
| Brand | HUBBELL |
|---|---|
| Manufacturer Part Number | UL924SR2 |
The Hubbell Ul924SR2 Bypass Shunt Relay is a versatile electrical component designed for use in commercial and industrial lighting systems. This relay is specifically engineered for 120/277V applications and can handle a current of up to 20 amperes. The Single Pole Double Throw (SPDT) design of this relay allows for the switching of two separate circuits with a single input.
The Hubbell Ul924SR2 features a fail-safe, non-latching, and normally open (FNOB) contact configuration. This means that when the relay coil is de-energized, the contacts return to their normal position, providing a reliable and consistent electrical connection. The bypass function of this relay enables the load to be connected directly to the power source when the relay is not in the switched position, ensuring continuous power supply to the connected equipment.
The Ul924SR2 is constructed with high-quality materials, ensuring durability and reliability. It is designed to meet the rigorous demands of commercial and industrial applications, offering a long service life and excellent electrical performance. The relay is also UL listed, ensuring compliance with the highest safety standards.
The Ul924SR2 bypass shunt relay is easy to install and operate. It can be mounted in a variety of orientations, including horizontal or vertical, making it a flexible solution for a wide range of applications. The relay also features a clear and concise labeling system, making it easy to identify the terminal connections.
This Hubbell Ul924SR2 Bypass Shunt Relay is an essential component for any lighting system that requires switching or load management capabilities. Its reliable performance, versatile design, and compliance with industry safety standards make it a top choice for commercial and industrial applications.
The Hubbell Ul924SR2 Bypass Shunt Relay is a 120/277V AC, 20A, Single-Pole Double-Throw (SPDT), Fail-Safe-Not-Bypass (FNOB) device. It is designed for use in bypass applications in electrical systems. Here are some pros and cons of buying this relay:
Pros:1. Fail-Safe-Not-Bypass (FNOB) design ensures that the relay is not in the bypass position during normal operation, providing an added level of safety.
2. SPDT configuration allows for the switching of two circuits with a single relay.
3. 20A current rating makes it suitable for use with moderately sized loads.
4. 120/277V voltage range makes it versatile for use in various electrical systems.
5. Hubbell is a well-known and trusted brand in the electrical industry, ensuring quality and reliability.
Cons:1. The price point of the Hubbell Ul924SR2 may be higher than some other relays with similar specifications from less expensive brands.
2. It may require additional wiring and installation time due to its fail-safe design and SPDT configuration.
3. The relay may not be suitable for use with very large loads or high voltage applications.
Conclusion:The Hubbell Ul924SR2 Bypass Shunt Relay offers several advantages, including safety features, versatility, and reliability, but it may come with a higher price tag and additional installation requirements. If safety is a priority, and the relay is suitable for the application, it may be worth the investment. Alternatively, if cost is a significant factor, it may be worth considering other options with similar specifications from less expensive brands. Ultimately, the decision to purchase the Hubbell Ul924SR2 should be based on the specific requirements of the electrical system and the priorities of the buyer.
Most items are in stock when they listed. The item has its original packaging but it is not sealed. 2-year MRI shield protection plan included. Hubbell UL924SR2 bypass shunt relay, 120/277v, 20a spdt manufactured by Hubbell.
Hubbell UL924SR2 bypass shunt relay, 120/277v, 20a spdt with 277vac coil. Special instructions. Manufacturer part number: UL924SR2. A new, unused item with no signs of wear.
The product must be the original item shipped, with matching serial numbers if applicable.
