SMCJ5360-T [MCC]

Zener Diode,;
SMCJ5360-T
型号: SMCJ5360-T
厂家: Micro Commercial Components    Micro Commercial Components
描述:

Zener Diode,

文件: 总4页 (文件大小:203K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
SMCJ5348  
THRU  
SMCJ5366  
M C C  
ꢀꢁꢂꢃꢄꢅꢆꢄꢇꢇꢈꢃꢂꢁꢉꢊꢅꢆomponents  
TM 20736 Marilla Street Chatsworth  
ꢆꢋꢅꢌꢍꢎꢍꢍ  
ꢏꢐꢄꢑꢈꢒꢅꢓꢔꢍꢔ ꢅ!ꢕꢍ"#ꢌꢎꢎ  
$ꢉ%ꢒꢅ   ꢓꢔꢍꢔ ꢅ!ꢕꢍ"#ꢌꢎꢌ  
Micro Commercial Components  
Features  
Silicon  
5.0 Watt  
l
l
l
l
l
Surface Mount Application  
11 thru 39 Volt Voltage Range  
Built-in strain relief  
Glass passivated junction  
Low inductance  
Zener Diodes  
Mechanical Data  
DO-214AB  
l
Case: JEDEC DO-214AB Molded plastic  
(SMC) (LEAD FRAME)  
over passivated junction  
G
l
l
l
l
Terminals solderable per MIL-STD-750, Method 2026  
Standard Packaging: 16mm tape(EIA-481)  
Maximum temperature for soldering: 260oC for 10 seconds.  
Plastic package has Underwriters Laboratory  
Flammability Classification 94V-O  
H
D
Maximum Ratings @ 25oC Unless Otherwise Specified  
A
C
DC Power  
Dissipation  
PD  
5.0W  
(Note: 1 )  
E
B
Pea k forward  
Surge Curren t  
8.3ms single half  
Operation And  
Storage  
Temperature  
IFSM  
See Fig.5 (Note:1,2)  
F
DIMENSIONS  
INCHES  
MIN  
.079  
.108  
.002  
.006  
.030  
..305  
.260  
.220  
MM  
MIN  
2.00  
2.75  
0.051  
0.152  
0.76  
7.75  
6.60  
TJ, TSTG -55oC to  
+150 oC  
DIM  
A
B
C
D
E
F
G
H
MAX  
.103  
.128  
.008  
.012  
.050  
.320  
MAX  
2.62  
3.25  
0.203  
0.305  
1.27  
8.13  
7.11  
6.22  
NOTE  
.280  
.245  
NOTES:  
5.59  
2
1. Mounted on 8.0mm copper pads to each terminal.  
2. 8.3ms single half sine-wave, or equivalent square wave,  
duty cycle = 4 pulses per minute maximum.  
SUGGESTED SOLDER  
PAD LAYOUT  
0.185  
0.121”  
0.060”  
www.mccsemi.com  
Revision: 4  
2004/11/24  
SMCJ5348 thru SMCJ5366  
M C C  
TM  
¢J  
ELECTRICAL CHARACTERISTICS (TA=25 unless otherwise noted, VF=1.2 Max @ IF=1A for all types.  
Micro Commercial Components  
Max reverse  
Leakage Current  
Device  
Nominal  
Zener  
Maximum Zener  
Impedance  
Maximum  
Regulator Marking  
Current  
Test  
current  
IZT  
Max  
Max  
Voltage  
Current Regulation  
Type No.  
(Note 1.)  
Surge  
ZZT @ IZT  
ZZk @ IZK = 1  
IR  
A
Voltage  
Vz @ IZT  
Code  
IZM mA  
@ VR Volts  
Non & A  
Ir Amps  
Vz, Volts  
u
Ohms  
mA  
mA  
(Note 5.)  
volts  
(Note 2.)  
Ohms  
(Note 3.)  
B-Suffix  
(Note 4.)  
Suffix  
(Note 2.)  
(Note 2.)  
11  
12  
13  
14  
15  
16  
17  
18  
19  
20  
22  
24  
25  
27  
28  
30  
33  
36  
39  
125  
100  
100  
100  
75  
75  
70  
65  
65  
65  
50  
50  
50  
50  
50  
40  
40  
2.5  
2.5  
2.5  
2.5  
2.5  
2.5  
2.5  
2.5  
3
125  
125  
100  
75  
75  
75  
75  
75  
75  
75  
5
2
1
1
1
1
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  
8
8.6  
9.4  
8.4  
9.1  
9.9  
8
7.5  
7
6.7  
6.3  
6
5.8  
5.5  
5.3  
5.1  
4.7  
4.4  
4.3  
4.1  
3.9  
3.7  
3.5  
3.3  
3.1  
0.25  
0.25  
0.25  
0.25  
0.25  
0.3  
0.35  
0.4  
0.4  
430  
395  
365  
340  
315  
295  
280  
265  
250  
237  
216  
198  
190  
176  
170  
158  
144  
132  
122  
348B  
349B  
350B  
351B  
352B  
353B  
354B  
355B  
356B  
357B  
358B  
359B  
360B  
361B  
362B  
363B  
364B  
365B  
366B  
SMCJ5348  
SMCJ5349  
SMCJ5350  
SMCJ5351  
SMCJ5352  
SMCJ5353  
SMCJ5354  
SMCJ5355  
10.1  
10.8  
11.5  
12.2  
13  
13.7  
14.4  
15.8  
17.3  
18  
19.4  
20.1  
21.6  
23.8  
25.9  
28.1  
10.6  
11.5  
12.2  
12.9  
13.7  
14.4  
15.2  
16.7  
18.2  
19  
20.6  
21.2  
22.8  
25.1  
27.4  
29.7  
SMCJ5356  
SMCJ5357  
SMCJ5358  
SMCJ5359  
SMCJ5360  
