MLP133M016EK1D 概述
CAP ALUM 13000UF 20% 16V FLATPCK
MLP133M016EK1D 数据手册
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PDF下载Type MLP 85 °C FlatpackTM, Ultra Long Life, Aluminum Electrolytic
Very Low Profile
The MLP’s high-energy storage and box-shape make it perfect for
voltage holdup or filtering in military SEM-E modules, telecom
circuit packs and computer cards. The MLP delivers up to 20 joules
of energy storage in a 1/2” height with 50 year’s life at +45 ºC. You
can readily heatsink it to double the ripple-current capability. The MLP
is the square-peg component that fits the square-holes in electronic
assemblies.
Highlights
- Low-profile replacement for snap-ins
- Double the ripple capability with a heatsink
- Nearly hermetic welded seal assures 50-year life
- Withstands more than 80,000 feet altitude
Specifications
Temperature Range
–55°C to +85°C ≤250 Vdc
–40°C to +85°C ≥300 Vdc
Rated Voltage Range
Capacitance Range
7.5 Vdc to 450 Vdc
110 µF to 47,000 µF
Capacitance Tolerance
20ꢀ
Leakage Current
≤ 0.002 CV µA, @ 25 °C and 5 min.
Ambient Temperature, No Heatsink
Ripple Current Multipliers
45 °C
55 °C
65 °C
75 °C
85 °C
1.00
0.90
0.75
0.56
0.27
Case Temperature
45 °C
55 °C
3.32
65 °C
75 °C
85 °C
3.79
2.77
2.08
1.00
Frequency
10 kHz
& up
50 Hz 60 Hz 120 Hz 360 Hz 1 kHz 5 kHz
7.5 to 63 V 0.94 0.95 1.00 1.04
1.05
1.24
1.06
1.28
1.06
1.29
80 to 450 V 0.80 0.85 1.00 1.17
Low Temperature Characteristics
Endurance Life Test
Impedance ratio: Z–55⁰C ∕ Z+25⁰C
≤ 10 (7.5 - 20 Vdc)
≤ 2 (25 – 250 Vdc)
Impedance ratio: Z–20⁰C ∕ Z+25⁰C
≤ 4 (300–450Vdc)
2000 h @ full load at +85 °C
∆ Capacitance 10ꢀ
ESR 200ꢀ of limit
DCL 100ꢀ of limit
Shelf Life Test
Vibration
500 h at 85 °C
Capacitance 100ꢀ of limit
ESR 100ꢀ of limit
DCL 100ꢀ of limit
All case sizes: 10g.
MIL-STD-202, Meth. 204,Sine Swept, EIEC 60068-2-6
CDM Cornell Dubilier • 140 Technology Place • Liberty, SC 29657 • Phone: (864)843-2277 • Fax: (864)843-3800
Type MLP 85 °C FlatpackTM, Ultra Long Life, Aluminum Electrolytic
Very Low Profile
Vibration Test
Level
The specimens, while deenergized or operating under the load conditions
specified, shall be subjected to the vibration amplitude, frequency range,
and duration specified for each case size.
Amplitude
The specimens shall be subjected to a simple harmonic motion having an
amplitude of either 0.06-inch double amplitude (maximum total excursion)
or peak level specified above (XXg peak), whichever is less. The tolerance
on vibration amplitude shall be 10 percent.
Frequency Range
The vibration frequency shall be varied logarithmically between the
approximate limits of 10 to 2,000 Hz.
Sweep Time and Duration
The entire frequency range of 10 to 2,000 Hz and return to 10 Hz shall be
traversed in 20 minutes. This cycle shall be performed 12 times in each
of three mutually perpendicular directions (total of 36 times), so that
the motion shall be applied for a total period of approximately 12 hours.
Interruptions are permitted provided the requirements for rate of change
and test duration are met.
Thermal Resistance
Case Length
Insulation
None
1.5"
ºC/W
2.9
2.0"
ºC/W
2.1
3.0"
ºC/W
1.4
Large Sides
Heatsinked
one
Polyester
None
3.3
2.4
1.6
2.7
1.9
1.2
both
Polyester
2.9
2.1
1.3
ESL
<30 nH measured 1/4”from case at 1 MHz
Weight
Case EK 30 g typical
Case EA 42 g typical
Case EB 66 g typical
Terminals
18 AWG copper wire with 60/40 tin-lead electroplate, 20 amps max
Aluminum
Case Material
Double the Ripple Current
Attach the MLP to an external heatsink and you can easily double the ripple
current capability and assure long life through cooler operation. The broad,
flat top and bottom on the MLP are ideal for cooling the capacitor and
removing the heat caused by ripple current.
