CONDUCTIVE POLYMER ALUMINUM SOLID ELECTROLYTIC CAPACITORS
Chip Type, Higher Capacitance
High Temperature Range
NEW
PCH
High reliability, High voltage (to 63V).
Low ESR, High ripple current.
Long life of 4000 hours at 135°C.
SMD type : Lead free reflow soldering condition at
260°C peak complete correspondence.
Compliant to the RoHS directive (2011/65/EU).
ESR after Endurance at -40°C.
High Temperature
PCR
PCH
AEC-Q200 compliant. Please contact us for details.
Specifications
Item
Performance Characteristics
Category Temperature Range
Rated Voltage Range
–55 to +135°C
25 to 63V
Rated Capacitance Range
Capacitance Tolerance
22 to 470µF
20% at 120Hz, 20°C
Less than or equal to the specified value 120Hz, 20°C
Tangent of loss angle (tan δ)
at
(
1)
ESR
Less than or equal to the specified value 100kHz, 20°C
at
After 2 minutes' application of rated voltage, leakage current is not more than 0.03CV or 3( ), whichever is greater.
Leakage Current ( 2)
µA
Temperature Characteristics
(Max.Impedance Ratio)
Z+135°C / Z+20°C 1.25
Z–55°C / Z+20°C 1.25
(100kHz)
Capacitance change
Within 20% of initial capacitance value ( 3)
150% or less of the initial specified value
200% or less of the initial specified value
Less than or equal to the initial specified value
The specifications listed at right shall be met when the
capacitors are restored to 20°C after the rated voltage is
applied for 4000 hours at 135°C.
tan δ
Endurance
(
1)
ESR
Leakage current ( 2)
After storing the capacitors under no load at 135°C for 1000 hours and then performing voltage treatment based on JIS C 5101-4
clause 4.1 at 20°C, they shall meet the specified values for the endurance characteristics listed above.
Shelf Life
(
1)
ESR after Endurance
Less than or equal to the specified value at 100kHz, -40°C
Capacitance change
Within 20% of initial capacitance value ( 3)
150% or less of the initial specified value
200% or less of the initial specified value
Less than or equal to the initial specified value
The specifications listed at right shall be met when the
capacitors are restored to 20°C after the rated voltage is
applied for 2000 hours at 85°C, 85% RH.
Damp Heat
tan δ
(
1)
ESR
(Steady State)
Leakage current ( 2)
After soldering the capacitor under the soldering conditions
prescribed here, the capacitor shall meet the specifications listed at
right.
Pre-heating shall be done at 150 to 200°C and for 60 to 180 sec.
The duration for over +230°C temperature at capacitor surface shall
not exceed 60 seconds.
Capacitance change
Within 10% of the initial capacitance value ( 3)
130% or less than the initial specified value
130% or less than the initial specified value
Less than or equal to the initial specified value
tan δ
Resistance to
Soldering Heat
(
1)
ESR
Leakage current ( 2)
In case peak temperature is 260°C or less, reflow soldering shall be
two times maximum.
Measurement for solder temperature profile shall be made at the
capacitor top and the terminal.
Marking
Navy blue print on the case top
1 ESR should be measured at both of the terminal ends closest where the terminals protrude through the plastic platform.
2 Conditioning : If any doubt arises, measure the leakage current after the voltage treatment of applying DC rated voltage continuously to the capacitor for 120
minutes at 105°C.
Type numbering system (Example : 35V 150µF)
3 Initial value : The value before test of examination of resistance to soldering.
1
2
3
4
5
6
7
8
9 10 11 12 13 14
Dimensions
P C H 1 V 1 5 1 M C L 1 G S
Positive
Taping code
Size code
Plastic platform
0.3 MAX.
Capacitance
Lot No.
C
0.2
Configuration
Capacitance tolerance ( 20ꢀ%
Rated capacitance
(
150µF
%
%
Rated voltage
(35V
Series name
Type
+0.1
-0.4
L
Voltage (V:35V)
Series
Negative
H
Voltage
V
(mm)
12.7L
φ8 × 7L φ8 × 10L φ8 × 12L φ10 × 8L φ10 × 10L φ10
×
Size
φD
L
25
E
35
V
50
H
63
J
8.0
6.9
9.0
8.3
8.3
3.2
8.0
9.9
9.0
8.3
8.3
3.2
8.0
11.9
9.0
8.3
8.3
3.2
10.0
10.0
10.0
12.6
11.0
10.3
10.3
4.6
Code
7.9
9.9
11.0
10.3
10.3
4.6
11.0
10.3
10.3
4.6
A
B
Frequency coefficient of rated ripple current
0 Frequency0/ 120Hz 1kHz 10kHz 100kHz or more
C
E
0.8 to 1.1 0.8 to 1.1 0.8 to 1.1 0.8 to 1.1 0.8 to 1.1 0.8 to 1.1
Coefficient
0.05
0.30
0.70
1.00
H