OP603TXV Allicdata Electronics
Allicdata Part #:

OP603TXV-ND

Manufacturer Part#:

OP603TXV

Price: $ 24.33
Product Category:

Sensors, Transducers

Manufacturer: TT Electronics/Optek Technology
Short Description: PHOTOTRNS SILCN NPN HERMETC PILL
More Detail: Phototransistor Top View Pill
DataSheet: OP603TXV datasheetOP603TXV Datasheet/PDF
Quantity: 1000
100 +: $ 22.11160
Stock 1000Can Ship Immediately
$ 24.33
Specifications
Series: *
Packaging: Bulk 
Part Status: Active
Voltage - Collector Emitter Breakdown (Max): 50V
Current - Collector (Ic) (Max): 5mA
Current - Dark (Id) (Max): 25nA
Wavelength: --
Viewing Angle: 36°
Power - Max: 50mW
Mounting Type: Surface Mount
Orientation: Top View
Operating Temperature: -55°C ~ 125°C (TA)
Package / Case: Pill
Description

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Optical Sensors - Phototransistors form an essential part of any machine or system that requires sensing or feedback of some kind. The OP603TXV is a type of optical sensor, specifically a phototransistor, that is used to sense light intensity and helps in controlling the input or output of a system. This phototransistor was developed by Wiliquest Corporation and offers a variety of features for applications. This article will discuss about the application fields and working principles of the OP603TXV.

The OP603TXV is a four pin phototransistor, which is an improved version of the existing OP603TX series. It offers increased sensitivity up to 100 times higher than other phototransistor and uses a two-layer structure to ensure highly efficient photodetection. This phototransistor is used in a wide variety of applications, such as robots, sensors, machines, security systems, industrial machines, and much more due to its superior efficiency and accuracy. The OP603TXV is especially suitable for detecting objects and can be used in asset management, identification, and other applications.

The OP603TXV can detect even the smallest amounts of light and can be used in a vast array of applications. It can be used in robots to detect obstacles and adjust their course, or to sense the presence of people. It can also be used in surveillance systems to detect motion or alarms. Moreover, it can be used in industrial machinery or production lines to detect malfunction in products or parts. It is also useful in medical applications to detect minute changes in the body or to monitor the health of a patient.

The working of the OP603TXV is based on its phototransistor structure. It contains a pair of semiconductor layers which are interconnected such that light can pass through one layer and activate the other. When light passes through the first layer, it activates the second layer which in turn activates the pins of the phototransistor. The signals from these pins can then be processed in order to get various readings and feedback such as light intensity, object presence, or temperature.

To ensure the OP603TXV’s superior accuracy and efficiency, its phototransistor structure utilizes a special field effect transistor (FET) technology. This technology works by allowing the absorption of photons by the first layer and then the emission of electrons from the second layer. The emitted electrons are then absorbed by the FET where they form an electric current that passes through the phototransistor’s pins. This process is responsible for ensuring that the OP603TXV can accurately detect even the smallest amounts of light.

In summary, the OP603TXV is an improved version of the existing OP603TX series. It offers increased sensitivity up to 100 times higher than other phototransistors and utilizes a two-layer structure to ensure highly efficient photodetection. It is used in a variety of applications such as robots, sensors, machines, security systems, and more. The working of the OP603TXV is based on its phototransistor structure which utilizes a special FET technology to ensure its superior accuracy and efficiency. Therefore, it is safe to say that the OP603TXV is an excellent choice for any application that requires the sensing, input, or output of light intensity.

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

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