298D156X0010M2T [VISHAY]

Solid Tantalum Chip Capacitors MICROTAN™ Lead Frameless Molded; 固体钽电容器芯片MICROTAN⑩铅无框模压
298D156X0010M2T
型号: 298D156X0010M2T
厂家: VISHAY    VISHAY
描述:

Solid Tantalum Chip Capacitors MICROTAN™ Lead Frameless Molded
固体钽电容器芯片MICROTAN⑩铅无框模压

电容器 钽电容器
文件: 总7页 (文件大小:157K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
298D  
Vishay Sprague  
Solid Tantalum Chip Capacitors  
MICROTANLead Frameless Molded  
FEATURES  
0805 and 0603 Footprint  
Lead (Pb)-free face-down terminations  
RoHS  
COMPLIANT  
8 mm tape and reel packaging available  
per EIA-481-1 and reeling per IEC 286-3  
7" [178 mm] standard  
PERFORMANCE CHARACTERISTICS  
Capacitance Range: 1 µF to 220 µF  
Capacitance Tolerance: 20 ꢀ standard  
Voltage Range: 2.5 WVDC to 25 WVDC  
Operating Temperature: - 55 °C to + 85 °C  
(To + 125 °C voltage derating)  
ORDERING INFORMATION  
298D  
106  
X0  
010  
M
2
T
MODEL  
CAPACITANCE  
CAPACITANCE  
TOLERANCE  
DC VOLTAGE RATING  
AT + 85 °C  
CASE CODE TERMINATION  
REEL SIZE AND  
PACKAGING  
This is expressed in  
picofarads. The first  
two digits are the  
significant figures. The  
third is the number of  
zeros to follow.  
X0 = 20 ꢀ  
X9 = 10 ꢀ  
This is expressed in volts.  
To complete the three-digit and Case  
block, zeros precede the Codes Table  
See Ratings 2 = 100 ꢀ Tin T = Tape and Reel  
4 = Gold Plated  
7" [178 mm] Reel  
voltage rating.  
A decimal  
point is indicated by an "R"  
(6R3 = 6.3 V).  
Note: Preferred Tolerance and Reel size are in bold.  
We reserve the right to supply higher voltage ratings and tighter capacitance tolerance capacitors in the same case size.  
Voltage substitutions will be marked with the higher voltage rating.  
DIMENSIONS in inches [millimeters]  
Anode Polarity Bar  
Cathode Termination  
Anode Termination  
W
C
H
P1  
P2  
P1  
L
CASE  
L
W
H
P1  
P2  
C
0.063 0.004  
[1.60 0.1]  
0.033 0.004  
[0.85 0.1]  
0.031 0.004  
[0.80 0.1]  
0.020 0.004  
[0.50 0.1]  
0.024 0.004  
[0.60 0.1]  
0.024 0.004  
[0.60 0.1]  
M
0.094 0.004  
[2.4 0.1]  
0.057 0.004  
[1.45 0.1]  
0.043 0.004  
[1.10 0.1]  
0.020 0.004  
[0.50 0.1]  
0.057 0.004  
[1.40 0.1]  
0.035 0.004  
[0.90 0.1]  
P
www.vishay.com  
38  
For technical questions, contact: tantalum@vishay.com  
Document Number: 40065  
Revision: 22-Oct-07  
298D  
Vishay Sprague  
Solid Tantalum Chip Capacitors  
MICROTANTM Lead Frameless Molded  
MARKING  
RATINGS AND CASE CODES  
M-case  
P-case  
Capacitance  
Voltage  
Code  
µF  
1.0  
2.2  
3.3  
4.7  
6.8  
10  
15  
22  
33  
47  
2.5 V  
4 V  
6.3 V  
10 V  
16 V  
M
M
25 V  
M
Voltage Code  
Polarity bar  
Polarity bar  
Code  
M
M
A
M
M
M
P
GJ  
M
M
M
M
Volts  
4
6.3  
10  
16  
20  
Code  
G
J
A
C
D
E
CAP, µF  
33  
47  
Code  
n
s
w
A
E
J
M
M
M
P*  
P
M
M
P*  
P*  
P*  
P
68  
M
M*  
P
100  
150  
220  
100  
220  
Note:  
25  
* Preliminary values, contact factory for availability.  
