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6 |
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8 |
9 |
10 |
11 |
12 |
13 |
14 |
15 |
16 |
17 |
18 |
19 |
20 |
21 |
22 |
23 |
24 |
25 |
E |
C |
R |
1 |
C |
G |
R |
2 |
2 |
1 |
M |
F |
F |
2 |
8 |
0 |
6 |
3 |
0 |
1 |
2 |
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Voltage |
Code |
6.3 |
0J |
10 |
|
16 |
|
20 |
1D |
25 |
1E |
35 |
1V |
40 |
|
50 |
1H |
63 |
1J |
80 |
1K |
100 |
|
120 |
2B |
160 |
|
180 |
2K |
200 |
2D |
250 |
2E |
315 |
|
330 |
2U |
350 |
2V |
400 |
|
420 |
2X |
450 |
2W |
500 |
2H |
550 |
2Y |
Type |
Code |
CDVG |
VG |
CDVS |
VS |
CDVT |
VT |
CDVN |
VN |
CDVZ |
VZ |
CD11W |
SM |
CD11X |
SX |
CD26K |
KF |
CD |
SS |
CD |
KS |
CD11 |
GM |
CD110 |
GR |
CD |
ST |
CD110X |
GS |
CD268 |
KM |
CD |
RL |
CD288 |
SF |
CD288H |
LF |
CD263 |
GE |
CD288HE |
GF |
CD |
LM |
CD113 |
DM |
CD113H |
FM |
CD117 |
GW |
CD117H |
FW |
CD11N |
NM |
CD |
NS |
CD71 |
NP |
CD71H |
FP |
CD72 |
NH |
CDS |
NE |
CDSH |
FE |
CD26J |
PZ |
CD |
MZ |
CD26GH |
FZ |
CD26GA |
LZ |
CD17S |
PF |
CD17 |
PE |
CD |
MN |
CD291 |
AP |
CD292 |
BP |
CD293 |
CP |
CD |
DP |
CD294 |
GP |
CD295 |
LP |
CD296 |
FP |
CD135 |
PN |
CD136 |
HN |
CD137 |
FN |
CDIN |
UN |
CD92 |
GN |
Terminal |
Code |
Vertical |
V |
Radial |
R |
Snap in |
S |
Lug |
L |
Screw |
G |
Cap(uF) |
Code |
0.1 |
0R1 |
0.22 |
R22 |
0.33 |
R33 |
0.47 |
R47 |
0.68 |
R68 |
1 |
010 |
2.2 |
022 |
3.3 |
033 |
4.7 |
047 |
6.8 |
068 |
10 |
100 |
22 |
220 |
33 |
330 |
47 |
470 |
68 |
680 |
100 |
101 |
220 |
221 |
270 |
271 |
330 |
331 |
390 |
391 |
470 |
471 |
560 |
561 |
680 |
681 |
820 |
821 |
1000 |
102 |
2200 |
222 |
3300 |
332 |
4700 |
472 |
10000 |
103 |
22000 |
223 |
Tolerance |
Code |
+10 |
k |
-10 | |
+15 |
L |
-15 | |
+20 |
M |
-20 | |
+100 |
P |
-0 | |
+30 |
Q |
-10 | |
+20 |
R |
-0 | |
+50 |
T |
-10 | |
+75 |
U |
-10 | |
+20 |
V |
-10 | |
+20 |
H |
-5 | |
+30 |
F |
-0 |
Taping |
FF |
Lead out and froming |
k |
L | |
M | |
P |
Lead Space |
2.5 |
25 |
2.8 |
28 | |
3.5 |
35 | |
5.0 |
50 | |
7.5 |
75 | |
10 |
100 |
Note 1: 1. The number from 16th to 18th defines the diameter of capacitance 2. The 16th number is tenth digit 3. The 17th number is the single digit 4. The 18th number is on the right of the floatpiont Note 2: 1. the number from 19th to 21th defines the high of the capacitance 2. The 19th number is the hundredth digit 3. The 20th number is the tengt digit 4. The 21th number is the single digit |
Item 项目 |
Character 特性 | |||||||||||||||||||||||||||||||
Operating 适用温度范围 |
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Rated 适用工作电压范围 |
6.3~100V,DC |
160~450 V,DC | ||||||||||||||||||||||||||||||
Capacitance tolerance 容量误差 |
±20%(M) at 120Hz,+ | |||||||||||||||||||||||||||||||
Leakage Current (Max) 泄漏电流 |
WV≤100V.DC |
WV≥100V.DC | ||||||||||||||||||||||||||||||
I=0.01CV or 4uAWhichever is after 1 minutes |
I=0.03CV+10(uA)Whichever is after1 minutes | |||||||||||||||||||||||||||||||
I: Leakage Current (μA) C: Rated Capacitance (μF) V: Rated voltage (V) ( | ||||||||||||||||||||||||||||||||
Dissipation Factor(Tanδ) 损失角 (at120Hz, |
When nominal capacitance is over 1000μF, Tanδshall be added 0.02 to the listed value with increase of every 1000μF.
