Halogen free, Antimony free and Red Phosphorous free resin is applied to the exterior mold resin.
[J, P, A2, A cases]
L
H
Z
Z
W2
W1
L
W1
H
[B3, B15, B2 cases]
Z
Z
W2
L
W1
[C2, C, V, D cases]
H
Z
Z
W2
(Unit: mm)
Case
code
J
P
A2(U)
A
B3(W)
B15
B2(S)
C2
C
V
D
EIA code
ï
2012
3216L
3216
3528L
ï
3528
ï
6032
7343L
7343
L
1.6 ± 0.1
2.0 ± 0.2
3.2 ± 0.2
3.2 ± 0.2
3.5 ± 0.2
3.5 ± 0.2
3.5 ± 0.2
6.0 ± 0.2
6.0 ± 0.2
7.3 ± 0.2
7.3 ± 0.2
W
1
0.8 ± 0.1
1.25 ± 0.2
1.6 ± 0.2
1.6 ± 0.2
2.8 ± 0.2
2.8 ± 0.2
2.8 ± 0.2
3.2 ± 0.2
3.2 ± 0.2
4.3 ± 0.2
4.3 ± 0.2
W
2
0.6 ± 0.1
0.9 ± 0.1
1.2 ± 0.1
1.2 ± 0.1
2.2 ± 0.1
2.2 ± 0.1
2.2 ± 0.1
2.2 ± 0.1
2.2 ± 0.1
2.4 ± 0.1
2.4 ± 0.1
H
0.8 ± 0.1
1.1 ± 0.1
1.1 ± 0.1
1.6 ± 0.2
1.1 ± 0.1
1.4 ± 0.1
1.9 ± 0.1
1.4 ± 0.1
2.5 ± 0.2
1.9 ± 0.1
2.8 ± 0.2
Z
0.3 ± 0.15
0.5 ± 0.1
0.8 ± 0.2
0.8 ± 0.2
0.8 ± 0.2
0.8 ± 0.2
0.8 ± 0.2
1.3 ± 0.2
1.3 ± 0.2
1.3 ± 0.2
1.3 ± 0.2
10
●All specifications in this catalog and production status of products are subject to change without notice. Prior to the purchase, please contact NEC TOKIN for updated product data.
●Please request for a specification sheet for detailed product data prior to the purchase.
●Before using the product in this catalog, please read "Precautions" and other safety precautions listed in the printed version catalog.
9653TCAVOL14E1109E0
PS/L Series
í
STANDARD C-V VALUE REFERENCE BY CASE CODE
U
R
:Rated Voltage
U
R
F
1.0
2.2
3.3
4.7
6.8
10
15
22
33
47
68
100
150
220
330
470
680
1000
105
225
335
475
685
106
156
226
336
476
686
107
157
227
337
477
687
108
2.5 V
0E
4V
0G
6.3V
0J
J
J, P
J, P
J, P, A
10V
1A
J
J, A
J, A2, A
A2, A, B2
P, A2, A, B2
A, B2, C
A, B3, B2, C
A, B3, B2, C2, C
16V
1C
20V
1D
25V
1E
A
B2
B2
B2
V
V
V
V, D
V, D
V
V, D
V
D
B2
J, P, A
P, A2, A
A2, A, B2
P
A2
A2
P, A2, B2
A2, A
A, B3
A, C2, C
A2, A, B3, B2
A, B3, B2
A, B3, B2, C2, C B3, B2, C2, C, V, D
B3, B2, C2, C
A, B2, C2, C, V
B15, B2, C2, C, V, D
B2, V, D
V, D
C2, C, V, D
B2, C2, C, V, D
C, V, D
D
A, B3
A, B3, B2, C2
B2, C
A, B2
B2, C, V
V
D
D
B2, C, V, D
C, V, D
D
D
í
PART NUMBER SYSTEM
[Bulk]
PSL D
0J 337 M (25)
Special numbering for ESR
ex. (25) shows 25 m
Capacitance Tolerance
M:
±20%
Capacitance (pF)
First two digits represent significant figures.
Third digit specifies number of zeros to follow.
