Allicdata Part #: | 425-2419-5-ND |
Manufacturer Part#: |
S2S3LY0F |
Price: | $ 0.00 |
Product Category: | Isolators |
Manufacturer: | SHARP/Socle Technology |
Short Description: | OPTOISOLATOR 3.75KV TRIAC 4SMD |
More Detail: | Optoisolator Triac Output 3750Vrms 1 Channel 4-SMD |
DataSheet: | S2S3LY0F Datasheet/PDF |
Quantity: | 1000 |
1 +: | 0.00000 |
Voltage - Isolation: | 3750Vrms |
Voltage - Off State: | 600V |
Static dV/dt (Min): | 100V/µs |
Current - LED Trigger (Ift) (Max): | 5mA |
Current - On State (It (RMS)) (Max): | 50mA |
Current - Hold (Ih): | 3.5mA |
Turn On Time: | 100µs (Max) |
Voltage - Forward (Vf) (Typ): | 1.2V |
Current - DC Forward (If) (Max): | 50mA |
Operating Temperature: | -30°C ~ 100°C |
Mounting Type: | Surface Mount |
Package / Case: | 4-SMD |
Supplier Device Package: | 4-SMD |
Approvals: | CSA, UR, VDE |
Series: | -- |
Packaging: | Tube |
Part Status: | Obsolete |
Output Type: | Triac |
Zero Crossing Circuit: | No |
Number of Channels: | 1 |
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S2S3LY0F optoisolators are devices that provide the isolation of an electrical circuit from another electrical circuit. They are used to electrically isolate a signal, power supply, data transmission, or any other type of circuit from a control circuit. This isolation allows for the reduced risk of electrical interference or shocks and helps provide a higher level of safety for the user. The optoisolator is also used to help reduce the noise levels of electrical circuits, which can help improve the overall performance of the device.
S2S3LY0F optoisolators are used in a variety of applications, from automotive systems to industrial automation. In these applications, they are used mainly as a circuit protector. They protect circuits from damage due to overloading or voltage spikes around the time of peak electrical load. The optoisolator also acts as a barrier between the control and power circuits, so that the control circuits are not affected by changes in the power circuits.
The S2S3LY0F optoisolator is a type of optoisolator specifically designed for use with Triac or SCR output devices. It contains a phototransistor and a photo-detector on the input side and a MOSFET on the output side. The output MOSFET is usually controlled by an Externally Applied Voltage (EAV) signal. The EAV is used to switch the transistor in the optoisolator on and off, thus controlling the power to the output device.
The working principle of the S2S3LY0F optoisolator is based on the concept of electronic isolation. This isolation is achieved by using one of the two different types of isolation options available, namely; optical isolation or electrical isolation. The optical isolation is based on the concept of energy transfer between two semiconductor devices using light, while the electrical isolation is based on the capacitative transfer of electrical energy between two electronic elements through a non-conductive medium.
Optical isolation is used when the energy or signal needs to cross a long distance and remain untouched. In this case, the light energy is transferred between two semiconductor elements through a light beam, instead of using electric contact. This ensures that the energy level of the output device remains constant, thus providing excellent isolation between the input and output circuits.
Electrical isolation is used when transfer of energy or signal between two electronic devices need to take place through a conductive medium. In this case, a capacitive transfer method is employed, whereby a capacitance is created between two terminals in the output device to transfer the electrical signal or energy from one terminal to the other. This method ensures that the output device remains isolated from the input circuit, thus providing excellent isolation.
In summary, the S2S3LY0F optoisolator is a triac or SCR output device, specifically designed for use in applications requiring a high level of isolation. The optoisolator provides isolating barrier between input and output circuits, thus providing superior protection against electrical interference or shocks. It also helps reduce noise levels of electrical circuits, thus improving the overall performance of the device. The working principle of the S2S3LY0F optoisolator is based on either or both of the two different isolation methods, namely; optical isolation and electrical isolation.
The specific data is subject to PDF, and the above content is for reference
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