PVI5033RPBF Allicdata Electronics
Allicdata Part #:

PVI5033RPBF-ND

Manufacturer Part#:

PVI5033RPBF

Price: $ 8.57
Product Category:

Isolators

Manufacturer: Infineon Technologies
Short Description: OPTOISO 3.75KV 2CH PHVOLT 8-DIP
More Detail: Optoisolator Photovoltaic Output 3750Vrms 2 Channe...
DataSheet: PVI5033RPBF datasheetPVI5033RPBF Datasheet/PDF
Quantity: 1100
1 +: $ 7.78680
10 +: $ 7.45479
25 +: $ 5.79802
100 +: $ 4.96976
250 +: $ 4.72127
500 +: $ 4.47278
1000 +: $ 4.22430
Stock 1100Can Ship Immediately
$ 8.57
Specifications
Output Type: Photovoltaic
Supplier Device Package: 8-DIP
Package / Case: 8-DIP (0.300", 7.62mm)
Mounting Type: Through Hole
Operating Temperature: -40°C ~ 85°C
Vce Saturation (Max): --
Current - DC Forward (If) (Max): 40mA
Voltage - Forward (Vf) (Typ): --
Current - Output / Channel: 5µA
Voltage - Output (Max): 10V
Series: PVI
Input Type: DC
Rise / Fall Time (Typ): --
Turn On / Turn Off Time (Typ): 2.5ms, 500µs (Max)
Current Transfer Ratio (Max): --
Current Transfer Ratio (Min): --
Voltage - Isolation: 3750Vrms
Number of Channels: 2
Part Status: Active
Packaging: Tube 
Description

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Optoisolators are devices which allow the isolation of two circuits from each other while providing a signal path between them. The PVI5033RPBF is a type of optoisolator known as a Transistor, Photovoltaic Output, which allows for the isolation and transfer of signals between two different circuits. It is available in a package that is around 4x3mm. This size makes it ideal for use in space-constrained environments, making it perfect for prototyping, testing, and even production applications.

The PVI5033RPBF works by converting an electrical signal from one circuit into a light signal. This light can then be sent across an air gap to the photodiode on the second circuit, which then turns it back into electricity. As the light never crosses physical contact, the two circuits are completely isolated from each other. The key to the correct functioning of the PVI5033RPBF is in the voltage level of the signal being transmitted; the optical side of the device is designed to work with a signal that is no higher than 6V in either polarity.

The PVI5033RPBF has a wide range of applications, such as protection from surges in industrial processes, automotive, and aerospace applications. It can also be used in telecommunications and medical systems, where the isolated signals are required in order to protect both the user and the system. Additionally, due to its excellent signal isolation, the PVI5033RPBF can be used in applications where isolation is of paramount importance, such as in medical instrumentation and industrial controllers.

The PVI5033RPBF works by creating a current path between the input and output terminals. The input signal is first sent through an LED, which then illuminates a silicone photosensitive device (PD). The light produced by the LED then activates the PD, which in turn allows current to flow from the input terminal to the output terminal. The current is then sensed by the output terminal, which then sends it along the output path. The amount of current that can flow from the input to the output is determined by the size of the gap between the LED and the PD (the air gap), as well as the current regulation switch (the resistor).

The PVI5033RPBF is designed to be very efficient and has a low power consumption; it can also provide a very reliable signal transfer even in high vibration or shock environments. Additionally, it has a fast response time and is able to respond to input changes in both directions. This makes the device perfect for applications that require a rapid reaction time, such as medical instrumentation or industrial controllers.

In conclusion, the PVI5033RPBF is an excellent optoisolator device for use in a range of applications from protection from surge currents in industrial processes to providing reliable and fast signal transfer. It is also relatively small in size, making it well suited to prototyping, testing and even production applications. The PD is designed to work with a signal that is no higher than 6V in either polarity, making it ideal for applications with rapidly changing input signals.

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

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