DC rated voltage in volts
0E: 2.5 V, 0G : 4 V, 0J : 6.3 V,
1A : 10 V, 1C: 16 V, 1D : 20 V, 1E : 25 V
Case code
PS/L Series
[Tape and Reel]
TE PSLD0J337M 12 R
Packing Orientation
R: Cathode on the Side
of Sproket Hole
Tape width
8 : 8 mm (J, P, A2, A, B3, B15, B2 case)
12 : 12 mm (C2, C, V, D cases)
Part number of Bulk
Tape and Reel
TE: 180mmφ reel
TL PSLD0J337M 12 R E
Tape and Reel
TL: 330mmφ reel
Indicates 330mmφ reel
11
●All specifications in this catalog and production status of products are subject to change without notice. Prior to the purchase, please contact NEC TOKIN for updated product data.
●Please request for a specification sheet for detailed product data prior to the purchase.
●Before using the product in this catalog, please read "Precautions" and other safety precautions listed in the printed version catalog.
9653TCAVOL14E1109E0
Conductive Polymer type
PS/L Series
[J case]
(ex. 4.7
F / 6.3 V)
[J case Marking Code]
U
R
F
2.2
4V
6.3V
J
U
R
:Rated Voltage
10V
A
A
A
10V
16V
AA
16V
C
CN6
CS6
CW6
CA7
EE7
DJ7
CN7
CS7
CW7
DN7
DS7
EJ7
EN7
EW6
20V
D
25V
E
J
Marking Code
(DC Rated Voltage
and Capacitance)
Polarity
3.3
4.7
6.8
10
G
[P case]
(ex. 10
F / 4 V)
[P case Marking Code]
U
R
F
1.0
2.2
3.3
4.7
6.8
10
15
22
Je
2.5V
4V
6.3V
AG
Marking Code
(DC Rated Voltage
and Capacitance)
Polarity
NJ
SJ
WJ
AG
JG
AJ
[A2, A cases]
(ex. 10
F / 6.3 V)
[A2, A, B3, B15, B2, C2, C, V, D cases Marking Code]
FjA7
Marking Code
(DC Rated Voltage
and Capacitance)
Production Date Code
Polarity
U
R
F
3.3
4.7
6.8
10
15
22
N6
S6
W6
A7
E7
J7
N7
S7
W7
A8
E8
J8
N8
S8
W8
A9
2.5V
e
4V
6.3V
j
10V
A
AN6
AS6
g
jW6
gA7
jA7
jE7
gJ7
eN7
eS7
gN7
gS7
gW7
eA8
gA8
gE8
eJ8
eN8
eS8
eW8
eA9
gJ8
gN8
gS8
gW8
jJ7
jN7
jS7
jW7
jA8
jE8
jJ8
jN8
AW6
AA7
AE7
AJ7
AN7
AS7
AW7
AA8
AE8
AJ8
[B3, B15, B2 cases]
(ex. 15
F / 6.3 V)
33
47
NE R
jE7
68
Production Date Code
NE for NeoCapacitor
100
150
220
Marking Code
(DC Rated Voltage
and Capacitance)
Polarity
[C2, C, V, D cases]
(ex. 150
F / 6.3 V)
330
470
680
1000
Polarity
NE R
jE8
[A2, A, B3, B15, B2, C2, C, V, D cases production date code]
Production Date Code
NE for NeoCapacitor
Y
M
Jan. Feb. Mar. Apr. May. Jun. Jul. Aug. Sep. Oct. Nov. Dec.
2011
2012
a
n
A
N
b
p
B
P
c
q
C
Q
d
r
D
R
e
s
E
S
f
t
F
T
g
u
G
U
J
J
J
h
v
H
V
j
w
J
W
k
x
K
X
l
y
L
Y
m
z
M
Z
Marking Code
(DC Rated Voltage
and Capacitance)
2013
2014
NOTE: Production date code will resume beginning in 2015.
12
●All specifications in this catalog and production status of products are subject to change without notice. Prior to the purchase, please contact NEC TOKIN for updated product data.
●Please request for a specification sheet for detailed product data prior to the purchase.
●Before using the product in this catalog, please read "Precautions" and other safety precautions listed in the printed version catalog.
