1.5SCMJ160APT [CHENMKO]

GLASS PASSIVATED JUNCTION TRANSIENT VOLTAGE SUPPRESSOR; 玻璃钝化结瞬态电压抑制器
1.5SCMJ160APT
型号: 1.5SCMJ160APT
厂家: CHENMKO ENTERPRISE CO. LTD.    CHENMKO ENTERPRISE CO. LTD.
描述:

GLASS PASSIVATED JUNCTION TRANSIENT VOLTAGE SUPPRESSOR
玻璃钝化结瞬态电压抑制器

文件: 总4页 (文件大小:110K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
CHENMKO ENTERPRISE CO.,LTD  
1.5SCMJ  
SERIES  
GLASS PASSIVATED JUNCTION TRANSIENT VOLTAGE SUPPRESSOR  
VOLTAGE-6.8 TO 200 VOLTS  
1500 WATTS PEAK POWER 6.5 WATTS STEADY STATE  
FEATURES  
* Plastic package  
* 1500W surge capability at 1ms  
* Glass passivated chip junction in SMC Package  
* Excellent clamping capability  
* Low Zener lmpedance  
* Fast response time: typically less than 1.0ps  
from 0 volts to BV min.  
SMC  
* Typical IR less than 1 uA above 10V  
* High temperature soldering guaranteed :  
260oC/10 seconds at terminals  
0.125(3.17)  
0.115(2.92)  
0.245(6.22)  
0.220(5.59)  
(1)  
(2)  
MECHANICAL DATA  
Case: JEDEC SMC molded plastic  
Terminals: Plated axial leads, solderable per MIL-STD-750,  
Method 2026  
0.280(7.11)  
0.260(6.60)  
0.012(0.305)  
0.006(0.152)  
Polarity: Color band denotes cathode end  
Mounting Position: Any  
Weight: 0.007 ounce 0.25 gram  
0.103(2.62)  
0.079(2.06)  
0.008(0.203)(max)  
0.060(1.52)  
0.030(0.76)  
0.320(8.13)  
0.305(7.75)  
MAXIMUM RATINGS AND ELECTRICAL CHARACTERISTICS  
Ratings at 25oC ambient temperature unless otherwise specified.  
Single phase, half wave, 60 HZ, resistive or inductive load.  
For capacitive load, derate current by 20%.  
Dimensions in inches and (millimeters)  
SMC  
DEVICES FOR BIDIRECTIONAL APPLICATIONS  
For Bidirectional use C or CA Suffix for types 1.5SCMJ6.8A thru types 1.5SCMJ200A  
Electrical characteristics apply in both directions.  
MAXIMUM RATINGES ( At TA = 25oC unless otherwise noted )  
RATINGS  
SYMBOL  
PPK  
VALUE  
UNITS  
Watts  
Peak Power Dissipation at TA = 25oC, Tp = 1ms ( Note1 )  
Minimum 1500  
Steady State Power Dissipation at TL = 75oC  
PD  
IFSM  
6.5  
200  
Watts  
Amps  
Peak Forward Surge Current 8.3ms Single Half  
Sine-Wave Superimposed on Rated Load ( Note 2 )  
oC  
Operating and Storage Temperature Range  
TJ, TSTG  
-65 to +175  
NOTES : 1. Non-repetitive current pulse, per Fig. 3 and derated above TA = 25oC per Fig. 2.  
2. 8.3ms single half sine-wave, duty cycle = 4 pulses per minute maximum.  
3. P.C.B. mounted 0.31 x 0.31" ( 8 x 8mm) copper pad areas  
2003-01  
Breakdown Voltage  
VBR  
Working  
Peak  
Reverse  
Voltage  
Maximum  
Reverse  
Leakage  
at Vrwm  
Maximum  
Reverse  
Current  
Maximum  
Reverse  
Voltage  
at Irsm  
( clamping )  
Maximum  
Temperature  
Coefficient  
of Vbr  
PRODUCT  
NO.  
( NOTE 2 )  
@ IT  
Volts ( NOTE 1 )  
( mA )  
MIN.  
NOM.  
MAX.  
