ALUMINUM ELECTROLYTIC CAPACITORS
NX
Screw Terminal Type, High ripple longer life.
series
Suited for use in industrial power supplies for inverter circuitry, etc.
High ripple current, extra-high voltage application.
High reliability, long life for 20,000 hours application of rated ripple
current at +85°C.
Extended range up to
φ
100
×
250L
size.
Flame retardant electroly to type available.
Bushing type for better vibration and insulation also available.
Available for adapted to the RoHS directive (2002/95/EC).
QR
High Speed
charge-
discharge
NX
Long life
NR
Specifications
Item
Performance Characteristics
Category
Temperature Range
Rated
Voltage Range
Rated
Capacitance Range
Capacitance Tolerance
Leakage Current
tan
δ
–
25 ~ +85
°C
350 ~ 630V
1000 ~ 27000
µ
F
± 20%
at 120Hz, 20°C
After 5 minutes' application of rated voltage, leakage current is not more than
3 CV
(
µ
A) or 5 mA, whichever is smaller (at 20°C).
[C : Rated Capacitance(µF), V : Voltage ( V ) ]
See P225 (Measurement frequency : 120Hz,
Rated voltage (V)
Temperature : 20°C)
350 ~ 630
Z
–
25°C / Z+20°C
8
Measurement frequency : 120Hz
Stability at Low Temperature
Impedance ratio ZT/Z20(MAX.)
Endurance
After an application of DC voltage (in the range of rated voltage even after over-lapping the standard ripple current) for 20,000 hours at 85°C, capacitors shall meet the
characteristics requirements indicated at right. (2000 hours at 85°C for the parts rated at 630V, 5000 hours at 85°C for the parts rated at 500V and 550V)
After an application of DC voltage (in the range of rated DC voltage even after
Capacitance change
Within ±20% of initial value
over-lapping the maximum allowable ripple current) for 5000 hours at 85°C,
tan
δ
300% or less of initial specified value
capacitors meet the characteristic requirements listed at right.
Leakage current
Initial specified value or less
After leaving capacitors under no load at 85°C for 1000 hours, they meet the specified value for
endurance
characteristics listed above.
Printed with white color letter on black sleeve.
Shelf Life
Marking
Drawing
Method mount metal bracket
Bottom plate
Method to mount resin bushing (φ76.2 ) (Apply to L=150 or more)
Hexagenal headed bolt
Sleeve
0
°
12
Bottom plate
Sleeve
Resin bushing
Hexagenal headed bolt
φ4.5
Pressure
relief vent
Pressure relief vent
83.7
D
+2MAX
W
±
1
h
H
±
1
L
+
MAX.
±
1
P
±
2
B
A
±
2
74.4
L+3MAX.
T
U
105
120
Method to mount resin bushing (φ90) (Apply to L=150 or more)
U
S
Bottom plate
Sleeve
Resin bushing
Hexagenal headed bolt
°
120
B
3-leg brackets for
φ90
capacitors have different
hole shapes from the ordinary ones illustrated
below.
P
Pressure
relief vent
31.8±1
T
102.5
95.5
A
±
2
P
65.7
5
L+3MAX.
57.5
63.5
φ6.0
Pressure relief vent
7
30
°
Dimension of terminal pitch (W) and length (
R
) and Nominal dia.of bolt
φD
51
63.5
76.2
90
100
W
22.0
28.6
31.8
31.8
41.5
R
6
6
6
6
10
α
3
3
3
3
4
M5
M5
M5
M5
M8
(mm)
Type numbering system
(Example :
450V 2200µF)
1
2
3
4
5
6
7
8
9
10 11
12 13 14
Mounting bracket
Nominal dia. of bolt
L N X 2W 2 2 2 M S E
Case dia. code
Dimensions of mounting bracket
Leg shape
3--Leg
Symbol
(mm)
2--Leg
90
50.8
58.5
8.0
5.0
18
60
35
25
100
56.3
62
8.0
5.0
16
60
36
30
51
33.2
40
6.0
4.5
14
30
25
15
63.5
40.5
46.5
7.0
4.5
14
30
35
20
76.2
46.5
53
6.0
4.5
14
30
35
20
90
53
59
6.0
4.5
14
30
35
20
Configuration
Capacitance tolerance(
±20%
)
Rated Capacitance(2200µF)
Rated voltage(450V)
Series name
Type
Configuration
Cr (III) Plating
(RoHS compliant)
Cr (VI) Plating
φD
P
A
T
S
U
°
H
h
51
32.5
38.5
7.5
5.0
12
60
20
15
63.5
38.1
43
8.0
5.0
14
60
25
20
76.2
44.5
49.2
7.0
5.0
14
60
30
24
φD
Code
F
51
63.5 G
76.2 H
J
90
K
100
Code less 3-leg brackets
2-leg brackets
BB
No brackets
BN
SE
SM
Resin bushing available upon request.