STANDARD RATINGS  
MAX DC  
LEAKAGE  
AT + 25 °C  
(µA)  
MAX ESR  
AT + 25 °C  
100 kHz  
(Ω)  
MAX RIPPLE  
100 kHz  
Irms  
MAX DF  
AT + 25 °C  
(ꢀ)  
ΔC/C*  
(ꢀ)  
CAPACITANCE CASE  
PART  
NUMBER  
(µF)  
CODE  
(A)  
2.5 WVDC AT + 85 °C, SURGE = 3.3 V. . . 1.6 WVDC AT + 125 °C, SURGE = 2.1 V  
47  
M
M
P
298D476X02R5M2T  
298D107X02R5M2T  
298D227X02R5P2T  
2.4  
20  
40  
30  
4.0  
2.5  
3.0  
0.08  
0.100  
0.122  
30  
30  
30  
100  
220  
25.0  
11.0  
4 WVDC AT + 85 °C, SURGE = 5.2 V. . . 2.7 WVDC AT + 125 °C, SURGE = 3.4 V  
10  
22  
M
M
M
M
P
298D106X0004M2T  
298D226X0004M2T  
298D336X0004M2T  
298D476X0004M2T  
298D107X0004P2T  
298D227X0004P2T  
0.5  
0.9  
2.6  
3.8  
4.0  
17.6  
8.0  
15  
15  
20  
20  
30  
3.0  
4.0  
4.0  
4.0  
2.0  
3.0  
0.09  
0.08  
0.08  
0.08  
0.1  
10  
15  
20  
30  
30  
30  
33  
47  
100  
220  
P
0.122  
6.3 WVDC AT + 85 °C, SURGE = 8 V. . . 4 WVDC AT + 125 °C, SURGE = 5 V  
2.2  
4.7  
10  
M
M
M
M
M
P
298D225X06R3M2T  
298D475X06R3M2T  
298D106X06R3M2T  
298D226X06R3M2T  
298D336X06R3M2T  
298D476X06R3P2T  
298D107X06R3P2T  
0.5  
0.5  
0.6  
2.8  
4.2  
3.0  
6.3  
10  
8.0  
8.0  
15  
20  
22  
20  
5.0  
3.0  
3.0  
4.0  
4.0  
3.0  
2.0  
0.07  
0.09  
10  
10  
10  
15  
30  
20  
20  
0.09  
22  
0.08  
33  
0.08  
47  
0.122  
0.150  
100  
P
10 WVDC AT + 85 °C, SURGE = 13 V. . . 7 WVDC AT + 125 °C, SURGE = 8 V  
2.2  
4.7  
10  
15  
33  
47  
M
M
M
M
P
298D225X0010M2T  
298D475X0010M2T  
298D106X0010M2T  
298D156X0010M2T  
298D336X0010P2T  
298D476X0010P2T  
0.5  
0.5  
1.0  
1.5  
3.3  
4.7  
10  
6.0  
8.0  
12  
10  
4.0  
4.0  
4.0  
2.0  
3.0  
0.05  
0.08  
10  
15  
15  
20  
10  
20  
0.08  
0.08  
10  
0.150  
0.122  
P
22  
16 WVDC AT + 85 °C, SURGE = 20 V. . . 10 WVDC AT + 125 °C, SURGE = 12 V  
1.0  
2.2  
4.7  
M
M
M
298D105X0016M2T  
298D225X0016M2T  
298D475X0016M2T  
0.5  
0.5  
0.8  
6.0  
10  
12.0  
12.0  
6.0  
0.045  
0.045  
0.06  
15  
15  
15  
8.0  
25 WVDC AT + 85 °C, SURGE = 32 V. . . 17 WVDC AT + 125 °C, SURGE = 20 V  
1.0  
4.7  
M
P
298D105X0025M2T  
298D475X0025P2T  
0.5  
1.2  
6.0  
6.0  
10.0  
4.0  
0.05  
10  
10  
0.106  
Note  
* See Performance Characteristics tables, page 41.  
Document Number: 40065  
Revision: 22-Oct-07  
For technical questions, contact: tantalum@vishay.com  
www.vishay.com  
39  
298D  
Solid Tantalum Chip Capacitors  
MICROTANTM Lead Frameless Molded  
Vishay Sprague  
CAPACITORS PERFORMANCE CHARACTERISTICS  
ELECTRICAL PERFORMANCE CHARACTERISTICS  
ITEM  
PERFORMANCE CHARACTERISTICS  
Category Temperature Range  
Capacitance Tolerance  
Dissipation Factor (at 120 Hz)  
ESR (100 kHz)  
- 55 °C to + 85 °C (to + 125 °C with voltage derating)  
20 ꢀ, 10 ꢀ (at 120 Hz) 2 Vrms at + 25 °C using a capacitance bridge  
Limits per Standard Ratings Table. Tested via bridge method, at 25 °C, 120 Hz.  
Limits per Standard Ratings Table. Tested via bridge method, at 25 °C, 100 kHz.  
After application of rated voltage applied to capacitors for 5 minutes using a steady source of power with  
1 kΩ resistor in series with the capacitor under test, leakage current at 25 °C is not more than described in.  
See graph below for the appropriate adjustment factor.  
