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SM045Exxxx Schematic ( PDF Datasheet ) - AVX Corporation

Teilenummer SM045Exxxx
Beschreibung (SM0xxx) SMPS Stacked MLC Capacitors
Hersteller AVX Corporation
Logo AVX Corporation Logo 




Gesamt 18 Seiten
SM045Exxxx Datasheet, Funktion
SMPS Stackedwww.DataSheet4U.com MLC Capacitors
(SM Style) Technical Information on SMPS Capacitors
U.S. Preferred Styles
ELECTRICAL SPECIFICATIONS
Temperature Coefficient
C0G: A Temperature Coefficient - 0 ±30 ppm/°C, -55° to +125°C
X7R: C Temperature Coefficient - ±15%, -55° to +125°C
Z5U: E Temperature Coefficient - +22, -56%, +10° to +85°C
Capacitance Test (MIL-STD-202 Method 305)
C0G: 25°C, 1.0±0.2 Vrms (open circuit voltage) at 1KHz
X7R: 25°C, 1.0±0.2 Vrms (open circuit voltage) at 1KHz
Z5U: 25°C, 0.5 Vrms max (open circuit voltage) at 1KHz
Dissipation Factor 25°C
C0G: 0.15% Max @ 25°C, 1.0±0.2 Vrms (open circuit voltage) at 1KHz
X7R: 2.5% Max @ 25°C, 1.0±0.2 Vrms (open circuit voltage) at 1KHz
Z5U: 3.0% Max @ 25°C, 0.5 Vrms max (open circuit voltage) at 1KHz
Insulation Resistance 25°C (MIL-STD-202 Method 302)
C0G and X7R: 100K Mor 1000 M-µF, whichever is less.
Z5U: 10K Mor 1000 M-µF, whichever is less.
Insulation Resistance 125°C (MIL-STD-202 Method 302)
C0G and X7R: 10K Mor 100 M-µF, whichever is less.
Z5U: 1K Mor 100 M-µF, whichever is less.
Dielectric Withstanding Voltage 25°C (Flash Test)
C0G and X7R: 250% rated voltage for 5 seconds with 50 mA max
charging current. (500 Volt units @ 750 VDC)
Z5U: 200% rated voltage for 5 seconds with 50 mA max charging
current.
Life Test (1000 hrs)
C0G and X7R: 200% rated voltage at +125°C. (500 Volt units @
600 VDC)
Z5U: 150% rated voltage at +85°C
Moisture Resistance (MIL-STD-202 Method 106)
C0G, X7R, Z5U: Ten cycles with no voltage applied.
Thermal Shock (MIL-STD-202 Method 107, Condition A)
Immersion Cycling (MIL-STD-202 Method104, Condition B)
Resistance To Solder Heat (MIL-STD-202, Method 210,
Condition B, for 20 seconds)
Typical ESR Performance (m)
ESR @ 10KHz
ESR @ 50KHz
ESR @ 100KHz
ESR @ 500KHz
ESR @ 1MHz
ESR @ 5MHz
ESR @ 10MHz
Aluminum
Electrolytic
100µF/50V
300
285
280
265
265
335
560
Low ESR
Solid Tantalum
100µF/10V
72
67
62
56
56
72
91
Solid Aluminum
Electrolytic
100µF/16V
29
22
20
18
17
17
22
MLCC
SMPS
100µF/50V
3
2
2.5
4
7
12.5
20
MLCC
SMPS
4.7µF/50V
66
23
15
8
7.5
8
14
HOW TO ORDER
SM0 1
7
C
AVX Styles: SM-1, SM-2, SM-3, SM-4, SM-5, SM-6
106 M A N 650
AVX Style
Size
SM0 = Uncoated
SM5 = Epoxy
coated
Size
See
dimen-
sions
chart
Voltage
50V = 5
100V = 1
200V = 2
500V = 7
Temperature Capacitance
Coefficient
Code
C0G = A
(2 significant
X7R = C
digits + no.
Z5U = E
of zeros)
10 pF = 100
100 pF = 101
1,000 pF = 102
22,000 pF = 223
220,000 pF = 224
1 µF = 105
10 µF = 106
100 µF = 107
Capacitance
Test
Tolerance
Level
C0G: J = ±5% A = Standard
K = ±10% B = Hi-Rel*
M = ±20%
X7R: K = ±10%
M = ±20%
Z = +80, -20%
Z5U: M = ±20%
Z = +80, -20%
P = GMV (+100, -0%)
Termination
N = Straight Lead
J = Leads formed
in
L = Leads formed
out
Height
Max
Dimension “A”
120 = 0.120"
240 = 0.240"
360 = 0.360"
480 = 0.480"
650 = 0.650"
Note: Capacitors with X7R and Z5U dielectrics are not intended for applications
across AC supply mains or AC line filtering with polarity reversal. Contact plant
for recommendations.
*Hi-Rel screening for C0G and X7R only. Screening consists of 100% Group A
(B Level), Subgroup 1 per MIL-PRF-49470.
8






