TANTALUM CAPACITORS
E/SV Series Tantalum Chip Capacitors
s
FEATURES
Type. In conformity to RoHS.
a range of small, high-capacity models.
q
Succeed to the latest technology plus outstanding peformance.
q
Offer
q
Lead-free
s
DIMENSIONS [mm]
[J, P, A2, A cases]
L
H
Z
Z
W2
W1
L
W1
H
[B3, B2 cases]
Z
Z
W2
B2 case
B3 case
L
W2
W1
[C2, C, V, D cases]
H
Z
Z
W2
(Unit: mm)
Case
Code
J
P
A2 (U)
A
B3 (W)
B2 (S)
C2
C
V
D
EIA code
–
2012
3216L
3216
3528L
3528
–
6032
–
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
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
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
2.4
±
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
1.9
±
0.2
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
1.3
±
0.2
1.3
±
0.2
1.3
±
0.2
1.3
±
0.2
5
s
STANDARD C-V VALUE REFERENCE BY CASE CODE
µ
F
0.47
0.68
1.0
1.5
2.2
3.3
4.7
6.8
10
15
22
33
47
68
100
150
220
330
470
680
U
R
474
684
105
155
225
335
475
685
106
156
226
336
476
686
107
157
227
337
477
687
P, A2
P, A2
P, A2, A
A
B3, B2
A, B3, C2
B2, C2
B2, C
C, D
J
J
J, P
P
P, A2, A
P, A2, A
A, B3
B2, C2
B2, C
C, V
D
D
P
P
J
J
J, P, A
J, P, A2
P, A2, A
P
J, P
J, P
P, A2
J, P, A2, A
A2, A
B3, [P]
2.5V
0E
4V
0G
6.3V
0J
10V
1A
16V
1C
P
P
J, P
A
P, A2, A, [J]
A2, A
A2, A
A, B3
B2, [A]
B3, B2, C
C, D
C, D
D
20V
1D
A2
A2
A2
A2
P, A2, A
A, B3
B2
B2
C
C2, C, D
D
D
C, [B2]
C
D
D
[D]
A, [P]
A
25V
1E
A
A
P, A2, A
35V
1V
A
A
A2, A
A
A, B2
B2, [B3]
C
C
C, D
D
A2, A, B3, B2 B3, B2, [A2]
J, P, A2, A P, A2, A, B2 A, B3, B2
P, A2, A, B3, B2 A, B3, B2, [A2]
A, B3, [A2] B3, B2, [A] C2, C, [B2]
B2, C2
C
C, V, D
D
D
B2, C2, C
V, D
D
P, A2, A, B3 A, B3, B2, C B2, C2, C, [B3]
A, B3, B2, C2 B2, C2, C, [B3] C, V, D, [C2]
[ ] :Under development
s
PART NUMBER SYSTEM
[Bulk]
ESV A
0J 106 M
Capacitance tolerance
M :
±20%
K :
±10%
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, 1V : 35 V
Case code
E/SV Series
TL ESVA0J106M 8 R
Tape and Reel
TL : 330 mm
φ
reel
E
Indicates 330mm
φ
reel
[Tape and Reel]
TE ESVA0J106M 8 R
Packing Orientation
R : Cathode on the Side
of Sproket Hole
Tape width
8 : 8 mm (J, P, A2, A, B3, B2 case)
12 : 12 mm (C2, C, V, D case)
Part number of Bulk
Tape and Reel
TE : 180 mm
φ
reel
6
E/SV Series
s
MARKINGS
The standard marking shows capacitance, DC rated voltage, and polarity.
[J case]
(ex. 4.7
µ
F / 6.3 V)
[J case Marking Code]
U
R
F
2.5 V
4V
6.3 V
10 V
16 V
Polarity
e
[P case]
(ex. 1
µ
F / 10 V)
[P case Marking Code]
U
R
A A
Marking Code
(DC Rated Voltage
and Capacitance)
Polarity
F
0.47
0.68
1
1.5
2.2
3.3
4.7
6.8
10
15
22
33
47
Capacitance (pF)
DC Rated Voltage Code
2.5 V
4V
6.3 V
10 V
JE
GN
JS
JW
JA
JE
JJ
AA
AE
AJ
AN
AS
AA
[A2, A cases]
(ex. 10
µ
F / 6.3 V)
GA
GE
eJ
eN
eS
GJ
GN
GS
J106
[P, A2, A, cases DC Rated Voltage code]
Code
Rated
Voltage
e
2.5 V
G
4V
J
6.3 V
A
10 V
C
16 V
D
20 V
E
25 V
V
35V
Polarity
[B3, B2 cases]
(ex. 47
µ
F / 6.3 V)
[B3, B2, C2, C, V, D cases Production date code]
47
6T
Polarity
Capacitance (
µ
F)
Production Date Code
DC Rated Voltage
Y
M Jan. Feb. Mar. Apr. May Jun. Jul. Aug. Sep. Oct. Nov. Dec.
