DB LECTRO Inc. 3755 Place Java, Suite 140, Brossard, Québec, J4Y 0E4, Canada - T: 1-450-444-1424 / F: 1-450-444-4714 / www.dblectro.com
CHIP TYPE, LOW IMPEDANCE
Low impedance, temperature range up to +105qC
Load life of 1000~2000 hours
Comply with the RoHS directive (2002/95/EC)
SPECIFICATIONS
Items
Operation Temperature Range
Rated Working Voltage
Capacitance Tolerance
Leakage Current
Dissipation Factor max.
Low Temperature Characteristics
(Measurement frequency: 120Hz)
Load Life
(After 2000 hours (1000 hours for 4,
5, 6.3x5.4) application of the rated
voltage at 105°C, capacitors meet the
characteristics requirements listed.)
Shelf Life
Resistance to Soldering Heat
Reference Standard
Characteristics
-55 ~ +105°C
6.3 ~ 50V
±20% at 120Hz, 20°C
I d 0.01CV or 3ȝA whichever is greater (after 2 minutes)
I: Leakage current (PA) C: Normal capacitance (PF)V: Rated voltage (V)
Measurement frequency: 120Hz, Temperature: 20°C
WV 6.3 10 16 25 35 50
tan į0.190.160.140.120.12
0.22
Rated voltage (V) 6.3 10 16 25 35 50
Impedance ratio
ZT/Z20 (max.)
Z(-25°C) / Z(20°C)
Z(-40
Capacitance Change
°
C) / Z(20°C)
Within r20% of initial value
2
5
2 2 2 2 2
44 3 3 3
Dissipation Factor 200% or less of initial specified value
Leakage CurrentInitial specified value or less
After leaving capacitors under no load at 105°C for 1000 hours, they meet the specified value
for load life characteristics listed above.
After reflow soldering according to Reflow Soldering Condition (see page 8) and restored at
room temperature, they meet the characteristics requirements listed as below.
Capacitance Change
Within r10% of initial value
Dissipation FactorInitial specified value or less
Leakage CurrentInitial specified value or less
JIS C-5141 and JIS C-5102
DRAWING (Unit: mm)
Plastic plateform
0.5
f
D
Lr0.3
0.3max.
Cf0.2
0.2
f
B
0.5~0.8
Positive
0.5Max.
Af0.2Af0.2
E
Negative
*Voltage mark for 6.3V is [6V]
DIMENSIONS (Unit: mm)
D x L
A
B
C
E
L
4 x 5.45 x 5.46.3 x 5.46.3 x 7.78 x 10.510 x 10.5
1.8 2.1 2.4 2.4 2.9 3.2
4.3 5.3 6.6 6.6 8.3 10.3
4.3 5.3 6.6 6.6 8.3 10.3
1.0 1.3 2.2 2.2 3.1 4.5
5.4 5.4 5.4 7.7 10.5 10.5
LZ Series
DB LECTRO Inc. 3755 Place Java, Suite 140, Brossard, Québec, J4Y 0E4, Canada - T: 1-450-444-1424 / F: 1-450-444-4714 / www.dblectro.com
DIMENSIONS & MAXIMUM PERMISSIBLE RIPPLE CURRENT
PF
PF
10
15
22
33
47
68
100
150
220
330
470
680
1000
1500
1
1.5
2.2
3.3
4.7
6.8
10
15
22
33
47
68
100
150
220
330
470
WV
6.3 10 16
Case size Impedance R.C. Case size ImpedanceR.C. Case size ImpedanceR.C.