9653TCAVOL14E1109E0
PS/L Series
í
PERFORMANCE CHARACTERISTICS
ITEM
Operating temperature
Rated voltage (V.dc)
Derated voltage (V.dc)
Surge voltage (V.dc)
Capacitance
Capacitance tolerance
DC Leakage Current (L.C)
Dissipation Factor
Equivalent Series Resistance
Capacitance change
2.5V
2V
3.3V
4V
3.3V
5.2V
6.3V
5V
8V
PERFORMANCE
–55℃ to +105℃
10V
8V
13V
2.2 F to 1000 F
16V
12.8V
20V
20V
16V
23V
Test Conditions : Conform to IEC 60384-1
TEST CONDITION
Derated voltage at 85℃ at more
25V
20V
29V
at 85℃
at 105℃
Rated voltage 2.5 to 16V: at 85℃
Rated voltage over 20V: at 15 to 35℃
at 120 Hz
±20%
0.1C • V( A) or 3 A (J case:10 A) , whichever is greater
Refer to Standard Ratings
Refer to Standard Ratings
DF(%)
L.C
Temperature : 85±2℃
Applied voltage : Surge voltage
Series resistance : 33 ohm
Duration of surge : 30±5 sec
Time between surge : 5.5min.
Number of cycle : 1000
Step 1: 25±2℃
0
Step 2: –55
–3
℃
Step 3: 25±2℃
0
Step 4: 105
–3
℃
Parts shall be temperature cycled
over a temperature range of –55 to
+105℃, five times continuously as
follow.
0
Step 1: –55
–3
℃, 30±3min.
Step 2: room temp. , 10 to 15min.
0
Step 3: 105
–3
℃, 30±3min.
Step 4: room temp, 10 to 15min.
Reflow soldering method 240℃,
10 sec.Max.
*1
at 40℃
at 90 to 95% RH
500 hour
at 85℃
at rated voltage
1000 hour
at 105℃
at Derated voltage
1000 hour
at 85℃: rated voltage
at 105℃: derated voltage
1000 hour
Strength : 4.9N
Time : 10±0.5sec.
(two directions)
at 100 kHz or 300 kHz
refer to STANDARD RATINGS
Conform to IEC60384–1
Voltage:
Rated voltage for 5min.
at 120 Hz
at 100 kHz or 300 kHz
refer to STANDARD RATINGS
Surge voltage test
Refer to Standard Ratings
Lower than initial
specification
Lower than initial
specification
Lower than 1.5 times
initial specification
Lower than initial
specification
Characteristic
at high and low
temperature
–55℃
+105℃
from 0 to –20%
from 0 to +50%
————
Lower than 10 times
initial specification
Rapid change of
temperature
Refer to Standard Ratings
Lower than initial
specification
Lower than initial
specification
Resistance to Soldering
heat
Damp heat
Refer to Standard Ratings
Lower than 1.3 times initial
specification
Lower than 1.5 times initial
specification
Lower than initial
specification
Lower than initial
specification
Lower than initial
specification
Lower than initial
specification
from +30% to –20%
Endurance
I
Refer to Standard Ratings Lower than 1.5 times initial
●All specifications in this catalog and production status of products are subject to change without notice. Prior to the purchase, please contact NEC TOKIN for updated product data.
●Please request for a specification sheet for detailed product data prior to the purchase.
●Before using the product in this catalog, please read "Precautions" and other safety precautions listed in the printed version catalog.
9653TCAVOL14E1109E0
Conductive Polymer type
PS/L Series
í
STANDARD RATINGS
Rated
Capacitance Case
Voltage
Code
( F)
(V)
22
33
47
100
100
100
100
220
220
220
220
220
220
220
220
330
330
330
330
330
330
330
330
330
330
330
470
470
680
680
680
1000
1000
10
10
10
22
22
22
33
33
47
47
68
68
68
100
100
100
100
100
100
100
100
100
150
150
150
150
220
220
220
220
P
A2
A2
A
A
A
B3
A
A
A
B2
B2
B2
B2
B2
B2
B2
B2
B2
C
C
C
C
V
V
V
V
V
D
D
D
D
D
J
P
A
