1SMC64A [EIC]

SURFACE MOUNT TRANSIENT VOLTAGE SUPPRESSOR; 表面贴装瞬态电压抑制器
1SMC64A
型号: 1SMC64A
厂家: EIC DISCRETE SEMICONDUCTORS    EIC DISCRETE SEMICONDUCTORS
描述:

SURFACE MOUNT TRANSIENT VOLTAGE SUPPRESSOR
表面贴装瞬态电压抑制器

瞬态抑制器 二极管 光电二极管 局域网
文件: 总3页 (文件大小:92K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
SURFACE MOUNT TRANSIENT  
VOLTAGE SUPPRESSOR  
1SMC 5.0 ~ 188A  
Stand-off Voltage : 5.0 to 188V  
Peak Pulse Power : 1500 W  
SMC (DO-214AB)  
±
1.1 0.3  
FEATURES :  
* 1500W surge capability at 1ms  
* Excellent clamping capability  
* Low zener impedance  
* Fast response time : typically less  
then 1.0 ps from 0 volt to VBR(min.)  
* Typical IR less then 1μA above 10V  
* Pb / RoHS Free  
3.0  
5.8  
±
0.2  
0.2  
± 0.07  
±
0.15  
2.3 ± 0.2  
MECHANICAL DATA  
* Case : SMC Molded plastic  
* Epoxy : UL94V-O rate flame retardant  
* Lead : Lead Formed for Surface Mount  
* Polarity : Color band denotes cathode end  
except Bipolar.  
Dimensions in millimeter  
* Mounting position : Any  
* Weight : 0.21 gram  
DEVICES FOR BIPOLAR APPLICATIONS  
For Bi-directional use C or CA Suffix  
Electrical characteristics apply in both directions  
MAXIMUM RATINGS  
Rating at25°C ambient temperature unless otherwise specifie.d  
Rating  
Symbol  
Value  
Unit  
W
Peak Pulse Power Dissipation (1) (2)  
Peak Forward Surge Current per Fig. 5 (2)  
Peak Pulse Current on 10/1000μs waveform (1)  
PPPM  
IFSM  
Minimum 1500  
200  
A
IPPM  
See Next Table  
75  
A
(3)  
RθJA  
°C/W  
°C  
Typical Thermal Resistance , Junction to Ambient  
Operating Junction and Storage Temperature Range  
TJ, TSTG  
- 55 to + 150  
Notes :  
(1) Non-repetitive Current pulse, per Fig. 3 and derated above Ta= 25 °C per Fig. 1  
(2) Mounted on 0.31x 0.31" (8.0 x 8.0mm) copper pads to each terminal.  
(3) Mounted on minimum recommended pad layout  
Page 1 of 3  
Rev. 02 : March 31, 2005  
ELECTRICAL CHARACTERISTICS (Rating at 25°C ambient temperature unless otherwise specified)  
Working Peak  
Reverse  
Maximum  
Reverse  
Leakage  
@ VWM  
ID  
Maximum  
Peak Pulse  
Surge Current  
Maximum  
Clamping  
(1)  
Breakdown Voltage @ T  
Voltage  
Voltage @ IPPM  
Type No.  
VBR (V)  
IT  
VWM  
(V)  
IPPM  
(A)  
VC  
(V)  
Min.  
Max.  
(mA)  
(μA)  
1SMC5.0A  
1SMC6.0A  
1SMC6.5A  
1SMC7.0A  
1SMC7.5A  
1SMC8.0A  
1SMC8.5A  
1SMC9.0A  
1SMC10A  
1SMC11A  
1SMC12A  
1SMC13A  
1SMC14A  
1SMC15A  
1SMC16A  
1SMC17A  
1SMC18A  
1SMC20A  
1SMC22A  
1SMC24A  
1SMC26A  
1SMC28A  
1SMC30A  
1SMC33A  
1SMC36A  
1SMC40A  
1SMC43A  
1SMC45A  
1SMC48A  
1SMC51A  
1SMC54A  
1SMC58A  
1SMC60A  
1SMC64A  
1SMC70A  
1SMC75A  
1SMC78A  
1SMC85A  
1SMC90A  
1SMC100A  
1SMC110A  
1SMC120A  
1SMC130A  
1SMC150A  
1SMC160A  
1SMC170A  
1SMC188A  
Notes :  
6.40  
6.67  
7.22  
7.78  
8.33  
8.89  
9.44  
10.0  
11.1  
12.2  
13.3  
14.4  
15.6  
16.7  
17.8  
18.9  
20.0  
22.2  
24.4  
26.7  
28.9  
31.1  
33.3  
36.7  
40.0  
44.4  