4 x 5.4 3.0 60
4 x 5.4 3.0 60
5 x 5.4
(4 x 5.4)
5 x 5.4
(4 x 5.4)
6.3 x 5.4
(5 x 5.4)
6.3 x 5.4
(5 x 5.4)
6.3 x 7.7
(6.3 x 5.4)
6.3 x 7.7
(6.3 x 5.4)
6.3 x 7.7 0.6 230 8 x 10.5 0.30 450
8 x 10.5 0.30 450 8 x 10.5 0.30 450
8 x 10.5 0.30 450 10 x 10.5 0.15 670 10x 10.5 0.15 670
10 x 10.5
(8 x 10.5)
10 x 10.5 0.15 670
WV
1.8
(3.0)
1.8
(3.0)
1.0
(1.8)
1.0
(1.8)
0.6
(1.0)
0.6
(1.0)
0.15
(0.30)
95
(60)
95
(60)
140
(95)
140
(95)
230
(140)
230
(140)
670
(450)
25 35 50
5 x 5.4
(4 x 5.4)
5 x 5.4
(4 x 5.4)
6.3 x 5.4
(5 x 5.4)
6.3 x 5.4 1.0 140
6.3 x 7.7
(6.3 x 5.4)
6.3 x 7.7
(6.3 x 5.4)
6.3 x 7.7 0.6 230
10 x 10.5 0.15 670 10 x 10.5 0.15 670
1.8
(3.0)
1.8
(3.0)
1.0
(1.8)
0.6
(1.0)
0.6
(1.0)
95
(60)
95
(60)
140
(95)
230
(140)
230
(140)
5 x 5.4
(4 x 5.4)
5 x 5.4
(4 x 5.4)
6.3 x 5.4
(5 x 5.4)
6.3 x 5.4
(5 x 5.4)
6.3 x 7.7
(6.3 x 5.4)
6.3 x 7.7
(6.3 x 5.4)
6.3 x 7.7 0.6 230
8 x 10.5
(6.3 x 7.7)
10 x 10.5
(8 x 10.5)
10 x 10.5
(8 x 10.5)
1.8
(3.0)
1.8
(3.0)
1.0
(1.8)
1.0
(1.8)
0.6
(1.0)
0.6
(1.0)
0.30
(0.6)
0.15
(0.30)
0.15
(0.30)
Case size Impedance R.C. Case size ImpedanceR.C. Case size ImpedanceR.C.
4 x 5.4 3.0 60 4 x 5.4 5.0 30
4 x 5.4 3.0 60 4 x 5.4 5.0 30
4 x 5.4 3.0 60 4 x 5.4 5.0 30
4 x 5.4 3.0 60 4 x 5.4 5.0 30
4 x 5.4 3.0 60 4 x 5.4 3.0 60 5 x 5.4 3.0 50
4 x 5.4 3.0 60 5 x 5.4 1.8 95 6.3 x 5.4 2.0 70
5 x 5.4
(4 x 5.4)
6.3 x 5.4 1.8 95 5 x 5.4 1.8 95 6.3 x 5.4 2.0 70
6.3 x 5.4
(5 x 5.4)
6.3 x 5.4
(5 x 5.4)
6.3 x 7.7
(6.3 x 5.4)
6.3 x 7.7 0.6 230 6.3 x 7.7 0.60 230 8 x 10.5 0.60 300
6.3 x 7.7 0.6 230 8 x 10.5 0.30 450 8 x 10.5 0.60 300
8 x 10.5
(6.3 x 7.7)
8 x 10.5 0.30 450
10 x 10.5
(8 x 10.5)
10 x 10.5 0.15 670 10 x 10.5 0.15 670
1.8
(3.0)
1.0
(1.8)
1.0
(1.8)
0.6
(1.0)
0.30
(0.6)
0.15
(0.30)
Case size ∅D×L (mm),
95
(60)
140
(95)
140
(95)
230
(140)
450
(230)
670
(450)
5 x 5.4
(4 x 5.4)
6.3 x 5.4
(5 x 5.4)
6.3 x 5.4 1.0 140 6.3 x 7.7 1.0 120
6.3 x 7.7
(6.3 x 5.4)
8 x 10.5 0.30 450 10 x 10.5 0.30 500
10 x 10.5
(8 x 10.5)
10 x 10.5 0.15 670
maximum impedance (:) at 20qC 100kHz, ripple current (mA rms) at 105qC 100kHz
1.8
(3.0)
1.0
(1.8)
0.60
(1.0)
0.15
(0.30)
95
(60)
140
(95)
230
(140)
670
(450)
6.3 x 5.4 2.0 70
6.3 x 7.7
(6.3 x 5.4)
6.3 x 7.7 1.0 120
10 x 10.5 0.30 500
1.0
(2.0)
95
(60)
95
(60)
140
(95)
140
(95)
230
(140)
230
(140)
450
(230)
670
(450)
670
(450)
120
(70)
FREQUENCY COEFFICIENT OF ALLOWABLE RIPPLE CURRENT
Frequency 50Hz 120Hz 300Hz 1KHz 10KHz~
Coefficient0.35 0.50 0.64 0.83 1.00
Note: All design and specifications are for reference only and is subject to change without prior notice. If any doubt about safety for
your application, please contact us immediately for technical assistance before purchase.
