TRANSIL. SMAJ48CA-TR Datasheet

SMAJ48CA-TR TRANSIL. Datasheet pdf. Equivalent

Part SMAJ48CA-TR
Description TRANSIL
Feature SMAJ5.0A-TR,CA-TR ® SMAJ188A-TR,CA-TR TRANSILTM FEATURES PEAK PULSE POWER : 400 W (10/1000µs) STAN.
Manufacture STMicroelectronics
Datasheet
Download SMAJ48CA-TR Datasheet




SMAJ48CA-TR
SMAJ5.0A-TR,CA-TR
® SMAJ188A-TR,CA-TR
TRANSILTM
FEATURES
PEAK PULSE POWER : 400 W (10/1000µs)
STAND OFF VOLTAGE RANGE :
From 5V to 188V.
UNI AND BIDIRECTIONAL TYPES
LOW CLAMPING FACTOR
FAST RESPONSE TIME
JEDEC REGISTERED PACKAGE OUTLINE
DESCRIPTION
The SMAJ series are TRANSILTM diodes designed
specifically for protecting sensitive equipment
against transient overvoltages. The SMA package
allows save spacing on high density printed circuit
boards.
Transil diodes provide high overvoltage protection
by clamping action. Their instantaneous response
to transient overvoltages makes them particularly
suited to protect voltage sensitive devices such
as MOS Technology and low voltage supplied
IC’s.
SMA
(JEDEC D0214 AC)
ABSOLUTE MAXIMUM RATINGS (Tamb = 25°C)
Symbol
Parameter
PPP Peak pulse power dissipation (see note 1) Tj initial = Tamb
P Power dissipation on infinite heatsink
Tamb = 50°C
IFSM Non repetitive surge peak forward
current for unidirectional types
tp = 10ms
Tj initial = Tamb
Tstg Storage temperature range
Tj Maximum junction temperature
TL Maximum lead temperature for soldering during 10 s.
Note 1 : For a surge greater than the maximum values, the diode will fail in short-circuit.
Value
400
3.3
40
- 65 to + 175
150
260
Unit
W
W
A
°C
°C
°C
THERMAL RESISTANCES
Symbol
Rth (j-l)
Rth (j-a)
Parameter
Junction to leads
Junction to ambient on printed circuit on recommended pad
layout
September 1998 Ed: 5A
Value
30
120
Unit
°C/W
°C/W
1/5



SMAJ48CA-TR
SMAJxxxA-TR, CA-TR
ELECTRICAL CHARACTERISTICS (Tamb = 25°C)
Symbol
Parameter
VRM Stand-off voltage
VBR Breakdown voltage
VCL Clamping voltage
IRM Leakage current @ VRM
IPP Peak pulse current
αT Voltage temperature coefficient
VF Forward voltage drop
I
IF
VCL VBR
VRM
VF
I RM
I PP
V
Unidirectional
SMAJ5.0A-TR
SMAJ6.0A-TR
SMAJ6.5A-TR
SMAJ8.5A-TR
SMAJ10A-TR
SMAJ12A-TR
SMAJ13A-TR
SMAJ15A-TR
SMAJ18A-TR
SMAJ20A-TR
SMAJ22A-TR
SMAJ24A-TR
SMAJ26A-TR
SMAJ28A-TR
SMAJ30A-TR
SMAJ33A-TR
SMAJ40A-TR
SMAJ43A-TR
SMAJ48A-TR
SMAJ58A-TR
SMAJ70A-TR
SMAJ85A-TR
SMAJ100A-TR
SMAJ130A-TR
SMAJ154A-TR
SMAJ170A-TR
SMAJ188A-TR
Types
IRM @ VRM
max
Mark. Bidirectional
AE SMAJ5.0CA-TR
DUB SMAJ6.0CA-TR
DUC SMAJ6.5CA-TR
DUH SMAJ8.5CA-TR
AX SMAJ10CA-TR
DUK SMAJ12CA-TR
BG SMAJ13CA-TR
BM SMAJ15CA-TR
DUQ SMAJ18CA-TR
DUR SMAJ20CA-TR
DUS SMAJ22CA-TR
DUT SMAJ24CA-TR
DUU SMAJ26CA-TR
CG SMAJ28CA-TR
CK SMAJ30CA-TR
CM SMAJ33CA-TR
DUZ SMAJ40CA-TR
EUA SMAJ43CA-TR
CX SMAJ48CA-TR
EUF SMAJ58CA-TR
EUI SMAJ70CA-TR
EUL SMAJ85CA-TR
EUN SMAJ100CA-TR
EUQ SMAJ130CA-TR
EUT SMAJ154CA-TR
SR SMAJ170CA-TR
EUV SMAJ188CA-TR
Mark.
AA
DBB
DBC
DBH
AC
DBK
BH
AJ
DBQ
DBR
DBS
DBT
DBU
CH
CL
CN
DBZ
EBA
CY
EBF
EBI
EBL
EBN
EBQ
EBT
SS
EBV
µA
800
800
500
10
5
5
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
V
5.0
6.0
6.5
8.5
10
12
13
15
18
20
22
24
26
28
30
33
40
43
48
58
70
85
100
130
154
170
188
VBR @ IR
min
note2
V mA
6.4 10
6.7 10
7.2 10
9.44 1
11.1 1
13.3 1
14.4 1
16.7 1
20 1
22.2 1
24.4 1
26.7 1
28.9 1
31.1 1
33.3 1
36.7 1
44.4 1
47.8 1
53.3 1
64.4 1
77.8 1
94.4 1
111 1
144 1
171 1
189 1
209 1
VCL @ IPP
max
10/1000µs
VA
9.2 43.5
10.3 38.8
11.2 35.7
14.4 27.7
17 23.5
19.9 20.1
21.5 18.6
24.4 16.4
29.2 13.7
32.4 12.3
35.5 11.2
38.9 10.3
42.1 9.5
45.4 8.8
48.4 8.3
53.3 7.5
64.5 6.2
69.4 5.7
77.4 5.2
93.6 4.3
113 3.5
137 2.9
162 2.5
209 1.9
246 1.6
275 1.4
328 1.4
VCL @ IPP
max
8/20µs
VA
13.4 174
13.7 170
14.5 160
18.6 124
21.7 106
25.3 91
27.2 85
32.5 71
39.3 59
42.8 54
48.3 48
50 46
53.5 43
59 39
64.3 36
69.7 33
84 27
91 25
100 23
121 19
146 16
178 13
212 11
265 9
317 7
353 6.5
388 6
αT C
max typ
note3 note4
10-4/°C pF
5.7 3500
5.9 3300
6.1 3100
7.3 2000
7.8 1550
8.3 1325
8.4 1200
8.8 975
9.2 800
9.4 725
9.6 625
9.6 600
9.7 575
9.8 510
9.9 480
10.0 450
10.1 370
10.2 350
10.3 320
10.4 270
10.5 230
10.6 200
10.7 170
10.8 145
10.8 125
10.8 120
10.8 110
% I PP
100
10 s
PULSE WAVEFORM 10/1000 s
50
Note 2 :Pulse test : tp < 50 ms.
Note 3 :VBR = αT * (Tamb - 25) * VBR(25°C).
Note 4 :VR = 0 V, F = 1 MHz. For bidirectional types,
capacitance value is divided by 2.
0
1000 s
2/5
t







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