2003
2004
2005
2006
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
h
v
H
V
j
w
J
W
k
x
K
X
l
y
L
Y
m
z
M
Z
Note:
Production date code will repeat beginning in 2007.
[C2, C, V, D cases]
(ex. 220
µ
F / 6.3 V)
Polarity
220
6T
Capacitance (
µ
F)
Production Date Code
DC Rated Voltage
J
2.2
3.3
4.7
6.8
10
J
G
J
J
Marking Code
(DC Rated Voltage
and Capacitance)
16 V
CS
CW
CA
CJ
A
A
A
J
G
20V
25V
EA
DJ
1.0
1.5
C
J
7
s
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
1.6V
3.3V
4V
2.5V
5.2V
6.3V
4V
8V
PERFORMANCE
-55°C to +125°C
10V
6.3V
13V
16V
10V
20V
20V
13V
26V
25V
16V
33V
Test Conditions : Conform to IEC 60384-1
TEST CONDITION
Derate voltage at 85°C at more
35V
22V
46V
at 85°C
at 125°C
at 85°C
at 120 Hz
Voltage:
Rated voltage for 5min.
at 120 Hz
at 100 kHz
L.C
Temperature : 85±2°C
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°C
0
Step 2: -55
-3
°C
Step 3: 25±2°C
0
Step 4: 125
-3
°C
Parts shall be temperature cycled
over a temperature range of -55 to
+125°C, five times continuously as
follow.
0
Step 1: -55
-3
°C,
30±3min.
Step 2: room temp. , 10 to 15min.
0
Step 3: 125
-3
°C,
30±3min.
Step 4: room temp, 10 to 15min.
solder dip : 260°C, 5sec
solder reflow : 260°C,10sec
at 40°C
at 90 to 95% RH
500 hour
0.47
µF
to 680
µF
±20%
or
±10%
(P,J case:
±20%)
0.01C • V(µA) or 0.5
µA
, whichever is greater
Refer to Standard Ratings
Refer to Standard Ratings
DF(%)
Surge voltage test
Refer to Standard Ratings
Lower than initial
specification
Lower than initial
specification
-55°C
Characteristic
at high and low
temperature
+85°C
+125°C
Not to exceed -20% (P, J case)
or -12%
Not to exceed +20% (P, J case)
or +12%
Refer to Standard Ratings
Lower than initial
specification
————
0.1C•V(µA) or 5µA,
which ever is greater
0.125C•V(µA) or 6.25µA,
which ever is greater
Not to exceed +20% (P, J case) Refer to Standard Ratings
or +15%
Rapid change of
temperature
Refer to Standard Ratings
Lower than initial
specification
Lower than initial
specification
Resistance to Soldering
heat
Refer to Standard Ratings
Lower than initial
specification
Lower than 1.5 times initial
specification
Lower than initial
specification
λ
0=
1% / 1000 hour
Lower than initial
specification
Lower than initial
specification
Damp heat
Refer to Standard Ratings
Endurance
Refer to Standard Ratings
Lower than 2 times initial
at 85°C: Rated voltage
specification (P, J case) or 1.25 at 125°C: Derated voltage
times initial specification
2000 hour
at 85°C: Rated voltage
at 125°C: Derated voltage
2000 hour
Strength : 4.9N
Time : 10±0.5sec.
(two directions)
Failure Rate
Terminal Strength
Visual:
There shall be no evidence of mechanical damage
Reference : Derated voltage (85 to 125°C)
[U
T
] = [U
R
] –
[U
R
] – [U
C
]
40
[U
T
] : Derated voltage at operating temperature
[U
R
] : Rated voltage
[U
C
] : Derated voltage at 125°C
T : Ambient temperature
(T–85)
8
E/SV Series
s
STANDARD RATINGS
Rated Capacitance
Voltage
(
µ
F)
(V)
10
22
22
33
33
47
