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687ULR6R3MFH

Description
Aluminum Organic Polymer Capacitors 680uF 6.3V 20% tol. POLYMER
CategoryPassive components   
File Size330KB,3 Pages
ManufacturerCornell Dubilier
Environmental Compliance
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Aluminum Organic Polymer Capacitors 680uF 6.3V 20% tol. POLYMER

687ULR6R3MFH Parametric

Parameter NameAttribute value
Product AttributeAttribute Value
ManufacturerCornell Dubilier
Product CategoryAluminum Organic Polymer Capacitors
RoHSDetails
Package TypeCan
Capacitance680 uF
PackagingBulk
ProductAluminum Polymer Capacitors
Factory Pack Quantity1000
FEATURES
APPLICATIONS
High Temperature
Very Low ESR – High Ripple Current –
Stable with Temperature – High Frequency
DC-DC Converters
Voltage Regulators
Decoupling
-55°C to +105°C
+20% at 120 Hz, 20°C
10
16
20
25
1.15 x rated WVDC
10% MAX
2 Minutes
0.2CV or 280uA, whichever is greater
<1.25
<1.25
2000 hours at 105°C with rated WVDC applied
Capacitance Change
<20% of initial measured value
Dissipation Factor
<150% of maximum specified value
ESR
<150% of maximum specified value
Leakage Current
<100% of maximum specified value
1000 hours at 60°C with rated voltage applied at 90-95% R.H.
Capacitance Change
<20% of initial measured value
Dissipation Factor
<150% of maximum specified value
ESR
<150% of maximum specified value
Leakage Current
<100% of maximum specified value
1000 cycles at 105°C with rated surge voltage applied for 30 seconds through a 1kΩ resistor
and discharged for 5 minutes and 30 seconds
Capacitance Change
<20% of initial measured value
Dissipation Factor
<150% of maximum specified value
ESR
<150% of maximum specified value
Leakage Current
<100% of maximum specified value
Operating Temperature Range
Capacitance Tolerance
WVDC
Surge Voltage
SVDC
Dissipation Factor
120 Hz, 20°C
Leakage Current
Low Temperature Stability
Impedance Ratio
(100 kHz)
2.5
4
-55°C/ +20°C
+105°C/ +20°C
Load Life
Damp Heat test
Surge Voltage test
Ripple Current Multipliers
120Hz<f<1kHz
0.05
Frequency (Hz)
1kHz<f<10kHz 10kHz<f<100kHz
0.3
0.7
100kHz<f<500kHz
1.0
5
6.3
2
2.5
0.5 L<7mm)
0.45 L<6mm)
d
0.6( L>7mm)
0.6( L>6mm)
L
1
=L+1.0 mm MAX L<11mm
L
1
=L+1.5 mm MAX, L>11 mm
D+0.5
S+0.5
8
3.5
0.6
10
5.0
0.6
Feb-17

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