F8A thru F10A
Surface Mount Glass Passivated Standard Rectifier
Reverse Voltage 1200~2000V Forward Current 1A
Features
•
•
•
•
•
•
Glass passivated Standard Rectifiers
Very low profile - typical height of 1.0 mm
Ideal for automated placement
Low leakage current
Moisture sensitivity: level 1, per J-STD-020
High temperature soldering guaranteed: 260℃/10 seconds
eSGA
(SOD‐123FL)
Typical Applications
For use of general purpose rectification in lighting, cellular phone, portable device,
power supplies and other consumer applications.
Maximum Ratings
Parameter
(TA = 25 °C unless otherwise noted)
Symbol
VRRM
VRMS
VDC
IF(AV)
( )
IFSM
TJ, TSTG
F8A
1200
840
1200
F9A
1500
1050
1500
1.0
30
- 55 to + 150
F10A
2000
1400
2000
Unit
V
V
V
A
A
°C
Maximum repetitive peak reverse voltage
Maximum RMS voltage
Maximum DC blocking voltage
Maximum average forward rectified current
g
Peak forward surge current 8.3 ms single half
sine-wave superimposed on rated load
Operating junction and storage temperature
range
Electrical Characteristics
Parameter
Test Conditions
Maximum instantaneous
1.0A ,TA=25℃
forward voltage
Maximum DC reverse current
TA=25℃
at rated DC blocking voltage
Typical junction capacitance 4.0 V, 1 MHz
Typical thermal resistance
1)
juntion t
j ti to ambient
bi t
(TA = 25 °C unless otherwise noted)
F8A
F9A
1.1
5
5.4
70
F10A
Unit
Volts
µA
pF
℃/W
Symbol
V
F
I
R
C
J
R
θJA
Note:1),The thermal resistance from junction to ambient,mounted on P.C.B with 5×5mm copper pads,2 OZ,FR4 PCB
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1/4
2015.07-Rev.A
F8A thru F10A
Surface Mount Glass Passivated Standard Rectifier
Reverse Voltage 1200~2000V Forward Current 1A
Ratings and Characteristics Curves
(TA = 25℃ unless otherwise noted)
Figure 1.Forward Current Derating Curve
Figure 2.Maximum Non‐Repetitive Peak
g
Forward Surge Current
Figure 3. Typical Instantaneous Forward Characteristics
Figure 4. Typical Reverse Characteristics
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2/4
2015.07-Rev.A
F8A thru F10A
Surface Mount Glass Passivated Standard Rectifier
Reverse Voltage 1200~2000V Forward Current 1A
Disclaimers
These materials are intended as a reference to assist our customers in the selection of the Suzhou
Good-Ark product best suited to the customer’s application; they do not convey any license under
any intellectual property rights, or any other rights belonging to Suzhou Good Ark Electronics Co
rights
rights,
Good-Ark
Co.,
Ltd.or a third party.
Suzhou Good-Ark Electronics Co., Ltd. assumes no responsibility for any damage, or infringement
of any third-party’s rights, originating in the use of any product data, diagrams, charts, programs,
algorithms, or circuit application examples contained in these materials.
All information contained in these materials, including product data, diagrams, charts, programs
and algorithms represents information on products at the time of publication of these materials, and
are subject to change by Suzhou Good-Ark Electronics Co., Ltd. without notice due to product
improvements or other reasons. It is therefore recommended that customers contact Suzhou
Good-Ark Electronics Co., Ltd. or an authorized Suzhou Good-Ark Electronics Co., Ltd. for the
latest product information before purchasing a product listed herein. The information described
here may contain technical inacc racies or t pographical errors S ho Good Ark Electronics Co
ma
inaccuracies typographical errors. Suzhou Good-Ark
Co.,
Ltd. assumes no responsibility for any damage, liability, or other loss rising from these inaccuracies
or errors. Please also pay attention to information published by Suzhou Good-Ark Electronics Co.,
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(http://www.goodark.com)
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d
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h l
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t th
t i l
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