Allicdata Part #: | CNX82AW-ND |
Manufacturer Part#: |
CNX82AW |
Price: | $ 0.00 |
Product Category: | Isolators |
Manufacturer: | ON Semiconductor |
Short Description: | OPTOISOLATOR 5.3KV TRANS 6-DIP |
More Detail: | Optoisolator Transistor Output 5300Vrms 1 Channel ... |
DataSheet: | CNX82AW Datasheet/PDF |
Quantity: | 1000 |
1 +: | 0.00000 |
Output Type: | Transistor |
Supplier Device Package: | 6-DIP |
Package / Case: | 6-DIP (0.400", 10.16mm) |
Mounting Type: | Through Hole |
Operating Temperature: | -55°C ~ 100°C |
Vce Saturation (Max): | 400mV |
Current - DC Forward (If) (Max): | 100mA |
Voltage - Forward (Vf) (Typ): | 1.2V |
Current - Output / Channel: | 100mA |
Voltage - Output (Max): | 50V |
Series: | -- |
Input Type: | DC |
Rise / Fall Time (Typ): | -- |
Turn On / Turn Off Time (Typ): | 3µs, 3µs |
Current Transfer Ratio (Max): | 250% @ 10mA |
Current Transfer Ratio (Min): | 40% @ 10mA |
Voltage - Isolation: | 5300Vrms |
Number of Channels: | 1 |
Part Status: | Obsolete |
Packaging: | Tube |
Due to market price fluctuations, if you need to purchase or consult the price. You can contact us or emial to us: sales@allicdata.com
The CNX82AW is an optoisolator--a current-transfer device designed to separate two branches of a circuit and/or the components within, without inducing any electrical contact. It is basically composed of an LED-transistor pair, and it is designed to provide the highest current transfer capability in a wide range of circuit applications.
The working principle of the CNX82AW optoisolator is based on a two-stage process wherein the LED-transistor pair is configured to provide electrical current isolation. In the first stage, an electric current flowing in the input section is sensed by the LED, and then converted into light energy. This light energy is then detected and converted back into an electric current in the second stage by the photovoltaic output transistor, to produce the desired electrical signal to be used in the circuit. By configuring the two transistor halves correctly, the CNX82AW optoisolator can achieve an isolation level of up to 12mA, depending on the model.
The CNX82AW has a variety of application fields and is particularly suitable for systems that require utmost reliability and isolation. This device can be used in industrial controls, medical and instrumentation systems, logging and measuring tools, and other electrical equipment requiring signal separation, multiplexing, and current/voltage monitoring. It is available in various output configuration options such as digital, analog, and PWM as well as in different package configurations. It also provides various benefits such as low power consumption, high efficiency, and long-term reliability.
The most important feature of the CNX82AW optoisolator is its ability to provide superior current transfer capability in its applications. The device is integrated with a light-sensitive transistor that carries a maximum voltage of 30V, making it suitable for many applications that require a maximum current transfer capability. Due to its superior performance, the CNX82AW is favored by many system designers for its functional capability and operational benefits.
In addition, the CNX82AW optoisolator has a high level of reliability, which is a major advantage for designers looking for a high-end optoisolator for their applications. It has a proven track record of reliability that ensures its dependability in its applications. Moreover, its low-power consumption makes it an ideal choice for those who want to save energy, and its long-term operational reliability improves the overall life expectancy of the product.
All in all, the CNX82AW optoisolator is one of the most reliable and advanced current transfer optoisolators on the market. It provides superior current transfer performance, high level of reliability, and low power consumption, making it an ideal choice for system designers looking for a high-end device for their applications. Furthermore, its wide range of application fields and package options make it truly versatile and suitable for many advanced circuit designs.
The specific data is subject to PDF, and the above content is for reference
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