Leakage Current  
Reverse Voltage  
Capacitors are capable of withstanding peak voltages in the reverse direction equal to: 10 ꢀ of the DC  
5 ꢀ of the DC rating at + 85 °C  
Vishay does not recommended intentional or repetitive application of reverse voltage  
If capacitors are to be used at temperatures above + 25 °C, the permissible rms ripple current or voltage  
Temperature Derating  
1.0 at + 25 °C  
0.9 at + 85 °C  
0.4 at + 125 °C  
Maximum Permissible Power  
Dissipation at 25 °C  
(W) in free air  
M-Case: 0.025  
P-Case: 0.045  
Operating Temperature  
+ 85 °C RATING  
+ 125 °C RATING  
WORKING VOLTAGE  
SURGE VOLTAGE  
WORKING VOLTAGE  
SURGE VOLTAGE  
4
5.2  
8
2.7  
4
7
10  
13  
17  
23  
33  
3.4  
5
8
12  
16  
20  
28  
40  
6.3  
10  
16  
20  
25  
35  
50  
13  
20  
26  
32  
46  
65  
TYPICAL LEAKAGE CURRENT FACTOR RANGE  
100  
+ 125 °C  
10  
1.0  
+ 85 °C  
+ 55 °C  
+ 25 °C  
0 °C  
0.1  
- 55 °C  
0.01  
0.001  
0
10 20 30 40 50 60 70 80 90 100  
PERCENT OF RATED VOLTAGE  
Notes  
At + 25 °C, the leakage current shall not exceed the value listed in the Standard Ratings Table.  
At + 85 °C, the leakage current shall not exceed 10 times the value listed in the Standard Ratings Table.  
At + 125 °C, the leakage current shall not exceed 12 times the value listed in the Standard Ratings Table  
www.vishay.com  
40  
For technical questions, contact: tantalum@vishay.com  
Document Number: 40065  
Revision: 22-Oct-07  
298D  
Vishay Sprague  
Solid Tantalum Chip Capacitors  
MICROTANTM Lead Frameless Molded  
ENVIRONMENTAL PERFORMANCE CHARACTERISTICS  
ITEM  
CONDITION  
POST TEST PERFORMANCE  
Life Test at + 85 °C  
1000 h application of rated voltage at  
85 °C with a 3 Ω series resistance,  
MIL-STD 202G Method 108A  
Capacitance Change  
Dissipation Factor  
Leakage Current  
Refer to Standard Ratings Table  
Not to exceed 150 ꢀ of initial  
Not to exceed 200 ꢀ of initial  
Humidity Tests  
Thermal Shock  
At 40 °C/90 ꢀ RH 500 h, no voltage  
applied. MIL-STD 202G Method 103B  
Capacitance Change  
Dissipation Factor  
Leakage Current  
Refer to Standard Ratings Table  
Not to exceed 150 ꢀ of initial  
Not to exceed 200 ꢀ of initial  
At - 55 °C/+ 125 °C, 30 min. each,  
for 5 cycles. MIL-STD 202G Method 107G  
Capacitance Change  
Dissipation Factor  
Leakage Current  
Refer to Standard Ratings Table  
Not to exceed 150 ꢀ of initial  
Not to exceed 200 ꢀ of initial  
MECHANICAL PERFORMANCE CHARACTERISTICS  
TEST CONDITION  
CONDITION  
POST TEST PERFORMANCE  
Terminal Strength  
Apply a pressure load of 5 N for 10 1 s  
horizontally to the center of capacitor side body.  
AECQ-200 rev. C Method 006  
Capacitance Change  
Dissipation Factor  
Leakage Current  
Refer to Standard Ratings Table  
Initial specified value or less  
Initial specified value or less  
There shall be no mechanical or visual damage to capacitors  
post-conditioning.  
Substrate Bending  
(Board flex)  
With parts soldered onto substrate test board,  
apply force to the test board for a deflection  
of 1 mm. AECQ-200 rev. C Method 005  
Capacitance Change  
Dissipation Factor  
Leakage Current  
Refer to Standard Ratings Table  
Initial specified value or less  
Initial specified value or less  
Vibration  
MIL-STD-202G, Method 204D,  
10 Hz to 2000 Hz, 20 G Peak  
Capacitance Change  
Dissipation Factor  
Leakage Current  
Refer to Standard Ratings Table  
Initial specified value or less  
Initial specified value or less  
There shall be no mechanical or visual damage to capacitors  
post-conditioning.  
Shock  
Mil-Std-202G, Method 213B, Condition I,  
100G Peak  
Capacitance Change  
Dissipation Factor  
Leakage Current  
Refer to Standard Ratings Table  
Initial specified value or less  
Initial specified value or less  
There shall be no mechanical or visual damage to capacitors  
post-conditioning.  
