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PDF T545W107M010ATE040 Data sheet ( Hoja de datos )

Número de pieza T545W107M010ATE040
Descripción High Energy Polymer Tantalum
Fabricantes Kemet 
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KEMET Organic Capacitor (KO-CAP)
T545 Series High Energy Polymer Tantalum
Overview
The KEMET Organic Capacitor is a tantalum capacitor with a
Ta anode and Ta2O5 dielectric. A conductive organic polymer
replaces the traditionally used MnO2 as the cathode plate of the
capacitor. This results in very low ESR and improved capacitance
retention at high frequency. The polymer technology also exhibits
a benign failure mode which eliminates the ignition failures that
can occur in standard MnO2 tantalum types. Ta polymers may
be operated at voltages up to 90% of rated voltage for part types
with rated voltages of ≤ 10 volts and up to 80% of rated voltage
for part types > 10 volts with equivalent or better reliability than
traditional MnO2 tantalum capacitors operated at 50% of rated
voltage.
The T545 Series was developed to deliver the highest energy per
CC of any tantalum surface mount device (SMD). This capability
makes this capacitor an excellent solution for designs requiring
high energy at relatively low voltages, such as data hardening or
data vaulting for solid state drives (SSD's). The T545 Series High
Energy Polymer Tantalum Surface Mount Capacitor captures the
best features of multilayer ceramic capacitors (low ESR and high
frequency capacitance retention), aluminum electrolytics (higher
capacitance and benign failure mode) and proven solid tantalum
technology (volumetric efficiency, surface mount capability and
extremely long life). In addition, this series is subjected to 100%
thermal shock and voltage aging to insure long term reliability.
Benefits
• Extremely low ESR
• High energy delivery capability
• -55°C to 85°C operating temperature range
• Polymer cathode technology
• High frequency capacitance retention
• Non-ignition failure mode
• Capacitance up to 1,500 µF
• Voltage: 6.3 – 16 V
• 100% accelerated steady state aging
• 100% surge current tested
• 100% thermal shock
• Volumetric efficiency, very high capacitance
• Self-healing mechanism
• Taped and reeled per EIA 481-1, EIA standard case sizes
Applications
Typical applications include hold-up, data hardening or vaulting for
enterprise and military SSDs, and high end desktop modems.
www.DataSheet.net/
Environmental Compliance
RoHS Compliant (6/6) according to Directive 2002/95/EC when ordered with 100% Sn solder.
© KEMET Electronics Corporation • P.O. Box 5928 • Greenville, SC 29606 (864) 963-6300 • www.kemet.com
One world. One KEMET
T2060_T545 • 8/2/2012 1
Datasheet pdf - http://www.DataSheet4U.co.kr/

