RB060L-40
Diodes
Schottky barrier diode
RB060L-40
!Applications
High frequency rectification
For switching power supply
!
External dimensions
(Units : mm)
1.5±0.2
!Features
1) Compact power mold type. (PMDS)
2) I
O
=2A guaranteed despite the size.
3) Low I
R
. (I
R
=10µA Typ.)
CATHODE MARK
4.5±0.2
1.2±0.3
3
6
0.1
+0.02
−0.1
2.0±0.2
!Construction
Silicon epitaxial planar
2.6±0.2
ROHM : PMDS
EIAJ :
−
JEDEC : SOD-106
·····Date of manufacture
EX. 1999.12
→
9, C
!
Absolute maximum ratings
(Ta=25°C)
Parameter
Peak reverse voltage
DC reverse voltage
Mean rectifying current
∗
1
Symbol
V
RM
V
R
I
O
I
FSM
Tj
Tstg
Limits
40
40
2.0
70
125
−40∼+125
Unit
V
V
A
A
˚C
˚C
Peak forward surge
current
∗
2
(60Hz,1
)
Junction temperature
Storage temperature
∗1
When mounted on an alumina PCBs (82×30×1.0 mm board),
180˚ half sine wave.
∗2
60Hz,
!
Electrical characteristics
(Ta=25°C)
Parameter
Forward voltage
Reverse current
Symbol
V
F1
V
F2
I
R
θj-a
θj-a
Max.
0.50
0.45
1.0
90
120
Unit
V
V
mA
˚C / W
˚C / W
I
F
=2.0A
I
F
=1.0A
V
R
=40V
Conditions
Thermal resistance
When mounting on alumina PCBs
When mounting on glass epoxy PCBs
5.0±0.3
RB060L-40
Diodes
!
Electrical characteristics curves
(Ta=25°C)
Ta=125˚C
1m
1
100m
Ta=75˚C
CAPACITANCE BETWEEN TERMINALS : C
T
(F)
10
FORWARD CURRENT : I
F
(A)
10m
1n
REVERSE CURRENT : I
R
(A)
25
˚C
Ta=
75˚
C
5
˚C
100p
100m
Ta=
2
Ta
=1
10m
Ta=25˚C
1m
10m
0
0.1
0.2
0.3
0.4
0.5
0.6
100n
0
5
10
15
20
25
30
35
40
10p
0
5
10
15
20
25
30
35
FORWARD VOLTAGE : V
F
(V)
REVERSE VOLTAGE : V
R
(V)
REVERSE VOLTAGE : V
R
(V)
Fig.1 Forward characteristics
Fig.2 Reverse characteristics
Fig.3 Capacitance between
terminals characteristics
AVERAGE RECTIFIED FORWARD CURRENT : I
O
(A)
AVERAGE RECTIFIED FORWARD CURRENT : I
O
(A)
4.0
I
F
4.0
I
F
I
O
Tp
AVERAGE RECTIFIED FORWARD CURRENT : I
O
(A)
4.0
Tp
T
F
T
O
DC
I
O
Tp
DC
T
D=Tp/T
V
R
=V
RM
/2
3.0
D=0.8
3.0
DC
T
D=Tp/T
V
R
=V
RM
/2
T
D=Tp/T
V
R
=V
RM
/2
3.0
D=0.8
D=0.5
D=0.8
2.0
sine
D=0.3
D=0.2
2.0
sine
D=0.3
D=0.2
D=0.1
D=0.05
D=0.5
2.0
D=0.5
sine wave
D=0.3
D=0.2
D=0.1
D=0.05
1.0
D=0.1
D=0.05
1.0
1.0
0
0
25
50
75
100
125
0
0
25
50
75
100
125
0
0
25
50
75
100
125
AMBIENT TEMPERATURE : Ta (˚C)
AMBIENT TEMPERATURE : Ta (˚C)
LEAD TEMPERATURE : Tl (˚C)
Fig.4 Derating curve
(when mounted on an
alumina PCBs)
Fig.5 Derating curve
(when mounted on a glass
epoxy PCBs)
Fig.6 Derating curve
(when mounted on a glass
epoxy PCBs)
FORWARD POWER DISSIPATION : P
F
(W)
DC
REVERSE POWER DISSIPATION : P
R
(W)
1.4
1.2
sine
D=0.5
D=0.8
1.00
V
R
0.80
T
j=
T
j
Max.
1.0
D=0.2
D=0.3
D=0.1
D=0.05
0.8
0.6
0.60
0
DC
V
R
I
F
0.40
Tp
T
T
j=
T
j
Max.
D
j=
Tp/T
D=0.05
D=0.1
D=0.2
D
=
0.3
D
=
0.5
sine
0.4
Tp
I
O
0.2
0
0
T
D=Tp/T
T
j=
T
j
Max.
0.20
D=0.8
0.5
1.0
1.5
2.0
2.5
3.0
3.5
0
0
5
10
15
20
25
30
35
40
AVERAGE RECTIFIED FORWARD CURRENT : I
O
(A)
REVERSE VOLTAGE : V
R
(V)
Fig.7 Forward power dissipation
Fig.8 Reverse power dissipation