EL3H7(A)-G Allicdata Electronics
Allicdata Part #:

1080-1504-ND

Manufacturer Part#:

EL3H7(A)-G

Price: $ 0.42
Product Category:

Isolators

Manufacturer: Everlight Electronics Co Ltd
Short Description: OPTOISOLATOR 3.75KV TRANS 4-SSOP
More Detail: Optoisolator Transistor Output 3750Vrms 1 Channel ...
DataSheet: EL3H7(A)-G datasheetEL3H7(A)-G Datasheet/PDF
Quantity: 86
1 +: $ 0.38430
10 +: $ 0.27468
25 +: $ 0.22428
100 +: $ 0.17942
250 +: $ 0.15140
500 +: $ 0.12896
1000 +: $ 0.10093
2500 +: $ 0.09252
5000 +: $ 0.08411
Stock 86Can Ship Immediately
$ 0.42
Specifications
Series: --
Packaging: Tube 
Part Status: Active
Number of Channels: 1
Voltage - Isolation: 3750Vrms
Current Transfer Ratio (Min): 80% @ 5mA
Current Transfer Ratio (Max): 160% @ 5mA
Turn On / Turn Off Time (Typ): --
Rise / Fall Time (Typ): 5µs, 3µs
Input Type: DC
Output Type: Transistor
Voltage - Output (Max): 80V
Current - Output / Channel: 50mA
Voltage - Forward (Vf) (Typ): 1.2V
Current - DC Forward (If) (Max): 50mA
Vce Saturation (Max): 200mV
Operating Temperature: -55°C ~ 110°C
Mounting Type: Surface Mount
Package / Case: 4-SOIC (0.173", 4.40mm Width)
Supplier Device Package: 4-SSOP
Description

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Optoisolators are semiconductor components used to transfer electrical signals between two isolated sections. An optoisolator, also known as an optocoupler, opto-isolator, photocoupler, optical isolator, photocoupler, or photoMOS, provides electrical isolation between two components, but also transfers a control signal in either direction. They are often used in communications, signal processing, and system control. The EL3H7(A)-G is a type of optoisolator that utilizes a transistor, photovoltaic output.

This type of optoisolator is designed for digital signals, for applications in which transistor outputs are desired. With two isolated inputs, the EL3H7(A)-G optoisolator is a self-contained unit that consists of a light-emitting diode (LED) and an integrated photodiode, light-shielding diode, and transistor output. The photodiode is used to convert the light from the LED into a current, which is then converted into a corresponding voltage by the light-shielding diode and transistor.

The main advantage of using an optoisolator is that it eliminates the need for a direct electrical connection between the two components. This helps to reduce noise pick-up and interference, and provides a higher degree of isolation between the two components. In addition, when properly designed, an optoisolator can provide isolation up to a few thousand volts. This makes it ideal for use in many types of industrial and commercial applications.

The EL3H7(A)-G optoisolator provides significant performance advantages over other similar types of optoisolators. Because the transistor output is direct-coupled, this type of optoisolator is much faster than optoisolators that rely on a linear output stage. In addition, the light-shielding diode provides superior noise immunity, while the transistor output is very low power, making it ideal for applications that require a low-power device.

The working principle of the EL3H7(A)-G optoisolator is fairly simple. When a voltage is applied to the input of the optoisolator, it causes the LED to emit light, which is then converted to current by the photodiode. The current is then converted to voltage by the light-shielding diode and transistor, and this voltage is then used as the optoisolator’s output. Depending on the design of the optoisolator, the output voltage will either be a digital logic level or an analog voltage.

The EL3H7(A)-G optoisolator is designed for a wide variety of applications, including communications, signal processing, system control, and a host of other uses. This type of optoisolator is very reliable, and can provide isolation up to a few thousand volts. It is also very fast and offers low power consumption, making it ideal for a variety of applications.

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

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