blocking for xDSL
Explanation of Part Numbers
1234567891011
E C W U 2 V
Product code
Dielectric
&
construction
Rated voltage
Capacitance Suffix
1 6
2 250 VDC V16 for xDSL,Withstand voltage:400 VDC
Cap.tol : ±5 %
Construction Dimensions in mm (not to scale)
Application of this capacitor is limited to DC Blocking for xDSL, such as ADSL.
Please consult us for 400 VDC rating product.
Specifications
Capacitance tolerance
Capacitance range
Withstand voltage
Category temp.range
(Including temperature-rise on unit surface)
Between terminals
400 VDC 60 s
Soldering conditions
Insulation resistance (IR)
Dissipation factor (tan )
Reflow soldering :
240 ˚C max. and 60 sec max. at more than 220 ˚C (Temp. at cap. surface)
(Please consult us for Reflow 250 ˚C max product.)
tan
<
=
1.0 % (20 ˚C, 1 kHz)
IR
>
=
3000 MΩ(20 ˚C, 100 VDC, 60 s)
55 ˚C to +85 ˚C
0.0010 µF to 0.12 µF (E12)
±5 %(J)
Rated voltage 250 VDC
Size code
E1
E2
E3a
E3
D2
D3
D4
D5
B
4.8
4.8
4.8
4.8
6.0
6.0
6.0
6.0
6.0
3.3
3.3
3.3
3.3
4.1
4.1
4.1
4.1
5.0
1.4
2.0
2.4
2.8
2.0
2.4
2.8
3.2
LHW
Refer to the column
Rating, Dimensions
& Quantity
”.
p Œ ¯ / P32-P 10.08.19 10:03 PM y [ W 25
Design, Specifications are subject to change without notice. Ask factory for technical specifications before purchase and/or use.
Whenever a doubt about safety arises from this product, please inform us immediately for technical consultation without fail.
Plastic Film Capacitors
Rating, Dimensions & Quantity/Reel
Capacitance tolerance : ±5 %(J)
Taping Specification for Automatic Mounting
Refer to the page of taping specifications.
0.0010
0.0012
0.0015
0.0018
0.0022
0.0027
0.0033
0.0039
0.0047
0.0056
0.0068
0.0082
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
0.12
ECWU2102V16 4.8 3.3 1.4 E1
ECWU2122V16 4.8 3.3 1.4 E1
ECWU2152V16 4.8 3.3 1.4 E1
ECWU2182V16 4.8 3.3 1.4 E1
ECWU2222V16 4.8 3.3 1.4 E1
ECWU2272V16 4.8 3.3 1.4 E1
ECWU2332V16 4.8 3.3 1.4 E1
ECWU2392V16 4.8 3.3 1.4 E1
ECWU2472V16 4.8 3.3 1.4 E1
ECWU2562V16 4.8 3.3 1.4 E1
ECWU2682V16 4.8 3.3 1.4 E1
ECWU2822V16 4.8 3.3 1.4 E1
ECWU2103V16 4.8 3.3 1.4 E1
ECWU2123V16 4.8 3.3 1.4 E1
ECWU2153V16 4.8 3.3 1.4 E1
ECWU2183V16 4.8 3.3 2.0 E2
ECWU2223V16 4.8 3.3 2.0 E2
ECWU2273V16 4.8 3.3 2.4 E3a
ECWU2333V16 4.8 3.3 2.8 E3
ECWU2393V16 6.0 4.1 2.0 D2
ECWU2473V16 6.0 4.1 2.4 D3
ECWU2563V16 6.0 4.1 2.8 D4
ECWU2683V16 6.0 4.1 3.2 D5
ECWU2823V16 6.0 5.0 3.2 B
ECWU2104V16 6.0 5.0 3.8 B
ECWU2124V16 6.0 5.0 4.5 B
3000
2000
3000
1500
2000
Recommened for Land Dimensions (mm)
Size code
Land dimensions for
reflow soldering
ABC
E1, E2, E3a, E3 2.6 6.6 3.0
D2, D3, D4, D5
3.8 7.8 3.8
B 3.8 7.8 4.6
Cap.
(µF)
Rated volt. 250 VDC
Part No
Dimensions (mm)
LWH
Size
code Q'ty
It is not warrantable that you can mount the capacitor without trouble under all the mounting condition when
“Recommender for Land dimensions” is adopted.
