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Teilenummer | FM0H473ZF |
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Beschreibung | Supercapacitors | |
Hersteller | KEMET | |
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Gesamt 19 Seiten Supercapacitors
FM Series
Overview
FM Series Supercapacitors, also known as Electric Double-
Layer Capacitors (EDLCs), are intended for high energy storage
applications.
Applications
Supercapacitors have characteristics ranging from traditional
capacitors and batteries. As a result, supercapacitors can be
used like a secondary battery when applied in a DC circuit.
These devices are best suited for use in low voltage DC hold-up
applications such as embedded microprocessor systems with
flash memory.
Benefits
• Rectangular case
• Wide range of temperature from -25°C to +70°C (all types
except FMR) and -40°C to +85°C (FMR type)
• Maintenance free
• 3.5 VDC, 5.5 VDC, and 6.5 VDC
• Highly reliable against liquid leakage
• Lead-free and RoHS Compliant
• Leads can be transverse mounted
Part Number System
FM
Series
FM
FME
FML
FMR
FMC
0H 223
Maximum
Operating Voltage
Capacitance Code (F)
0V = 3.5 VDC
0H = 5.5 VDC
0J = 6.5 VDC
First two digits
represent significant
figures. Third digit
specifies number of
zeros.
Z
Capacitance
Tolerance
Z = -20/+80%
F
Environmental
F = Lead-free
TP
Tape Type
TP = AMMO
-L1 = Transverse
mounting
Blank = Bulk
16
Height
(excluding lead)
16 = 16 mm
18 = 18 mm
Blank = Bulk
© KEMET Electronics Corporation • P.O. Box 5928 • Greenville, SC 29606 (864) 963-6300 • www.kemet.com
One world. One KEMET
S6012_FM • 3/7/2014 1
Supercapacitors – FM Series
Specifications – All Types Except FMR cont’d
Item
Temperature
Cycle
High
Temperature
and High
Humidity
Resistance
Capacitance
ESR
Current (30
minutes value)
Appearance
Capacitance
ESR
Current (30
minutes value)
Appearance
Capacitance
FM 5.5 V Type, 3.5 V Type,
6.5 V Type, FMC Type
Satisfy initial ratings
No obvious abnormality
Within ±20% of initial value
≤ 120% of initial ratings
≤ 120% of initial ratings
No obvious abnormality
Within ±30% of initial value
High
Temperature
Load
ESR
Current (30
minutes value)
Appearance
< 200% of initial ratings
< 200% of initial ratings
No obvious abnormality
FML Type, FME Type
Satisfy initial ratings
No obvious abnormality
Within ±20% of initial value
≤ 120% of initial ratings
≤ 120% of initial ratings
No obvious abnormality
Within ±30% of initial value
< 200% of initial ratings
< 200% of initial ratings
No obvious abnormality
Self Discharge Characteristics
(Voltage Holding Characteristics)
5.5 V type: Voltage between terminal
leads > 4.2 V
3.5 V type: Not specified
6.5 V type: Not specified
Test Conditions
(conforming to JIS C 5160-1)
Conforms to 4.12
Temperature
Condition:
Number of cycles:
-25ºC→ Room
temperature→ +70ºC→
Room temperature
5 cycles
Conforms to 4.14
Temperature:
Relative humidity:
Testing time:
+40 ±2ºC
90 to 95% RH
240 ±8 hours
Conforms to 4.15
Temperature:
Voltage applied:
Series protection
resistance:
Testing time:
+70 ±2ºC
Maximum operating
voltage
0Ω
1,000 +48 (+48/-0) hours
Charging condition
Voltage applied:
Series resistance:
Charging time:
5.0 VDC (Terminal at
the case side must be
negative)
0Ω
24 hours
Storage
Let stand for 24 hours in condition described
below with terminals opened.
Ambient temperature: < 25ºC
Relative humidity: < 70% RH
© KEMET Electronics Corporation • P.O. Box 5928 • Greenville, SC 29606 (864) 963-6300 • www.kemet.com
S6012_FM • 3/7/2014 6
6 Page Supercapacitors – FM Series
List of Plating & Sleeve Type
By changing the solder plating from leaded solder to lead-free solder and the outer tube material of can-cased conventional
supercapacitor from polyvinyl chloride to polyethylene terephthalate (PET), our supercapacitor is now even friendlier to the environment.
a. Iron + copper base + lead-free solder plating (Sn-1Cu)
b. SUS nickel base + copper base + reflow lead-free solder plating (100% Sn, reflow processed)
Series
FM
Part Number
All FM Series
Recommended Pb-free solder : Sn / 3.5Ag / 0.75Cu
Sn / 3.0Ag / 0.5Cu
Sn / 0.7Cu
Sn / 2.5Ag / 1.0Bi / 0.5Cu
Plating
a
Sleeve
No tube used
© KEMET Electronics Corporation • P.O. Box 5928 • Greenville, SC 29606 (864) 963-6300 • www.kemet.com
S6012_FM • 3/7/2014 12
12 Page | ||
Seiten | Gesamt 19 Seiten | |
PDF Download | [ FM0H473ZF Schematic.PDF ] |
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