CNY17-4-W60E Allicdata Electronics
Allicdata Part #:

CNY17-4-W60E-ND

Manufacturer Part#:

CNY17-4-W60E

Price: $ 0.11
Product Category:

Isolators

Manufacturer: Broadcom Limited
Short Description: OPTOISO 5KV TRANS W/BASE 6DIP
More Detail: Optoisolator Transistor with Base Output 5000Vrms ...
DataSheet: CNY17-4-W60E datasheetCNY17-4-W60E Datasheet/PDF
Quantity: 1000
22750 +: $ 0.09449
Stock 1000Can Ship Immediately
$ 0.11
Specifications
Output Type: Transistor with Base
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): 300mV
Current - DC Forward (If) (Max): 60mA
Voltage - Forward (Vf) (Typ): 1.4V
Current - Output / Channel: 150mA
Voltage - Output (Max): 70V
Series: --
Input Type: DC
Rise / Fall Time (Typ): 5µs, 5µs
Turn On / Turn Off Time (Typ): --
Current Transfer Ratio (Max): 320% @ 10mA
Current Transfer Ratio (Min): 160% @ 10mA
Voltage - Isolation: 5000Vrms
Number of Channels: 1
Part Status: Active
Packaging: Tube 
Description

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

Optoisolators - Transistor, Photovoltaic Output are electronic devices used to provide electrical insulation between two systems, as well as to transfer an electrical signal from one system to the other. CNY17-4-W60E is a type of optical isolator that uses a light-emitting diode (LED) and a phototransistor to facilitate the transfer of electrical signals while providing electrical separation between two systems. The LED transmits light to the phototransistor, which produces an electrical current. The output of the phototransistor is then used to drive a load connected to the two systems.

This optically coupled isolator has several applications, including motor control, data transmission, power conversion, and power supply control. Motor control is one of the most common applications of optoisolators. A CNY17-4-W60E optically isolated system can be used to control the speed of a DC motor. The LED transmits a signal to the phototransistor, which then drives the motor according to the signal. The isolator system prevents the high voltage and current of the motor from interfering with the low voltage and current signal coming from the LED.

In addition to motor control, optically isolated systems can also be used for data transmission. The light signal from the LED is transmitted to the phototransistor, which encodes the signal into an electrical current. The electrical current is then sent to another system, preventing electrical noise from interfering with the signal. This makes optoisolators ideal for use in communication systems, such as between computers and modems.

Optoisolators can also be used in power conversion systems. In this application, the optical signal from the LED is used to control the amount of current flowing from one system to the other. This is especially useful in applications where there is a need to control the current of a high-power device. The optoisolator prevents electrical noise from interfering with the signal and ensures that the current flow is controlled accurately.

Finally, optoisolators can also be used in power supply control applications. In this application, the light signal from the LED is sent to the phototransistor, which encodes the signal into an electrical current. The electrical current is then sent to another system, controlling the power supply of the device. This is especially useful in applications where high-voltage power supplies are required, such as in power supply controllers for DC motors.

In summary, CNY17-4-W60E optoisolators are used in a variety of applications due to their ability to provide electrical insulation between two systems and transfer an electrical signal from one system to the other. Motor control, data transmission, power conversion, and power supply control are some of the most common applications for this type of optical isolator. The LED and phototransistor of the optoisolator prevent electrical noise from interfering with the signal, thereby ensuring accurate control of the desired device.

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

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