EXPLANATION OF PART NUMBERS
DB LECTRO Inc. 3755 Place Java, Suite 140, Brossard, Québec, J4Y 0E4, Canada - T: 1-450-444-1424 / F: 1-450-444-4714 / www.dblectro.com
12 3 45 678910 1112 131415161718
ʳ
ʳ
ʳ
ʳ
ʳ
ʳ
(1, 2)
ʳ
Series
ʳ
CS
ʳ
CK
ʳ
SC
ʳ
CN
ʳ
KP
LZ
ʳ
KZ
ʳ
FZ
ʳ
EL
ʳ
KL
ʳ
KH
ʳ
HU
RA
ʳ
RN
RT
RK
RM
RS
LA
LK
LM
LS
NP
NK
NM
NS
BP
TM
TN
SM
SK
Series
(3, 4)
Voltage (WV)Capacitance (PF)
(5~7)
Vol.
Code
(WV)
20D
40G
6.30J
101A
161C
251E
351V
401G
501H
631J
1002A
1602C
2002D
2502E
3152F
3302U
3502V
4002G
4502W
Cap.
(PF)
0.10R1
0.22R22
0.33R33
0.47R47
2.22R2
3.33R3
4.74R7
10100
22220
33330
47470
100101
220221
330331
470471
1000102
2200222
3300332
4700472
10000103
22000223
1010
(15)
SleeveCode
PVC sleeve (White printing) W
PVC sleeve (Black printing) B
PVC sleeve (Golden printing) G
PVC sleeve (Silver printing) A
PET sleeve (Green colour
white printing)
PET sleeve (Purple colour
white printing)
PET sleeve (Yellow colour
black printing)
Code
Chip Type
(8)
To l.
(%)
+10
-10
+15
-15
+20
-20
1
2
3
_
Cap.
Dash
Tol . (% )
(10)
Code
K
L
M
(11)
(16)
RubberCode
PlaneP
ConvexityT
Type
Radial TapingT
Snap-inS
TypeDescriptionsCode
ChipTaping & Reel R
Radial
Lead Forming Cut
Lead Forming Only
Kinked Forming Cut
Kinked Straight Cut
Snap-
in
Dia.() Length (mm)
Lead
Process
TypeCode
ChipC
RadialR
BulkB
Taping
(Forming)
Taping (Straight)
Lead Cut C
Lead Snap-in
W
(17, 18)
Length after cut is 4.5mm 45
Length after cut is 7.5mm 75
Length after cut is 10mm 1A
Sleeve RubberLead Shape
(12)
Dia.
