PVD2352NS Overview
The PVD2352NS is a solid-state relay designed for demanding industrial and commercial applications that require reliable, efficient switching and electrical isolation. With its combination of robust performance, compact footprint, and advanced safety features, this device is ideal for engineers seeking dependable solutions for control and automation systems. Designed for ease of integration, it offers low input control current and high output voltage capability, making it a versatile component for a wide range of circuit designs. For more details, visit IC Manufacturer.
PVD2352NS Technical Specifications
| Parameter | Value |
|---|---|
| Output Type | Solid State Relay (SSR) |
| Isolation Voltage | 3750 Vrms |
| Control Voltage (Input) | 3V to 5V DC |
| Load Voltage (Output) | Up to 350V |
| Continuous Output Current | 120 mA |
| On-State Resistance | 35 ?? (typical) |
| Package Type | 8-SOIC |
| Operating Temperature Range | -40??C to +85??C |
PVD2352NS Key Features
- High isolation voltage of 3750 Vrms ensures robust protection between control and load circuits, reducing risk in electrically sensitive applications.
- Wide input control voltage range (3V to 5V DC) provides flexibility for integration into various logic-level driven systems.
- Low on-state resistance minimizes power loss and heat generation, enhancing overall energy efficiency.
- Compact 8-SOIC package conserves valuable PCB space, supporting high-density board layouts.
- Solid-state design delivers silent operation and extended lifecycle compared to mechanical relays.
PVD2352NS Advantages vs Typical Alternatives
Compared to standard electromechanical relays or less advanced SSRs, this solid-state relay offers superior electrical isolation, faster response times, and improved durability. The low input current and minimal heat generation enhance energy efficiency and reliability, making it a preferred choice for precision control and industrial automation solutions.
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Typical Applications
- Industrial process control systems where electrical isolation and long-term reliability are crucial, such as PLC interface modules and sensor signal switching.
- Building automation equipment, including lighting control and HVAC switching, where silent operation and energy efficiency are necessary.
- Telecommunication systems that require high-density, low-power switching components within compact enclosures.
- Medical instrumentation demanding consistent isolation between patient-connected circuits and system controllers.
PVD2352NS Brand Info
The PVD2352NS solid-state relay stands out in its category for delivering high reliability and robust isolation performance in a compact form factor. Engineered for use in modern automation and control environments, this product reflects the brand??s commitment to quality, safety, and innovation. Its carefully selected specifications ensure compatibility with a broad array of industrial and commercial applications, making it a trusted component for engineers and system designers.
FAQ
What type of isolation does the PVD2352NS provide?
This device offers a high level of input-to-output isolation rated at 3750 Vrms, which helps protect sensitive control circuits from high-voltage transients and ensures operator and equipment safety in critical environments.
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Can the PVD2352NS operate in high-temperature environments?
Yes, it is designed to function reliably within an operating temperature range of -40??C to +85??C, making it suitable for use in both industrial and commercial environments with challenging thermal conditions.
What are the main advantages of using this solid-state relay over mechanical relays?
It provides faster switching times, silent operation, longer operational life due to the absence of moving parts, and superior reliability, especially in applications where frequent switching is required.
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Is the PVD2352NS suitable for integration in compact PCB layouts?
Absolutely. Its 8-SOIC package is designed for space efficiency, allowing integration into high-density printed circuit boards without sacrificing performance or reliability.
What considerations should be made regarding load compatibility?
Ensure that the load voltage and current do not exceed the specified ratings (up to 350V and 120mA continuous). Also, consider the on-state resistance for power dissipation calculations in your design.




