ROHM TCFG P Technical data

nt
R : Positive electrode on the side opposite to sprocket hole
1
Chip tantalum capacitors (Fail-safe open structure type)
TCFG series P Case
Features Dimensions (Unit : mm)
1) Safety design by open function built - in.
2) Wide capacitance range
3) Screening by thermal shock.
Part No. Explanation
Anode mark
+
LW
H
W
2
SS
Dimensions
L
L
1
1
W
W
2
2
W
W
H
H S
S
1
(Unit : mm)
Size
+
2.0 0.2
+
1.25 0.2
+
0.9 0.2
MAX.1.2
+
0.45 0.3
T C
11
Series name
TCFG
2
Case code
P
3
Rated Voltage
Rated voltage (
CODE
161
V)
F G
4
0G
P1A
2
6.30J101A161C201D25
5
3
4
Capacitance
0
4 5
M 8 R
6
Nominal capacitance in pF in 3 digits : 2significa figure representing the number of 0's.
5
Capacitance tolerance
+
M :
20%
1E
Taping
8 : Reel width (8mm)
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2012.03 - Rev.G
Remark) Case size codes (P) in the above show each size products line-up.
The indications listed below should be given on the surface of a capacitor.
w.
Capacitance range
(μF)
1.0 (105)
1.5 (155)
2.2 (225)
3.3 (335)
4.7 (475)
6.8 (685) 10 (106) 15 (156) 22 (226) 33 (336) 47 (476) 68 (686)
Marking
Data Sheet TCFG Series P Case
Rated voltage (V.DC)
4
P P P P P P P
6.3 10 16 20 25 PPPP
P P P P P P P
P P P P P P
P P P
Polarity : The polarity should be shown by bar. (on the anode side) Rated DC voltage : Due to the small size of P case, a voltage code is used as shown belo Nominal capacitance
Voltage Code
g
A C D E
Visual typical example (1) voltage code (2) capacitance code
[P Case] note 1)
Rated DC Voltage (V)
4
j
note 2) voltage code and capacitance code are variable with parts number
6.3 10 16 20 25
(1)
J
j
(2)
J
j
Capacitance Code
A E J N S
W
a e
j
manufacture code
Nominal Capacitance (F)
1.0
1.5
2.2
3.3
4.7
6.8 10 15 22
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Characteristics
Item Performance
Operating Temperature
Maximum operating temperature with no voltage derating
Rated Voltage (V.DC) Category Voltage (V.DC) Surge Voltage
DC leakage current
Capacitance tolerance
Tangent of loss angle (Df, tanδ)
Impedance
Resistance to soldering heat
Appearance L.C
ΔC / C tanδ
55 °C to +125 °C +85 °C
25
20
16106.34 16
13
106.342.5 321385
26
20
0.5μA or 0.01CV whichever is greater (Shown in "Standard list")
Shall be satisfied allowance range.
±
20%
Shall be satisfied the voltage on "Standard list"
Shall be satisfied the voltage on "Standard list"
There should be no significant abnormality. The indications should be clear.
Less than initial limit Within
±
10
% of initial value
Less than 150% of initial limit
(based on JIS C5101-1 and JIS C5101-3)
Voltage reduction when temperature exceeds +85°C
at 85°C
°C
at 125 at 85°C
As per 4.9 JIS C 5101-1 As per 4.5.1 JIS C 5101-3 Voltage : Rated voltage for 1 min
As per 4.7 JIS C 5101-1 As per 4.5.2 JIS C 5101-3 Measuring frequency Measuring voltage Measuring circuit
As per 4.8 JIS C 5101-1 As per 4.5.3 JIS C 5101-3
Measuring frequency Measuring voltage Measuring circuit
As per 4.10 JIS C 5101-1 As per 4.5.4 JIS C 5101-3 Measuring frequency Measuring voltage Measuring circuit
As per 4.14 JIS C 5101-1 As per 4.6 JIS C 5101-3 Dip in the solder bath Solder temp Duration Repetition
After the specimens, leave it at room temperatur for over 24h and then measure the sample.
Test conditions
: 120±12Hz : 0.5Vrms, +1.5V.DC : DC Equivalent series circu
: 120±12Hz : 0.5Vrms, +1.5V.DC : DC Equivalent series circu
: 100±10kHz : 0.5Vrms or less : DC Equivalent series circu
: 260±10 : 5±0.5s : 1
°C
Data Sheet TCFG Series P Case
Fail-Safe open unit actuation Temperature
cycle
Moisture resistance
Appearance
L.C ΔC / C
tanδ
Appearance
L.C ΔC / C tanδ
320
°C
Within There should be no significant abnormality.
The indications should be clear. Less than initial limit
1 to 10F : within ±10 15 to 22F : within
Less than 150% of initial limit
There should be no significant abnormality. The indications should be clear.