SMCJ5361  
3
0.4  
3.5  
3.5  
4
5
6
75  
0.45  
0.55  
0.55  
0.6  
0.6  
0.6  
0.6  
0.65  
0.65  
100  
110  
120  
130  
140  
150  
160  
170  
SMCJ5362  
SMCJ5363  
SMCJ5364  
SMCJ5365  
SMCJ5366  
8
10  
11  
14  
30  
30  
NOTE:  
1. TOLERANCE AND VOLTAGE DESIGNATION - The JEDEC type numbers shown indicate a tolerance of 10% with  
guaranteed limits on only Vz, IR, Ir, and VF as shown in the electrical characteristics table. Units with guaranteed  
limits on all seven parameters are indicated by suffix “B” for 5% tolerance.  
2. ZENER VOLTAGE (Vz) AND IMPEDANCE (ZZT & ZZK) - Test conditions for Zener voltage and impedance are as  
follows; Iz is applied 40 10 ms prior to reading. Mounting contacts are located from the inside edge of mounting  
clips to the body of the diode.(TA=25).  
www.mccsemi.com  
Revision: 4  
2004/11/24  
SMCJ5348 thru SMCJ5366  
M C C  
RATING AND CHARACTERISTICS CURVES  
TM  
Micro Commercial Components  
TEMPERATURE COEFFICIENTS  
300  
200  
100  
8
6
4
2
0
RANGE  
L = LEAD LENGTH TO  
HEAT SINK  
50  
30  
20  
(SEE FIGURE 5)  
10  
5
0
20 40 60 80 100 120 140 160 180 200 220  
VZ, ZENER VOLTAGE @IZT (VOLTS)  
0
20  
40  
60  
80  
100  
120  
140  
160  
¢J  
TL, LEAD TEMPERATURE (  
)
Fig. 1-POWER TEMPERATURE DERATING CURVE  
Fig. 2-TEMPERATURE COEFFICIENT-RANGE FOR UNITS  
6 TO 220 VOLTS  
30  
D = 0.5  
20  
10  
7
5
0.2  
0.1  
3
2
0.05  
0.02  
NOTE BELOW 0.1 SECOND,  
1
0.7  
0.5  
THERMAL RESPONSE  
CURVE IS APPLICABLE TO  
ANY LEAD LENGTH (L)  
DUTY CYCLE, D = t1 / t2  
SINGLE PULSE TJL =  
JL(t)PPK  
£K  
£G  
REPETITIVE PULSES  
0.01  
TJL =  
£G  
JL(t,D)PPK  
£K  
D = 0  
0.3  
0.0001 0.0002  
0.0005 0.001 0.002  
0.005  
0.01  
0.02  
0.05  
0.1  
0.2  
0.5  
1
2
5
10  
TIME (SECONDS)  
Fig. 3-TYPICAL THERMAL RESPONSE  
40  
20  
10  
PW = 1ms*  
PW = 8.3ms*  
40  
30  
4
2
1
20  
10  
MCUNTE ON 8.0mm2  
COPPER PADS TO  
EACH TERMINAL  
PW = 1000ms*  
SINE / SQUARE WAVE PW = 100ms*  
0.4  
0.2  
0
0.1  
0
0.2  
0.4  
0.6  
0.8  
1
3
4
6
8
10  
20  
30 40 60 80 100  
200  
L, LEAD LENGTH TO HEAT SINK (INCH)  
NOMINAL VZ(V)  
Fig. 4-TYPICAL THERMAL RESISTANCE  
Fig. 5-MAXIMUM NON-REPETITIVE SURGE  
CURRENT VERSUS NOMINAL ZENER  
VOLTAGE (SEE NOTE 3)  
www.mccsemi.com  
Revision: 4  
2004/11/24  
SMCJ5348 thru SMCJ5366  
M C C  
RATING AND CHARACTERISTICS CURVES  
TM  
Micro Commercial Components  
ZENER VOLTAGE VERSUS ZENER CURRENT  
(FIGURES 7,8, AND 9)  
30  
20  
VZ = 6.8V  
TC = 25  
T = 25  
1000  
10  
5
PLOTTED FROM INFORMATION  
GIVEN IN FIGURE 6  
100  
10  
2
1
0.5  
1
VZ = 200V  
0.2  
0.1  
0.1  
1
2
3
4
5
6
7
8
9
10  
1
10  
100  
1000  
VZ, ZENER VOLTAGE (VOLTS)  
Fig. 6-PEAK SURGE CURRENT VERSUS PULSE  
WIDTH(SEE NOTE 3)  
Fig. 7-ZENER VOLTAGE VERSUS ZENER CURRENT  
VZ = 6.8 THRU 10 VOLTS  
1000  
1000  
T = 25  
100  
100  
10  
10  
1
1
0.1  
0.1  
10  
20  
30  
40  
70  
80  
100  
120  
140  
160  
180  
200  
220  
VZ, ZENER VOLTAGE (VOLTS)  
VZ, ZENER VOLTAGE (VOLTS)  
Fig. 8-ZENER VOLTAGE VERSUS ZENER CURRENT  
VZ = 11 THRU 75 VOLTS  
Fig. 9-ZENER VOLTAGE VERSUS ZENER CURRENT  
VZ = 82 THRU 200 VOLTS  
*** Data of Figure 3 should not be used to compute surge capability. Surge limitations are given in Figure 5. They are  
lower than would be expected by considering only junction temperature, as current crowding effects cause  
temperatures to be extremely high in small spots resulting in device degradation should the limits of Figure. 5 be  
exceeded  
www.mccsemi.com  
Revision: 4  
2004/11/24  

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