JUM Series Datasheet by Nichicon

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ELECTRIC DOUBLE LAYER CAPACITORS "EVerCAP "
P.51
CAT.8100J
The above mentioned material is according to JEITA RCR-
2370C (issued in July 2008), titled "Safety Application
Guide for electric double layer capacitors" Please refer to
the book for details.
(4)
Do not drop capacitors on the floor, nor use a capacitor
that was dropped.
(5)
Do not damage the capacitor while installing.
(6)
Please confirm that the lead spacing of the capacitor
matches the hole spacing of the P.C. board prior to
installation.
(7)
Snap-in can type capacitor such as JIS style symbol
692 type should be installed tightly to the P.C. board
(allow no gap between the P.C. board an bottom of the
capacitor).
(8)
Hand soldering.
q Soldering condition shall be confirmed to be within
the specification.
w If it is necessary that the leads must be formed due
to a mismatch of the lead space to hole space on the
board, bend the lead prior to soldering without
applying too much stress to the capacitor.
e If you need to remove parts which were soldered,
please melt the solder enough so that stress is not
applied to lead.
r Please pay attention so that solder iron does not
touch any portion of capacitor body.
(9)
Do not tilt lay down or twist the capacitor body after the
capacitor are soldered to the P.C. board.
(10)
Do not carry the P.C. board by grasping the soldered
capacitor.
(11)
Please do not allow anything to touch the capacitor
after soldering. If P.C. board are stored in a stack,
please make sure P.C. board or the other components
do not touch the capacitor.
The capacitors shall not be effected by any radiated
heat from the soldered P.C. board or other components
after soldering.
(12)
Recommended Cleaning Condition
Applicable : Any type, any ratings.
Cleaning Agents
Based Alcohole solvent cleaning agent
Isopropyl Alcohol
Based water solvent cleaning agent
Premium alcohole solvent type
Pine Alpha ST-100S
NewPole B-12
Surfactant type
Clean Through 750HS, 750HN, 750K, 750J
Cleaning Conditions :
Total cleaning time shall be no greater than 5
minutes by immersion, ultrasonic or other method.
(Temperature of the cleaning agent shall be 60°C
maximum.)
After the board cleaning has been completed, the
capacitors should be dried using hot air for a
minimum of 10 minutes.
If the cleaning solution is infiltrated between the case
and the sleeve, the sleeve might soften and swell
when hot air temperature is too high. Therefore, hot
air temperature should not exceed softening
temperature(80°C) of the sleeve.
Insufficient dries after water rinse may cause
appearance problems, such as sleeve shrinking,
bottom-plate bulging.
ln addition, a monitoring of the contamination of
cleaning agents (electric conductivity, pH, specific
gravity, water content, etc.) must be implemented.
After the cleaning, do not keep the capacitors in an
atmosphere containing the cleaning agent or in an
air tight container.
Depending on the cleaning method, the marking on
a capacitor may be erased or blurred.
Consult Nichicon before using a cleaning method or
a cleaning agent other than those recommended.
(13)
Fixing Material and Coating Material
1)
Do not use any affixing or coating materials, which
contain halide substance.
2)
Remove flux and any contamination, which
remains in the gap between the end seal and PC
board.
3)
Please dry the cleaning agent on the PC board
before using affixing or coating materials.
4)
Please do not apply any material all around the
end seal when using affixing or coating materials.
There are variations of cleaning agents, fixing and
coating materials, so please contact those
manufacture or our sales office to make sure that
the material would not cause any problems.
(14)
Others
Wooden package material may be subjected to
fumigation by a halogen(e.g. methyl bromide) before
they are exported in order to protect them against
pests. If devices with aluminum electrolytic capacitors
or capacitors themselves are directly fumigated or
packed with the pallet that is fumigated, the capacitors
may internaIly corrode due to the halogen contents of
fumigation agents.
3.Storage
(1) It is recommended to keep the EDLC under the ambient
temperature of 5°C to 35°C and a relative humidity of 75%
or below.
(2)
Please make sure the ambient storage conditions will be
free from the conditions that are listed in clause 1. "Circuit
Design" at (11).
(3) If 2 years or more have passed without applying voltage to
the part, please contact us because before using the part
as characteristics may have been affected by
environmental conditions.
4.Disposal
(1) Take the following methods in disposing of the EDLC,
hand them over to a waste disposal agent.
(2) When removing a capacitor from the circuit board or when
disposing of capacitor please ensure that the capacitor is
properly discharged.
ELECTRIC DOUBLE LAYER CAPACITORS "EVerCAP "
P.513
CAT.8100J
Item Performance Characteristics
JUM Radial Lead Type, Standard
Standard type (2.7V).
Suitable for quick charge and discharge.
Wide temperature range (
25
to +
70
°C).
Compliant to the RoHS directive (2011/65/EU,(EU)2015/863).
Drawing Type numbering system (Example : 2.7V 10F)
Category Temperature Range
Rated Voltage Range
Rated Capacitance Range
Capacitance Tolerance
Stability at Low Temperature
Endurance
Shelf Life
Humidity Endurance
Marking
– 25 to +70°C
2.7V
1 to 47F
See Note
± 20% , 20°C
Printed with white color letter on black sleeve.
Capacitance (
– 25°C) /
Capacitance (+
20°C)
×100
70%
ESR (
– 25°C) /
ESR (+
20°C)  4
ESR, DCR* Refer to the table below (
20°C
). *DC internal resistance
The specifications listed at right shall be met when the capacitors
are restored to 20°C after the rated voltage is applied for 1000 hours
at 70°C.
The specifications listed at right shall be met when the capacitors
are restored to 20°C after storing the capacitors under no load
for 1000 hours at 70°C.