Dimension table in next page.
Please contact to us if PVCless products are required.
CAT.8100U
31.8± 1
88.2
S
ALUMINUM ELECTROLYTIC CAPACITORS
NX
V
(
Surge
)
(Code)
series
Dimensions
Cap.(µF)
Case size
φ
D×L(mm)
Standard
ripple
(Arms) 1
Rated
ripple
(Arms) 2
Leakage
tan
δ
current
(MAX)
(mA MAX) 3
Code
V
(
Surge
)
(Code)
Cap.(µF)
Case size
φ
D×L(mm)
Standard
ripple
(Arms) 1
Rated
ripple
(Arms) 2
Leakage
tan
δ
current
(MAX)
(mA MAX) 3
Code
1000
1200
1500
1800
2200
2700
3300
3900
350V
(400)
(2V)
4700
5600
6800
8200
10000
12000
15000
18000
22000
27000
1000
1200
1500
1800
2200
2700
3300
3900
400V
(450)
(2G)
4700
5600
6800
8200
10000
12000
15000
18000
22000
Frequency (Hz)
51
×
60
51
×
700
51
×
800
51
×
900
51
×
110
51
×
130
63.5
×
900
51
×
150
63.5
×
100
63.5
×
110
76.2
×
900
63.5
×
130
76.2
×
100
63.5
×
150
76.2
×
110
63.5
×
170
76.2
×
130
76.2
×
150
90
×
130
76.2
×
170
90
×
150
76.2
×
190
90
×
150
90
×
190
90
×
220
100
×
220
100
×
250
51
×
700
51
×
800
51
×
100
51
×
110
51
×
130
63.5
×
900
63.5
×
110
76.2
×
900
63.5
×
130
76.2
×
100
63.5
×
150
76.2
×
100
63.5
×
170
76.2
×
130
63.5
×
190
76.2
×
150
76.2
×
170
90
×
130
76.2
×
190
90
×
150
76.2
×
220
90
×
170
90
×
190
100
×
190
100
×
220
100
×
250
60
0.82
120
1.00
3.5
4.2
4.9
5.6
6.7
8.0
7.7
9.2
9.0
10.4
10.3
12.0
11.9
14.0
13.5
16.3
16.0
18.7
18.2
21.8
21.3
25.1
24.8
29.0
32.4
38.0
42.0
3.8
4.5
5.3
6.0
7.0
6.8
8.2
8.1
9.6
9.3
11.0
10.5
12.6
12.3
14.7
14.3
16.7
16.3
19.3
19.0
22.7
22.2
25.5
29.6
33.0
41.4
360
1.20
4.6
5.3
6.3
7.3
8.8
10.3
9.9
12.1
11.8
12.5
12.2
14.8
14.0
17.0
16.4
19.6
19.1
22.0
21.4
25.5
25.3
29.1
28.8
36.0
39.7
43.2
47.0
5.0
5.8
6.8
8.2
9.3
8.9
10.8
10.6
12.9
12.4
14.4
13.9
16.6
16.0
18.8
18.3
21.2
20.7
24.1
23.7
28.3
28.0
31.9
37.0
40.5
44.7
0.2
0.2
0.2
0.2
0.2
0.2
0.2
0.2
0.2
0.2
0.2
0.2
0.2
0.2
0.2
0.2
0.2
0.2
0.2
0.2
0.2
0.2
0.2
0.2
0.2
0.2
0.2
0.2
0.2
0.2
0.2
0.2
0.2
0.2
0.2
0.2
0.2
0.2
0.2
0.2
0.2
0.2
0.2
0.2
0.2
0.2
0.2
0.2
0.2
0.2
0.2
0.2
0.2
1k
1.35
1.77
1.94
2.17
2.38
2.63
2.92
2.92
3.22
3.22
3.50
3.50
3.85
3.85
4.20
4.20
4.63
4.63
5.00
5.00
5.00
5.00
5.00
5.00
5.00
5.00
5.00
5.00
1.90
2.08
2.32
2.55
2.81
2.81
3.12
3.12
3.45
3.45
3.75
3.75
4.11
4.11
4.49
4.49
4.95
4.95
5.00
5.00
5.00
5.00
5.00
5.00
5.00
5.00
10k~
1.40
LNX2V102MSEF
LNX2V122MSEF
LNX2V152MSEF
LNX2V182MSEF
LNX2V222MSEF
LNX2V272MSEF
LNX2V272MSEG
LNX2V332MSEF
LNX2V332MSEG
LNX2V392MSEG
LNX2V392MSEH
LNX2V472MSEG
LNX2V472MSEH
LNX2V562MSEG
LNX2V562MSEH
LNX2V682MSEG
LNX2V682MSEH
LNX2V822MSEH
LNX2V822MSEJ
LNX2V103MSEH
