Allicdata Part #: | Z2701-ND |
Manufacturer Part#: |
G3VM-41LR10 |
Price: | $ 0.00 |
Product Category: | Relays |
Manufacturer: | Omron Electronics Inc-EMC Div |
Short Description: | RELAY SSR SPST-NO 40V 4SSOP |
More Detail: | Solid State Relay SPST-NO (1 Form A) 4-SMD (0.165"... |
DataSheet: | G3VM-41LR10 Datasheet/PDF |
Quantity: | 1000 |
1 +: | 0.00000 |
Series: | G3VM |
Packaging: | Tube |
Part Status: | Obsolete |
Mounting Type: | Surface Mount |
Circuit: | SPST-NO (1 Form A) |
Output Type: | AC, DC |
Voltage - Input: | 1.35VDC |
Voltage - Load: | 0V ~ 40V |
Load Current: | 120mA |
On-State Resistance (Max): | 14 Ohms |
Termination Style: | SMD (SMT) Tab |
Package / Case: | 4-SMD (0.165", 4.20mm) |
Supplier Device Package: | 4-SSOP |
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Solid State Relays are electronic switching devices, which are used to switch a specified electrical load on and off using an external control signal. The G3VM-41LR10 is an optically isolated, surface-mount solid state relay that offers advanced performance for applications in industrial and telecom automation. By providing full circuit isolation, this SIP relay eliminates the need for optical isolation components and their extra space requirements, reducing the system\'s cost and the number of components utilized. Here we will discuss the application field and working principle of the G3VM-41LR10.
The G3VM-41LR10 is suitable for applications that require sensitive switching such as on/off control systems, motor drives, or switching between two different current systems. Additionally, this relay provides advanced performance in industrial settings due to its ability to process through a wide range of temperatures over an extended period of time without sacrificing reliability or performance. Additionally, the G3VM-41LR10 is designed to meet telecom standards, providing reliable switching solutions in high-noise environments.
The working principle of the G3VM-41LR10 is based on the conversion of input voltage into an optically isolated output current. The input voltage is applied to a pair of electrodes within the body of the relay, causing a photoconductive material to be excited and emit light. This light passes through an optical isolator which in turn energizes a photoconductor. This causes the photoconductive material to be excited and emit light. This emitted light passes through an optically isolator and is converted to signal voltage. The output current is then varied based on the input voltage.
The G3VM-41LR10 has a number of features that make it ideal for use in industrial and telecom automation applications. First, the relay has a wide operating temperature range and a long life of up to 50 million operations. Second, its MOSFET output provides an efficient means of switching, allowing it to provide low-level switching up to 10A and up to 400V. Third, its optically isolated technology prevents interference between sensors and switching components while also providing a highly reliable interface. Finally, the G3VM-41LR10 features a fast switching speed, allowing it to perform quickly and reliably even at high frequencies.
The G3VM-41LR10 has a number of advantages over other solid state relays. It can operate at a wide range of temperatures without sacrificing performance, and its optically isolated technology prevents interference with neighbouring sensors or switching components. Additionally, its fast switching speed and wide current rating make it suitable for a wide variety of applications, including those with high frequency switching. Finally, its small size and low cost make it an attractive choice for those looking to reduce the overall size and cost of a system.
In conclusion, the G3VM-41LR10 is an advanced solid state relay that offers outstanding performance in industrial and telecom applications. Its optically isolated technology eliminates the need for additional isolation components, allowing the system to remain compact while still providing reliable switching. Additionally, the G3VM-41LR10 is capable of operating at a wide range of temperatures and features a fast switching speed, making it ideal for high frequency applications. Finally, its small size, low cost, and long life make it an attractive choice for those looking to reduce the size and cost of their systems.
The specific data is subject to PDF, and the above content is for reference
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