1 page




T545W107M010ATE040 pdf
KEMET Organic Capacitor (KO-CAP)
T545 Series High Energy Polymer Tantalum
Dimensions – Millimeters
Termination
cutout at
KEMET’s
option,
either end
Case Size
Component
KEMET EIA
L*
W*
H*
F* ±0.1 S* ±0.3 B* ±0.15
±(0.004) ±(0.012) (Ref) ±0.006
X (Ref)
D
7343–31
7.3 ±0.3
(0.287 ±0.012)
4.3 ±0.3
(0.169 ±0.012)
2.8 ±0.3
(0.110 ±0.012)
2.4 (0.094)
1.3 (0.051)
0.5 (.020)
0.10 ± 0.10
(.004 ± .004)
H
7260–20
7.3 ±0.3
(0.287 ±0.012)
6.0±0.3
(0.236 ±0.012)
2.0 (0.078)
Maximum
4.1 (0.161) 1.3 (0.051)
n/a
0.10 ± 0.10
(.004 ± .004)
V
7343–20
7.3 ±0.3
(0.287 ±0.012)
4.3 ±0.3
(0.169 ±0.012)
2.0 (0.079)
2.4 (0.094) 1.3 (0.051)
n/a
0.05 (.002)
W
7343–15
7.3 ±0.3
(0.287 ±0.012)
4.3 ±0.3
(0.169 ±0.012)
1.5 (0.059)
2.4 (0.094) 1.3 (0.051)
n/a
0.05 (.002)
X
7343–43
7.3 ±0.3
(0.287 ±0.012)
4.3 ±0.3
(0.169 ±0.012)
4.0 ±0.3
(0.157 ±0.012)
2.4 (0.094)
1.3 (0.051)
0.5 (.020)
0.10 ± 0.10
(.004 ± .004)
Y
7343–40
7.3 ± 0.3
(.287 ± .012)
4.3 ± 0.3
(.169 ± .012)
4.0 (.157)
2.4 (.094) 1.3 (.051)
0.5 (.020)
0.10 ± 0.10
(.004 ± .004)
P (Ref)
0.9 (.035)
0.9 (.035)
n/a
n/a
1.7 (.067)
1.7 (.067)
R (Ref) T (Ref) A (Min) G (Ref) E (Ref)
1.0 (.039) 0.13 (.005) 3.8 (.150) 3.5 (.138) 3.5 (.138)
1.0 (.039) 0.13 (.005) 3.3 (0.13) 3.5 (.138) 3.5 (.138)
n/a 0.13 (.005) 3.8 (.150) 3.5 (.138) 3.5 (.138)
n/a 0.13 (.005) 3.8 (.150) 3.5 (.138) 3.5 (.138)
1.0 (.039) 0.13 (.005) 3.8 (.150) 3.5 (.138) 3.5 (.138)
1.0 (.039) 0.13 (.005) 3.8 (.150) 3.5 (.138) 3.5 (.138)
Notes: (Ref) – Dimensions provided for reference only. No dimensions are provided for B, P or R because low profile cases do not have a bevel or a notch.
* MIL–C–55365/8 specified dimensions
Table 1 – Ratings & Part Number Reference
www.DataSheet.net/
Rated Rated
Voltage Capacitance
V µF
6.3 1000
6.3 1500
6.3 1500
6.3 470
6.3 470
6.3 470
6.3 470
10 100
10 330
10 330
16 47
16 220
16 330
16 100
16 100
V µF
Rated
Rated
Voltage Capacitance
Case Code/
Case Size
KEMET Part Number
DC Leakage
KEMET/EIA
H/7260-20
H/7260-20
H/7260-20
W/7343-15
W/7343-15
Y/7343-40
X/7343-43
W/7343-15
Y/7343-40
X/7343-43
W/7343-15
X/7343-43
X/7343-43
V/7343-19
D/7343-31
KEMET/EIA
Case Code/
Case Size
(µA) @ VR, 20°C
Maximum/
5 Minutes
T545H108M006ATE055
630.0
T545H158M006ATE035
945.0
T545H158M006ATE055
945.0
T545W477M006ATE035
296.0
T545W477M006ATE055
296.0
T545Y477M006ATE025
296.0
T545X477M006ATE006
296.0
T545W107M010ATE040
100.0
T545Y337M010ATE035
330.0
T545X337M010ATE006
330.0
T545W476M016ATE045
75.0
T545X227M016ATE035
352.0
T545X337M016ATE025
528.0
T545V107M016ATE055
160.0
T545D107M016ATE055
160.0
(µA) @ VR, 20°C
Maximum/
5 Minutes
KEMET Part Number DC Leakage
DF
% @ 20°C
120 Hz
Maximum
20
20
20
10
10
10
10
10
10
10
10
10
10
10
10
% @ 20°C
120 Hz
Maximum
DF
Maximum
ESR Allowable Ripple
Current
MSL
(mW) @ 20°C
100 kHz
Maximum
(mAmps) 45°C
100 kHz
Reflow
Temperature
≤ 260°C
55 1850.0
35 2300.0
55 1850.0
35 2300.0
55 1800.0
25 3100.0
6 6700.0
40 2100.0
35 2600.0
6 6700.0
45 2000.0
35 2700.0
25 3300.0
55 1850.0
55 2050.0
4
4
4
4
4
3
3
4
3
3
3
3
3
3
3
(mW) @ 20°C
100 kHz
Maximum
ESR
(mAmps) 45°C
100 kHz 15
Reflow
Temperature
≤ 260°C
Maximum
Allowable Ripple
Current
MSL
Rated
Temperature
Energy (mJ)
(°C)
85
85
85
85
85
85
85
85
85
85
85
85
85
85
85
(°C)
Rated
Temperature
(½CVa²) - (½CVd²)
Va = Voltage Applied
Vd = Voltage Drop
11.57
17.36
17.36
5.44
5.44
5.44
5.44
3.60
11.88
11.88
3,64
17.03
25.55
7.74
7.74
(½CVa²) - (½CVd²)
Va = Voltage Applied
Vd = Voltage Drop
Energy (mJ)
© KEMET Electronics Corporation • P.O. Box 5928 • Greenville, SC 29606 (864) 963-6300 • www.kemet.com
Roll Over for
Order Info.
T2060_T545 • 8/2/2012 5
Datasheet pdf - http://www.DataSheet4U.co.kr/