Ripple Current Capability
Air Cooled
The ripple current capability is set by the maximum permissible internal
core temperature, 88 ºC. This assures that the case does not inflate beyond
0.5 inch height.
The ripple currents in the ratings tables are for 85 ºC case temperatures.
For air temperatures without a heatsink use the multipliers Ambient
Temperature, No Heatsink.
Heatsink Cooled
Temperature rise from the internal hottest spot, the core, to ambient air is
∆T = I2(ESR)(θcc + θca)
where θcc is the thermal resistance from core to case and θca from case to
ambient. To calculate maximum ripple capability with the MLP attached to a
heatsink use the maximum core temperature and the values for θcc.
Example
As an illustration, suppose you operate an insulated MLP332M080EB1C
in 65 ºC air and attach it to a commercial heatsink with a free-air thermal
resistance of 2.7 ºC/W. Use a good thermal grease between the MLP and
the heatsink, and the total thermal resistance is 2.7 +1.7 or 4.4 ºC/W. The
power which would heat the core to 88 °C is (88-65)/4.4 or 5.2 W. For an ESR
of 31 mΩ,5.2 W equates to a ripple current of 13 A.
CDM Cornell Dubilier • 140 Technology Place • Liberty, SC 29657 • Phone: (864)843-2277 • Fax: (864)843-3800
Type MLP 85 °C FlatpackTM, Ultra Long Life, Aluminum Electrolytic
Part Numbering System
MLP
102
M
200
EB
0
A
Type
MLP
Capacitance
Tolerance Rated Voltage Case Code
Insulation
Mounting Style
821=820 µF
102 = 1000 µF
M= 20ꢀ
Vdc
EK, L=1.5 in.
EA, L=2.0 in
EB, L=3.0 in.
0 = bare can
1 = polyester
A = mounting tabs
B = four leads
C = two leads/no tabs
D = hook leads/tabs
E = hook leads/no tabs
Outline Drawings
Note: The polyester tape wrap may add up to 0.020 inches to the thickness and width of the capacitor.
Style A: Mounting Tabs
L+.375
.156 ±0.01 SLOT
±0.03
0.040 DIA, 18 AWG LEADS
(TYP)
.188±.01
Φ.156
±0.01
1.00
1.75
±0.01
±0.01
Mounting tabs and negative
lead are welded to the case.
MAY BE SQUARE
.375±.01
1.5 MIN
L±.02
.50 MAX
.036
.030
Style B: Four Leads
0.040 DIA, 18 AWG LEADS
(TYP)
•
Three negative leads are
welded to the case.
1.00
±0.01
1.75
±0.01
+
•
1.5 MIN
L ±0.02
1.5 MIN
0.50 MAX
Style C: No Tabs
0.040 DIA, 18 AWG
(TYP)
•
1.00
±0.01
1.75
The negative lead is welded
to the case.
±0.01
+
•
L ±0.02
1.5 MIN
0.50 MAX
Style D: Hook Leads
Φ0.040, 18 AWG LEADS
L +0.375
(TYP)
±0.03
.188 ±0.01
Φ0.156 ±0.01 SLOT
Φ.156
1.00
±0.01
1.75
±0.01
Mounting tabs and negative
lead are welded to the case.
±0.01
MAY BE SQUARE
Case
Code
Length Weight
.375
L (in)
(g)
30
42
66
L
0.02
EK
EA
EB
1.5
2.0
.50 MAX
3.0
.036
.030
.260
±0.01
CDM Cornell Dubilier • 140 Technology Place • Liberty, SC 29657 • Phone: (864)843-2277 • Fax: (864)843-3800
Type MLP 85 °C FlatpackTM, Ultra Long Life, Aluminum Electrolytic
Very Low Profile
Ratings
ESR max
Ripple (A)
ESR max
Ripple (A)
25 ºC (mΩ)
Case @ 85 °C
25 ºC (mΩ)
Case @ 85 °C
Cap.
(µF)
Catalog
Length
Cap.