LNX2V103MSEJ
LNX2V123MSEH
LNX2V123MSEJ
LNX2V153MSEJ
LNX2V183MSEJ
LNX2V223MSEK
LNX2V273MSEK
LNX2G102MSEF
LNX2G122MSEF
LNX2G152MSEF
LNX2G182MSEF
LNX2G222MSEF
LNX2G222MSEG
LNX2G272MSEG
LNX2G272MSEH
LNX2G332MSEG
LNX2G332MSEH
LNX2G392MSEG
LNX2G392MSEH
LNX2G472MSEG
LNX2G472MSEH
LNX2G562MSEG
LNX2G562MSEH
LNX2G682MSEH
LNX2G682MSEJ
LNX2G822MSEH
LNX2G822MSEJ
LNX2G103MSEH
LNX2G103MSEJ
LNX2G123MSEJ
LNX2G153MSEK
LNX2G183MSEK
LNX2G223MSEK
1000
1200
1500
1800
2200
2700
3300
450V
(500)
(2W)
3900
4700
5600
6800
8200
10000
12000
15000
18000
1000
1200
1500
1800
2200
2700
3300
3900
4700
5600
6800
8200
10000
12000
1000
1200
1500
1800
2200
2700
3300
3900
4700
5600
6800
8200
10000
1000
1200
1500
1800
2200
2700
3300
3900
4700
5600
500V
(550)
(2H)
550V
(600)
(2L)
Frequency coefficient of rated ripple current
Coefficient
(
(
1) • Standard ripple current:
Ripple current value allowable for the life time of 20,000 hours at 85°C.
(5,000 hours at 85°C for the voltage rating of 500V and 550V. 2,000 hours at 85°C
for the voltage rating of 630V)
2) • Maximum rated ripple current:
Ripple current value allowable for the life time of 5,000 hours at 85°C.
• Estimated life time of capacitor is calculated by the following formula, taking the
operating temperature, inner temperature rise due to the ripple and derated voltage
into consideration.
∆T
85 -T
—
10
K
630V
(680)
(2J)
51
×
800
51
×
100
51
×
110
51
×
130
63.5
×
900
63.5
×
110
76.2
×
900
63.5
×
130
76.2
×
100
63.5
×
150
76.2
×
110
63.5
×
170
76.2
×
130
63.5
×
190
76.2
×
150
76.2
×
170
90
×
150
76.2
×
190
90
×
150
76.2
×
220
90
×
170
90
×
190
90
×
220
100
×
220
100
×
250
51
×
110
63.5
×
900
63.5
×
900
63.5
×
110
63.5
×
130
76.2
×
110
76.2
×
130
76.2
×
150
90
×
130
90
×
150
90
×
170
90
×
190
100
×
190
100
×
220
51
×
130
63.5
×
110
63.5
×
130
76.2
×
110
76.2
×
130
76.2
×
150
76.2
×
170
90
×
150
90
×
170
90
×
190
90
×
220
100
×
220
100
×
250
63.5
×
130
76.2
×
110
76.2
×
130
76.2
×
150
90
×
130
90
×
150
90
×
170
90
×
190
100
×
220
100
×
250
4.0
4.7
5.4
6.4
6.1
7.2
7.1
8.6
8.3
10.0
9.7
11.4
11.2
13.0
12.9
15.4
15.3
17.3
17.1
20.3
19.8
23.0
26.9
31.1
37.0
4.2
4.8
5.5
6.5
7.7
8.8
10.4
12.1
13.7
15.9
18.5
21.4
23.8
27.8
4.3
5.0
6.0
6.7
8.0
9.4
11.0
12.5
14.5
16.6
19.5
21.6
25.2
5.9
6.7
8.1
9.6
10.7
12.6
14.7
17.3
21.4
24.7
5.2
6.3
7.3
8.7
7.6
9.6
9.4
11.3
11.0
13.3
12.9
15.1
14.6
17.3
16.9
19.4
19.1
22.0
21.6
25.7
25.4
29.6
33.5
38.0
41.3
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
0.2
2.01 LNX2W102MSEF
0.2
2.20 LNX2W122MSEF
0.2
