SMF5.0(C)A THRU SMF440(C)A
Stand-off Voltage - 5.0 to 440 Volts
Peak Pulse Power: 200 Watts
TRANSIENT VOLTAGE SUPPRESSOR
Features
SOD-123FL
For surface mounted applications in order to
optimize board space.
Low profile package
Glass passivated junction
0.075(1.90)
0.067(1.70)
0.031 (0.08)
0.043 (1.10)
0.114(2.90)
0.102(2.60)
Low inductance
Plastic package has Underwriters Laboratory
0.043(1.10)
0.035(0.90)
Flammability
0.008(0.20)
0.005(0.12)
0.035(0.90)
0.028(0.70)
0.154(3.90)
0.141(3.60)
Mechanical Data
Dimensions in inches and (millimeters)
Case: JEDEC 6OD-123FL molded plastic body
Terminals: Solderable per MIL-STD-750,Method 2026
Polarity: Polarity symbol marking on body
Mounting Position: Any
Weight : 0.007 ounce, 0.02 grams
Marking : Date Code and Marking Code See Page 2
Maximum Ratings and Electrical characteristics
Ratings at 25 °C ambient temperature unless otherwise specified.
Symbol
Value
Unit
Peak Pulse Power Dissipation on TA=25°C (Note 1,2,5, Fig1)
P PPM
200
W
Peak Forward Surge Current (Note 3)
I FSM
30
A
Peak Pulse Current on 10/1000 us waveform (Note 1) Fig 2
I PPM
see Table 1
A
Steady State Power Dissipation (Note 4)
P M(AV)
1.0
W
Operating Junction and Storage Range
T J,T STG
-55 to +150
°C
RθJA
180
°C/W
Parameter
Typical Thermal Resistance
(UNI)
NOTES
1. Non-repetitive current pulse per Fig 3 and derated above T A=25°C per Fig 2
2. Mounted on 5mm 2 copper pads to each terminal
3. 8.3ms single half sinewave, or equivalent square wave duty cycle=4 pulses per minutes maximum
4. lead temperature at T L=75°C
5. Peak pulse powe. waveform is tp=10/1000us
6. A transient suppressor is selected according to the working peak reverse voltage(V RWM), Which Should be
equal to or greater than the DC or continuous peak operating voltage level
DN:T20519A0
http://www.microdiode.com
Rev:2020A0
Page :1
SMF5.0(C)A THRU SMF440(C)A
Stand-off Voltage - 5.0 to 440 Volts
Peak Pulse Power: 200 Watts
Table 1
Characteristics at Ta = 25°C
Test
Current
Breakdown
Voltage
Type
Marking
V RMW
Reverse
Leakage
Max. Clamp
Voltage
Peak Pulse
Current
I R @ V RWM
V C @ I PP
I PP
V BR @ I T
IT
Min
Max
Uni
Bi
Uni
Bi
V
V
V
mA
μA
V
SMF5.0A
SMF5.0CA
5.0A
5.0CA
5
6.4
7
10
200
9.2
A
21.7
SMF6.0A
SMF6.0CA
6.0A
6.0CA
6
6.67
7.37
10
100
10.3
19.4
SMF6.5A
SMF6.5CA
6.5A
6.5CA
6.5
7.22
7.98
10
75
11.2
17.9
SMF7.0A
SMF7.0CA
7.0A
7.0CA
7
7.78
8.6
10
50
12
16.7
SMF7.5A
SMF7.5CA
7.5A
7.5CA
7.5
8.33
9.21
1
50
12.9
15.5
SMF8.0A
SMF8.0CA
8.0A
8.0CA
8
8.89
9.83
1
25
13.6
14.7
SMF8.5A
SMF8.5CA
8.5A
8.5CA
8.5
9.44
10.4
1
10
14.4
13.9
SMF9.0A
SMF9.0CA
9.0A
9.0CA
9
10
11.1
1
5
15.4
13
SMFl0A
SMFl0CA
l0A
l0CA
10
11.1
12.3
1
2.5
17
11.8
S M F 11 A
S M F 11 C A
11 A
11 CA
11
12.2
13.5
1
2.5
18.2
11
SMF12A
SMF12CA
12A
12CA
12
13.3
14.7
