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PDF FME0H473ZF Data sheet ( Hoja de datos )

Número de pieza FME0H473ZF
Descripción Supercapacitors
Fabricantes KEMET 
Logotipo KEMET Logotipo



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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

1 page




FME0H473ZF pdf
Supercapacitors – FM Series
Specifications – All Types Except FMR
Item
Category Temperature Range
Maximum Operating Voltage
Capacitance
Capacitance Allowance
ESR
Current (30 minutes value)
FM 5.5 V Type, 3.5 V Type,
6.5 V Type, FMC Type
-25ºC to +70ºC
5.5 VDC, 3.5 VDC, 6.5 VDC
Refer to Table 1
+80%, -20%
Refer to Table 1
Refer to Table 1
Capacitance > 90% of initial ratings
Surge
ESR ≤ 120% of initial ratings
Current (30
minutes value)
≤ 120% of initial ratings
Appearance No obvious abnormality
Characteristics
in Different
Temperature
Vibration
Resistance
Capacitance
ESR
Capacitance
ESR
Capacitance
ESR
Current (30
minutes value)
Capacitance
ESR
Current (30
minutes value)
Capacitance
ESR
Current (30
minutes value)
Appearance
Phase
2
Phase
3
Phase
5
≥ 50% of initial value
≤ 400% of initial value
≤ 200% of initial value
Satisfy initial ratings
≤ 1.5 CV (mA)
Phase
6
Within ±20% of initial value
Satisfy initial ratings
Satisfy initial ratings
Satisfy initial ratings
No obvious abnormality
Solderability
Over 3/4 of the terminal should be
covered by the new solder
Solder Heat
Resistance
Capacitance
ESR
Current (30
minutes value)
Appearance
Satisfy initial ratings
No obvious abnormality
FML Type, FME Type
-25ºC to +70ºC
5.5 VDC
Refer to Table 1
+80%, -20%
Refer to Table 1
Refer to Table 1
> 90% of initial ratings
≤ 120% of initial ratings
≤ 120% of initial ratings
No obvious abnormality
Test Conditions
(conforming to JIS C 5160-1)
Refer to “Measurement Conditions”
Refer to “Measurement Conditions”
Measured at 1 kHz, 10 mA; See also
“Measurement Conditions”
Refer to “Measurement Conditions”
Surge voltage:
Charge:
Discharge:
Number of cycles:
Series resistance:
Discharge
resistance:
Temperature:
4.0 V (3.5 V type)
6.3 V (5.5 V type)
7.4 V (6.5 V type)
30 seconds
9 minutes 30 seconds
1,000
0.010 F
1500 Ω
0.022 F
560 Ω
0.033 F
510 Ω
0.047 F
300 Ω
0.068 F
240 Ω
0.10 F
150 Ω
0.22 F
56 Ω
0.33 F
51 Ω
70 ±2ºC
Phase
2
Phase
3
Phase
5
≥ 50% of initial value
≤ 400% or less than initial value
≤ 200% of initial value
Satisfy initial ratings
≤ 1.5 CV (mA)
Conforms to 4.17
Phase 1:
Phase 2:
Phase 4:
Phase 5:
Phase 6:
+25 ±2ºC
-25 ±2ºC
+25 ±2ºC
+70 ±2ºC
+25 ±2ºC
Phase
6
Within ±20% of initial value
Satisfy initial ratings
Satisfy initial ratings
Satisfy initial ratings
Conforms to 4.13
Frequency: 10 to 55 Hz
Testing Time: 6 hours
No obvious abnormality
Over 3/4 of the terminal should be
covered by the new solder
Satisfy initial ratings
Conforms to 4.11
Solder temp: +245 ±5ºC
Dipping time: 5 ±0.5 seconds
1.6 mm from the bottom should be dipped.
Conforms to 4.10
Solder temp: +260 ±10ºC
Dipping time: 10 ±1 seconds
No obvious abnormality
1.6 mm from the bottom should be dipped.
© KEMET Electronics Corporation • P.O. Box 5928 • Greenville, SC 29606 (864) 963-6300 • www.kemet.com
S6012_FM • 3/7/2014 5

5 Page





FME0H473ZF arduino
Supercapacitors – FM Series
Ammo Pack Taping Format (FMC0H334ZFTP)
P2
b
P
Δh
c
–+
P1 F
–+
W4
t3
t2
P0 D0
Ammo Pack Taping Specifications (FMC0H334ZFTP)
t1
Item Symbol
Component Height
Component Width
a
b
Component Thickness
c
Lead-Wire Width
Lead-Wire Thickness
Component Pitch
W4
t3
P
Sprocket Hole Pitch
Sprocket Hole Center to Lead Center
Sprocket Hole Center to Component Center
Lead Spacing
P0
P1
P2
F
Component Alignment (side/side) ∆h
Carrier Tape Width
Hold-Down Tape Width
Sprocket Hole Position
Hold-Down Tape Position
Height to Seating Plane (lead length)
W
W0
W1
W2
H
Sprocket Hole Diameter
Carrier Tape Thickness
Total Thickness (Carrier Tape, Hold-Down Tape and Lead)
Cut Out Length
D0
t1
t2
L
Dimensions (mm)
15.0 ±0.5
14.0 ±0.5
9.0 ±0.5
0.6 ±0.1
0.6 ±0.1
25.4 ±1.0
12.7 ±0.3
3.85 ±0.7
6.35 ±0.7
5.0 ±0.5
2.0 Maximum
18.0 +1.0/-0.5
12.5 Minimum
9.0 ±0.5
3.0 Maximum
16.0 ±0.5 / 18.0 ±0.5
ø 4.0 ±0.2
0.67 ±0.2
1.7 Maximum
11.0 Maximum
© KEMET Electronics Corporation • P.O. Box 5928 • Greenville, SC 29606 (864) 963-6300 • www.kemet.com
S6012_FM • 3/7/2014 11

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