1N5221
THRU
1N5276
500 mW
Zener Diode
2.4 to 150 Volts
DO-35
Features
Wide Voltage Range Available
Glass Package
High Temp Soldering: 260°C for 10 Seconds At Terminals
Maximum Ratings
Operating Temperature: -55°C to +150°C
Storage Temperature: -55°C to +150°C
500 mWatt DC Power Dissipation
Power Derating: 4.0mW/°C above 50°C
Forward Voltage @ 200mA: 1.1 Volts
DIMENSIONS
INCHES MM
DIM MIN MAX MIN MAX NOTE
A --- .166 --- 4.2
B --- .079 --- 2.00
C --- .020 --- .52
D 1.000 --- 25.40 ---
Figure 2 - Derating Curve
Power Dissipation (mW) - Versus - Temperature °C
Temperature °C
0 50 100 150
mW
200
400
A
B
C
D
D
Cathode
M
a
rk
Typical Capacitance (pf) – versus – Zener voltage (VZ)
Figure 1 - Typical Capacitance
0100 200
1
10
1
00
pf
VZ
At zero volts
At –2 Volts VR
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MCC
Revision: 4 2008/01/01
TM
Micro Commercial Components
Marking : Cathode band and type number
www.mccsemi.com
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ELECTRICAL CHARACTERISTICS @25°C
MCC
PART
NUMBER
NOMINAL ZENER
VOLTAGE VZ @ IZT
TEST
CURRENT IZT
MAXIMUM ZENER IMPEDANCE
‘B’ SUFFIX ONLY
ZZT @ IZT ZZK @IZK = 0.25mA
MAXIMUM REVERSE
LEAKAGE CURRENT
IR @ V
R
MAX. ZENER VOLTAGE
TEMP COEFFICIENT ‘B’
SUFFIX ONLY
VOLTS mA OHMS OHMS µA VOLTS % / °C
1N5221 2.4 20 30 1200 100 1.0 -0.085
1N5222 2.5 20 30 1250 100 1.0 -0.085
1N5223 2.7 20 30 1300 75 1.0 -0.080
1N5224 2.8 20 30 1400 75 1.0 -0.080
1N5225 3.0 20 29 1600 50 1.0 -0.075
1N5226 3.3 20 28 1600 25 1.0 -0.070
1N5227 3.6 20 24 1700 15 1.0 -0.065
1N5228 3.9 20 23 1900 10 1.0 -0.060
1N5229 4.3 20 22 2000 5.0 1.0 ±0.055
1N5230 4.7 20 19 1900 5.0 2.0 ±0.030
1N5231 5.1 20 17 1600 5.0 2.0 ±0.030
1N5232 5.6 20 11 1600 5.0 3.0 +0.038
1N5233 6.0 20 7.0 1600 5.0 3.5 +0.038
1N5234 6.2 20 7.0 1000 5.0 4.0 +0.045
1N5235 6.8 20 5.0 750 3.0 5.0 +0.050
1N5236 7.5 20 6.0 500 3.0 6.0 +0.058
1N5237 8.2 20 8.0 500 3.0 6.5 +0.062
1N5238 8.7 20 8.0 600 3.0 6.5 +0.065
1N5239 9.1 20 10 600 3.0 7.0 +0.068
1N5240 10 20 17 600 3.0 8.0 +0.075
1N5241 11 20 22 600 2.0 8.4 +0.076
1N5242 12 20 30 600 1.0 9.1 +0.077
1N5243 13 9.5 13 600 0.5 9.9 +0.079
1N5244 14 9.0 15 600 0.1 10 +0.082
1N5245 15 8.5 16 600 0.1 11 +0.082
1N5246 16 7.8 17 600 0.1 12 +0.083
1N5247 17 7.4 19 600 0.1 13 +0.084
1N5248 18 7.0 21 600 0.1 14 +0.085
1N5249 19 6.6 23 600 0.1 14 +0.086
1N5250 20 6.2 25 600 0.1 15 +0.086
1N5251 22 5.6 29 600 0.1 17 +0.087
1N5252 24 5.2 33 600 0.1 18 +0.088
1N5253 25 5.0 35 600 0.1 19 +0.089
1N5254 27 4.6 41 600 0.1 21 +0.090
1N5255 28 4.5 44 600 0.1 21 +0.091
1N5256 30 4.2 49 600 0.1 23 +0.091
1N5257 33 3.8 58 700 0.1 25 +0.092
1N5258 36 3.4 70 700 0.1 27 +0.093
1N5259 39 3.2 80 800 0.1 30 +0.094
1N5260 43 3.0 93 900 0.1 33 +0.095
1N5261 47 2.7 105 1000 0.1 36 +0.095
1N5262 51 2.5 125 1100 0.1 39 +0.096
1N5263 56 2.2 150 1300 0.1 43 +0.096
1N5264 60 2.1 170 1400 0.1 46 +0.097
1N5265 62 2.0 185 1400 0.1 47 +0.097
1N5266 68 1.8 230 1600 0.1 52 +0.097
1N5267 75 1.7 270 1700 0.1 56 +0.098
