Broadcom Laser Diodes 657

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Part RoHS Manufacturer Optoelectronic Type Mounting Feature Terminal Finish Configuration Size No. of Functions Maximum Forward Current Peak Wavelength (nm) Packing Method Maximum Response Time Sub-Category Semiconductor Material Maximum Operating Temperature Shape Maximum Threshold Current Minimum Operating Temperature Nominal Output Power Additional Features Spectral Bandwidth JESD-609 Code Maximum Forward Voltage

A1112NB

Broadcom

295M887

Broadcom

295G27

Broadcom

295G45

Broadcom

295L38

Broadcom

D2525P40

Broadcom

LASER DIODE

SURFACE MOUNT

.225 A

1545

Laser Diodes

70 Cel

-40 Cel

1.8 V

295G879

Broadcom

A1754W20WWPG

Broadcom

295G21

Broadcom

295L50

Broadcom

TO295J-ADXB

Broadcom

295M25

Broadcom

295G909

Broadcom

A1754W51WWFC

Broadcom

D2547P905

Broadcom

LASER DIODE

SURFACE MOUNT

.225 A

1574

Laser Diodes

75 Cel

-5 Cel

2.5 V

A1754W38WWSC

Broadcom

295L914

Broadcom

A1754W40WWSC

Broadcom

A1754W20WWSC

Broadcom

D2547P888

Broadcom

LASER DIODE

SURFACE MOUNT

.225 A

1588

Laser Diodes

75 Cel

-5 Cel

2.5 V

D2525P33

Broadcom

LASER DIODE

SURFACE MOUNT

.225 A

1550

Laser Diodes

70 Cel

-40 Cel

1.8 V

295M50

Broadcom

A1754W41WWFC

Broadcom

295L35

Broadcom

295L42

Broadcom

A1754W30WWSC

Broadcom

TO293BU-BDX

Broadcom

A1754W60WWFC

Broadcom

295L30

Broadcom

TO293BU-DDX

Broadcom

D571-10N

Broadcom

LASER DIODE

THROUGH HOLE MOUNT

.15 A

1550

.0000000005 s

Laser Diodes

85 Cel

-40 Cel

1 m

1.6 V

A1754W49WWSC

Broadcom

295G19

Broadcom

295M909

Broadcom

295G902

Broadcom

295L868

Broadcom

D2525P52

Broadcom

LASER DIODE

SURFACE MOUNT

.225 A

1535

Laser Diodes

70 Cel

-40 Cel

1.8 V

A1754W55WWSC

Broadcom

A1754W39WWSC

Broadcom

295G892

Broadcom

295L872

Broadcom

295L17

Broadcom

295G33

Broadcom

D2547P881

Broadcom

LASER DIODE

SURFACE MOUNT

.225 A

1594

Laser Diodes

75 Cel

-5 Cel

2.5 V

A1754W36WWPG

Broadcom

295G868

Broadcom

TO295J-CDXC

Broadcom

295L903

Broadcom

Laser Diodes

Laser diodes are electronic devices that emit a coherent and monochromatic beam of light through the process of stimulated emission. Laser diodes are commonly used in a wide range of applications, including telecommunications, medical equipment, and industrial manufacturing.

Laser diodes are similar in structure to regular diodes but are designed to emit light instead of electrical current. They consist of a semiconductor material, typically gallium arsenide, which is doped with impurities to create a p-n junction. When a voltage is applied across the p-n junction, it causes electrons to move from the n-type region to the p-type region, releasing energy in the form of photons.

Laser diodes are characterized by their high efficiency, small size, and ability to produce a narrow and intense beam of light. They are used in a wide range of applications, including fiber-optic communications, optical storage devices, and laser printers.