SMDJ100CAG

更新时间:2024-10-29 23:14:02
品牌:SHIKUES
描述:The SMDJ series is designed specifically to protect

SMDJ100CAG 概述

The SMDJ series is designed specifically to protect

SMDJ100CAG 数据手册

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SMDJ5.0AG THRU SMDJ170AG  
SMDJ5.0CAG THRU SMDJ170CAG  
The SMDJ series is designed specifically to protect  
sensitive electronic equipment from voltage transients  
induced by lightning and other transient voltage events.  
2
Unipolar  
Bipolar  
MECHANICAL DATA  
• Case: SMC  
1
• Terminals: Solderable per MIL-STD-750, Method 2026  
• Approx. Weight: 0.22g / 0.0077oz  
Simplified outline SMC and symbol  
FEATURES  
Halogen-Free  
RoHS compliant  
Fast response time:typically less  
than l.Ops from OV to BV min  
Excellent clamping capability  
Low incremental surge resistance  
Typical IR less than 2UA above 12V  
High Temperature soldering  
guaranteed: 260℃/40 seconds  
at terminals  
For surface mounted applications  
in order to optimize board space  
Low profile package  
Built-in strain relief  
Typical maximum temperature coefficient  
ΔVBR = 0.1% × VBR@25℃ × ΔT  
Glass passivated chip junction  
3000W peak pulse power capability  
at lOxlOOOUs waveform, repetition  
rate {duty cycles):0.01 %  
Plastic package has Underwriters  
Laboratory Flammability 94V-O  
Matte Tin Lead-free Plated  
Maximum Ratings and Thermal Characteristics (TA=25unless otherwise noted)  
Symbol  
PPPM  
Parameter  
Value  
3000  
Unit  
W
Peak Pulse Power Dissipation at TA=25°C by 10x1000 us waveform  
(Fig.l)(Note l), (Note 2)  
Power Dissipation on infinite heat sink at TA=50℃  
PM(AV)  
6.5  
W
Peak Forward Surge Current, 8.3ms Single Half Sine Wave (Note 3)  
IFSM  
VF  
300  
3.5  
A
V
Maximum Instantaneous Forward  
Voltage at 100A for Unidirectional only  
Operating Junction and Storage Temperature Range  
Tj TSTG  
-65 to 150  
15  
Typical Thermal Resistance Junction to Lead  
Typical Thermal Resistance Junction to Ambient  
RUJL  
RUJA  
/W  
/W  
75  
Notes:  
1. Non-repetitive current pulse . per Fig 3 and derated above Ta = 25per Fig. 2  
2. Mounted on copper pad area of 0.31x0.31" (8.0 x 8.0mm) to each terminal  
3. Measured on 8.3ms single half sine wave or eguivalent square wave for unidirectional  
device onlyduty cycle=4 per minute maximum  
REV.08  
1 of 4  
SMDJ5.0AG THRU SMDJ170AG  
SMDJ5.0CAG THRU SMDJ170CAG  
Characteristics at Ta = 25°C  
Table 1  
Package  
Breakdown  
Voltage  
Max.Clamp  
Voltage  
Max. Peak  
Test  
Max. Reverse  
Leakage  
Reverse  
Stand-off  
Voltage  
Pulse Current  
Current  
SMC  
VBR @ IT  
IT  
V
C @ IPP  
V
IPP  
