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SMAJ13CA-13-F

Part # SMAJ13CA-13-F
Description PROTECTION TVS BIDIRECTIONALSMA 400W 13V ROHS 5K - Tape a
Category Microcircuit
Availability In Stock
Qty 20
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1 + $0.05716
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Diodes Inc.
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Technical Document


DISCLAIMER: The information provided herein is solely for informational purposes. Customers must be aware of the suitability of this product for their application, and consider that variable factors such as Manufacturer, Product Category, Date Codes, Pictures and Descriptions may differ from available inventory.

DS19005 Rev. 13 - 2 1 of 4 SMAJ5.0(C)A - SMAJ170(C)A
www.diodes.com
ã Diodes Incorporated
SMAJ5.0(C)A - SMAJ170(C)A
400W SURFACE MOUNT TRANSIENT VOLTAGE
SUPPRESSOR
A
B
C
D
G
H
E
J
SMA
Dim Min Max
A
2.29 2.92
B
4.00 4.60
C
1.27 1.63
D
0.15 0.31
E
4.80 5.59
G
0.10 0.20
H
0.76 1.52
J
2.01 2.30
All Dimensions in mm
Features
Maximum Ratings
@ T
A
= 25°C unless otherwise specified
Characteristic Symbol Value Unit
Peak Pulse Power Dissipation
(Non repetitive current pulse derated above T
A
=25°C) (Note 1)
P
PK
400 W
Peak Forward Surge Current, 8.3ms Single Half Sine Wave
Superimposed on Rated Load (JEDEC Method) (Notes 1, 2, & 3)
I
FSM
40 A
Steady State Power Dissipation @ T
L
= 75°C
PM
(AV)
1.0 W
Instantaneous Forward Voltage @ I
PP
= 35A
(Notes 1, 2, & 3)
V
F
3.5 V
Operating Temperature Range
T
j
-55 to +150 °C
Storage Temperature Range
T
STG
-55 to +175 °C
·
400W Peak Pulse Power Dissipation
·
Glass Passivated Die Construction
·
Uni- and Bi-Directional Versions Available
·
Excellent Clamping Capability
·
Fast Response Time
·
Lead Free Finish/RoHS Compliant (Note 4)
Mechanical Data
·
Case: SMA
·
Case Material: Molded Plastic. UL Flammability
Classification Rating 94V-0
·
Moisture Sensitivity: Level 1 per J-STD-020C
·
Terminals: Lead Free Plating (Matte Tin Finish).
Solderable per MIL-STD-202, Method 208
·
Polarity Indicator: Cathode Band (Note: Bi-directional
devices have no polarity indicator.)
·
Marking: Date Code and Marking Code See Page 4
·
Weight: 0.064 grams (approximate)
Notes: 1. Valid provided that terminals are kept at ambient temperature.
2. Measured with 8.3ms single half sine-wave. Duty cycle = 4 pulses per minute maximum.
3. Unidirectional units only.
4. RoHS revision 13.2.2003. Glass and High Temperature Solder Exemptions Applied, see
EU Directive Annex Notes 5 and 7.
DS19005 Rev. 13 - 2 2 of 4 SMAJ5.0(C)A - SMAJ170(C)A
www.diodes.com
Part Number
Add C For
Bi-Directional
(Note 5)
Reverse
Standoff
Voltage
Breakdown
Voltage
V
BR
@ I
T
(Note 6)
Test
Current
Max. Reverse
Leakage @
V
RWM
(Note 7)
Max. Clamping
Voltage @ I
pp
Max. Peak Pulse
Current
I
pp
Marking Code
V
RWM
(V)
Min (V) Max (V)
I
T
(mA)
I
R
(mA)
V
C
(V)
(A) BI- UNI-
SMAJ5.0(C)A
5.0 6.40 7.25 10 800 9.2 43.5 TE HE
SMAJ6.0(C)A
6.0 6.67 7.37 10 800 10.3 38.8 TG HG
SMAJ6.5(C)A
6.5 7.22 7.98 10 500 11.2 35.7 TK HK
SMAJ7.0(C)A
7.0 7.78 8.60 10 200 12.0 33.3 TM HM
SMAJ7.5(C)A
7.5 8.33 9.21 1.0 100 12.9 31.0 TP HP
SMAJ8.0(C)A
8.0 8.89 9.83 1.0 50 13.6 29.4 TR HR
SMAJ8.5(C)A
