ETC FMU

Package
I F (AV)
(A)
Part Number
IFSM
(A)
Tj
(°C)
50Hz
( ) is with Half-cycle Sinewave
Heatsink Single Shot
–40 to +150
0.9
1.2
10
300
100
0.2
10/10
0.08
10/20
17
0.3
56
RU 2YX
30
–40 to +150
0.95
1.5
10
300
100
0.2
10/10
0.08
10/20
15
0.4
57
RU 3YX
2.0
50
–40 to +150
0.95
2.0
10
300
100
0.2
10/10
0.08
10/20
12
0.6
RU 30Y
1.5 (3.5)
80
–40 to +150
0.97
3.5
10
300
100
0.4
10/10
0.18
10/20
10
1.0
RU 4Y
2.0 (3.5)
70
–40 to +150
1.3
3.5
10
300
100
0.4
10/10
0.18
10/20
8
1.2
RU 4YX
2.2 (4.0)
70
–40 to +150
1.3
3.5
10
300
100
0.4
100/100 0.18 100/200
8
1.2
50
500
100
0.2
100/100 0.08 100/200
4.2
2.1
60
50
500
100
0.4
100/100 0.18 100/200
4.0
2.1
60
58
59
1.0
Center-tap FMU-21S, R
10
40
–40 to +150
1.5
0.78±0.05
7.2±0.2
62.5±0.7
2.7±0.2
4.0±0.2
4.2
2.8
4.0±0.2
4.2
2.8
3.3
C0.5
2.6
(13.5)
1.35
1.35
0.85
0.45
2.54
(13.5)
3.9
3.9
0.8
16.9
2.2
2.6
0.8
16.9
4.0
8.4
4.0
8.4
10.0
0.45
2.54
S type
R type
1.4±0.1
1.2±0.05
Cathode Mark
Cathode Mark
Cathode Mark
7.2±0.2
62.5±0.7
5.0±0.2
0.98±0.05
Cathode Mark
Cathode Mark
62.3±0.7
5.0
Flammability: UL94V-0 or Equivalent (Unit: mm)
0.78±0.05
3.3
10
5.2±0.2
8.0±0.2
■ External Dimensions
5.08
Rth (j- ) Mass Fig.
Rth (j-c) (g) No.
(°C/W)
IF / I FP
(mA)
25
–40 to +150
1.35
0.85
2
(µs)
IF / I FP
(mA)
1.5
100
2.2
t rr
1
(µs)
1.2
10
10.0
VR = VRM VR = VRM
max
max
t rr
Ta
(°C)
: I F / I R (=I F) 90% Recovery Point
(ex. I F / I R =100mA/100mA 90% Recovery Point)
: I F / I R (=2 I F) 75% Recovery Point
(ex. I F / I R =100mA/200mA 75% Recovery Point)
EU 2YX
FMU-G2YXS
Frame-2Pin
18
IF
(A)
IR (H)
(µA)
2
50.0±0.1
100
IR
(µA)
VF
(V)
max
1
t rr
9.1±0.2
Axial
Tstg
(°C)
62.5±0.7
VRM
(V)
t rr
Page where
characteristic
curve is shown
Fast-Recovery Rectifier Diodes 100V
6.5±0.2
Characteristic Curves
Fast-Recovery Rectifier Diodes
FMU-G2YXS
t /T= 1/ 3, Sinewave
6
4
10
1
0.1
Ta = 150°C
100°C
60°C
25°C
0.01
2
0
70
80
90 100 110 120 130 140 150
Case Temperature Tc (°C)
0.001
0.1
0.3
0.5
0.7
0.9
1.1
Forward Voltage VF (V)
I FMS Rating
100
Peak Forward Surge Current
t /T = 1/2
t /T = 1/6
8
Forward Current I F (A)
IF(AV) (A)
Average Forward Current
VF —IF Characteristics (Typical)
D.C.
20ms
80
60
40
20
0
1.3
IFSM (A)
50
I FSM (A)
Tc—I F(AV) Derating
10
1
5
10
Overcurrent Cycles
50
FMU-G16S
VF —IF Characteristics (Typical)
t /T= 1/ 3, Sinewave
3
2
1
0.1
Ta = 150°C
100°C
60°C
25°C
0.01
1
0
70
80
90 100 110 120 130 140 150
Case Temperature Tc (°C)
IFSM (A)
10
D.C.
I FMS Rating
30
Peak Forward Surge Current
t /T = 1/6
4
Forward Current I F (A)
IF(AV) (A)
Average Forward Current
50
t /T = 1/2
I FSM (A)
Tc—I F(AV) Derating
5
0.001
0.1 0.3 0.5 0.7 0.9 1.1 1.3 1.5 1.7
Forward Voltage VF (V)
20ms
20
10
0
1
5
10
Overcurrent Cycles
50
FMU-G26S
t /T = 1/6
6
t /T= 1/ 3, Sinewave
4
0
70
80
90 100 110 120 130 140 150
Case Temperature Tc (°C)
IFSM (A)
I FSM (A)
1
0.1
Ta = 150°C
100°C
60°C
25°C
0.01
2
Peak Forward Surge Current
10
t /T = 1/2
Forward Current I F (A)
IF(AV) (A)
Average Forward Current
40
50
D.C.
8
I FMS Rating
VF —IF Characteristics (Typical)
Tc—I F(AV) Derating
10
0.001
0.1
0.3
0.5 0.7 0.9 1.1 1.3
Forward Voltage VF (V)
20ms
30
20
10
0
1.5
1
5
10
Overcurrent Cycles
50
FMU-1 series
VF —IF Characteristics (Typical)
t /T= 1/6
t /T= 1/ 3, Sinewave
10
t /T= 1/2
I FSM (A)
1
0.1
Ta = 150°C
100°C
60°C
25°C
0.01
D.C.
0
0
1
2
3
Average Forward Current
4
IF(AV) (A)
5
Peak Forward Surge Current
Forward Current I F (A)
Forward Power Loss PF (W)
t
T
I FMS Rating
30
20
10
Tj =150°C
0.001
0.1
0.3
0.5
0.7 0.9 1.1
Forward Voltage VF (V)
25
20ms
20
15
10
5
0
1.3
IFSM (A)
I F(AV) —PF Characteristics
20
1
5
10
Overcurrent Cycles
50
FMU-2 series
VF —IF Characteristics (Typical)
8
t /T= 1/2
0
2
4
6
Average Forward Current
I FSM (A)
1
0.1
Ta = 150°C
100°C
60°C
25°C
0.01
D.C.
4
8
IF(AV) (A)
10
20ms
30
Peak Forward Surge Current
t /T= 1/6
12 t /T= 1/ 3, Sinewave
0
60
t
T
Forward Current I F (A)
Forward Power Loss PF (W)
10
16
I FMS Rating
40
50
Tj =150°C
IFSM (A)
I F(AV) —PF Characteristics
20
0.001
0.1
0.3
0.5
0.7 0.9 1.1
Forward Voltage VF (V)
1.3
20
10
0
1
5
10
Overcurrent Cycles
50