MOC80503SD Allicdata Electronics
Allicdata Part #:

MOC80503SD-ND

Manufacturer Part#:

MOC80503SD

Price: $ 0.00
Product Category:

Isolators

Manufacturer: ON Semiconductor
Short Description: OPTOISO 5.3KV DARLINGTON 6-SMD
More Detail: Optoisolator Darlington Output 5300Vrms 1 Channel ...
DataSheet: MOC80503SD datasheetMOC80503SD Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Output Type: Darlington
Supplier Device Package: 6-SMD
Package / Case: 6-SMD, Gull Wing
Mounting Type: Surface Mount
Operating Temperature: -55°C ~ 100°C
Vce Saturation (Max): --
Current - DC Forward (If) (Max): 60mA
Voltage - Forward (Vf) (Typ): 1.15V
Current - Output / Channel: 150mA
Voltage - Output (Max): 80V
Series: --
Input Type: DC
Rise / Fall Time (Typ): --
Turn On / Turn Off Time (Typ): 3.5µs, 95µs
Current Transfer Ratio (Max): --
Current Transfer Ratio (Min): 500% @ 10mA
Voltage - Isolation: 5300Vrms
Number of Channels: 1
Part Status: Obsolete
Packaging: Tape & Reel (TR) 
Description

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Optoisolators, also known as optocouplers, are optoelectronic components used to isolate electrical signals between two circuits. As part of the optoelectronics family, Optoisolators include optically coupled devices known as Transistor, Photovoltaic Output (MOC80503SD), that have a photocoupler with a LED and a photodetector. The MOC80503SD is one of the most popular optocouplers used in a wide range of applications due to its fast switching speed and relative low cost. This article will discuss the application field and working principle of the MOC80503SD optocoupler.

The MOC80503SD Optoisolator has a number of advantages over traditional mechanical relays. First, the MOC80503SD is much smaller than mechanical relays and can be easily integrated into small electronic devices or circuit boards. Second, the optoelectronic optocoupler has much better isolation between input and output than other electronic components. The LED in the optocoupler acts as a transmitter that sends light signals to the photodetector. The photodetector in turn converts the optical signal into an electrical signal, thus providing electrical isolation between the input and output circuits. Lastly, the MOC80503SD optocoupler has fast switching speeds (up to 10KHz) and great noise immunity, making it ideal for the demands of modern digital systems.

The MOC80503SD Optoisolator can be used in a variety of applications, including digital input/output, remote switching and dimming, e-metering and pulse-width modulation (PWM). It is also ideal for controlling inductive loads, such as motors, as well as for low-power switching and resistance measurement. The MOC80503SDOptoisolator can also be used for signal conditioning and high-speed data transmission applications. Additionally, the MOC80503SD optocoupler is used to isolate signals between different pieces of equipment, such as medical monitoring devices and computer systems.

The working principle of the MOC80503SD optocoupler is based on the conversion of light into electrical energy. At the input side of the optocoupler, an LED diode emits light when an active voltage signal is applied. This light is then detected by a photodetector on the output side of the optocoupler which converts the light signal into an electrical signal. This electrical signal is then transferred to the output side of the optocoupler without any direct connection between the input and the output. This makes the MOC80503SD optocoupler a reliable and secure device, as the electrical signals are completely isolated from one another, thus preventing any risk of interference.

In conclusion, the MOC80503SD optocoupler is an optoelectronic device with a variety of uses in a range of applications. With fast switching speeds, great noise immunity and high level of electrical isolation, the MOC80503SD optocoupler is ideal for digital input/output, remote switching and dimming, pulse-width modulation, inductive load control and low-power switching applications. The working principle of the optocoupler is based on the conversion of light into electrical energy, with the LED diode acting as a transmitter and the photodetector converting the light signal into an electrical signal which is then transferred to the output side of the optocoupler providing electrical isolation between the input and the output.

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

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