SMCJ5637A/TR13 [MICROSEMI]

Trans Voltage Suppressor Diode, 1500W, 12.8V V(RWM), Unidirectional, 1 Element, Silicon, DO-214AB, PLASTIC PACKAGE-2;
SMCJ5637A/TR13
型号: SMCJ5637A/TR13
厂家: Microsemi    Microsemi
描述:

Trans Voltage Suppressor Diode, 1500W, 12.8V V(RWM), Unidirectional, 1 Element, Silicon, DO-214AB, PLASTIC PACKAGE-2

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SMCG5629 thru SMCG5665A, e3  
and SMCJ5629 thru SMCJ5665A, e3  
TRANSIENT VOLTAGE SUPPRESSORS  
S C O T T S D A L E D I V I S I O N  
DESCRIPTION  
APPEARANCE  
These surface mount Transient Voltage Suppressors (TVSs) are used for protecting  
sensitive components requiring low clamping voltage levels. They are rated at high  
current impulses typically generated by inductive switching transients. They are also  
optionally available as RoHS Compliant (annealed matte-Tin finish) with an e3 suffix  
added to the part number. Other benefits are achieved with low-profile surface mount  
J-bend or Gull-wing terminals for stress-relief and lower weight. Its low-flat profile  
provides easier insertion or automatic handling benefits compared to other MELF style  
packages. Options for screening to avionics grade with MA prefix or similar to JAN,  
JANTX, JANTXV, and JANS by using MQ, MX, MV or MSP respectively for part  
number prefixes for screening in accordance with MIL-PRF-19500/500.  
IMPORTANT: For the most current data, consult MICROSEMI’s website: http://www.microsemi.com  
FEATURES  
APPLICATIONS / BENEFITS  
Reliability data per JESD22-A108, JESD22-A104  
JESD22-A113-B, JESD22-A101-B, and JESD22-A102  
Thermally efficient surface mount with J-bends or Gull  
wings termination for stress relief (flat handling surface  
and easier placement)  
Working Standoff Voltages: 5.5 volts to 171 volts  
Metallurgically bonded  
For high reliability transient voltage suppression in  
low profile surface mount locations requiring easy  
placement and strain relief  
Optional 100% screening for avionics grade available by  
adding MA prefix to part number for added 100%  
temperature cycle -55°C to +125°C (10X), surge (3X), 24  
hours HTRB and post test (VBR and ID)  
Light weight for airborne or satellite applications  
Superior surge quality to protect from ESD and EFT  
transients per IEC61000-4-2 and -4-4  
Lightning surge protection per IEC61000-4-5 for  
Class 1 and 2 with source impedance of 42 Ohms as  
well as Class 3 and 4 selectively at lower voltages  
(VWM) and higher surge current (IPP) ratings herein  
Options for screening in accordance with MIL-PRF-  
19500/500 for JAN, JANTX, and JANTXV are available  
by adding MQ, MX, or MV prefixes respectively to part  
numbers. For example, designate a MXSMCJ5629A for  
a JANTX screen.  
Protects sensitive components such as ICs, CMOS,  
Bipolar, BiCMOS, ECL, DTL, T2L, etc.  
RoHS Compliant devices available by adding “e3” suffix  
MAXIMUM RATINGS  
MECHANICAL AND PACKAGING  
Operating temperature: -55°C to +150°C  
Storage temperature: -55°C to +150°C  
Molded epoxy package meets UL94V-0  
Terminals: Tin-Lead or RoHS Compliant annealed  
matte-Tin plating solderable per MIL-STD-750,  
method 2026  
Body marked with P/N without SMCJ or SMCG letters  
(ie. 5629A, 5640, 5655A, 5662, 5665A, etc.)  
Cathode indicated by band  
Weight: 0.25 grams (approximate)  
Tape & Reel packaging per EIA-481  
(2500 units/reel)  
1500 Watts of Peak Pulse Power at 10/1000 µs as shown  
in Figure 3 (see Figure 1 for other tP values)  
Thermal resistance: 20°C/W Junction to Lead  
Impulse repetition rate (duty factor): 0.01%  
5.0 Watt steady-state maximum power at TL =25°C  
t
clamping (0V to V(BR) min): 50 picoseconds max (theoretical)  
Forward voltage VF @ 100 Amps 8.3 ms: 3.5 V max.  