(µF)
Catalog
Length
Part Number
120 Hz 20 kHz 120 Hz 20 kHz (Inches)
Part Number
120 Hz 20 kHz 120 Hz 20 kHz (Inches)
7.5 Vdc (10 Vdc Surge)
100 Vdc (125 Vdc Surge)
19,000 MLP193M7R5EK0A 76
28,000 MLP283M7R5EA0A 50
47,000 MLP473M7R5EB0A 30
66
44
26
4.2
5.8
9.1
4.5
6.2
9.8
1.5
2.0
3.0
1100 MLP112M100EK0A 112
1600 MLP162M100EA0A 76
78
54
33
3.5
4.7
7.4
4.2
5.6
8.7
1.5
2.0
3.0
2700 MLP272M100EB0A
46
10 Vdc (13 Vdc Surge)
150 Vdc (180 Vdc Surge)
17000 MLP173M010EK0A
26000 MLP263M010EA0A 51
43000 MLP433M010EB0A 30
77
67
45
27
4.2
5.8
9.0
4.5
6.1
9.6
1.5
2.0
3.0
500 MLP501M150EK0A 355
770 MLP771M150EA0A 238
1300 MLP132M150EB0A 143
248
166
100
1.9
2.7
4.2
2.3
3.2
5.0
1.5
2.0
3.0
16 Vdc (20 Vdc Surge)
200 Vdc (250 Vdc Surge)
13000 MLP133M016EK0A
21000 MLP213M016EA0A 53
38000 MLP383M016EB0A 31
81
69
46
27
4.1
5.7
9.0
4.4
6.1
9.6
1.5
2.0
3.0
400 MLP401M200EK0A 388
600 MLP601M200EA0A 261
1000 MLP102M200EB0A 158
253
168
100
1.9
2.6
3.8
2.3
3.2
5.0
1.5
2.0
3.0
20 Vdc (25 Vdc Surge)
250 Vdc (300 Vdc Surge)
9600 MLP962M020EK0A
14000 MLP143M020EA0A 56
24000 MLP243M020EB0A 33
84
69
46
27
4.0
5.5
8.7
4.4
6.1
9.6
1.5
2.0
3.0
330 MLP331M250EK0A 426
490 MLP491M250EA0A 285
820 MLP821M250EB0A 172
258
172
103
1.8
2.4
3.8
2.3
3.1
4.9
1.5
2.0
3.0
25 Vdc (30 Vdc Surge)
300 Vdc (350 Vdc Surge)
8000 MLP802M025EK0A
12000 MLP123M025EA0A 57
20000 MLP203M025EB0A 34
87
69
46
27
3.9
5.5
8.6
4.4
6.1
9.6
1.5
2.0
3.0
220 MLP221M300EK0A 597
330 MLP331M300EA0A 399
560 MLP561M300EB0A 240
393
262
157
1.5
2.1
3.2
1.9
2.5
4.0
1.5
2.0
3.0
35 Vdc (50 Vdc Surge)
350 Vdc (400 Vdc Surge)
5600 MLP562M035EK0A
8400 MLP842M035EA0A 59
14000 MLP143M035EB0A 35
90
70
46
27
3.4
5.4
8.4
4.4
6.1
9.6
1.5
2.0
3.0
150 MLP151M350EK0A 1000
220 MLP221M350EA0A 683
370 MLP371M350EB0A 420
734
503
310
1.2
1.6
2.3
1.4
1.8
2.8
1.5
2.0
3.0
50 Vdc (63 Vdc Surge)
400 Vdc (450 Vdc Surge)
4400 MLP442M050EK0A
6600 MLP662M050EA0A 62
11000 MLP113M050EB0A 36
97
70
46
27
3.7
5.2
8.3
4.4
6.1
9.6
1.5
2.0
3.0
130 MLP131M400EK0A 1320
200 MLP201M400EA0A 882
330 MLP331M400EB0A 530
970
648
390
1.0
1.4
2.1
1.2
1.6
2.5
1.5
2.0
3.0
63 Vdc (75 Vdc Surge)
420 Vdc (475 Vdc Surge)
2200 MLP222M063EK0A 101
3300 MLP332M063EA0A 64
5600 MLP562M063EB0A 36
76
50
29
3.7
5.2
8.3
4.2
5.8
9.3
1.5
2.0
3.0
130 MLP131M420EK0A 1320
200 MLP201M420EA0A 882
330 MLP331M420EB0A 530
970
648
390
1.0
1.4
2.1
1.2
1.6
2.5
1.5
2.0
3.0
80 Vdc (100 Vdc Surge)
450 Vdc (500 Vdc Surge)
1500 MLP152M080EK0A 106
2100 MLP212M080EA0A 72
3300 MLP332M080EB0A 44
77
52
31
3.6
4.9
7.5
4.2
5.7
9.0
1.5
2.0
3.0
110 MLP111M450EK0A 1456
170 MLP171M450EA0A 973
280 MLP281M450EB0A 585
1190
797
480
0.96
1.3
2.0
1.1
1.5
2.3
1.5
2.0
3.0
Typical Performance Curves
300 V and Up, Operating Life in Kilohours vs Ripple Current
7.5 to 250 V, Operating Life in Kilohours vs Ripple Current
1000
100
10
100
10
1
45 ºC
55 ºC
45 ºC
55 ºC
65 ºC
75 ºC
85 ºC
65 ºC
75 ºC
85 ºC
0
0.1
0.2
0.3
0.4
0.5
0.6
0.7
0.8
0.9
1
1.1
1.2
1.3
1.4
1.5
0
0.1
0.2
0.3
0.4
0.5
0.6
0.7
0.8
0.9
1
1.1
1.2
1.3
1.4
1.5
Rated Ripple-Current Multiple
Rated Ripple-Current Multiple
CDM Cornell Dubilier • 140 Technology Place • Liberty, SC 29657 • Phone: (864)843-2277 • Fax: (864)843-3800
Type MLP 85 °C FlatpackTM, Ultra Long Life, Aluminum Electrolytic
Very Low Profile
Typical Performance Curves
MLP 4400 µF 50 Vdc Ripple Life Test 85 ⁰C
MLP 300 µF 400 Vdc Life Test 105 ⁰C
1.15
1.1
2.7
2.5
2.3
2.1
1.9
1.7
1.5
1.3
1.1
0.9
ESR
ESR
1.05
1
Capacitance
0.95
0.9
Capacitance
0
200
400
600
800
