The Important Information/Disclaimer is incorporated in the catalog where these specifications came from or
available online at www.avx.com/disclaimer/ by reference and should be reviewed in full before placing any order.
011419
13
–
advanced ceramic capacitors
–
SMPS Stacked MLC Capacitors
SM Style SM Military Styles MIL-PRF-49470/1
MIL-PRF-49470/1
MIL-PRF-49470/1 - capacitor, fixed, ceramic dielectric, switch mode power supply (general purpose and temperature stable), standard reliability
and high reliability unencapsulated, Style PS01.
D
E
A
See
B
See Note 4
Note 4
6.35 (0.250) MIN
2.54 (0.100) MAX
0.635 (0.025) MIN
(See Note 5)
2.54 (0.100) TYP
1.397
±0.254
(0.055
±0.010)
SEATING PLANE
See Note 3
See Note 6
0.508
±0.050
(0.020
±0.002)
6.35 (0.250)
MIN
0.254
±0.05
(0.010
±0.002)
C
LEAD STYLE N AND A
E
E
L
0.254 (0.010)
RAD (TYP)
1.27 (0.050) MIN
C
L
1.27 (0.050) MIN
C
0.254 (0.010)
RAD (TYP)
LEAD STYLE J AND C
CIRCUIT DIAGRAM
LEAD STYLE L AND B
millimeters (inches)
DIMENSIONS:
Case Code
1
2
3
4
5
6
C ±0.635 (±0.025)
11.4 (0.450)
20.3 (0.800)
11.4 (0.450)
10.2 (0.400)
6.35 (0.250)
31.8 (1.250)
Min.
49.5 (1.950)
36.8 (1.450)
24.1 (0.950)
8.89 (0.350)
6.20 (0.224)
49.5 (1.950)
D
Max.
52.7 (2.075)
40.0 (1.535)
27.3 (1.075)
10.8 (0.425)
6.97 (0.275)
52.7 (2.075)
E (max.)
12.7 (0.500)
22.1 (0.870)
12.7 (0.500)
11.2 (0.440)
7.62 (0.300)
34.3 (1.350)
Number of Leads
per side
20
15
10
4
3
20
NOTES:
1. Dimensions are in millimeters (inches)
2.
Unless otherwise specified, tolerances are 0.254 (±0.010).
3.
Lead frame configuration is shown as typical above the seating plane.
4.
See table I of MIL-PRF-49470/1 for specific maximum A dimension. For maximum B dimension, add 1.65 (0.065) to the
appropriate A dimension. For all lead styles, the number of chips is determined by the capacitance and voltage rating.
5. For case code 5, dimensions shall be 2.54 (0.100) maximum and 0.305 (0.012) minimum.
6. Lead alignment within pin rows shall be within ±0.10 (0.005).
14
The Important Information/Disclaimer is incorporated in the catalog where these specifications came from or
available online at www.avx.com/disclaimer/ by reference and should be reviewed in full before placing any order.
090518
–
advanced ceramic capacitors
–
SMPS Stacked MLC Capacitors
SM Style SM Military Styles MIL-PRF-49470/2
MIL-PRF-49470/2
MIL-PRF-49470/2 - capacitor, fixed, ceramic dielectric, switch mode power supply (general purpose and temperature stable), standard reliability
and high reliability encapsulated, Style PS02.
D
E
A MAX
See Note 3
SEATING
PLANE
See Note 4
0.50
±0.05
(0.020
±0.002)
2.54 (0.100) TYP
0.254 ±0.05
(0.010 ±0.002)
C
6.35 (0.250)
MIN
0.38
±0.13
(0.015
±0.005)
4.45 (0.175) MAX
1.02 (0.040) MIN
LEAD STYLE N AND A
E
E
0.254 (0.010)
RAD (TYP)
L
1.27 (0.050) MIN
C
L
C
0.254 (0.010)
RAD (TYP)
1.27 (0.050) MIN
LEAD STYLE J AND C
CIRCUIT DIAGRAM
LEAD STYLE L AND B
millimeters (inches)
DIMENSIONS:
Case Code
1
2
3
4
5
6
C ±0.635 (±0.025)
11.4 (0.450)
20.3 (0.800)
11.4 (0.450)
10.2 (0.400)
6.35 (0.250)
31.8 (1.250)
D ±0.635 (±0.025)
54.7 (2.155)
41.0 (1.615)
29.3 (1.155)
12.3 (0.485)
9.02 (0.355)
54.7 (2.155)
E (max)
14.7 (0.580)
24.1 (0.950)
14.7 (0.580)
12.3 (0.485)
9.02 (0.355)
36.3 (1.430)
Number of Leads
per side
20
15
10
4
3
20
NOTES:
1. Dimensions are in millimeters (inches)
2.
