0
25
50
75
100
125
150
0
0.3
0.6
0.9
1.2
1.5
0
25
50
75
100
125
150
0
0.3
0.6
0.9
1.2
1.5
0.5
0.6
0.7
0.9
1.0
1.1
0.8
5.0
1.0
0.5
0.1
0.05
0.5
0.7 0.9
1.1
1.3
50
1
0.1
10
0.3
1.5
T
a
150
°
C
=
60
°
C
100
°
C
25
°
C
0.4
0.6 0.8
1.0
1.2
0.2
T
a
150
°
C
=
60
°
C
100
°
C
25
°
C
62.5
±
0.7
7.2
±
0.2
4.0
±
0.2
0.78
±
0.05
62.3
±
0.7
5.0
±
0.2
2.7
±
0.2
0.78
±
0.05
0
1
5
50
10
40
80
20
0
1 5
40
50
10
30
10
50
RM 1B
RM 1C
RM 1Z
RM 1
RM 1A
20
0
1 5
100
60
50
10
40
80
20
60
0
25
50
75
100
125
150
0
0.2
0.4
0.6
0.8
1.0
RM1Z
RM1
RM1A
RM1B
RM1C
RM 11 ser
ies
EM 2 ser
ies
RM 1 ser
ies
0.01
0.001
30
1
0.1
10
0.01
0.001
L
=10
mm
L
=10
mm
P.C.B
180
•
100
•
1.6
t
10mm
R
ec
tifi
er D
iodes
Parameter
Type No.
Absolute Maximum Ratings
V
RM
(V)
I
F (AV)
(A)
I
FSM
(A)
V
F
(V)
I
F
(A)
V
R
=
V
RM
max
I
R
(
µ
A)
I
R
(H)
(
µ
A)
Tj
(
°
C)
Tstg
(
°
C)
max
Electrical Characteristics (Ta
=
25
°
C)
(g)
Mass
Others
EM 2
400
EM 2A
600
EM 2B
800
RM 1Z
200
RM 1
400
RM 1A
600
RM 1B
800
RM 1C
1000
RM 11A
600
RM 11B
800
RM 11C
1000
1.2
1.2
10
50
17
0.3
80
0.92
A
1.0
1.0
5
50
1.5
10
50
15
0.4
50
0.95
0.8
40
1.2
1.2
100
0.92
B
–40 to +150
T
a
130
°
C
=
100
°
C
25
°
C
14
Fig.
50Hz
Half-cycle Sinewave
Single Shot
Forward Voltage V
F
(V)
Forward Current I
F
(A)
V
F
—I
F
Characteristics
(T
ypical)
Ambient Temperature Ta (
°
C)
Overcurrent Cycles
I
FMS
Rating
Peak Forward Surge Current I
FSM
(A)
Average Forward Current I
F
(AV)
(A)
Ta
—
I
F
(AV)
Derating
Forward Voltage V
F
(V)
Forward Current I
F
(A)
V
F
—I
F
Characteristics
(T
ypical)
Ambient Temperature Ta (
°
C)
Overcurrent Cycles
I
FMS
Rating
Peak Forward Surge Current I
FSM
(A)
Average Forward Current I
F
(AV)
(A)
Ta
—
I
F
(AV)
Derating
Forward Voltage V
F
(V)
Forward Current I
F
(A)
V
F
—I
F
Characteristics
(T
ypical)
Ambient Temperature Ta (
°
C)
Overcurrent Cycles
I
FMS
Rating
Peak Forward Surge Current I
FSM
(A)
Average Forward Current I
F
(AV)
(A)
Ta
—
I
F
(AV)
Derating
External Dimensions
(Unit: mm)
Flammability:
UL94V-0 or Equivalent
A
Fig.
B
Fig.
Cathode Mark
Cathode Mark
Solder
Copper Foil
(
°
C/
W)
Rth (
j
- )
V
R
=
V
RM
Ta
=
100
°
C max
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