Type 267 NSeries (AEC-Q200 compliant)
Type 267 N Series is specially designed to SMD, based on our technology of chip tantalum capacitors acquired over many years.
Fully-molded construction provides excellent mechanical protection, superior moisture resistance and high soldering heat resistance.
This series is high-reliability capacitors developed for devices, such as automotive electric components, to be used under severe
environmental conditions.
FEATURES
1. Suitable for automotive electronics, such as Engine Control Units, ABS, Air Bags, and etc.
2. AEC-Q200 compliant
3. 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
Rating
-55 ½ +125℃
+85℃
4 ½ 35VDC
0.1 ½ 68 µF
±20%,±10%
See CATALOG NUMBERS AND RATING
OF STANDARD PRODUCTS
Remarks
To be used at derated voltage when temperature
exceeds 85℃ ( At 125℃, 2/3
×rated
voltage )
STSNDARD RATING
R.V.(VDC)
Cap.(
mF
)
0.1
0.15
0.22
0.33
0.47
0.68
1
1.5
2.2
3.3
4.7
6.8
10
15
22
33
47
68
100
4
6.3
10
16
Nobember,2010
20
25
35
A
A
A
A
A,B
A,B
A,B
A,B
B,C
B,C
C
C,D
A
A
A
B
B
C
C
A
A
A,B
A,B
A,B
A,B
C
A
A
A,B
A,B
A,B
A,B,C
B,C
B,D
D
A
A
A
A,B
A,B
A,B
A,B
B,C
B,C
C,D
C,D
A
A
A
A,B
A,B
A,B
B,C
B,C
C
C,D
D
A
A
A
A,B
A,B
B
B,C
C
C,D
C
D
DIMENSIONS
[ A case ]
L
W
[ B case ]
W
T
T
P
1
P
2
P
1
[ C case ]
W
[ D case ]
W
C
T
T
(mm)
Case Code
EIA Code
L±0.2
W±0.2
T±0.2
P
1
±0.2
P
2
min.
C±0.1
A
B
C
D
3216
3528
6032
7343
3.2
3.5
6.0
7.3
1.6
2.8
3.2
4.4
1.6
1.9
2.5
2.8
0.75
0.8
1.3
1.3
1.4
1.5
3.0
4.0
1.2
2.2
2.2
2.4
1
PERFORMANCE
No.
Item
Leakage Current (µA)
1
Capacitance (µF)
2
Dissipation Factor
3
Equivalent Series Resistance
Characteristics
at High and LowTemperature
Leakage Current
Step
Capacitance
1
Dissipation Factor
Leakage Current
Step
2
Capacitance Change
Dissipation Factor
Leakage Current
Capacitance Change
Dissipation Factor
Leakage Current
Capacitance Change
Dissipation Factor
Leakage Current
Capacitance Change
Dissipation Factor
Leakage Current
Capacitance Change
Dissipation Factor
Leakage Current
Capacitance Change
Dissipation Factor
Appearance
Leakage Current
Capacitance Change
Dissipation Factor
Appearance
Shall not exceed the values shown in CATALOG NUMBERS
AND RATING OF STANDARD PRODUCTS .
Shall be within tolerance of the nominal value specified.
Performance
Shall not exceed 0.01 CV or 0.5 µA whichever is greater.
Test method
IEC 60384-1, 4.9
Applied voltage : Rated voltage
Duration : 5 min
Measuring temperature : Room temperature
IEC 60384-1, 4.7
Measuring frequency : 120 Hz ± 20%
Measuring voltage : 0.5 Vrms +1.5 ~ 2 VDC
Measuring temperature : Room temperature
IEC 60384-1, 4.8
Measuring frequency : 120 Hz ± 20%
Measuring voltage : 0.5 Vrms +1.5 ~ 2 VDC
Measuring temperature : Room temperature
Measuring frequency : 100 kHz
Measuring temperature : 20°C
IEC 60384-1, 4.29
Measuring temperature : 20 ± 2°C
4
Shall not exceed the values shown in CATALOG NUMBERS
AND RATING OF STANDARD PRODUCTS .
5
Step
3
Step
4
Step
5
Step
6
HighTempera
ture
Exposure
6
Temperature
Cycle
7
Shall not exceed the value in No.1.