47.8  
50.0  
53.3  
56.7  
60.0  
64.4  
66.7  
71.1  
77.8  
83.3  
86.7  
94.4  
100  
7.07  
7.37  
7.98  
8.6  
10  
10  
5.0  
6.0  
6.5  
7.0  
7.5  
8.0  
8.5  
9.0  
10  
1000  
1000  
500  
200  
100  
50  
163.0  
145.6  
133.9  
125.0  
116.3  
110.3  
104.2  
97.4  
88.2  
82.4  
75.4  
69.8  
64.7  
61.5  
57.7  
54.3  
51.4  
46.3  
42.3  
38.6  
35.6  
33.0  
31.0  
28.1  
25.8  
23.3  
21.6  
20.6  
19.4  
18.2  
17.2  
16.0  
15.5  
14.6  
13.3  
12.4  
11.9  
10.9  
10.3  
9.3  
9.2  
10.3  
11.2  
12.0  
12.9  
13.6  
14.4  
15.4  
17.0  
18.2  
19.9  
21.5  
23.2  
24.4  
26.0  
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  
10  
10  
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  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
1.0  
20  
10  
5.0  
5.0  
5.0  
5.0  
5.0  
5.0  
5.0  
5.0  
5.0  
5.0  
5.0  
5.0  
5.0  
5.0  
5.0  
5.0  
5.0  
5.0  
5.0  
5.0  
5.0  
5.0  
5.0  
5.0  
5.0  
5.0  
5.0  
5.0  
5.0  
5.0  
5.0  
5.0  
5.0  
5.0  
5.0  
5.0  
5.0  
5.0  
5.0  
11  
12  
13  
14  
15  
16  
17  
18  
20  
22  
24  
26  
28  
30  
33  
36  
40  
43  
45  
48  
51  
54  
58  
60  
64  
103  
70  
113  
92.1  
95.8  
104  
75  
121  
78  
126  
85  
137  
111  
90  
146  
111  
123  
100  
110  
120  
130  
150  
160  
170  
188  
162  
122  
135  
8.5  
177  
133  
147  
7.8  
193  
144  
159  
7.2  
209  
167  
185  
6.2  
243  
178  
197  
5.8  
259  
189  
209  
5.50  
4.60  
275  
209  
231  
328  
(1) Pulse test : tp50ms.  
(2) Surge Current Waveform per Figure 5 and Derate per Figure  
(3) For bi-directional types have VWM of 10 Volts and less , the D limit is doubled  
(4) For the bi-directional 1SMC5.0CA, the maximum VBR is 7.25V  
(5) "1SMC" will be omitted in marking on the diode  
Page 2 of 3  
Rev. 02 : March 31, 2005  
RATING AND CHARACTERISTIC CURVES ( 1SMC5.0 - 1SMC188A )  
FIG.1 - PULSE DERATING CURVE  
FIG.2 - TYPICAL JUNCTION CAPACITANCE  
6,000  
1,000  
120  
Measured at  
Stand-off Voltage  
Voltage VWM  
100  
80  
60  
40  
TJ = 25°C  
f = 1.0 MHz  
Vsig = 50 mVP-P  
100  
20  
0
10  
0
25  
50  
75  
100  
125  
150  
175  
100  
400  
1
2
10  
20  
Ta, AMBIENT TEMPERATURE, ( °C)  
VWM, REVERSE STAND-OFF VOLTAGE, (V)  
FIG.4 - PEAK PULSE POWER RATING CURVE  
FIG.3 - PULSE WAVEFORM  
100  
10  
tr = 10μs  
Ta=25 °C  
Pulse Width (td) is defined  
as that point where the peak  
current decays to 50%  
of IPPM  
100  
Peak Value  
IPPM  
Half Value - IPPM  
50  
2
10/1000 μs. Waveform as  
1.0  
0.1  
defined by R.E.A.  
td  
0
0
1.0  
2.0  
3.0  
4.0  
0.1μs  
1.0μs  
10μs  
100μs  
1.0ms  
10ms  
t, TIME(ms)  
td, PULSE WIDTH, SEC  
FIG.5 - MAXIMUM NON-REPETITIVE PEAK FORWARD  
SURGE CURRENT  
400  
100  
TJ = TJ max  
8.3 ms Single half sine-wave  
JEDEC Method  
10  
1
5
10  
50  
100  
NUMBER OF CYCLES AT 60 Hz  
Page 3 of 3  
Rev. 02 : March 31, 2005  

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