ISAHAYA INT05V3AM1

< DIODE >
INT05V3AM1
FOR ESD PROTECTION
SILICON EPITAXIAL TYPE(COMMON ANODE)
DESCRIPTION
INT05V3AM1 is super mini package plastic seal type silicon epitaxial
type diode.
It guarantees ESD protection of LEVEL4 with IEC61000-4-2. It is
suitable for ESD protection of external interface circuit.
OUTLINE DRAWING
UNIT : mm
2.1
1.25
0.425
0.425
②
0.3
0.65
①
1.3
2.0
● Possible to high density mounting with small sized package
and double diode
● Low capacitance ; CT=15pF(TYP)
● Guaranteed ESD protection;
IEC61000-4-2(air) ±15KV
IEC61000-4-2(contact) ±8KV
0.65
FEATURE
③
APPLICATION
0.15
0~0.1
0.7
0.9
ESD protection for external interface circuit
JEITA : SC-70
JEDEC:-
TERMINAL CONNECTION
①: CATHODE1
②: CATHODE2
③: ANODE ( COMMON )
MAXIMUM RATINGS(Ta=25℃)
Parameter
Symbol
Ratings
Unit
Total power dissipation
PT
200*
mW
Junction temperature
Tj
+150
℃
Strage temperature
Tstg
-55 ~ +150
℃
MARKING
INTERNAL CONNECTION
③
T・1
* Mounted on glass epoxy board (19mm×9mm×1mm).
①
②
ELECTRICAL CHARACTERISTICS(Ta=25℃)
Parameter
Breakdown voltage
Symbol
Test conditions
Limits
Min
Typ
Max
Unit
VBR
IR=1mA
5.3
5.6
5.9
V
Reverse current
IR
VR=3.0V
-
-
1.0
µA
Pin capacitance
CT
VR=0V
-
15
-
pF
GUARANTEED ESD PROTECTION
Test condition
ESD protection
Unit
IEC61000-4-2(Contact discharge)
±15
kV
IEC61000-4-2(Air discharge)
±8
kV
< DIODE >
INT05V3AM1
FOR ESD PROTECTION
SILICON EPITAXIAL TYPE(COMMON ANODE)
TYPICAL CHARACTERISTICS
IR-VR
IR-VR
1
10
Reverse current : IR (nA)
Ta=125℃
1
75℃
25℃
0.1
-25℃
0.01
0.001
0.1
0.01
0.001
4.8
5
5.2 5.4 5.6 5.8 6
Reverse voltage : VR (V)
6.2
6.4
Ct-VR
20
Ta=25℃
f=1MHz
18
Pin capacitrance : Ct (pF)
Reverse current : IR (mA)
Ta=25℃
16
14
12
10
8
6
4
2
0
0
1
2
Reverse voltage : VR (V)
3
0
1
2
Reverse voltage: VR (V)
3
6-41 Tsukuba, Isahaya, Nagasaki, 854-0065 Japan
Keep safety first in your circuit designs!
·ISAHAYA Electronics Corporation puts the maximum effort into making semiconductor products better and more reliable, but
there is always the possibility that trouble may occur with them. Trouble with semiconductors may lead to personal injury, fire or
property damage. Remember to give due consideration to safety when making your circuit designs, with appropriate measures
such as (1) placement of substitutive, auxiliary, (2) use of non-farmable material or (3) prevention against any malfunction or
mishap.
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Mar.2013