Less than initial limit Within Less than 150% of initial limit
20s
±
20
% of initial value
% of initial value
±
20
% of initial value
Dip in the solder bath Solder temp : 320
As per 4.16 JIS C 5101-1 As per 4.10 JIS C 5101-3
Repetition : 5 cycles (1 cycle : steps 1 to 4) without discontinuation.
Step
1 2
Room temp. 3 4
Room temp.
After the specimens, leave it at room temperatur for over 24h and then measure the sample.
As per 4.22 JIS C 5101-1 As per 4.12 JIS C 5101-3
After leaving the sample under such atmospheric condition that the temperature and humidity ar 60±2°C and 90 to 95%RH, respectively, for
±
12h level it at room temperature for over 24
500 and then measure the sample.
±
5°C
Temp. Time
+
55 3
°C
3min. or less
+
125 2°C
3min. or less
+
30 3min
+
30 3min
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Item Performance
Temperature Stability
Temp.
ΔC / C
°C
55 Within 0/15%of initial value
Data Sheet TCFG Series P Case
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
Surge Voltage
Loading at High temperature
Terminal Strength
tanδ
L.C
Temp. ΔC / C tanδ
L.C
Temp. ΔC / C tanδ
L.C
Appearance
L.C
ΔC / C tanδ
Appearance L.C
ΔC / C tanδ
Capacitance Appearance
Shall be satisfied the voltage on "Standard list"
+85
°C
Within +15/0%of initial value Shall be satisfied the voltage on "Standard list"
Less than 1000% of initial limit
+125
°C
Within +20/0%of initial value Shall be satisfied the voltage on "Standard list"
Less than 1250% of initial limit There should be no significant abnormality.
Shall be satisfied the voltage on "Standard list" Within
±
10%of initial value
Less than 150% of initial limit
There should be no significant abnormality. Less than initial limit
±
10%of initial value
Within Less than 150% of initial limit
The measured value should be stable. There should be no significant abnormality.
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. eac time in the atmospheric condition of 85±2°C. Repeat this procedure 1,000 times.
After the specimens, leave it at room temperatur 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 1000+36/0 without discontinuation via the serial resistanc of 3Ω or less at a temperature of 85±2°C, leav the sample at room temperature/humidity for over 24h and measure the value.
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
Thickness 1.6mm
F (Apply force)
R230
(Unit : mm)
1
45 45
Adhesiveness The terminal should not come off.
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
C105
YAA
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Apply force
a circuit board
2012.03 - Rev.G
e
T T T T T T T
T
T T
T
T T T T T T T T T T T T
T T
T
T
Data Sheet TCFG Series P Case
Item Performance
Dimensions Be based on "Dimensions"
(based on JIS C5101-1 and JIS C5101-3)
Measure using a caliper of JIS B 7505
Test conditions
Class 2 or higher grade.
Resistance to solvents The indication should be clear.
As per 4.32 JIS C 5101-1 As per 4.18 JIS C 5101-3
Dip in the isopropyl alcohol for 30±5s, at room temperature.
Solderability
3/4 or more surface area of the solder coated terminal dipped in the soldering bath should be covered with the new solder.
As per 4.15.2 JIS C 5101-1 As per 4.7 JIS C 5101-3
Dip speed = 25±2.5mm/s Pre-treatment (accelerated aging) : Leave th sample on the boiling distilled water for 1h. Solder temp. : 245±5°C Duration : 3±0.5s Solder : M705 Flux : Rosin 25%, IPA 75%
CapacitanceVibration
Appearance
Measure value should not fluctuate during the measurement.
There should be no significant abnormality.
As per 4.17 JIS C 5101-1
Frequency : 10 to 55 to 10Hz/min. Amplitude : 1.5mm Time : 2h each in X and Y directions Mounting : The terminal is soldered on a print circuit board.
Table 1 standard list, TCFG series P Case
(%)
±
±
±
±
±
±
±
±
±
±
±
±
±
±
±
±
±
±
±
±
±
±
±
±
±
±
±
20 20 20 20 20 20 20 20 20 20 20 20 20 20 20 20 20 20 20
20 20 20 20 20 20
20 20
Leakage
current
C
25
1WV.60s
(mA)
0.5
0.5
0.5
0.5
0.5
0.5
0.6
0.9
0.5
0.5
0.5
0.5
0.5
0.513
55
15 30
30 30
15 30 30 30 30 30 30 15 30 30 30 30
15 15
DF120Hz
(%)
25
°C
85
10 20 20 20 20 20 20 10 20 20 20 20 20 20 10 20 20 20 20
20 30 20 30 10 15 20 30 20 30 20 30
101015
°C ˚C
125
15 30 30 30 30 30
30 15 30 30 30 30 30 30 15 30 30 30 30
15
Impedance
100kHz
°C
17.5
17.5
14.4
11.8
17.5
17.5
14.4
11.8
17.5
16.1
14.4
11.8
16.1
16.1
(Ω)
9.3
8.3
7.7
9.3
8.3
7.7
9.3
Case code
P P P P P P P P P P P P P P P P P P P
P P
2012.03 - Rev.G
Rated
Part No.