Unless otherwise specified, tolerances are 0.254 (±0.001).
3.
See table I of MIL-PRF-49470/2 for specific maximum A dimension. For all lead
styles, the number of chips is determined by the capacitance and voltage rating.
4. Lead alignment within pin rows shall be within ±0.10 (0.004).
The Important Information/Disclaimer is incorporated in the catalog where these specifications came from or
available online at www.avx.com/disclaimer/ by reference and should be reviewed in full before placing any order.
011419
15
–
advanced ceramic capacitors
–
SMPS Stacked MLC Capacitors
SM Style SM Military Styles MIL-PRF-49470
MIL-PRF-49470
PIN 1/
-49470X0-155-Z-
-49470X0-185-Z-
-49470X0-225-Z-
-49470X0-275-Z-
-49470X0-335-Z-
-49470X0-395-Z-
-49470X0-475-Z-
-49470X0-565-Z-
-49470X0-685-Z-
-49470X0-685-Z-
-49470X0-825-Z-
-49470X0-825-Z-
-49470X0-106-Z-
-49470X0-106-Z-
-49470X0-126-Z-
-49470X0-156-Z-
-49470X0-156-Z-
-49470X0-186-Z-
-49470X0-186-Z-
-49470X0-226-Z-
-49470X0-226-Z-
-49470X0-276-Z-
-49470X0-276-Z-
-49470X0-336-Z-
-49470X0-336-Z-
-49470X0-396-Z-
-49470X0-396-Z-
-49470X0-476-Z-
-49470X0-476-Z-
-49470X0-566-Z-
-49470X0-566-Z-
-49470X0-686-Z-
-49470X0-686-Z-
-49470X0-826-Z-
-49470X0-826-Z-
-49470X0-107-Z-
-49470X0-107-Z-
-49470X0-127-Z-
-49470X0-127-Z-
-49470X0-157-Z-
-49470X0-157-Z-
-49470X0-187-Z-
-49470X0-187-Z-
-49470X0-227-Z-
-49470X0-277-Z-
-49470X0-337-Z-
-49470X0-397-Z-
-49470P0-563-A-
-49470P0-683-A-
-49470P0-823-A-
-49470P0-104-A-
-49470P0-124-A-
-49470P0-154-A-
-49470P0-184-A-
-49470P0-184-A-
AVX PART NUMBER
(for reference only)
2/
SM-53C155-H-120
SM-53C185-H-120
SM-53C225-H-120
SM-53C275-H-240
SM-53C335-H-240
SM-53C395-H-240
SM-53C475-H-240
SM-53C565-H-360
SM-53C685-H-360
SM-43C685-H-120
SM-53C825-H-480
SM-43C825-H-240
SM-53C106-H-650
SM-43C106-H-240
SM-43C126-H-240
SM-43C156-H-360
SM-33C156-H-120
SM-43C186-H-360
SM-33C186-H-120
SM-43C226-H-480
SM-33C226-H-240
SM-43C276-H-480
SM-33C276-H-240
SM-43C336-H-650
SM-33C336-H-240
SM-33C396-H-360
SM-13C396-H-240
SM-33C476-H-480
SM-13C476-H-360
SM-33C566-H-480
SM-13C566-H-360
SM-33C686-H-480
SM-13C686-H-360
SM-33C826-H-650
SM-13C826-H-360
SM-13C107-H-480
SM-23C107-H-360
SM-13C127-H-650
SM-23C127-H-360
SM-23C157-H-480
SM-63C157-H-240
SM-23C187-H-650
SM-63C187-H-360
SM-63C227-H-360
SM-63C277-H-480
SM-63C337-H-650
SM-63C397-H-650
SM-55A563-H-120
SM-55A683-H-240
SM-55A823-H-240
SM-55A104-H-240
SM-55A124-H-360
SM-55A154-H-360
