1N755 MCC [Micro Commercial Components], 1N755 Datasheet

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1N755

Manufacturer Part Number
1N755
Description
0.5W Silicon Planar Zener Diodes
Manufacturer
MCC [Micro Commercial Components]
Datasheet

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
1N755
Manufacturer:
ST
0
Part Number:
1N755A
Manufacturer:
ST
0
Part Number:
1N755A-1JANTX
Manufacturer:
ZCOMM
Quantity:
1 400
Electrical Characteristics @ 25 C Unless Otherwise Specified
NOTE:
Mechanical Data
Maximum Ratings
Features
Zener Current
Power Dissipation
@ T
Junction Temperature
Storage Temperature
Range
Thermal resistance
Forward Voltage
@ I
M C C
Case: DO-35 glass case
Polarity: Color band denotes cathode end
Weight: Approx. 0.13 gram
Zener Voltage 3.3V to 12V
Silicon Planar Power Zener Diodes
Standards zener voltage tolerance is ±10% , Add suffix “A” for
±5% tolerance, other tolerances are available upon request
F
A
=200mA
1) Valid provided that a distance of 8mm from case are kept
2) Power derating: 4.0mW/
=50
o
at ambient temperature
C
Symbol
www.mccsemi.com
Symbol
T
P
R
T
STG
tot
V
J
q
o
JA
F
C above 50
  omponents
21201 Itasca Street Chatsworth

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See Table 1
-65 to 175
Maximum
Value
500
175
o
300
C
1.5
o
Units
mW
Unit
C/W
o
o
V
C
C
DIM
A
B
C
D
0.5W Silicon Planar
INCHES
1.000
MIN
---
---
---
Zener Diodes
1N746
1N759
THRU
MAX
.166
.079
.020
---
DO-35
DIMENSIONS
D
D
A
25.40
MIN
---
---
---
MM
C
B
Cathode
Mark
MAX
2.00
4.2
.52
---
NOTE

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1N755 Summary of contents

Page 1

Features Zener Voltage 3.3V to 12V Silicon Planar Power Zener Diodes Standards zener voltage tolerance is ±10% , Add suffix “A” for ±5% tolerance, other tolerances are available upon request Mechanical Data Case: DO-35 glass case Polarity: ...

Page 2

... Note: 1) Tested with pulses t 2) Valid provided that leads are kept at ambient temperature at a distance of 8mm from case. 3) Zener impedance derived by superimposing current equal to 10 Allowance has been made for the increase in V the increase in junction temperature as the unit approaches thermal equilibrium at the power dissipation of 400mW ...

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