MOC8050M Allicdata Electronics
Allicdata Part #:

MOC8050M-ND

Manufacturer Part#:

MOC8050M

Price: $ 0.00
Product Category:

Isolators

Manufacturer: ON Semiconductor
Short Description: OPTOISO 4.17KV DARLINGTON 6DIP
More Detail: Optoisolator Darlington Output 4170Vrms 1 Channel ...
DataSheet: MOC8050M datasheetMOC8050M Datasheet/PDF
Quantity: 8206
Stock 8206Can Ship Immediately
Specifications
Output Type: Darlington
Supplier Device Package: 6-DIP
Package / Case: 6-DIP (0.300", 7.62mm)
Mounting Type: Through Hole
Operating Temperature: -40°C ~ 100°C
Vce Saturation (Max): --
Current - DC Forward (If) (Max): 60mA
Voltage - Forward (Vf) (Typ): 1.18V
Current - Output / Channel: 150mA
Voltage - Output (Max): 80V
Series: --
Input Type: DC
Rise / Fall Time (Typ): --
Turn On / Turn Off Time (Typ): 8.5µs, 95µs
Current Transfer Ratio (Max): --
Current Transfer Ratio (Min): 500% @ 10mA
Voltage - Isolation: 4170Vrms
Number of Channels: 1
Part Status: Active
Packaging: Tube 
Description

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<p>The MOC8050M is an optoisolator device used in a variety of applications. It belongs to the transistor, photovoltaic output family of optoisolators and is made up of a gallium arsenide infrared emitting diode and an NPN silicon phototransistor. This device provides a direct couplings between input and output and helps to eliminate noise and other interference between the input and the output.</p><p>The MOC8050M is suitable for a variety of applications, including industrial and process control, automotive, medical, and consumer, among others. It is also capable of supplying power transfers in both directions. As such, it is often used to transfer measured or controlled data between a controller and a display, to transmit interconnect signals, or for communication between remote devices.</p><p>The working principle of the MOC8050M is based on a phototransistor and an infrared LED. The phototransistor is continuously in an off configuration and is set in motion by the voltage changes generated by the LED. When the LED is enabled, the voltage changes sent to the phototransistor provide an output that can be read or written to. In a standard optoisolator circuit, the LED needs to be enabled first before the output can be read or written to. This ensures that the only communication between the LED and the phototransistor is the desired signal and not some kind of noise.</p><p>The MOC8050M operates at a maximum current of 5 mA which helps to keep power consumption low. It is able to handle a maximum operating temperature of 85°C and can be stored in a temperature range of -40°C to 125°C. The MOC8050M requires 4.5 max Volts (V) to operate and can operate at 2.0 V with slightly reduced performance. This device is also able to tolerate a Maximum Voltage (Vc) of 61 Volts.</p><p>The MOC8050M can be used in a variety of different circuits, depending on the application. Some common circuits include DC level shifting circuits, AC level shifting circuits, current limiters, low noise circuits, and current transfer circuits. DC level shifting circuits refer to a circuit where the voltage of the input signal is increased or decreased; this is used in a variety of applications such as DC motor control systems. AC level shifting circuits are similar, but are used to shift between AC voltages.</p><p>Current limiters refer to a circuit where the current in an electrical system is limited in order to avoid overloading or damaging the system. Low noise circuits, is a type of circuit that are designed to minimize the amount of noise that is generated in an electrical system. Finally, current transfer circuits are used to limit the amount of current that can flow between two circuits, such as the input and output of a computer.</p><p>Overall, the MOC8050M is an optoisolator device that is used in a variety of applications. It is part of the transistor, photovoltaic output family of optoisolators and it is made up of an infrared diode and an NPN silicon phototransistor. It is capable of transferring measured or controlled data between a controller and a display and can be used to transmit signals and for remote communication. It operates at a maximum current of 5 mA and is able to handle a maximum operating temperature of 85°C. It is an ideal device for a variety of applications, including industrial and process control, automotive, medical, and consumer.</p>

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

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