SM-55A184-H-480
SM-45A184-H-240
Capacitance μF
25V
1.5
1.8
2.2
2.7
3.3
3.9
4.7
5.6
6.8
6.8
8.2
8.2
10
10
12
15
15
18
18
22
22
27
27
33
33
39
39
47
47
56
56
68
68
82
82
100
100
120
120
150
150
180
180
220
270
330
390
Tolerance
Characteristic
Case Code
Lead
Configuration
N, L, M, J, K
N, L, M, J, K
N, L, M, J, K
N, L, M, J, K
N, L, M, J, K
N, L, M, J, K
N, L, M, J, K
N, L, M, J, K
N, L, M, J, K
A, B, D, C, F
N, L, M, J, K
A, B, D, C, F
N, L, M, J, K
A, B, D, C, F
N, L, M, J, K
N, L, M, J, K
A, B, D, C, F
N, L, M, J, K
A, B, D, C, F
N, L, M, J, K
A, B, D, C, F
N, L, M, J, K
A, B, D, C, F
N, L, M, J, K
A, B, D, C, F
N, L, M, J, K
A, B, D, C, F
N, L, M, J, K
A, B, D, C, F
N, L, M, J, K
A, B, D, C, F
N, L, M, J, K
A, B, D, C, F
N, L, M, J, K
A, B, D, C, F
N, L, M, J, K
A, B, D, C, F
N, L, M, J, K
A, B, D, C, F
N, L, M, J, K
A, B, D, C, F
N, L, M, J, K
A, B, D, C, F
N, L, M, J, K
N, L, M, J, K
N, L, M, J, K
N, L, M, J, K
N, L, M, J, K
N, L, M, J, K
N, L, M, J, K
N, L, M, J, K
N, L, M, J, K
N, L, M, J, K
N, L, M, J, K
A, B, D, C, F
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
J, K
J, K
J, K
J, K
J, K
J, K
J, K
J, K
BX
BX
BX
BX
BX
BX
BX
BX
BX
BX
BX
BX
BX
BX
BX
BX
BX
BX
BX
BX
BX
BX
BX
BX
BX
BX
BX
BX
BX
BX
BX
BX
BX
BX
BX
BX
BX
BX
BX
BX
BX
BX
BX
BX
BX
BX
BX
BP
BP
BP
BP
BP
BP
BP
BP
5
5
5
5
5
5
5
5
5
4
5
4
5
4
4
4
3
4
3
4
3
4
3
4
3
3
1
3
1
3
1
3
1
3
1
1
2
1
2
2
6
2
6
6
6
6
6
5
5
5
5
5
5
5
4
50V
0.056
0.068
0.082
0.1
0.12
0.15
0.18
0.18
1/ Complete PIN shall include additional symbols replacing dashes (from left to right): product level (M for B level, or T for T level), part style (1 for unencapsulated, 2 for encapsulated),
capacitance tolerance, lead configuration
2/ Complete AVX Part Number (provided for reference only) shall include additional symbols replacing dashes (from left to right): part style (0 for unencapsulated and 9 for
encapsulated), capacitance tolerance, lead configuration
The last 3 digits of the AVX Part Number represent the chip height of the unencapsulated version. For the encapsulated version, replace the last 3 digits as follows:
(120 replace with 270, 240 replace with 390, 360 replace with 530, 480 replace with 660 and 650 replace with 800).
16
The Important Information/Disclaimer is incorporated in the catalog where these specifications came from or
available online at www.avx.com/disclaimer/ by reference and should be reviewed in full before placing any order.