1000
1200
1400
1600
1800
2000
0
200
400
600
800
1000
1200
1400
1600
1800
2000
Test Hours 48 V and 1 A @ 60Hz
Test Hours
MLP 300 µF 400 Vdc Ripple Life Test 85 ºC
MLP 4400 µF 50 Vdc Life Test 85 ⁰C
2.5
1.08
1.07
1.06
1.05
1.04
1.03
1.02
1.01
1
2.3
2.1
1.9
1.7
1.5
1.3
1.1
0.9
ESR
ESR
Capacitance
Capacitance
0
200
400
600
800
1000
1200
1400
1600
1800
2000
0
200
400
600
800
1000
1200
1400
1600
1800
2000
Te st H o u rs
Test Hours 391 V and 0.5 A @ 60 Hz
Impedance vs Temperature and Frequency MLP331M400EB0A
Capacitance vs Temperature & Frequency MLP442M050EK1C
100
1.2
85 ºC
65 ºC
45 ºC
25 ºC
1
0.8
0.6
0.4
0.2
0
10
1
–40 °C
–20 °C
0 ºC
–20 ºC
0 °C
25 °C
0.1
0.01
–40 ºC
–55 ºC
45 °C
65 °C
85 °C
10
100
1000
10000
100000
Frequency (Hz)
10
100
1000
Frequency (Hz)
10000
100000
CDM Cornell Dubilier • 140 Technology Place • Liberty, SC 29657 • Phone: (864)843-2277 • Fax: (864)843-3800
Notice and Disclaimer: All product drawings, descriptions, specifications, statements, information and
data (collectively, the “Information”) in this datasheet or other publication are subject to change. The
customer is responsible for checking, confirming and verifying the extent to which the Information con-
tained in this datasheet or other publication is applicable to an order at the time the order is placed. All
Information given herein is believed to be accurate and reliable, but it is presented without any guaran-
tee, warranty, representation or responsibility of any kind, expressed or implied. Statements of suitability
for certain applications are based on the knowledge that the Cornell Dubilier company providing such
statements (“Cornell Dubilier”) has of operating conditions that such Cornell Dubilier company regards
as typical for such applications, but are not intended to constitute any guarantee, warranty or representa-
tion regarding any such matter – and Cornell Dubilier specifically and expressly disclaims any guarantee,
warranty or representation concerning the suitability for a specific customer application, use, storage,
transportation, or operating environment. The Information is intended for use only by customers who
have the requisite experience and capability to determine the correct products for their application. Any
technical advice inferred from this Information or otherwise provided by Cornell Dubilier with reference
to the use of any Cornell Dubilier products is given gratis (unless otherwise specified by Cornell Dubilier),
and Cornell Dubilier assumes no obligation or liability for the advice given or results obtained. Although
Cornell Dubilier strives to apply the most stringent quality and safety standards regarding the design
and manufacturing of its products, in light of the current state of the art, isolated component failures may
still occur. Accordingly, customer applications which require a high degree of reliability or safety should
employ suitable designs or other safeguards (such as installation of protective circuitry or redundancies
or other appropriate protective measures) in order to ensure that the failure of an electrical component
does not result in a risk of personal injury or property damage. Although all product-related warnings,
cautions and notes must be observed, the customer should not assume that all safety measures are indi-
cated in such warnings, cautions and notes, or that other safety measures may not be required.
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