p Œ ¯ / P32-P 10.08.19 10:03 PM y [ W 26
at 1kHz
at 1kHz
at DC 100V
ECWU (V16) Type DC250V series
Temperature Characteristics Frequency Characteristics
Electrical Characteristics < Typical Data >
(Stacked Metallized Film)
Frequency (kHz)Temperature (Degree C)
Frequency (kHz)Temperature (Degree C)
Frequency (kHz)Temperature (Degree C)
-10
-5
0
5
10
110 100 1000 10000
0.12uF
0.010pF
1000pF
0
2
4
6
8
10
110 100 1000 10000
0.12uF
0.010pF
1000pF
0
2
4
6
8
10
-60 -40 -20 020 40 60 80 100120140
From 1000pF to 0.12uF
0.01
0.1
1
10
100
1000
10000
110 100 1000 10000 100000
0.12uF
0.010pF
1000pF
-10
-5
0
5
10
-60 -40-20 020 40 60 80 100120140
From 1000pF to 0.12uF
1.E+06
1.E+07
1.E+08
1.E+09
1.E+10
1.E+11
1.E+12
-60 -40-20 020 40 60 80 100120140
From 1000pF to 0.12uF
Capacitance change(%)
Capacitance change(%)
Dissipation factor(%)
Dissipation factor(%)
Insuration resistance(ohm)
Impedance(ohm)
(for xDSL)
ECWU (V16) Type DC250V series
Applicable Specifications
(Stacked Metallized Film)
* Please consult Panasonic if your condition exceeds the above spec.
*The current(0-P) value is calculated using nominal capacitance.
*Permissible voltage graph is the case of sine waveform. When you use this product, peak voltage must not exceed DC rated voltage.
(at sine wave)(at sine wave)
Frequency (kHz)
Effective value (V)
Permissible voltage
10
0.1
100
1
0.1 10 10001100
0.027 uF
1000 pF
~
(at sine wave)
Frequency (kHz)
Effective value (V)
Permissible voltage
10
0.1
100
1
0.1 10 10001100
0.12 uF
0.033 uF
~
0.027 uF
0.022 uF
0.018 uF
0.015 uF
0.010 uF,8200 pF
6800 pF
3900 F
3300 pF
2700 pF
2200 uF
1800 pF
1500 pF
0.012 uF
1200 pF
1000 pF
5600 pF, 4700 pF
Frequency (kHz)
10 100 1000
Effective value (A)
0
1Permissible current
0.5
1
0.068 uF,0.082uF
0.10 uF
0.056 uF
0.047 uF
0.033 uF
0.039 uF
Frequency (kHz)
0.1 10 1000
2
0
3
Effective value (A)
Permissible current
10.12 uF
100
1
ECWU (V16) Type
Pulse Handling Capability (dv/dt)
(Max 10000cycles)
DC250V series
Applicable Specifications
(Stacked Metallized Film)
* Please consult Panasonic if your condition exceeds the above spec.
*The current(0-P) value is calculated using nominal capacitance.
*Permissible voltage graph is the case of sine waveform. When you use this product, peak voltage must not exceed DC rated voltage.
dv/dt(V/us)
Capacitance
Value(uF)Code
Rating
Voltage Current(0-P)
(A)
DC
250V
dv/dt(V/us)
240
Capacitance
Value(uF)
0.039
0.047
0.056
0.068
0.082
Code
393
473
563
683
823
Rating
Voltage Current(0-P)
(A)
9.36
11.28
13.44
16.32
19.68
DC
250V
0.10
0.12
104
124
24.00
28.80
615
0.0010
0.0012
0.0015
0.0018
0.0022
102
122
152
182
222
0.62
0.74
0.92
1.11
1.35
360
0.0027
0.0033
0.0039
0.0047
0.0068
272
332
392
472
562
1.66
2.03
2.40
1.69
2.02
0.0082
0.010
0.012
0.015
0.018
682
822
103
123
153
2.45
2.95
3.60
4.32
5.40
0.022
183 6.48
0.027
223 7.92
0.033
273 9.72
333 11.88
0.0056
Voltage Derating by Temperature
Surface Temperature of Capacitor(Degree C)
-60 40-40 -20 0 20 60 80 100 120140
DC Rated Voltage (V)
0
100
150
250
300
50
200
Panasonic Caution about Safety in Use
Design
Specifications are subject to change without notice. Ask factory for technical specifications before purchase and/or use.
Whenever a doubt about safety arises from this product, please inform us immediately for technical consultation without fail. Sep. 2008
11
2.4.2 Cautions for use of soldering iron
Be careful that the soldering irons do not directl y touc h
the main body of the chip film capacitor. In particular,
don’t touch the side (cut section). If touched by the
heated soldering iron, lo wering of insulation resistance,
shortcircuit or other characteristic deterioration may
occur.
Preheat the printed wining board lan d sufficiently with
the soldering iron, and then solder. Solder without directly
touching the iron tip to the electrode of the capacitor.
Don’t reuse the products once removed by the soldering
irons.
Should not mount the chip film capacitors in the mass
production by soldering iron. (The temperature
control is difficult, and the characteristics may
be deteriorated.)
Should not resolder with heat directly from
bottom side of P. W. Board. because capacitor will likely
be damaged.