090518
–
advanced ceramic capacitors
–
SMPS Stacked MLC Capacitors
SM Style SM Military Styles MIL-PRF-49470
MIL-PRF-49470
PIN 1/
-49470P0-224-A-
-49470P0-224-A-
-49470P0-274-A-
-49470P0-274-A-
-49470P0-334-A-
-49470P0-394-A-
-49470P0-474-A-
-49470P0-564-A-
-49470P0-564-A-
-49470P0-684-A-
-49470P0-824-A-
-49470P0-105-A-
-49470X0-105-A-
-49470P0-125-A-
-49470X0-125-A-
-49470P0-155-A-
-49470X0-155-A-
-49470P0-185-A-
-49470X0-185-A-
-49470P0-225-A-
-49470X0-225-A-
-49470X0-275-A-
-49470X0-335-A-
-49470X0-395-A-
-49470X0-475-A-
-49470X0-475-A-
-49470X0-565-A-
-49470X0-565-A-
-49470X0-685-A-
-49470X0-825-A-
-49470X0-106-A-
-49470X0-126-A-
-49470X0-156-A-
-49470X0-156-A-
-49470X0-186-A-
-49470X0-226-A-
-49470X0-276-A-
-49470X0-336-A-
-49470X0-396-A-
-49470X0-476-A-
-49470X0-476-A-
-49470X0-566-A-
-49470X0-566-A-
-49470X0-686-A-
-49470X0-686-A-
-49470X0-826-A-
-49470X0-826-A-
-49470X0-107-A-
-49470X0-107-A-
-49470X0-127-A-
-49470X0-157-A-
-49470X0-187-A-
-49470X0-227-A-
-49470X0-277-A-
-49470P0-473-B-
-49470P0-563-B-
AVX PART NUMBER
(for reference only)
2/
SM-55A224-H-480
SM-45A224-H-240
SM-55A274-H-650
SM-45A274-H-240
SM-45A334-H-360
SM-45A394-H-480
SM-45A474-H-480
SM-45A564-H-650
SM-35A564-H-240
SM-35A684-H-240
SM-35A824-H-240
SM-35A105-H-360
SM-55C105-H-120
SM-35A125-H-360
SM-55C125-H-120
SM-35A155-H-480
SM-55C155-H-240
SM-35A185-H-480
SM-55C185-H-240
SM-35A225-H-650
SM-55C225-H-240
SM-55C275-H-360
SM-55C335-H-360
SM-55C395-H-480
SM-55C475-H-480
SM-45C475-H-240
SM-55C565-H-650
SM-45C565-H-240
SM-45C685-H-360
SM-45C825-H-360
SM-45C106-H-480
SM-45C126-H-480
SM-45C156-H-650
SM-35C156-H-240
SM-35C186-H-240
SM-35C226-H-360
SM-35C276-H-360
SM-35C336-H-360
SM-35C396-H-480
SM-35C476-H-650
SM-25C476-H-240
SM-15C566-H-360
SM-25C566-H-240
SM-15C686-H-480
SM-25C686-H-360
SM-15C826-H-480
SM-25C826-H-360
SM-15C107-H-650
SM-25C107-H-480
SM-25C127-H-480
SM-25C157-H-650
SM-65C187-H-480
SM-65C227-H-480
SM-65C277-H-650
SM-51A473-H-240
SM-51A563-H-240
Capacitance μF
0.22
0.22
0.27
0.27
0.33
0.39
0.47
0.56
0.56
0.68
0.82
1
1
1.2
1.2
1.5
1.5
1.8
1.8
2.2
2.2
2.7
3.3
3.9
4.7
4.7
5.6
5.6
6.8
8.2
10
12
15
15
18
22
27
33
39
47
47
56
56
68
68
82
82
100
100
120
150
180
220
270
Tolerance
J, K
J, K
J, K
J, K
J, K
J, K
J, K
J, K
J, K
J, K
J, K
J, K
K, M
J, K
K, M
J, K
K, M
J, K
K, M
J, K
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
K, M
J, K
J, K
Characteristic
BP
BP
BP
BP
BP
BP
BP
BP
BP
BP
BP
BP
BX
BP
BX
BP
BX
BP
BX
BP
BX
BX
BX
BX
BX
BX
BX
BX
BX
BX
BX
BX
BX
BX
BX
BX
BX
BX
BX
BX
BX
BX
BX
BX
BX
BX
BX
BX
BX
BX
BX
BX
BX
BX
BP
BP
Case Code
5
4
5
4
4
4
4
4
3
3
3
3
5
3
5
3
5
3
5
3
5
5
5
5
5
4
5
4
4
4
4
4
4
3
3
3
3
3
3
3
2
1
2
1
2
1
2
1
2
2
2
6
6
6
5
5
Lead
Configuration
N, L, M, J, K
A, B, D, C, F
N, L, M, J, K
A, B, D, C, F
N, L, M, J, K
N, L, M, J, K
N, L, M, J, K
N, L, M, J, K
A, B, D, C, F
N, L, M, J, K
N, L, M, J, K
N, L, M, J, K
N, L, M, J, K
N, L, M, J, K
N, L, M, J, K
N, L, M, J, K
N, L, M, J, K
N, L, M, J, K
N, L, M, J, K
N, L, M, J, K
N, L, M, J, K
N, L, M, J, K
N, L, M, J, K
N, L, M, J, K
N, L, M, J, K
A, B, D, C, F
N, L, M, J, K
A, B, D, C, F
N, L, M, J, K
N, L, M, J, K
N, L, M, J, K
N, L, M, J, K
N, L, M, J, K
A, B, D, C, F
N, L, M, J, K
N, L, M, J, K
N, L, M, J, K
N, L, M, J, K
N, L, M, J, K
N, L, M, J, K
A, B, D, C, F
N, L, M, J, K
A, B, D, C, F
N, L, M, J, K
A, B, D, C, F
N, L, M, J, K
A, B, D, C, F
N, L, M, J, K
A, B, D, C, F
N, L, M, J, K
N, L, M, J, K
N, L, M, J, K
N, L, M, J, K
N, L, M, J, K
N, L, M, J, K
N, L, M, J, K
100V
0.047
0.056
1/ Complete PIN shall include additional symbols replacing dashes (from left to right): product level (M for B level, or T for T level), part style (1 for unencapsulated, 2 for encapsulated),
capacitance tolerance, lead configuration
2/ Complete AVX Part Number (provided for reference only) shall include additional symbols replacing dashes (from left to right): part style (0 for unencapsulated and 9 for
encapsulated), capacitance tolerance, lead configuration
The last 3 digits of the AVX Part Number represent the chip height of the unencapsulated version. For the encapsulated version, replace the last 3 digits as follows:
(120 replace with 270, 240 replace with 390, 360 replace with 530, 480 replace with 660 and 650 replace with 800).
