08053L104KAU4A [KYOCERA AVX]

X8R/X8L Dielectric; X8R / X8L介
08053L104KAU4A
型号: 08053L104KAU4A
厂家: KYOCERA AVX    KYOCERA AVX
描述:

X8R/X8L Dielectric
X8R / X8L介

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X8R/X8L Dielectric  
General Specifications  
AVX has developed a range of multilayer ceramic capacitors designed for use in applications up to 150ºC.  
These capacitors are manufactured with an X8R and an X8L dielectric material. X8R material has  
capacitance variation of 15ꢀ between ꢁ55ºC and +150ºC. The X8L material has capacitance variation of  
15ꢀ between ꢁ55ºC to 125ºC and +15ꢂꢁ40ꢀ from +125ºC to +150ºC.  
The need for X8R and X8L performance has been driven by customer requirements for parts that operate  
at elevated temperatures. They provide a highly reliable capacitor with low loss and stable capacitance  
over temperature.  
They are ideal for automotive under the hood sensors, and various industrial applications. Typical industrial  
application would be drilling monitoring system. They can also be used as bulk capacitors for high  
temperature camera modules.  
Both X8R and X8L dielectric capacitors are automotive AECꢁQ200 qualified. Optional termination systems, tin,  
FLEXITERM® and conductive epoxy for hybrid applications are available. Providing this series with our  
FLEXITERM® termination system provides further advantage to customers by way of enhanced resistance to  
both, temperature cycling and mechanical damage.  
PART NUMBER (see page 2 for complete part number explanation)  
0805  
5
F
104  
K
4
T
2
A
Size  
0603  
0805  
1206  
Voltage  
16V = Y  
25V = 3  
50V = 5  
100V = 1  
Dielectric  
X8R = F  
X8L = L  
Capacitance Capacitance  
Failure  
Rate  
Terminations  
T = Plated Ni  
and Sn  
Packaging  
2 = 7" Reel  
4 = 13" Reel  
Special  
Code  
A = Std.  
Product  
Code (In pF)  
2 Sig. Digits +  
Number of  
Tolerance  
J = 5ꢀ  
4 = Automotive  
A = Not  
K = 10ꢀ  
M = 20ꢀ  
Z = FLEXITERM®  
U = Conductive  
Epoxy for  
Applicable  
Zeros  
e.g. 10μF = 106  
Hybrid apps  
NOTE: Contact factory for availability of Termination and Tolerance Options for Specific Part Numbers.  
X8R  
X8L  
SIZE  
0603  
0805  
1206  
SIZE  
0603  
0805  
50V  
J
J
J
J
J
J
J
J
J
J
J
J
J
J
J
1206  
WVDC  
25V  
G
G
G
G
G
G
G
G
G
G
G
G
G
G
G
50V  
G
G
G
G
G
G
G
G
G
G
G
G
G
G
25V  
J
J
J
J
J
J
J
J
J
J
J
J
J
J
N
N
N
N
50V  
J
J
J
J
J
J
J
J
J
J
J
J
J
J
N
N
N
25V  
50V  
WVDC  
25V  
50V  
G
G
G
G
G
G
G
G
G
G
G
G
G
G
G
G
100V  
G
G
G
G
G
G
G
G
25V  
100V  
16V  
25V  
50V  
100V  
331  
471  
681  
102  
152  
222  
332  
472  
682  
103  
153  
223  
333  
473  
683  
104  
154  
224  
334  
474  
684  
105  
Cap  
(pF)  
330  
470  
680  
1000  
1500  
2200  
3300  
4700  
6800  
331  
471  
681  
102  
152  
222  
332  
472  
682  
103  
153  
223  
333  
473  
683  
104  
154  
224  
334  
474  
684  
105  
Cap  
(pF)  
330  
470  
680  
1000  
1500  
2200  
3300  
4700  
6800  
J
J
J
J
J
J
J
J
J
J
J
J
N
N
J
J
J
J
J
J
J
J
J
J
J
J
J
J
J
J
J
J
J
J
J
J
J
J
J
J
J
J
J
J
J
J
P
P
J
J
J
J
J
J
J
J
J
J
J
M
Q
Q
Q
G
G
Cap 0.01  
(μF) 0.015  
0.022  
0.033  
0.047  
0.068  
0.1  
Cap 0.01  
(μF) 0.015  
0.022  
0.033  
0.047  
0.068  
0.1  
G
G
G
G
G
G
J
J
J
J
J
J
J
N
N
N
J
J
J
J
M
M
M
M
M
M
M
M
M
M
M
J
N
N
0.15  
0.22  
0.33  
0.47  
0.15  
0.22  
0.33  
0.47  
J
J
J
M
M
M
16V  
J
J
M
M
0.68  
0.68  
1
1
WVDC  
25V  
50V  
25V  
50V  
25V  
50V  
WVDC  
25V  
50V  
100V  
25V  
50V  
100V  
25V  
50V  
100V  
SIZE  
0603  
0805  
1206  
SIZE  
0603  
0805  
1206  
= AEC-Q200  
Qualified  
Letter  
Max.  
Thickness (0.013)  
A
0.33  
C
E
0.71  
(0.028)  
G
0.90  
(0.035)  
J
0.94  
(0.037)  
K
1.02  
(0.040)  
M
1.27  
(0.050)  
N
1.40  
(0.055)  
P
1.52  
(0.060)  
Q
1.78  
(0.070)  
X
Y
2.54  
(0.100)  
Z
0.56  
(0.022)  
2.29  
(0.090)  
2.79  
(0.110)  
PAPER  
EMBOSSED  
14  
X8R/X8L Dielectric  
General Specifications  
APPLICATIONS FOR X8R AND X8L CAPACITORS  
• All market sectors with a 150°C requirement  
• Automotive on engine applications  
• Oil exploration applications  