Code
()
3S
4C
5D
6.3E
8F
10G
12H
12.5I
13J
13.5V
14.5A
A
S
F
M
K
Y
Length after cut is 3mm 30
Length after cut is 5mm 50
16K
18L
20M
22N
25O
30P
35Q
40R
Lead Shape Code
Standard00
Not standard01
(13, 14)
Length
Code
(mm)
505
5.454
5.858
707
7.777
909
10.510
1111
1212
1414
1616
2020
2121
2525
2626
3131
3535
3636
4040
4646
CORRESPONDING TO RoHS DIRECTIVE
DB LECTRO Inc. 3755 Place Java, Suite 140, Brossard, Québec, J4Y 0E4, Canada - T: 1-450-444-1424 / F: 1-450-444-4714 / www.dblectro.com
Aluminum electrolytic
capacitors
RoHS compliant Yes Yes Yes
RoHS
restricted
substances
Pb
Chip type Radial lead type Snap-in type
Most concerns
on terminals
Plating on
terminals
Construction of
terminals
Plating
characters
Insulating
sleeve
Resistance to
soldering heat
Solderability No difference with Sn-Pb No difference with Sn-Pb No difference with Sn-Pb
Tensile strength No difference with Sn-Pb No difference with Sn-Pb No difference with Sn-Pb
Change plating from Sn-Pb to SnChange plating from Sn-Pb to SnChange plating from Sn-Pb to
Fe/Cu/Sn Fe/Cu/Sn Fe/Cu/Sn
Plating thickness 12Pm
Plating type matte
No heat treatment after plating
No used
Please see "Lead Free Reflow
Soldering Condition" for chip
type aluminum electrolytic
capacitors
Plating thickness 12Pm
Plating type matte
No heat treatment after plating
Replace PVC with PET
(where customer designated)
No change No change
Sn
Plating thickness 10Pm
Plating type matte
No heat treatment after plating
Replace PVC with PET
(where customer designated)
No difference with Sn-Pb
Room storage test: 20~25qC,
30~80%RH, 4000hrs.
Cleaning agents : Pine Alpha ST-100S, cleaning through 750H/750L/710M, Sanelek B-12, Aqua
Cleaner 210SEP, Techno Care FRW14~17, Isopropyl Alcohol.
Cleaning condition: Total cleaning time shall be within 5 minutes by immersion, ultrasonic or other
DB LECTRO Inc. 3755 Place Java, Suite 140, Brossard, Québec, J4Y 0E4, Canada - T: 1-450-444-1424 / F: 1-450-444-4714 / www.dblectro.com
method. Temperature of the cleaning agent shall be 60qC or lower. After
cleaning, capacitors should be dried using hot air for minimum of 10 minutes
along with the PC board. Hot air temperature should be below the maximum
operating temperature of the capacitor. Insufficient dry after water rinse may
cause appearance problems, sleeve shirk, bottom- plate bulge and such.
e Avoid using ozone destructive substance for cleaning agents to concern about global
environment. Please consult us regarding other cleaning agents or cleaning methods.
3. In The Equipment
1) Do not directly touch terminal by hand.
2) Do not short between terminal by conductor, nor spill conductible liquid such as alkaline or acidic
solution on or near the capacitor.
3) Please make sure that the ambient conditions where the set is installed will be free from spilling water
or oil, direct sunlight, ultraviolet rays, radiation, poisonous gases, vibration or mechanical shock.
4. Maintenance and Inspection
Please periodically inspect the aluminum capacitors that are installed in industrial equipment. The
following Items should be checked:
Appearance: Remarkable abnormality such as vent operation, leaking electrolyte etc.
Electrical characteristic: Capacitance, dielectric loss tangent, leakage current etc., which are specified
in this catalogue.
5. In an Emergency
1) If you see smoke due to operation of safety vent, turn off the main switch or pull out the plug from the
outlet.
2) Do not draw your face to the safety vent since gas over 100qC will be emitted when the safety vent
operates. If the gas has entered your eyes, please flush your eyes immediately in pure water. If you
breathed the gas immediately wash out your mouth and throat with water. Do not ingest electrolyte. If
your skin is exposed to electrolyte, please wash it away using soap and water.