Resistance to Solder  
Heat  
At 260 °C, for 10 seconds, reflow  
Capacitance Change  
Dissipation Factor  
Leakage Current  
Refer to Standard Ratings Table  
Not to exceed 150 ꢀ of initial  
Not to exceed 200 ꢀ of initial  
There shall be no mechanical or visual damage to capacitors  
post-conditioning.  
Solderability  
MIL-STD-202G, Method 208H, ANSI/J-Std-002,  
Test B. Applies only to Solder and tin plated  
terminations. Does not apply to gold terminations.  
There shall be no mechanical or visual damage to capacitors  
post-conditioning.  
Resistance to  
Solvents  
MIL-STD-202, Method 215D  
There shall be no mechanical or visual damage to capacitors  
post-conditioning.  
Flammability  
Encapsulation materials meet UL94 VO with an  
oxygen index of 32 ꢀ.  
www.vishay.com  
41  
For technical questions, contact: tantalum@vishay.com  
Document Number: 40065  
Revision: 22-Oct-07  
298D  
Solid Tantalum Chip Capacitors  
MICROTANTM Lead Frameless Molded  
Vishay Sprague  
TYPICAL CURVES AT + 25 °C, IMPEDANCE AND ESR VS. FREQUENCY  
“M” Case  
“M” Case  
100  
10  
1
100  
10  
1
IMPEDANCE  
ESR  
IMPEDANCE  
ESR  
47 µF - 4 V  
22 µF - 4 V  
100  
0.1  
0.1  
1
10  
100  
1000  
0.1  
1
10  
1000  
FREQUENCY, kHz  
FREQUENCY, kHz  
“M” Case  
“M” Case  
1000  
100  
10  
1000  
100  
10  
IMPEDANCE  
ESR  
IMPEDANCE  
ESR  
4.7 µF - 10 V  
1
10 µF - 6 V  
100 1000  
1
0.1  
0.1  
0.1  
1
10  
100  
1000  
1
10  
FREQUENCY, kHz  
FREQUENCY, kHz  
“M” Case  
“M” Case  
10 000  
1000  
100  
10  
1000  
100  
10  
IMPEDANCE  
ESR  
IMPEDANCE  
ESR  
1 µF - 16 V  
10 µF - 10 V  
100  
1
0.1  
1
0.1  
1
10  
1000  
1
10  
100  
1000  
FREQUENCY, kHz  
FREQUENCY, kHz  
www.vishay.com  
42  
For technical questions, contact: tantalum@vishay.com  
Document Number: 40065  
Revision: 22-Oct-07  
298D  
Vishay Sprague  
Solid Tantalum Chip Capacitors  
MICROTANTM Lead Frameless Molded  
TYPICAL CURVES AT + 25 °C, IMPEDANCE AND ESR VS. FREQUENCY  
“P” CASE  
“P” CASE  
100.0  
10.0  
1.0  
1000.0  
100.0  
IMPEDANCE  
ESR  
IMPEDANCE  
ESR  
10.0  
1.0  
33 µF - 10 V  
4.7 µF - 25 V  
0.1  
0.1  
10  
100  
1000  
0.1  
1
0.1  
1000  
1
10  
100  
FREQUENCY, kHz  
FREQUENCY, kHz  
“P” CASE  
“P” CASE  
10.0  
100.0  
10.0  
1.0  
IMPEDANCE  
ESR  
IMPEDANCE  
ESR  
1.0  
0.1  
47 µF - 10 V  
220 µF - 4 V  
100 1000  
0.1  
0.1  
1
10  
100  
1000  
0.1  
1
10  
FREQUENCY, kHz  
FREQUENCY, kHz  
Document Number: 40065  
Revision: 22-Oct-07  
For technical questions, contact: tantalum@vishay.com  
www.vishay.com  
43  
Legal Disclaimer Notice  
Vishay  
Notice  
Specifications of the products displayed herein are subject to change without notice. Vishay Intertechnology, Inc.,  
or anyone on its behalf, assumes no responsibility or liability for any errors or inaccuracies.  
Information contained herein is intended to provide a product description only. No license, express or implied, by  
estoppel or otherwise, to any intellectual property rights is granted by this document. Except as provided in Vishay's  
terms and conditions of sale for such products, Vishay assumes no liability whatsoever, and disclaims any express  
or implied warranty, relating to sale and/or use of Vishay products including liability or warranties relating to fitness  
for a particular purpose, merchantability, or infringement of any patent, copyright, or other intellectual property right.  
The products shown herein are not designed for use in medical, life-saving, or life-sustaining applications.  
Customers using or selling these products for use in such applications do so at their own risk and agree to fully  
indemnify Vishay for any damages resulting from such improper use or sale.  
Document Number: 91000  
Revision: 08-Apr-05  
www.vishay.com  
1

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