Vrwm ( V )  
Ir ( uA )  
Irsm ( A )  
Vrsm ( V )  
( %C )  
1.5SCMJ6.8APT  
1.5SCMJ7.5APT  
1.5SCMJ8.2APT  
1.5SCMJ9.1APT  
1.5SCMJ10APT  
1.5SCMJ11APT  
1.5SCMJ12APT  
1.5SCMJ13APT  
1.5SCMJ15APT  
1.5SCMJ16APT  
1.5SCMJ18APT  
1.5SCMJ20APT  
1.5SCMJ22APT  
1.5SCMJ24APT  
1.5SCMJ27APT  
1.5SCMJ30APT  
1.5SCMJ33APT  
1.5SCMJ36APT  
1.5SCMJ39APT  
1.5SCMJ43APT  
1.5SCMJ47APT  
1.5SCMJ51APT  
1.5SCMJ56APT  
1.5SCMJ62APT  
1.5SCMJ68APT  
1.5SCMJ75APT  
1.5SCMJ82APT  
1.5SCMJ91APT  
1.5SCMJ100APT  
1.5SCMJ110APT  
1.5SCMJ120APT  
1.5SCMJ130APT  
1.5SCMJ150APT  
1.5SCMJ160APT  
1.5SCMJ170APT  
1.5SCMJ180APT  
1.5SCMJ200APT  
6.45  
7.13  
7.79  
8.65  
9.5  
6.8  
7.5  
8.2  
9.1  
10  
7.14  
7.88  
8.61  
9.55  
10.5  
11.6  
12.6  
13.7  
15.8  
16.8  
18.9  
21.0  
23.1  
25.2  
28.4  
31.5  
34.7  
37.8  
41.0  
45.2  
49.4  
53.6  
58.8  
65.1  
71.4  
78.8  
86.1  
95.5  
105  
10  
10  
5.80  
6.40  
7.02  
7.78  
8.55  
9.40  
10.2  
11.1  
12.8  
13.6  
15.3  
17.1  
18.8  
20.5  
23.1  
25.6  
28.2  
30.8  
33.3  
36.8  
40.2  
43.6  
47.8  
53.0  
58.0  
64.1  
70.1  
77.8  
85.5  
94.0  
102  
1000  
500  
200  
50  
143  
132  
124  
112  
103  
96.0  
90.0  
82.0  
71.0  
67.0  
59.5  
54.0  
49.0  
45.0  
40.0  
36.0  
33.0  
30.0  
28.0  
25.3  
23.2  
21.4  
19.5  
17.7  
16.3  
14.6  
13.3  
12.0  
11.0  
9.9  
10.5  
11.3  
12.1  
13.4  
14.5  
15.6  
16.7  
18.2  
21.2  
22.5  
25.2  
27.7  
30.6  
33.2  
37.5  
41.4  
45.7  
49.9  
53.9  
59.3  
64.8  
70.1  
77.0  
85.0  
92.0  
103  
0.057  
0.061  
0.065  
0.068  
0.073  
0.075  
0.078  
0.081  
0.084  
0.086  
0.088  
0.090  
0.092  
0.094  
0.096  
0.097  
0.098  
0.099  
0.100  
0.101  
0.101  
0.102  
0.103  
0.104  
0.104  
0.105  
0.105  
0.106  
0.106  
0.107  
0.107  
0.107  
0.108  
0.108  
0.108  
0.108  
0.108  
10  
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  
10  
10.5  
11.4  
12.4  
14.3  
15.2  
17.1  
19.0  
20.9  
22.8  
25.7  
28.5  
31.4  
34.2  
37.1  
40.9  
44.7  
48.5  
53.2  
58.9  
64.6  
71.3  
77.9  
86.5  
95.0  
105  
11  
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  
12  
13  
15  
16  
18  
20  
22  
24  
27  
30  
33  
36  
39  
43  
47  
51  
56  
62  
68  
75  
113  
82  
125  
91  
137  
100  
110  
120  
130  
150  
160  
170  
180  
200  
116  
152  
114  
126  
9.1  
165  
124  
137  
111  
8.4  
179  
143  
158  
128  
7.2  
207  
152  
168  
136  
6.8  
219  
162  
179  
145  
6.4  
234  
171  
189  
154  
6.1  
246  
190  
210  
171  
5.5  
274  
RATING CHARACTERISTIC CURVES ( 1.5SCMJ6.8APT ~ 1.5SCMJ200APT )  
FIG. 1 - PULSE POWER RATING CURVE  
FIG. 2 - PULSE DERATING CURVE  
100  
10  
100  
Non-Repetitive  
Pulse Waveform  
Shown in Fig.3  
75  
50  
25  
0
TA = 25O  
C
1.0  
0.1  
0.1uS  
1.0uS  
10uS  
100uS  
1.0mS  
10mS  
75  
, AMBIENT TEMPERATURE,(OC  
)
0
25  
50  
A
100 125 150  
175 200  
T
P
, PULSE WIDTH, Sec  
T
FIG. 4 - TYPICAL JUNCTION CAPACITANCE  
FIG. 3 - PULSE WAVEFORM  
150  
10000  
1000  
Unidirectional-----  
Pulse Width (td) is Defined  
as the Point Where the Peak  
Current Decays to 50% of IPPM  
tr = 10usec.  