2.46 LNX2W152MSEF
0.2
2.70 LNX2W182MSEF
0.2
2.70 LNX2W182MSEG
0.2
2.98 LNX2W222MSEG
0.2
2.98 LNX2W222MSEH
0.2
3.31 LNX2W272MSEG
0.2
3.31 LNX2W272MSEH
0.2
3.66 LNX2W332MSEG
0.2
3.66 LNX2W332MSEH
0.2
3.97 LNX2W392MSEG
0.2
3.97 LNX2W392MSEH
0.2
4.36 LNX2W472MSEG
0.2
4.36 LNX2W472MSEH
0.2
4.76 LNX2W562MSEH
0.2
4.76 LNX2W562MSEJ
0.2
5.00 LNX2W682MSEH
0.2
5.00 LNX2W682MSEJ
0.2
5.00 LNX2W822MSEH
0.2
5.00 LNX2W822MSEJ
0.2
5.00 LNX2W103MSEJ
0.2
5.00 LNX2W123MSEJ
0.2
5.00 LNX2W153MSEK
0.2
5.00 LNX2W183MSEK
0.2
2.12 LNX2H102MSEF
0.2
2.32 LNX2H122MSEG
0.2
2.60 LNX2H152MSEG
0.2
2.85 LNX2H182MSEG
0.2
3.15 LNX2H222MSEG
0.2
3.49 LNX2H272MSEH
0.2
3.85 LNX2H332MSEH
0.2
4.19 LNX2H392MSEH
0.2
4.60 LNX2H472MSEJ
0.2
5.00 LNX2H562MSEJ
0.2
5.00 LNX2H682MSEJ
0.2
5.00 LNX2H822MSEJ
0.2
5.00 LNX2H103MSEK
0.2
5.00 LNX2H123MSEK
0.2
2.22 LNX2L102MSEF
0.2
2.44 LNX2L122MSEG
0.2
2.72 LNX2L152MSEG
0.2
2.98 LNX2L182MSEH
0.2
3.30 LNX2L222MSEH
0.2
3.66 LNX2L272MSEH
0.2
4.04 LNX2L332MSEH
0.2
4.39 LNX2L392MSEJ
0.2
4.82 LNX2L472MSEJ
0.2
5.00 LNX2L562MSEJ
0.2
5.00 LNX2L682MSEJ
0.2
5.00 LNX2L822MSEK
0.2
5.00 LNX2L103MSEK
0.3
2.38 LNX2J102MSEG
0.3
2.61 LNX2J122MSEH
0.3
2.92 LNX2J152MSEH
0.3
3.19 LNX2J182MSEH
0.3
3.53 LNX2J222MSEJ
0.3
3.91 LNX2J272MSEJ
0.3
4.33 LNX2J332MSEJ
0.3
4.70 LNX2J392MSEJ
0.3
5.00 LNX2J472MSEK
0.3
5.00 LNX2J562MSEK
Ripple (A rms) at 85°C 120Hz
Ln = L
0
×
2
×
2
×α
(
Where,
Ln : Lifetime under normal operating conditions.(h)
Lo : Lifetime under maximum operating temperature of 85°C and applied DC
voltage. (28000h)
T : Ambient temperature.(°C)
∆T
: Inner temperature rise of capacitor due to ripple current(°C)
K : Acceleration coefficient for temperature rise due to the ripple current.
when T+∆T 90°C,K=10
when T+∆T>90°C, K=2.5
α
: Life factor
• Life factor
α
due to the voltage derating shall be decided by the temperature and the applied voltage
3) Leakage current:I=
3
CV
×10
—3
or 5mA, whichever the smaller.
I
: Leakage Current
(mA)
C : Rated Capacitance (µF)
V : Voltage
(V)
• 3-leg bracket is furnished as standard.
In case no-bracket or 2-leg bracket required, please put BN or BB at the and of type
number.
Ex.
3-leg bracket LNX2G472MSEH
2-leg bracket LNX2G472MSEHBB
No bracket
LNX2G472MSEHBN
• Flame-retardant type electrolyte is also available.
Please contact to Nichicon representative for the rated ripple current value.
Oper.temp.
Voltage ratio
T 70°C
V/Vo 0.8
1.0
1.0
Applied voltage(V) Vo :
α
V
:
—
70°C<T 85°C
0.8<V/Vo 0.9
0.9<V /Vo 1.0
0.8
0.7
Rated voltage(V)
CAT.8100U