3. Washing the mounted boards
3.1. Washing of chip type
Since the chip type capacitor does not
have a coating, component s of flux or detergent lef t over
on the element at the time of washing may be activated
and invade into the inside of the capacitor,
and adverse effects may be caused. Observe the
following cautions.
In the case of washing, use flux and cre am solder with
halogen content of 0.1wt.% or less when mounting.
In the case of ultrasonic washing, note tha t peeling of
protective film, electrode separation due to resonance,
or characteristic deterioration may occur depending on
the detergent used or ultrasonic output. Ch eck
carefully beforehand.
When using a CFC substitute deterge nt, with the
washing method of spraying detergent (rinsing water)
to the substrate at high pressure, the
protective film on the element surface may
be peeled off due to the water pressure. Check
carefully beforehand.
Usable detergent and washing method
(Usable detergent
Classification Detergent name Maker
Alcohol derivative IPA (isopropyl alcohol) (Reagent for general industri al use)
Halogenated hydrocarbon AK-225AES Asahi Glass Co.
(Washing method)
Condition
Item Temperature T ine
Immersion washing 50 Within 5 minutes
Steam washing 50 Within 5 minutes
Ultrasonic washing 50 Within 5 minutes
<CFC substiture detergent>
As a result of regulation of CFC and chlorine derivative
detergents, many substitute detergents come to be used,
but the performance of the chip type capacitor may be
reduced depending on the type of detergent or washing
condition. Check sufficiently beforehand. Consult us in
advance if planning to use CFC substitute de t ergent.
<Drying after washing>
Dry after washing so that the detergent is not left over. If
drying is insufficient, the detergent is left over on the
element surface, and the insulation resistance is measured
to be lowered. Dry enough so as not to leave deterg ent.
3.2. Washing of leaded type
The film capacitor varies significantly in the effect of
washing depending on the structure and material, and
generally it is less affected by CFC or alcohol
derivative washing solvent, and is likely to be affected
by highly polar solvent.
The lead type film capacitor is coated with an epoxy
resin excellent in chemical resistance, and is hardly
affected by detergent, but it is recommended to be
washed for short duration.
Applicability of detergents in film capacitors is listed for
reference.
Panasonic Caution about Safety in Use
Design
Specifications are subject to change without notice. Ask factory for technical specifications before purchase and/or use.
Whenever a doubt about safety arises from this product, please inform us immediately for technical consultation without fail. Jul. 2011
12
List of applicability of detergents
Box type
Washing condition Chip type Lead type
ECQUL
Ethanol
Ultrasonic washing or immersion washing for 5 min
Alcohol
Isopropyl alcohol (IPA)
Ultrasonic washing or immersion washing for 5 min
Silicon
FRW-17 Ultrasonic washing for 5 min, 60 ℃
FRW-1N Ultrasonic washing for 5 min, 60 ℃
FRW-100 Steam drying for 1 min, 100
Asahi Clean AK-225AES
Ultrasonic washing or immersion washing for 5 min
Halogen
HCFC141b-MS
Ultrasonic washing or immersion washing for 5 min
P3 Cold Cleaner 225S
Ultrasonic washing for 5 min 60 IPA ultrasonic rinsing for 5 min
at ordinary temperature hot air drying for 5 min, 40
Petroleum
hydrocarbon
Toluene
Ultrasonic washing or immersion washing for 5 min ×
Solvent
Terpene
Terpene Cleaner EC-7
Spray washing for 5 min at ordinary temperature purified water
spraying for 5 min, 50℃ hot air drying for 5 min, 80 ×
Purified water
Ultrasonic washing for 5 min 60
wind-free drying for 5 min, 85 ×
Clean Through 750H
Ultrasonic washing for 5 min, 60 purified water ultrasonic
washing for 5 min, 60 hot air drying for 5 min, 85 ×
Clean Through 750L
Ultrasonic washing for 5 min, 60 purified water ultrasonic
washing for 5 min, 60 hot air drying for 5 min, 85 ×
Clean Through 710M
Ultrasonic washing for 5 min, 60 purified water ultrasonic
washing for 5 min, 60 hot air drying for 5 min, 85 ×
Clean Through LC-841
Ultrasonic washing for 5 min, 60 purified water ultrasonic
washing for 5 min, 60 hot air drying for 5 min, 85 ×
Ultrasonic washing for 5 min, 60 purified water ultrasonic
washing for 5 min, 60 hot air drying for 5 min, 85 ×
Water
Surface active
agent
Shower washing for 1 min, 60 purified water
ultrasonic washing for 5 min, 60 hot air drying for 5 min, 85
×
: Washing enabled × : Washing disabled
: Not confirmed
Wash-free flux
Low residue
flux ULF-500VS
Wash-fre
e
Inactivated flux
AM-173
Washing disabled (x mark) detergent should be avoided because the appearance may be impaired, the characteristic may
be deteriorated, and the reliability cannot be guaranteed