Technical Data 4423
Effective October 2017
Supersedes November 2014
XB Supercapacitors
Cylindrical snap-in
HALOGEN
Pb HF
FREE
Features
•
•
•
•
•
•
Over 10-year operating life at room
temperature
Low ESR for high power density
Large capacitance for high energy density
Long cycle life
Environmentally friendly electrolyte
UL Recognized
Applications
•
•
•
Description
Eaton supercapacitors are unique, ultra-high
capacitance devices utilizing electrochemical
double layer capacitor (EDLC) construction
combined with new, high performance
materials. This combination of advanced
technologies allows Eaton to offer a wide variety
of capacitor solutions tailored to specific
applications that range from a few micro-amps
for several days to several amps for
milliseconds.
Hybrid battery or fuel cell systems
High pulse current applications
UPS / hold-up power
Technical Data 4423
Effective October 2017
Ratings
Capacitance
300 F to 600 F
Maximum working voltage
2.5 V
Surge voltage
2.85 V
Capacitance tolerance
-10% to +10% (+20 °C)
Operating temperature range
-25 °C to +70 °C
Specifications
Maximum ESR1
(mΩ) (Equivalent
Series Resistance)
Max
continuous
current2
(A)
Peak
current3
(A)
Max
leakage
current1,4
(mA)
Max
power5
(W)
Stored
energy6
(Wh)
Typical
mass
(g)
Capacitance1 (F)
Part Number
300
XB3550-2R5307-R
7
15
120
0.30
220
0.26
400
XB3560-2R5407-R
4.5
19
180
0.45
350
0.35
80
600
XB3585-2R5607-R
3.7
29
0.70
420
0.52
122
1.
2.
3.
4.
235
69
Capacitance, ESR and Leakage current are all measured according to IEC 62391-1 at +20 °C
15 °C Temperature Rise
Peak Current is for 1 second = ½ Working Voltage x Capacitance / (1 + ESR x Capacitance)
Leakage current measured after 72 hours, +20 °C
5. Max. Power = Working Voltage2 / 4 / ESR
6. Stored energy = ½ Capacitance x Working Voltage2 / 3600
Performance
Capacitance change
(% of initial value)
Parameter
ESR
(% of max. initial value)
Life
@ Maximum operating voltage and temp)
Charge/discharge cycling
1
1500 hours
≤ 20%
≤ 200%
500,000
≤ 20%
≤ 200%
1500 hours
≤ 20%
≤ 200%
3 years
≤ 5%
≤ 10%
Storage Life- uncharged
-25 °C to +70 °C
≤ 30°C
1.. Cycling between maximum operating and 50% of maximum operating voltage at room temperature
2
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Technical Data 4423
XB Supercapacitors
Cylindrical snap-in
Effective October 2017
Dimensions- mm
Dimensions - mm
L
H
120.0°
Positive Terminal
D
A
Blank Terminal
Negative Terminal
PCB Patterns:
4- 2.0 0.1
1.50
Part number
D ±1.0
L ±1.0
H ±1.0
A ±0.1
XB3550-2R5307-R
35
53
6
22.5
XB3560-2R5407-R
35
63
6
22.5
XB3585-2R5607-R
35
87.5
6
22.5
Part numbering system
XB
Family Code
XB=Family Code
Diameter
Length
35
60
Standard packaging: Bulk, 20 parts per box
7
-R
Multiplier
Standard
product
Capacitance (µF)
Size reference- mm
Packaging information
•
40
-2R5
3560
Voltage (V) R = Decimal
2R5 = 2.5 V
Value
Example: 407 = 40 x 107µF or 400 F
Part marking
•
•
•
•
•
Manufacturer
Capacitance (F)
Maximum operating voltage (V)
Family code (or part number)
Polarity
www.eaton.com/electronics
3
XB Supercapacitors
Cylindrical snap-in
Technical Data 4423
Effective October 2017
Wave solder profile
tp
Temperature
Tp
First Wave
Second Wave
Tsmax
Tstyp
Tsmin
Preheat area
Cool down area
Time
Profile Feature
Standard SnPb Solder
Lead (Pb) Free Solder
• Temperature max. (Tsmax)
100 °C
100 °C
• Time max.
60 seconds
60 seconds
D preheat to max Temperature
160 °C max.
160 °C max.
Peak temperature (TP)*
220 °C – 260 °C
250 °C – 260 °C
Time at peak temperature (tp)
10 seconds max
5 seconds max each wave
10 seconds max
5 seconds max each wave
Ramp-down rate
~ 2 K/s min
~3.5 K/s typ
~5 K/s max
~ 2 K/s min
~3.5 K/s typ
~5 K/s max
Time 25 °C to 25 °C
4 minutes
4 minutes
Preheat and soak
Manual solder
+350 °C, 4-5 seconds. (by soldering iron), generally manual, hand soldering is not recommended.
Reflow soldering
Do not use reflow soldering using infrared or convection oven heating methods.
Cleaning/Washing
Avoid cleaning of circuit boards, however if the circuit board must be cleaned use static or ultrasonic immersion in a standard circuit board
cleaning fluid for no more than 5 minutes and a maximum temperature of +60 °C. Afterwards thoroughly rinse and dry the circuit boards. In
general, treat supercapacitors in the same manner you would an aluminum electrolytic capacitor.
Life Support Policy: Eaton does not authorize the use of any of its products for use in life support devices or systems without the express written
approval of an officer of the Compan . Life support systems are devices which support or sustain life, and whose failure to perform, when properly
used in accordance with instructions for use provided in the labeling, can be reasonably expected to result in significant injury to the use .
Eaton reserves the right, without notice, to change design or construction of any products and to discontinue or limit distribution of any products. Eaton also
reserves the right to change or update, without notice, any technical information contained in this bulletin.
Eaton
Electronics Division
1000 Eaton Boulevard
Cleveland, OH 44122
United States
www.eaton.com/electronoics
© 2017 Eaton
All Rights Reserved
Printed in USA
Publication No. 4423
October 2017
Eaton is a registered trademark.
All other trademarks are property
of their respective owners.
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