CONDUCTIVE POLYMER ALUMINUM SOLID ELECTROLYTIC CAPACITORS
CONDUCTIVE POLYMER ALUMINUM SOLID ELECTROLYTIC CAPACITORS
PCX
Chip Type, High Voltage / Long Life
Chip Type, High Voltage / Long Life
High reliability, High voltage (to 50V).
High ESR,
reliability,
Low
High High
ripplevoltage
current.(to 50V).
Low
current.
LongESR,
life ofHigh
1500ripple
to 3000
hours at 125°C.
Long
life of: 1500
3000
hours
at 125°C.
SMD type
Lead to
free
reflow
soldering
condition at
SMD
type
:
Lead
free
reflow
soldering condition at
260°C peak complete correspondence.
260°C peak
Compliant
tocomplete
the RoHScorrespondence.
directive (2011/65/EU,(EU)2015/863).
Compliant
the RoHSPlease
directive
(2011/65/EU,(EU)2015/863).
AEC-Q200to
compliant.
contact
us for details.
AEC-Q200 compliant. Please contact us for details.
PCR
PCR
Higher
Capacitance
Higher
Capacitance
PCX
PCX
Higher
Temperature
Higher
Temperature
PCV
PCV
Specifications
Specifications
Item
Item
Category Temperature Range
Category Temperature Range
Rated Voltage Range
Rated Voltage Range
Rated Capacitance Range
Rated Capacitance Range
Capacitance Tolerance
Capacitance Tolerance
Tangent of loss angle (tan δ)
Tangent of loss angle (tan δ)
ESR ( 1)
ESR ( 1)
Leakage Current ( 2)
Leakage Current ( 2)
Temperature Characteristics
Temperature Characteristics
(Max.Impedance Ratio)
(Max.Impedance Ratio)
Performance Characteristics
Performance Characteristics
– 55 to +125°C
– 55 to +125°C
16 to 50V
16 to 50V
5.6 to 390µF
5.6 to 390µF
± 20% at 120Hz, 20°C
± 20% at 120Hz, 20°C
Less than or equal to the specified value at 120Hz, 20°C
Less than or equal to the specified value at 120Hz, 20°C
Less than or equal to the specified value at 100kHz, 20°C
Less than or equal to the specified value at 100kHz, 20°C
Less than or equal to the specified value . After 2 minutes' application of rated voltage at 20°C
Less than or equal to the specified value . After 2 minutes' application of rated voltage at 20°C
(100kHz)
Z+125°C / Z+20°C 1.25
(100kHz)
Z+125°C
Z+20°C 1.25
Z– 55°C / /Z+20°C
1.25
1.25
Z– 55°C / Z+20°C
Endurance
Endurance
The specifications listed at right shall be met when the
The specifications
listedtoat20°C
right after
shall the
be met
the is
capacitors
are restored
ratedwhen
voltage
capacitors
restored
after the ratedatvoltage
= 6.3:1500hours)
applied
for are
3000
hours to
(φD20°C
125°C.is
applied for 3000 hours (φD = 6.3:1500hours) at 125°C.
Capacitance change
Capacitance
change
tan
δ
tan δ ( 1)
ESR
( 1)
ESR
Leakage
current ( 2)
Leakage current ( 2)
Within ± 20% of initial capacitance value ( 3)
Within or
± 20%
of the
initial
capacitance
150%
less of
initial
specified value
value ( 3)
150% or
or less
less of
of the
the initial
initial specified
specified value
value
150%
150%than
or less
of theto
initial
specified
value value
Less
or equal
the initial
specified
Less than or equal to the initial specified value
Damp Heat
Damp Heat
(Steady State)
(Steady State)
The specifications listed at right shall be met when the
The
specifications
listedtoat20°C
right after
shall the
be met
the is
capacitors
are restored
ratedwhen
voltage
capacitors
restored
to60°C,
20°C after
applied for are
1000
hours at
90% the
RH.rated voltage is
applied for 1000 hours at 60°C, 90% RH.