1N5268 82 1.5 330 2000 0.1 62 +0.098
1N5269 87 1.4 370 2200 0.1 68 +0.099
1N5270 91 1.4 400 2300 0.1 69 +0.099
1N5271 100 1.3 500 2600 0.1 76 +0.110
1N5272 110 1.1 750 3000 0.1 84 +0.110
1N5273 120 1.0 900 4000 0.1 91 +0.110
1N5274 130 0.95 1100 4500 0.1 99 +0.110
1N5275 140 0.90 1300 4500 0.1 106 +0.110
1N5276 150 0.85 1500 5000 0.1 114 +0.110
NOTE 1: Table as shown lists type numbers, which indicate a tolerance of ±20% with guaranteed limits on only Vz, IR, and VF. Devices with
guaranteed limits on all six parameters are indicated by suffix “A” for ±10%, “B” for ±5%, “C” for ±2%, and “D” for ±1% tolerance
NOTE 2: The electrical characteristics are measured after allowing the device to stabilize for 20 seconds.
NOTE 3: Temperature coefficient (áVZ
). Test conditions for temperature coefficient are as follows:
a. IZT = 7.5mA, TI= 25oCT
2 = 125oC (1N5221 thru 1N5242)
b. IZT = Rated IZT ,T
I = 25oC, T2 = 125oC (1N5243 thru 1N5276)
Device to be temperature stabilized with current applied prior to reading breakdown voltage at the specified ambient temperature.
1N5221 thru 1N5276 MCC
Revision: 4 2008/01/01
TM
Micro Commercial Components
www.mccsemi.com
2 of 5
1
IZ, ZENER CURRENT - mA
VZ, ZENER VOLTAGE - V
Figure 1
Zener Voltage versus Zener Current – Vz =1 thru 16 Volts
146785910
0.01
1
10
mA
VOLTS
20
0.1
11 12
23 13 14 15 16
TA=25к
IZ , ZEBER CURRENT - mA
VZ, ZENER VOLTAGE - V
Figure 2
Zener Voltage versus Zener Current – Vz =15 thru 30 Volts
15 18 20 21 2219 23 24
0.01
1
10
mA
VOLTS
20
0.1
25 26
16 17 27 28 29 30
TA=25к
MCC
Revision: 4 2008/01/01
1N1N5221 thru 1N5276 TM
Micro Commercial Components
www.mccsemi.com
3 of 5
30
IZ, ZENER CURRENT - mA
VZ, ZENER VOLTAGE - V
Figure 3
Zener Voltage versus Zener Current – Vz =30 thru 75 Volts
45 55 60 6550 70 75
0.01
1
10
mA
VOLTS
20
0.1
80 85
35 40 90 95 100 105
TA=25к
į=1
0.05
Figure4
Thermal resistance from
j
unction to ambient as a function of
p
ulse duration
10
4
Rth j-a(K/W)
tp(ms)
10
5
10
10
2
10
1
10
2
10-
1
1
10
10
3
0.33
0.10
0.50
0.75
0.20
0.02
0.01
Љ0.001
MCC
Revision: 4 2008/01/01
1N5221 thru 1N5276 TM
Micro Commercial Components
www.mccsemi.com
4 of 5
MCC
Revision: 4 2008/01/01
TM
Micro Commercial Components
www.mccsemi.com
5 of 5
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***IMPORTANT NOTICE***
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Products offer by Micro Commercial Components Corp .are not intended for use in Medical,
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product herein to make corrections, modifications , enhancements , improvements , or other changes .
Micro Commercial Components Corp .does not assume any liability arising out of the application or
use of any product described herein; neither does it convey any license under its patent rights ,nor
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and will agree to hold Micro Commercial Components Corp .and all the companies whose
Ordering Information
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