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TCFGB0J686M8R Fiches technique(PDF) 3 Page - Rohm |
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TCFGB0J686M8R Fiches technique(HTML) 3 Page - Rohm |
3 / 13 page TCFG Series B Case Tantalum capacitors Rev.D 3/12 Characteristics Item Performance Test conditions (based on JIS C5101-1 and JIS C5101-3) Operating Temperature Maximum operating temperature with no voltage derating Rated Voltage (V.DC) 16 10 6.3 4 Category Voltage (V.DC) 10 6.3 4 2.5 Surge Voltage 20 20 13 26 25 16 32 13 8 5.0 2.5 1.6 3.2 DC leakage current 0.5 μA or 0.01CV whichever is greater (Shown in "Standard list") As per 4.9 JIS C 5101-1 As per 4.5.1 JIS C 5101-3 As per 4.7 JIS C 5101-1 As per 4.5.2 JIS C 5101-3 As per 4.8 JIS C 5101-1 As per 4.5.3 JIS C 5101-3 As per 4.10 JIS C 5101-1 As per 4.5.4 JIS C 5101-3 As per 4.14 JIS C 5101-1 As per 4.6 JIS C 5101-3 As per 4.16 JIS C 5101-1 As per 4.10 JIS C 5101-3 As per 4.22 JIS C 5101-1 As per 4.12 JIS C 5101-3 Voltage : Rated voltage for 1 min Capacitance tolerance Shall be satisfied allowance range. ±10%, ±20% Measuring frequency Measuring voltage Measuring circuit Tangent of loss angle (Df, tan δ) Impedance Shall be satisfied the voltage on "Standard list" Dip in the solder bath Solder temp Duration Repetition After the specimens, leave it at room temperature for over 24h and then measure the sample. Resistance to soldering heat There should be no significant abnormality. The indications should be clear. Appearance TCFGB1E475 : Less than 150% of initial limit TCFGB0G227 : Less than 150% of initial limit Others : Less than initial limit L.C Shall be satisfied the voltage on "Standard list" at 125 °C at 85 °C at 85 °C +85 °C : 120 ±12Hz : 0.5Vrms, +1.5V.DC : DC Equivalent series circuit Measuring frequency Measuring voltage Measuring circuit : 120 ±12Hz : 0.5Vrms, +1.5V.DC : DC Equivalent series circuit : 100 ±10kHz : 0.5Vrms or less : DC Equivalent series circuit Measuring frequency Measuring voltage Measuring circuit : 260 ±5°C : 5 ±0.5s : 1 −55 °C to +125 °C Voltage reduction when temperature exceeds +85 °C Fail-Safe open unit actuation Within 320 °C − 20s Repetition : 5 cycles (1 cycle : steps 1 to 4) without discontinuation. Temperature cycle There should be no significant abnormality. Appearance TCFGB1E475 : Less than 150% of initial limit TCFGB0G227 : Less than 150% of initial limit Others : Less than initial limit L.C TCFGB0G227 : Within ±15% TCFGB0E227 : Within ±15% Others : Within ±10% TCFGB1E475 : ±10% TCFGB0G227 : ±15% Others : ±5% ΔC / C tan δ ΔC / C tan δ 3.3 to 33 μF : Less than initial limit 47 to 220 μF : Less than 150% of initial limit TCFGB0E227 : Less than 200% of initial limit 3.3 to 33 μF : Less than initial limit 47 to 220 μF : Less than 150% of initial limit TCFGB1C336 : Less than 150% of initial limit 3.3 to 33 μF : Less than initial limit 47 to 100 μF : Less than 150% of initial limit TCFGB1C336 : Less than 150% of initial limit Moisture resistance Appearance TCFGB1E475 : Less than 150% of initial limit TCFGB0G227 : Less than 150% of initial limit Others : Less than initial limit L.C There should be no significant abnormality. The indications should be clear. Temp. Time 1 Step 2 3 4 Room temp. Room temp. 3min. or less 3min. or less 30 3min +− 30 3min +− −55 3°C +− 125 2 °C +− ΔC / C TCFGB0G227 : Within ±15% Others : Within ±10% tan δ After leaving the sample under such atmospheric condition that the temperature and humidity are 60 ±2 °C and 90 to 95%RH, respectively, for 500 ±12h level it at room temperature for over 24h and then measure the sample. Dip in the solder bath Solder temp : 320 ±5 °C After the specimens, leave it at room temperature for over 24h and then measure the sample. |
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