
Allicdata Part #: | 8339510000-ND |
Manufacturer Part#: |
8339510000 |
Price: | $ 37.81 |
Product Category: | Circuit Protection |
Manufacturer: | Weidmuller |
Short Description: | OVP PLUG-IN 230V |
More Detail: | N/A |
DataSheet: | ![]() |
Quantity: | 1000 |
Lead Free Status / RoHS Status: | Lead free / RoHS Compliant |
1 +: | $ 34.36650 |
Series: | -- |
Part Status: | Active |
Lead Free Status / RoHS Status: | -- |
Voltage - Clamping: | -- |
Technology: | Fuse |
Number of Circuits: | 3 |
Applications: | General Purpose |
Mounting Type: | DIN Rail |
Package / Case: | Module, Plug-In Terminal Block |
Supplier Device Package: | Module |
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
TVS - Mixed Technology, or Transient Voltage Suppressors, can be a powerful tool in protecting against all types of electrical transients. In order to achieve maximum protection, these devices need to be highly specialized and carefully designed for the specific application. TVS is typically defined as combined protection that utilizes both passive and active techniques to handle transient voltage events. A transient voltage is an electrical event that can have a wide range of disastrous effects on unprotected electronics, including data loss, system failure, and even fire. TVS devices are specifically designed to absorb high-energy surges of varying magnitude, enabling systems to remain safe and operational. Mixed technology protection is typically composed of one passive transistor (DMUT) and one active diode or the combination of a Zener diode and a MOSFET (ZMOS). TVS also features various types of protection that apply across different scenarios, such as Overvoltage (OVP) and Over-currentlimit protection (OCP). One of the most effective TVS devices on the market is the 8339510000. This protection device utilises the combined capabilities of a state-of-the-art ZMOS and DMUT transistor to deliver extraordinary levels of protection over a wide range of operational conditions. The device itself is divided into two distinct sections; the ZMOS structure in the upper half, and the DMUT structure in the lower half. When a transient voltage event occurs, the fast response of the ZMOS section absorbs the initial surge. Once triggered, the ZMOS section redirects the charge to the DMUT section, which then absorbs the energy with minimal impact on the protected system. This allows the 8339510000 to provide unparalleled levels of protection across both low current and high voltage applications. The 8339510000 is also designed to automatically reset after every event, allowing systems to remain always operational and easily monitored. The device features an Internal Switch Release (ISR) latch, which ensures that the ZMOS and DMUT sections reset independently and concurrently. This is essential for protection against multiple transient events that may occur in a short period of time. The 8339510000 is also designed to provide a fail-safe operation, allowing it to trigger even in the most extreme voltage or surge conditions. The device is rated to handle up to 650V across its AC/DC power range, and can also tolerate up to a 75V maximum voltage drop across its upper ZMOS section. This ensures that the device can handle some of the most extreme conditions that would otherwise cause system failure and loss of data.
The 8339510000 device is one of the most technologically advanced mixed protection devices on the market, offering a combined solution for both low current and high voltage applications. The device features both a ZMOS section and a DMUT section, which provide an uncompromising level of protection against transient voltage events. The device also features an Internal Switch Release (ISR) latch, which ensures that the ZMOS and DMUT sections reset independently and concurrently. This fail-safe feature allows the device to trigger even in the most extreme voltage or surge conditions. Overall, the 8339510000 is an excellent solution for protecting a wide range of electronics from transient voltage events.
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