47
47
68
100
100
150
150
150
220
220
330
330
470
470
3.3
6.8
10
10
15
22
22
22
33
33
33
47
47
47
47
68
68
100
100
100
100
150
150
220
220
330
330
470
680
1.5
2.2
3.3
4.7
4.7
4.7
6.8
6.8
6.8
10
10
10
10
15
15
15
Case
Code
J
P
A2
A2
P
P
A2
A
A
B3
B2
A
B3
C2
B2
C2
B2
C
C
D
P
J
J
P
P
P
A2
A
P
A2
A
P
A2
A
B3
A
B3
A
B3
B2
C2
B2
C2
B2
C
C
V
D
D
P
J
J
J
P
A
J
P
A2
J
P
A2
A
P
A2
A
Part
Number
(Bulk)
ESVJ0E106M
ESVP0E226M
ESVA20E226M
ESVA20E336M
ESVP0E336M
ESVP0E476M
ESVA20E476M
ESVA0E476M
ESVA0E686M
ESVB30E107M
ESVB20E107M
ESVA0E157M
ESVB30E157M
ESVC20E157M
ESVB20E227M
ESVC20E227M
ESVB20E337M
ESVC0E337M
ESVC0E477M
ESVD0E477M
ESVP0G335M
ESVJ0G685M
ESVJ0G106M
ESVP0G106M
ESVP0G156M
ESVP0G226M
ESVA20G226M
ESVA0G226M
ESVP0G336M
ESVA20G336M
ESVA0G336M
ESVP0G476M
ESVA20G476M
ESVA0G476M
ESVB30G476M
ESVA0G686M
ESVB30G686M
ESVA0G107M
ESVB30G107M
ESVB20G107M
ESVC20G107M
ESVB20G157M
ESVC20G157M
ESVB20G227M
ESVC0G227M
ESVC0G337M
ESVV0G337M
ESVD0G477M
ESVD0G687M
ESVP0J155M
ESVJ0J225M
ESVJ0J335M
ESVJ0J475M
ESVP0J475M
ESVA0J475M
ESVJ0J685M
ESVP0J685M
ESVA20J685M
ESVJ0J106M
ESVP0J106M
ESVA20J106M
ESVA0J106M
ESVP0J156M
ESVA20J156M
ESVA0J156M
Leakage
Current
(
µ
A)
0.5
0.5
0.5
0.8
0.8
1.1
1.1
1.2
1.7
2.5
2.5
3.7
3.7
3.7
5.5
5.5
8.2
8.2
11.7
11.7
0.5
0.5
0.5
0.5
0.6
0.8
0.8
0.8
1.3
1.3
1.3
1.8
1.8
1.8
1.8
2.7
2.7
4
4
4
4
6
6
8.8
8.8
13.2
13.2
18.8
27.2
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.5
0.6
0.6
0.6
0.6
0.9
0.9
0.9
DF (%)
DF
(%)
20
20
12
12
20
30
12
12
18
18
8
30
20
12
18
12
25
16
18
14
20
20
20
20
20
20
12
8
20
8
10
30
15
12
12
12
15
30
20
12
10
18
10
18
12
14
12
16
24
10
20
20
20
20
8
20
20
8
20
20
8
8
20
12
8
Capacitance
Change 1
±20%
±20%
±12%
±12%
±20%
±20%
±12%
±12%
±12%
±15%
±12%
±20%
±15%
±12%
±12%
±12%
±12%
±12%
±12%
±12%
±20%
±20%
±20%
±20%
±20%
±20%
±12%
±12%
±20%
±12%
±12%
±20%
±12%
±12%
±15%
±12%
±15%
±20%
±15%
±12%
±12%
±12%
±12%
±12%
±12%
±12%
±12%
±12%
±12%
±20%
±20%
±20%
±20%
±20%
±
5%
±20%
±20%
±12%
±20%
±20%
±12%
±12%
±20%
±12%
±12%
ESR
(Ω)
6.5
4
3
4
4
6
4.5
4.5
4.5
1.3
1
2
1
0.8
0.6
0.8
0.6
0.3
1.5
0.5
20
7.5
6.5
6
5
4
2.8
2.5
4
4.5
3
3
4.5
2.5
1.7
2.5
1.5
2
1.3
0.8
0.8
0.7
0.8
0.5
0.6
0.2
0.5
0.3
0.3
25
17.5
13.5
8.5
10
5.5
7
7
6.5
8
6
4.5
3.2
5
4
3
–55˚C
30
30
20
22
30
60
22
22
34
34
14
60
40
26
34
26
50
34
34
18
30
30
30
30
30
30
22
12
30
14
14
60
30
22
18
22
28
60
38
22
18
34
18
34
22
26
18
30
46
15
30
30
30
30
12
30
30
12
38
30
12
12
30
22
12
+125˚C
30
30
14
14
30
40
14
16
20
20
10
40
30
18
20
18
30
18
20
16
30
30
30
30
30
30
16
10
30
10
12
40
20
14
15
14
17
40
22
14
12
20
12
20
14
16
14
18
26
15
30
30
30
30
10
30
30
10
22
30
10
10
30
14
10
Change 2
±20%
±20%
±12%
±12%
±20%
±20%
±12%
±12%
±12%
±15%
±12%
±20%
±15%
±12%
±12%
±12%
±20%
±12%
±12%
±12%
±20%
±20%
±20%
±20%
±20%
±20%
±12%
±12%
±20%
±12%
±12%
±20%
±12%
±12%
±15%
±12%
±15%
±20%
±15%
±12%
±12%
±12%
±12%
±12%
±12%
±12%
±12%
±12%
±12%
±20%
±20%
±20%
±20%
±20%
±10%
±20%
±20%
±12%
±20%
±20%
±12%
±12%
±20%
±12%
±12%
2.5
4
6.3
9