1N4106UR [MICROSEMI]

GLASS SURFACE MOUNT 0.5 WATT ZENERS; 玻璃表面贴装0.5瓦齐纳二极管
1N4106UR
型号: 1N4106UR
厂家: Microsemi    Microsemi
描述:

GLASS SURFACE MOUNT 0.5 WATT ZENERS
玻璃表面贴装0.5瓦齐纳二极管

二极管 齐纳二极管
文件: 总3页 (文件大小:183K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
1N4099UR thru 1N4135UR  
(or MLL4099 thru MLL4135)  
and  
1N4614UR thru 1N4627UR  
(or MLL4614 thru MLL4627)  
S C O T T S D A L E D I V I S I O N  
GLASS SURFACE MOUNT 0.5 WATT  
ZENERS  
DESCRIPTION  
APPEARANCE  
The 1N4099UR thru 1N4135UR and 1N4614UR thru 1N4627UR series of  
0.5 watt glass surface mount DO-213AA Zener voltage regulators provides  
a selection from 1.8 to 100 volts in standard 5% tolerances as well as  
tighter tolerances identified by different suffix letters on the part number.  
These are also available with an internal-metallurgical-bond option by  
adding a “-1” suffix (see separate data sheet) including JAN, JANTX, and  
JANTXV military qualifications. Microsemi also offers numerous other  
Zener products to meet higher and lower power applications.  
DO-213AA  
IMPORTANT: For the most current data, consult MICROSEMI’s website: http://www.microsemi.com  
FEATURES  
APPLICATIONS / BENEFITS  
Surface mount equivalent to JEDEC registered 1N4099  
Regulates voltage over a broad operating current and  
thru 1N4135 and 1N4614 thru 1N4627 series  
temperature range  
Internal metallurgical bond option available by adding a  
“-1” suffix that also includes JAN, JANTX, and JANTXV  
qualifications per MIL-PRF-19500/435 (see separate  
data sheet for same part numbers with “-1” suffix)  
DO-7 or DO-35 glass body axial-leaded Zener  
equivalents also available per JEDEC registration (see  
separate data sheet for part numbers 1N4099 thru  
1N4135 and 1N4614 thru 1N4627 series  
Extensive selection from 1.8 to 100 V  
Standard voltage tolerances are plus/minus 5% with  
no suffix  
Tight tolerances available in plus or minus 2% or 1%  
with C or D suffix respectively  
Hermetically sealed surface mount package  
Nonsensitive to ESD per MIL-STD-750 Method 1020  
Minimal capacitance (see Figure 3)  
Inherently radiation hard as described in Microsemi  
MicroNote 050  
MAXIMUM RATINGS  
MECHANICAL AND PACKAGING  
Operating and Storage temperature: -65ºC to +175ºC  
CASE: Hermetically sealed glass DO-213AA (SOD80  
Thermal Resistance: 150ºC/W junction to end cap and  
300ºC/W junction to ambient when mounted on FR4 PC  
board (1 oz Cu) with recommended footprint (see last  
page)  
or MLL34) MELF style package  
TERMINALS: End caps tin-lead plated solderable per  
MIL-STD-750, method 2026  
POLARITY: Cathode indicated by band where diode  
is to be operated with the banded end positive with  
respect to the opposite end for Zener regulation  
Steady-State Power: 0.5 watts at end cap temperature  
T
EC < 100oC or ambient temperature TA < 25ºC when  
mounted on FR4 PC board as described for thermal  
MARKING: cathode band only  
resistance above (see Figure 2 for derating)  
TAPE & REEL option: Standard per EIA-481-1-A with  
12 mm tape, 2000 per 7 inch reel or 5000 per 13 inch  
reel (add “TR” suffix to part number)  
Forward voltage @200 mA: 1.1 volts  
Solder Temperatures: 260 ºC for 10 s (max)  
WEIGHT: 0.04 grams  
See package dimensions on last page  
Copyright 2002  
11-05-03 REV C  
Microsemi  
Page 1  
Scottsdale Division  
8700 E. Thomas Rd. PO Box 1390, Scottsdale, AZ 85252 USA, (480) 941-6300, Fax: (480) 947-1503  
1N4099UR thru 1N4135UR  
(or MLL4099 thru MLL4135)  
and  
1N4614UR thru 1N4627UR  
(or MLL4614 thru MLL4627)  
S C O T T S D A L E D I V I S I O N  
*ELECTRICAL CHARACTERISTICS @ 25oC  
NOMINAL  
ZENER  
ZENER  
TEST  
MAXIMUM  
ZENER  
MAXIMUM  
REVERSE  
CURRENT  
MAXIMUM  
NOISE  
MAXIMUM  
ZENER  
TYPICAL  
TEMP.COEFF.  