8.5 9.44 10.4 1.0 10 14.4 27.7 TT HT
SMAJ9.0(C)A
9.0 10.0 11.1 1.0 5.0 15.4 26.0 TV HV
SMAJ10(C)A
10 11.1 12.3 1.0 5.0 17.0 23.5 TX HX
SMAJ11(C)A
11 12.2 13.5 1.0 5.0 18.2 22.0 TZ HZ
SMAJ12(C)A
12 13.3 14.7 1.0 5.0 19.9 20.1 UE IE
SMAJ13(C)A
13 14.4 15.9 1.0 5.0 21.5 18.6 UG IG
SMAJ14(C)A
14 15.6 17.2 1.0 5.0 23.2 17.2 UK IK
SMAJ15(C)A
15 16.7 18.5 1.0 5.0 24.4 16.4 UM IM
SMAJ16(C)A
16 17.8 19.7 1.0 5.0 26.0 15.3 UP IP
SMAJ17(C)A
17 18.9 20.9 1.0 5.0 27.6 14.5 UR IR
SMAJ18(C)A
18 20.0 22.1 1.0 5.0 29.2 13.7 UT IT
SMAJ20(C)A
20 22.2 24.5 1.0 5.0 32.4 12.3 UV IV
SMAJ22(C)A
22 24.4 26.9 1.0 5.0 35.5 11.2 UX IX
SMAJ24(C)A
24 26.7 29.5 1.0 5.0 38.9 10.3 UZ IZ
SMAJ26(C)A
26 28.9 31.9 1.0 5.0 42.1 9.5 VE JE
SMAJ28(C)A
28 31.1 34.4 1.0 5.0 45.4 8.8 VG JG
SMAJ30(C)A
30 33.3 36.8 1.0 5.0 48.4 8.3 VK JK
SMAJ33(C)A
33 36.7 40.6 1.0 5.0 53.3 7.5 VM JM
SMAJ36(C)A
36 40.0 44.2 1.0 5.0 58.1 6.9 VP JP
SMAJ40(C)A
40 44.4 49.1 1.0 5.0 64.5 6.2 VR JR
SMAJ43(C)A
43 47.8 52.8 1.0 5.0 69.4 5.7 VT JT
SMAJ45(C)A
45 50.0 55.3 1.0 5.0 72.7 5.5 VV JV
SMAJ48(C)A
48 53.3 58.9 1.0 5.0 77.4 5.2 VX JX
SMAJ51(C)A
51 56.7 62.7 1.0 5.0 82.4 4.9 VZ JZ
SMAJ54(C)A
54 60.0 66.3 1.0 5.0 87.1 4.6 WE RE
SMAJ58(C)A
58 64.4 71.2 1.0 5.0 93.6 4.3 WG RG
SMAJ60(C)A
60 66.7 73.7 1.0 5.0 96.8 4.1 WK RK
SMAJ64(C)A
64 71.1 78.6 1.0 5.0 103 3.9 WM RM
SMAJ70(C)A
70 77.8 86.0 1.0 5.0 113 3.5 WP RP
SMAJ75(C)A
75 83.3 92.1 1.0 5.0 121 3.3 WR RR
SMAJ78(C)A
78 86.7 95.8 1.0 5.0 126 2.2 WT RT
SMAJ85(C)A
85 94.4 104 1.0 5.0 137 2.9 WV RV
SMAJ90(C)A
90 100 111 1.0 5.0 146 2.7 WX RX
SMAJ100(C)A
100 111 123 1.0 5.0 162 2.5 WZ RZ
SMAJ110(C)A
110 122 135 1.0 5.0 177 2.3 XE SE
SMAJ120(C)A
120 133 147 1.0 5.0 193 2.0 XG SG
SMAJ130(C)A
130 144 159 1.0 5.0 209 1.9 XK SK
SMAJ150(C)A
150 167 185 1.0 5.0 243 1.6 XM SM
SMAJ160(C)A
160 178 197 1.0 5.0 259 1.5 XP SP
SMAJ170(C)A
170 189 209 1.0 5.0 275 1.4 XR SR
Notes: 5. Suffix C denotes Bi-directional device.
6. V
BR
measured with I
T
current pulse = 300ms
7. For Bi-Directional devices having V
RWM
of 10V and under, the I
R
is doubled.
DS19005 Rev. 13 - 2 3 of 4 SMAJ5.0(C)A - SMAJ170(C)A
www.diodes.com
10
100
1000
10000
1 10 100 1000
C , JUNCTION CAPACITANCE (pF)
T
V , STANDOFF VOLTAGE (V)
Fi
g
.2 T
y
pical Total Capacitance
WM
T=25C
j
°
Unidirectional
Bidirectional
10 X 1000 Waveform
as defined by REA
0 25 50 75 100 125 150 175 200
100
75
50
25
0
T , AMBIENT TEMPERATURE ( C)
Fi
g
. 1 Pulse Deratin
g
Curve
A
°
PEAK PULSE DERATING IN % OF
PEAK POWER OR CURRENT
012
3
100
50
0
I , PEAK PULSE CURRENT (%I )
Ppp
Peak Value I
pp
Half Value I /2
pp
10 X 1000 Waveform
as defined by R.E.A.
t
p
t, TIME (ms)
Fi
g
. 4 Pulse Waveform
0.1 1.0
0.1
10 100
1.0
10
1000 10000
T=25C
j
°
P , PEAK PULSE POWER (kW)
d
100
Non Repetitive
Pulse Waveform
ShowninFig.4
0.0
0.2
0.4
0.6
025
50
75 100 125
150
175
200
PM STEADY STATE POWER DISSIPATION (W
)
(AV),
T , LEAD TEMPERATURE ( C)
Fi
g
. 6 Stead
y
State Power Deratin
g
Curve
L
°
0.8
1.0
60Hz Resistive or
Inductive Load
0
60
50
40
30
20
10
2
5
10
PEAK FORWARD SURGE CURRENT, (A)
NUMBER OF CYCLES AT 60Hz
Fi
g
. 5 Maximum Non-Repetitive Sur
g
e Current
20
50
1001
Pulse Width 8.3ms
Single Half-Sine-Wave
(JEDEC METHOD)
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