Capacitance change
Capacitance
change
tan δ
tan δ ( 1)
ESR
( 1)
ESR
Leakage
current ( 2)
Leakage current ( 2)
Within ± 20% of initial capacitance value ( 3)
Within or
± 20%
of the
initial
capacitance
150%
less of
initial
specified value
value ( 3)
150%
150% or
or less
less of
of the
the initial
initial specified
specified value
value
150%
or less
of theto
initial
specified
value value
Less than
or equal
the initial
specified
Less than or equal to the initial specified value
After soldering the capacitor under the soldering conditions
After
soldering
the
capacitor
under
soldering
conditions listed at
prescribed
here,
the
capacitor
shallthe
meet
the specifications
prescribed
here, the capacitor shall meet the specifications listed at
right.
right.
Pre-heating
shall be done at 150 to 200°C and for 60 to 180 sec.
Capacitance change
Within ± 10% of the initial capacitance value ( 3)
Pre-heating
be done
at 150
to 200°C at
and
for 60 tosurface
180 sec.
The
durationshall
for over
+230°C
temperature
capacitor
shall
Capacitance
change
Within
± 10%
thethe
initial
capacitance
130% or
less of
than
initial
specifiedvalue
value( 3)
Theexceed
duration60forseconds.
over +230°C temperature at capacitor surface shall
tan δ
Resistance to
not
130% or
or less
less than
than the
the initial
initial specified
specified value
value
tan δ ( 1)
Resistance to
notcase
exceed
seconds. is 250°C or less, reflow soldering shall be
ESR
130%
In
peak60temperature
Soldering Heat
( 1)
ESR
130%than
or less
than the
initial
specified
value
In case
peak
temperature is 250°C or less, reflow soldering shall be
Soldering Heat
Leakage
current ( 2)
Less
or equal
to the
initial
specified
value
two
times
maximum.
Leakage current ( 2)
Less than or equal to the initial specified value
twocase
times
maximum.
In
peak
temperature is 260°C or less, reflow soldering shall be
In case peak temperature is 260°C or less, reflow soldering shall be
once.
once.
Measurement
for solder temperature profile shall be made at the
Measurement
capacitor
top. for solder temperature profile shall be made at the
capacitor top.
Marking
Navy blue print on the case top
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.
1
ESR
should
be
measured
both of
the terminal
ends closest
protrudeof
through
theDC
plastic
2 Conditioning : If any doubtat
arises,
measure
the leakage
currentwhere
after the
the terminals
voltage treatment
applying
ratedplatform.
voltage continuously to the capacitor for 120
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.
minutes
at
105°C.
Type numbering system (Example : 35V 39µF)
3 Initial value : The value before test of examination of resistance to soldering.
Type numbering system (Example : 35V 39µF)
3 Initial value : The value before test of examination of resistance to soldering.
1
1
Vibration Resistance
Vibration Resistance
Series
Series
Voltage (V:35V)
Voltage (V:35V)
0.50.5
MAX.
MAX.
E E
B±0.2
B±0.2
Plastic platform
Plastic platform
L±0.5
L±0.5
Negative
Negative
H
H
0.3 MAX.
0.3 MAX.
C±0.2
C±0.2
B±0.2
B±0.2
φD±0.5
φD±0.5
Lot No.
Lot No.
CX
CX
3 93 9
VV
0 10 21 2
Capacitance
Capacitance
L +0.1
-0.4
L +0.1
-0.4
0.50.5
MAX.
MAX.
Voltage (V:35V)
Voltage (V:35V)
Series
Series
C±0.2
C±0.2
H
H
Positive
Positive
Positive
Positive
A±0.2
A±0.2
0.3 MAX.
E E
Lot No.
Lot No.
CX
CX
3 93 9
VV
0 10 21 2
Capacitance
Capacitance
Plastic platform
Plastic platform
0.3 MAX.
φD±0.5
φD±0.5
Standard
Standard
Negative
Negative
Aid electrode
Aid electrode
Dimension table in next page.
Dimension table in next page.
