Allicdata Part #: | SL1003A260SM-ND |
Manufacturer Part#: |
SL1003A260SM |
Price: | $ 1.59 |
Product Category: | Circuit Protection |
Manufacturer: | Littelfuse Inc. |
Short Description: | GAS TUBE 260V 5A/5KA 3PIN SMT |
More Detail: | Gas Discharge Tube 260V 5000A (5kA) 3 Pole Surfac... |
DataSheet: | SL1003A260SM Datasheet/PDF |
Quantity: | 1000 |
Lead Free Status / RoHS Status: | Lead free / RoHS Compliant |
Moisture Sensitivity Level (MSL): | 1 (Unlimited) |
700 +: | $ 1.44242 |
Series: | SL1003A |
Packaging: | Tape & Reel (TR) |
Lead Free Status / RoHS Status: | -- |
Part Status: | Active |
Moisture Sensitivity Level (MSL): | -- |
Voltage - DC Spark Over (Nom): | 260V |
Impulse Discharge Current (8/20µs): | 5000A (5kA) |
Tolerance: | -- |
Number of Poles: | 3 |
Fail Short: | No |
Mounting Type: | Surface Mount |
Package / Case: | 3-SMD Cylinder Square End |
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Gas Discharge Tube Arresters (GDTs) are, in essence, a component designed to offer electrical protection by limiting the current flow within a circuit. These components are essential for any circuit that will experience very large transient voltages caused by weather phenomena or system faults. GDTs also provide a means of protecting vulnerable circuit elements such as relays, capacitors, and transistors from the devastating effects of overvoltages. The SL1003A260SM is an example of a Gas Discharge Tube Arrester, and this article outlines the application fields and working principles of this component.
In terms of applications, the SL1003A260SM is most effective in protecting systems that experience overvoltage from electrical transients caused by lightning strikes, nearby electrocution, and other external sources of power. This means that this component can be used to protect systems in many different industries. These include residential, commercial, industrial, and public sector applications. In all these areas, GDTs like the SL1003A260SM are designed to ensure that issues such as overvoltage, surges, and induced noise are prevented from damaging the circuits.
GDTs like the SL1003A260SM usually comprise two components, a pressure-limiting element and a surge arrester element. The pressure-limiting element limits the current flow to a certain limit and prevents it from exceeding this limit. The surge arrester element provides the necessary controlled conduction and moderates the voltage level to a safe level. This means that any voltage transients induced to the system will be diverted away from the sensitive components within the circuit.
The SL1003A260SM is designed in line with the principle of a spark gap, whereby a pair of electrodes are placed in front of a gas in order to create a spark between them when the optimum voltage level is reached. This spark then acts as a conductor for the arrester\'s circuit. This process is performed repeatedly at an increased frequency and with shorter spark lengths, which dissipates the transients through the element of the SL1003A260SM. Similarly, when the system\'s load or induced noise is too high, the GDT acts in a reverse current mode, whereby it draws the excessive voltage from the compromised components. In this regard, GDTs have the ability to protect sensitive components from physical damage and destruction due to overvoltage.
The SL1003A260SM is capable of mitigating the surge in electrical circuits and preventing overvoltage-induced damages due to its stable air gap, quick response time, and high insulation resistance. This GDT features wide applications in electrical power systems, such as transmission lines, distribution transformers, and motors. It also offers an effective protection solution against transients in power systems, including lighting and switching transients.
To conclude, the SL1003A260SM is a valuable component for protecting electrical systems from transients and ensuring that any vulnerable components are safe from destructive surges. This component is used in a wide range of industry sectors, and it offers a rapid response time and reliable insulation. In addition, the GDT also boasts excellent stability and performance, making it a reliable and highly trusted means of protecting electrical systems from overvoltage.
The specific data is subject to PDF, and the above content is for reference
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