5 Page





T545W107M010ATE040 arduino
KEMET Organic Capacitor (KO-CAP)
T545 Series High Energy Polymer Tantalum
Figure 1 – Embossed (Plastic) Carrier Tape Dimensions
T P2
T2
ØDo
Po [10 pitches cumulative
tolerance on tape ± 0.2 mm]
E1
Ko
B1
Ao
Bo
F
W
E2
S1 P1
T1
Cover Tape
Center Lines of Cavity
ØD1
B1 is for tape feeder reference only,
including draft concentric about B o.
User Direction of Unreeling
Embossment
For cavity size,
see Note 1 Table 4
Table 4 – Embossed (Plastic) Carrier Tape Dimensions
Metric will govern
Tape Size
D0
8 mm
12 mm
16 mm
1.5 +0.10/-0.0
(0.059 +0.004/-0.0)
D1 Minimum
Note 1
1.0
(0.039)
1.5
(0.059)
Constant Dimensions — Millimeters (Inches)
E1
1.75 ±0.10
(0.069 ±0.004)
P0
www.DataSheet.net/
P2
4.0 ±0.10
2.0 ±0.05
(0.157 ±0.004) (0.079 ±0.002)
R Reference
Note 2
25.0
(0.984)
30
(1.181)
S1 Minimum
Note 3
T Maximum T1 Maximum
0.600
(0.024)
0.600
(0.024)
0.100
(0.004)
Tape Size
Pitch
8 mm
12 mm
16 mm
Single (4 mm)
Single (4 mm) &
Double (8 mm)
Triple (12 mm)
B1 Maximum
Note 4
4.35
(0.171)
8.2
(0.323)
12.1
(0.476)
Variable Dimensions — Millimeters (Inches)
E2 Minimum
6.25
(0.246)
10.25
(0.404)
14.25
(0.561)
F
3.5 ±0.05
(0.138 ±0.002)
5.5 ±0.05
(0.217 ±0.002)
5.5 ±0.05
(0.217 ±0.002)
P1
4.0 ±0.10
(0.157 ±0.004)
8.0 ±0.10
(0.315 ±0.004)
8.0 ±0.10
(0.315 ±0.004)
T2 Maximum
2.5
(0.098)
4.6
(0.181)
4.6
(0.181)
W Maximum
8.3
(0.327)
12.3
(0.484)
16.3
(0.642)
A0,B0 & K0
Note 5
1. The embossment hole location shall be measured from the sprocket hole controlling the location of the embossment. Dimensions of embossment location and
hole location shall be applied independent of each other.
2. The tape, with or without components, shall pass around R without damage (see Figure 5).
3. If S1 < 1.0 mm, there may not be enough area for cover tape to be properly applied (see EIA Standard 481–D, paragraph 4.3, section b).
4. B1 dimension is a reference dimension for tape feeder clearance only.
5. The cavity defined by A0, B0 and K0 shall surround the component with sufficient clearance that:
(a) the component does not protrude above the top surface of the carrier tape.
(b) the component can be removed from the cavity in a vertical direction without mechanical restriction, after the top cover tape has been removed.
(c) rotation of the component is limited to 20° maximum for 8 and 12 mm tapes and 10° maximum for 16 mm tapes (see Figure 2).
(d) lateral movement of the component is restricted to 0.5 mm maximum for 8 mm and 12 mm wide tape and to 1.0 mm maximum for 16 mm tape (see Figure 3).
(e) see Addendum in EIA Standard 481–D for standards relating to more precise taping requirements.
© KEMET Electronics Corporation • P.O. Box 5928 • Greenville, SC 29606 (864) 963-6300 • www.kemet.com
T2060_T545 • 8/2/2012 11
Datasheet pdf - http://www.DataSheet4U.co.kr/

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