To meet the users’ demands for smaller and high-function portable information devices, we developed compact and low profile tantalum
capacitors with appropriately designed mounting area for high-density mounting ahead of other companies.
The capacitors are widely used in portable information and telecommunication equipment, such as mobile phones and PHS, digital video
cameras, digital still cameras and portable AV equipment. The tantalum capacitors designed for high-density mounting will considerably
contribute to miniaturization and improvement of performance of these portable multimedia devices.
FEATURES
1. Using the face-down terminal structure makes it possible to design the land in almost the same size as the terminal. As the result of this, parts
can be downsized, and the mounting area can be reduced to 1/2 to 1/3 of that required by conventional structures.
2. Type 251 in size 1005 to 3528L are applicable to a wide capacitance range from 1 to 330
µF.
3. This type of capacitors is suitable for ultra miniaturized, such as DVC, DSC and PCMCIA cards, and high-function compact portable devices,
such as mobile phones and PHS.
4. Case M (face-down terminal type 1608) and case S (face-down terminal type 2012) of this type are listed in the Surface Mounting Device-
Outline Registration System of Electronic Device Registration Center of JEITA.
5. Lead-free and RoHS Compliant.
RATING
Item
Category Temperature Range (Operating Temperature Range)
Rated Temperature (Max. Operating Temp. at Rated Voltage)
Rated Voltage
Capacitance
Capacitance Tolerance
Failure Rate Level
+85°C
2.0 ~ 35 VDC
1.0 ~ 330
µF
±
20%(M),
±
10%(K)
1%/1000 h
Rating
-55 ~ +125°C
Remarks
To be used at derated voltage when temperature
exceeds 85°C (At 125°C, 2/3
×
rated voltage)
See CATALOG NUMBERS AND RATING OF STANDARD
PRODUCTS or LOW PROFILE PRODUCTS.
85°C, rated voltage, 1000 hrs., Circuit resistance of 0.5
Ω/V
DIMENSIONS
L
W
T
P
1
P
2
P
1
C
[STANDARD PRODUCTS]
Case Code
U
M
S
A
B
Case Code
S
A
B
Case Code
S
EIA Code
1005
1608
2012
3216L
3528L
EIA Code
2012
3216L
3528L
EIA Code
2012
Max. height
0.55
0.9
1.2
1.2
1.2
Max. height
1.0
1.0
1.0
L
±
0.1
1.05
±
0.05
1.6
2.0
3.2
3.5
L
±
0.1
2.0
3.2
3.5
W
±
0.1
0.55
±
0.05
0.85
1.25
1.6
2.8
W
±
0.1
1.25
1.6
2.8
T
±
0.1
0.5
±
0.05
0.8
1.1
1.1
1.1
T
±
0.1
0.9
0.9
0.9
P
1
±
0.1
0.3
0.5
0.5
0.8
0.8
P
1
±
0.1
0.5
0.8
0.8
P
2
±
0.1
0.45
0.65
1.05
1.65
1.95
P
2
±
0.1
1.05
1.65
1.95
(mm)
C
±
0.1
0.4
0.7
0.9
1.2
2.2
[LOW PROFILE PRODUCTS]
(mm)
C
±
0.1
0.9
1.2
2.2
[CUSTOM PRODUCTS]
(mm)
Max. height
L
±
0.1
W
±
0.1
T
±
0.1
P
1
±
0.1
P
2
±
0.1
C
±
0.1
1.3
2.0
1.25
1.2
0.5
1.05
0.9
0.9
3.2
1.6
0.8
0.8
1.65
1.2
A
3216L
1.3
3.2
1.6
1.2
0.8
1.65
1.2
The component height varies according to rating. For the details, see CATALOG NUMBERS AND RATING OF STANDARD
PRODUCTS, LOW PROFILE PRODUCTS or CUSTOM PRODUCTS.