1
2.5
19.9
10.1
SMF13A
SMF13CA
13A
13CA
13
14.4
15.9
1
1
21.5
9.3
SMF14A
SMF14CA
14A
14CA
14
15.6
17.2
1
1
23.2
8.6
SMF15A
SMF15CA
15A
15CA
15
16.7
18.5
1
1
24.4
8.2
SMF16A
SMF16CA
16A
16CA
16
17.8
19.7
1
1
26
7.7
SMF17A
SMF17CA
17A
17CA
17
18.9
20.9
1
1
27.6
7.2
SMF18A
SMF18CA
18A
18CA
18
20
22.1
1
1
29.2
6.8
SMF20A
SMF20CA
20A
20CA
20
22.2
24.5
1
1
32.4
6.2
SMF22A
SMF22CA
22A
22CA
22
24.4
26.9
1
1
35.5
5.6
SMF24A
SMF24CA
24A
24CA
24
26.7
29.5
1
1
38.9
5.1
SMF26A
SMF26CA
26A
26CA
26
28.9
31.9
1
1
42.1
4.8
SMF28A
SMF28CA
28A
28CA
28
31.1
34.4
1
1
45.4
4.4
SMF30A
SMF30CA
30A
30CA
30
33.3
36.8
1
1
48.4
4.1
SMF33A
SMF33CA
33A
33CA
33
36.7
40.6
1
1
53.3
3.8
SMF36A
SMF36CA
36A
36CA
36
40
44.2
1
1
58.1
3.4
SMF40A
SMF40CA
40A
40CA
40
44.4
49.1
1
1
64.5
3.1
SMF43A
SMF43CA
43A
43CA
43
47.8
52.8
1
1
69.4
2.9
SMF45A
SMF45CA
45A
45CA
45
50
55.3
1
1
72.7
2.8
SMF48A
SMF48CA
48A
48CA
48
53.3
58.9
1
1
77.4
2.6
SMF51A
SMF51CA
51A
51CA
51
56.7
62.7
1
1
82.4
2.4
SMF54A
SMF54CA
54A
54CA
54
60
66.3
1
1
87.1
2.3
SMF58A
SMF58CA
58A
58CA
58
64.4
71.2
1
1
93.6
2.1
SMF60A
SMF60CA
60A
60CA
60
66.7
73.7
1
1
96.8
1.8
SMF64A
SMF64CA
64A
64CA
64
71.1
78.6
1
1
103
1.7
SMF70A
SMF70CA
70A
70CA
70
77.8
86
1
1
113
1.5
SMF75A
SMF75CA
75A
75CA
75
83.3
92.1
1
1
121
1.4
SMF78A
SMF78CA
78A
78CA
78
86.7
95.8
1
1
126
1.4
SMF85A
SMF85CA
85A
85CA
85
94.4
104
1
1
137
1.3
SMF90A
SMF90CA
90A
90CA
90
100
111
1
1
146
1.2
SMFl00A
SMFl00CA
l00A
l00CA
100
111
123
1
1
162
1.1
SMF110A
SMF110CA
110A
110CA
110
122
135
1
1
177
1
SMF120A
SMF120CA
120A
120CA
120
133
147
1
1
193
0.9
SMF130A
SMF130CA
130A
130CA
130
144
159
1
1
209
0.8
SMF150A
SMF150CA
150A
150CA
150
167
185
1
1
243
0.7
SMF160A
SMF160CA
160A
160CA
160
178
197
1
1
259
0.7
SMF170A
SMF170CA
170A
170CA
170
189
209
1
1
275
0.6
SMF180A
SMF180CA
180A
180CA
180
201
222
1
1
292
0.5
SMF200A
SMF200CA
200A
200CA
200
224
247
1
1
324
0.5
SMF220A
SMF220CA
220A
220CA
220
246
272
1
1
356
0.5
SMF250A
SMF250CA
250A
250CA
250
279
309
1
1
405
0.5
SMF300A
SMF300CA
300A
300CA
300
335
371
1
1
486
0.45
SMF350A
SMF350CA
350A
350CA
350
391
432
1
1
567
0.4
SMF400A
SMF400CA
400A
400CA
400
447
494
1
1
648
0.35
SMF440A
SMF440CA
440A
440CA
440
492
543
1
1
713
0.3
http://www.microdiode.com
Rev:2020A0
Page :2
SMF5.0(C)A THRU SMF440(C)A
Stand-off Voltage - 5.0 to 440 Volts
Peak Pulse Power: 200 Watts
Typical Characterisitics
Fig.2 Forward Current Derating Curve
100
Non-Repetive Pulse.Wavefom
Shown in Figure.3
T A=25°C
10
1.0
0.1
0.1
1
10
100
1000
10000
PEAK PULSE POWER(PPP)OR CURRENT(Ipp)
DERATINGIN PERCENTAGE%
P PPM ,PEAK PULSE FORWARD ,kW
Fig.1 Peak Pulse Power Rating Curve
100
80
60
40
20
0
25
td,PULSE WIDTH ,us
I ppm ,Peak Pulse Current (%)
100
Peak Value
Pulse Width (td) is Defined
as the Point where the Peak.
