Diodes Incorporated Photodiodes 4

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Part RoHS Manufacturer Optoelectronic Type Mounting Feature Terminal Finish Configuration Size Maximum Dark Current Maximum Supply Voltage No. of Functions Infrared (IR) Range Peak Wavelength (nm) Packing Method Maximum Response Time Sub-Category Maximum Reverse Voltage Semiconductor Material Maximum Operating Temperature Minimum Reverse Breakdown Voltage Shape Minimum Operating Temperature Additional Features Nominal Light Current JESD-609 Code

BPW50

Diodes Incorporated

PIN PHOTODIODE

TIN LEAD

SINGLE

20 nA

1

YES

925

32 V

RECTANGULAR

DAYLIGHT FILTER

.02 mA

e0

BPW50C

Diodes Incorporated

PIN PHOTODIODE

TIN LEAD

SINGLE

20 nA

1

YES

850

32 V

RECTANGULAR

DAYLIGHT FILTER

.035 mA

e0

BPW41

Diodes Incorporated

PIN PHOTODIODE

SINGLE

30 nA

1

YES

925

32 V

RECTANGULAR

DAYLIGHT FILTER

.025 mA

BPW41D

Diodes Incorporated

PIN PHOTODIODE

SINGLE

1

YES

925

32 V

ROUND

.043 mA

Photodiodes

A photodiode is a type of electronic component that uses light to generate an electric current. It is a semiconductor device that is designed to respond to the presence of light by producing a flow of electrons. Photodiodes are widely used in a variety of applications, including in cameras, optical communication systems, and medical equipment.

Photodiodes work by converting light energy into electrical energy. When light hits the photodiode, it creates an electric current that is proportional to the intensity of the light. This current can be measured and used to determine the presence, intensity, and wavelength of the light.

Photodiodes are available in different types, each with their own characteristics and applications. The most common types of photodiodes are PIN photodiodes, avalanche photodiodes, and Schottky photodiodes.

PIN photodiodes are widely used in optical communication systems and are designed for high-speed and low-noise applications. They have a wide spectral response range and are able to detect both visible and infrared light.

Avalanche photodiodes are used in applications that require high sensitivity and low noise, such as in low-light-level imaging and spectroscopy. They are able to generate high gain and high-speed signals, making them ideal for use in low-light-level applications.

Schottky photodiodes are used in applications that require high-speed and high-frequency response, such as in microwave and millimeter-wave detection. They have a low junction capacitance and are able to detect fast-changing signals.