CFG P 0G 225 M8R CFG P 0G 335 M8R CFG P 0G 475 M8R CFG P 0G 685 M8R CFG P 0G 106 M8R CFG P 0G 156 M8R CFG P 0G 226 M8R CFG P 0J 155 M8R CFG P 0J 225 M8R CFG P 0J 335 M8R CFG P 0J 475 M8R CFG P 0J 685 M8R CFG P 0J 106 M8R CFG P 0J 156 M8R CFG P 1A 105 M8R CFG P 1A 155 M8R CFG P 1A 225 M8R CFG P 1A 335 M8R CFG P 1A 475 M8R
CFG P 1A 685 M8R P8.36.8 0.713 30 CFG P 1A 106 M8R P7.710 1.013 30 CFG P 1C 105 M8R P16.11.0 0.516 10 20 15 CFG P 1C 155 M8R P14.41.5 0.516 10 20 30 CFG P 1C 225 M8R P11.82.2 0.516 10 20 30 CFG P 1C 335 M8R P9.33.3 0.616 10 20 30
CFG P 1D 105 M8R CFG P 1E 105 M8R
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Voltage @85
Derated Voltage
@125
°C
(V)
4 4 4 4 4 4 4
6.3
6.3
6.3
6.3
6.3
6.3
6.3 4 8
10 10 10 10
10 6.3 10 6.3
20 25
Surge Voltage @85
°C
(V)
2.5
2.5 5 3.3
2.5
2.5
2.5
2.5
2.5 4 4 4 4 4 4
6.310
6.3
6.3
6.3
6.3
16
Capacitance
120Hz
°C
(V)
5 2.2
5 5 6.8 0.5 5 530 530 8 8 8 8 8 8
13 13 13 13 13
26 32
Tolerance
(F)
4.7 0.5 30
10 0.5 15 0.6 22 0.9
1.5 0.5
2.2
3.3
4.7
6.8 10 15
1.0
1.5
2.2
3.3
4.7
1.0
1.0 0.5
it
Packaging specifications
Case code
P (2012)
Taping P Case
A±0.1 B±0.1 t
1.55
φ1.55 0.05
A
2.3
+
1
±0.05 t0.1
0.25
1.32
+
1.75 0.1
+
3.5 0.05
+
8.0 0.2
Data Sheet TCFG Series P Case
t
1
+
4.0 0.1B4.0 0.1
Packaging style
Case size
Reel Plastic reel
+
+
2.0 0.05
Pull out direction
Products
t
2
Packaging Packaging style Symbol Basic ordering un
Taping Plastic taping
0
+1.0
9.0
+
φ13 0.2
+
11.4 1.0
0
+1
φ60
0
1.5
φ180
φ180mm reel
8R 2,000P Case
Label sticking position
EIAJ ET - 7200A
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Notes
No copying or reproduction of this document, in part or in whole, is permitted without the consent of ROHM Co.,Ltd.
The content specied herein is subject to change for improvement without notice.
The content specied herein is for the purpose of introducing ROHM's products (hereinafter "Products"). If you wish to use any such Product, please be sure to refer to the specications, which can be obtained from ROHM upon request.
Examples of application circuits, circuit constants and any other information contained herein illustrate the standard usage and operations of the Products. The peripheral conditions must be taken into account when designing circuits for mass production.
Great care was taken in ensuring the accuracy of the information specied in this document. However, should you incur any damage arising from any inaccuracy or misprint of such information, ROHM shall bear no responsibility for such damage.
The technical information specied herein is intended only to show the typical functions of and examples of application circuits for the Products. ROHM does not grant you, explicitly or implicitly, any license to use or exercise intellectual property or other rights held by ROHM and other parties. ROHM shall bear no responsibility whatsoever for any dispute arising from the use of such technical information.
The Products specied in this document are intended to be used with general-use electronic equipment or devices (such as audio visual equipment, ofce-automation equipment, commu­nication devices, electronic appliances and amusement devices).
The Products specied in this document are not designed to be radiation tolerant.
While ROHM always makes efforts to enhance the quality and reliability of its Products, a Product may fail or malfunction for a variety of reasons.
Please be sure to implement in your equipment using the Products safety measures to guard against the possibility of physical injury, re or any other damage caused in the event of the failure of any Product, such as derating, redundancy, re control and fail-safe designs. ROHM shall bear no responsibility whatsoever for your use of any Product outside of the prescribed scope or not in accordance with the instruction manual.
The Products are not designed or manufactured to be used with any equipment, device or system which requires an extremely high level of reliability the failure or malfunction of which may result in a direct threat to human life or create a risk of human injury (such as a medical instrument, transportation equipment, aerospace machinery, nuclear-reactor controller, fuel­controller or other safety device). ROHM shall bear no responsibility in any way for use of any of the Products for the above special purposes. If a Product is intended to be used for any such special purpose, please contact a ROHM sales representative before purchasing.
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