P
A2
B2
A2
A
A
B3
A
C2
C
A
A
A
A
B3
B2
B2
B2
C2
B2
B2
B2
C
B2
B2
B2
B2
Part
Number
(Bulk)
PSLP0E226M
PSLA20E336M
PSLA20E476M
PSLA0E107M
PSLA0E107M(45)
PSLA0E107M(35)
PSLB30E107M
PSLA0E227M(45)
PSLA0E227M(35)
PSLA0E227M(25)
PSLB20E227M
PSLB20E227M(35)
PSLB20E227M(25)
PSLB20E227M(21)
PSLB20E227M(15)
PSLB20E337M
PSLB20E337M(35)
PSLB20E337M(21)
PSLB20E337M(15)
PSLC0E337M
PSLC0E337M(45)
PSLC0E337M(25)
PSLC0E337M(18)
PSLV0E337M
PSLV0E337M(15)
PSLV0E337M(12)
PSLV0E477M(15)
PSLV0E477M(12)
PSLD0E687M
PSLD0E687M(15)
PSLD0E687M(12)
PSLD0E108M
PSLD0E108M(15)
PSLJ0G106M
PSLP0G106M
PSLA0G106M
PSLP0G226M
PSLA20G226M
PSLB20G226M
PSLA20G336M
PSLA0G336M
PSLA0G476M
PSLB30G476M
PSLA0G686M
PSLC20G686M
PSLC0G686M
PSLA0G107M
PSLA0G107M(45)
PSLA0G107M(35)
PSLA0G107M(25)
PSLB30G107M
PSLB20G107M
PSLB20G107M(45)
PSLB20G107M(35)
PSLC20G107M
PSLB20G157M
PSLB20G157M(35)
PSLB20G157M(25)
PSLC0G157M
PSLB20G227M
PSLB20G227M(35)
PSLB20G227M(25)
PSLB20G227M(15)
Leakage
Current
( A)
Max
5.5
8.3
11.7
25
25
25
25
55
55
55
55
55
55
55
55
82.5
82.5
82.5
82.5
82.5
82.5
82.5
82.5
82.5
82.5
82.5
117.5
117.5
170
170
170
250
250
10
4
4
8.8
8.8
8.8
13.2
13.2
18.8
18.8
27.2
27.2
27.2
40
40
40
40
40
40
40
40
40
60
60
60
60
88
88
88
88
DF
(%)
Max
6
6
6
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
8
10
10
10
10
10
10
10
10
10
10
10
10
10
10
4
6
6
6
6
8
6
6
6
8
6
8
9
8
8
8
8
8
8
8
8
9
8
8
8
9
8
8
8
8
ESR Permissible DF (%) Max
Capacitance Change
Ripple
(m )
at Surge Voltage
Current
Max
(mA rms.) -55℃ +105℃ at Resistance to at Endurance
Soldering Heat
*1
Max *1
200
354
6
9
±20%
±20%
150
632
6
9
±20%
±20%
150
632
6
9
±20%
±20%
100
866
8
12
±20%
±20%
45
1291
8
12
±20%
±20%
35
1464
8
12
±20%
±20%
70
1035
8
12
±20%
±20%
45
b
1291
b
8
12
±20%
±20%
35
b
1464
b
8
12
±20%
±20%
25
1732
8
12
±20%
±20%
45
1374
8
12
±20%
±20%
35
1558
8
12
±20%
±20%
25
1844
8
12
±20%
±20%
21
2012
8
12
±20%
±20%
15
b
2380
b
8
12
±20%
±20%
45
1374
8
12
±20%
±20%
35
1558
8
12
±20%
±20%
21
2012
8
12
±20%
±20%
15
b
2380
b
8
12
±20%
±20%
55
1414
10
15
±20%
±20%
45
1563
10
15
±20%
±20%
25
2098
10
15
±20%
±20%
18
2472
10
15
±20%
±20%
25
2236
10
15
±20%
±20%
15
2887
10
15
±20%
±20%
12
3227
10
15
±20%
±20%
15
2887
10
15
±20%
±20%
12
3227
10
15
±20%
±20%
25
2449
10
15
±20%
±20%
15
3162
10
15
±20%
±20%
12
3536
10
15
±20%
±20%
25
2449
10
15
±20%
±20%
15
3162
10
15
±20%
±20%
300
183
4
6
±20%
±20%
200
354
6
9
±20%
±20%
200
612
6
9
±20%
±20%
200
354
6
9
±20%
±20%
200
548
6
9
±20%
±20%
150
753
8
12
±20%
±20%
150
632
6
9
±20%
±20%
180
645
6
9
±20%
±20%
180
645
6
9
±20%
±20%
70
1035
8
12
±20%
±20%
180
645
6
9
±20%
±20%
55
1279
8
12
±20%
±20%
100
1049
9
14
±20%
±20%
100
866
8
12
±20%
±20%
45
1291
8
12
±20%
±20%
35
1464
8
12
±20%
±20%
25
1732
8
12
±20%
±20%
70
1035
8
12
±20%
±20%
70
1102
8
12
±20%
±20%
45
1374
8
12
±20%
±20%
35
1558
8
12
±20%
±20%
55
1279
9
14
±20%
±20%
45
1374
8
12
±20%
±20%
35
1558
8
12
±20%
±20%
25
1844
8
12
±20%
±20%
100
1049
9
14
±20%
±20%
45
1374
8
12
±20%
±20%
35
1558
8
12
±20%
±20%
25
1844
8
12
±20%
±20%
15
2380
8
12
±20%
±20%
2.5
4
*1: Measure frequency
z:
300kHz, none: 100 kHz
14
●All specifications in this catalog and production status of products are subject to change without notice. Prior to the purchase, please contact NEC TOKIN for updated product data.