SM045Exxxx Datasheet, Funktion
SMPS Stackedwww.DataSheet4U.com MLC Capacitors
(SM Style) SM Military Styles MIL-PRF-49470/2
U.S. Preferred Styles
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.
A MAX
See Note 3
SEATING
PLANE
4.45 (0.175) MAX
1.02 (0.040) MIN
D
0.38 ±0.13
(0.015 ±0.005)
See Note 4
0.50 ±0.05
(0.020 ±0.002)
2.54 (0.100) TYP
E
2.54 ±0.05
(0.100 ±0.002)
6.35 (0.250)
MIN
C
LEAD STYLE N AND A
E
E
2.54 (0.100)
RAD (TYP)
L
1.27 (0.050) MIN
C
LEAD STYLE J AND C
CIRCUIT DIAGRAM
2.54 (0.100)
L RAD (TYP)
1.27 (0.050) MIN
C
LEAD STYLE L AND B
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)
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).
millimeters (inches)
Number of Leads
per side
20
15
10
4
3
20
13

6 Page









SM045Exxxx pdf, datenblatt
SMPS Stackedwww.DataSheet4U.com MLC Capacitors
(SM Style) SM Military Styles DSCC Dwg. #87106 & #88011 U.S. Preferred Styles
D
BA
1.397 (0.055)
±0.254 (0.010)
6.35
(0.250) MIN.
0.508 (0.020) TYP.
2.54 (0.100) TYP.
2.54 (0.100) MAX.
0.635 (0.025) MIN.
(NOTE 4)
E
CHIP SEPARATION
0.254 (0.010) TYP.
0.254 (0.010) TYP.
C
“N” STYLE LEADS
0.254 (0.010) RAD. TYP.
SCHEMATIC
1.778 (0.070)
±0.254 (0.010)
“J” STYLE LEADS
1.905 (0.075)
±0.635 (0.025)
TYP.
DIMENSIONS
Case
Code
A (max.)
(See Note 2)
1 16.5 (0.650)
2 16.5 (0.650)
3 16.5 (0.650)
4 16.5 (0.650)
5 16.5 (0.650)
6 16.5 (0.650)
B (max.)
(See Note 2)
18.2 (0.715)
18.2 (0.715)
18.2 (0.715)
18.2 (0.715)
18.2 (0.715)
18.2 (0.715)
C ±.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 ±.635 (±0.025)
52.1 (2.050)
38.4 (1.510)
26.7 (1.050)
10.2 (0.400)
6.35 (0.250)
52.1 (2.050)
millimeters (inches)
E (max.)
No. of Leads
per side
12.7 (0.500)
20
22.1 (0.870)
15
12.7 (0.500)
10
11.2 (0.440)
4
7.62 (0.300)
3
34.3 (1.350)
20
NOTES:
1. Unless otherwise specified, tolerances 0.254 (±0.010).
2. “A” dimensions are maximum (see tables on pages 22 thru 25 for specific part number dimensions).
3. “N” straight leads; “J” leads formed in.
4. For case code 5, dimensions shall be 2.54 (0.100) maximum, 0.305 (0.012) minimum.
19

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