SML4758A EIC Semiconductor Incorporated, SML4758A Datasheet

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SML4758A

Manufacturer Part Number
SML4758A
Description
Surface Mount Zener Diodes
Manufacturer
EIC Semiconductor Incorporated
Datasheet
Note :
FEATURES :
MECHANICAL DATA :
Page 1 of 2
V
P
SML4728A - SML4764A
Rating at 25 °C ambient temperature unless otherwise specified
DC Power Dissipation at T
Maximum Forward Voltage at I
Junction Temperature Range
Storage Temperature Range
MAXIMUM RATINGS
* Complete Voltage Range 3.3 to 100 Volts
* High peak reverse power dissipation
* High reliability
* Low leakage current
* Pb / RoHS Free
* Case : SMA Molded plastic
* Epoxy : UL94V-O rate flame retardant
* Polarity : Color band denotes cathode end
* Mounting position : Any
* Weight : 0.060 gram (Approximately)
Z
D
(1) P.C.B. Mounted on 0.31x0.31x0.08" (8x8x2mm) copper areas pad
: 3.3 - 100 Volts
: 1 Watt
Rating
L
= 75 °C (Note1)
F
= 200 mA
1.25
1.00
0.75
0.50
0.25
0
0
Fig. 1 MAXIMUM CONTINUOUS POWER DERATING
P.C.B. Mounted on
0.31x0.31x0.08" (8x8x2mm)
copper areas pads
25
T
L,
50
LEAD TEMPERATURE (°C)
Symbol
75
T
P
V
T
STG
SURFACE MOUNT SILICON
D
F
J
100
125
ZENER DIODES
Dimensions in millimeters
TH97/10561QM
150
1.6 ± 0.25
2.6 ± 0.15
1.6 ± 0.25
- 55 to + 150
- 55 to + 150
175
Value
1.0
1.2
SMA
Rev. 05 : September 18, 2008
TW00/17276EM
2.3 ± 0.2
1.3 ± 0.2
SGS TH07/1033
IATF 0060636
Unit
°C
°C
W
V

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SML4758A Summary of contents

Page 1

SML4728A - SML4764A V : 3.3 - 100 Volts Watt D FEATURES : * Complete Voltage Range 3.3 to 100 Volts * High peak reverse power dissipation * High reliability * Low leakage current * Pb ...

Page 2

... SML4751A 33 7.5 SML4752A 36 7.0 SML4753A 39 6.5 SML4754A 43 6.0 SML4755A 47 5.5 SML4756A 51 5.0 SML4757A 56 4.5 SML4758A 62 4.0 SML4759A 68 3.7 SML4760A 75 3.3 SML4761A 82 3.0 SML4762A 91 2.8 SML4763A 100 2.5 SML4764A Notes : (1) Standard voltage tolerance is ± 5%, No Suffix ± 10% (2) Surge current is a non-repetitive, 8.3ms pulse width square wave or equivalent sine-wave superimposed on IZT per JEDEC Method (3) " SML " will be omitted in marking on the diode. ...

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