The specifications listed at right shall be met when the capacitors
are restored to 20°C after the rated voltage is applied for 500 hours
at 40°C 90%RH.
Specifications
φD
P
8
3.5
φd 0.6
10
5.0
0.6
12.5
5.0
0.6
16
7.5
0.8
18
7.5
0.8
J
1
U
2
M
3
T
4
1
5
1
6
0
7
6
8
M
9
H
10
D
11
Configuration
Capacitance tolerance (±20%)
Rated capacitance (10 F)
Rated voltage (2.7V)
Series name
Type
(φD < 10) 1.5
(φD 10) 2.0
L+ MAX. 15MIN 4MIN
φd
φD+0.5MAX
P±0.5
Pressure
relief vent
Sleeve (P.E.T.)
φ D
8 10
Pb-free lead finishing
Pb-free PET sleeve
PD
12.5 to 18 HD
Configuration
(mm)
Rated Voltage
( Code )
Rated
Capacitance
(F)
1.0 105
Code
8 ¥ 11.5
0.47 474 6.3 ¥ 9
2.2 225 8 ¥ 20
3.3 335
2.7V
(T1)
10 ¥ 20
4.7 475 12.5 ¥ 20
10 106 12.5 ¥ 31.5
22 226 16 ¥ 31.5
33 336 18 ¥ 31.5
47 476
2
ESR
(Ω)
(at 1kHz)
4
2
1
0.4
0.2
0.2
0.1
0.1
3
DCR
Typical (Ω)
6
1.3
1.0
0.6
0.25
0.13
0.08
0.06 18 ¥ 40
Case size
φ D ¥ L (mm)
In case L>25 for the φ12.5 dia unit, lead dia φ d=0.8
φD
P
8
3.5
φd 0.6
10
5.0
0.6
12.5
5.0
0.6
16
7.5
0.8
18
7.5
0.8
J
1
U
2
M
3
T
4
1
5
1
6
0
7
6
8
M
9
H
10
D
11
Configuration
Capacitance tolerance (±20%)
Rated capacitance (10 F)
Rated voltage (2.7V)
Series name
Type
(φD < 10) 1.5
(φD 10) 2.0
L+ MAX. 15MIN 4MIN
φd
φD+0.5MAX
P±0.5
Pressure
relief vent
Sleeve (P.E.T.)
φ D
8 10
Pb-free lead finishing
Pb-free PET sleeve
PD
12.5 to 18 HD
Configuration
(mm)
Rated Voltage
( Code )
Rated
Capacitance
(F)
1.0 105
Code
8 ¥ 11.5
0.47 474 6.3 ¥ 9
2.2 225 8 ¥ 20
3.3 335
2.7V
(T1)
10 ¥ 20
4.7 475 12.5 ¥ 20
10 106 12.5 ¥ 31.5
22 226 16 ¥ 31.5
33 336 18 ¥ 31.5
47 476
2
ESR
(Ω)
(at 1kHz)
4
2
1
0.4
0.2
0.2
0.1
0.1
3
DCR
Typical (Ω)
6
1.3
1.0
0.6
0.25
0.13
0.08
0.06 18 ¥ 40
Case size
φ D ¥ L (mm)
In case L>25 for the φ12.5 dia unit, lead dia φ d=0.8
φD
P
8
3.5
φd 0.6
6.3
2.5
0.5
10
5.0
0.6
12.5
5.0
0.6
16
7.5
0.8
18
7.5
0.8
J
1
U
2
M
3
T
4
1
5
1
6
0
7
6
8
M
9
H
10
D
11
Configuration
Capacitance tolerance (20%)
Rated capacitance (10 F)
Rated voltage (2.7V)
Series name
Type
(φD < 10) 1.5
(φD 10) 2.0
L+ MAX. 15MIN 4MIN
φd
φD+0.5MAX
P0.5
Pressure
relief vent
Sleeve (P.E.T.)
φ D
8 10
Pb-free lead finishing
Pb-free PET sleeve
PD
6.3 ED
12.5 to 18 HD
Configuration
(mm)
Rated Voltage
( Code )
Rated
Capacitance
(F)
1105
Code
8
×
11.5
2.2 225 8
×
20
3.3 335
2.7V
(T1)
10
×
20
4.7 475 12.5
×
20
10 106 12.5
×
31.5
22 226 16
×
31.5
33 336 18
×
31.5
47 476
1.8
ESR
(Ω)
(at 1kHz)
1.0
0.6
0.4
0.2
0.07
0.06
0.05
3
DCR
Typical (Ω)
1.3
1.0
0.6
0.25
0.13
0.08
0.06 18
×
40
Case size
φ D
×
L (mm)
In case L>25 for the φ12.5 dia unit, lead dia φ d=0.8
Dimensions
Capacitance change
Capacitance change
ESR
ESR
Within ±30% of the initial capacitance value
Within ±30% of the initial capacitance value
300% or less than the initial specified value
300% or less than the initial specified value
Capacitance change
ESR
Within ±30% of the initial capacitance value
300% or less than the initial specified value
Note :
The capacitance calculated from discharge time (ΔT) with
constant current ( i ) after 30minuite charge with rated
voltage (2.7V).
The discharge current ( i ) is 0.01 × rated capacitance (F).
The discharge time (ΔT) measured between 2V and 1V with
constant current.
The capacitance calculated bellow.
Capacitance (F) = i × ΔT
• Please refer to page 18 for end seal configuration.
The listed DCR value is typical and therefore not a guaranteed value.
JUM
Higher
Capacitance
JUW
JUA
Lower resistance
Long Life

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