ORDERING INFORMATION
251
TYPE
M
SERIES
4001
RATED
VOLTAGE
107
CAPACITANCE
M
CAPACITANCE
TOLERANCE
R
STYLE
OF REELED
PACKAGE
Case
code
U
M
S
0
HEIGHT
S
CASE CODE
(Taping specification)
Marking
2001
2501
3001
4001
6301
1002
1602
2002
2502
3502
Rated voltage
2 VDC
2.5 VDC
3 VDC
4 VDC
6.3 VDC
10 VDC
16 VDC
20 VDC
25 VDC
35 VDC
Marking
105
155
225
335
475
685
106
156
226
336
476
686
107
157
227
337
Capacitance
1
µF
1.5
µF
2.2
µF
3.3
µF
4.7
µF
6.8
µF
10
µF
15
µF
22
µF
33
µF
47
µF
68
µF
100
µF
150
µF
220
µF
330
µF
Code
R
Reel size
f180
Anode notation
Feed hole: –
Max. height
(mm)
0.55
0.9
1.3
1.2
1.0
1.3
1.2
1.0
0.9
1.2
1.0
Height
code
Blank
Blank
3
2
0
3
2
0
9
2
0
Case code
U
M
S
A
B
EIA Code
1005
1608
2012
3216L
3528L
A
B
MARKING
[Case U (1005)]
[Case M (1608)]
Rated Voltage
Polarity (anode notation)
Mark anode notation only.
[Case S (2012)]
Capacitance (
2
)
Rated Voltage (
1
)
Capacitance Tolerance
Without bar :
±20%
With bar :
±10%
(1) The rated voltage is indicated with one alphabetic letter.
Rated voltage (VDC)
2.5
e
4
G
½
6.3
J
½
10
A
16
C
20
D
25
E
35
V
(
1
)
Rated voltage code
½
The rated voltage of case A, B is indicated with a small letter
g (4 V) or j (6.3 V).
Polarity
(anode notation)
[Case A (3216L), Case B (3528L)]
(2) The capacitance is indicated with one alphabetic letter or the
alphabetic letter with an overbar or underbar.
Capacitance (µF)
Code
1
A
1.5
E
2.2
J
3.3
N
4.7
S
_
6.8
W
g
To indicate a capacitance not listed above, _ (1/10), (10 times)
or = (100 times) is used. (Ex.: J indicates 1/10 of J (2.2), 0.22).
Capacitance (
3
)
Rated Voltage (
1
)
Capacitance Tolerance
Without bar :
±20%
With bar :
±10%
(3) The capacitance is indicated with one alphabetic letter and one
numeral.
Code
Capacitance (µF)
Code
Capacitance (µF)
Code
Capacitance (µF)
A6
1.0
A7
10
A8
100
E6
1.5
E7
15
E8
150
J6
2.2
J7
22
J8
220
N6
3.3
N7
33
N8
330
S6
4.7
S7
47
S8
470
W6
6.8
W7
68
W8
680
Polarity (anode notation)
Polarity (anode notation)
−2−
PERFORMANCE
No.
Item (
1
)
Performance
Test method
1
Leakage Current (µA)
Larger value of 0.01 CV or 0.5
µA
JIS C 5101-1, 4.9
Applied voltage : Rated voltage
Duration : 5 min
Measuring temperature : Room temperature
JIS C 5101-1, 4.7
Measuring frequency : 120 Hz
±
20%
Measuring voltage : 0.5 Vrms +1.5
~
2 VDC
Measuring temperature : Room temperature
JIS C 5101-1, 4.8
Measuring frequency : 120 Hz
±
20%
Measuring voltage : 0.5 Vrms +1.5
~
2 VDC
Measuring temperature : Room temperature
JIS C 5101-1, 4.29
2
Capacitance (µF)
Shall be within the specified tolerance.
3
Dissipation Factor
Shall not exceed the values shown in CATALOG NUMBERS AND RATING OF
STANDARD PRODUCTS or LOW PROFILE PRODUCTS.
4
Characteristics at
High and Low
Temperature
Step
1
Step
2
Leakage Current
Capacitance
Dissipation Factor
Capacitance
Change
Dissipation Factor
Shall not exceed the value in No.1.
Shall be within the specified tolerance.
Shall not exceed the values shown in CATALOG NUMBERS AND RATING OF STANDARD PRODUCTS or LOW PROFILE PRODUCTS.
Measuring temperature : 20
±
2°C
Shall be within any of the following ranges and specified according to CATALOG Measuring temperature : -55
±
3°C
NUMBERS AND RATING OF STANDARD PRODUCTS or LOW PROFILE PRODUCTS.
0
0
• Within
-15
% of the value at Step 1
• Within
-30
% of the value at Step 1
Shall not exceed the values shown in CATALOG NUMBERS AND RATING OF STANDARD PRODUCTS or LOW PROFILE PRODUCTS.