The Important Information/Disclaimer is incorporated in the catalog where these specifications came from or
available online at www.avx.com/disclaimer/ by reference and should be reviewed in full before placing any order.
The new board finally arrived this weekend. The first step is to get familiar with FR5969. Compared with G2553, the hardware content has changed, but they are all MSP430 series, so learning FR5969 wil...
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I am not clear about the process of soft reset of the system. I don’t know whether the address at which the soft reset starts is the same as that at which the system starts cold start. . . ....
I want to ask, I output a certain frequency pulse (such as 500Hz) from P1.2, why is its output frequency unstable? It keeps decreasing, like 499, 498, and the higher the output frequency, the more uns...
A line scan lens is an industrial lens used with line scan cameras. Its imaging principle is to capture the image of the workpiece using a linear sensor and then perform digital signal processing t...[Details]
Is pure electric vehicles a false proposition for long-distance driving? At least from my personal perspective, based on current technological and infrastructure standards, I believe so. Below, I'l...[Details]
Topics: Bring Your Own Device (BYOD) trends; the impact of using employees' own mobile devices to control access to work facilities and equipment on information security; and ways to securely imple...[Details]
Current Development Status of DVR Market
A DVR, or digital video recorder, uses a hard disk for recording, unlike traditional analog video recorders. It's often called a DVR because it's a com...[Details]
According to foreign media reports, researchers at the University of Surrey have developed an artificial intelligence system that can accurately locate the location of equipment in densely populate...[Details]
On August 18th, Galaxis, a specialist in integrated intelligent intralogistics robotics, officially unveiled its next-generation, ultra-narrow aisle forklift mobile robot, the "VFR Ultra-Narrow Ser...[Details]
The complexity of the integrated circuits (ICs) used in electronic systems in vehicles is increasing. They aim to execute artificial intelligence (AI) algorithms to control autonomous driving funct...[Details]
UPS stands for Uninterruptible Power Supply, which includes energy storage devices. It is mainly used to provide uninterruptible power supply for devices that require high power stability.
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A half-bridge is an inverter topology for converting DC to AC. A typical half-bridge circuit consists of two controller switches, a three-wire DC power supply, two feedback diodes, and two capacito...[Details]
With the continuous development of the industrial automation industry, we are seeing an increasing number of intelligent devices using flexible, efficient, and precise robotic arms to p...[Details]
HTTP is the abbreviation of Hypertext Transfer Protocol. It is an application protocol based on TCP/IP communication protocol used to transmit HTML and image files. It is an application-level objec...[Details]
Shanghai, China, August 21, 2025 –
Toshiba Electronic Devices & Storage Corporation (“Toshiba”) today announced the launch of the TLX9161T
, an automotive photorelay in a compact SO12L-T pa...[Details]
introduction
The widespread use of air conditioner communication circuits began with the rise of household inverter air conditioners. With China's energy conservation and emission reduction in...[Details]
0 Introduction
With a rapidly aging population, a young couple is now required to care for an increasing number of elderly people, leading to a growing difficulty in providing care for them. E...[Details]
On August 20, Reuters reported that two sources revealed that U.S. Commerce Secretary Howard Lutnick is exploring the possibility of using CHIPS Act funds in exchange for equity stakes in chip manu...[Details]