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1N5243D(DO-35)

Description
Zener Diode, 13V V(Z), 1%, 0.5W, Silicon, Unidirectional, DO-35, GLASS PACKAGE-2
CategoryDiscrete semiconductor    diode   
File Size968KB,4 Pages
ManufacturerMicro Commercial Components (MCC)
Download Datasheet Parametric View All

1N5243D(DO-35) Overview

Zener Diode, 13V V(Z), 1%, 0.5W, Silicon, Unidirectional, DO-35, GLASS PACKAGE-2

1N5243D(DO-35) Parametric

Parameter NameAttribute value
Is it Rohs certified?incompatible
MakerMicro Commercial Components (MCC)
Parts packaging codeDO-35
package instructionO-LALF-W2
Contacts2
Reach Compliance Codecompli
ECCN codeEAR99
Shell connectionISOLATED
ConfigurationSINGLE
Diode component materialsSILICON
Diode typeZENER DIODE
JEDEC-95 codeDO-35
JESD-30 codeO-LALF-W2
JESD-609 codee0
Number of components1
Number of terminals2
Package body materialGLASS
Package shapeROUND
Package formLONG FORM
Peak Reflow Temperature (Celsius)NOT SPECIFIED
polarityUNIDIRECTIONAL
Maximum power dissipation0.5 W
Certification statusNot Qualified
Nominal reference voltage13 V
surface mountNO
technologyZENER
Terminal surfaceTIN LEAD
Terminal formWIRE
Terminal locationAXIAL
Maximum time at peak reflow temperatureNOT SPECIFIED
Maximum voltage tolerance1%
Working test current9.5 mA
Base Number Matches1
MCC
Features
  omponents
20736 Marilla
Street Chatsworth

  !"#
$ %    !"#
1N5221
THRU
1N5267
500 mW
Zener Diode
2.4 to 75 Volts
Wide Voltage Range Available
Glass Package
High Temp Soldering: 250°C for 10 Seconds At Terminals
Maximum Ratings
Operating Temperature: -65°C to +200°C
Storage Temperature: -65°C to +200°C
500 mWatt DC Power Dissipation
Power Derating: 4.0mW/°C above 50°C
Forward Voltage @ 200mA: 1.1 Volts
Figure 1 - Typical Capacitance
100
DO-35
D
A
Cathode
Mark
pf
10
At zero volts
At –2 Volts V
R
D
B
1
0
100
V
Z
200
C
Typical Capacitance (pf) –
versus
– Zener voltage (V
Z
)
Figure 2 - Derating Curve
400
DIMENSIONS
mW
200
DIM
A
B
C
D
INCHES
MIN
---
---
---
1.000
MAX
.166
.079
.020
---
MM
MIN
---
---
---
25.40
MAX
4.2
2.00
.52
---
NOTE
25
100
150
200
Temperature
°C
Power Dissipation (mW) -
Versus
- Temperature
°C
Revision: 1
www.mccsemi.com
2003/12/19
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