Motorola Bridge Rectifier Diodes 9

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Part RoHS Manufacturer Diode Type Terminal Position Terminal Form No. of Terminals Surface Mount Package Shape Package Body Material Config Maximum Output Current Maximum Forward Voltage (VF) Maximum Reverse Recovery Time Technology Maximum Reverse Current No. of Elements Reverse Test Voltage Package Style (Meter) Sub-Category Maximum Repetitive Peak Reverse Voltage Maximum Operating Temperature Minimum Operating Temperature Terminal Finish JESD-30 Code Moisture Sensitivity Level (MSL) Case Connection Qualification Maximum Power Dissipation Additional Features No. of Phases JEDEC-95 Code 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 Reference Standard

MDA990-6

Motorola

BRIDGE RECTIFIER DIODE

UPPER

SOLDER LUG

4

NO

SQUARE

PLASTIC/EPOXY

BRIDGE, 4 ELEMENTS

30 A

1.07 V

.0005 uA

4

FLANGE MOUNT

600 V

175 Cel

-65 Cel

S-PUFM-D4

ISOLATED

Not Qualified

1

300 A

SILICON

UL RECOGNIZED

MDA3502

Motorola

BRIDGE RECTIFIER DIODE

UPPER

SOLDER LUG

4

NO

SQUARE

PLASTIC/EPOXY

BRIDGE, 4 ELEMENTS

35 A

1.1 V

.0001 uA

4

FLANGE MOUNT

Bridge Rectifier Diodes

200 V

175 Cel

-65 Cel

S-PUFM-D4

ISOLATED

Not Qualified

1

400 A

SILICON

UL RECOGNIZED

MDA3506

Motorola

BRIDGE RECTIFIER DIODE

UPPER

SOLDER LUG

4

NO

SQUARE

PLASTIC/EPOXY

BRIDGE, 4 ELEMENTS

35 A

1.1 V

.0001 uA

4

FLANGE MOUNT

Bridge Rectifier Diodes

600 V

175 Cel

-65 Cel

S-PUFM-D4

ISOLATED

Not Qualified

1

400 A

SILICON

UL RECOGNIZED

MDA3508

Motorola

BRIDGE RECTIFIER DIODE

UPPER

SOLDER LUG

4

NO

SQUARE

PLASTIC/EPOXY

BRIDGE, 4 ELEMENTS

35 A

1.1 V

.0001 uA

4

FLANGE MOUNT

Bridge Rectifier Diodes

800 V

175 Cel

-65 Cel

S-PUFM-D4

ISOLATED

Not Qualified

1

400 A

SILICON

UL RECOGNIZED

MDA2500

Motorola

BRIDGE RECTIFIER DIODE

UPPER

SOLDER LUG

4

NO

SQUARE

PLASTIC/EPOXY

BRIDGE, 4 ELEMENTS

25 A

1.05 V

.0001 uA

4

FLANGE MOUNT

Bridge Rectifier Diodes

50 V

175 Cel

-65 Cel

S-PUFM-D4

ISOLATED

Not Qualified

1

400 A

SILICON

UL RECOGNIZED

MDA2504

Motorola

BRIDGE RECTIFIER DIODE

UPPER

SOLDER LUG

4

NO

SQUARE

PLASTIC/EPOXY

BRIDGE, 4 ELEMENTS

25 A

1.05 V

.0001 uA

4

FLANGE MOUNT

Bridge Rectifier Diodes

400 V

175 Cel

-65 Cel

S-PUFM-D4

ISOLATED

Not Qualified

1

400 A

SILICON

UL RECOGNIZED

MDA3504

Motorola

BRIDGE RECTIFIER DIODE

UPPER

SOLDER LUG

4

NO

SQUARE

PLASTIC/EPOXY

BRIDGE, 4 ELEMENTS

35 A

1.1 V

.0001 uA

4

FLANGE MOUNT

Bridge Rectifier Diodes

400 V

175 Cel

-65 Cel

S-PUFM-D4

ISOLATED

Not Qualified

1

400 A

SILICON

UL RECOGNIZED

MDA970-1

Motorola

BRIDGE RECTIFIER DIODE

SINGLE

THROUGH-HOLE

4

NO

RECTANGULAR

PLASTIC/EPOXY

BRIDGE, 4 ELEMENTS

4 A

4

FLANGE MOUNT

50 V

R-PSFM-T4

Not Qualified

1

50 V

100 A

SILICON

MDA970-2

Motorola

BRIDGE RECTIFIER DIODE

SINGLE

THROUGH-HOLE

4

NO

RECTANGULAR

PLASTIC/EPOXY

BRIDGE, 4 ELEMENTS

4 A

4

IN-LINE

100 V

R-PSIP-T4

ISOLATED

Not Qualified

1

100 V

100 A

SILICON

Bridge Rectifier Diodes

Bridge rectifier diodes are electronic components used to convert AC voltage to DC voltage in electronic circuits. They are commonly used in power supplies, battery chargers, and other devices that require a DC power source.

Bridge rectifier diodes consist of four diodes arranged in a bridge configuration. The input AC voltage is applied to the two outer terminals of the bridge, while the output DC voltage is taken from the two inner terminals. The diodes in the bridge allow the current to flow in only one direction, effectively converting the AC voltage to DC voltage.

Bridge rectifier diodes offer several advantages over other types of rectifiers, such as simplicity, efficiency, and reliability. They do not require a center-tapped transformer and can provide a higher output voltage than other rectifiers with the same input voltage.

Bridge rectifier diodes 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.