Current Decayst to 50% of Ipp
I ppm
80
Half Value-I pp /2
60
10/1000usec Waveform as Defined bye R.E.A.
40
20
0
0
1.0
2.0
3.0
T,TIME,ms
4.0
I FSM ,PEAK FORWARD SURGE CURRENT,
AMPERES
T A =25°C
t f =10usec
75
100
125
150
175
T A ,AMBIENT TEMPERATURE,°C
Fig.4 Maximum Non-Repetitive Peak
Forward Surge Current
Fig.3 Pulse Waveform
120
50
30
25
20
15
10
05
T J =T J max
8.3ms Single Half Sinepwave
JEDEC Method
0
10
1
100
Number of Cycles at 60Hz
The curve above is for reference only.
http://www.microdiode.com
Rev:2020A0
Page :2
SMF5.0(C)A THRU SMF440(C)A
Stand-off Voltage - 5.0 to 440 Volts
Peak Pulse Power: 200 Watts
Packing information
unit:mm
P0
P1
d
Item
Symbol
Tolerance
SOD-123FL
A
B
C
d
D
D1
D2
E
F
P
P0
P1
T
W
W1
0.1
0.1
0.1
0.05
2.0
min
0.5
0.1
0.1
0.1
0.1
0.1
0.1
0.3
1.0
2.1
4.0
1.60
1.55
178.00
50.0
13.00
1.75
3.50
4.00
4.00
2.00
E
F
B
A
Carrier width
Carrier length
Carrier depth
Sprocket hole
7" Reel outside diameter
7" Reel inner diameter
Feed hole diameter
Sprocket hole position
Punch hole position
Punch hole pitch
Sprocket hole pitch
Embossment center
Overall tape thickness
Tape width
Reel width
W
P
D2
T
D1
C
W1
D
0.25
8.15
10.5
Note:Devices are packed in accor dance with EIA standar RS-481-A and specifications listed above.
Reel packing
PACKAGE
REEL SIZE
REEL
(pcs)
COMPONENT
SPACING
(m/m)
BOX
(pcs)
INNER
BOX
(m/m)
REEL
DIA,
(m/m)
CARTON
SIZE
(m/m)
CARTON
(pcs)
SOD-123FL
7"
3,000
4.0
45,000
210*208*203
178
430*430*235
180,000
APPROX.
GROSS WEIGHT
(kg)
9.0
Suggested Pad Layout
Symbol
Unit (mm)
A
1.2
0.047
B
0.047
C
1.2
3.2
0.126
D
2
0.079
E
4.4
0.173
Unit (inch)
Important Notice and Disclaimer
Microdiode Electronics (Jiangsu) reserves the right to make changes to this document and its products and
specifications at any time without notice. Customers should obtain and confirm the latest product information and
specifications before final design,purchase or use.
Microdiode Electronics (Jiangsu) makes no warranty, representation or guarantee regarding the suitability of its
products for any particular purpose, not does Microdiode Electronics (Jiangsu) assume any liability for application
assistance or customer product design. Microdiode Electronics (Jiangsu) does not warrant or accept any liability with
products which are purchased or used for any unintended or unauthorized application.
No license is granted by implication or otherwise under any intellectual property rights of Microdiode
Electronics (Jiangsu).
Microdiode Electronics (Jiangsu) products are not authorized for use as critical components in life support
devices or systems without express written approval of Microdiode Electronics (Jiangsu).
http://www.microdiode.com
Rev:2020A0
Page :3
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