• Hybrid automotive applications  
– Battery control  
– Inverter ꢂ converter circuits  
– Motor control applications  
– Water pump  
• Hybrid commercial applications  
– Emergency circuits  
– Sensors  
Temperature regulation  
ADVANTAGES OF X8R AND X8L MLC CAPACITORS  
• Both ranges are qualified to the highest automotive  
AECꢁQ200 standards  
• Excellent reliability compared to other capacitor  
technologies  
• RoHS compliant  
• Low ESR ꢂ ESL compared to other technologies  
• Tin solder finish  
• FLEXITERM® available  
• Epoxy termination for hybrid available  
• 100V range available  
ENGINEERING TOOLS FOR HIGH VOLTAGE MLC CAPACITORS  
• Samples  
Technical Articles  
• Application Engineering  
• Application Support  
X8R/X8L Dielectric  
0805, 50V, X8R/X8L Typical Temperature Coefficient  
10.00  
0.00  
X8R  
X8L  
-10.00  
-20.00  
-30.00  
-40.00  
-50.00  
-55 -35 -15  
0
20 25 35 45 65 85 105 125 130 135 140 150  
Temperature (°C)  
15  
X8R/X8L Dielectric  
Specifications and Test Methods  
Parameter/Test  
Operating Temperature Range  
Capacitance  
X8R/X8L Specification Limits  
Measuring Conditions  
Temperature Cycle Chamber  
Freq.: 1.0 kHz 10ꢀ  
ꢁ55ºC to +150ºC  
Within specified tolerance  
≤ 2.5ꢀ for ≥ 50V DC rating  
≤ 3.5ꢀ for 25V DC and 16V DC rating  
100,000MΩ or 1000MΩ ꢁ μF,  
whichever is less  
Voltage: 1.0Vrms .2V  
Dissipation Factor  
Charge device with rated voltage for  
120 5 secs ꢃ room tempꢂhumidity  
Charge device with 300ꢀ of rated voltage for  
1ꢁ5 seconds, wꢂcharge and discharge current  
limited to 50 mA (max)  
Insulation Resistance  
Dielectric Strength  
No breakdown or visual defects  
Note: Charge device with 150ꢀ of rated  
voltage for 500V devices.  
Appearance  
Capacitance  
Variation  
Dissipation  
Factor  
Insulation  
Resistance  
No defects  
Deflection: 2mm  
Test Time: 30 seconds  
12ꢀ  
Resistance to  
Flexure  
1mm/sec  
Meets Initial Values (As Above)  
≥ Initial Value x 0.3  
Stresses  
90 mm  
≥ 95ꢀ of each terminal should be covered  
with fresh solder  
No defects, <25ꢀ leaching of either end terminal  
Dip device in eutectic solder at 230 5ºC  
for 5.0 0.5 seconds  
Solderability  
Appearance  
Capacitance  
Variation  
7.5ꢀ  
Dip device in eutectic solder at 260ºC for 60  
seconds. Store at room temperature for 24  
hours before measuring electrical properties.  
Dissipation  
Factor  
Insulation  
Resistance  
Dielectric  
Strength  
2
Resistance to  
Solder Heat  
Meets Initial Values (As Above)  
Meets Initial Values (As Above)  
Meets Initial Values (As Above)  
No visual defects  
Appearance  
Capacitance  
Variation  
Step 1: ꢁ55ºC 2º  
Step 2: Room Temp  
30 3 minutes  
≤ 3 minutes  
7.5ꢀ  
Dissipation  
Factor  
Insulation  
Resistance  
Dielectric  
Strength  
Appearance  
Capacitance  
Variation  
Dissipation  
Factor  
Insulation  
Resistance  
Dielectric  
Strength  
Appearance  
Capacitance  
Variation  
Dissipation  
Factor  
Insulation  
Resistance  
Dielectric  
Strength  
Thermal  
Shock  
Meets Initial Values (As Above)  
Meets Initial Values (As Above)  
Step 3: +125ºC 2º  
Step 4: Room Temp  
30 3 minutes  
≤ 3 minutes  
Repeat for 5 cycles and measure after  
24 2 hours at room temperature  
Meets Initial Values (As Above)  
No visual defects  
Charge device with 1.5 rated voltage (≤ 10V) in  
test chamber set at 150ºC 2ºC  
for 1000 hours (+48, ꢁ0)  
12.5ꢀ  
≤ Initial Value x 2.0 (See Above)  
≥ Initial Value x 0.3 (See Above)  
Load Life  
Remove from test chamber and stabilize  
at room temperature for 24 2 hours  
before measuring.  
Meets Initial Values (As Above)  
No visual defects  
Store in a test chamber set at 85ºC 2ºCꢂ  
85ꢀ 5ꢀ relative humidity for 1000 hours  
(+48, ꢁ0) with rated voltage applied.  
12.5ꢀ  
Load  
Humidity  
≤ Initial Value x 2.0 (See Above)  
≥ Initial Value x 0.3 (See Above)  
Meets Initial Values (As Above)  
Remove from chamber and stabilize at  
room temperature and humidity for  
24 2 hours before measuring.  
16  

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