Shall not exceed the value in No.1.
Measuring temperature : 20
±
2°C
Shall be within
±
2% of the value at Step 1.
Shall not exceed the values shown in CATALOG NUMBERS AND RATING OF
STANDARD PRODUCTS or LOW PROFILE PRODUCTS.
Shall be within any of the following ranges and specified according to CATALOG
Measuring temperature : 85
±
2°C
NUMBERS AND RATING OF STANDARD PRODUCTS or LOW PROFILE PRODUCTS.
• Larger value of 0.1 CV or 5
µA
• 0.2 CV or less
Shall be within any of the following ranges and specified according to CATALOG
NUMBERS AND RATING OF STANDARD PRODUCTS or LOW PROFILE PRODUCTS.
• Within
+10
% of the value at Step 1
• Within
+20
% of the value at Step 1
0
0
Shall not exceed the values shown in CATALOG NUMBERS AND RATING OF
STANDARD PRODUCTS or LOW PROFILE PRODUCTS.
Shall be within any of the following ranges and specified according to CATALOG Measuring temperature : 125
±
2°C
NUMBERS AND RATING OF STANDARD PRODUCTS or LOW PROFILE PRODUCTS. Measuring voltage : Derated voltage at 125°C
• Larger value of 0.125 CV or 6.3
µA
• 0.25 CV or less
Shall be within any of the following ranges and specified according to CATALOG
NUMBERS AND RATING OF STANDARD PRODUCTS or LOW PROFILE PRODUCTS.
• Within
+15
% of the value at Step 1
• Within
+20
% of the value at Step 1
0
0
Shall not exceed the values shown in CATALOG NUMBERS AND RATING OF STANDARD PRODUCTS or LOW PROFILE PRODUCTS.
Shall not exceed the value in No.1.
Shall be within
±
2% of the value at Step 1.
Shall not exceed the values shown in CATALOG NUMBERS AND RATING OF STANDARD PRODUCTS or LOW PROFILE PRODUCTS.
Shall be within any of the following ranges and specified according to CATALOG
NUMBERS AND RATING OF STANDARD PRODUCTS or LOW PROFILE PRODUCTS.
• Not exceeding the value in No.1 : Leakage current code A
• Not exceeding twice the value in No.1 : Leakage current code B
Shall be within any of the following ranges and specified according to CATALOG
NUMBERS AND RATING OF STANDARD PRODUCTS or LOW PROFILE PRODUCTS.
• Within
±
15% of the value before test
• Within
±
20% of the value before test
Shall not exceed the values shown in CATALOG NUMBERS AND RATING OF STANDARD PRODUCTS or LOW PROFILE PRODUCTS.
There shall be no evidence of mechanical damage.
There shall be no evidence of mechanical damage.
Measuring temperature : 20
±
2°C
Step
3
Leakage Current
Capacitance Change
Dissipation Factor
Leakage Current
Step
4
Capacitance
Change
Dissipation Factor
Leakage Current
Step
5
Capacitance
Change
Dissipation Factor
Step
6
5
Surge (Surge Voltage)
Leakage Current
Capacitance Change
Dissipation Factor
Leakage Current
Capacitance
Change
Dissipation Factor
Appearance
6
Shear Test
JIS C 5101-1, 4.26
Test temperature and applied voltage : To each half of specimens
• 85
±
2°C, rated voltage
×
1.15
• 125
±
2°C, 2/3
×
rated voltage
×
1.15
Series protective resistance : 1000
Ω
Discharge resistance : 1000
Ω
JIS C 5101-1, 4.34
Capacitors mounted under the following conditions are used as specimens.
• Indirect heating method (reflow)
• Temperature : 240
±
10°C / Time : Less than 10 sec
Pressure : Case U : 2N Case M, S, A, B : 5N
Duration : 10
±
1 sec
JIS C 5101-1, 4.35
Bending : 1 mm
JIS C 5101-1, 4.17
Frequency range : 10
~
55 Hz Swing width : 1.5 mm
Vibration direction : 3 directions with mutually right-angled
Duration : 2 hours in each of these mutually perpendicular directions (total 6 hours)
Mounting : Solder terminal to the printed board
JIS C 5101-1, 4.19
Peak acceleration : 490 m/s
2
Duration : 11 ms
Wave form : Half-sine
7
8
Substrate Bending Test
(Terminal Strength)
Vibration
(Vibration Resistance)
Capacitance
Appearance
Capacitance
Appearance
Initial value to remain steady during measurement.