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Low Temperature Stability 低温特性 Impedance Ratio(MAX) 阻抗比率 |
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Surge voltage 涌浪电压 |
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Load Life 负荷寿命 |
After 2000 hours application of W.V. at
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Shelf Life 放置寿命 |
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Reference Standard 标准参照 |
JIS C-5141 |
φD |
4 |
5 |
6.3 |
8 |
10 |
13 |
16 |
18 |
22 |
25 |
φd |
0.45 |
0.5 |
0.5 |
0.5or0.6 |
0.6or0.8 |
0.8 or 1.0 |
1.0 |
1.0 | ||
F |
1.8 |
2.0 |
2.5 |
3.5 |
5.0 |
7.5 |
10 |
12.5 | ||
φD |
D+0.5 max |
D+1.0 max |
D+1.0 max | |||||||
L’ |
L+1.0 max |
L+1.5 max |
L+2.0 max |
RATED VOLTAGE(V) |
CAP (uF) |
FREQUENCY(HZ) |
RATED VOLTAGE(V) |
CAP (uF) |
FREQUENCY(HZ) | ||||||||
50 |
120 |
300 |
1K |
10K~ |
50 |
120 |
300 |
1K |
10K~ | ||||
6.3~100 |
≤47 |
0.75 |
1.0 |
1.35 |
1.57 |
1.15 |
160~450 |
1~220 |
0.80 |
1.0 |
1.25 |
1.40 |
1.60 |
56~470 |
0.8 |
1.0 |
1.23 |
1.34 |
1.5 |
≥270 |
0.90 |
1.0 |
1.10 |
1.13 |
1.15 | ||
≥560 |
0.85 |
1.0 |
1.10 |
1.13 |
2.0 |
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NO. |
项目ITEM |
测试方法TEST METHOD |
规格SPECIFICATION | ||
1. |
额定电压 Rated voltage |
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电压,容量范围请看该 系列之规格说明. Voltagerange, Capacitance range, Sees specification of this series. | ||
2. |
静电容量 Capacitance |
a. 测定频率Measuring frequency: 120Hz±12Hz b. 测定电压 Measuring voltage: ≤0.5Vrms+0.5~2.0VDC b. 测定电路Measurement circuit: | |||
3. |
散逸因素(损失角) Dissipation factor | ||||
4. |
泄漏电流 Leakage Current |
在 后测定直流泄漏电流. DC leakage current shall be measured after 1~2minutes application of the DC rated working voltage through the 1000Ω resistor at R:1000±100Ω S1:Swich 开关 A:DC current meter S2:Swich for protect of 直流电流计 current meter V:DC voltage meter 直流电流计的保护开关 直流电压计 CX:Testing capacitor 测试电容 |
损失角,泄漏电流请看 该系列 之规格说明. Dissipation factor, leakage Current, Sees specification of this series. | ||
5 |
Temperature characteristics 温度特性 |
STEP 步 骤 |
TEMPERATURE 温 度 |
STORAGE TIME 放置时间 |
Step2.ImpedanceRatio (Zr0 Zr) less than specified value 阻抗比:低于规定值 Step4 Capacitance change: Within ±20% of the Initial measured value 静电容量变化:最初测定值 的±20%以内. Leakage current: Less than 10 times of Initial specified value 泄漏电流:初期规格傎的 10倍以下 |
1 |
20± |
30minutes | |||
2 |
-40± |
2hours | |||
3 |
20± |
15minutes | |||
4 |
105± |
2hours | |||
Step1.Measure the capacitance and impedance 测定静电容量及阴抗(Zr0) Step2. Measure the impedance at thermal balance after 2 hour 达到热平衡2小时后没定阻抗( Zr) Step4.Measure the capacitance and leakage curt At thermal balance after 2 hours 达到热平衡2小时后测定静电容量及漏电流. |