| Allicdata Part #: | E-1048-8D5-C0A0-4U3-7.5A-ND |
| Manufacturer Part#: |
E-1048-8D5-C0A0-4U3-7.5A |
| Price: | $ 0.00 |
| Product Category: | Relays |
| Manufacturer: | E-T-A |
| Short Description: | CIR BRKR THRM 7.5A |
| More Detail: | Solid State |
| DataSheet: | E-1048-8D5-C0A0-4U3-7.5A Datasheet/PDF |
| Quantity: | 1000 |
| 1 +: | 0.00000 |
| Series: | E-1048-8D |
| Part Status: | Obsolete |
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How do solid state relays work and what are they used for? This is a question that has been around since the inception of the technology more than 50 years ago. Many people are familiar with electro-mechanical relays, but solid state relays offer many advantages over the traditional style. Solid state relays are often referred to as "electronic" relays, even though they physically take the place of traditional relays. An E-1048-8D5-C0A0-4U3-7.5A solid state relay is one of the most popular types found in industrial settings.
At its core, a solid state relay (SSR) is an electrical switch with an integrated circuit (IC) that allows for automation of control. These SSRs use semiconductor technology, such as silicon controlled rectifiers (SCRs) or insulated gate bipolar transistors (IGBTs). A PC board contains the SSR and its additional components, such as the ICs, wiring, and other components. The contacts, or terminals, on the SSR are connected to the rest of the circuit by the built-in drive. The current control circuit completes the connection between the input and output terminals.
When it comes to what E-1048-8D5-C0A0-4U3-7.5A solid state relays are used for, the most common application is for switching high current loads such as motors and power supplies. Due to their high current handling and fast switching speeds, SSRs are the ideal choice for such applications. Furthermore, SSRs are offered in both AC and DC relay ratings, while many other types of relays are limited to either type.
The working principle of an E-1048-8D5-C0A0-4U3-7.5A solid state relay is fairly simple. The control circuit uses an integrated circuit to detect when a voltage is applied to the input terminals. This voltage is then used to interrupt the conduction of the current between the output terminals of the SSR. When the voltage reaches a certain threshold, the switch is activated and the output terminals will be energized. This process happens in an extremely short amount of time, usually less than one millisecond, which makes SSRs ideal for applications where quick switching speeds are needed.
SSRs provide many advantages over traditional mechanical relays. These include components with a smaller and more lightweight design, increased switching speed, better electrical noise immunity, and the ability to switch high current loads. Furthermore, SSRs provide reliable operation and long life expectancy since there are no moving parts. This helps reduce maintenance costs in industrial applications where traditional mechanical relays may require frequent adjustments or replacements.
E-1048-8D5-C0A0-4U3-7.5A solid state relays provide numerous advantages over traditional electromechanical relays, making them the go-to choice for today’s industrial applications. With a strong focus on safety, these robust and reliable SSRs are a great choice for switching high current loads. Their fast switching speeds and superior electrical noise immunity make them the perfect solution for controlling motors, power supplies, and other electrical systems.
The specific data is subject to PDF, and the above content is for reference
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E-1048-8D5-C0A0-4U3-7.5A Datasheet/PDF