PC817X2NIP0F Allicdata Electronics
Allicdata Part #:

425-2192-2-ND

Manufacturer Part#:

PC817X2NIP0F

Price: $ 0.00
Product Category:

Isolators

Manufacturer: Sharp Microelectronics
Short Description: OPTOISOLATOR 5KV TRANS 4SMD
More Detail: Optoisolator Transistor Output 5000Vrms 1 Channel ...
DataSheet: PC817X2NIP0F datasheetPC817X2NIP0F Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Output Type: Transistor
Supplier Device Package: 4-SMD
Package / Case: 4-SMD, Gull Wing
Mounting Type: Surface Mount
Operating Temperature: -30°C ~ 100°C
Vce Saturation (Max): 200mV
Current - DC Forward (If) (Max): 50mA
Voltage - Forward (Vf) (Typ): 1.2V
Current - Output / Channel: 50mA
Voltage - Output (Max): 80V
Series: --
Input Type: DC
Rise / Fall Time (Typ): 4µs, 3µs
Turn On / Turn Off Time (Typ): --
Current Transfer Ratio (Max): 230% @ 5mA
Current Transfer Ratio (Min): 130% @ 5mA
Voltage - Isolation: 5000Vrms
Number of Channels: 1
Part Status: Discontinued at Digi-Key
Packaging: Tape & Reel (TR) 
Description

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Optoisolators are widely used in modern industrial and commercial applications, including medical imaging, automotive, and communication technology. The PC817X2NIP0F optoisolator is one of such devices, offering a degree of electrical isolation, environmental protection, and optical coupling between two circuits. This article explains the application fields and working principles of this device.

General Description of PC817X2NIP0F

The PC817X2NIP0F is a high-performance optoisolator. It combines solid-state optical and electrical isolation with a 16-pin DIP (dual in-line package) configuration. Moreover, the device has a built-in Schmitt trigger for the output interface. The optoisolator features a photocoupler and transistor output, which provides excellent noise immunity and transient protection.

The PCB (printed circuit board) mounted version features only the package case, requiring less mounting space compared to other optoisolators. Additionally, the device also provides an extra creepage distance.

Application Fields of PC817X2NIP0F

PC817X2NIP0F optoisolators have extensive uses in multiple application fields. It can be used in various applications, such as data transfer lines, isolation amplifiers, power supplies, instrumentation amplifiers, DC to DC converters, and industrial controllers, among others.

The device is also used in communication products, including Ethernet routers, modems, and other communication equipment that require signal control and isolation functions between ICs (integrated circuits). Additionally, the optoisolator is widely used in automotive applications that involve high voltage and current operations.

It also finds its way into various medical imaging and healthcare applications for controlling relay outputs when high speed control is desired. Its excellent electrical and optical isolation is well-suited for signal integrity, displaying anti-interference performance, and protecting signal circuits in medical imaging systems.

Working Principles of PC817X2NIP0F Optoisolator

The working principle of the PC817X2NIP0F optoisolator is based on its photovoltaic output design, making it suitable for multiple applications. The device works by converting electrical energy into optical energy via an LED (light-emitting diode). It then passes this light energy through a quenching series resistor to achieve input or relay output control.

The output feature of the device is based on a phototransistor. Whenever light energy is received in the photo-transistor, it enables the transistor, which allows voltage and current flows to the output circuit. When there is no light, the transistor is closed, cutting off the voltage and current flows. In addition, the device is also suitable for applications such as optical micro fiber sensors, optical choppers, and low temperature electronics.

Conclusion

The PC817X2NIP0F optoisolator is a high-performance device that offers excellent electrical and optical isolation, and is suitable for a variety of applications. It has a built-in Schmitt trigger and a photocoupler and transistor output, which makes it ideal for communication, automotive, and medical imaging applications. The working principle of the device is based on its photocoupler and transistor output design, which enables it to convert electrical energy into optical energy.

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

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