PA500V227M0J
Specification
(500-V-220μF-6.3V-12mΩ)
1.
Application range ……………………………………………………………………………………….......1
2.
Standard Source ………………………………………………………………………...………………......1
3. Explanation of part numbers ……………………………………………..…………………………......... 1
4. Product specifications………………………………………………………………………………………..1
5. Configuration and dimension……………………………………………………………………………….2
6.Characteristic…………………………………………………...…………………………………………….2
7.Marking………………………………………..………………………………………………………………4
8. Tape & reel packaging……………………………………………………………………………………….5
9. Application Guidelines………………………………………………………………………………………5
10.Lead-Free Stance……………………………………………………………………………………………7
11. Halogen-Free Stance..………………………………………………………………………………………7
1. Application range
This Specifications applicable to Polymer solid-chip aluminum electrolytic capacitors for electronic
equipment.
2.
Standard source
Q/GGDZ 001-2005《Polymer solid-chip aluminum electrolytic capacitors》standard is drew up according
to international standard IEC384-18《Fixed capacitors for use in electronic equipment Part 18: Sectional
specification, Fixed aluminum electrolytic chip capacitors with solid and non-solid electrolyte》. The superior
standard is GB/T 2693-2001《Fixed capacitors for use in electronic equipment Part 1: Generic specification》.
3.
Explanation of part numbers
3.1 Type designation
PA
500
V
227
M
0J
Voltage code: first is Arabic digit,
second is capital letter
Capacitance tolerance
: M indicates
±
20%, K indicates±10%
Capacitance: three Arabic digits, unit
(pF)
,
first two digits indicate significant digits,
third indicates the number of 0 after
significant digits
Case code: capital letter, indicates
size code
Series: three Arabic digits
Polymer solid-chip aluminum
electrolytic capacitors
3.2 Rated voltage code
Rated voltage(V)
Voltage code
6.3
0J
4. Product specifications
Item
Operating temperature range
Rated voltage (V
R
)
Rated capacitance
Capacitance tolerance
Leakage current (L C)
Dissipation factor(tgδ)
Equivalent series resistance (ESR)
-55½+105℃
6.3V.DC
220µF
176.0µF~264.0µF (M:±
20%)/120Hz 20℃
≤55.4µ
(2minutes)
A
≤0.06
(120Hz 20℃)
≤12mΩ
(100kHz 20℃)
第
1
页
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7
页
Characteristics
Part numbers
Rated
Rated
tgδ
L.C.
capacitance
voltage
120Hz/20℃ max (µA)
120Hz/20℃
max
2minutes
(V.DC)
(µF)
6.3
220
0.06
55.4
Rated ripple
ESR
current
100kHz/20℃
100kHz/20~105℃
max (mΩ)
max (A)
12
4.3
PA500V227M0J
5.
Configuration and dimension
5.1
Configuration
H
P
L
W2
W1
5.2
Size code and dimension
Unit:(mm)
Dimension
Size code
V
6. Characteristic
Item
1
2
3
4
Rated capacitance
range
L.C. (I
L
)
Dissipation factor
(tgδ)
L±0.2
7.3
W1±0.2
4.3
H±0.2
1.9
P±0.2
1.3
W2±0.1
2.4
Characteristics
176.0µF~264.0µF (120Hz 20℃)
≤55.4µ
(2minutes)
A
≤0.06
(120Hz 20℃)
≤12mΩ
(100kHz 20℃)
Dip soldering
Temperature:260±
5℃
Dipping depth:1.5~2.0mm
Dipping time:10±
1s
Stabilizing time:24±
2h
Deionized water or distilled
resistivity≥1MΩ·cm。
Solvent temperature: 23±
5℃
Test time:5±
0.5min
No wiping
water,
Appearance
No visible damage, clear mark.
Appearance
Capacitance
change
No visible damage, clear mark.
Equivalent series
resistance (ESR)
5
Resistance to
soldering heat
≤±5%
of
initial value
≤
0.06
Dissipation
factor (tgδ)
6
Resistance to
solvents
Capacitance
change
≤±5%
of
initial value
第
2
页
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7
页
Stabilizing time:48h
Dissipation
factor (tgδ)
Appearance
Capacitance
change
≤
0.06
No visible damage, clear mark.
