MLP332M080EB0A Cornell Dubilier Electronics (CDE), MLP332M080EB0A Datasheet - Page 2

CAP 3300UF 80V ALUM FLATPAK RAD

MLP332M080EB0A

Manufacturer Part Number
MLP332M080EB0A
Description
CAP 3300UF 80V ALUM FLATPAK RAD
Manufacturer
Cornell Dubilier Electronics (CDE)
Series
MLPr
Datasheet

Specifications of MLP332M080EB0A

Capacitance
3300µF
Voltage Rating
80V
Lead Spacing
1.000" (25.40mm)
Tolerance
±20%
Lifetime @ Temp.
2000 Hrs @ 85°C
Operating Temperature
-55°C ~ 85°C
Features
General Purpose
Ripple Current
7.5A
Esr (equivalent Series Resistance)
44.0 mOhm
Mounting Type
Through Hole
Package / Case
FlatPack
Size / Dimension
3.000" L x 1.750" W (76.20mm x 44.45mm)
Height
0.500" (12.70mm)
Capacitor Dielectric Type
Aluminium Electrolytic
Capacitance Tolerance
± 20%
Esr
0.044ohm
Operating Temperature Range
-55°C To +85°C
Rohs Compliant
No
Termination Type
Radial Leaded
Termination Style
Radial
Dimensions
44.45 mm Dia. x 76.2 mm L
Product
Flat Pack Electrolytic Capacitors
Leakage Current
0.002 uA
Load Life
2000 Hrs
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Surface Mount Land Size
-
Lead Free Status / Rohs Status
No
Other names
338-1208
Part Numbering System
Type MLP 85 °C Flatpack, Ultra Long Life, Aluminum Electrolytic
Very Low Profile
Thermal Resistance
ESL
Weight
Terminals
Double the Ripple Current
Ripple Current Capability
Air Cooled
Heatsink Cooled
Example
Type
MLP
MLP
CDM Cornell Dubilier • 140 Technology Place • Liberty, SC 29657 • Phone: (864)843-2277 • Fax: (864)843-3800
102 = 1000 µF
Capacitance
821=820 µF
102
Tolerance Rated Voltage
M=±20%
M
COPY & PASTE A CDE PART NUMBER TO CHECK STOCK ONLINE:
200
Vdc
EK, L=1.5 in.
EB, L=3.0 in.
EA, L=2.0 in
Case Code
<30 nH measured 1/4” from case at 1 MHz
Case EK 30 g typical
Case EA 42 g typical
Case EB 66 g typical
18 AWG copper wire with 60/40 tin-lead electroplate, 20 amps max
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.
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.
Temperature rise from the internal hottest spot, the core, to ambient air is
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.
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 4.75 W. For an
ESR of 31 mΩ, 4.7 W equates to a ripple current of 12.3 A.
EB
Large Sides
Heatsinked
both
one
1 = polyester
0 = bare can
Insulation
Case Length
Insulation
Polyester
Polyester
None
None
0
∆T = I
2
(ESR)(θcc + θca)
ºC/W
1.5"
3.0
4.3
2.8
4.0
A = mounting tabs
B = four leads
C = two leads/no tabs
D = hook leads/tabs
E = hook leads/no tabs
Mounting Style
ºC/W
2.0"
1.8
2.6
1.7
2.4
A
ºC/W
3.0"
1.2
1.7
1.1
1.6
GO

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