Solder Temperature: 260 °C for 10 s maximum  
ELECTRICAL CHARACTERISTICS @ 25oC  
MICROSEMI  
Part Number  
MICROSEMI  
Part Number  
Breakdown  
Voltage*  
Rated  
Standoff  
Voltage  
Maximum  
Standby  
Current  
Test  
Maximum Peak  
Reverse Voltage  
Maximum Peak  
Pulse Current  
(VBR  
MIN. MAX.  
)
Current  
Modified  
“G”  
Modified  
“J”  
(I(BR)  
mAdc  
10  
)
(VWM  
)
(ID at VWM  
)
(VC max. at IPP  
)
(IPP  
)
Vdc  
Vdc  
7.48  
7.14  
8.25  
7.88  
9.02  
8.61  
10.0  
9.55  
11.0  
10.5  
12.1  
11.6  
V
μAdc  
1000  
1000  
500  
500  
200  
200  
50  
V
A
Bend Lead  
SMCG5629  
SMCG5629A  
SMCG5630  
SMCG5630A  
SMCG5631  
SMCG5631A  
SMCG5632  
SMCG5632A  
SMCG5633  
SMCG5633A  
SMCG5634  
SMCG5634A  
Bend Lead  
SMCJ5629  
SMCJ5629A  
SMCJ5630  
SMCJ5630A  
SMCJ5631  
SMCJ5631A  
SMCJ5632  
SMCJ5632A  
SMCJ5633  
SMCJ5633A  
SMCJ5634  
SMCJ5634A  
6.12  
6.45  
6.75  
7.13  
7.38  
7.79  
8.19  
8.65  
9.00  
9.5  
5.50  
5.80  
6.05  
6.40  
6.63  
7.02  
7.37  
7.78  
8.10  
8.55  
8.92  
9.40  
10.8  
10.5  
11.7  
11.3  
12.5  
12.1  
13.8  
13.4  
15.0  
14.5  
16.2  
15.6  
139  
143  
128  
132  
120  
124  
109  
112  
100  
103  
93  
10  
10  
10  
10  
10  
1
1
1
1
1
50  
10  
10  
5
9.9  
10.5  
1
5
96  
Copyright © 2007  
6-21-2007 REV D  
Microsemi  
Page 1  
Scottsdale Division  
8700 E. Thomas Rd. PO Box 1390, Scottsdale, AZ 85252 USA, (480) 941-6300, Fax: (480) 947-1503  
SMCG5629 thru SMCG5665A, e3  
and SMCJ5629 thru SMCJ5665A, e3  
TRANSIENT VOLTAGE SUPPRESSORS  
S C O T T S D A L E D I V I S I O N  
MICROSEMI  
Part Number  
MICROSEMI  
Part Number  
Breakdown  
Voltage*  
Rated  
Standoff  
Voltage  
Maximum  
Standby  
Current  
Test  
Current  
Maximum Peak  
Reverse Voltage  
Maximum Peak  
Pulse Current  
(VBR  
MIN. MAX.  
