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TCFG_B_10 Datasheet, PDF (4/8 Pages) Rohm – Chip tantalum capacitors (Fail-safe open structure type)
TCFG Series B Case
Data Sheet
Item
Performance
Temperature Temp.
Stability
ΔC / C
−55°C
TCFGB0G227M8R : Within 0/-15% of initial value
TCFGB0J227M8R : Within 0/-30% of initial value
TCFGB1A107M8R : Within 0/-30% of initial value
Others
: Within 0/-12% of initial value
tanδ
Shall be satisfied the value on Table5
L.C
−
Temp.
+85°C
ΔC / C
tanδ
TCFGB0G227M8R : Within +12/0% of initial value
TCFGB0J227M8R : Within +15/0% of initial value
TCFGB1A107M8R : Within +15/0% of initial value
Others
: Within +10/0% of initial value
Shall be satisfied the value on Table5
L.C
Less than 1000% of intial limit
Temp.
+125°C
ΔC / C
tanδ
TCFGB0J227M8R : Within +20/0% of initial value
TCFGB1A107M8R : Within +20/0% of initial value
TCFGB1C336M8R : Within +20/0% of initial value
Others
: Within +15/0% of initial value
Shall be satisfied the value on Table5
L.C
Less than 1250% of initial limit
Surge
Appearance There should be no significant abnormality.
Voltage
The indications should be clear.
L.C
ΔC / C
tanδ
TCFGB0G227M8R : Less than 150% of initial limit
TCFGB0J227M8R : Less than 200% of initial limit
TCFGB1A107M8R : Less than 200% of initial limit
TCFGB1E475M8R : Less than 150% of initial limit
Others
: Less than initial limit
TCFGB0E227M8R : Within ±12% of initial value
TCFGB0G227M8R : Within ±15% of initial value
TCFGB0J227M8R : Within ±20% of initial value
TCFGB1A107M8R : Within ±20% of initial value
Others
: Within ±10% of initial value
3.3 to 33μF
: Less than initial limit
47 to 150μF
: Less than 150% of initial limit
TCFGB0G227M8R : Less than 200% of initial limit
TCFGB0J227M8R : Less than 200% of initial limit
TCFGB1A107M8R : Less than 200% of initial limit
TCFGB1C336M8R : Less than 150% of initial limit
Loading at Appearance
High
temperature L.C
There should be no significant abnormality.
The indications should be clear.
TCFGB0E227M8R : Less than 125% of initial limit
TCFGB0G227M8R : Less than 150% of initial limit
TCFGB0J227M8R : Less than 200% of initial limit
TCFGB1A107M8R : Less than 200% of initial limit
TCFGB1E475M8R : Less than 150% of initial limit
Others
: Less than initial limit
ΔC / C
TCFGB0G227M8R : Within ±15% of initial value
TCFGB0J227M8R : Within ±20% of initial value
TCFGB1A107M8R : Within ±20% of initial value
Others
: Within ±10% of initial value
tanδ
3.3 to 33μF
: Less than initial limit
47 to 100μF
: Less than 150% of initial limit
TCFGB0E227M8R : Less than 150% of initial limit
TCFGB0G227M8R : Less than 200% of initial limit
TCFGB0J227M8R : Less than 200% of initial limit
TCFGB1A107M8R : Less than 200% of initial limit
TCFGB1C336M8R : Less than 150% of initial limit
Terminal Capacitance The measured value should be stable.
Strength Appearance There should be no significant abnormality.
Adhesiveness
The terminal should not come off.
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Test conditions
(based on JIS C5101-1 and JIS C5101-3)
As per 4.29 JIS C 5101-1
As per 4.13 JIS C 5101-3
As per 4.26 JIS C 5101-1
As per 4.14 JIS C 5101-3
Apply the specified surge voltage via the serial
resistance of 1kΩ every 5±0.5min.
for 30±5 s. each time in the atmospheric condition
of 85±2°C.
Repeat this procedure 1,000 times.
After the specimens, leave it at room temperature
for over 24h and then measure the sample.
As per 4.23 JIS C 5101-1
As per 4.15 JIS C 5101-3
After applying the rated voltage for 2000+72/0h
without discontinuation via the serial resistance
of 3Ω or less at a temperature of 85±2°C, leave
the sample at room temperature/humidity for
1 to 2h and measure the value.
After the specimens, leave it at room temperature
for over 24h and then measure the sample.
As per 4.35 JIS C 5101-1
As per 4.9 JIS C 5101-3
A force is applied to the terminal until it bends
to 1mm and by a prescribed tool maintain the
condition for 5s. (See the figure below.)
20
50
(Unit : mm)
F (Apply force)
R230
1
Thickness 1.6mm
45 45
As per 4.34 JIS C 5101-1
As per 4.8 JIS C 5101-3
Apply force of 5N in the two directions shown
in the figure below for 10±1s after mounting
the terminal on a circuit board.
product
Apply force
a circuit board
2010.01 - Rev.G