OF ZENER  
VOLTAGE  
MICROSEMI  
PART  
VOLTAGE  
CURRENT  
IMPEDANCE  
DENSITY  
CURRENT  
INDUSTRY  
VZ @ IZT  
IZT  
ZZT  
IR @ VR  
ND @ IZT  
IZM  
PART NUMBER  
NUMBER  
(NOTE 2)  
(Note 3)  
α
%/VoZC  
(NOTE 1)  
1N4614UR  
1N4615UR  
1N4616UR  
1N4617UR  
1N4618UR  
1N4619UR  
1N4620UR  
1N4621UR  
1N4622UR  
1N4623UR  
1N4624UR  
1N4625UR  
1N4626UR  
1N4627UR  
1N4099UR  
1N4100UR  
1N4101UR  
1N4102UR  
1N4103UR  
1N4104UR  
1N4105UR  
1N4106UR  
1N4107UR  
1N4108UR  
1N4109UR  
1N4110UR  
1N4111UR  
1N4112UR  
1N4113UR  
1N4114UR  
1N4115UR  
1N4116UR  
1N4117UR  
1N4118UR  
1N4119UR  
1N4120UR  
1N4121UR  
1N4122UR  
1N4123UR  
1N4124UR  
1N4125UR  
1N4126UR  
1N4127UR  
1N4128UR  
1N4129UR  
1N4130UR  
1N4131UR  
1N4132UR  
1N4133UR  
1N4134UR  
1N4135UR  
(NOTE 1)  
MLL4614  
MLL4615  
MLL4616  
MLL4617  
MLL4618  
MLL4619  
MLL4620  
MLL4621  
MLL4622  
MLL4623  
MLL4624  
MLL4625  
MLL4626  
MLL4627  
MLL4099  
MLL4100  
MLL4101  
MLL4102  
MLL4103  
MLL4104  
MLL4105  
MLL4106  
MLL4107  
MLL4108  
MLL4109  
MLL4110  
MLL4111  
MLL4112  
MLL4113  
MLL4114  
MLL4115  
MLL4116  
MLL4117  
MLL4118  
MLL4119  
MLL4120  
MLL4121  
MLL4122  
MLL4123  
MLL4124  
MLL4125  
MLL4126  
MLL4127  
MLL4128  
MLL4129  
MLL4130  
MLL4131  
MLL4132  
MLL4133  
MLL4134  
MLL4135  
VOLTS  
1.8  
2.0  
2.2  
2.4  
2.7  
3.0  
3.3  
3.6  
3.9  
4.3  
4.7  
5.1  
5.6  
6.2  
6.8  
7.5  
8.2  
8.7  
9.1  
10  
OHMS  
1200  
1250  
1300  
1400  
1500  
1600  
1650  
1700  
1650  
1600  
1550  
1500  
1400  
1200  
200  
Volts  
mA  
120  
110  
100  
95  
µA  
µA  
3.5  
2.5  
2.0  
1.0  
0.5  
0.4  
3.5  
3.5  
2.5  
2.0  
5.0  
5.0  
5.0  
5.0  
1.0  
1.0  
0.5  
0.5  
0.5  
0.5  
.05  
.05  
.05  
.05  
.05  
.05  
.05  
.05  
.05  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
.01  
µV/Hz  
1
250  
250  
250  
250  
250  
250  
250  
250  
250  
250  
250  
250  
250  
250  
250  
250  
250  
250  
250  
250  
250  
250  
250  
250  
250  
250  
250  
250  
250  
250  
250  
250  
250  
250  
250  
250  
250  
250  
250  
250  
250  
250  
250  
250  
250  
250  
250  
250  
250  
250  
250  
1.0  
1.0  
-0.075  
-0.075  
-0.075  
-0.075  
-0.075  
-0.075  
-0.075  
-0.065  
-0.060  
-0.050  
-0.040,+0.020  
-0.045,+0.030  
-0.020,+0.040  
-0.010,+0.050  
0.040  
1
1.0  
1
1.0  
1
1.0  
1
90  
1.0  
1
87  
1.5  
1
85  
2.0  
1
83  
2.0  
1
80  
2.0  
1
77  
3.0  
1
75  
3.0  
2
70  
4.0  
4
65  
5.0  
5
61  
5.17  
5.70  
6.24  
6.61  
6.92  
7.60  
8.44  
9.12  
9.87  
10.65  
11.40  
12.15  
12.92  
13.67  
14.44  
15.20  
16.72  
18.25  
1900  
20.45  
21.28  
22.80  
25.08  
27.38  
29.65  
32.65  
35.75  
38.76  
42.60  
45.60  
47.10  
51.68  
57.00  
62.32  
66.12  
69.16  
76.00  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
40  
56  