Vdc  
)
Modified  
“G”  
Bend Lead  
Modified  
“J”  
(I(BR)  
)
(VWM  
)
(ID at VWM  
)
(VC max. at IPP  
)
(IPP  
)
Vdc  
13.2  
12.6  
14.3  
13.7  
16.5  
15.8  
17.6  
16.8  
19.8  
18.9  
22.0  
21.0  
24.2  
23.1  
26.4  
25.2  
29.7  
28.4  
33.0  
31.5  
36.3  
34.7  
39.6  
37.8  
42.9  
41.0  
47.3  
45.2  
51.7  
49.4  
56.1  
53.6  
61.6  
58.8  
68.2  
65.1  
74.8  
71.4  
82.5  
78.8  
90.2  
86.1  
100.0  
95.5  
110  
mAdc  
V
9.72  
10.2  
10.5  
11.1  
12.1  
12.8  
12.9  
13.6  
14.5  
15.3  
16.2  
17.1  
17.8  
18.8  
19.4  
20.5  
21.8  
23.1  
24.3  
25.6  
26.8  
28.2  
29.1  
30.8  
31.6  
33.3  
34.8  
36.8  
38.1  
40.2  
41.3  
43.6  
45.4  
47.8  
50.2  
53.0  
55.1  
58.1  
60.7  
64.1  
66.4  
70.1  
73.7  
77.8  
81.0  
85.5  
89.2  
94.0  
97.2  
μAdc  
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
5
V
A
Bend Lead  
SMCJ5635  
SMCJ5635A  
SMCJ5636  
SMCJ5636A  
SMCJ5637  
SMCJ5637A  
SMCJ5638  
SMCJ5638A  
SMCJ5639  
SMCJ5639A  
SMCJ5640  
SMCJ5640A  
SMCJ5641  
SMCJ5641A  
SMCJ5642  
SMCJ5642A  
SMCJ5643  
SMCJ5643A  
SMCJ5644  
SMCJ5644A  
SMCJ5645  
SMCJ5645A  
SMCJ5646  
SMCJ5646A  
SMCJ5647  
SMCJ5647A  
SMCJ5648  
SMCJ5648A  
SMCJ5649  
SMCJ5649A  
SMCJ5650  
SMCJ5650A  
SMCJ5651  
SMCJ5651A  
SMCJ5652  
SMCJ5652A  
SMCJ5653  
SMCJ5653A  
SMCJ5654  
SMCJ5654A  
SMCJ5655  
SMCJ5655A  
SMCJ5656  
SMCJ5656A  
SMCJ5657  
SMCJ5657A  
SMCJ5658  
SMCJ5658A  
SMCJ5659  
SMCJ5659A  
SMCJ5660  
SMCJ5660A  
SMCJ5661  
SMCJ5661A  
SMCJ5662  
SMCJ5662A  
SMCJ5663  
SMCJ5663A  
SMCJ5664  
SMCJ5664A  
SMCJ5665  
SMCJ5665A  
SMCG5635  
SMCG5635A  
SMCG5636  
SMCG5636A  
SMCG5637  
SMCG5637A  
SMCG5638  
SMCG5638A  
SMCG5639  
SMCG5639A  
SMCG5640  
SMCG5640A  
SMCG5641  
SMCG5641A  
SMCG5642  
SMCG5642A  
SMCG5643  
SMCG5643A  
SMCG5644  
SMCG5644A  
SMCG5645  
SMCG5645A  
SMCG5646  
SMCG5646A  
SMCG5647  
SMCG5647A  
SMCG5648  
SMCG5648A  
SMCG5649  
SMCG5649A  
SMCG5650  
SMCG5650A  
SMCG5651  
SMCG5651A  
SMCG5652  
SMCG5652A  
SMCG5653  
SMCG5653A  
SMCG5654  
SMCG5654A  
SMCG5655  
SMCG5655A  
SMCG5656  
SMCG5656A  
SMCG5657  
SMCG5657A  
SMCG5658  
SMCG5658A  
SMCG5659  
SMCG5659A  
SMCG5660  
SMCG5660A  
SMCG5661  
SMCG5661A  
SMCG5662  
SMCG5662A  
SMCG5663  
SMCG5663A  
SMCG5664  
SMCG5664A  
SMCG5665  
SMCG5665A  
10.8  
11.4  
11.7  
12.4  
13.5  
14.3  
14.4  
15.2  
16.2  
17.1  
18.0  
19.0  
19.8  
20.9  
21.6  
22.8  
24.3  
25.7  
27.0  
28.5  
29.7  
31.4  
32.4  
34.2  
35.1  
37.1  
38.7  
40.9  
42.3  
44.7  
45.9  
48.5  
50.4  
53.2  
55.8  
58.9  
61.2  
64.6  
67.5  
71.3  
73.8  
77.9  
81.9  
86.5  
90  
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
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
17.3  
16.7  
19.0  
18.2  
22.0  
21.2  
23.5  
22.5  
26.5  
25.2  
29.1  
27.7  
31.9  
30.6  
34.7  
33.2  
39.1  