A
IR@VR  
uA  
Device Marking Ccode  
Type  
VRMW  
V
Min  
Max  
V
V
mA  
UNI  
BI  
UNI  
BI  
SMDJ5.0AG  
SMDJ6.0AG  
SMDJ6.5AG  
SMDJ7.0AG  
SMDJ7.5AG  
5.0  
6.0  
6.4  
6.67  
7.22  
7.78  
8.33  
8.89  
9.44  
10  
7
800  
800  
500  
200  
100  
50  
20  
10  
5
DDE  
DDG  
DDK  
DDM  
DDP  
DDR  
DDT  
DDV  
DDX  
DDZ  
DEE  
DEG  
DEK  
DEM  
DEP  
DER  
DET  
DEV  
DEX  
DEZ  
DFE  
DFG  
DFK  
DFM  
DFP  
DFR  
DFT  
DFV  
DFX  
DFZ  
DGE  
DGG  
DGK  
DGM  
DGP  
DGR  
DGT  
DGV  
DGX  
DGZ  
DHE  
DHG  
DHK  
DHM  
DHP  
DHR  
SMDJ5.0CAG  
SMDJ6.0CAG  
SMDJ6.5CAG  
SMDJ7.0CAG  
SMDJ7.5CAG  
10  
10  
10  
10  
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
9.2  
10.3  
11.2  
12  
326.1  
291.3  
267.9  
250  
RDE  
RDG  
RDK  
PDM  
PDP  
PDR  
PDT  
PDV  
PDX  
PDZ  
PEE  
PEG  
PEK  
PEM  
PEP  
PER  
PET  
PEV  
PEX  
PEZ  
PFE  
PFG  
PFK  
PFM  
PFP  
PFR  
PFT  
PFV  
PFX  
PFZ  
RGE  
PGG  
PGK  
PGM  
PGP  
PGR  
PGT  
PGV  
PGX  
PGZ  
PHE  
PHG  
PHK  
PHM  
PHP  
PHR  
7.37  
7.98  
8.6  
6.5  
7.0  
7.5  
9.21  
9.83  
10.4  
11.1  
12.3  
13.5  
14.7  
15.9  
17.2  
18.5  
19.7  
20.9  
22.1  
24.5  
26.9  
29.5  
31.9  
34.4  
36.8  
40.6  
44.2  
49.1  
52.8  
55.3  
58.9  
62.7  
66.3  
71.2  
73.7  
78.6  
86  
12.9  
13.6  
14.4  
15.4  
17  
232.6  
220.6  
208.3  
194.8  
176.5  
164.8  
150.8  
139.5  
129.3  
123  
SMDJ8.0AG SMDJ8.0CAG  
SMDJ8.5AG SMDJ8.5CAG  
SMDJ9.0AG SMDJ9.0CAG  
SMDJ10AG SMDJ10CAG  
SMDJ11AG SMDJ11CAG  
SMDJ12AG SMDJ12CAG  
SMDJ13AG SMDJ13CAG  
SMDJ14AG SMDJ14CAG  
SMDJ15AG SMDJ15CAG  
SMDJ16AG SMDJ16CAG  
SMDJ17AG SMDJ17CAG  
SMDJ18AG SMDJ18CAG  
SMDJ20AG SMDJ20CAG  
SMDJ22AG SMDJ22CAG  
SMDJ24AG SMDJ24CAG  
SMDJ26AG SMDJ26CAG  
SMDJ28AG SMDJ28CAG  
SMDJ30AG SMDJ30CAG  
SMDJ33AG SMDJ33CAG  
SMDJ36AG SMDJ36CAG  
SMDJ40AG SMDJ40CAG  
SMDJ43AG SMDJ43CAG  
SMDJ45AG SMDJ45CAG  
SMDJ48AG SMDJ48CAG  
SMDJ51AG SMDJ51CAG  
SMDJ54AG SMDJ54CAG  
SMDJ58AG SMDJ58CAG  
SMDJ60AG SMDJ60CAG  
SMDJ64AG SMDJ64CAG  
SMDJ70AG SMDJ70CAG  
SMDJ75AG SMDJ75CAG  
SMDJ78AG SMDJ78CAG  
SMDJ85AG SMDJ85CAG  
SMDJ90AG SMDJ90CAG  
SMDJ100AG SMDJ100CAG  
SMDJ110AG SMDJ110CAG  
SMDJ120AG SMDJ120CAG  
SMDJ130AG SMDJ130CAG  
SMDJ150AG SMDJ150CAG  
SMDJ160AG SMDJ160CAG  
SMDJ170AG SMDJ170CAG  
8.0  
8.5  
9.0  
10.0  
11.0  
12.0  
13.0  
14.0  
15.0  
16.0  
17.0  
18.0  
20.0  
22.0  
24.0  
26.0  
28.0  
30.0  
33.0  
36.0  
40.0  
43.0  
45.0  
48.0  
51.0  
54.0  
58.0  
60.0  
64.0  
70.0  
75.0  
78.0  
85.0  
90.0  
100.0  
110.0  
120.0  
130.0  
150.0  
160.0  
170.0  
11.1  
12.2  
13.3  
14.4  
15.6  
16.7  
17.8  
18.9  
20  
2
18.2  
19.9  
21.5  