200  
51  
0.045  
200  
46  
0.048  
200  
44  
0.049  
200  
42  
0.050  
200  
38  
0.055  
11  
200  
35  
0.060  
12  
200  
32  
0.065  
13  
200  
29  
0.065  
14  
200  
27  
0.070  
15  
100  
25  
0.070  
16  
100  
24  
0.070  
17  
100  
22  
0.075  
18  
100  
21  
0.075  
19  
150  
20  
0.075  
20  
150  
19  
0.075  
22  
150  
17  
0.080  
24  
150  
16  
0.080  
25  
150  
15  
0.080  
27  
150  
14  
0.085  
28  
200  
14  
0.085  
30  
200  
13  
0.085  
33  
200  
12  
0.085  
36  
200  
11  
0.090  
39  
200  
9.8  
8.9  
8.1  
7.5  
6.7  
6.4  
6.1  
5.6  
5.1  
4.6  
4.4  
4.2  
3.8  
0.090  
43  
250  
0.090  
47  
250  
0.090  
51  
300  
0.090  
56  
300  
0.090  
60  
400  
0.090  
62  
500  
0.090  
68  
700  
0.095  
75  
700  
0.095  
82  
800  
0.095  
87  
1000  
1200  
1500  
0.095  
91  
0.095  
100  
0.095  
NOTE 1: These may be ordered as either 1N4614UR-1N4627UR, 1N4099UR-1N4135UR or as the MLL4614-MLL4627, MLL4099-MLL4135.  
NOTE 2: The JEDEC type numbers shown above have a standard tolerance of +/-5% for nominal Zener voltage and are also available in 2% and 1%  
tolerance with suffix C and D respectively. VZ is measured with the diode in thermal equilibrium (still air) at 25oC for end-cap terminations.  
NOTE 3: The zener impedance is derived by superimposing on IZT, a 60 Hz rms ac current equal to 10% of IZT (25µA). See MicroNote 202 for  
zener impedance variation with different operating currents.  
Copyright 2002  
Microsemi  
Page 2  
11-05-03 REV C  
Scottsdale Division  
8700 E. Thomas Rd. PO Box 1390, Scottsdale, AZ 85252 USA, (480) 941-6300, Fax: (480) 947-1503  
1N4099UR thru 1N4135UR  
(or MLL4099 thru MLL4135)  
and  
1N4614UR thru 1N4627UR  
(or MLL4614 thru MLL4627)  
S C O T T S D A L E D I V I S I O N  
GRAPHS and CIRCUIT  
TEC  
TA  
TEC, End Cap Temperature (oC) or TA  
Ambient temperature on FR4 PC board  
FIGURE 2 Power Derating Curve  
Capacitance vs. VZ Curve  
FIGURE 1 Noise Density Measurement Circuit  
Noise density, (ND) is specified in microvolt-rms per squre-  
root-hertz. Actual measurement is performed using a 1 KHz  
to 3 KHz frequency bandpass filter at a constant Zener test  
current (IZT) AT 25oC ambient temperature. ND is calculated  
from the formula.  
FIGURE 3 Capacitance vs. Zener Voltage (Typical)  
Zener Voltage VZ  
PACKAGE DIMENSIONS  
INCHES  
MILLIMETERS  
DIM  
A
MIN  
MAX  
0.067  
0.146  
0.022  
MIN  
1.60  
3.30  
0.41  
MAX  
1.70  
3.70  
0.55  
0.063  
0.130  
0.016  
B
PAD LAYOUT  
C
INCHES  
.200  
mm  
5.08  
1.40  
2.03  
A
B
C
.055  
.080  
Copyright 2002  
Microsemi  
Page 3  
11-05-03 REV C  
Scottsdale Division  
8700 E. Thomas Rd. PO Box 1390, Scottsdale, AZ 85252 USA, (480) 941-6300, Fax: (480) 947-1503  

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