37.5  
43.5  
41.4  
47.7  
45.7  
52.0  
49.9  
56.4  
53.9  
61.9  
59.3  
67.8  
64.8  
73.5  
70.1  
80.5  
77.0  
89.0  
85.0  
98.0  
92.0  
108  
103  
118  
113  
131  
125  
144  
137  
158  
152  
173  
165  
187  
179  
215  
207  
230  
219  
244  
234  
258  
246  
287  
274  
87  
90  
79  
82  
68  
71  
64  
67  
56.5  
59.5  
51.5  
54  
47  
49  
43  
45  
38.5  
40  
34.5  
36  
31.5  
33  
29  
30  
26.5  
28  
24  
25.3  
22.2  
23.2  
20.4  
21.4  
18.6  
19.5  
16.9  
17.7  
15.3  
16.3  
13.9  
14.6  
12.7  
13.3  
11.4  
12.0  
10.4  
11.0  
9.5  
9.9  
8.7  
9.1  
8.0  
8.4  
7.0  
7.2  
6.5  
6.8  
6.2  
6.4  
5.8  
6.1  
5.2  
5.5  
95  
99  
105  
108  
114  
117  
124  
135  
143  
144  
152  
153  
162  
162  
171  
180  
105  
121  
116  
132  
126  
143  
137  
165  
158  
176  
168  
187  
179  
198  
189  
220  
102  
105  
111  
121  
128  
130  
136  
138  
145  
146  
154  
162  
171  
190  
210  
NOTE 1: A TVS is normally selected according to the rated “Stand Off Voltage” VWM which should be equal to or greater than the dc or continuous peak  
operating voltage level.  
* V(BR) is measured after I(BR) has been applied for < 300 ms. No suffix is 10% tolerance and suffix A is 5% tolerance for V(BR)  
.
Copyright © 2007  
6-21-2007 REV D  
Microsemi  
Scottsdale Division  
Page 2  
8700 E. Thomas Rd. PO Box 1390, Scottsdale, AZ 85252 USA, (480) 941-6300, Fax: (480) 947-1503  
SMCG5629 thru SMCG5665A, e3  
and SMCJ5629 thru SMCJ5665A, e3  
TRANSIENT VOLTAGE SUPPRESSORS  
S C O T T S D A L E D I V I S I O N  
OUTLINE AND CIRCUIT  
Measured at  
zero voltage  
Exponential wave-  
form (See FIG. 2)  
Square-wave pulse  
Measured at  
Stand-off Voltage  
Pulse Time (tp)  
FIGURE 1 Non-repetitive peak pulse power rating curve.  
Note: Peak power defined as peak voltage times peak current.  
BV: Breakdown Voltage in Volts  
FIGURE 5 TYPICAL CAPACITANCE vs. BREAKDOWN VOLTAGE  
Peak Value  
IPP  
Pulse time duration (tp) is  
defined as that point where  
IP decays to 50% of I  
(surge).  
T
L – Lead Temperature o  
C
FIGURE 4  
Steady-state power  
derating curve  
Time (t) in milliseconds  
FIGURE 2  
Pulse wave form for exponential surge  
TA Ambient Temperature o  
C
FIGURE 3 Derating curve  
PACKAGE DIMENSIONS  
DIMENSIONS IN INCHES  
A
B
C
D
E
F
K
L
MIN  
MAX .121  
.115  
.260  
.280  
.220  
.245  
.305  
.320  
.077  
.104  
.380  
.400  
.025  
.040  
.30  
.060  
DIMENSIONS IN MILLIMETERS  
MIN 2.92  
MAX 3.07  
6.60  
7.11  
5.59  
6.22  
7.75  
8.13  
1.95  
9.65  
0.635 0.760  
2.65 10.16 1.016 1.520  
DO-214AB  
Copyright © 2007  
DO-215AB  
Microsemi  
Page 3  
6-21-2007 REV D  
Scottsdale Division  
8700 E. Thomas Rd. PO Box 1390, Scottsdale, AZ 85252 USA, (480) 941-6300, Fax: (480) 947-1503  

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