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1210AC820KA11A

更新时间: 2024-09-22 10:43:11
品牌 Logo 应用领域
京瓷/艾维克斯 - KYOCERA AVX /
页数 文件大小 规格书
1页 103K
描述
Ceramic Capacitor, Multilayer, Ceramic, 1000V, 10% +Tol, 10% -Tol, X7R, 15% TC, 0.000082uF, Surface Mount, 1210, CHIP, ROHS COMPLIANT

1210AC820KA11A 数据手册

  
High Voltage MLCC (RoHS)  
Applications from 600V to 5000V  
High value, low leakage and small size are difficult parameters to obtain in capacitors for high voltage sys-  
tems. AVX special high voltage MLC chips capacitors meet these performance characteristics and are  
designed for applications such as snubbers in high frequency power converters, resonators in SMPS, and  
high voltage coupling/DC blocking. These high voltage chip designs exhibit low ESRs at high frequencies.  
Larger physical sizes than normally encountered chips are used to make high voltage chips. These larger  
sizes require that special precautions be taken in applying these chips in surface mount assemblies. This  
is due to differences in the coefficient of thermal expansion (CTE) between the substrate materials and chip  
capacitors. Apply heat at less than 4°C per second during the preheat. The preheat temperature must be  
within ±0°C of the peak temperature reached by the ceramic bodies through the soldering process. Chips  
1808 and larger to use reflow soldering only.  
Capacitors with X7R Dielectrics are not intended for AC line filtering applications. Contact plant for recom-  
mendations.  
Capacitors may require protective surface coating to prevent external arcing.  
NEW 630V RANGE  
HOW TO ORDER  
Check for up-to-date CV Tables at  
http://www.avx.com/docs/catalogs/aphvc.pdf  
1808  
A
A
271  
K
A
1
1
A
Packaging  
1 = 7" Reel  
3 = 13" Reel  
9 = Bulk  
Special  
Code  
AVX  
Style  
1206  
1210  
1808  
1812  
182±  
2220  
222±  
3640  
Voltage  
600V/630V = C  
1000V = A  
1±00V = S  
2000V = G  
2±00V = W  
3000V = H  
4000V = J  
Temperature  
Coefficient  
C0G = A  
Capacitance Code  
(2 significant digits  
+ no. of zeros)  
Examples:  
Capacitance  
Tolerance  
C0G: J = ±±5  
K = ±105  
M = ±205  
X7R: K = ±105  
M = ±205  
Test  
Termination*  
Level  
1 = Pd/Ag  
A = Standard  
A = Standard T = NiGuard  
X7R = C  
Nickel  
Barrier  
Solderable  
Plate  
10 pF = 100  
100 pF = 101  
1,000 pF = 102  
22,000 pF = 223  
220,000 pF = 224  
1 µF =10±  
TM  
Z = +805, -205  
Z = Flexiterm V+  
±000V = K  
*Note: Capacitors with X7R dielectrics are not intended for  
applications across AC supply mains or AC line filtering  
with polarity reversal. Contact plant for recommendations.  
NOTE: Contact factory for availability of Termination and Tolerance Options for Specific Part Numbers.  
HIGH VOLTAGE C0G CAPACITANCE VALUES  
VOLTAGE  
min.  
0805  
1206  
1210  
1808  
1812  
1825  
2220  
2225  
3640  
10pF  
330pF  
10pF  
180pF  
10 pF  
1200 pF  
10 pF  
±60 pF  
10 pF  
270 pF  
10 pF  
120 pF  
100 pF  
2700 pF  
10 pF  
1±00 pF  
10 pF  
680 pF  
10 pF  
270 pF  
100 pF  
3300 pF  
100 pF  
2200 pF  
10 pF  
820 pF  
10 pF  
330 pF  
10 pF  
180 pF  
10 pF  
120 pF  
10 pF  
47 pF  
100 pF  
±600 pF  
100 pF  
3300 pF  
10 pF  
1800 pF  
10 pF  
1000 pF  
0.012 µF  
100 pF  
8200 pF  
100 pF  
4700 pF  
100 pF  
1800 pF  
10 pF  
1000 pF  
0.012 µF  
1000 pF  
0.010 µF  
100 pF  
4700 pF  
100 pF  
2200 pF  
100 pF  
1±00 pF  
10 pF  
1000 pF  
0.018 µF  
1000 pF  
0.010 µF  
100 pF  
±600 pF  
100 pF  
2700 pF  
100 pF  
1800 pF  
10 pF  
1000 pF  
0.047 µF  
1000 pF  
0.022 µF  
100 pF  
600/630  
1000  
1±00  
2000  
2±00  
3000  
4000  
±000  
max.  
min.  
max.  
min.  
max.  
min.  
max.  
min.  
max.  
min.  
max.  
min.  
max.  
min.  
max.  
0.010 µF  
100 pF  
680 pF  
10 pF  
6800 pF  
100 pF  
470 pF  
10 pF  
1200 pF  
10 pF  
3900 pF  
100 pF  
330 pF  
10 pF  
1±0 pF  
820 pF  
10 pF  
1000 pF  
10 pF  
1200 pF  
10 pF  
2700 pF  
100 pF  
330 pF  
470 pF  
±60 pF  
1200 pF  
10 pF  
820 pF  
HIGH VOLTAGE X7R MAXIMUM CAPACITANCE VALUES  
VOLTAGE  
min.  
0805  
1206  
1210  
1808  
1812  
1825  
2220  
2225  
3640  
100pF  
6800pF  
100pF  
1±00pF  
1000 pF  
0.022 µF  
100 pF  
6800 pF  
100 pF  
2700 pF  
10 pF  
1±00 pF  
1000 pF  
0.0±6 µF  
1000 pF  
0.01± µF  
100 pF  
6800 pF  
100 pF  
3900 pF  
1000 pF  
0.068 µF  
1000 pF  
0.018 µF  
100 pF  
6800 pF  
100 pF  
3300 pF  
10 pF  
1000 pF  
0.120 µF  
1000 pF  
0.039 µF  
100 pF  
0.01± µF  
100 pF  
8200 pF  
10 pF  
0.010 µF  
0.270 µF  
1000 pF  
0.100 µF  
1000 pF  
0.0±6 µF  
100 pF  
0.027 µF  
100 pF  
0.01± µF  
100 pF  
0.012 µF  
0.010 µF  
0.270 µF  
1000 pF  
0.120 µF  
1000 pF  
0.0±6 µF  
1000 pF  
0.027 µF  
100 pF  
0.018 µF  
100 pF  
0.012 µF  
0.010 µF  
0.330 µF  
1000 pF  
0.1±0 µF  
1000 pF  
0.068 µF  
1000 pF  
0.033 µF  
100 pF  
0.022 µF  
100 pF  
0.01± µF  
0.010 µF  
0.±60 µF  
0.010 µF  
0.220 µF  
1000 pF  
0.100 µF  
1000 pF  
0.027 µF  
1000 pF  
0.022 µF  
1000 pF  
0.018 µF  
100 pF  
600/630  
1000  
1±00  
2000  
2±00  
3000  
4000  
±000  
max.  
min.  
max.  
min.  
max.  
min.  
max.  
min.  
max.  
min.  
max.  
min.  
max.  
min.  
max.  
2200 pF  
10 pF  
±600 pF  
10 pF  
1800 pF  
4700 pF  
6800 pF  
100 pF  
3300 pF  
20  

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