VEMT2023X01 Sensors, Transducers |
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Allicdata Part #: | VEMT2023X01TR-ND |
Manufacturer Part#: |
VEMT2023X01 |
Price: | $ 0.18 |
Product Category: | Sensors, Transducers |
Manufacturer: | Vishay Semiconductor Opto Division |
Short Description: | NPN PHOTO TRANSISTOR SMD GULLWIN |
More Detail: | Phototransistor 860nm Top View 2-SMD, Gull Wing |
DataSheet: | VEMT2023X01 Datasheet/PDF |
Quantity: | 1000 |
6000 +: | $ 0.16330 |
12000 +: | $ 0.16088 |
30000 +: | $ 0.15725 |
Series: | Automotive, AEC-Q101 |
Packaging: | Tape & Reel (TR) |
Part Status: | Active |
Voltage - Collector Emitter Breakdown (Max): | 20V |
Current - Collector (Ic) (Max): | 50mA |
Current - Dark (Id) (Max): | 1nA |
Wavelength: | 860nm |
Viewing Angle: | 70° |
Power - Max: | 100mW |
Mounting Type: | Surface Mount |
Orientation: | Top View |
Operating Temperature: | -40°C ~ 100°C (TA) |
Package / Case: | 2-SMD, Gull Wing |
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Optical sensors are devices that are used to detect light and determine its intensity and/or color. The most common type of optical sensor is the phototransistor, which is used to measure the intensity of light and convert this light into an electrical signal that can be used to control various mechanical and electrical functions. The VEMT2023X01 is a phototransistor application field and working principle. This article will discuss the operation of the VEMT2023X01 and the usage of this device in various application fields.
The VEMT2023X01 phototransistor is an integrated N-channel phototransistor with a built-in amplifier. It is an optically driven N-channel MOSFET that is used to detect light and convert it into an electrical signal. The output voltage of the device is adjustable according to the intensity of the incident light. The VEMT2023X01 is a high-operability N-channel MOSFET which is able to drive heavy loads without suffering from voltage drop or dynamic instabilities. It also has a short response time, making it suitable for many different applications.
The VEMT2023X01\'s operation is based on the concept of photoelectric effect. This effect states that the intensity of light that strikes the terminal of the device will cause it to generate an electric field. This generated electric field that is produced by the incident light will cause an electron to flow through the internal resistor between the gate and power supply of the device. The resistance of the device determines how much current is allowed to flow through the device which in turn determines the output voltage.
The VEMT2023X01 has many applications in a variety of industries. It is used in the medical field for sensing temperature changes in body tissues, as well as to detect radiation in medical imaging systems. It is also used in industrial automation systems for controlling motors, monitoring the position of machine parts, and adjusting the speed of production lines. In automotive applications, it can be used for controlling headlights and tail lights, as well as to sense the presence of pedestrians in crosswalks. The VEMT2023X01 has also been used in security systems, door opening systems, and motion detection systems.
The VEMT2023X01 can also be used to develop systems with real-time light-based feedback systems. These systems are designed to detect changes in ambient light levels, changes in colored light levels, or the presence of ultraviolet radiation. This type of system can be used to monitor the environment and detect changes which can be used to control a variety of different functions.
The VEMT2023X01 phototransistor is an optically driven N-channel MOSFET. Its operation is based on the principle of photoelectric effect which states that the intensity of light that strikes the terminal of the device will cause it to generate an electric field. This generated electric field is used to control a variety of different functions. The VEMT2023X01 is a high-operability N-channel MOSFET which is suitable for a variety of applications, including medical, industrial automation, automotive, security, and environmental sensing systems.
The specific data is subject to PDF, and the above content is for reference
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