Peak Value  
IPPM  
VR = 0  
100  
50  
0
IPPM  
2
HALF VALUE -  
10/1000usec. Waveform  
as Defined by R.E.A.  
f = 1MH  
100  
10  
Vsig = 50mVp-p  
TJ  
= 25OC  
VR = RATED  
STAND-OFF  
VOLTAGE  
0
1.0  
2.0  
t, TIME,mS  
3.0  
4.0  
5
10  
100  
500  
V(BR), BREAKDOWN VOLTACE, VOLTS  
FIG. 5 - STEADY STATE POWER DERATING CURVE  
FIG. 6 - MAXIMUM NON-REPETITIVE FORWARD  
SURGE CURRENT UNIDIRECTIONAL  
8.0  
6.0  
4.0  
2.0  
200  
8.3ms Single Half Sine-Wave  
(JEDED Method) TJ = TJ max.  
60Hz  
Resistive or Inductive Load  
40  
20  
10  
0
0
0
25  
50  
75  
100 125 150 175 200  
1
10  
NUMBER OF CYCLES AT 60 Hz  
100  
T
L
, LEAD TEMPERATURE (OC  
)
RATING CHARACTERISTIC CURVES (1.5SCMJ6.8APT ~ 1.5SCMJ200APT )  
FIG. 7 - INCREMENTAL CLAMPING VOLTAGE  
CURVE UNI-DIRECTIONAL  
FIG. 8 - INCREMENTAL CLAMPING VOLTAGE  
CURVE UNI-DIRECTIONAL  
100  
100  
Waveform  
8X20 Impulse  
Vc = Vc-V(BR)  
Waveform  
1.5SCMJ200A  
10X1000 Impulse  
1.5SCMJ200A  
Vc = Vc-V(BR)  
1.5SCMJ130A  
1.5SCMJ75A  
1.5SCMJ130A  
1.5SCMJ100A  
20  
10  
20  
10  
1.5SCMJ39A  
1.5SCMJ39A  
1.5SCMJ33A  
2.0  
1.0  
2.0  
1.0  
1.5SCMJ33A  
1.5SCMJ6.8A  
1.5SCMJ9.1A  
1.5SCMJ18A  
1.5SCMJ6.8A  
1.5SCMJ9.1A  
1.5SCMJ12A  
0.2  
0.1  
0.2  
0.1  
0.5  
1
2.0  
10  
20  
50  
0.5  
1
2.0  
10  
20  
50  
I
PP, PEAK PULSE CURRENT, AMPS  
IPP, PEAK PULSE CURRENT, AMPS  
FIG. 9 -INSTANTANEOUS FORWARD  
VOLTAGE CHARACTERISTICS CURVE  
FIG. 10 - BREAKDOWN VOLTAGE  
TEMPEATURE COEFFICIENT CURVE  
1000  
100  
10  
1
100  
10  
1
Uni-directional  
Pulse Width = 300uS  
1% Duty Cycle TJ = 25O  
C
0.1  
0
0.4  
0.8  
1.2  
1.6  
2.0  
5
10  
20  
50  
100  
200  
500  
INSTANTANEOUS FORWARD CURRENT, AMPERES  
V(BR), BREAKDOWN VOLTAGE, VOLTS  

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