BPY 62 Allicdata Electronics
Allicdata Part #:

475-3519-ND

Manufacturer Part#:

BPY 62

Price: $ 2.14
Product Category:

Sensors, Transducers

Manufacturer: OSRAM Opto Semiconductors Inc.
Short Description: PHOTOTRANSISTOR TO-18
More Detail: Phototransistor 830nm Top View TO-206AA, TO-18-3 M...
DataSheet: BPY 62 datasheetBPY 62 Datasheet/PDF
Quantity: 1960
1 +: $ 1.94670
10 +: $ 1.72179
25 +: $ 1.27739
100 +: $ 1.11069
250 +: $ 0.99961
500 +: $ 0.88852
1000 +: $ 0.76359
2500 +: $ 0.72193
5000 +: $ 0.69417
Stock 1960Can Ship Immediately
$ 2.14
Specifications
Part Status: Active
Voltage - Collector Emitter Breakdown (Max): 35V
Current - Collector (Ic) (Max): 100mA
Current - Dark (Id) (Max): 50nA
Wavelength: 830nm
Viewing Angle: 16°
Power - Max: 200mW
Mounting Type: Through Hole
Orientation: Top View
Operating Temperature: -40°C ~ 125°C (TA)
Package / Case: TO-206AA, TO-18-3 Metal Can
Series: --
Packaging: Bulk 
Description

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Optical Sensors are used to detect light and other electro-magnetic radiation. Phototransistors are a type of optical sensor which utilizes a transducer which converts light input into an electrical output which can be received by an external device. An example of a phototransistor is the BPY 62 application field and working principle.

The BPY 62 is a phototransistor consisting of four parts, the base, emitter, collector, and photodiode. The base is the primary contact on the phototransistor, and serves as the connection between the emitter and the collector. The emitter is the lead that provides the ground connection between the collector and the base. The collector is the lead which receives the electrical current produced when light energy is incident on the photodiode. The photodiode is a semiconductor which absorbs the incident photons energy and produces a current dependent on the intensity of the light.

The BPY 62 phototransistor is a silicon-based, PIN diode type. This type of phototransistor is characterized as having high sensitivity and low leakage current, making it ideal for use in many different applications. It is typically used to detect small amounts of light from a distance, or for optical sensing applications. It can also be used for applications such as optical communications, infrared detection, and amplifying very low light signals.

The working principle of a phototransistor is based on the relationship between the electric field and the charge carriers. When a light is incident on the photodiode, electrons are released from the material, setting up an electric current between the collector and the emitter. The collector is then able to collect the electrons, and this produces a current which is used to drive the external device. This process is known as the photoelectric effect.

The BPY 62 phototransistor is also very tolerant of temperature changes, making it suitable for many applications that require extended operation. It has a low dark current, which is important when measuring light signals from a distance. In addition, the BPY 62 is highly resistant to electrical interference which is often found in industrial applications.

The BPY 62 is primarily used for applications in which small amounts of light energy must be detected from long distances. It can be used to detect light signals from low power sensors, or to amplify light signals from a transmitter. It is also used in laboratory studies and computer-aided analysis, as well as for medical diagnoses and plant monitoring. The BPY 62 is well-suited to security systems, because of its high sensitivity and portability.

In conclusion, the BPY 62 is a phototransistor which is characterized by its high sensitivity and low leakage current. It can be used for optical sensing applications such as optical communications, infrared detection, and amplifying low light signals. The BPY 62 has a low dark current and is highly resistant to electrical interference, making it suitable for many applications which require extended operation. The BPY 62 is primarily used for applications in which small amounts of light energy must be detected from long distances.

The specific data is subject to PDF, and the above content is for reference

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