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JJC0E408MSEGBN

Description
CAP,NON-SPECIFIED,4KF,2.5VDC,20% -TOL,20% +TOL
CategoryPassive components    capacitor   
File Size51KB,1 Pages
ManufacturerNichicon
Websitehttp://www.nichicon.co.jp
Environmental Compliance  
Download Datasheet Parametric View All

JJC0E408MSEGBN Overview

CAP,NON-SPECIFIED,4KF,2.5VDC,20% -TOL,20% +TOL

JJC0E408MSEGBN Parametric

Parameter NameAttribute value
Is it lead-free?Lead free
Is it Rohs certified?conform to
Objectid1224178808
package instruction,
Reach Compliance Codeunknown
capacitance4000000000 µF
Capacitor typeSPECIAL CAPACITOR
diameter63.5 mm
length150 mm
Manufacturer's serial numberJD
Maximum operating temperature60 °C
Minimum operating temperature-25 °C
Package formScrew Ends
method of packingBulk
Rated (DC) voltage (URdc)2.5 V
seriesJD
Terminal surfaceNOT SPECIFIED
ELECTRIC DOUBLE LAYER CAPACITORS "EVerCAP "
JD
Screw Terminal Type, High Energy Density Type
series
High energy density.
Suitable for electric power storage.
Compliant to the RoHS directive (2002/95/EC).
Specifications
Item
Category Temperature Range
Rated Voltage Range
Rated Capacitance Range
Capacitance Tolerance
Leakage Current
Stability at Temperature
– 25 to + 60°C
2.5V
600 to 4000F
± 20% (20°C)
0.5C (mA) [C : Rated Capacitance (F)] (After 30 minutes' application of rated voltage. 2.5V)
See Note
Performance Characteristics
Capacitance (
– 25°C) /
Capacitance (+
20°C)
×
100
70%
DCR(–25°C) / DCR (+20°C)
7
DCR
*
Endurance
Refer to the list 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 2000 hours
at 60°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 2000 hours at 60°C.
Printed with white color letter on black sleeve.
Capacitance change
DCR
Leakage current
Capacitance change
Within ±30% of the initial capacitance value
300% or less than the
initial value
Less than or equal to the initial specified value
Within ±30% of the initial capacitance value
300% or less than the
initial value
Less than or equal to the initial specified value
Shelf Life
DCR
Leakage current
Marking
Drawing
Type numbering system (Example : 2.5V 600F)
Hexagenal headed bolt
Sleeve
M5(φ35)
M6(φ40)
φ
35,
φ
40
Bottom plate
1
2
3
4
5
6
7
8
9
10 11 12 13 14
Mounting bracket
J J D 0 E 6 0 7 M S E C
Pressure relief vent
Case dia. code
(φ35) (φ35,
φ40)
Configuration
Capacitance tolerance (
±20%
)
Rated capacitance (600F)
Rated voltage (2.5V)
Series name
Type
Configuration
Cr (
111
) Plating
(RoHS compliant)
θ
˚
+
P
A±1
T
φD
Code
C
35
D
40
F
51
63.5 G
φ
D
+2MAX.
W±1
Code less 2-leg brackets
BN
No brackets
(φ51,
φ63.5)
Code less 3-leg brackets
BB
2-leg brackets
No bracket
BN
h
H±0.5
L
+
α
MAX.
r
±1
U
B±1
S
SE
φ
51 and larger
Bottom plate
Hexagenal headed bolt
Sleeve
M6
0
°
12
T
U
S
Pressure relief vent
D
+2MAX.
A
±
2
P
W
±
1
S
h
H
±
1
L
+
α
MAX.
±
1
P
±
2
A
±
2
T
U
30
°
Pressure relief vent
Dimensions
Rated
Voltage
( Code )
Dimensions of mounting bracket
Cap.
code
DCR
Typical (mΩ)
(mm)
L (mm)
13.5
600 607
085
10.0
800 807
105
35
8.5
950 957
135
2.5V
8.0
1000 108
105
40
(0E)
6.0
1300 138
135
4.0
2300 238
135
51
3.5
2500 258
150
2.2
408
4000
150
63.5
The listed DCR value is typical and therefore not a guaranteed value.
φ
D
35
40
51
63.5
Cap.
(F)
Case size
Leg shape
φ
(mm)
Ref. Weight
(g)
Symbol
φ
D
3-Legs
51
32.5
38.5
2-Legs
35
24
29
45
7.0
3.5
10
30
15
10
40
27
32
48
7.0
3.5
10
45
17
12
51
33.2
40
130
160
210
210
250
450
500
800
P
A
B
T
S
U
θ
°
H
h
63.5
38.1
43
63.5
40.5
46.5
7.5
5.0
12
60
20
15
8.0
5.0
14
60
25
20
6.0
4.5
14
30
25
15
7.0
4.5
14
30
35
20
Dimensions of terminal pitch(W) and length(
R
) and Normal dia. of bolt (mm)
W
12.7
18.8
26.0
28.6
R
6
9
10
10
α
3
3
3
3
Nominal of bolt
M5
M6
M6
M6
Note :
The capacitance calculated from discharge time (∆T) with constant
current ( i ) after 30minuite charge with rated voltage (2.5V).
The discharge current ( i ) is 0.01
×
rated capacitance (F).
The discharge time (∆T) measured between 2V and 1V with
constant current.
The capacitance calculated bellow.
Capacitance (F) = i
× ∆T
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