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1N3017BTRUR-1 PDF预览

1N3017BTRUR-1

更新时间: 2022-01-15 02:05:59
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美高森美 - MICROSEMI 稳压二极管
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3页 192K
描述
1 WATT METAL CASE ZENER DIODES

1N3017BTRUR-1 数据手册

 浏览型号1N3017BTRUR-1的Datasheet PDF文件第1页浏览型号1N3017BTRUR-1的Datasheet PDF文件第3页 
1N3016B thru 1N3051B  
1 WATT METAL CASE ZENER DIODES  
S C O T T S D A L E D I V I S I O N  
*ELECTRICAL CHARACTERISTICS @ 25oC  
TYPICAL  
TEMP. COEFF.  
OF ZENER  
NOMINAL  
MAXIMUM  
ZENER  
CURRENT  
IZM  
MAXIMUM  
REVERSE  
LEAKAGE  
CURRENT†  
ZENER  
VOLTAGE  
VZ @ IZT  
ZENER  
TEST  
MAXIMUM ZENER IMPEDANCE  
(Note 3)  
JEDEC  
TYPE  
VOLTAGE  
CURRENT  
IZT  
(Note 2)  
(Note 4)  
IR  
@
VR  
α
ZZT @ IZT  
ZZK  
OHMS  
700  
@
IZK  
NUMBER  
(Note 1)  
VZ  
Volts  
6.8  
7.5  
8.2  
9.1  
10  
mA  
37  
OHMS  
3.5  
4.0  
4.5  
5
mA  
1.0  
.5  
mA  
140  
125  
115  
105  
95  
µA  
150  
100  
50  
25  
25  
10  
10  
10  
10  
10  
10  
10  
10  
10  
10  
10  
10  
10  
10  
10  
10  
10  
10  
10  
10  
10  
10  
10  
10  
10  
10  
10  
10  
10  
10  
10  
Volts  
5.2  
%/oC  
.040  
.045  
.048  
.050  
.055  
.060  
.065  
.065  
.070  
.070  
.075  
.075  
.080  
.080  
.085  
.085  
.085  
.085  
.090  
.090  
.090  
.090  
.090  
.090  
.090  
.090  
.090  
.090  
.090  
.095  
.095  
.095  
.095  
.095  
.095  
.100  
1N3016B  
1N3017B  
1N3018B  
1N3019B  
1N3020B  
1N3021B  
1N3022B  
1N3023B  
1N3024B  
1N3025B  
1N3026B  
1N3027B  
1N3028B  
1N3029B  
1N3030B  
1N3031B  
1N3032B  
1N3033B  
1N3034B  
1N3035B  
1N3036B  
1N3037B  
1N3038B  
1N3039B  
1N3040B  
1N3041B  
1N3042B  
1N3043B  
1N3044B  
1N3045B  
1N3046B  
1N3047B  
1N3048B  
1N3049B  
1N3050B  
1N3051B  
34  
700  
5.7  
31  
700  
.5  
6.2  
28  
700  
.5  
6.9  
25  
7
700  
.25  
.25  
.25  
.25  
.25  
.25  
.25  
.25  
.25  
.25  
.25  
.25  
.25  
.25  
.25  
.25  
.25  
.25  
.25  
.25  
.25  
.25  
.25  
.25  
.25  
.25  
.25  
.25  
.25  
.25  
.25  
.25  
7.6  
11  
23  
8
700  
85  
8.4  
12  
21  
9
700  
80  
9.1  
13  
19  
10  
700  
74  
9.9  
15  
17  
14  
700  
63  
11.4  
12.2  
13.7  
15.2  
16.7  
18.2  
20.6  
22.8  
25.1  
27.4  
29.7  
32.7  
35.8  
38.8  
42.6  
47.1  
51.7  
56.0  
62.2  
69.2  
76.0  
83.6  
91.2  
98.8  
114.0  
121.6  
136.8  
152.0  
16  
15.5  
14  
16  
700  
60  
18  
20  
750  
52  
20  
12.5  
11.5  
10.5  
9.5  
8.5  
7.5  
7.0  
6.5  
6.0  
5.5  
5.0  
4.5  
4.0  
3.7  
3.3  
3.0  
2.8  
2.5  
2.3  
2.0  
1.9  
1.7  
1.6  
1.4  
1.2  
22  
750  
47  
22  
23  
750  
43  
24  
25  
750  
40  
27  
35  
750  
34  
30  
40  
1000  
1000  
1000  
1000  
1500  
1500  
1500  
2000  
2000  
2000  
2000  
3000  
3000  
3000  
4000  
4500  
5000  
6000  
6500  
7000  
31  
33  
45  
28  
36  
50  
26  
39  
60  
23  
43  
70  
21  
47  
80  
19  
51  
95  
18  
56  
110  
125  
150  
175  
200  
250  
350  
450  
550  
700  
1000  
1100  
1200  
1500  
17  
62  
15  
68  
14  
75  
12  
82  
11  
91  
10  
100  
110  
120  
130  
150  
160  
180  
200  
9.0  
8.3  
8.0  
6.9  
5.7  
5.4  
4.9  
4.6  
*JEDEC Registered Data. †Not JEDEC Data. 8000  
NOTES: 1. When using JEDEC numbers, B suffix signifies +/-5% tolerance on nominal zener voltage. The suffix A is used to identify +/-10%  
tolerance; no suffix indicates +/-20% tolerance: suffix C is used to identify +/- 2%; and suffix D is used to identify +/- 1% tolerance.  
2. Zener Voltage (VZ) is measured with junction in thermal equilibrium with still air at a temperature of 25oC. The test currents (IZT) at  
nominal voltages provide a constant 0.25 watts.  
3. The zener impedance is derived when a 60 cycle ac current having an rms value equal to 10% of the dc zener current (IZT or  
IZK) is superimposed on IZT or IZK. Zener impedance is measured at 2 points to ensure a sharp knee on the breakdown curve  
and to eliminate unstable units. See MicroNote 202 for variation in dynamic impedance with different zener currents.  
4. These values of IZM may often be exceeded in the case of individual diodes. The values shown are calculated for a unit at the high  
voltage end of its tolerance range. Allowance has also been made for the rise in zener voltage above VZT that results from zener  
impedance and the increase in junction temperature as a unit approaches thermal equilibrium at a dissipation of 1 watt. The IZM  
values shown for +/-5% tolerance units may be used with little error for +/-10% tolerance units, but should be reduced by 7% to  
include a +/-20% tolerance unit near the high voltage end of its tolerance range.  
Copyright 2003  
Microsemi  
Page 2  
11-03-2003 REV A  
Scottsdale Division  
8700 E. Thomas Rd. PO Box 1390, Scottsdale, AZ 85252 USA, (480) 941-6300, Fax: (480) 947-1503  

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