2
2
3
3
4
4
5
5
6
6
7
7
8
8
9 10 11 12 13 14
9 10 11 12 13 14
PCX 1 V 3 9 0 MC L 1 GS
PCX 1 V 3 9 0 MC L 1 GS
Standard
Standard
Size
Size
φD
φD
L
L
A
A
B
B
C
C
E
E
H
H
φ6.3 ×6L
φ6.3
×6L
6.3
6.3
5.9
5.9
7.3
7.3
6.6
6.6
6.6
6.6
2.1
2.1
0.5 to 0.8
0.5 to 0.8
Voltage
Voltage
Taping code
Taping code
Size code
Size code
Configuration
Capacitance tolerance (±20%)
Capacitance tolerance (±20%)
Rated capacitance (39µF)
Rated capacitance (39µF)
Rated voltage (35V)
Rated voltage (35V)
Series name
Series name
Type
Type
A±0.2
A±0.2
Dimensions
Dimensions
φ6.3 ×8L
φ6.3
×8L
6.3
6.3
7.9
7.9
7.3
7.3
6.6
6.6
6.6
6.6
2.1
2.1
0.5 to 0.8
0.5 to 0.8
φ8 ×7L
φ88.0
×7L
8.0
6.9
6.9
9.0
9.0
8.3
8.3
8.3
8.3
3.2
3.2
0.8 to 1.1
0.8 to 1.1
φ8 ×10L
φ88.0
×10L
8.0
9.9
9.9
9.0
9.0
8.3
8.3
8.3
8.3
3.2
3.2
0.8 to 1.1
0.8 to 1.1
φ8 ×12L
φ88.0
×12L
8.0
11.9
11.9
9.0
9.0
8.3
8.3
8.3
8.3
3.2
3.2
0.8 to 1.1
0.8 to 1.1
φ10 ×8L
φ10
×8L
10.0
10.0
7.9
7.9
11.0
11.0
10.3
10.3
10.3
10.3
4.6
4.6
0.8 to 1.1
0.8 to 1.1
φ10 ×10L
φ10
×10L
10.0
10.0
9.9
9.9
11.0
11.0
10.3
10.3
10.3
10.3
4.6
4.6
0.8 to 1.1
0.8 to 1.1
(mm)
(mm)
φ10×12.7L
φ10×12.7L
10.0
10.0
12.6
12.6
11.0
11.0
10.3
10.3
10.3
10.3
4.6
4.6
0.8 to 1.1
0.8 to 1.1
Configuration
Configuration
Code
Configuration
Code
Standard
L
Standard
L
Vibration
Resistance
S
Vibration Resistance
S
Vibration Resistance
Vibration Resistance
Size
Size
φD
φD
L
L
A
A
B
B
C
C
E
E
H
H
φ6.3 ×8L
φ6.3
×8L
6.3
6.3
7.5
7.5
7.3
7.3
6.6
6.6
6.6
6.6
2.5
2.5
0.5 to 0.8
0.5 to 0.8
φ8×10.5L
φ8×10.5L
8.0
8.0
10.0
10.0
9.0
9.0
8.3
8.3
8.3
8.3
3.1
3.1
1.1 to 1.5
1.1 to 1.5
(mm)
(mm)
φ10×10.5L φ10×13.2L
φ10×10.5L
φ10×13.2L
10.0 10.0
10.0 10.0
10.0 12.7
10.0 12.7
11.0 11.0
11.0 11.0
10.3 10.3
10.3 10.3
10.3 10.3
10.3 10.3
4.6 4.6
4.6 4.6
1.1 to 1.5 1.1 to 1.5
1.1 to 1.5 1.1 to 1.5
Frequency coefficient of rated ripple current
Frequency coefficient of rated ripple current
V 16 20 25 35 50
Frequency 120Hz 1kHz 10kHz 100kHz or more
V 16 20 25 35 50
Frequency 120Hz 1kHz 10kHz 100kHz or more
Code C D E V H
Coefficient 0.05 0.30 0.70
1.00
Code C D E V H
Coefficient 0.05 0.30 0.70
1.00
φ6.3×8L(φ6.3×8L),φ8×10L(φ8×10.5L),φ10×10L(φ10×10.5L),φ10×12.7L(φ10×13.2L) :
φ6.3×8L(φ6.3×8L),φ8×10L(φ8×10.5L),φ10×10L(φ10×10.5L),φ10×12.7L(φ10×13.2L)
:
The
vibration structure-resistant product is also available upon request, please ask for details.
The
product is also available
upon request, please ask for details.
( ) vibration
: Size ofstructure-resistant
the vibration structure-resistant
product.
( ) : Size of the vibration structure-resistant product.