Bond
strength
of
7
lead coating
Capacitor is Measured when circuit board is
bent
≤±5%
of
initial value
≤
0.06
No visible damage, clear mark.
Dissipation
factor (tgδ)
Appearance
Capacitance
8
Temperature
change fleetly
θA: -55±
3℃,θB: +105±3℃
5 cycles,Time: 30min
Stabilizing time :1½2h
change
≤±10%
of
initial value
≤
0.06
≤
55.4
µ
A
No visible damage, clear mark.
Dissipation
factor (tgδ)
Leakage current
(LC)
Appearance
9
Climate order
Test temperature::
+105±
3℃,
duration: 16h
First cycle of test Db: 24h
Low temperature: -55±
3℃,duration:2h
Other cycle of test Db,duration:24h for
each cycle,Stabilizing time: 1½2h
Capacitance
change
≤±10%
of
initial value
≤
0.06
≤
55.4
µ
A
No visible damage, clear mark.
Dissipation
factor (tgδ)
Leakage current
(LC)
Appearance
Capacitance
Test temperature: 60±
2℃
Damp heat, Steady
state
+2
Test humidity: 93 -3 %RH
No load
Test time: 21d
Stabilizing time: 1½2h
change
≤-20%~+40%
of
initial value
≤0.12
≤110.8µ
A
No visible damage, clear mark.
10
Dissipation
factor (tgδ)
Leakage current
(LC)
Appearance
Capacitance
change
11
Endurance
Test temperature: +105±
3℃
Applied voltage: Rated voltage
Test time: 2000h
Stabilizing time: 1½2h
≤±20% of initial value
≤0.09
≤
55.4
µ
A
≤±20% of initial value
≤0.12
≤±20% of initial value
≤0.06
Dissipation
factor (tgδ)
Leakage current
(LC)
Test
Capacitance
change
Characteristics
at
low
12
high
and
temperature
Step
1:
temperature:
20±
2℃;
initial
measuring
Test
Step
2:
temperature:
-55±
3℃
Dissipation
factor (tgδ)
Capacitance
change
value
Step 3
:
Test
temperature:
+105±
3℃
Dissipation
factor (tgδ)
第
3
页
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7
页
Leakage current
(LC)
Test temperature:15½35℃
Cycles: 1000000
Charge: rated DC voltage
,
interior
resistance of power and exterior series
resistance according to RC=0.1s
Charge time: 0.5s,Discharge time: 0.5s
Capacitance
change
≤227µ
A
≤±20%
of
initial value
13
Charge
discharge
and
Leakage current
(LC)
Appearance
Capacitance
≤55.4µ
A
No visible damage, clear mark.
14
Shelf life
Test temperature: +105±
3℃
Test time: 500±
24h
Stabilizing time: 16h
change
≤±20% of initial value
≤0.06
≤110.8µ
A
No visible damage, clear mark.
Dissipation
factor (tgδ)
Leakage current
(LC)
Appearance
15
Surge
Test temperature: 15½35℃
Cycles: 1000
Applied Voltage: 1.25times of rated voltage
Protection resistance: RC=0.1±
0.05s
Charge time: 30s,Discharge time: 5min30s
Capacitance
change
≤±10% of initial value
≤0.06
≤55.4µ
A
≤±20% of initial value
≤0.0
6
≤110.8µ
A
Dissipation
factor (tgδ)
Leakage current
(LC)
Capacitance
change
16
Reverse voltage
Duration: Applying 0.15U
R
DC reverse
voltage at+105℃ for 125h, then applying
U
R
DC voltage at +105℃for 125h
Dissipation
factor(tgδ)
Leakage current
(LC)
7.
Marking
a) Lead end polarity (Positive)
b) Rated capacitance
c) Rated voltage
d) Company mark (G )
e) Lead end polarity (Negative)
8. Tape & reel packaging
Sketch map of embossed tape (Unit:mm)
第
4
页
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7
页