●Please request for a specification sheet for detailed product data prior to the purchase.
●Before using the product in this catalog, please read "Precautions" and other safety precautions listed in the printed version catalog.
I recently worked on AD7190, and the sampling results when no-load are roughly as follows:Is this correct? I don't understand, please help me. Thank you!...
The model of the microcontroller used in a Japanese-made device is: VIBRA 201L008 AJ51 0642KBA08. Please provide detailed information about the chip. Thank you....
Dear experts, I have just started to learn wince development and bought a 2440 development board, but now I find I don’t know where to start. Please give me some advice!...
This article is about security extension in the RISC-V knowledge graph series. It mainly introduces all the security capabilities of the RISC-V architecture in realizing the TEE trusted execution envi...
I am a bachelor's degree graduate of electrical engineering and automation in Fujian. . . . As I am still young, I am still immature and decisive in choosing a job, and lack confidence in my future ca...
Bus, bus, I always get stuck in it. The signals in this world are all the same, but there are tens of thousands of buses, which is a headache.In general, there are three types of buses: internal bus, ...
1. Introduction
RFID (radio frequency identification) is a non-contact automatic identification technology that emerged in the 1990s. It uses the characteristics of radio frequency signal prop...[Details]
1. Overview
Will passive devices
produce nonlinear intermodulation distortion? The answer is yes! Although there is no systematic theoretical analysis, it has been found in engineerin...[Details]
Today, with the increasing integration of functions, mobile phones can also be used as portable media players (PMP), digital cameras, handheld computers (PDAs), and even global positioning systems ...[Details]
Do you often have to add brake fluid to your car's brakes? The fact that you need to pump out the brake fluid to make sure there is no gas in the brake fluid line may not be done by the car owner h...[Details]
introduction
Throughout the history of automotive lighting, power has always played an important role. Initially, cars only needed headlights to see the road in the dark. Later, other light so...[Details]
For a long time, due to the limitation of hardware conditions, the display devices of traditional small handheld devices such as PDA are usually monochrome LCD, and the user interface is very simpl...[Details]
Electronic systems are located at different points on the automotive power bus and therefore often need to operate under very stringent power requirements. These include load dump, cold crank, very lo...[Details]
1. Introduction
Testing the temperature of steel billets before rolling is an important measure to ensure the quality of steel. Traditional manual testing is difficult to ensure product qu...[Details]
1 Introduction
In recent years, there have been many major advances in the production technology and processes of automotive headlights, which have greatly improved the performance of automoti...[Details]
I've been studying dot matrix recently. It looks simple, but it takes a while to master it completely! The 8*8 dot matrix hardware circuit I'm making now is like this. The row is driven by 74HC138 + t...[Details]
Different initialization between C8051F and 80C51 series microcontrollers
In the past 30 years, major electronic component manufacturers in the world have launched their own unique single-chip...[Details]
Printed circuit boards ( PCBs
)
are used in most electrical products
. If a PCB has low
insulation resistance
(IR), the performance of the circuits on the PCB will be greatly reduced...[Details]
In today's body control module (BCM) designs, savvy engineers are moving away from electromechanical relays whenever possible. Their next step is to eliminate fuses. But is eliminating fuses a nece...[Details]
Since AC mains power may experience power outages, voltage sags and surges, continuous undervoltage and overvoltage, and frequency fluctuations during supply, these factors will affect the continuous ...[Details]
0 Introduction
High-precision current source can provide high-precision current supply for precision instruments, and is suitable for automatic measurement tasks of various resistors in semico...[Details]