23.2  
24.4  
26  
2
2
2
2
115.4  
108.7  
102.7  
92.6  
84.5  
77.1  
71.3  
66.1  
62  
2
27.6  
29.2  
32.4  
35.5  
38.9  
42.1  
45.4  
48.4  
53.3  
58.1  
64.5  
69.4  
72.7  
77.4  
82.4  
87.1  
93.6  
96.8  
103  
113  
2
2
22.2  
24.4  
26.7  
28.9  
31.1  
33.3  
36.7  
40  
2
2
2
2
2
2
56.3  
51.6  
46.5  
43.2  
41.3  
38.8  
36.4  
34.4  
32.1  
31  
2
2
44.4  
47.8  
50  
2
2
2
53.3  
56.7  
60  
2
2
2
64.4  
66.7  
71.1  
77.8  
83.3  
86.7  
94.4  
100  
111  
2
2
29.1  
26.5  
24.8  
23.8  
21.9  
20.5  
18.5  
16.9  
15.5  
14.4  
12.3  
11.6  
2
2
92.1  
95.8  
104  
121  
126  
137  
146  
162  
177  
193  
209  
243  
259  
275  
2
2
2
111  
2
123  
2
122  
133  
144  
167  
178  
189  
135  
2
147  
2
159  
2
185  
2
197  
2
209  
10.9  
2
REV.08  
2 of 4  
SMDJ5.0AG THRU SMDJ170AG  
SMDJ5.0CAG THRU SMDJ170CAG  
Fig.1 Peak Pulse Power Rating Curve  
Fig.2 Forward Current Derating Curve  
1000  
100  
10  
Non-Repetive Pulse.Wavefom  
Shown in Figure.3  
TA=25°C  
100  
80  
60  
40  
20  
0
0.31x0.31" (80 x 80mm)  
Copper pad Area  
1.0  
25  
50  
75  
100  
125  
150  
175  
0.1  
1
10  
100  
1000  
10000  
td,PULSE WIDTH ,us  
TA,AMBIENT TEMPERATURE,°C  
Fig.3 Pulse Waveform  
Fig.4 Typical Junction Capacitance  
120  
100000  
10000  
1000  
TA=25°C  
Pulse Width (td) is Defined  
as the Point where the Peak.  
tf=10usec  
Current Decayst to 50% of Ipp  
Peak Value Ippm  
100  
80  
60  
40  
20  
0
Bi-directional V= 0V  
Uni-directional V=0V  
Half Value-Ipp/2  
Uni-directional @ VR  
100  
10  
1
10/1000usec Waveform as Defined bye R.E.A.  
Bi-directional @ VR  
1
10  
100  
1000  
0
1.0  
2.0  
3.0  
4.0  
T,TIME,ms  
VBR - Reverse Breakdown Voltage (V)  
Fig.6 Maximum Non-Repetitive Peak  
Forward Surge Current  
Fig.5 Steady State Power Derating Curve  
360  
300  
6
5
4
3
2
1
0
240  
180  
120  
60  
TJ=TJmax  
8.3ms Single Half Sinepwave  
JEDEC Method  
0
1
10  
100  
50 75 100 125 150 175  
25  
TA - Ambient Temperature(ºC)  
Number of Cycles at 60Hz  
REV.08  
3 of 4  
SMDJ5.0AG THRU SMDJ170AG  
SMDJ5.0CAG THRU SMDJ170CAG  
PACKAGE OUTLINE  
Plastic surface mounted package; 2 leads  
SMC  
E
A
L
V
M
A
E1  
SMC mechanical data  
E1  
A1  
L
b
C
UNIT  
mm  
A
E
D
max  
min  
max  
min  
2.62  
2.00  
103  
79  
7.1  
6.6  
280  
260  
6.2  
5.6  
8.1  
7.8  
0.21  
0.05  
8.3  
0.31  
0.15  
12  
1.7  
1.0  
59  
3.25  
2.75  
128  
108  
244  
220  
319  
307  
mil  
2.0  
5.9  
32  
The recommended mounting pad size  
4.1  
4.1  
3.8  
(160)  
(160)  
(150)  
mm  
(mil)  
Unit :  
REV.08  
4 of 4  

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