There shall be no evidence of mechanical damage.
Initial value to remain steady during measurement.
There shall be no evidence of mechanical damage.
9
Shock
There shall be no intermittent contact of 0.5 ms or greater, short, or open. Nor shall
there be any spark discharge, insulation breakdown, or evidence of mechanical
damage.
10
Solderability
Solder shall completely cover the terminal surface (there shall be no pin holes, JIS C 5101-1, 4.15
Solder temperature : 235
±
5°C
nonwetting or solder repelling).
Dipping time : 2
±
0.5 sec
Dipping depth : Terminal shall be dipped into melted solder.
Leakage Current
Shall be within any of the following ranges and specified according to CATALOG
NUMBERS AND RATING OF STANDARD PRODUCTS or LOW PROFILE PRODUCTS.
• Not exceeding the value in No.1 : Leakage current code A
• Not exceeding twice the value in No.1 : Leakage current code B
Shall be within any of the following ranges and specified according to CATALOG
NUMBERS AND RATING OF STANDARD PRODUCTS or LOW PROFILE PRODUCTS.
• Within
±
15% of the value before test
• Within
±
20% of the value before test
Shall not exceed the values shown in CATALOG NUMBERS AND RATING OF
STANDARD PRODUCTS or LOW PROFILE PRODUCTS.
There shall be no evidence of mechanical damage.
Shall not exceed twice the value in No.1.
Shall be within any of the following ranges and specified according to CATALOG
NUMBERS AND RATING OF STANDARD PRODUCTS or LOW PROFILE PRODUCTS.
• Within
±
15% of the value before test
• Within
±
20% of the value before test
Shall not exceed 150% of the values shown in CATALOG NUMBERS AND
RATING OF STANDARD PRODUCTS or LOW PROFILE PRODUCTS.
There shall be no evidence of mechanical damage.
Shall not exceed twice the value in No.1.
Shall be within any of the following ranges and specified according to CATALOG
NUMBERS AND RATING OF STANDARD PRODUCTS or LOW PROFILE PRODUCTS.
• Within
±
15% of the value before test
• Within
±
20% of the value before test
Shall not exceed 150% of the values shown in CATALOG NUMBERS AND
RATING OF STANDARD PRODUCTS or LOW PROFILE PRODUCTS.
There shall be no evidence of mechanical damage, and marking shall be legible.
Shall not exceed twice the value in No.1.
Shall be within any of the following ranges and specified according to CATALOG
NUMBERS AND RATING OF STANDARD PRODUCTS or LOW PROFILE PRODUCTS.
• Within
±
15% of the value before test
• Within
±
30% of the value before test
Shall not exceed 150% of the values shown in CATALOG NUMBERS AND
RATING OF STANDARD PRODUCTS or LOW PROFILE PRODUCTS.
There shall be no evidence of mechanical damage, and marking shall be legible.
IR reflow method
Preheating : 130
~
160°C for about 60 sec
Reflow : 200°C, less than 60 sec, 260°C max.
Number of cycles : 2
11
Resistance to
Soldering Heat
Capacitance
Change
Dissipation Factor
Appearance
12
Rapid Change of
Temperature
(Temperature Cycle)
Leakage Current
Capacitance
Change
Dissipation Factor
Appearance
13
High Temperature/
Moisture
(Moisture Resistance)
Leakage Current
Capacitance
Change
Dissipation Factor
Appearance
14
Endurance
(High Temperature
Load)
Leakage Current
Capacitance
Change
Dissipation Factor
Appearance
JIS C 5101-1, 4.16
Step 1 : -55
±
3°C, 30
±
3 min
Step 2 : 25
+10
°C,
3 min or less
-5
Step 3 : 125
±
2°C, 30
±
3 min
Step 4 : 25
+10
°C,
3 min or less
-5
Number of cycles : 5
JIS C 5101-1, 4.22
Temperature : 40
±
2°C
Moisture : 90
~
95%RH
Duration : 500
+24
hrs
0
JIS C 5101-1, 4.23
Test temperature and applied voltage : 85
±
2°C and rated voltage or
125
±
3°C and 2/3
×
rated voltage
Duration : 2000
+72
hrs
0
Power supply impedance : 3
Ω
or less
−5−