CAT.8100K
CONDUCTIVE POLYMER ALUMINUM SOLID ELECTROLYTIC CAPACITORS
PCX
Dimensions
Rated Voltage
(V)
(code)
16
(1C)
20
(1D)
Surge
Voltage
(V)
18.4
23.0
Rated
Capacitance
(µF)
28.7
50
(1H)
40.2
57.5
(
)
Rated Ripple
(mArms /100kHz)
≦105℃ (*3)
105℃<
≦125℃ (*3)
Part Number
47
6.3× 6
0.12
150
55
1000
390
PCX1C470MCL1GS
8×7
0.12
262
45
1300
530
PCX1C820MCL1GS
100
6.3 ×8
0.12
320
33
1500
460
PCX1C101MCL1GS
150
▲ 8× 10
0.12
480
28
2000
780
PCX1C151MCL6GS
150
10× 8
0.12
480
33
1900
830
PCX1C151MCL1GS
220
8× 12
0.12
704
27
2300
870
PCX1C221MCL1GS
270
10× 10
0.12
864
27
2300
830
PCX1C271MCL1GS
390
10× 12.7
0.12
1248
26
2700
1040
PCX1C391MCL1GS
33
6.3×6
0.12
132
60
900
380
PCX1D330MCL1GS
56
8× 7
0.12
224
50
1300
500
PCX1D560MCL1GS
68
6.3× 8
0.12
272
34
1450
470
PCX1D680MCL1GS
120
▲ 8× 10
0.12
480
29
1900
770
PCX1D121MCL6GS
120
10× 8
0.12
480
35
1800
810
PCX1D121MCL1GS
150
8× 12
0.12
600
28
2200
860
PCX1D151MCL1GS
180
10× 10
0.12
720
28
2300
800
PCX1D181MCL1GS
270
10× 12.7
0.12
1080
27
2700
1020
PCX1D271MCL1GS
6.3× 6
0.12
110
65
900
360
PCX1E220MCL1GS
39
8× 7
0.12
195
55
1200
480
PCX1E390MCL1GS
56
6.3× 8
0.12
280
35
1400
450
PCX1E560MCL1GS
82
▲ 8× 10
0.12
410
30
1900
760
PCX1E820MCL6GS
82
10× 8
0.12
410
36
1800
800
PCX1E820MCL1GS
120
▲ 8× 12
0.12
600
29
2200
850
PCX1E121MCL6GS
120
10× 10
0.12
600
29
2200
790
PCX1E121MCL1GS
180
10× 12.7
0.12
900
28
2600
1010
PCX1E181MCL1GS
6.3× 6
0.12
70
85
800
310
PCX1V100MCL1GS
10
35
(1V)
tan δ
Leakage Current
ESR (mΩ)
(µA)
at 20℃ after (20℃/100kHz)
2 minutes
82
22
25
(1E)
Case Size
φD×L(mm)
18
8× 7
0.12
126
60
1100
450
PCX1V180MCL1GS
27
6.3× 8
0.12
189
45
1300
450
PCX1V270MCL1GS
39
▲ 8× 10
0.12
273
35
1800
700
PCX1V390MCL6GS
39
10× 8
0.12
273
41
1700
750
PCX1V390MCL1GS
56
8× 12
0.12
392
33
2000
780
PCX1V560MCL1GS
68
10× 10
0.12
476
30
2200
740
PCX1V680MCL1GS
100
10× 12.7
0.12
700
29
2600
990
PCX1V101MCL1GS
5.6
6.3× 6
0.12
56
105
700
280
PCX1H5R6MCL1GS
10
8× 7
0.12
100
75
1000
410
PCX1H100MCL1GS
12
6.3× 8
0.12
120
65
1100
380
PCX1H120MCL1GS
22
▲ 8× 10
0.12
220
37
1700
680
PCX1H220MCL6GS
22
10× 8
0.12
220
56
1400
730
PCX1H220MCL1GS
27
8× 12
0.12
270
35
2000
760
PCX1H270MCL1GS
33
10× 10
0.12
330
31
2200
630
PCX1H330MCL1GS
47
10× 12.7
0.12
470
30
2500
970
PCX1H470MCL1GS
(*3) Ambient temperature of a capacitor
No marked, 1 will be put at 12th digit of type numbering system.
: In this case, 6 will be put at 12th digit of type numbering system.
For taping specifications, recommended land size/soldering by
reflow and minimum order quantity, please refer to the Guidelines
for Aluminum Electrolytic Capacitors.
CAT.8100K
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