3EZ100 TRSYS, 3EZ100 Datasheet

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3EZ100

Manufacturer Part Number
3EZ100
Description
GLASS PASSIVATED JUNCTION SILICON ZENER DIODE
Manufacturer
TRSYS
Datasheet

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FEATURES
l
l
l
l
l
l
l
260 /10 seconds at terminals
l
Flammability Classification 94V-O
MECHANICAL DATA
Case: JEDEC DO-15, Molded plastic over passivated junction
Terminals: Solder plated, solderable per MIL-STD-750,
method 2026
Polarity: Color band denotes positive end (cathode)
Standard Packaging: 52mm tape
Weight: 0.015 ounce, 0.04 gram
Ratings at 25 ambient temperature unless otherwise specified.
Peak Pulse Power Dissipation (Note A)
Derate above 75
Peak forward Surge Current 8.3ms single half sine-wave superimposed on rated
load(JEDEC Method) (Note B)
Operating Junction and Storage Temperature Range
NOTES:
A. Mounted on 5.0mm
B. Measured on 8.3ms, single half sine-wave or equivalent square wave, duty cycle = 4 pulses
per minute maximum.
Low profile package
Built-in strain relief
Glass passivated junction
Low inductance
Excellent clamping capability
Typical I
High temperature soldering :
Plastic package has Underwriters Laboratory
D
less than 1 A above 11V
2
(.013mm thick) land areas.
GLASS PASSIVATED JUNCTION SILICON ZENER DIODE
MAXIMUM RATINGS AND ELECTRICAL CHARACTERISTICS
VOLTAGE - 11 TO 200 Volts
3EZ11 THRU 3EZ200
Power - 3.0 Watts
SYMBOL
T
DO-15
J
I
,T
P
FSM
D
STG
-55 to +150
VALUE
24
15
3
UNITS
mW/
Watts
Amps

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3EZ100 Summary of contents

Page 1

GLASS PASSIVATED JUNCTION SILICON ZENER DIODE VOLTAGE - 11 TO 200 Volts FEATURES l Low profile package l Built-in strain relief l Glass passivated junction l Low inductance l Excellent clamping capability l Typical I less than 1 A above ...

Page 2

... 36 21 3EZ39 39 19 3EZ43 43 17 3EZ47 47 16 3EZ51 51 15 3EZ56 56 13 3EZ62 62 12 3EZ68 68 11 3EZ75 75 10 3EZ82 82 9.1 3EZ91 91 8.2 3EZ100 100 7.5 3EZ110 110 6.8 3EZ120 120 6.3 3EZ130 130 5.8 3EZ140 140 5.3 3EZ150 150 5 3EZ160 160 4.7 3EZ170 170 4.4 3EZ180 180 4.2 3EZ190 190 4 3EZ200 200 3 ...

Page 3

RATING AND CHARACTERISTICS CURVES 3EZ11 THRU 3EZ200 Fig. 3-MAXIMUM SURGE POWER APPLICATION NOTE: Since the actual voltage available from a given zener diode is temperature dependent necessary to determine junction temperature under any set of operating conditions in ...

Page 4

For worst-case design, using expected limits of Iz, limits of P and the extremes Changes in voltage, Vz, can then be found from the zener voltage temperature coefficient, is ...

Page 5

Fig. 9-V = 100 THRU 200 VOLTS Z Fig. 10-TYPICAL THERMAL RESISTANCE ...

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