Shall be within tolerance of the nominal value specified.
Shall not exceed the values shown in CATALOG NUMBERS
AND RATING OF STANDARD PRODUCTS .
Shall not exceed the values shown in CATALOG NUMBERS
AND RATING OF STANDARD PRODUCTS .
0
Shall be within
-12
% of the value at Step 1
Shall not exceed the values shown in CATALOG NUMBERS
AND RATING OF STANDARD 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.
Shall not exceed 0.1 CV or 5 µA whichever is greater.
Shall be within
+10
% of the value at Step 1
0
Shall not exceed the values shown in CATALOG NUMBERS
AND RATING OF STANDARD PRODUCTS .
Shall not exceed 0.125CV or 6.3 µA whichever is greater.
+15
Shall be within
0
% of the value at Step 1
Shall not exceed the values shown in CATALOG NUMBERS
AND RATING OF STANDARD 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.
Shall not exceed 10 times value in No.1
Within ± 15%of initial value.
Shall not exceed the values shown in CATALOG NUMBERS
AND RATING OF STANDARD PRODUCTS.
There shall be no evidence of mechanical damage.
Shall not exceed 5 times value in No.1
Within ± 15%of initial value.
Shall not exceed the values shown in CATALOG NUMBERS
AND RATING OF STANDARD PRODUCTS.
There shall be no evidence of mechanical damage.
Shall not exceed 10 times value in No.1
Within ± 10%of initial value.
Shall not exceed the values shown in CATALOG NUMBERS
AND RATING OF STANDARD PRODUCTS.
There shall be no evidence of mechanical damage.
Shall not exceed 10 times value in No.1
Within ± 10%of initial value.
Shall not exceed the values shown in CATALOG NUMBERS
AND RATING OF STANDARD PRODUCTS.
There shall be no evidence of mechanical damage.
Shall not exceed 1.25 times value in No.1
Within ± 15%of initial value.
Shall not exceed the values shown in CATALOG NUMBERS
AND RATING OF STANDARD PRODUCTS.
There shall be no evidence of mechanical damage.
Shall not exceed the value in No.1.
Shall n Within ± 10%of initial value.
Shall not exceed the values shown in CATALOG NUMBERS
AND RATING OF STANDARD PRODUCTS.
There shall be no intermittent contact of 0.5 ms or greater
duration or arcing or other indication of breakdown, nor
shall there be any open or
short-circuiting or evidence of mechanical damage.
Measuring temperature : -55 ± 3°C
Measuring temperature : 20 ± 2°C
Measuring temperature : 85 ± 2°C
Measuring temperature : 125 ± 2°C
Measuring voltage : Derated voltage at 125°C
Measuring temperature : 20 ± 2°C
MIL-STD-202 Method 108
Temperature : 125 ± 2°C
+48
Duration : 1000
0
hrs
Moisture
Resistance
8
Leakage Current
Capacitance Change
Dissipation Factor
Appearance
Leakage Current
Capacitance Change
Dissipation Factor
Appearance
Leakage Current
Capacitance Change
Dissipation Factor
Appearance
Leakage Current
Capacitance Change
Dissipation Factor
Shock
(specified
JESD22 Method JA-104
Step 1 : -55 ± 3°C, 30 ± 3 min.
+10
Step 2 : 25
-5
°C, 3 min.max.
Step 3 : 125 ± 2°C, 30 ± 3 min.
+10
Step 4 : 25
-5
°C, 3 min.max.
Number of cycles : 1000
MIL-STD-202 Method 106
Biased
Humidity
9
Operational
Life
10
11
Resistance
to Solvents
MIL-STD-202 Method 103
Temperature : 85 ± 2°C
Moisture : 85± 5%RH
Applied voltage : DC rated voltage
+48
Duration : 1000
0
hrs
MIL-STD-202 Method 108
Test temperature : 125 ± 3°C
Applied voltage :DC rated voltage × 2/3
+72
Duration : 2000
0
hrs
Series resistance: do not exceed 3 Ω
MIL-STD-202 Method 215
Mechanical
pulse)
12
MIL-STD-202 Method 213
Test condition : F
Peak value: 1500G
Duration : 0.5ms
Wave form : Half-sine
5