6. Storage
1) Do not keep capacitor in high temperature and high humidity.
Storage conditions should be:
Temperature : +5qC ~ +35qC
Humidity : Lower than 75%
Place : Indoor
2) Avoid ambient conditions where capacitors can be covered with water, brine or oil.
3) Avoid ambient conditions where capacitors are exposed to poisonous gases such as hydrogen sulfide,
sulfurous acid, nitrous acid, chlorine, ammonium etc.
4) Do not keep capacitor in conditions that expose the capacitor to ozone, ultraviolet ray or radiation.
7. Disposal
Please dispose capacitors in either of the following ways:
1) Incinerate capacitors after crushing parts or making a hole on the capacitor body.
2) Bury capacitors in the ground. Please have a disposal specialist do it.
LEAD FREE REFLOW SOLDERING CONDITION
DB LECTRO Inc. 3755 Place Java, Suite 140, Brossard, Québec, J4Y 0E4, Canada - T: 1-450-444-1424 / F: 1-450-444-4714 / www.dblectro.com
(Applicable to Chip Type Aluminum Electrolytic Capacitors)
Recommended Conditions for Reflow Soldering
(1) A thermal condition system such as infrared radiation (IR) or hot blast should be adopted, and
vapor heat transfer systems (VPS) are not recommended.
(2) Reflow soldering should be performed one time. If the capacitor has to be reflowed twice, 30
minutes must be layout between each time.
(3) For lead-free type reflow soldering, please observe proper conditions below:
a) The time of preheating from 150°C to 200°C shall be within maximum 180 seconds;
b) The time of soldering temperature at 217°C measured on capacitors' top shall not exceed
tL (second);
c) The peak temperature on capacitors' top shall not exceed Tp(°C), and the time within 5°C
of actual peak temperature shall not exceed tp (second).
Note: All design and specifications are for reference only and is subject to change without prior notice. If any doubt about safety
for your application, please contact us immediately for technical assistance before purchase.
LIFE OF ALUMINUM ELECTROLYTIC CAPACITORS
DB LECTRO Inc. 3755 Place Java, Suite 140, Brossard, Québec, J4Y 0E4, Canada - T: 1-450-444-1424 / F: 1-450-444-4714 / www.dblectro.com
The life of aluminum electrolytic capacitors is mainly dependent on environmental conditions (e.g.
ambient temperature, humidity etc.) and electrical factors (e.g. operating temperature, ripple current
etc.) Generally, the wear-out mechanism of aluminum electrolytic capacitors is based on evaporation
of electrolyte through the rubber seal. Consequently, the factor of temperature (ambient temperature
and internal heating due to ripple current) is the most critical to electrolytic capacitors life. The effect of
voltage on capacitor life is negligible, especially for low voltage electrolytic capacitors. The lifetime of
aluminum electrolytic capacitors can be expressed as following equations:
= Lox Ktx Kr -------- (1)
L
e
Where:
L
L
K
K
= Expected life at operating temperature Te(h)
e
= Specified life at temperature operating temperature To(h)
o
= Ambient temperature acceleration term
t
= Ripple current acceleration term
r
K
= Lox A -------- (2)
t
(To-Te)/10
Where:
T
T
= Maximum rated operating temperature (qC)
o
= Actual ambient temperature (qC)
e
A = Acceleration coefficient (for the range from 35qC to the maximum operating temperature,
A|2)
(-'T/5)
= 2 -------- (3)
K
r
Where:
'T = An increase in core temperature by internal heating due to ripple current
('T = core temperature – ambient temperature)
'T can be estimated as follows:
2
'T = (I
x R)/(Ex S) -------- (4)
Where:
I = Ripple current of the capacitor (A rms)
R = Equivalent series resistance of the capacitor (:)
2
E = Heat radiation coefficient of the aluminum can (W/qC x cm
S = Surface area of the capacitor (cm
2
)
)
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