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C0402C100J8GACTU Datasheet(PDF) 11 Page - Kemet Corporation

Part # C0402C100J8GACTU
Description  High ripple current capability
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Manufacturer  KEMET [Kemet Corporation]
Direct Link  http://www.kemet.com
Logo KEMET - Kemet Corporation

C0402C100J8GACTU Datasheet(HTML) 11 Page - Kemet Corporation

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© KEMET Electronics Corporation • P.O. Box 5928 • Greenville, SC 29606 (864) 963-6300 • www.kemet.com
C1003_C0G • 10/5/2015 11
Surface Mount Multilayer Ceramic Chip Capacitors (SMD MLCCs) – C0G Dielectric, 10 – 250 VDC (Commercial Grade)
Soldering Process
Recommended Soldering Technique:
•SolderwaveorsolderreflowforEIAcasesizes0603,0805and1206
•AllotherEIAcasesizesarelimitedtosolderreflowonly
Recommended Reflow Soldering Profile:
KEMET’s families of surface mount multilayer ceramic capacitors (SMD MLCCs) are compatible with wave (single or dual), convection,
IRorvaporphasereflowtechniques.Preheatingofthesecomponentsisrecommendedtoavoidextremethermalstress.KEMET’s
recommendedprofileconditionsforconvectionandIRreflowreflecttheprofileconditionsoftheIPC/J-STD-020standardformoisture
sensitivitytesting.Thesedevicescansafelywithstandamaximumofthreereflowpassesattheseconditions.
Profile Feature
Termination Finish
SnPb
100% Matte Sn
Preheat/Soak
Temperature Minimum (TSmin)
100°C
150°C
Temperature Maximum (TSmax)
150°C
200°C
Time (tS) from TSmin to TSmax
60 – 120 seconds
60 – 120 seconds
Ramp-Up Rate (TL to TP)
3°C/second maximum 3°C/second maximum
Liquidous Temperature (TL)
183°C
217°C
Time Above Liquidous (tL)
60 – 150 seconds
60 – 150 seconds
Peak Temperature (TP)
235°C
260°C
Time Within 5°C of Maximum
Peak Temperature (tP)
20 seconds maximum 30 seconds maximum
Ramp-Down Rate (TP to TL) 6°C/second maximum 6°C/second maximum
Time 25°C to Peak
Temperature
6 minutes maximum
8 minutes maximum
Note 1: All temperatures refer to the center of the package, measured on the
capacitor body surface that is facing up during assembly reflow.
Time
Tsmin
25° C to Peak
tL
tS
25
tP
Tsmax
TL
TP
Maximum Ramp Up Rate = 3°C/sec
Maximum Ramp Down Rate = 6°C/sec


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