14 Diodes & Rectifiers 57

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Part RoHS Manufacturer Diode Type Terminal Position Terminal Form No. of Terminals Surface Mount Package Shape Minimum Quality Factor Package Body Material Working Test Current Config Frequency Band Nominal Reference Voltage Maximum Output Current Maximum Forward Voltage (VF) Maximum Diode Capacitance Nominal Breakdown Voltage Maximum Reverse Recovery Time Technology Maximum Reverse Current No. of Elements Reverse Test Voltage Nominal Regulation Current (Ireg) Package Style (Meter) Sub-Category Maximum Voltage Tolerance Maximum Repetitive Peak Reverse Voltage Maximum Operating Temperature Application Maximum Dynamic Impedance Maximum Limiting Voltage Minimum Operating Temperature Terminal Finish JESD-30 Code Moisture Sensitivity Level (MSL) Polarity Case Connection Qualification Maximum Power Dissipation Nominal Diode Capacitance Additional Features No. of Phases JEDEC-95 Code Diode Cap Tolerance 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 Minimum Diode Capacitance Ratio Reference Standard

1N5774

Texas Instruments

RECTIFIER DIODE

DUAL

FLAT

14

YES

RECTANGULAR

CERAMIC, METAL-SEALED COFIRED

COMPLEX

.02 us

16

FLATPACK

R-CDFP-F14

Not Qualified

.5 W

SILICON

1N5775

Texas Instruments

RECTIFIER DIODE

DUAL

FLAT

14

YES

RECTANGULAR

CERAMIC, METAL-SEALED COFIRED

COMPLEX

.02 us

16

FLATPACK

R-CDFP-F14

Not Qualified

.5 W

SILICON

MMAD1107

Onsemi

RECTIFIER DIODE

DUAL

GULL WING

14

YES

RECTANGULAR

PLASTIC/EPOXY

COMPLEX

.4 A

.008 us

16

SMALL OUTLINE

R-PDSO-G14

Not Qualified

.5 W

SILICON

MMAD1103

Onsemi

RECTIFIER DIODE

DUAL

GULL WING

14

YES

RECTANGULAR

PLASTIC/EPOXY

COMPLEX

.4 A

.008 us

16

SMALL OUTLINE

50 V

R-PDSO-G14

Not Qualified

.5 W

SILICON

MMAD1105

Onsemi

RECTIFIER DIODE

DUAL

GULL WING

14

YES

RECTANGULAR

PLASTIC/EPOXY

COMMON CATHODE, 8 ELEMENTS

.4 A

.008 us

8

SMALL OUTLINE

TIN LEAD

R-PDSO-G14

Not Qualified

.5 W

e0

SILICON

MAD130P

Onsemi

RECTIFIER DIODE

DUAL

THROUGH-HOLE

14

NO

RECTANGULAR

PLASTIC/EPOXY

COMPLEX

.4 A

.008 us

20

IN-LINE

40 V

R-PDIP-T14

Not Qualified

.6 W

SILICON

MAD1107F

Onsemi

RECTIFIER DIODE

DUAL

FLAT

14

YES

RECTANGULAR

CERAMIC, METAL-SEALED COFIRED

COMPLEX

.4 A

.008 us

16

SMALL OUTLINE

50 V

R-CDSO-F14

Not Qualified

.6 W

SILICON

MMAD1109

Onsemi

RECTIFIER DIODE

DUAL

GULL WING

14

YES

RECTANGULAR

PLASTIC/EPOXY

SEPARATE, 7 ELEMENTS

.4 A

.008 us

7

SMALL OUTLINE

R-PDSO-G14

Not Qualified

.5 W

SILICON

MAD130C

Onsemi

RECTIFIER DIODE

DUAL

THROUGH-HOLE

14

NO

RECTANGULAR

CERAMIC, METAL-SEALED COFIRED

COMPLEX

.4 A

.008 us

20

IN-LINE

40 V

R-CDIP-T14

Not Qualified

.6 W

SILICON

Diodes & Rectifiers

Diodes and rectifiers are electronic components that allow current to flow in one direction only, and they are widely used in electronic circuits for signal processing, power conversion, and protection.

A diode is a two-terminal electronic component that allows current to flow in one direction only. It consists of a P-N junction, which acts as a one-way valve for current flow. When the diode is forward-biased, it allows current to flow in the forward direction, while when it is reverse-biased, it blocks the current flow.

Rectifiers are electronic devices that convert AC voltage to DC voltage. They consist of one or more diodes arranged in a specific configuration, such as half-wave, full-wave, or bridge rectifier. Rectifiers allow the current to flow in only one direction, effectively converting the AC voltage to DC voltage.

Diodes and rectifiers are used in a wide range of applications, such as power supplies, battery chargers, voltage regulators, and signal processing circuits. They offer several advantages over other types of components, such as simplicity, efficiency, and reliability.

Diodes and rectifiers come in different package sizes and current ratings, depending on the application and the required performance. They can be integrated into a circuit board or mounted in a separate enclosure, depending on the application and the space available.