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Part RoHS Manufacturer Diode Type Terminal Position Terminal Form No. of Terminals Surface Mount Package Shape Package Body Material Working Test Current Config Maximum Voltage Temperature Coefficient Nominal Reference Voltage Maximum Output Current Maximum Non Repetitive Peak Reverse Power Dissipation Maximum Forward Voltage (VF) Nominal Breakdown Voltage Maximum Reverse Recovery Time Technology Maximum Reverse Current No. of Elements Reverse Test Voltage Package Style (Meter) Sub-Category Maximum Voltage Tolerance Maximum Repetitive Peak Reverse Voltage Maximum Knee Impedance Maximum Operating Temperature Maximum Dynamic Impedance Minimum Operating Temperature Terminal Finish JESD-30 Code Moisture Sensitivity Level (MSL) Polarity Case Connection Qualification Maximum Power Dissipation Additional Features JEDEC-95 Code Maximum Clamping Voltage Minimum Breakdown Voltage Maximum Non Repetitive Peak Forward Current JESD-609 Code Maximum Time At Peak Reflow Temperature (s) Peak Reflow Temperature (C) Diode Element Material Maximum Breakdown Voltage Reference Standard

NC16DWP

Diodes Incorporated

ZENER DIODE

UPPER

NO LEAD

1

YES

SQUARE

UNSPECIFIED

5 mA

SINGLE

16 V

ZENER

1

UNCASED CHIP

TIN LEAD

S-XUUC-N1

UNIDIRECTIONAL

Not Qualified

e0

10

235

SILICON

NC10DWP

Diodes Incorporated

ZENER DIODE

UPPER

NO LEAD

1

YES

SQUARE

UNSPECIFIED

5 mA

SINGLE

10 V

ZENER

1

UNCASED CHIP

TIN LEAD

S-XUUC-N1

UNIDIRECTIONAL

Not Qualified

e0

10

235

SILICON

NC7V5DWP

Diodes Incorporated

ZENER DIODE

UPPER

NO LEAD

1

YES

SQUARE

UNSPECIFIED

5 mA

SINGLE

7.5 V

ZENER

1

UNCASED CHIP

TIN LEAD

S-XUUC-N1

UNIDIRECTIONAL

Not Qualified

e0

10

235

SILICON

NC18DWP

Diodes Incorporated

ZENER DIODE

UPPER

NO LEAD

1

YES

SQUARE

UNSPECIFIED

5 mA

SINGLE

18 V

ZENER

1

UNCASED CHIP

TIN LEAD

S-XUUC-N1

UNIDIRECTIONAL

Not Qualified

e0

10

235

SILICON

NC43DWP

Diodes Incorporated

ZENER DIODE

UPPER

NO LEAD

1

YES

SQUARE

UNSPECIFIED

2 mA

SINGLE

43 V

ZENER

1

UNCASED CHIP

TIN LEAD

S-XUUC-N1

UNIDIRECTIONAL

Not Qualified

e0

10

235

SILICON

NC5V1DWP

Diodes Incorporated

ZENER DIODE

UPPER

NO LEAD

1

YES

SQUARE

UNSPECIFIED

5 mA

SINGLE

5.1 V

ZENER

1

UNCASED CHIP

TIN LEAD

S-XUUC-N1

UNIDIRECTIONAL

Not Qualified

e0

10

235

SILICON

ZEN132V230A16LS

Littelfuse

ZENER DIODE

DUAL

NO LEAD

3

YES

SQUARE

PLASTIC/EPOXY

100 mA

SINGLE

13.4 V

ZENER

1

SMALL OUTLINE

1.49 %

S-PDSO-N3

UNIDIRECTIONAL

40

260

SILICON

RF1492-000

Littelfuse

ZENER DIODE

DUAL

NO LEAD

3

YES

SQUARE

UNSPECIFIED

100 mA

SINGLE

6.5 V

ZENER

1

SMALL OUTLINE

2.3 %

S-XDSO-N3

UNIDIRECTIONAL

Not Qualified

NOT SPECIFIED

NOT SPECIFIED

SILICON

ZEN065V130A24LS

Littelfuse

ZENER DIODE

DUAL

NO LEAD

3

YES

SQUARE

PLASTIC/EPOXY

100 mA

SINGLE

6.5 V

ZENER

1

SMALL OUTLINE

S-PDSO-N3

UNIDIRECTIONAL

Not Qualified

.7 W

NOT SPECIFIED

NOT SPECIFIED

SILICON

ZEN132V075A48LS

Littelfuse

ZENER DIODE

DUAL

NO LEAD

3

YES

SQUARE

PLASTIC/EPOXY

100 mA

SINGLE

13.4 V

ZENER

1

SMALL OUTLINE

S-PDSO-N3

UNIDIRECTIONAL

Not Qualified

.7 W

NOT SPECIFIED

NOT SPECIFIED

SILICON

ZEN065V230A16LS

Littelfuse

ZENER DIODE

DUAL

NO LEAD

3

YES

SQUARE

UNSPECIFIED

100 mA

SINGLE

6.5 V

ZENER

1

SMALL OUTLINE

2.3 %

S-XDSO-N3

UNIDIRECTIONAL

Not Qualified

NOT SPECIFIED

260

SILICON

ZEN098V130A24LS

Littelfuse

ZENER DIODE

DUAL

NO LEAD

3

YES

SQUARE

PLASTIC/EPOXY

100 mA

SINGLE

9.8 V

ZENER

1

SMALL OUTLINE

S-PDSO-N3

UNIDIRECTIONAL

Not Qualified

.7 W

NOT SPECIFIED

NOT SPECIFIED

SILICON

Zener Diodes

Zener diodes are electronic components that are designed to operate in the reverse breakdown region of their P-N junction, providing a stable and predictable voltage output. They are commonly used in electronic circuits as voltage regulators, voltage references, and surge protectors.

Zener diodes operate based on the properties of their P-N junction, which is designed to have a narrow depletion region and a low breakdown voltage. When a reverse voltage is applied to the diode, the depletion region widens, allowing a small reverse current to flow. As the voltage across the diode increases, the reverse current increases exponentially, maintaining a stable voltage across the diode.

Zener diodes offer several advantages over other types of voltage regulators, such as simplicity, low cost, and high efficiency. They do not require any external components, such as capacitors or inductors, and they can provide a stable output voltage over a wide range of input voltages and temperatures.

Zener diodes are commonly used in electronic circuits that require a stable voltage source, such as power supplies, battery chargers, and voltage regulators. They come in different package sizes and voltage ratings, depending on the application and the required performance.